libotr-4.1.1/0000775000175000017500000000000012667401053010017 500000000000000libotr-4.1.1/NEWS0000664000175000017500000002533712667304336010456 000000000000009 Mar 2016: - Release 4.1.1 - Fix an integer overflow bug that can cause a heap buffer overflow (and from there remote code execution) on 64-bit platforms - Fix possible free() of an uninitialized pointer - Be stricter about parsing v3 fragments - Add a testsuite ("make check" to run it), but only on Linux for now, since it uses Linux-specific features such as epoll - Fix a memory leak when reading a malformed instance tag file - Protocol documentation clarifications 21 Oct 2014: - Release 4.1.0 - Modernized autoconf build system - Use constant-time comparisons where needed - Use gcrypt secure memory allocation - Correctly reject attempts to fragment a message into too many pieces - Fix a missing opdata when sending message fragments - Don't lose the first user message when REQUIRE_ENCRYPTION is set - Fix some memory leaks - Correctly check for children contexts' state when forgetting a context - API Changes: - Added API functions otrl_context_find_recent_instance and otrl_context_find_recent_secure_instance. 24 Aug 2012: - Release 4.0.0 - Support v3 of the OTR protocol - The main new feature: sensibly handle the case where a user is logged in multiple times to the same IM account - API changes: - instance tags, to support multiple simultaneous logins - support for asynchronous private key generation - the ability to provide an "extra" symmetric key to applications (with forward secrecy) - applications can supply a formation conversion callback if they do not natively use XHTML-style UTF8 markup - error messages formerly provided by libotr are now handled using callbacks to the application, for better i18n support - otrl_message_sending now handles message fragmentation internally 27 May 2008: - Added support for one-way authentication using an explicit question, based on the SOUPS 2008 user study. 1 Aug 2007: - Released 3.1.0 24 Jul 2007: - Added fragmentation support for large messages - Added new method for buddy authentication which does not require the (explicit) use of fingerprints. 02 Nov 2005: - Released 3.0.0 16 Oct 2005: - Major overhaul with implementation of version 2 of the protocol. 24 Jun 2005: - Remove the "confirm_fingerprint" callback which requires the user to acknowledge the new fingerprint before it can be used. Replace it with a "new_fingerprint" callback which merely informs the user that a new fingerprint has been received. - Allow the app to set a "trust level" for fingerprints. This is an arbitrary string, intended to indicate whether (or possibly by what means) the user has verified that this fingerprint is accurate. - Clarify that, if the user requests to see the secure session id in the middle of the conversation, the value displayed should be the one calculated at the time the private connection was established (the last Key Exchange Message that caused a rekeying), _not_ the DH secure id calculated from DH keys in more recent Data Messages. 03 May 2005: - Released 2.0.2 16 Feb 2005: - Released 2.0.1 - Don't send encrypted messages to a buddy who has disconnected his private connection with us. - Don't show the user the "the last message was resent" notice if the message has never actually been sent before. - Fix a crash bug that happened when messages were retransmitted under certain circumstances. 08 Feb 2005: - Released 2.0.0 - Keep track of whether a given message is eligible for retransmission 02 Feb 2005: - Released 1.99.0, the first preview release of 2.0.0 31 Jan 2005: - Machine-readable records can now be attached to Data Messages inside the private channel. 30 Jan 2005: - New OtrlUserState datatype encapsulates private keys and known fingerprints, instead of having a single global list. - Added libotr.m4 for helping to autoconfiscate packages that use libotr. - Resend the last message if it caused a re-keying. - New OtrlPolicy datatype allows you to specify a per-connection OTR policy: never use OTR, OTR only if manually requested, automatically start OTR if possible, refuse to *not* use OTR. - New callbacks: display_otr_message, policy, is_logged_in 22 Jan 2005: - Released 1.0.4 - Log, but otherwise ignore, unrecognized OTR messages. - Initial autoconfiscation, thanks to Greg Troxel . 18 Jan 2005: - Released 1.0.3 - Split gaim-otr and libotr into separate packages. 13 Jan 2005: - Generate private keys automatically, if needed. Show a Please Wait dialog while this is happening. - We may as well try to use the "tag" method of checking for OTR, even when we don't already know a fingerprint for the correspondent. - Add version checking to the otrl_init() call. 12 Jan 2005: - Refactored the logic parts of gaim-otr into libotr, so they can be shared by other libotr-enabled apps. 21 Dec 2004: - Released 1.0.2 - If a Man-in-the-Middle steals both Alice's and Bob's DSA private keys, he can perform a birthday attack to try to get his session id with each end to match. Since the session id was only 64 bits long, his work was only 2^32, which is not enough. We now make the session id the whole SHA-1 hash, instead of truncating it. - Made otr_sesskeys output the calculated public key as well, for added ease of forging messages when you don't know any plaintext. 14 Dec 2004: - Released 1.0.1 - Added a more sensible error message in the event that we receive our own OTR Key Exchange messages. - If we're about to send a plaintext message to a correspondent for whom we've got a fingerprint, append a special (whitespace) OTR tag sequence. The other side (if in fact running OTR) will recognize it and start a Key Exchange. 12 Dec 2004: - Released 1.0.0 11 Dec 2004: - OTR button now gets sensitized and desensitized along with the other buttons in the conversation window when you log in and out of accounts. 10 Dec 2004: - Released 0.9.9rc2 - Heartbeats now only get sent if (1) we have just received a message, and (2) we haven't sent one to that user in over a minute. 09 Dec 2004: - Back out of the sending of heartbeats. They were causing too many problems. It seems some networks don't let buddies know when you log out, and then you get a dialog box "unable to send message" each minute. :-( 08 Dec 2004: - Released 0.9.9rc1 - Removed the 100 private connection limit, by not using a fixed amount of secure memory. Unfortuantely, this means that *no* memory is pinned any more, but pinning only ever happened before in the unlikely event you ran gaim as root. - Changed the "Private connection with (username) refreshed" dialog at Paul's request so that it's no longer in "scary" "evil" bold, and rephrased it so it's less likely to be misread as "refused" instead of "refreshed". ;-) - We now send heartbeats (OTR Data Messages with an empty message part) once a minute, to anyone we're confident is still online. If both sides are doing this, then keys get rotated regularly, even if one or both sides aren't actively typing. This aids perfect forward secrecy. 04 Dec 2004: - Fixed a bug wherein multi-person chat windows would get the OTR button in their button bar if the OTR plugin was enabled when one of them was active. 03 Dec 2004: - Released 0.9.1 02 Dec 2004: - Clicking "OTR: Private" when you're already private will display an info dialog letting you know the connection was refreshed (assuming it actually is; if the other side isn't running OTR at all, the dialog doesn't show, and if the other side had lost its private connection, a new one will be established, with the "new private connection" dialog displayed to each side (as before)). - The toolip for "OTR: Private" is now "Refresh the private connection". - "make install" now depends on "make all". - Added man page for OTR toolkit programs - Log a debug message when we receive and discard a heartbeat 1 Dec 2004: - Fixed the Makefiles so that "make clean" also removes the binaries - Fixed the Makefiles so that they install into DESTDIR - Added packaging/debian 30 Nov 2004: - Released 0.9.0 - Included the OTR Messaging Toolkit. See the README for details. 28 Nov 2004: - Finished the Protocol document - Changed the name of the plugin binary from "otr-plugin.so" to "gaim-otr.so". *** NOTE: this means you'll have to (1) remove the old otr-plugin.so file from your plugins directory, and (2) re-enable the Off-the-Record Messaging plugin in the Preferences panel. - Included MAC keys used to create messages in the revealed MAC section of the Data message, in addition to MAC keys used to verify messages. - Set all exported symbols to start with otrl_ (for the library) or otrg_ (for the gaim plugin), in preparation for moving the pieces into their own directories. - If we receive a Data message with no actual message in it, don't display it to the user. This may eventually be useful for doing "heartbeat" key rotations. - Separated libotr and gaim-otr into their own directories. 27 Nov 2004: - Switched from using gaim_notify_* to a slightly modified version that doesn't grab the focus 26 Nov 2004: - Put all the cipher operations in secure memory. This makes each private connection take 9472 bytes of secure memory, so we up the available amount of secure memory to 100 times that. Eventually, we'd like to make this dynamically grow. 25 Nov 2004: - Released 0.8.3 - Don't put the DSA keys in libgcrypt secure memory, since (a) we read them off disk anyway, and (b) we want to avoid running out of secure memory. - Removed the "Do you want to start a private conversation" dialogs when one side in encrypted and the other side isn't, and instead just try to start one if we know for sure the other side supports it. - Sped up the DH computations by using a 320-bit exponent. 23 Nov 2004: - Released 0.8.2 - There was a crash if you received an OTR Query before setting up a private key. Fixed. - The fingerprint in the UI is now selectable, for cut/paste. - *** Protocol change. We're no longer backward compatible. - The "revealed MAC keys" moved out of the MAC'd region of the data packet. It's not wrong where it is, but it's more obviously correct in the new place. 22 Nov 2004: - Released 0.8.1 - Jabber wasn't working, for two reasons: - it sticks ... around the message - it refers to the same user by multiple names; e.g. "user@jabber.org" vs. "user@jabber.org/Gaim" Both are now fixed: we look for the OTR message anywhere in the packet now, not just at the beginning, and we normalize all usernames. - Each account now has its own private key / fingerprint - This is so you don't automatically leak the information that the accounts are owned by the same person - There's a better indicator of private / not private status in the conversation window, which you can click to start the private communication. 21 Nov 2004: - Initial 0.8.0 release libotr-4.1.1/config.sub0000755000175000017500000010535412201675101011717 00000000000000#! /bin/sh # Configuration validation subroutine script. # Copyright 1992-2013 Free Software Foundation, Inc. timestamp='2013-08-10' # This file is free software; you can redistribute it and/or modify it # under the terms of the GNU General Public License as published by # the Free Software Foundation; either version 3 of the License, or # (at your option) any later version. # # This program is distributed in the hope that it will be useful, but # WITHOUT ANY WARRANTY; without even the implied warranty of # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU # General Public License for more details. # # You should have received a copy of the GNU General Public License # along with this program; if not, see . # # As a special exception to the GNU General Public License, if you # distribute this file as part of a program that contains a # configuration script generated by Autoconf, you may include it under # the same distribution terms that you use for the rest of that # program. This Exception is an additional permission under section 7 # of the GNU General Public License, version 3 ("GPLv3"). # Please send patches with a ChangeLog entry to config-patches@gnu.org. # # Configuration subroutine to validate and canonicalize a configuration type. # Supply the specified configuration type as an argument. # If it is invalid, we print an error message on stderr and exit with code 1. # Otherwise, we print the canonical config type on stdout and succeed. # You can get the latest version of this script from: # http://git.savannah.gnu.org/gitweb/?p=config.git;a=blob_plain;f=config.sub;hb=HEAD # This file is supposed to be the same for all GNU packages # and recognize all the CPU types, system types and aliases # that are meaningful with *any* GNU software. # Each package is responsible for reporting which valid configurations # it does not support. The user should be able to distinguish # a failure to support a valid configuration from a meaningless # configuration. # The goal of this file is to map all the various variations of a given # machine specification into a single specification in the form: # CPU_TYPE-MANUFACTURER-OPERATING_SYSTEM # or in some cases, the newer four-part form: # CPU_TYPE-MANUFACTURER-KERNEL-OPERATING_SYSTEM # It is wrong to echo any other type of specification. me=`echo "$0" | sed -e 's,.*/,,'` usage="\ Usage: $0 [OPTION] CPU-MFR-OPSYS $0 [OPTION] ALIAS Canonicalize a configuration name. Operation modes: -h, --help print this help, then exit -t, --time-stamp print date of last modification, then exit -v, --version print version number, then exit Report bugs and patches to ." version="\ GNU config.sub ($timestamp) Copyright 1992-2013 Free Software Foundation, Inc. This is free software; see the source for copying conditions. There is NO warranty; not even for MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE." help=" Try \`$me --help' for more information." # Parse command line while test $# -gt 0 ; do case $1 in --time-stamp | --time* | -t ) echo "$timestamp" ; exit ;; --version | -v ) echo "$version" ; exit ;; --help | --h* | -h ) echo "$usage"; exit ;; -- ) # Stop option processing shift; break ;; - ) # Use stdin as input. break ;; -* ) echo "$me: invalid option $1$help" exit 1 ;; *local*) # First pass through any local machine types. echo $1 exit ;; * ) break ;; esac done case $# in 0) echo "$me: missing argument$help" >&2 exit 1;; 1) ;; *) echo "$me: too many arguments$help" >&2 exit 1;; esac # Separate what the user gave into CPU-COMPANY and OS or KERNEL-OS (if any). # Here we must recognize all the valid KERNEL-OS combinations. maybe_os=`echo $1 | sed 's/^\(.*\)-\([^-]*-[^-]*\)$/\2/'` case $maybe_os in nto-qnx* | linux-gnu* | linux-android* | linux-dietlibc | linux-newlib* | \ linux-musl* | linux-uclibc* | uclinux-uclibc* | uclinux-gnu* | kfreebsd*-gnu* | \ knetbsd*-gnu* | netbsd*-gnu* | \ kopensolaris*-gnu* | \ storm-chaos* | os2-emx* | rtmk-nova*) os=-$maybe_os basic_machine=`echo $1 | sed 's/^\(.*\)-\([^-]*-[^-]*\)$/\1/'` ;; android-linux) os=-linux-android basic_machine=`echo $1 | sed 's/^\(.*\)-\([^-]*-[^-]*\)$/\1/'`-unknown ;; *) basic_machine=`echo $1 | sed 's/-[^-]*$//'` if [ $basic_machine != $1 ] then os=`echo $1 | sed 's/.*-/-/'` else os=; fi ;; esac ### Let's recognize common machines as not being operating systems so ### that things like config.sub decstation-3100 work. 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-sco5) os=-sco3.2v5 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco4) os=-sco3.2v4 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco3.2.[4-9]*) os=`echo $os | sed -e 's/sco3.2./sco3.2v/'` basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco3.2v[4-9]*) # Don't forget version if it is 3.2v4 or newer. basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco5v6*) # Don't forget version if it is 3.2v4 or newer. basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco*) os=-sco3.2v2 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -udk*) basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -isc) os=-isc2.2 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -clix*) basic_machine=clipper-intergraph ;; -isc*) basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -lynx*178) os=-lynxos178 ;; -lynx*5) os=-lynxos5 ;; -lynx*) os=-lynxos ;; -ptx*) basic_machine=`echo $1 | sed -e 's/86-.*/86-sequent/'` ;; -windowsnt*) os=`echo $os | sed -e 's/windowsnt/winnt/'` ;; -psos*) os=-psos ;; -mint | -mint[0-9]*) basic_machine=m68k-atari os=-mint ;; esac # Decode aliases for certain CPU-COMPANY combinations. case $basic_machine in # Recognize the basic CPU types without company name. # Some are omitted here because they have special meanings below. 1750a | 580 \ | a29k \ | aarch64 | aarch64_be \ | alpha | alphaev[4-8] | alphaev56 | alphaev6[78] | alphapca5[67] \ | alpha64 | alpha64ev[4-8] | alpha64ev56 | alpha64ev6[78] | alpha64pca5[67] \ | am33_2.0 \ | arc | arceb \ | arm | arm[bl]e | arme[lb] | armv[2-8] | armv[3-8][lb] | armv7[arm] \ | avr | avr32 \ | be32 | be64 \ | bfin \ | c4x | c8051 | clipper \ | d10v | d30v | dlx | dsp16xx \ | epiphany \ | fido | fr30 | frv \ | h8300 | h8500 | hppa | hppa1.[01] | hppa2.0 | hppa2.0[nw] | hppa64 \ | hexagon \ | i370 | i860 | i960 | ia64 \ | ip2k | iq2000 \ | le32 | le64 \ | lm32 \ | m32c | m32r | m32rle | m68000 | m68k | m88k \ | maxq | mb | microblaze | microblazeel | mcore | mep | metag \ | mips | mipsbe | mipseb | mipsel | mipsle \ | mips16 \ | mips64 | mips64el \ | mips64octeon | mips64octeonel \ | mips64orion | mips64orionel \ | mips64r5900 | mips64r5900el \ | mips64vr | mips64vrel \ | mips64vr4100 | mips64vr4100el \ | mips64vr4300 | mips64vr4300el \ | mips64vr5000 | mips64vr5000el \ | mips64vr5900 | mips64vr5900el \ | mipsisa32 | mipsisa32el \ | mipsisa32r2 | mipsisa32r2el \ | mipsisa64 | mipsisa64el \ | mipsisa64r2 | mipsisa64r2el \ | mipsisa64sb1 | mipsisa64sb1el \ | mipsisa64sr71k | mipsisa64sr71kel \ | mipsr5900 | mipsr5900el \ | mipstx39 | mipstx39el \ | mn10200 | mn10300 \ | moxie \ | mt \ | msp430 \ | nds32 | nds32le | nds32be \ | nios | nios2 | nios2eb | nios2el \ | ns16k | ns32k \ | open8 \ | or1k | or32 \ | pdp10 | pdp11 | pj | pjl \ | powerpc | powerpc64 | powerpc64le | powerpcle \ | pyramid \ | rl78 | rx \ | score \ | sh | sh[1234] | sh[24]a | sh[24]aeb | sh[23]e | sh[34]eb | sheb | shbe | shle | sh[1234]le | sh3ele \ | sh64 | sh64le \ | sparc | sparc64 | sparc64b | sparc64v | sparc86x | sparclet | sparclite \ | sparcv8 | sparcv9 | sparcv9b | sparcv9v \ | spu \ | tahoe | tic4x | tic54x | tic55x | tic6x | tic80 | tron \ | ubicom32 \ | v850 | v850e | v850e1 | v850e2 | v850es | v850e2v3 \ | we32k \ | x86 | xc16x | xstormy16 | xtensa \ | z8k | z80) basic_machine=$basic_machine-unknown ;; c54x) basic_machine=tic54x-unknown ;; c55x) basic_machine=tic55x-unknown ;; c6x) basic_machine=tic6x-unknown ;; m6811 | m68hc11 | m6812 | m68hc12 | m68hcs12x | picochip) basic_machine=$basic_machine-unknown os=-none ;; m88110 | m680[12346]0 | m683?2 | m68360 | m5200 | v70 | w65 | z8k) ;; ms1) basic_machine=mt-unknown ;; strongarm | thumb | xscale) basic_machine=arm-unknown ;; xgate) basic_machine=$basic_machine-unknown os=-none ;; xscaleeb) basic_machine=armeb-unknown ;; xscaleel) basic_machine=armel-unknown ;; # We use `pc' rather than `unknown' # because (1) that's what they normally are, and # (2) the word "unknown" tends to confuse beginning users. i*86 | x86_64) basic_machine=$basic_machine-pc ;; # Object if more than one company name word. *-*-*) echo Invalid configuration \`$1\': machine \`$basic_machine\' not recognized 1>&2 exit 1 ;; # Recognize the basic CPU types with company name. 580-* \ | a29k-* \ | aarch64-* | aarch64_be-* \ | alpha-* | alphaev[4-8]-* | alphaev56-* | alphaev6[78]-* \ | alpha64-* | alpha64ev[4-8]-* | alpha64ev56-* | alpha64ev6[78]-* \ | alphapca5[67]-* | alpha64pca5[67]-* | arc-* | arceb-* \ | arm-* | armbe-* | armle-* | armeb-* | armv*-* \ | avr-* | avr32-* \ | be32-* | be64-* \ | bfin-* | bs2000-* \ | c[123]* | c30-* | [cjt]90-* | c4x-* \ | c8051-* | clipper-* | craynv-* | cydra-* \ | d10v-* | d30v-* | dlx-* \ | elxsi-* \ | f30[01]-* | f700-* | fido-* | fr30-* | frv-* | fx80-* \ | h8300-* | h8500-* \ | hppa-* | hppa1.[01]-* | hppa2.0-* | hppa2.0[nw]-* | hppa64-* \ | hexagon-* \ | i*86-* | i860-* | i960-* | ia64-* \ | ip2k-* | iq2000-* \ | le32-* | le64-* \ | lm32-* \ | m32c-* | m32r-* | m32rle-* \ | m68000-* | m680[012346]0-* | m68360-* | m683?2-* | m68k-* \ | m88110-* | m88k-* | maxq-* | mcore-* | metag-* \ | microblaze-* | microblazeel-* \ | mips-* | mipsbe-* | mipseb-* | mipsel-* | mipsle-* \ | mips16-* \ | mips64-* | mips64el-* \ | mips64octeon-* | mips64octeonel-* \ | mips64orion-* | mips64orionel-* \ | mips64r5900-* | mips64r5900el-* \ | mips64vr-* | mips64vrel-* \ | mips64vr4100-* | mips64vr4100el-* \ | mips64vr4300-* | mips64vr4300el-* \ | mips64vr5000-* | mips64vr5000el-* \ | mips64vr5900-* | mips64vr5900el-* \ | mipsisa32-* | mipsisa32el-* \ | mipsisa32r2-* | mipsisa32r2el-* \ | mipsisa64-* | mipsisa64el-* \ | mipsisa64r2-* | mipsisa64r2el-* \ | mipsisa64sb1-* | mipsisa64sb1el-* \ | mipsisa64sr71k-* | mipsisa64sr71kel-* \ | mipsr5900-* | mipsr5900el-* \ | mipstx39-* | mipstx39el-* \ | mmix-* \ | mt-* \ | msp430-* \ | nds32-* | nds32le-* | nds32be-* \ | nios-* | nios2-* | nios2eb-* | nios2el-* \ | none-* | np1-* | ns16k-* | ns32k-* \ | open8-* \ | orion-* \ | pdp10-* | pdp11-* | pj-* | pjl-* | pn-* | power-* \ | powerpc-* | powerpc64-* | powerpc64le-* | powerpcle-* \ | pyramid-* \ | rl78-* | romp-* | rs6000-* | rx-* \ | sh-* | sh[1234]-* | sh[24]a-* | sh[24]aeb-* | sh[23]e-* | sh[34]eb-* | sheb-* | shbe-* \ | shle-* | sh[1234]le-* | sh3ele-* | sh64-* | sh64le-* \ | sparc-* | sparc64-* | sparc64b-* | sparc64v-* | sparc86x-* | sparclet-* \ | sparclite-* \ | sparcv8-* | sparcv9-* | sparcv9b-* | sparcv9v-* | sv1-* | sx?-* \ | tahoe-* \ | tic30-* | tic4x-* | tic54x-* | tic55x-* | tic6x-* | tic80-* \ | tile*-* \ | tron-* \ | ubicom32-* \ | v850-* | v850e-* | v850e1-* | v850es-* | v850e2-* | v850e2v3-* \ | vax-* \ | we32k-* \ | x86-* | x86_64-* | xc16x-* | xps100-* \ | xstormy16-* | xtensa*-* \ | ymp-* \ | z8k-* | z80-*) ;; # Recognize the basic CPU types without company name, with glob match. xtensa*) basic_machine=$basic_machine-unknown ;; # Recognize the various machine names and aliases which stand # for a CPU type and a company and sometimes even an OS. 386bsd) basic_machine=i386-unknown os=-bsd ;; 3b1 | 7300 | 7300-att | att-7300 | pc7300 | safari | unixpc) basic_machine=m68000-att ;; 3b*) basic_machine=we32k-att ;; a29khif) basic_machine=a29k-amd os=-udi ;; abacus) basic_machine=abacus-unknown ;; adobe68k) basic_machine=m68010-adobe os=-scout ;; alliant | fx80) basic_machine=fx80-alliant ;; altos | altos3068) basic_machine=m68k-altos ;; am29k) basic_machine=a29k-none os=-bsd ;; amd64) basic_machine=x86_64-pc ;; amd64-*) basic_machine=x86_64-`echo $basic_machine | sed 's/^[^-]*-//'` ;; amdahl) basic_machine=580-amdahl os=-sysv ;; amiga | amiga-*) basic_machine=m68k-unknown ;; amigaos | amigados) basic_machine=m68k-unknown os=-amigaos ;; amigaunix | amix) basic_machine=m68k-unknown os=-sysv4 ;; apollo68) basic_machine=m68k-apollo os=-sysv ;; apollo68bsd) basic_machine=m68k-apollo os=-bsd ;; aros) basic_machine=i386-pc os=-aros ;; aux) basic_machine=m68k-apple os=-aux ;; balance) basic_machine=ns32k-sequent os=-dynix ;; blackfin) basic_machine=bfin-unknown os=-linux ;; blackfin-*) basic_machine=bfin-`echo $basic_machine | sed 's/^[^-]*-//'` os=-linux ;; bluegene*) basic_machine=powerpc-ibm os=-cnk ;; c54x-*) basic_machine=tic54x-`echo $basic_machine | sed 's/^[^-]*-//'` ;; c55x-*) basic_machine=tic55x-`echo $basic_machine | sed 's/^[^-]*-//'` ;; c6x-*) basic_machine=tic6x-`echo $basic_machine | sed 's/^[^-]*-//'` ;; c90) basic_machine=c90-cray os=-unicos ;; cegcc) basic_machine=arm-unknown os=-cegcc ;; convex-c1) basic_machine=c1-convex os=-bsd ;; convex-c2) basic_machine=c2-convex os=-bsd ;; convex-c32) basic_machine=c32-convex os=-bsd ;; convex-c34) basic_machine=c34-convex os=-bsd ;; convex-c38) basic_machine=c38-convex os=-bsd ;; cray | j90) basic_machine=j90-cray os=-unicos ;; craynv) basic_machine=craynv-cray os=-unicosmp ;; cr16 | cr16-*) basic_machine=cr16-unknown os=-elf ;; crds | unos) basic_machine=m68k-crds ;; crisv32 | crisv32-* | etraxfs*) basic_machine=crisv32-axis ;; cris | cris-* | etrax*) basic_machine=cris-axis ;; crx) basic_machine=crx-unknown os=-elf ;; da30 | da30-*) basic_machine=m68k-da30 ;; decstation | decstation-3100 | pmax | pmax-* | pmin | dec3100 | decstatn) basic_machine=mips-dec ;; decsystem10* | dec10*) basic_machine=pdp10-dec os=-tops10 ;; decsystem20* | dec20*) basic_machine=pdp10-dec os=-tops20 ;; delta | 3300 | motorola-3300 | motorola-delta \ | 3300-motorola | delta-motorola) basic_machine=m68k-motorola ;; delta88) basic_machine=m88k-motorola os=-sysv3 ;; dicos) basic_machine=i686-pc os=-dicos ;; djgpp) basic_machine=i586-pc os=-msdosdjgpp ;; dpx20 | dpx20-*) basic_machine=rs6000-bull os=-bosx ;; dpx2* | dpx2*-bull) basic_machine=m68k-bull os=-sysv3 ;; ebmon29k) basic_machine=a29k-amd os=-ebmon ;; elxsi) basic_machine=elxsi-elxsi os=-bsd ;; encore | umax | mmax) basic_machine=ns32k-encore ;; es1800 | OSE68k | ose68k | ose | OSE) basic_machine=m68k-ericsson os=-ose ;; fx2800) basic_machine=i860-alliant ;; genix) basic_machine=ns32k-ns ;; gmicro) basic_machine=tron-gmicro os=-sysv ;; go32) basic_machine=i386-pc os=-go32 ;; h3050r* | hiux*) basic_machine=hppa1.1-hitachi os=-hiuxwe2 ;; h8300hms) basic_machine=h8300-hitachi os=-hms ;; h8300xray) basic_machine=h8300-hitachi os=-xray ;; h8500hms) basic_machine=h8500-hitachi os=-hms ;; harris) basic_machine=m88k-harris os=-sysv3 ;; hp300-*) basic_machine=m68k-hp ;; hp300bsd) basic_machine=m68k-hp os=-bsd ;; hp300hpux) basic_machine=m68k-hp os=-hpux ;; hp3k9[0-9][0-9] | hp9[0-9][0-9]) basic_machine=hppa1.0-hp ;; hp9k2[0-9][0-9] | hp9k31[0-9]) basic_machine=m68000-hp ;; hp9k3[2-9][0-9]) basic_machine=m68k-hp ;; hp9k6[0-9][0-9] | hp6[0-9][0-9]) basic_machine=hppa1.0-hp ;; hp9k7[0-79][0-9] | hp7[0-79][0-9]) basic_machine=hppa1.1-hp ;; hp9k78[0-9] | hp78[0-9]) # FIXME: really hppa2.0-hp basic_machine=hppa1.1-hp ;; hp9k8[67]1 | hp8[67]1 | hp9k80[24] | hp80[24] | hp9k8[78]9 | hp8[78]9 | hp9k893 | hp893) # FIXME: really hppa2.0-hp basic_machine=hppa1.1-hp ;; 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merlin) basic_machine=ns32k-utek os=-sysv ;; microblaze*) basic_machine=microblaze-xilinx ;; mingw64) basic_machine=x86_64-pc os=-mingw64 ;; mingw32) basic_machine=i686-pc os=-mingw32 ;; mingw32ce) basic_machine=arm-unknown os=-mingw32ce ;; miniframe) basic_machine=m68000-convergent ;; *mint | -mint[0-9]* | *MiNT | *MiNT[0-9]*) basic_machine=m68k-atari os=-mint ;; mips3*-*) basic_machine=`echo $basic_machine | sed -e 's/mips3/mips64/'` ;; mips3*) basic_machine=`echo $basic_machine | sed -e 's/mips3/mips64/'`-unknown ;; monitor) basic_machine=m68k-rom68k os=-coff ;; morphos) basic_machine=powerpc-unknown os=-morphos ;; msdos) basic_machine=i386-pc os=-msdos ;; ms1-*) basic_machine=`echo $basic_machine | sed -e 's/ms1-/mt-/'` ;; msys) basic_machine=i686-pc os=-msys ;; mvs) basic_machine=i370-ibm os=-mvs ;; nacl) basic_machine=le32-unknown os=-nacl ;; ncr3000) basic_machine=i486-ncr os=-sysv4 ;; netbsd386) basic_machine=i386-unknown os=-netbsd ;; netwinder) basic_machine=armv4l-rebel os=-linux ;; news | news700 | news800 | news900) basic_machine=m68k-sony os=-newsos ;; news1000) basic_machine=m68030-sony os=-newsos ;; news-3600 | risc-news) basic_machine=mips-sony os=-newsos ;; necv70) basic_machine=v70-nec os=-sysv ;; next | m*-next ) basic_machine=m68k-next case $os in -nextstep* ) ;; -ns2*) os=-nextstep2 ;; *) os=-nextstep3 ;; esac ;; nh3000) basic_machine=m68k-harris os=-cxux ;; nh[45]000) basic_machine=m88k-harris os=-cxux ;; nindy960) basic_machine=i960-intel os=-nindy ;; mon960) basic_machine=i960-intel os=-mon960 ;; nonstopux) basic_machine=mips-compaq os=-nonstopux ;; np1) basic_machine=np1-gould ;; neo-tandem) basic_machine=neo-tandem ;; nse-tandem) basic_machine=nse-tandem ;; nsr-tandem) basic_machine=nsr-tandem ;; op50n-* | op60c-*) basic_machine=hppa1.1-oki os=-proelf ;; openrisc | openrisc-*) basic_machine=or32-unknown ;; os400) basic_machine=powerpc-ibm os=-os400 ;; OSE68000 | ose68000) basic_machine=m68000-ericsson os=-ose ;; os68k) basic_machine=m68k-none os=-os68k ;; pa-hitachi) basic_machine=hppa1.1-hitachi os=-hiuxwe2 ;; paragon) basic_machine=i860-intel os=-osf ;; parisc) basic_machine=hppa-unknown os=-linux ;; parisc-*) basic_machine=hppa-`echo $basic_machine | sed 's/^[^-]*-//'` os=-linux ;; pbd) basic_machine=sparc-tti ;; pbb) basic_machine=m68k-tti ;; pc532 | pc532-*) basic_machine=ns32k-pc532 ;; pc98) basic_machine=i386-pc ;; pc98-*) basic_machine=i386-`echo $basic_machine | sed 's/^[^-]*-//'` ;; pentium | p5 | k5 | k6 | nexgen | viac3) basic_machine=i586-pc ;; pentiumpro | p6 | 6x86 | athlon | athlon_*) basic_machine=i686-pc ;; pentiumii | pentium2 | pentiumiii | pentium3) basic_machine=i686-pc ;; pentium4) basic_machine=i786-pc ;; pentium-* | p5-* | k5-* | k6-* | nexgen-* | viac3-*) basic_machine=i586-`echo $basic_machine | sed 's/^[^-]*-//'` ;; pentiumpro-* | p6-* | 6x86-* | athlon-*) basic_machine=i686-`echo $basic_machine | sed 's/^[^-]*-//'` ;; pentiumii-* | pentium2-* | pentiumiii-* | pentium3-*) basic_machine=i686-`echo $basic_machine | sed 's/^[^-]*-//'` ;; pentium4-*) basic_machine=i786-`echo $basic_machine | sed 's/^[^-]*-//'` ;; pn) basic_machine=pn-gould ;; power) basic_machine=power-ibm ;; ppc | ppcbe) basic_machine=powerpc-unknown ;; ppc-* | ppcbe-*) basic_machine=powerpc-`echo $basic_machine | sed 's/^[^-]*-//'` ;; ppcle | powerpclittle | ppc-le | powerpc-little) basic_machine=powerpcle-unknown ;; ppcle-* | powerpclittle-*) basic_machine=powerpcle-`echo $basic_machine | sed 's/^[^-]*-//'` ;; ppc64) basic_machine=powerpc64-unknown ;; ppc64-*) basic_machine=powerpc64-`echo $basic_machine | sed 's/^[^-]*-//'` ;; ppc64le | powerpc64little | ppc64-le | powerpc64-little) basic_machine=powerpc64le-unknown ;; ppc64le-* | powerpc64little-*) basic_machine=powerpc64le-`echo $basic_machine | sed 's/^[^-]*-//'` ;; ps2) basic_machine=i386-ibm ;; pw32) basic_machine=i586-unknown os=-pw32 ;; rdos | rdos64) basic_machine=x86_64-pc os=-rdos ;; rdos32) basic_machine=i386-pc os=-rdos ;; rom68k) basic_machine=m68k-rom68k os=-coff ;; rm[46]00) basic_machine=mips-siemens ;; rtpc | rtpc-*) basic_machine=romp-ibm ;; s390 | s390-*) basic_machine=s390-ibm ;; s390x | s390x-*) basic_machine=s390x-ibm ;; sa29200) basic_machine=a29k-amd os=-udi ;; sb1) basic_machine=mipsisa64sb1-unknown ;; sb1el) basic_machine=mipsisa64sb1el-unknown ;; sde) basic_machine=mipsisa32-sde os=-elf ;; sei) basic_machine=mips-sei os=-seiux ;; sequent) basic_machine=i386-sequent ;; sh) basic_machine=sh-hitachi os=-hms ;; sh5el) basic_machine=sh5le-unknown ;; sh64) basic_machine=sh64-unknown ;; sparclite-wrs | simso-wrs) basic_machine=sparclite-wrs os=-vxworks ;; sps7) basic_machine=m68k-bull os=-sysv2 ;; spur) basic_machine=spur-unknown ;; st2000) basic_machine=m68k-tandem ;; stratus) basic_machine=i860-stratus os=-sysv4 ;; strongarm-* | thumb-*) basic_machine=arm-`echo $basic_machine | sed 's/^[^-]*-//'` ;; sun2) basic_machine=m68000-sun ;; sun2os3) basic_machine=m68000-sun os=-sunos3 ;; sun2os4) basic_machine=m68000-sun os=-sunos4 ;; sun3os3) basic_machine=m68k-sun os=-sunos3 ;; sun3os4) basic_machine=m68k-sun os=-sunos4 ;; sun4os3) basic_machine=sparc-sun os=-sunos3 ;; sun4os4) basic_machine=sparc-sun os=-sunos4 ;; sun4sol2) basic_machine=sparc-sun os=-solaris2 ;; sun3 | sun3-*) basic_machine=m68k-sun ;; sun4) basic_machine=sparc-sun ;; sun386 | sun386i | roadrunner) basic_machine=i386-sun ;; sv1) basic_machine=sv1-cray os=-unicos ;; symmetry) basic_machine=i386-sequent os=-dynix ;; t3e) basic_machine=alphaev5-cray os=-unicos ;; t90) basic_machine=t90-cray os=-unicos ;; tile*) basic_machine=$basic_machine-unknown os=-linux-gnu ;; tx39) basic_machine=mipstx39-unknown ;; tx39el) basic_machine=mipstx39el-unknown ;; toad1) basic_machine=pdp10-xkl os=-tops20 ;; tower | tower-32) basic_machine=m68k-ncr ;; tpf) basic_machine=s390x-ibm os=-tpf ;; udi29k) basic_machine=a29k-amd os=-udi ;; ultra3) basic_machine=a29k-nyu os=-sym1 ;; v810 | necv810) basic_machine=v810-nec os=-none ;; vaxv) basic_machine=vax-dec os=-sysv ;; vms) basic_machine=vax-dec os=-vms ;; vpp*|vx|vx-*) basic_machine=f301-fujitsu ;; vxworks960) basic_machine=i960-wrs os=-vxworks ;; vxworks68) basic_machine=m68k-wrs os=-vxworks ;; vxworks29k) basic_machine=a29k-wrs os=-vxworks ;; w65*) basic_machine=w65-wdc os=-none ;; w89k-*) basic_machine=hppa1.1-winbond os=-proelf ;; xbox) basic_machine=i686-pc os=-mingw32 ;; xps | xps100) basic_machine=xps100-honeywell ;; xscale-* | xscalee[bl]-*) basic_machine=`echo $basic_machine | sed 's/^xscale/arm/'` ;; ymp) basic_machine=ymp-cray os=-unicos ;; z8k-*-coff) basic_machine=z8k-unknown os=-sim ;; z80-*-coff) basic_machine=z80-unknown os=-sim ;; none) basic_machine=none-none os=-none ;; # Here we handle the default manufacturer of certain CPU types. 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-sinix*) os=-sysv4 ;; -tpf*) os=-tpf ;; -triton*) os=-sysv3 ;; -oss*) os=-sysv3 ;; -svr4) os=-sysv4 ;; -svr3) os=-sysv3 ;; -sysvr4) os=-sysv4 ;; # This must come after -sysvr4. -sysv*) ;; -ose*) os=-ose ;; -es1800*) os=-ose ;; -xenix) os=-xenix ;; -*mint | -mint[0-9]* | -*MiNT | -MiNT[0-9]*) os=-mint ;; -aros*) os=-aros ;; -zvmoe) os=-zvmoe ;; -dicos*) os=-dicos ;; -nacl*) ;; -none) ;; *) # Get rid of the `-' at the beginning of $os. os=`echo $os | sed 's/[^-]*-//'` echo Invalid configuration \`$1\': system \`$os\' not recognized 1>&2 exit 1 ;; esac else # Here we handle the default operating systems that come with various machines. # The value should be what the vendor currently ships out the door with their # machine or put another way, the most popular os provided with the machine. # Note that if you're going to try to match "-MANUFACTURER" here (say, # "-sun"), then you have to tell the case statement up towards the top # that MANUFACTURER isn't an operating system. 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We pick the logical manufacturer. vendor=unknown case $basic_machine in *-unknown) case $os in -riscix*) vendor=acorn ;; -sunos*) vendor=sun ;; -cnk*|-aix*) vendor=ibm ;; -beos*) vendor=be ;; -hpux*) vendor=hp ;; -mpeix*) vendor=hp ;; -hiux*) vendor=hitachi ;; -unos*) vendor=crds ;; -dgux*) vendor=dg ;; -luna*) vendor=omron ;; -genix*) vendor=ns ;; -mvs* | -opened*) vendor=ibm ;; -os400*) vendor=ibm ;; -ptx*) vendor=sequent ;; -tpf*) vendor=ibm ;; -vxsim* | -vxworks* | -windiss*) vendor=wrs ;; -aux*) vendor=apple ;; -hms*) vendor=hitachi ;; -mpw* | -macos*) vendor=apple ;; -*mint | -mint[0-9]* | -*MiNT | -MiNT[0-9]*) vendor=atari ;; -vos*) vendor=stratus ;; esac basic_machine=`echo $basic_machine | sed "s/unknown/$vendor/"` ;; esac echo $basic_machine$os exit # Local variables: # eval: (add-hook 'write-file-hooks 'time-stamp) # time-stamp-start: "timestamp='" # time-stamp-format: "%:y-%02m-%02d" # time-stamp-end: "'" # End: libotr-4.1.1/Protocol-v3.html0000664000175000017500000023025412667026252012766 00000000000000 Off-the-Record Messaging Protocol version 3

Off-the-Record Messaging Protocol version 3

This document describes version 3 of the Off-the-Record Messaging protocol. The main changes over version 2 include:

  • Both fragmented and unfragmented messages contain sender and recipient instance tags. This avoids an issue on IM networks that always relay all messages to all sessions of a client who is logged in multiple times. In this situation, OTR clients can attempt to establish an OTR session indefinitely if there are interleaving messages from each of the sessions.
  • An extra symmetric key is derived during AKE. This may be used for secure communication over a different channel (e.g., file transfer, voice chat).

Very high level overview

OTR assumes a network model which provides in-order delivery of messages, but that some messages may not get delivered at all (for example, if the user disconnects). There may be an active attacker, who is allowed to perform a Denial of Service attack, but not to learn the contents of messages.

  1. Alice signals to Bob that she would like (using an OTR Query Message) or is willing (using a whitespace-tagged plaintext message) to use OTR to communicate. Either mechanism should convey the version(s) of OTR that Alice is willing to use.
  2. Bob initiates the authenticated key exchange (AKE) with Alice. Versions 2 and 3 of OTR use a variant of the SIGMA protocol as its AKE.
  3. Alice and Bob exchange Data Messages to send information to each other.

High level overview

Requesting an OTR conversation

There are two ways Alice can inform Bob that she is willing to use the OTR protocol to speak with him: by sending him the OTR Query Message, or by including a special "tag" consisting of whitespace characters in one of her messages to him. Each method also includes a way for Alice to communicate to Bob which versions of the OTR protocol she is willing to speak with him.

The semantics of the OTR Query Message are that Alice is requesting that Bob start an OTR conversation with her (if, of course, he is willing and able to do so). On the other hand, the semantics of the whitespace tag are that Alice is merely indicating to Bob that she is willing and able to have an OTR conversation with him. If Bob has a policy of "only use OTR when it's explicitly requested", for example, then he would start an OTR conversation upon receiving an OTR Query Message, but would not upon receiving the whitespace tag.

Authenticated Key Exchange (AKE)

This section outlines the version of the SIGMA protocol used as the AKE. All exponentiations are done modulo a particular 1536-bit prime, and g is a generator of that group, as indicated in the detailed description below. Alice and Bob's long-term authentication public keys are pubA and pubB, respectively.

The general idea is that Alice and Bob do an unauthenticated Diffie-Hellman (D-H) key exchange to set up an encrypted channel, and then do mutual authentication inside that channel.

Bob will be initiating the AKE with Alice.

  • Bob:
    1. Picks a random value r (128 bits)
    2. Picks a random value x (at least 320 bits)
    3. Sends Alice AESr(gx), HASH(gx)
  • Alice:
    1. Picks a random value y (at least 320 bits)
    2. Sends Bob gy
  • Bob:
    1. Verifies that Alice's gy is a legal value (2 <= gy <= modulus-2)
    2. Computes s = (gy)x
    3. Computes two AES keys c, c' and four MAC keys m1, m1', m2, m2' by hashing s in various ways
    4. Picks keyidB, a serial number for his D-H key gx
    5. Computes MB = MACm1(gx, gy, pubB, keyidB)
    6. Computes XB = pubB, keyidB, sigB(MB)
    7. Sends Alice r, AESc(XB), MACm2(AESc(XB))
  • Alice:
    1. Uses r to decrypt the value of gx sent earlier
    2. Verifies that HASH(gx) matches the value sent earlier
    3. Verifies that Bob's gx is a legal value (2 <= gx <= modulus-2)
    4. Computes s = (gx)y (note that this will be the same as the value of s Bob calculated)
    5. Computes two AES keys c, c' and four MAC keys m1, m1', m2, m2' by hashing s in various ways (the same as Bob)
    6. Uses m2 to verify MACm2(AESc(XB))
    7. Uses c to decrypt AESc(XB) to obtain XB = pubB, keyidB, sigB(MB)
    8. Computes MB = MACm1(gx, gy, pubB, keyidB)
    9. Uses pubB to verify sigB(MB)
    10. Picks keyidA, a serial number for her D-H key gy
    11. Computes MA = MACm1'(gy, gx, pubA, keyidA)
    12. Computes XA = pubA, keyidA, sigA(MA)
    13. Sends Bob AESc'(XA), MACm2'(AESc'(XA))
  • Bob:
    1. Uses m2' to verify MACm2'(AESc'(XA))
    2. Uses c' to decrypt AESc'(XA) to obtain XA = pubA, keyidA, sigA(MA)
    3. Computes MA = MACm1'(gy, gx, pubA, keyidA)
    4. Uses pubA to verify sigA(MA)
  • If all of the verifications succeeded, Alice and Bob now know each other's Diffie-Hellman public keys, and share the value s. Alice is assured that s is known by someone with access to the private key corresponding to pubB, and similarly for Bob.

Exchanging data

This section outlines the method used to protect data being exchanged between Alice and Bob. As above, all exponentiations are done modulo a particular 1536-bit prime, and g is a generator of that group, as indicated in the detailed description below.

Suppose Alice has a message (msg) to send to Bob.

  • Alice:
    1. Picks the most recent of her own D-H encryption keys that Bob has acknowledged receiving (by using it in a Data Message, or failing that, in the AKE). Let keyA be that key, and let keyidA be its serial number.
    2. If the above key is Alice's most recent key, she generates a new D-H key (next_dh), to get the serial number keyidA+1.
    3. Picks the most recent of Bob's D-H encryption keys that she has received from him (either in a Data Message or in the AKE). Let keyB by that key, and let keyidB be its serial number.
    4. Uses Diffie-Hellman to compute a shared secret from the two keys keyA and keyB, and generates the sending AES key, ek, and the sending MAC key, mk, as detailed below.
    5. Collects any old MAC keys that were used in previous messages, but will never again be used (because their associated D-H keys are no longer the most recent ones) into a list, oldmackeys.
    6. Picks a value of the counter, ctr, so that the triple (keyA, keyB, ctr) is never the same for more than one Data Message Alice sends to Bob.
    7. Computes TA = (keyidA, keyidB, next_dh, ctr, AES-CTRek,ctr(msg))
    8. Sends Bob TA, MACmk(TA), oldmackeys
  • Bob:
    1. Uses Diffie-Hellman to compute a shared secret from the two keys labelled by keyidA and keyidB, and generates the receiving AES key, ek, and the receiving MAC key, mk, as detailed below. (These will be the same as the keys Alice generated, above.)
    2. Uses mk to verify MACmk(TA).
    3. Uses ek and ctr to decrypt AES-CTRek,ctr(msg).

Socialist Millionaires' Protocol (SMP)

While data messages are being exchanged, either Alice or Bob may run SMP to detect impersonation or man-in-the-middle attacks. As above, all exponentiations are done modulo a particular 1536-bit prime, and g1 is a generator of that group. All sent values include zero-knowledge proofs that they were generated according to this protocol, as indicated in the detailed description below.

Suppose Alice and Bob have secret information x and y respectively, and they wish to know whether x = y. The Socialist Millionaires' Protocol allows them to compare x and y without revealing any other information than the value of (x == y). For OTR, the secrets contain information about both parties' long-term authentication public keys, as well as information entered by the users themselves. If x = y, this means that Alice and Bob entered the same secret information, and so must be the same entities who established that secret to begin with.

Assuming that Alice begins the exchange:

  • Alice:
    1. Picks random exponents a2 and a3
    2. Sends Bob g2a = g1a2 and g3a = g1a3
  • Bob:
    1. Picks random exponents b2 and b3
    2. Computes g2b = g1b2 and g3b = g1b3
    3. Computes g2 = g2ab2 and g3 = g3ab3
    4. Picks random exponent r
    5. Computes Pb = g3r and Qb = g1r g2y
    6. Sends Alice g2b, g3b, Pb and Qb
  • Alice:
    1. Computes g2 = g2ba2 and g3 = g3ba3
    2. Picks random exponent s
    3. Computes Pa = g3s and Qa = g1s g2x
    4. Computes Ra = (Qa / Qb) a3
    5. Sends Bob Pa, Qa and Ra
  • Bob:
    1. Computes Rb = (Qa / Qb) b3
    2. Computes Rab = Rab3
    3. Checks whether Rab == (Pa / Pb)
    4. Sends Alice Rb
  • Alice:
    1. Computes Rab = Rba3
    2. Checks whether Rab == (Pa / Pb)
  • If everything is done correctly, then Rab should hold the value of (Pa / Pb) times (g2a3b3)(x - y), which means that the test at the end of the protocol will only succeed if x == y. Further, since g2a3b3 is a random number not known to any party, if x is not equal to y, no other information is revealed.

Details of the protocol

Unencoded messages

This section describes the messages in the OTR protocol that are not base-64 encoded binary.

OTR Query Messages

If Alice wishes to communicate to Bob that she would like to use OTR, she sends a message containing the string "?OTR" followed by an indication of what versions of OTR she is willing to use with Bob. The version string is constructed as follows:

  • If she is willing to use OTR version 1, the version string must start with "?".
  • If she is willing to use OTR versions other than 1, a "v" followed by the byte identifiers for the versions in question, followed by "?". The byte identifier for OTR version 2 is "2", and similarly for 3. The order of the identifiers between the "v" and the "?" does not matter, but none should be listed more than once.

For example:

"?OTR?"
Version 1 only
"?OTRv2?"
Version 2 only
"?OTRv23?"
Versions 2 and 3
"?OTR?v2?"
Versions 1 and 2
"?OTRv24x?"
Version 2, and hypothetical future versions identified by "4" and "x"
"?OTR?v24x?"
Versions 1, 2, and hypothetical future versions identified by "4" and "x"
"?OTR?v?"
Also version 1 only
"?OTRv?"
A bizarre claim that Alice would like to start an OTR conversation, but is unwilling to speak any version of the protocol

These strings may be hidden from the user (for example, in an attribute of an HTML tag), and/or may be accompanied by an explanitory message ("Alice has requested an Off-the-Record private conversation."). If Bob is willing to use OTR with Alice (with a protocol version that Alice has offered), he should start the AKE.

Tagged plaintext messages

If Alice wishes to communicate to Bob that she is willing to use OTR, she can attach a special whitespace tag to any plaintext message she sends him. This tag may occur anywhere in the message, and may be hidden from the user (as in the Query Messages, above).

The tag consists of the following 16 bytes, followed by one or more sets of 8 bytes indicating the version of OTR Alice is willing to use:

  • Always send "\x20\x09\x20\x20\x09\x09\x09\x09" "\x20\x09\x20\x09\x20\x09\x20\x20", followed by one or more of:
  • "\x20\x09\x20\x09\x20\x20\x09\x20" to indicate a willingness to use OTR version 1 with Bob (note: this string must come before all other whitespace version tags, if it is present, for backwards compatibility)
  • "\x20\x20\x09\x09\x20\x20\x09\x20" to indicate a willingness to use OTR version 2 with Bob
  • "\x20\x20\x09\x09\x20\x20\x09\x09" to indicate a willingness to use OTR version 3 with Bob

If Bob is willing to use OTR with Alice (with a protocol version that Alice has offered), he should start the AKE. On the other hand, if Alice receives a plaintext message from Bob (rather than an initiation of the AKE), she should stop sending him the whitespace tag.

OTR Error Messages

Any message containing the string "?OTR Error:" is an OTR Error Message. The following part of the message should contain human-readable details of the error.

Encoded messages

This section describes the byte-level format of the base-64 encoded binary OTR messages. The binary form of each of the messages is described below. To transmit one of these messages, construct the ASCII string consisting of the five bytes "?OTR:", followed by the base-64 encoding of the binary form of the message, followed by the byte ".".

For the Diffie-Hellman group computations, the group is the one defined in RFC 3526 with 1536-bit modulus (hex, big-endian):

FFFFFFFF FFFFFFFF C90FDAA2 2168C234 C4C6628B 80DC1CD1
29024E08 8A67CC74 020BBEA6 3B139B22 514A0879 8E3404DD
EF9519B3 CD3A431B 302B0A6D F25F1437 4FE1356D 6D51C245
E485B576 625E7EC6 F44C42E9 A637ED6B 0BFF5CB6 F406B7ED
EE386BFB 5A899FA5 AE9F2411 7C4B1FE6 49286651 ECE45B3D
C2007CB8 A163BF05 98DA4836 1C55D39A 69163FA8 FD24CF5F
83655D23 DCA3AD96 1C62F356 208552BB 9ED52907 7096966D
670C354E 4ABC9804 F1746C08 CA237327 FFFFFFFF FFFFFFFF

and a generator (g) of 2. Note that this means that whenever you see a Diffie-Hellman exponentiation in this document, it always means that the exponentiation is done modulo the above 1536-bit number.

Data types

Bytes (BYTE):
1 byte unsigned value
Shorts (SHORT):
2 byte unsigned value, big-endian
Ints (INT):
4 byte unsigned value, big-endian
Multi-precision integers (MPI):
4 byte unsigned len, big-endian
len byte unsigned value, big-endian
(MPIs must use the minimum-length encoding; i.e. no leading 0x00 bytes. This is important when calculating public key fingerprints.)
Opaque variable-length data (DATA):
4 byte unsigned len, big-endian
len byte data
Initial CTR-mode counter value (CTR):
8 bytes data
Message Authentication Code (MAC):
20 bytes MAC data

Public keys, signatures, and fingerprints

OTR users have long-lived public keys that they use for authentication (but not encryption). The current version of the OTR protocol only supports DSA public keys, but there is a key type marker for future extensibility.

OTR public authentication DSA key (PUBKEY):
Pubkey type (SHORT)
  • DSA public keys have type 0x0000
p (MPI)
q (MPI)
g (MPI)
y (MPI)
  • (p,q,g,y) are the DSA public key parameters

OTR public keys are used to generate signatures; different types of keys produce signatures in different formats. The format for a signature made by a DSA public key is as follows:

DSA signature (SIG):
(len is the length of the DSA public parameter q, which in current implementations must be 20 bytes, or 160 bits)
len byte unsigned r, big-endian
len byte unsigned s, big-endian

OTR public keys have fingerprints, which are hex strings that serve as identifiers for the public key. The fingerprint is calculated by taking the SHA-1 hash of the byte-level representation of the public key. However, there is an exception for backwards compatibility: if the pubkey type is 0x0000, those two leading 0x00 bytes are omitted from the data to be hashed. The encoding assures that, assuming the hash function itself has no useful collisions, and DSA keys have length less than 524281 bits (500 times larger than most DSA keys), no two public keys will have the same fingerprint.

Instance Tags

Clients include instance tags in all OTR version 3 messages. Instance tags are 32-bit values that are intended to be persistent. If the same client is logged into the same account from multiple locations, the intention is that the client will have different instance tags at each location. As shown below, OTR version 3 messages (fragmented and unfragmented) include the source and destination instance tags. If a client receives a message that lists a destination instance tag different from its own, the client should discard the message.

The smallest valid instance tag is 0x00000100. It is appropriate to set the destination instance tag to '0' when an actual destination instance tag is not known at the time the message is prepared. If a client receives a message with the sender instance tag set to less than 0x00000100, it should discard the message. Similarly, if a client receives a message with the recipient instance tag set to greater than 0 but less than 0x00000100, it should discard the message.

This avoids an issue on IM networks that always relay all messages to all sessions of a client who is logged in multiple times. In this situation, OTR clients can attempt to establish an OTR session indefinitely if there are interleaving messages from each of the sessions.

D-H Commit Message

This is the first message of the AKE. Bob sends it to Alice to commit to a choice of D-H encryption key (but the key itself is not yet revealed). This allows the secure session id to be much shorter than in OTR version 1, while still preventing a man-in-the-middle attack on it.

Protocol version (SHORT)
The version number of this protocol is 0x0003.
Message type (BYTE)
The D-H Commit Message has type 0x02.
Sender Instance tag (INT)
The instance tag of the person sending this message.
Receiver Instance tag (INT)
The instance tag of the intended recipient. For a commit message this will often be 0, since the other party may not have identified their instance tag yet.
Encrypted gx (DATA)
Produce this field as follows:
  • Choose a random value r (128 bits)
  • Choose a random value x (at least 320 bits)
  • Serialize gx as an MPI, gxmpi. [gxmpi will probably be 196 bytes long, starting with "\x00\x00\x00\xc0".]
  • Encrypt gxmpi using AES128-CTR, with key r and initial counter value 0. The result will be the same length as gxmpi.
  • Encode this encrypted value as the DATA field.
Hashed gx (DATA)
This is the SHA256 hash of gxmpi.

D-H Key Message

This is the second message of the AKE. Alice sends it to Bob, and it simply consists of Alice's D-H encryption key.

Protocol version (SHORT)
The version number of this protocol is 0x0003.
Message type (BYTE)
The D-H Key Message has type 0x0a.
Sender Instance tag (INT)
The instance tag of the person sending this message.
Receiver Instance tag (INT)
The instance tag of the intended recipient.
gy (MPI)
Choose a random value y (at least 320 bits), and calculate gy.

Reveal Signature Message

This is the third message of the AKE. Bob sends it to Alice, revealing his D-H encryption key (and thus opening an encrypted channel), and also authenticating himself (and the parameters of the channel, preventing a man-in-the-middle attack on the channel itself) to Alice.

Protocol version (SHORT)
The version number of this protocol is 0x0003.
Message type (BYTE)
The Reveal Signature Message has type 0x11.
Sender Instance tag (INT)
The instance tag of the person sending this message.
Receiver Instance tag (INT)
The instance tag of the intended recipient.
Revealed key (DATA)
This is the value r picked earlier.
Encrypted signature (DATA)
This field is calculated as follows:
  • Compute the Diffie-Hellman shared secret s.
  • Use s to compute an AES key c and two MAC keys m1 and m2, as specified below.
  • Select keyidB, a serial number for the D-H key computed earlier. It is an INT, and must be greater than 0.
  • Compute the 32-byte value MB to be the SHA256-HMAC of the following data, using the key m1:
    gx (MPI)
    gy (MPI)
    pubB (PUBKEY)
    keyidB (INT)
  • Let XB be the following structure:
    pubB (PUBKEY)
    keyidB (INT)
    sigB(MB) (SIG)
    This is the signature, using the private part of the key pubB, of the 32-byte MB (taken modulo q instead of being truncated (as described in FIPS-186), and not hashed again).
  • Encrypt XB using AES128-CTR with key c and initial counter value 0.
  • Encode this encrypted value as the DATA field.
MAC'd signature (MAC)
This is the SHA256-HMAC-160 (that is, the first 160 bits of the SHA256-HMAC) of the encrypted signature field (including the four-byte length), using the key m2.

Signature Message

This is the final message of the AKE. Alice sends it to Bob, authenticating herself and the channel parameters to him.

Protocol version (SHORT)
The version number of this protocol is 0x0003.
Message type (BYTE)
The Signature Message has type 0x12.
Sender Instance tag (INT)
The instance tag of the person sending this message.
Receiver Instance tag (INT)
The instance tag of the intended recipient.
Encrypted signature (DATA)
This field is calculated as follows:
  • Compute the Diffie-Hellman shared secret s.
  • Use s to compute an AES key c' and two MAC keys m1' and m2', as specified below.
  • Select keyidA, a serial number for the D-H key computed earlier. It is an INT, and must be greater than 0.
  • Compute the 32-byte value MA to be the SHA256-HMAC of the following data, using the key m1':
    gy (MPI)
    gx (MPI)
    pubA (PUBKEY)
    keyidA (INT)
  • Let XA be the following structure:
    pubA (PUBKEY)
    keyidA (INT)
    sigA(MA) (SIG)
    This is the signature, using the private part of the key pubA, of the 32-byte MA (which does not need to be hashed again to produce the signature).
  • Encrypt XA using AES128-CTR with key c' and initial counter value 0.
  • Encode this encrypted value as the DATA field.
MAC'd signature (MAC)
This is the SHA256-HMAC-160 (that is, the first 160 bits of the SHA256-HMAC) of the encrypted signature field (including the four-byte length), using the key m2'.

Data Message

This message is used to transmit a private message to the correspondent. It is also used to reveal old MAC keys.

The plaintext message (either before encryption, or after decryption) consists of a human-readable message (encoded in UTF-8, optionally with HTML markup), optionally followed by:

  • a single NUL (a BYTE with value 0x00), and
  • zero or more TLV (type/length/value) records (with no padding between them)

Each TLV record is of the form:

Type (SHORT)
The type of this record. Records with unrecognized types should be ignored.
Length (SHORT)
The length of the following field
Value (len BYTEs) [where len is the value of the Length field]
Any pertinent data for the record type.

Some TLV examples:

\x00\x01\x00\x00
A TLV of type 1, containing no data
\x00\x00\x00\x05\x68\x65\x6c\x6c\x6f
A TLV of type 0, containing the value "hello"

The currently defined TLV record types are:

Type 0: Padding
The value may be an arbitrary amount of data, which should be ignored. This type can be used to disguise the length of the plaintext message.
Type 1: Disconnected
If the user requests to close the private connection, you may send a message (possibly with empty human-readable part) containing a record with this TLV type just before you discard the session keys, and transition to MSGSTATE_PLAINTEXT (see below). If you receive a TLV record of this type, you should transition to MSGSTATE_FINISHED (see below), and inform the user that his correspondent has closed his end of the private connection, and the user should do the same.
Type 2: SMP Message 1
The value represents an initiating message of the Socialist Millionaires' Protocol, described below.
Type 3: SMP Message 2
The value represents the second message in an instance of SMP.
Type 4: SMP Message 3
The value represents the third message in an instance of SMP.
Type 5: SMP Message 4
The value represents the final message in an instance of SMP.
Type 6: SMP Abort Message
If the user cancels SMP prematurely or encounters an error in the protocol and cannot continue, you may send a message (possibly with empty human-readable part) with this TLV type to instruct the other party's client to abort the protocol. The associated length should be zero and the associated value should be empty. If you receive a TLV of this type, you should change the SMP state to SMP_EXPECT1 (see below).
Type 7: SMP Message 1Q
Like a SMP Message 1, but whose value begins with a NUL-terminated user-specified question.
Type 8: Extra symmetric key
If you wish to use the extra symmetric key, compute it yourself as outlined in the section "Extra symmetric key", below. Then send this type 8 TLV to your buddy to indicate that you'd like to use the extra symmetric key for something. The value of the TLV begins with a 4-byte indication of what this symmetric key will be used for (file transfer, voice encryption, etc.). After that, the contents are use-specific (which file, etc.). There are no currently defined uses. Note that the value of the key itself is not placed into the TLV; your buddy will compute it on his/her own.

SMP Message TLVs (types 2-5) all carry data sharing the same general format:

MPI count (INT)
The number of MPIs contained in the remainder of the TLV.
MPI 1 (MPI)
The first MPI of the TLV, serialized into a byte array.
MPI 2 (MPI)
The second MPI of the TLV, serialized into a byte array.
etc.

There should be as many MPIs as declared in the MPI count field. For the exact MPIs passed for each SMP TLV, see the SMP state machine below.

A message with an empty human-readable part (the plaintext is of zero length, or starts with a NUL) is a "heartbeat" packet, and should not be displayed to the user. (But it's still useful to effect key rotations.)

Data Message format:

Protocol version (SHORT)
The version number of this protocol is 0x0003.
Message type (BYTE)
The Data Message has type 0x03.
Sender Instance tag (INT)
The instance tag of the person sending this message.
Receiver Instance tag (INT)
The instance tag of the intended recipient.
Flags (BYTE)
The bitwise-OR of the flags for this message. Usually you should set this to 0x00. The only currently defined flag is:
IGNORE_UNREADABLE (0x01)
If you receive a Data Message with this flag set, and you are unable to decrypt the message or verify the MAC (because, for example, you don't have the right keys), just ignore the message instead of producing some kind of error or notification to the user.
Sender keyid (INT)
Must be strictly greater than 0, and increment by 1 with each key change
Recipient keyid (INT)
Must therefore be strictly greater than 0, as the receiver has no key with id 0.
The sender and recipient keyids are those used to encrypt and MAC this message.
DH y (MPI)
The *next* [i.e. sender_keyid+1] public key for the sender
Top half of counter init (CTR)
This should monotonically increase (as a big-endian value) for each message sent with the same (sender keyid, recipient keyid) pair, and must not be all 0x00.
Encrypted message (DATA)
Using the appropriate encryption key (see below) derived from the sender's and recipient's DH public keys (with the keyids given in this message), perform AES128 counter-mode (CTR) encryption of the message. The initial counter is a 16-byte value whose first 8 bytes are the above "top half of counter init" value, and whose last 8 bytes are all 0x00. Note that counter mode does not change the length of the message, so no message padding needs to be done. If you *want* to do message padding (to disguise the length of your message), use the above TLV of type 0.
Authenticator (MAC)
The SHA1-HMAC, using the appropriate MAC key (see below) of everything from the Protocol version to the end of the encrypted message
Old MAC keys to be revealed (DATA)
See "Revealing MAC Keys", below.

Socialist Millionaires' Protocol (SMP)

The Socialist Millionaires' Protocol allows two parties with secret information x and y respectively to check whether (x==y) without revealing any additional information about the secrets. The protocol used by OTR is based on the work of Boudot, Schoenmakers and Traore (2001). A full justification for its use in OTR is made by Alexander and Goldberg, in a paper published in 2007. The following is a technical account of what is transmitted during the course of the protocol.

Secret information

The secret information x and y compared during this protocol contains not only information entered by the users, but also information unique to the conversation in which SMP takes place. Specifically, the format is:

Version (BYTE)
The version of SMP used. The version described here is 1.
Initiator fingerprint (20 BYTEs)
The fingerprint that the party initiating SMP is using in the current conversation.
Responder fingerprint (20 BYTEs)
The fingerprint that the party that did not initiate SMP is using in the current conversation.
Secure Session ID
The ssid described below.
User-specified secret
The input string given by the user at runtime.

Then the SHA256 hash of the above is taken, and the digest becomes the actual secret (x or y) to be used in SMP. The additional fields insure that not only do both parties know the same secret input string, but no man-in-the-middle is capable of reading their communication either.

The SMP state machine

Whenever the OTR message state machine has MSGSTATE_ENCRYPTED set (see below), the SMP state machine may progress. If at any point MSGSTATE_ENCRYPTED becomes unset, SMP must abandon its state and return to its initial setup. The SMP state consists of one main variable, as well as information from the partial computations at each protocol step.

Expected Message

This main state variable for SMP controls what SMP-specific TLVs will be accepted. This variable has no effect on type 0 or type 1 TLVs, which are always allowed. smpstate can take one of four values:

SMPSTATE_EXPECT1
This state indicates that only type 2 (SMP message 1) and type 7 (SMP message 1Q) TLVs should be accepted. This is the default state when SMP has not yet begun. This state is also reached whenever an error occurs or SMP is aborted, and the protocol must be restarted from the beginning.
SMPSTATE_EXPECT2
This state indicates that only type 3 TLVs (SMP message 2) should be accepted.
SMPSTATE_EXPECT3
This state indicates that only type 4 TLVs (SMP message 3) should be accepted.
SMPSTATE_EXPECT4
This state indicates that only type 5 TLVs (SMP message 4) should be accepted.

State Transitions

There are 7 actions that an OTR client must handle:

  • Received TLVs:
    • SMP Message 1
    • SMP Message 2
    • SMP Message 3
    • SMP Message 4
    • SMP Abort Message
  • User actions:
    • User requests to begin SMP
    • User requests to abort SMP

The following sections outline what is to be done in each case. They all assume that MSGSTATE_ENCRYPTED is set. For simplicity, they also assume that Alice has begun SMP, and Bob is responding to her.

SMP Hash function

In the following actions, there are many places where a SHA256 hash of an integer followed by one or two MPIs is taken. The input to this hash function is:

Version (BYTE)
This distinguishes calls to the hash function at different points in the protocol, to prevent Alice from replaying Bob's zero knowledge proofs or vice versa.
First MPI (MPI)
The first MPI given as input, serialized in the usual way.
Second MPI (MPI)
The second MPI given as input, if present, serialized in the usual way. If only one MPI is given as input, this field is simply omitted.

Receiving a type 2 TLV (SMP message 1)

SMP message 1 is sent by Alice to begin a DH exchange to determine two new generators, g2 and g3. It contains the following mpi values:

g2a
Alice's half of the DH exchange to determine g2.
c2, D2
A zero-knowledge proof that Alice knows the exponent associated with her transmitted value g2a.
g3a
Alice's half of the DH exchange to determine g3.
c3, D3
A zero-knowledge proof that Alice knows the exponent associated with her transmitted value g3a.

A type 7 (SMP Message 1Q) TLV is the same as the above, but is preceded by a user-specified question, which is associated with the user-specified portion of the secret.

When Bob receives this TLV he should do:

If smpstate is not SMPSTATE_EXPECT1:
Set smpstate to SMPSTATE_EXPECT1 and send a type 6 TLV (SMP abort) to Alice.
If smpstate is SMPSTATE_EXPECT1:
Verify Alice's zero-knowledge proofs for g2a and g3a:
  1. Check that both g2a and g3a are >= 2 and <= modulus-2.
  2. Check that c2 = SHA256(1, g1D2 g2ac2).
  3. Check that c3 = SHA256(2, g1D3 g3ac3).
Create a type 3 TLV (SMP message 2) and send it to Alice:
  1. Determine Bob's secret input y, which is to be compared to Alice's secret x.
  2. Pick random exponents b2 and b3. These will used during the DH exchange to pick generators.
  3. Pick random exponents r2, r3, r4, r5 and r6. These will be used to add a blinding factor to the final results, and to generate zero-knowledge proofs that this message was created honestly.
  4. Compute g2b = g1b2 and g3b = g1b3
  5. Generate a zero-knowledge proof that the exponent b2 is known by setting c2 = SHA256(3, g1r2) and D2 = r2 - b2 c2 mod q. In the zero-knowledge proofs the D values are calculated modulo q = (p - 1) / 2, where p is the same 1536-bit prime as elsewhere. The random exponents are 1536-bit numbers.
  6. Generate a zero-knowledge proof that the exponent b3 is known by setting c3 = SHA256(4, g1r3) and D3 = r3 - b3 c3 mod q.
  7. Compute g2 = g2ab2 and g3 = g3ab3
  8. Compute Pb = g3r4 and Qb = g1r4 g2y
  9. Generate a zero-knowledge proof that Pb and Qb were created according to the protocol by setting cP = SHA256(5, g3r5, g1r5 g2r6), D5 = r5 - r4 cP mod q and D6 = r6 - y cP mod q.
  10. Store the values of g3a, g2, g3, b3, Pb and Qb for use later in the protocol.
  11. Send Alice a type 3 TLV (SMP message 2) containing g2b, c2, D2, g3b, c3, D3, Pb, Qb, cP, D5 and D6, in that order.
Set smpstate to SMPSTATE_EXPECT3.

Receiving a type 3 TLV (SMP message 2)

SMP message 2 is sent by Bob to complete the DH exchange to determine the new generators, g2 and g3. It also begins the construction of the values used in the final comparison of the protocol. It contains the following mpi values:

g2b
Bob's half of the DH exchange to determine g2.
c2, D2
A zero-knowledge proof that Bob knows the exponent associated with his transmitted value g2b.
g3b
Bob's half of the DH exchange to determine g3.
c3, D3
A zero-knowledge proof that Bob knows the exponent associated with his transmitted value g3b.
Pb, Qb
These values are used in the final comparison to determine if Alice and Bob share the same secret.
cP, D5, D6
A zero-knowledge proof that Pb and Qb were created according to the protcol given above.

When Alice receives this TLV she should do:

If smpstate is not SMPSTATE_EXPECT2:
Set smpstate to SMPSTATE_EXPECT1 and send a type 6 TLV (SMP abort) to Bob.
If smpstate is SMPSTATE_EXPECT2:
Verify Bob's zero-knowledge proofs for g2b, g3b, Pb and Qb:
  1. Check that g2b, g3b, Pb and Qb are >= 2 and <= modulus-2.
  2. Check that c2 = SHA256(3, g1D2 g2bc2).
  3. Check that c3 = SHA256(4, g1D3 g3bc3).
  4. Check that cP = SHA256(5, g3D5 PbcP, g1D5 g2D6 QbcP).
Create a type 4 TLV (SMP message 3) and send it to Bob:
  1. Pick random exponents r4, r5, r6 and r7. These will be used to add a blinding factor to the final results, and to generate zero-knowledge proofs that this message was created honestly.
  2. Compute g2 = g2ba2 and g3 = g3ba3
  3. Compute Pa = g3r4 and Qa = g1r4 g2x
  4. Generate a zero-knowledge proof that Pa and Qa were created according to the protocol by setting cP = SHA256(6, g3r5, g1r5 g2r6), D5 = r5 - r4 cP mod q and D6 = r6 - x cP mod q.
  5. Compute Ra = (Qa / Qb) a3
  6. Generate a zero-knowledge proof that Ra was created according to the protocol by setting cR = SHA256(7, g1r7, (Qa / Qb)r7) and D7 = r7 - a3 cR mod q.
  7. Store the values of g3b, (Pa / Pb), (Qa / Qb) and a3 for use later in the protocol.
  8. Send Bob a type 4 TLV (SMP message 3) containing Pa, Qa, cP, D5, D6, Ra, cR and D7 in that order.
Set smpstate to SMPSTATE_EXPECT4.

Receiving a type 4 TLV (SMP message 3)

SMP message 3 is Alice's final message in the SMP exchange. It has the last of the information required by Bob to determine if x = y. It contains the following mpi values:

Pa, Qa
These values are used in the final comparison to determine if Alice and Bob share the same secret.
cP, D5, D6
A zero-knowledge proof that Pa and Qa were created according to the protcol given above.
Ra
This value is used in the final comparison to determine if Alice and Bob share the same secret.
cR, D7
A zero-knowledge proof that Ra was created according to the protcol given above.

When Bob receives this TLV he should do:

If smpstate is not SMPSTATE_EXPECT3:
Set smpstate to SMPSTATE_EXPECT1 and send a type 6 TLV (SMP abort) to Bob.
If smpstate is SMPSTATE_EXPECT3:
Verify Alice's zero-knowledge proofs for Pa, Qa and Ra:
  1. Check that Pa, Qa and Ra are >= 2 and <= modulus-2.
  2. Check that cP = SHA256(6, g3D5 PacP, g1D5 g2D6 QacP).
  3. Check that cR = SHA256(7, g1D7 g3acR, (Qa / Qb)D7 RacR).
Create a type 5 TLV (SMP message 4) and send it to Alice:
  1. Pick a random exponent r7. This will be used to generate Bob's final zero-knowledge proof that this message was created honestly.
  2. Compute Rb = (Qa / Qb) b3
  3. Generate a zero-knowledge proof that Rb was created according to the protocol by setting cR = SHA256(8, g1r7, (Qa / Qb)r7) and D7 = r7 - b3 cR mod q.
  4. Send Alice a type 5 TLV (SMP message 4) containing Rb, cR and D7 in that order.
Check whether the protocol was successful:
  1. Compute Rab = Rab3.
  2. Determine if x = y by checking the equivalent condition that (Pa / Pb) = Rab.
Set smpstate to SMPSTATE_EXPECT1, as no more messages are expected from Alice.

Receiving a type 5 TLV (SMP message 4)

SMP message 4 is Bob's final message in the SMP exchange. It has the last of the information required by Alice to determine if x = y. It contains the following mpi values:

Rb
This value is used in the final comparison to determine if Alice and Bob share the same secret.
cR, D7
A zero-knowledge proof that Rb was created according to the protcol given above.

When Alice receives this TLV she should do:

If smpstate is not SMPSTATE_EXPECT4:
Set smpstate to SMPSTATE_EXPECT1 and send a type 6 TLV (SMP abort) to Bob.
If smpstate is SMPSTATE_EXPECT4:
Verify Bob's zero-knowledge proof for Rb:
  1. Check that Rb is >= 2 and <= modulus-2.
  2. Check that cR = SHA256(8, g1D7 g3bcR, (Qa / Qb)D7 RbcR).
Check whether the protocol was successful:
  1. Compute Rab = Rba3.
  2. Determine if x = y by checking the equivalent condition that (Pa / Pb) = Rab.
Set smpstate to SMPSTATE_EXPECT1, as no more messages are expected from Bob.

User requests to begin SMP

If smpstate is not set to SMPSTATE_EXPECT1:
SMP is already underway. If you wish to restart SMP, send a type 6 TLV (SMP abort) to the other party and then proceed as if smpstate was SMPSTATE_EXPECT1. Otherwise, you may simply continue the current SMP instance.
If smpstate is set to SMPSTATE_EXPECT1:
No current exchange is underway. In this case, Alice should create a valid type 2 TLV (SMP message 1) as follows:
  1. Determine her secret input x, which is to be compared to Bob's secret y.
  2. Pick random values a2 and a3 (1536 bits). These will be Alice's exponents for the DH exchange to pick generators.
  3. Pick random values r2 and r3 (1536 bits). These will be used to generate zero-knowledge proofs that this message was created according to the protocol.
  4. Compute g2a = g1a2 and g3a = g1a3
  5. Generate a zero-knowledge proof that the exponent a2 is known by setting c2 = SHA256(1, g1r2) and D2 = r2 - a2 c2 mod q.
  6. Generate a zero-knowledge proof that the exponent a3 is known by setting c3 = SHA256(2, g1r3) and D3 = r3 - a3 c3 mod q.
  7. Store the values of x, a2 and a3 for use later in the protocol.
  8. Send Bob a type 2 TLV (SMP message 1) containing g2a, c2, D2, g3a, c3 and D3 in that order.
Set smpstate to SMPSTATE_EXPECT2.

User requests to abort SMP

In all cases, send a type 6 TLV (SMP abort) to the correspondent and set smpstate to SMPSTATE_EXPECT1.

Key Management

For each correspondent, keep track of:

Your two most recent DH public/private key pairs
our_dh[our_keyid] (most recent) and our_dh[our_keyid-1] (previous)
His two most recent DH public keys
their_y[their_keyid] (most recent) and their_y[their_keyid-1] (previous)

When starting a private conversation with a correspondent, generate two DH key pairs for yourself, and set our_keyid = 2. Note that all DH key pairs should have a private part that is at least 320 bits long.

When you send AKE messages:
Send the public part of our_dh[our_keyid-1], with the keyid field, of course, set to (our_keyid-1).
Upon completing the AKE:
If the specified keyid equals either their_keyid or their_keyid-1, and the DH pubkey contained in the AKE messages matches the one you've stored for that keyid, that's great. Otherwise, forget all values of their_y[], and of their_keyid, and set their_keyid to the keyid value given in the AKE messages, and their_y[their_keyid] to the DH pubkey value given in the AKE messages. their_y[their_keyid-1] should be set to NULL.
When you send a Data Message:
Set the sender keyid to (our_keyid-1), and the recipient keyid to (their_keyid). Set the DH pubkey in the Data message to the public part of our_dh[our_keyid]. Use our_dh[our_keyid-1] and their_y[their_keyid] to calculate session keys, as outlined below. Use the "sending AES key" to encrypt the message, and the "sending MAC key" to calculate its MAC.
When you receive a Data Message:
Use the keyids in the message to select which of your DH key pairs and which of his DH pubkeys to use to verify the MAC. If the keyids do not represent either the most recent key or the previous key (for either the sender or receiver), reject the message. Also reject the message if the sender keyid is their_keyid-1, but their_y[their_keyid-1] is NULL.

Otherwise, calculate the session keys as outlined below. Use the "receiving MAC key" to verify the MAC on the message. If it does not verify, reject the message.

Check that the counter in the Data message is strictly larger than the last counter you saw using this pair of keys. If not, reject the message.

If the MAC verifies, decrypt the message using the "receiving AES key".

Finally, check if keys need rotation:

  • If the "recipient keyid" in the Data message equals our_keyid, then he's seen the public part of our most recent DH key pair, so you must securely forget our_dh[our_keyid-1], increment our_keyid, and set our_dh[our_keyid] to a new DH key pair which you generate.
  • If the "sender keyid" in the Data message equals their_keyid, increment their_keyid, and set their_y[their_keyid] to the new DH pubkey specified in the Data message.

Computing AES keys, MAC keys, and the secure session id

OTR uses Diffie-Hellman to calculate shared secrets in the usual way: if Bob knows x, and tells Alice gx, and Alice knows y, and tells Bob gy, then they each can calculate s = gxy: Alice calculates (gx)y, and Bob calculates (gy)x.

During the AKE, Alice and Bob each calculate s in this way, and then they each compute seven values based on s:

  • A 64-bit secure session id, ssid
  • Two 128-bit AES encryption keys, c and c'
  • Four 256-bit SHA256-HMAC keys, m1, m2, m1', and m2'

This is done in the following way:

  • Write the value of s as a minimum-length MPI, as specified above (4-byte big-endian len, len-byte big-endian value). Let this (4+len)-byte value be "secbytes".
  • For a given byte b, define h2(b) to be the 256-bit output of the SHA256 hash of the (5+len) bytes consisting of the byte b followed by secbytes.
  • Let ssid be the first 64 bits of h2(0x00).
  • Let c be the first 128 bits of h2(0x01), and let c' be the second 128 bits of h2(0x01).
  • Let m1 be h2(0x02).
  • Let m2 be h2(0x03).
  • Let m1' be h2(0x04).
  • Let m2' be h2(0x05).

c, m1, and m2 are used to create and verify the Reveal Signature Message; c', m1', and m2' are used to create and verify the Signature message.

If the user requests to see the secure session id, it should be displayed as two 32-bit bigendian unsigned values, in C "%08x" format. If the user transmitted the Reveal Signature message during the AKE that produced this ssid, then display the first 32 bits in bold, and the second 32 bits in non-bold. If the user transmitted the Signature message instead, display the first 32 bits in non-bold, and the second 32 bits in bold. This session id can be used by the parties to verify (say, over the telephone, assuming the parties recognize each others' voices) that there is no man-in-the-middle by having each side read his bold part to the other. [Note that this only needs to be done in the event that the users do not trust that their long-term signature keys have not been compromised.]

During the exchange of Data Messages, Alice and Bob use the keyids listed in the Data Message to select Diffie-Hellman keys to use to compute s, and the (4+len)-byte value of secbytes, as above.

From this, they calculate four values:

  • Two 128-bit AES encryption keys, the "sending AES key", and the "receiving AES key"
  • Two 160-bit SHA1-HMAC keys, the "sending MAC key", and the "receiving MAC key"

These keys are calculated as follows:

  • Alice (and similarly for Bob) determines if she is the "low" end or the "high" end of this Data Message. If Alice's public key is numerically greater than Bob's public key, then she is the "high" end. Otherwise, she is the "low" end. Note that who is the "low" end and who is the "high" end can change every time a new D-H public key is exchanged in a Data Message.
  • She sets the values of "sendbyte" and "recvbyte" according to whether she is the the "low" or the "high" end of the Data Message:
    • If she is the "high" end, she sets "sendbyte" to 0x01 and "recvbyte" to 0x02.
    • If she is the "low" end, she sets "sendbyte" to 0x02 and "recvbyte" to 0x01.
  • For a given byte b, define h1(b) to be the 160-bit output of the SHA-1 hash of the (5+len) bytes consisting of the byte b, followed by secbytes.
  • The "sending AES key" is the first 16 bytes of h1(sendbyte).
  • The "sending MAC key" is the 20-byte SHA-1 hash of the 16-byte sending AES key.
  • The "receiving AES key" is the first 16 bytes of h1(recvbyte).
  • The "receiving MAC key" is the 20-byte SHA-1 hash of the 16-byte receiving AES key.

Extra symmetric key

OTR version 3 defines an additional symmetric key that can be derived by the communicating parties to use for application-specific purposes, such as file transfer, voice encryption, etc. When one party wishes to use the extra symmetric key, he or she creates a type 8 TLV attached to a Data Message (see above). The key itself is then derived using the same "secbytes" used to compute the encryption and MAC keys used to protect the Data Message. The extra symmetric key is derived by calculating h2(0xFF) and keeping the entire 256 bits, using the same definition of h2 as above.

Upon receipt of the Data Message containing the type 8 TLV, the recipient will compute the extra symmetric key in the same way. Note that the value of the extra symmetric key is not contained in the TLV itself.

Revealing MAC keys

Whenever you are about to forget either one of your old D-H key pairs, or one of your correspondent's old D-H public keys, take all of the receiving MAC keys that were generated by that key (note that there are up to two: the receiving MAC keys produced by the pairings of that key with each of two of the other side's keys; but note that you only need to take MAC keys that were actually used to verify a MAC on a message), and put them (as a set of concatenated 20-byte values) into the "Old MAC keys to be revealed" section of the next Data Message you send. This in done to allow the forgeability of OTR transcripts: once the MAC keys are revealed, anyone can modify an OTR message and still have it appear valid. But since we don't reveal the MAC keys until their corresponding pubkeys are being discarded, there is no danger of accepting a message as valid which uses a MAC key which has already been revealed.

Fragmentation

Some networks may have a maximum message size that is too small to contain an encoded OTR message. In that event, the sender may choose to split the message into a number of fragments. This section describes the format of the fragments. All OTR version 2 and 3 clients must be able to assemble received fragments, but performing fragmentation on outgoing messages is optional.

Transmitting Fragments
If you have information about the maximum size of message you are able to send (the different IM networks have different limits), you can fragment an encoded OTR message as follows:
  • Start with the OTR message as you would normally transmit it. For example, a Data Message would start with "?OTR:AAED" and end with ".".
  • Break it up into sufficiently small pieces. Let the number of pieces be (n), and the pieces be piece[1],piece[2],...,piece[n].
  • Transmit (n) OTR version 3 fragmented messages with the following (printf-like) structure (as k runs from 1 to n inclusive):

    "?OTR|%x|%x,%hu,%hu,%s," , sender_instance, receiver_instance, k , n , piece[k]

    OTR version 2 messages get fragmented in a similar format, but without the instance tags fields:

    "?OTR,%hu,%hu,%s," , k , n , piece[k]

  • Note that k and n are unsigned short ints (2 bytes), and each has a maximum value of 65535. Also, each piece[k] must be non-empty. The instance tags (if applicable) and the k and n values may have leading zeroes.

Note that fragments are not themselves messages that can be fragmented: you can't fragment a fragment.

Receiving Fragments:
If you receive a message containing "?OTR|" (note that you'll need to check for this _before_ checking for any of the other "?OTR:" markers):
  • Parse it as the printf statement above into k, n, and piece.
  • If the recipient's own instance tag does not match the listed receiver instance tag, and the listed receiver instance tag is not zero, the recipient should discard the message and optionally pass along a warning for the user.
  • Let (K,N) be your currently stored fragment number, and F be your currently stored fragment. [If you have no currently stored fragment, then K = N = 0 and F = "".]
  • If k == 0 or n == 0 or k > n, discard this (illegal) fragment.
  • If k == 1:
    • Forget any stored fragment you may have
    • Store (piece) as F.
    • Store (k,n) as (K,N).
  • If n == N and k == K+1:
    • Append (piece) to F.
    • Store (k,n) as (K,N).
  • Otherwise:
    • Forget any stored fragment you may have
    • Store "" as F.
    • Store (0,0) as (K,N).

After this, if N > 0 and K == N, treat F as the received message.

If you receive a non-OTR message, or an unfragmented message, forget any stored fragment you may have, store "" as F and store (0,0) as (K,N).

OTR version 2 fragmented messages follow the same behaviour as described above, but do not list the sender and receiver instance tags.

For example, here is a Data Message we would like to transmit over a network with an unreasonably small maximum message size:

?OTR:AAMDJ+MVmSfjFZcAAAAAAQAAAAIAAADA1g5IjD1ZGLDVQEyCgCyn9hb
rL3KAbGDdzE2ZkMyTKl7XfkSxh8YJnudstiB74i4BzT0W2haClg6dMary/jo
9sMudwmUdlnKpIGEKXWdvJKT+hQ26h9nzMgEditLB8vjPEWAJ6gBXvZrY6ZQ
rx3gb4v0UaSMOMiR5sB7Eaulb2Yc6RmRnnlxgUUC2alosg4WIeFN951PLjSc
ajVba6dqlDi+q1H5tPvI5SWMN7PCBWIJ41+WvF+5IAZzQZYgNaVLbAAAAAAA
AAAEAAAAHwNiIi5Ms+4PsY/L2ipkTtquknfx6HodLvk3RAAAAAA==.

We could fragment this message into (for example) three pieces:

?OTR|5a73a599|27e31597,00001,00003,?OTR:AAMDJ+MVmSfjFZcAAAAA
AQAAAAIAAADA1g5IjD1ZGLDVQEyCgCyn9hbrL3KAbGDdzE2ZkMyTKl7XfkSx
h8YJnudstiB74i4BzT0W2haClg6dMary/jo9sMudwmUdlnKpIGEKXWdvJKT+
hQ26h9nzMgEditLB8v,
?OTR|5a73a599|27e31597,00002,00003,jPEWAJ6gBXvZrY6ZQrx3gb4v0
UaSMOMiR5sB7Eaulb2Yc6RmRnnlxgUUC2alosg4WIeFN951PLjScajVba6dq
lDi+q1H5tPvI5SWMN7PCBWIJ41+WvF+5IAZzQZYgNaVLbAAAAAAAAAAEAAAA
HwNiIi5Ms+4PsY/L2i,
?OTR|5a73a599|27e31597,00003,00003,pkTtquknfx6HodLvk3RAAAAAA
==.,

The protocol state machine

An OTR client maintains separate state for every correspondent. For example, Alice may have an active OTR conversation with Bob, while having an unprotected conversation with Charlie. This state consists of two main state variables, as well as some other information (such as encryption keys). The two main state variables are:

Message state

The message state variable, msgstate, controls what happens to outgoing messages typed by the user. It can take one of three values:

MSGSTATE_PLAINTEXT
This state indicates that outgoing messages are sent without encryption. This is the state that is used before an OTR conversation is initiated. This is the initial state, and the only way to subsequently enter this state is for the user to explicitly request to do so via some UI operation.
MSGSTATE_ENCRYPTED
This state indicates that outgoing messages are sent encrypted. This is the state that is used during an OTR conversation. The only way to enter this state is for the authentication state machine (below) to successfully complete.
MSGSTATE_FINISHED
This state indicates that outgoing messages are not delivered at all. This state is entered only when the other party indicates he has terminated his side of the OTR conversation. For example, if Alice and Bob are having an OTR conversation, and Bob instructs his OTR client to end its private session with Alice (for example, by logging out), Alice will be notified of this, and her client will switch to MSGSTATE_FINISHED mode. This prevents Alice from accidentally sending a message to Bob in plaintext. (Consider what happens if Alice was in the middle of typing a private message to Bob when he suddenly logs out, just as Alice hits Enter.)

Authentication state

The authentication state variable, authstate, can take one of four values (plus one extra for OTR version 1 compatibility):

AUTHSTATE_NONE
This state indicates that the authentication protocol is not currently in progress. This is the initial state.
AUTHSTATE_AWAITING_DHKEY
After Bob initiates the authentication protocol by sending Alice the D-H Commit Message, he enters this state to await Alice's reply.
AUTHSTATE_AWAITING_REVEALSIG
After Alice receives Bob's D-H Commit Message, and replies with her own D-H Key Message, she enters this state to await Bob's reply.
AUTHSTATE_AWAITING_SIG
After Bob receives Alice's D-H Key Message, and replies with his own Reveal Signature Message, he enters this state to await Alice's reply.
AUTHSTATE_V1_SETUP
For OTR version 1 compatibility, if Bob sends a version 1 Key Exchange Message to Alice, he enters this state to await Alice's reply.

After:

  • Alice (in AUTHSTATE_AWAITING_REVEALSIG) receives Bob's Reveal Signature Message (and replies with her own Signature Message), or
  • Bob (in AUTHSTATE_AWAITING_SIG) receives Alice's Signature Message, /li>

then, assuming the signature verifications succeed, the msgstate variable is transitioned to MSGSTATE_ENCRYPTED. Regardless of whether the signature verifications succeed, the authstate variable is transitioned to AUTHSTATE_NONE.

Policies

OTR clients can set different policies for different correspondents. For example, Alice could set up her client so that it speaks only OTR version 3, except with Charlie, who she knows has only an old client; so that it will opportunistically start an OTR conversation whenever it detects the correspondent supports it; or so that it refuses to send non-encrypted messages to Bob, ever.

The policies that can be set (on a global or per-correspondent basis) are any combination of the following boolean flags:

ALLOW_V1
Allow version 1 of the OTR protocol to be used (in general this document will not address OTR protocol version 1; see previous protocol documents for these details).
ALLOW_V2
Allow version 2 of the OTR protocol to be used.
ALLOW_V3
Allow version 3 of the OTR protocol to be used.
REQUIRE_ENCRYPTION
Refuse to send unencrypted messages.
SEND_WHITESPACE_TAG
Advertise your support of OTR using the whitespace tag.
WHITESPACE_START_AKE
Start the OTR AKE when you receive a whitespace tag.
ERROR_START_AKE
Start the OTR AKE when you receive an OTR Error Message.

Note that it is possible for UIs simply to offer the old "combinations" of options, and not ask about each one separately.

State transitions

There are twelve actions an OTR client must handle:

  • Received messages:
    • Plaintext without the whitespace tag
    • Plaintext with the whitespace tag
    • Query Message
    • Error Message
    • D-H Commit Message
    • D-H Key Message
    • Reveal Signature Message
    • Signature Message
    • Data Message
  • User actions:
    • User requests to start an OTR conversation
    • User requests to end an OTR conversation
    • User types a message to be sent

The following sections will outline what actions to take in each case. They all assume that at least one of ALLOW_V1, ALLOW_V2 or ALLOW_V3 is set; if not, then OTR is completely disabled, and no special handling of messages should be done at all. For version 1 messages, please refer to previous OTR protocol documents. For version 3 messages, someone receiving a message with a recipient instance tag specified that does not equal their own should discard the message and optionally warn the user. The exception here is the D-H Commit Message where the recipient instance tag may be 0, indicating that no particular instance is specified.

Receiving plaintext without the whitespace tag

If msgstate is MSGSTATE_PLAINTEXT:
Simply display the message to the user. If REQUIRE_ENCRYPTION is set, warn him that the message was received unencrypted.
If msgstate is MSGSTATE_ENCRYPTED or MSGSTATE_FINISHED:
Display the message to the user, but warn him that the message was received unencrypted.

Receiving plaintext with the whitespace tag

If msgstate is MSGSTATE_PLAINTEXT:
Remove the whitespace tag and display the message to the user. If REQUIRE_ENCRYPTION is set, warn him that the message was received unencrypted.
If msgstate is MSGSTATE_ENCRYPTED or MSGSTATE_FINISHED:
Remove the whitespace tag and display the message to the user, but warn him that the message was received unencrypted.

In any event, if WHITESPACE_START_AKE is set:

If the tag offers OTR version 3 and ALLOW_V3 is set:
Send a version 3 D-H Commit Message, and transition authstate to AUTHSTATE_AWAITING_DHKEY.
Otherwise, if the tag offers OTR version 2 and ALLOW_V2 is set:
Send a version 2 D-H Commit Message, and transition authstate to AUTHSTATE_AWAITING_DHKEY.

Receiving a Query Message

If the query message offers OTR version 3 and ALLOW_V3 is set:
Send a version 3 D-H Commit Message, and transition authstate to AUTHSTATE_AWAITING_DHKEY.
Otherwise, if the message offers OTR version 2 and ALLOW_V2 is set:
Send a version 2 D-H Commit Message, and transition authstate to AUTHSTATE_AWAITING_DHKEY.

Receiving an Error Message

Display the message to the user. If ERROR_START_AKE is set, reply with a Query Message.

User requests to start an OTR conversation

Send an OTR Query Message to the correspondent.

Receiving a D-H Commit Message

If the message is version 2 and ALLOW_V2 is not set, ignore this message. Similarly if the message is version 3 and ALLOW_V3 is not set, ignore the message. Otherwise:

If authstate is AUTHSTATE_NONE:
Reply with a D-H Key Message, and transition authstate to AUTHSTATE_AWAITING_REVEALSIG.
If authstate is AUTHSTATE_AWAITING_DHKEY:
This is the trickiest transition in the whole protocol. It indicates that you have already sent a D-H Commit message to your correspondent, but that he either didn't receive it, or just didn't receive it yet, and has sent you one as well. The symmetry will be broken by comparing the hashed gx you sent in your D-H Commit Message with the one you received, considered as 32-byte unsigned big-endian values.
If yours is the higher hash value:
Ignore the incoming D-H Commit message, but resend your D-H Commit message.
Otherwise:
Forget your old gx value that you sent (encrypted) earlier, and pretend you're in AUTHSTATE_NONE; i.e. reply with a D-H Key Message, and transition authstate to AUTHSTATE_AWAITING_REVEALSIG.
If authstate is AUTHSTATE_AWAITING_REVEALSIG:
Retransmit your D-H Key Message (the same one as you sent when you entered AUTHSTATE_AWAITING_REVEALSIG). Forget the old D-H Commit message, and use this new one instead. There are a number of reasons this might happen, including:
  • Your correspondent simply started a new AKE.
  • Your correspondent resent his D-H Commit message, as specified above.
  • On some networks, like AIM, if your correspondent is logged in multiple times, each of his clients will send a D-H Commit Message in response to a Query Message; resending the same D-H Key Message in response to each of those messages will prevent compounded confusion, since each of his clients will see each of the D-H Key Messages you send. [And the problem gets even worse if you are each logged in multiple times.]
If authstate is AUTHSTATE_AWAITING_SIG or AUTHSTATE_V1_SETUP:
Reply with a new D-H Key message, and transition authstate to AUTHSTATE_AWAITING_REVEALSIG.

Receiving a D-H Key Message

If the message is version 2 and ALLOW_V2 is not set, ignore this message. Similarly if the message is version 3 and ALLOW_V3 is not set, ignore this message. Otherwise:

If authstate is AUTHSTATE_AWAITING_DHKEY:
Reply with a Reveal Signature Message and transition authstate to AUTHSTATE_AWAITING_SIG.
If authstate is AUTHSTATE_AWAITING_SIG:
If this D-H Key message is the same the one you received earlier (when you entered AUTHSTATE_AWAITING_SIG):
Retransmit your Reveal Signature Message.
Otherwise:
Ignore the message.
If authstate is AUTHSTATE_NONE, AUTHSTATE_AWAITING_REVEALSIG, or AUTHSTATE_V1_SETUP:
Ignore the message.

Receiving a Reveal Signature Message

If the message is version 2 and ALLOW_V2 is not set, ignore this message. Similarly if the message is version 3 and ALLOW_V3 is not set, ignore the message. Otherwise:

If authstate is AUTHSTATE_AWAITING_REVEALSIG:
Use the received value of r to decrypt the value of gx received in the D-H Commit Message, and verify the hash therein. Decrypt the encrypted signature, and verify the signature and the MACs. If everything checks out:
  • Reply with a Signature Message.
  • Transition authstate to AUTHSTATE_NONE.
  • Transition msgstate to MSGSTATE_ENCRYPTED.
  • If there is a recent stored message, encrypt it and send it as a Data Message.
Otherwise, ignore the message.
If authstate is AUTHSTATE_NONE, AUTHSTATE_AWAITING_DHKEY, AUTHSTATE_AWAITING_SIG, or AUTHSTATE_V1_SETUP:
Ignore the message.

Receiving a Signature Message

If the message is version 2 and ALLOW_V2 is not set, ignore this message. Similarly if the message is version 3 and ALLOW_V3 is not set, ignore the message. Otherwise:

If authstate is AUTHSTATE_AWAITING_SIG:
Decrypt the encrypted signature, and verify the signature and the MACs. If everything checks out:
  • Transition authstate to AUTHSTATE_NONE.
  • Transition msgstate to MSGSTATE_ENCRYPTED.
  • If there is a recent stored message, encrypt it and send it as a Data Message.
Otherwise, ignore the message.
If authstate is AUTHSTATE_NONE, AUTHSTATE_AWAITING_DHKEY, or AUTHSTATE_AWAITING_REVEALSIG:
Ignore the message.

User types a message to be sent

If msgstate is MSGSTATE_PLAINTEXT:
If REQUIRE_ENCRYPTION is set:
Store the plaintext message for possible retransmission, and send a Query Message.
Otherwise:
If SEND_WHITESPACE_TAG is set, and you have not received a plaintext message from this correspondent since last entering MSGSTATE_PLAINTEXT, attach the whitespace tag to the message. Send the (possibly modified) message as plaintext.
If msgstate is MSGSTATE_ENCRYPTED:
Encrypt the message, and send it as a Data Message. Store the plaintext message for possible retransmission.
If msgstate is MSGSTATE_FINISHED:
Inform the user that the message cannot be sent at this time. Store the plaintext message for possible retransmission.

Receiving a Data Message

If msgstate is MSGSTATE_ENCRYPTED:
Verify the information (MAC, keyids, ctr value, etc.) in the message.
If the verification succeeds:
  • Decrypt the message and display the human-readable part (if non-empty) to the user.
  • Update the D-H encryption keys, if necessary.
  • If you have not sent a message to this correspondent in some (configurable) time, send a "heartbeat" message, consisting of a Data Message encoding an empty plaintext. The heartbeat message should have the IGNORE_UNREADABLE flag set.
  • If the received message contains a TLV type 1, forget all encryption keys for this correspondent, and transition msgstate to MSGSTATE_FINISHED.
Otherwise, inform the user that an unreadable encrypted message was received, and reply with an Error Message.
If msgstate is MSGSTATE_PLAINTEXT or MSGSTATE_FINISHED:
Inform the user that an unreadable encrypted message was received, and reply with an Error Message.

User requests to end an OTR conversation

If msgstate is MSGSTATE_PLAINTEXT:
Do nothing.
If msgstate is MSGSTATE_ENCRYPTED:
Send a Data Message, encoding a message with an empty human-readable part, and TLV type 1. Transition msgstate to MSGSTATE_PLAINTEXT.
If msgstate is MSGSTATE_FINISHED:
Transition msgstate to MSGSTATE_PLAINTEXT.
libotr-4.1.1/ltmain.sh0000644000175000017500000105204412276417211011562 00000000000000 # libtool (GNU libtool) 2.4.2 # Written by Gordon Matzigkeit , 1996 # Copyright (C) 1996, 1997, 1998, 1999, 2000, 2001, 2003, 2004, 2005, 2006, # 2007, 2008, 2009, 2010, 2011 Free Software Foundation, Inc. # This is free software; see the source for copying conditions. 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If bindir is libdir, return empty string, # else relative path ending with a slash; either way, target # file name can be directly appended. if test ! -z "$func_relative_path_result"; then func_stripname './' '' "$func_relative_path_result/" func_relative_path_result=$func_stripname_result fi } # The name of this program: func_dirname_and_basename "$progpath" progname=$func_basename_result # Make sure we have an absolute path for reexecution: case $progpath in [\\/]*|[A-Za-z]:\\*) ;; *[\\/]*) progdir=$func_dirname_result progdir=`cd "$progdir" && pwd` progpath="$progdir/$progname" ;; *) save_IFS="$IFS" IFS=${PATH_SEPARATOR-:} for progdir in $PATH; do IFS="$save_IFS" test -x "$progdir/$progname" && break done IFS="$save_IFS" test -n "$progdir" || progdir=`pwd` progpath="$progdir/$progname" ;; esac # Sed substitution that helps us do robust quoting. It backslashifies # metacharacters that are still active within double-quoted strings. Xsed="${SED}"' -e 1s/^X//' sed_quote_subst='s/\([`"$\\]\)/\\\1/g' # Same as above, but do not quote variable references. double_quote_subst='s/\(["`\\]\)/\\\1/g' # Sed substitution that turns a string into a regex matching for the # string literally. sed_make_literal_regex='s,[].[^$\\*\/],\\&,g' # Sed substitution that converts a w32 file name or path # which contains forward slashes, into one that contains # (escaped) backslashes. A very naive implementation. lt_sed_naive_backslashify='s|\\\\*|\\|g;s|/|\\|g;s|\\|\\\\|g' # Re-`\' parameter expansions in output of double_quote_subst that were # `\'-ed in input to the same. If an odd number of `\' preceded a '$' # in input to double_quote_subst, that '$' was protected from expansion. # Since each input `\' is now two `\'s, look for any number of runs of # four `\'s followed by two `\'s and then a '$'. `\' that '$'. bs='\\' bs2='\\\\' bs4='\\\\\\\\' dollar='\$' sed_double_backslash="\ s/$bs4/&\\ /g s/^$bs2$dollar/$bs&/ s/\\([^$bs]\\)$bs2$dollar/\\1$bs2$bs$dollar/g s/\n//g" # Standard options: opt_dry_run=false opt_help=false opt_quiet=false opt_verbose=false opt_warning=: # func_echo arg... # Echo program name prefixed message, along with the current mode # name if it has been set yet. func_echo () { $ECHO "$progname: ${opt_mode+$opt_mode: }$*" } # func_verbose arg... # Echo program name prefixed message in verbose mode only. func_verbose () { $opt_verbose && func_echo ${1+"$@"} # A bug in bash halts the script if the last line of a function # fails when set -e is in force, so we need another command to # work around that: : } # func_echo_all arg... # Invoke $ECHO with all args, space-separated. func_echo_all () { $ECHO "$*" } # func_error arg... # Echo program name prefixed message to standard error. func_error () { $ECHO "$progname: ${opt_mode+$opt_mode: }"${1+"$@"} 1>&2 } # func_warning arg... # Echo program name prefixed warning message to standard error. func_warning () { $opt_warning && $ECHO "$progname: ${opt_mode+$opt_mode: }warning: "${1+"$@"} 1>&2 # bash bug again: : } # func_fatal_error arg... # Echo program name prefixed message to standard error, and exit. func_fatal_error () { func_error ${1+"$@"} exit $EXIT_FAILURE } # func_fatal_help arg... # Echo program name prefixed message to standard error, followed by # a help hint, and exit. func_fatal_help () { func_error ${1+"$@"} func_fatal_error "$help" } help="Try \`$progname --help' for more information." ## default # func_grep expression filename # Check whether EXPRESSION matches any line of FILENAME, without output. func_grep () { $GREP "$1" "$2" >/dev/null 2>&1 } # func_mkdir_p directory-path # Make sure the entire path to DIRECTORY-PATH is available. func_mkdir_p () { my_directory_path="$1" my_dir_list= if test -n "$my_directory_path" && test "$opt_dry_run" != ":"; then # Protect directory names starting with `-' case $my_directory_path in -*) my_directory_path="./$my_directory_path" ;; esac # While some portion of DIR does not yet exist... while test ! -d "$my_directory_path"; do # ...make a list in topmost first order. Use a colon delimited # list incase some portion of path contains whitespace. my_dir_list="$my_directory_path:$my_dir_list" # If the last portion added has no slash in it, the list is done case $my_directory_path in */*) ;; *) break ;; esac # ...otherwise throw away the child directory and loop my_directory_path=`$ECHO "$my_directory_path" | $SED -e "$dirname"` done my_dir_list=`$ECHO "$my_dir_list" | $SED 's,:*$,,'` save_mkdir_p_IFS="$IFS"; IFS=':' for my_dir in $my_dir_list; do IFS="$save_mkdir_p_IFS" # mkdir can fail with a `File exist' error if two processes # try to create one of the directories concurrently. Don't # stop in that case! $MKDIR "$my_dir" 2>/dev/null || : done IFS="$save_mkdir_p_IFS" # Bail out if we (or some other process) failed to create a directory. test -d "$my_directory_path" || \ func_fatal_error "Failed to create \`$1'" fi } # func_mktempdir [string] # Make a temporary directory that won't clash with other running # libtool processes, and avoids race conditions if possible. If # given, STRING is the basename for that directory. func_mktempdir () { my_template="${TMPDIR-/tmp}/${1-$progname}" if test "$opt_dry_run" = ":"; then # Return a directory name, but don't create it in dry-run mode my_tmpdir="${my_template}-$$" else # If mktemp works, use that first and foremost my_tmpdir=`mktemp -d "${my_template}-XXXXXXXX" 2>/dev/null` if test ! -d "$my_tmpdir"; then # Failing that, at least try and use $RANDOM to avoid a race my_tmpdir="${my_template}-${RANDOM-0}$$" save_mktempdir_umask=`umask` umask 0077 $MKDIR "$my_tmpdir" umask $save_mktempdir_umask fi # If we're not in dry-run mode, bomb out on failure test -d "$my_tmpdir" || \ func_fatal_error "cannot create temporary directory \`$my_tmpdir'" fi $ECHO "$my_tmpdir" } # func_quote_for_eval arg # Aesthetically quote ARG to be evaled later. # This function returns two values: FUNC_QUOTE_FOR_EVAL_RESULT # is double-quoted, suitable for a subsequent eval, whereas # FUNC_QUOTE_FOR_EVAL_UNQUOTED_RESULT has merely all characters # which are still active within double quotes backslashified. func_quote_for_eval () { case $1 in *[\\\`\"\$]*) func_quote_for_eval_unquoted_result=`$ECHO "$1" | $SED "$sed_quote_subst"` ;; *) func_quote_for_eval_unquoted_result="$1" ;; esac case $func_quote_for_eval_unquoted_result in # Double-quote args containing shell metacharacters to delay # word splitting, command substitution and and variable # expansion for a subsequent eval. # Many Bourne shells cannot handle close brackets correctly # in scan sets, so we specify it separately. *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \ ]*|*]*|"") func_quote_for_eval_result="\"$func_quote_for_eval_unquoted_result\"" ;; *) func_quote_for_eval_result="$func_quote_for_eval_unquoted_result" esac } # func_quote_for_expand arg # Aesthetically quote ARG to be evaled later; same as above, # but do not quote variable references. func_quote_for_expand () { case $1 in *[\\\`\"]*) my_arg=`$ECHO "$1" | $SED \ -e "$double_quote_subst" -e "$sed_double_backslash"` ;; *) my_arg="$1" ;; esac case $my_arg in # Double-quote args containing shell metacharacters to delay # word splitting and command substitution for a subsequent eval. # Many Bourne shells cannot handle close brackets correctly # in scan sets, so we specify it separately. *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \ ]*|*]*|"") my_arg="\"$my_arg\"" ;; esac func_quote_for_expand_result="$my_arg" } # func_show_eval cmd [fail_exp] # Unless opt_silent is true, then output CMD. Then, if opt_dryrun is # not true, evaluate CMD. If the evaluation of CMD fails, and FAIL_EXP # is given, then evaluate it. func_show_eval () { my_cmd="$1" my_fail_exp="${2-:}" ${opt_silent-false} || { func_quote_for_expand "$my_cmd" eval "func_echo $func_quote_for_expand_result" } if ${opt_dry_run-false}; then :; else eval "$my_cmd" my_status=$? if test "$my_status" -eq 0; then :; else eval "(exit $my_status); $my_fail_exp" fi fi } # func_show_eval_locale cmd [fail_exp] # Unless opt_silent is true, then output CMD. Then, if opt_dryrun is # not true, evaluate CMD. If the evaluation of CMD fails, and FAIL_EXP # is given, then evaluate it. Use the saved locale for evaluation. func_show_eval_locale () { my_cmd="$1" my_fail_exp="${2-:}" ${opt_silent-false} || { func_quote_for_expand "$my_cmd" eval "func_echo $func_quote_for_expand_result" } if ${opt_dry_run-false}; then :; else eval "$lt_user_locale $my_cmd" my_status=$? eval "$lt_safe_locale" if test "$my_status" -eq 0; then :; else eval "(exit $my_status); $my_fail_exp" fi fi } # func_tr_sh # Turn $1 into a string suitable for a shell variable name. # Result is stored in $func_tr_sh_result. All characters # not in the set a-zA-Z0-9_ are replaced with '_'. Further, # if $1 begins with a digit, a '_' is prepended as well. func_tr_sh () { case $1 in [0-9]* | *[!a-zA-Z0-9_]*) func_tr_sh_result=`$ECHO "$1" | $SED 's/^\([0-9]\)/_\1/; s/[^a-zA-Z0-9_]/_/g'` ;; * ) func_tr_sh_result=$1 ;; esac } # func_version # Echo version message to standard output and exit. func_version () { $opt_debug $SED -n '/(C)/!b go :more /\./!{ N s/\n# / / b more } :go /^# '$PROGRAM' (GNU /,/# warranty; / { s/^# // s/^# *$// s/\((C)\)[ 0-9,-]*\( [1-9][0-9]*\)/\1\2/ p }' < "$progpath" exit $? } # func_usage # Echo short help message to standard output and exit. func_usage () { $opt_debug $SED -n '/^# Usage:/,/^# *.*--help/ { s/^# // s/^# *$// s/\$progname/'$progname'/ p }' < "$progpath" echo $ECHO "run \`$progname --help | more' for full usage" exit $? } # func_help [NOEXIT] # Echo long help message to standard output and exit, # unless 'noexit' is passed as argument. func_help () { $opt_debug $SED -n '/^# Usage:/,/# Report bugs to/ { :print s/^# // s/^# *$// s*\$progname*'$progname'* s*\$host*'"$host"'* s*\$SHELL*'"$SHELL"'* s*\$LTCC*'"$LTCC"'* s*\$LTCFLAGS*'"$LTCFLAGS"'* s*\$LD*'"$LD"'* s/\$with_gnu_ld/'"$with_gnu_ld"'/ s/\$automake_version/'"`(${AUTOMAKE-automake} --version) 2>/dev/null |$SED 1q`"'/ s/\$autoconf_version/'"`(${AUTOCONF-autoconf} --version) 2>/dev/null |$SED 1q`"'/ p d } /^# .* home page:/b print /^# General help using/b print ' < "$progpath" ret=$? if test -z "$1"; then exit $ret fi } # func_missing_arg argname # Echo program name prefixed message to standard error and set global # exit_cmd. func_missing_arg () { $opt_debug func_error "missing argument for $1." exit_cmd=exit } # func_split_short_opt shortopt # Set func_split_short_opt_name and func_split_short_opt_arg shell # variables after splitting SHORTOPT after the 2nd character. func_split_short_opt () { my_sed_short_opt='1s/^\(..\).*$/\1/;q' my_sed_short_rest='1s/^..\(.*\)$/\1/;q' func_split_short_opt_name=`$ECHO "$1" | $SED "$my_sed_short_opt"` func_split_short_opt_arg=`$ECHO "$1" | $SED "$my_sed_short_rest"` } # func_split_short_opt may be replaced by extended shell implementation # func_split_long_opt longopt # Set func_split_long_opt_name and func_split_long_opt_arg shell # variables after splitting LONGOPT at the `=' sign. func_split_long_opt () { my_sed_long_opt='1s/^\(--[^=]*\)=.*/\1/;q' my_sed_long_arg='1s/^--[^=]*=//' func_split_long_opt_name=`$ECHO "$1" | $SED "$my_sed_long_opt"` func_split_long_opt_arg=`$ECHO "$1" | $SED "$my_sed_long_arg"` } # func_split_long_opt may be replaced by extended shell implementation exit_cmd=: magic="%%%MAGIC variable%%%" magic_exe="%%%MAGIC EXE variable%%%" # Global variables. nonopt= preserve_args= lo2o="s/\\.lo\$/.${objext}/" o2lo="s/\\.${objext}\$/.lo/" extracted_archives= extracted_serial=0 # If this variable is set in any of the actions, the command in it # will be execed at the end. This prevents here-documents from being # left over by shells. exec_cmd= # func_append var value # Append VALUE to the end of shell variable VAR. func_append () { eval "${1}=\$${1}\${2}" } # func_append may be replaced by extended shell implementation # func_append_quoted var value # Quote VALUE and append to the end of shell variable VAR, separated # by a space. func_append_quoted () { func_quote_for_eval "${2}" eval "${1}=\$${1}\\ \$func_quote_for_eval_result" } # func_append_quoted may be replaced by extended shell implementation # func_arith arithmetic-term... func_arith () { func_arith_result=`expr "${@}"` } # func_arith may be replaced by extended shell implementation # func_len string # STRING may not start with a hyphen. func_len () { func_len_result=`expr "${1}" : ".*" 2>/dev/null || echo $max_cmd_len` } # func_len may be replaced by extended shell implementation # func_lo2o object func_lo2o () { func_lo2o_result=`$ECHO "${1}" | $SED "$lo2o"` } # func_lo2o may be replaced by extended shell implementation # func_xform libobj-or-source func_xform () { func_xform_result=`$ECHO "${1}" | $SED 's/\.[^.]*$/.lo/'` } # func_xform may be replaced by extended shell implementation # func_fatal_configuration arg... # Echo program name prefixed message to standard error, followed by # a configuration failure hint, and exit. func_fatal_configuration () { func_error ${1+"$@"} func_error "See the $PACKAGE documentation for more information." func_fatal_error "Fatal configuration error." } # func_config # Display the configuration for all the tags in this script. func_config () { re_begincf='^# ### BEGIN LIBTOOL' re_endcf='^# ### END LIBTOOL' # Default configuration. $SED "1,/$re_begincf CONFIG/d;/$re_endcf CONFIG/,\$d" < "$progpath" # Now print the configurations for the tags. for tagname in $taglist; do $SED -n "/$re_begincf TAG CONFIG: $tagname\$/,/$re_endcf TAG CONFIG: $tagname\$/p" < "$progpath" done exit $? } # func_features # Display the features supported by this script. func_features () { echo "host: $host" if test "$build_libtool_libs" = yes; then echo "enable shared libraries" else echo "disable shared libraries" fi if test "$build_old_libs" = yes; then echo "enable static libraries" else echo "disable static libraries" fi exit $? } # func_enable_tag tagname # Verify that TAGNAME is valid, and either flag an error and exit, or # enable the TAGNAME tag. We also add TAGNAME to the global $taglist # variable here. func_enable_tag () { # Global variable: tagname="$1" re_begincf="^# ### BEGIN LIBTOOL TAG CONFIG: $tagname\$" re_endcf="^# ### END LIBTOOL TAG CONFIG: $tagname\$" sed_extractcf="/$re_begincf/,/$re_endcf/p" # Validate tagname. case $tagname in *[!-_A-Za-z0-9,/]*) func_fatal_error "invalid tag name: $tagname" ;; esac # Don't test for the "default" C tag, as we know it's # there but not specially marked. case $tagname in CC) ;; *) if $GREP "$re_begincf" "$progpath" >/dev/null 2>&1; then taglist="$taglist $tagname" # Evaluate the configuration. Be careful to quote the path # and the sed script, to avoid splitting on whitespace, but # also don't use non-portable quotes within backquotes within # quotes we have to do it in 2 steps: extractedcf=`$SED -n -e "$sed_extractcf" < "$progpath"` eval "$extractedcf" else func_error "ignoring unknown tag $tagname" fi ;; esac } # func_check_version_match # Ensure that we are using m4 macros, and libtool script from the same # release of libtool. func_check_version_match () { if test "$package_revision" != "$macro_revision"; then if test "$VERSION" != "$macro_version"; then if test -z "$macro_version"; then cat >&2 <<_LT_EOF $progname: Version mismatch error. This is $PACKAGE $VERSION, but the $progname: definition of this LT_INIT comes from an older release. $progname: You should recreate aclocal.m4 with macros from $PACKAGE $VERSION $progname: and run autoconf again. _LT_EOF else cat >&2 <<_LT_EOF $progname: Version mismatch error. This is $PACKAGE $VERSION, but the $progname: definition of this LT_INIT comes from $PACKAGE $macro_version. $progname: You should recreate aclocal.m4 with macros from $PACKAGE $VERSION $progname: and run autoconf again. _LT_EOF fi else cat >&2 <<_LT_EOF $progname: Version mismatch error. This is $PACKAGE $VERSION, revision $package_revision, $progname: but the definition of this LT_INIT comes from revision $macro_revision. $progname: You should recreate aclocal.m4 with macros from revision $package_revision $progname: of $PACKAGE $VERSION and run autoconf again. _LT_EOF fi exit $EXIT_MISMATCH fi } # Shorthand for --mode=foo, only valid as the first argument case $1 in clean|clea|cle|cl) shift; set dummy --mode clean ${1+"$@"}; shift ;; compile|compil|compi|comp|com|co|c) shift; set dummy --mode compile ${1+"$@"}; shift ;; execute|execut|execu|exec|exe|ex|e) shift; set dummy --mode execute ${1+"$@"}; shift ;; finish|finis|fini|fin|fi|f) shift; set dummy --mode finish ${1+"$@"}; shift ;; install|instal|insta|inst|ins|in|i) shift; set dummy --mode install ${1+"$@"}; shift ;; link|lin|li|l) shift; set dummy --mode link ${1+"$@"}; shift ;; uninstall|uninstal|uninsta|uninst|unins|unin|uni|un|u) shift; set dummy --mode uninstall ${1+"$@"}; shift ;; esac # Option defaults: opt_debug=: opt_dry_run=false opt_config=false opt_preserve_dup_deps=false opt_features=false opt_finish=false opt_help=false opt_help_all=false opt_silent=: opt_warning=: opt_verbose=: opt_silent=false opt_verbose=false # Parse options once, thoroughly. This comes as soon as possible in the # script to make things like `--version' happen as quickly as we can. { # this just eases exit handling while test $# -gt 0; do opt="$1" shift case $opt in --debug|-x) opt_debug='set -x' func_echo "enabling shell trace mode" $opt_debug ;; --dry-run|--dryrun|-n) opt_dry_run=: ;; --config) opt_config=: func_config ;; --dlopen|-dlopen) optarg="$1" opt_dlopen="${opt_dlopen+$opt_dlopen }$optarg" shift ;; --preserve-dup-deps) opt_preserve_dup_deps=: ;; --features) opt_features=: func_features ;; --finish) opt_finish=: set dummy --mode finish ${1+"$@"}; shift ;; --help) opt_help=: ;; --help-all) opt_help_all=: opt_help=': help-all' ;; --mode) test $# = 0 && func_missing_arg $opt && break optarg="$1" opt_mode="$optarg" case $optarg in # Valid mode arguments: clean|compile|execute|finish|install|link|relink|uninstall) ;; # Catch anything else as an error *) func_error "invalid argument for $opt" exit_cmd=exit break ;; esac shift ;; --no-silent|--no-quiet) opt_silent=false func_append preserve_args " $opt" ;; --no-warning|--no-warn) opt_warning=false func_append preserve_args " $opt" ;; --no-verbose) opt_verbose=false func_append preserve_args " $opt" ;; --silent|--quiet) opt_silent=: func_append preserve_args " $opt" opt_verbose=false ;; --verbose|-v) opt_verbose=: func_append preserve_args " $opt" opt_silent=false ;; --tag) test $# = 0 && func_missing_arg $opt && break optarg="$1" opt_tag="$optarg" func_append preserve_args " $opt $optarg" func_enable_tag "$optarg" shift ;; -\?|-h) func_usage ;; --help) func_help ;; --version) func_version ;; # Separate optargs to long options: --*=*) func_split_long_opt "$opt" set dummy "$func_split_long_opt_name" "$func_split_long_opt_arg" ${1+"$@"} shift ;; # Separate non-argument short options: -\?*|-h*|-n*|-v*) func_split_short_opt "$opt" set dummy "$func_split_short_opt_name" "-$func_split_short_opt_arg" ${1+"$@"} shift ;; --) break ;; -*) func_fatal_help "unrecognized option \`$opt'" ;; *) set dummy "$opt" ${1+"$@"}; shift; break ;; esac done # Validate options: # save first non-option argument if test "$#" -gt 0; then nonopt="$opt" shift fi # preserve --debug test "$opt_debug" = : || func_append preserve_args " --debug" case $host in *cygwin* | *mingw* | *pw32* | *cegcc*) # don't eliminate duplications in $postdeps and $predeps opt_duplicate_compiler_generated_deps=: ;; *) opt_duplicate_compiler_generated_deps=$opt_preserve_dup_deps ;; esac $opt_help || { # Sanity checks first: func_check_version_match if test "$build_libtool_libs" != yes && test "$build_old_libs" != yes; then func_fatal_configuration "not configured to build any kind of library" fi # Darwin sucks eval std_shrext=\"$shrext_cmds\" # Only execute mode is allowed to have -dlopen flags. if test -n "$opt_dlopen" && test "$opt_mode" != execute; then func_error "unrecognized option \`-dlopen'" $ECHO "$help" 1>&2 exit $EXIT_FAILURE fi # Change the help message to a mode-specific one. generic_help="$help" help="Try \`$progname --help --mode=$opt_mode' for more information." } # Bail if the options were screwed $exit_cmd $EXIT_FAILURE } ## ----------- ## ## Main. ## ## ----------- ## # func_lalib_p file # True iff FILE is a libtool `.la' library or `.lo' object file. # This function is only a basic sanity check; it will hardly flush out # determined imposters. func_lalib_p () { test -f "$1" && $SED -e 4q "$1" 2>/dev/null \ | $GREP "^# Generated by .*$PACKAGE" > /dev/null 2>&1 } # func_lalib_unsafe_p file # True iff FILE is a libtool `.la' library or `.lo' object file. # This function implements the same check as func_lalib_p without # resorting to external programs. To this end, it redirects stdin and # closes it afterwards, without saving the original file descriptor. # As a safety measure, use it only where a negative result would be # fatal anyway. Works if `file' does not exist. func_lalib_unsafe_p () { lalib_p=no if test -f "$1" && test -r "$1" && exec 5<&0 <"$1"; then for lalib_p_l in 1 2 3 4 do read lalib_p_line case "$lalib_p_line" in \#\ Generated\ by\ *$PACKAGE* ) lalib_p=yes; break;; esac done exec 0<&5 5<&- fi test "$lalib_p" = yes } # func_ltwrapper_script_p file # True iff FILE is a libtool wrapper script # This function is only a basic sanity check; it will hardly flush out # determined imposters. func_ltwrapper_script_p () { func_lalib_p "$1" } # func_ltwrapper_executable_p file # True iff FILE is a libtool wrapper executable # This function is only a basic sanity check; it will hardly flush out # determined imposters. func_ltwrapper_executable_p () { func_ltwrapper_exec_suffix= case $1 in *.exe) ;; *) func_ltwrapper_exec_suffix=.exe ;; esac $GREP "$magic_exe" "$1$func_ltwrapper_exec_suffix" >/dev/null 2>&1 } # func_ltwrapper_scriptname file # Assumes file is an ltwrapper_executable # uses $file to determine the appropriate filename for a # temporary ltwrapper_script. func_ltwrapper_scriptname () { func_dirname_and_basename "$1" "" "." func_stripname '' '.exe' "$func_basename_result" func_ltwrapper_scriptname_result="$func_dirname_result/$objdir/${func_stripname_result}_ltshwrapper" } # func_ltwrapper_p file # True iff FILE is a libtool wrapper script or wrapper executable # This function is only a basic sanity check; it will hardly flush out # determined imposters. func_ltwrapper_p () { func_ltwrapper_script_p "$1" || func_ltwrapper_executable_p "$1" } # func_execute_cmds commands fail_cmd # Execute tilde-delimited COMMANDS. # If FAIL_CMD is given, eval that upon failure. # FAIL_CMD may read-access the current command in variable CMD! func_execute_cmds () { $opt_debug save_ifs=$IFS; IFS='~' for cmd in $1; do IFS=$save_ifs eval cmd=\"$cmd\" func_show_eval "$cmd" "${2-:}" done IFS=$save_ifs } # func_source file # Source FILE, adding directory component if necessary. # Note that it is not necessary on cygwin/mingw to append a dot to # FILE even if both FILE and FILE.exe exist: automatic-append-.exe # behavior happens only for exec(3), not for open(2)! Also, sourcing # `FILE.' does not work on cygwin managed mounts. func_source () { $opt_debug case $1 in */* | *\\*) . "$1" ;; *) . "./$1" ;; esac } # func_resolve_sysroot PATH # Replace a leading = in PATH with a sysroot. Store the result into # func_resolve_sysroot_result func_resolve_sysroot () { func_resolve_sysroot_result=$1 case $func_resolve_sysroot_result in =*) func_stripname '=' '' "$func_resolve_sysroot_result" func_resolve_sysroot_result=$lt_sysroot$func_stripname_result ;; esac } # func_replace_sysroot PATH # If PATH begins with the sysroot, replace it with = and # store the result into func_replace_sysroot_result. func_replace_sysroot () { case "$lt_sysroot:$1" in ?*:"$lt_sysroot"*) func_stripname "$lt_sysroot" '' "$1" func_replace_sysroot_result="=$func_stripname_result" ;; *) # Including no sysroot. func_replace_sysroot_result=$1 ;; esac } # func_infer_tag arg # Infer tagged configuration to use if any are available and # if one wasn't chosen via the "--tag" command line option. # Only attempt this if the compiler in the base compile # command doesn't match the default compiler. # arg is usually of the form 'gcc ...' func_infer_tag () { $opt_debug if test -n "$available_tags" && test -z "$tagname"; then CC_quoted= for arg in $CC; do func_append_quoted CC_quoted "$arg" done CC_expanded=`func_echo_all $CC` CC_quoted_expanded=`func_echo_all $CC_quoted` case $@ in # Blanks in the command may have been stripped by the calling shell, # but not from the CC environment variable when configure was run. " $CC "* | "$CC "* | " $CC_expanded "* | "$CC_expanded "* | \ " $CC_quoted"* | "$CC_quoted "* | " $CC_quoted_expanded "* | "$CC_quoted_expanded "*) ;; # Blanks at the start of $base_compile will cause this to fail # if we don't check for them as well. *) for z in $available_tags; do if $GREP "^# ### BEGIN LIBTOOL TAG CONFIG: $z$" < "$progpath" > /dev/null; then # Evaluate the configuration. eval "`${SED} -n -e '/^# ### BEGIN LIBTOOL TAG CONFIG: '$z'$/,/^# ### END LIBTOOL TAG CONFIG: '$z'$/p' < $progpath`" CC_quoted= for arg in $CC; do # Double-quote args containing other shell metacharacters. func_append_quoted CC_quoted "$arg" done CC_expanded=`func_echo_all $CC` CC_quoted_expanded=`func_echo_all $CC_quoted` case "$@ " in " $CC "* | "$CC "* | " $CC_expanded "* | "$CC_expanded "* | \ " $CC_quoted"* | "$CC_quoted "* | " $CC_quoted_expanded "* | "$CC_quoted_expanded "*) # The compiler in the base compile command matches # the one in the tagged configuration. # Assume this is the tagged configuration we want. tagname=$z break ;; esac fi done # If $tagname still isn't set, then no tagged configuration # was found and let the user know that the "--tag" command # line option must be used. if test -z "$tagname"; then func_echo "unable to infer tagged configuration" func_fatal_error "specify a tag with \`--tag'" # else # func_verbose "using $tagname tagged configuration" fi ;; esac fi } # func_write_libtool_object output_name pic_name nonpic_name # Create a libtool object file (analogous to a ".la" file), # but don't create it if we're doing a dry run. func_write_libtool_object () { write_libobj=${1} if test "$build_libtool_libs" = yes; then write_lobj=\'${2}\' else write_lobj=none fi if test "$build_old_libs" = yes; then write_oldobj=\'${3}\' else write_oldobj=none fi $opt_dry_run || { cat >${write_libobj}T </dev/null` if test "$?" -eq 0 && test -n "${func_convert_core_file_wine_to_w32_tmp}"; then func_convert_core_file_wine_to_w32_result=`$ECHO "$func_convert_core_file_wine_to_w32_tmp" | $SED -e "$lt_sed_naive_backslashify"` else func_convert_core_file_wine_to_w32_result= fi fi } # end: func_convert_core_file_wine_to_w32 # func_convert_core_path_wine_to_w32 ARG # Helper function used by path conversion functions when $build is *nix, and # $host is mingw, cygwin, or some other w32 environment. Relies on a correctly # configured wine environment available, with the winepath program in $build's # $PATH. Assumes ARG has no leading or trailing path separator characters. # # ARG is path to be converted from $build format to win32. # Result is available in $func_convert_core_path_wine_to_w32_result. # Unconvertible file (directory) names in ARG are skipped; if no directory names # are convertible, then the result may be empty. func_convert_core_path_wine_to_w32 () { $opt_debug # unfortunately, winepath doesn't convert paths, only file names func_convert_core_path_wine_to_w32_result="" if test -n "$1"; then oldIFS=$IFS IFS=: for func_convert_core_path_wine_to_w32_f in $1; do IFS=$oldIFS func_convert_core_file_wine_to_w32 "$func_convert_core_path_wine_to_w32_f" if test -n "$func_convert_core_file_wine_to_w32_result" ; then if test -z "$func_convert_core_path_wine_to_w32_result"; then func_convert_core_path_wine_to_w32_result="$func_convert_core_file_wine_to_w32_result" else func_append func_convert_core_path_wine_to_w32_result ";$func_convert_core_file_wine_to_w32_result" fi fi done IFS=$oldIFS fi } # end: func_convert_core_path_wine_to_w32 # func_cygpath ARGS... # Wrapper around calling the cygpath program via LT_CYGPATH. This is used when # when (1) $build is *nix and Cygwin is hosted via a wine environment; or (2) # $build is MSYS and $host is Cygwin, or (3) $build is Cygwin. In case (1) or # (2), returns the Cygwin file name or path in func_cygpath_result (input # file name or path is assumed to be in w32 format, as previously converted # from $build's *nix or MSYS format). In case (3), returns the w32 file name # or path in func_cygpath_result (input file name or path is assumed to be in # Cygwin format). Returns an empty string on error. # # ARGS are passed to cygpath, with the last one being the file name or path to # be converted. # # Specify the absolute *nix (or w32) name to cygpath in the LT_CYGPATH # environment variable; do not put it in $PATH. func_cygpath () { $opt_debug if test -n "$LT_CYGPATH" && test -f "$LT_CYGPATH"; then func_cygpath_result=`$LT_CYGPATH "$@" 2>/dev/null` if test "$?" -ne 0; then # on failure, ensure result is empty func_cygpath_result= fi else func_cygpath_result= func_error "LT_CYGPATH is empty or specifies non-existent file: \`$LT_CYGPATH'" fi } #end: func_cygpath # func_convert_core_msys_to_w32 ARG # Convert file name or path ARG from MSYS format to w32 format. Return # result in func_convert_core_msys_to_w32_result. func_convert_core_msys_to_w32 () { $opt_debug # awkward: cmd appends spaces to result func_convert_core_msys_to_w32_result=`( cmd //c echo "$1" ) 2>/dev/null | $SED -e 's/[ ]*$//' -e "$lt_sed_naive_backslashify"` } #end: func_convert_core_msys_to_w32 # func_convert_file_check ARG1 ARG2 # Verify that ARG1 (a file name in $build format) was converted to $host # format in ARG2. Otherwise, emit an error message, but continue (resetting # func_to_host_file_result to ARG1). func_convert_file_check () { $opt_debug if test -z "$2" && test -n "$1" ; then func_error "Could not determine host file name corresponding to" func_error " \`$1'" func_error "Continuing, but uninstalled executables may not work." # Fallback: func_to_host_file_result="$1" fi } # end func_convert_file_check # func_convert_path_check FROM_PATHSEP TO_PATHSEP FROM_PATH TO_PATH # Verify that FROM_PATH (a path in $build format) was converted to $host # format in TO_PATH. Otherwise, emit an error message, but continue, resetting # func_to_host_file_result to a simplistic fallback value (see below). func_convert_path_check () { $opt_debug if test -z "$4" && test -n "$3"; then func_error "Could not determine the host path corresponding to" func_error " \`$3'" func_error "Continuing, but uninstalled executables may not work." # Fallback. This is a deliberately simplistic "conversion" and # should not be "improved". See libtool.info. if test "x$1" != "x$2"; then lt_replace_pathsep_chars="s|$1|$2|g" func_to_host_path_result=`echo "$3" | $SED -e "$lt_replace_pathsep_chars"` else func_to_host_path_result="$3" fi fi } # end func_convert_path_check # func_convert_path_front_back_pathsep FRONTPAT BACKPAT REPL ORIG # Modifies func_to_host_path_result by prepending REPL if ORIG matches FRONTPAT # and appending REPL if ORIG matches BACKPAT. func_convert_path_front_back_pathsep () { $opt_debug case $4 in $1 ) func_to_host_path_result="$3$func_to_host_path_result" ;; esac case $4 in $2 ) func_append func_to_host_path_result "$3" ;; esac } # end func_convert_path_front_back_pathsep ################################################## # $build to $host FILE NAME CONVERSION FUNCTIONS # ################################################## # invoked via `$to_host_file_cmd ARG' # # In each case, ARG is the path to be converted from $build to $host format. # Result will be available in $func_to_host_file_result. # func_to_host_file ARG # Converts the file name ARG from $build format to $host format. Return result # in func_to_host_file_result. func_to_host_file () { $opt_debug $to_host_file_cmd "$1" } # end func_to_host_file # func_to_tool_file ARG LAZY # converts the file name ARG from $build format to toolchain format. Return # result in func_to_tool_file_result. If the conversion in use is listed # in (the comma separated) LAZY, no conversion takes place. func_to_tool_file () { $opt_debug case ,$2, in *,"$to_tool_file_cmd",*) func_to_tool_file_result=$1 ;; *) $to_tool_file_cmd "$1" func_to_tool_file_result=$func_to_host_file_result ;; esac } # end func_to_tool_file # func_convert_file_noop ARG # Copy ARG to func_to_host_file_result. func_convert_file_noop () { func_to_host_file_result="$1" } # end func_convert_file_noop # func_convert_file_msys_to_w32 ARG # Convert file name ARG from (mingw) MSYS to (mingw) w32 format; automatic # conversion to w32 is not available inside the cwrapper. Returns result in # func_to_host_file_result. func_convert_file_msys_to_w32 () { $opt_debug func_to_host_file_result="$1" if test -n "$1"; then func_convert_core_msys_to_w32 "$1" func_to_host_file_result="$func_convert_core_msys_to_w32_result" fi func_convert_file_check "$1" "$func_to_host_file_result" } # end func_convert_file_msys_to_w32 # func_convert_file_cygwin_to_w32 ARG # Convert file name ARG from Cygwin to w32 format. Returns result in # func_to_host_file_result. func_convert_file_cygwin_to_w32 () { $opt_debug func_to_host_file_result="$1" if test -n "$1"; then # because $build is cygwin, we call "the" cygpath in $PATH; no need to use # LT_CYGPATH in this case. func_to_host_file_result=`cygpath -m "$1"` fi func_convert_file_check "$1" "$func_to_host_file_result" } # end func_convert_file_cygwin_to_w32 # func_convert_file_nix_to_w32 ARG # Convert file name ARG from *nix to w32 format. Requires a wine environment # and a working winepath. Returns result in func_to_host_file_result. func_convert_file_nix_to_w32 () { $opt_debug func_to_host_file_result="$1" if test -n "$1"; then func_convert_core_file_wine_to_w32 "$1" func_to_host_file_result="$func_convert_core_file_wine_to_w32_result" fi func_convert_file_check "$1" "$func_to_host_file_result" } # end func_convert_file_nix_to_w32 # func_convert_file_msys_to_cygwin ARG # Convert file name ARG from MSYS to Cygwin format. Requires LT_CYGPATH set. # Returns result in func_to_host_file_result. func_convert_file_msys_to_cygwin () { $opt_debug func_to_host_file_result="$1" if test -n "$1"; then func_convert_core_msys_to_w32 "$1" func_cygpath -u "$func_convert_core_msys_to_w32_result" func_to_host_file_result="$func_cygpath_result" fi func_convert_file_check "$1" "$func_to_host_file_result" } # end func_convert_file_msys_to_cygwin # func_convert_file_nix_to_cygwin ARG # Convert file name ARG from *nix to Cygwin format. Requires Cygwin installed # in a wine environment, working winepath, and LT_CYGPATH set. Returns result # in func_to_host_file_result. func_convert_file_nix_to_cygwin () { $opt_debug func_to_host_file_result="$1" if test -n "$1"; then # convert from *nix to w32, then use cygpath to convert from w32 to cygwin. func_convert_core_file_wine_to_w32 "$1" func_cygpath -u "$func_convert_core_file_wine_to_w32_result" func_to_host_file_result="$func_cygpath_result" fi func_convert_file_check "$1" "$func_to_host_file_result" } # end func_convert_file_nix_to_cygwin ############################################# # $build to $host PATH CONVERSION FUNCTIONS # ############################################# # invoked via `$to_host_path_cmd ARG' # # In each case, ARG is the path to be converted from $build to $host format. # The result will be available in $func_to_host_path_result. # # Path separators are also converted from $build format to $host format. If # ARG begins or ends with a path separator character, it is preserved (but # converted to $host format) on output. # # All path conversion functions are named using the following convention: # file name conversion function : func_convert_file_X_to_Y () # path conversion function : func_convert_path_X_to_Y () # where, for any given $build/$host combination the 'X_to_Y' value is the # same. If conversion functions are added for new $build/$host combinations, # the two new functions must follow this pattern, or func_init_to_host_path_cmd # will break. # func_init_to_host_path_cmd # Ensures that function "pointer" variable $to_host_path_cmd is set to the # appropriate value, based on the value of $to_host_file_cmd. to_host_path_cmd= func_init_to_host_path_cmd () { $opt_debug if test -z "$to_host_path_cmd"; then func_stripname 'func_convert_file_' '' "$to_host_file_cmd" to_host_path_cmd="func_convert_path_${func_stripname_result}" fi } # func_to_host_path ARG # Converts the path ARG from $build format to $host format. Return result # in func_to_host_path_result. func_to_host_path () { $opt_debug func_init_to_host_path_cmd $to_host_path_cmd "$1" } # end func_to_host_path # func_convert_path_noop ARG # Copy ARG to func_to_host_path_result. func_convert_path_noop () { func_to_host_path_result="$1" } # end func_convert_path_noop # func_convert_path_msys_to_w32 ARG # Convert path ARG from (mingw) MSYS to (mingw) w32 format; automatic # conversion to w32 is not available inside the cwrapper. Returns result in # func_to_host_path_result. func_convert_path_msys_to_w32 () { $opt_debug func_to_host_path_result="$1" if test -n "$1"; then # Remove leading and trailing path separator characters from ARG. MSYS # behavior is inconsistent here; cygpath turns them into '.;' and ';.'; # and winepath ignores them completely. func_stripname : : "$1" func_to_host_path_tmp1=$func_stripname_result func_convert_core_msys_to_w32 "$func_to_host_path_tmp1" func_to_host_path_result="$func_convert_core_msys_to_w32_result" func_convert_path_check : ";" \ "$func_to_host_path_tmp1" "$func_to_host_path_result" func_convert_path_front_back_pathsep ":*" "*:" ";" "$1" fi } # end func_convert_path_msys_to_w32 # func_convert_path_cygwin_to_w32 ARG # Convert path ARG from Cygwin to w32 format. Returns result in # func_to_host_file_result. func_convert_path_cygwin_to_w32 () { $opt_debug func_to_host_path_result="$1" if test -n "$1"; then # See func_convert_path_msys_to_w32: func_stripname : : "$1" func_to_host_path_tmp1=$func_stripname_result func_to_host_path_result=`cygpath -m -p "$func_to_host_path_tmp1"` func_convert_path_check : ";" \ "$func_to_host_path_tmp1" "$func_to_host_path_result" func_convert_path_front_back_pathsep ":*" "*:" ";" "$1" fi } # end func_convert_path_cygwin_to_w32 # func_convert_path_nix_to_w32 ARG # Convert path ARG from *nix to w32 format. Requires a wine environment and # a working winepath. Returns result in func_to_host_file_result. func_convert_path_nix_to_w32 () { $opt_debug func_to_host_path_result="$1" if test -n "$1"; then # See func_convert_path_msys_to_w32: func_stripname : : "$1" func_to_host_path_tmp1=$func_stripname_result func_convert_core_path_wine_to_w32 "$func_to_host_path_tmp1" func_to_host_path_result="$func_convert_core_path_wine_to_w32_result" func_convert_path_check : ";" \ "$func_to_host_path_tmp1" "$func_to_host_path_result" func_convert_path_front_back_pathsep ":*" "*:" ";" "$1" fi } # end func_convert_path_nix_to_w32 # func_convert_path_msys_to_cygwin ARG # Convert path ARG from MSYS to Cygwin format. Requires LT_CYGPATH set. # Returns result in func_to_host_file_result. func_convert_path_msys_to_cygwin () { $opt_debug func_to_host_path_result="$1" if test -n "$1"; then # See func_convert_path_msys_to_w32: func_stripname : : "$1" func_to_host_path_tmp1=$func_stripname_result func_convert_core_msys_to_w32 "$func_to_host_path_tmp1" func_cygpath -u -p "$func_convert_core_msys_to_w32_result" func_to_host_path_result="$func_cygpath_result" func_convert_path_check : : \ "$func_to_host_path_tmp1" "$func_to_host_path_result" func_convert_path_front_back_pathsep ":*" "*:" : "$1" fi } # end func_convert_path_msys_to_cygwin # func_convert_path_nix_to_cygwin ARG # Convert path ARG from *nix to Cygwin format. Requires Cygwin installed in a # a wine environment, working winepath, and LT_CYGPATH set. Returns result in # func_to_host_file_result. func_convert_path_nix_to_cygwin () { $opt_debug func_to_host_path_result="$1" if test -n "$1"; then # Remove leading and trailing path separator characters from # ARG. msys behavior is inconsistent here, cygpath turns them # into '.;' and ';.', and winepath ignores them completely. func_stripname : : "$1" func_to_host_path_tmp1=$func_stripname_result func_convert_core_path_wine_to_w32 "$func_to_host_path_tmp1" func_cygpath -u -p "$func_convert_core_path_wine_to_w32_result" func_to_host_path_result="$func_cygpath_result" func_convert_path_check : : \ "$func_to_host_path_tmp1" "$func_to_host_path_result" func_convert_path_front_back_pathsep ":*" "*:" : "$1" fi } # end func_convert_path_nix_to_cygwin # func_mode_compile arg... func_mode_compile () { $opt_debug # Get the compilation command and the source file. base_compile= srcfile="$nonopt" # always keep a non-empty value in "srcfile" suppress_opt=yes suppress_output= arg_mode=normal libobj= later= pie_flag= for arg do case $arg_mode in arg ) # do not "continue". Instead, add this to base_compile lastarg="$arg" arg_mode=normal ;; target ) libobj="$arg" arg_mode=normal continue ;; normal ) # Accept any command-line options. case $arg in -o) test -n "$libobj" && \ func_fatal_error "you cannot specify \`-o' more than once" arg_mode=target continue ;; -pie | -fpie | -fPIE) func_append pie_flag " $arg" continue ;; -shared | -static | -prefer-pic | -prefer-non-pic) func_append later " $arg" continue ;; -no-suppress) suppress_opt=no continue ;; -Xcompiler) arg_mode=arg # the next one goes into the "base_compile" arg list continue # The current "srcfile" will either be retained or ;; # replaced later. I would guess that would be a bug. -Wc,*) func_stripname '-Wc,' '' "$arg" args=$func_stripname_result lastarg= save_ifs="$IFS"; IFS=',' for arg in $args; do IFS="$save_ifs" func_append_quoted lastarg "$arg" done IFS="$save_ifs" func_stripname ' ' '' "$lastarg" lastarg=$func_stripname_result # Add the arguments to base_compile. func_append base_compile " $lastarg" continue ;; *) # Accept the current argument as the source file. # The previous "srcfile" becomes the current argument. # lastarg="$srcfile" srcfile="$arg" ;; esac # case $arg ;; esac # case $arg_mode # Aesthetically quote the previous argument. func_append_quoted base_compile "$lastarg" done # for arg case $arg_mode in arg) func_fatal_error "you must specify an argument for -Xcompile" ;; target) func_fatal_error "you must specify a target with \`-o'" ;; *) # Get the name of the library object. test -z "$libobj" && { func_basename "$srcfile" libobj="$func_basename_result" } ;; esac # Recognize several different file suffixes. # If the user specifies -o file.o, it is replaced with file.lo case $libobj in *.[cCFSifmso] | \ *.ada | *.adb | *.ads | *.asm | \ *.c++ | *.cc | *.ii | *.class | *.cpp | *.cxx | \ *.[fF][09]? | *.for | *.java | *.go | *.obj | *.sx | *.cu | *.cup) func_xform "$libobj" libobj=$func_xform_result ;; esac case $libobj in *.lo) func_lo2o "$libobj"; obj=$func_lo2o_result ;; *) func_fatal_error "cannot determine name of library object from \`$libobj'" ;; esac func_infer_tag $base_compile for arg in $later; do case $arg in -shared) test "$build_libtool_libs" != yes && \ func_fatal_configuration "can not build a shared library" build_old_libs=no continue ;; -static) build_libtool_libs=no build_old_libs=yes continue ;; -prefer-pic) pic_mode=yes continue ;; -prefer-non-pic) pic_mode=no continue ;; esac done func_quote_for_eval "$libobj" test "X$libobj" != "X$func_quote_for_eval_result" \ && $ECHO "X$libobj" | $GREP '[]~#^*{};<>?"'"'"' &()|`$[]' \ && func_warning "libobj name \`$libobj' may not contain shell special characters." func_dirname_and_basename "$obj" "/" "" objname="$func_basename_result" xdir="$func_dirname_result" lobj=${xdir}$objdir/$objname test -z "$base_compile" && \ func_fatal_help "you must specify a compilation command" # Delete any leftover library objects. if test "$build_old_libs" = yes; then removelist="$obj $lobj $libobj ${libobj}T" else removelist="$lobj $libobj ${libobj}T" fi # On Cygwin there's no "real" PIC flag so we must build both object types case $host_os in cygwin* | mingw* | pw32* | os2* | cegcc*) pic_mode=default ;; esac if test "$pic_mode" = no && test "$deplibs_check_method" != pass_all; then # non-PIC code in shared libraries is not supported pic_mode=default fi # Calculate the filename of the output object if compiler does # not support -o with -c if test "$compiler_c_o" = no; then output_obj=`$ECHO "$srcfile" | $SED 's%^.*/%%; s%\.[^.]*$%%'`.${objext} lockfile="$output_obj.lock" else output_obj= need_locks=no lockfile= fi # Lock this critical section if it is needed # We use this script file to make the link, it avoids creating a new file if test "$need_locks" = yes; then until $opt_dry_run || ln "$progpath" "$lockfile" 2>/dev/null; do func_echo "Waiting for $lockfile to be removed" sleep 2 done elif test "$need_locks" = warn; then if test -f "$lockfile"; then $ECHO "\ *** ERROR, $lockfile exists and contains: `cat $lockfile 2>/dev/null` This indicates that another process is trying to use the same temporary object file, and libtool could not work around it because your compiler does not support \`-c' and \`-o' together. If you repeat this compilation, it may succeed, by chance, but you had better avoid parallel builds (make -j) in this platform, or get a better compiler." $opt_dry_run || $RM $removelist exit $EXIT_FAILURE fi func_append removelist " $output_obj" $ECHO "$srcfile" > "$lockfile" fi $opt_dry_run || $RM $removelist func_append removelist " $lockfile" trap '$opt_dry_run || $RM $removelist; exit $EXIT_FAILURE' 1 2 15 func_to_tool_file "$srcfile" func_convert_file_msys_to_w32 srcfile=$func_to_tool_file_result func_quote_for_eval "$srcfile" qsrcfile=$func_quote_for_eval_result # Only build a PIC object if we are building libtool libraries. if test "$build_libtool_libs" = yes; then # Without this assignment, base_compile gets emptied. fbsd_hideous_sh_bug=$base_compile if test "$pic_mode" != no; then command="$base_compile $qsrcfile $pic_flag" else # Don't build PIC code command="$base_compile $qsrcfile" fi func_mkdir_p "$xdir$objdir" if test -z "$output_obj"; then # Place PIC objects in $objdir func_append command " -o $lobj" fi func_show_eval_locale "$command" \ 'test -n "$output_obj" && $RM $removelist; exit $EXIT_FAILURE' if test "$need_locks" = warn && test "X`cat $lockfile 2>/dev/null`" != "X$srcfile"; then $ECHO "\ *** ERROR, $lockfile contains: `cat $lockfile 2>/dev/null` but it should contain: $srcfile This indicates that another process is trying to use the same temporary object file, and libtool could not work around it because your compiler does not support \`-c' and \`-o' together. If you repeat this compilation, it may succeed, by chance, but you had better avoid parallel builds (make -j) in this platform, or get a better compiler." $opt_dry_run || $RM $removelist exit $EXIT_FAILURE fi # Just move the object if needed, then go on to compile the next one if test -n "$output_obj" && test "X$output_obj" != "X$lobj"; then func_show_eval '$MV "$output_obj" "$lobj"' \ 'error=$?; $opt_dry_run || $RM $removelist; exit $error' fi # Allow error messages only from the first compilation. if test "$suppress_opt" = yes; then suppress_output=' >/dev/null 2>&1' fi fi # Only build a position-dependent object if we build old libraries. if test "$build_old_libs" = yes; then if test "$pic_mode" != yes; then # Don't build PIC code command="$base_compile $qsrcfile$pie_flag" else command="$base_compile $qsrcfile $pic_flag" fi if test "$compiler_c_o" = yes; then func_append command " -o $obj" fi # Suppress compiler output if we already did a PIC compilation. func_append command "$suppress_output" func_show_eval_locale "$command" \ '$opt_dry_run || $RM $removelist; exit $EXIT_FAILURE' if test "$need_locks" = warn && test "X`cat $lockfile 2>/dev/null`" != "X$srcfile"; then $ECHO "\ *** ERROR, $lockfile contains: `cat $lockfile 2>/dev/null` but it should contain: $srcfile This indicates that another process is trying to use the same temporary object file, and libtool could not work around it because your compiler does not support \`-c' and \`-o' together. If you repeat this compilation, it may succeed, by chance, but you had better avoid parallel builds (make -j) in this platform, or get a better compiler." $opt_dry_run || $RM $removelist exit $EXIT_FAILURE fi # Just move the object if needed if test -n "$output_obj" && test "X$output_obj" != "X$obj"; then func_show_eval '$MV "$output_obj" "$obj"' \ 'error=$?; $opt_dry_run || $RM $removelist; exit $error' fi fi $opt_dry_run || { func_write_libtool_object "$libobj" "$objdir/$objname" "$objname" # Unlock the critical section if it was locked if test "$need_locks" != no; then removelist=$lockfile $RM "$lockfile" fi } exit $EXIT_SUCCESS } $opt_help || { test "$opt_mode" = compile && func_mode_compile ${1+"$@"} } func_mode_help () { # We need to display help for each of the modes. case $opt_mode in "") # Generic help is extracted from the usage comments # at the start of this file. func_help ;; clean) $ECHO \ "Usage: $progname [OPTION]... --mode=clean RM [RM-OPTION]... FILE... Remove files from the build directory. RM is the name of the program to use to delete files associated with each FILE (typically \`/bin/rm'). RM-OPTIONS are options (such as \`-f') to be passed to RM. If FILE is a libtool library, object or program, all the files associated with it are deleted. Otherwise, only FILE itself is deleted using RM." ;; compile) $ECHO \ "Usage: $progname [OPTION]... --mode=compile COMPILE-COMMAND... SOURCEFILE Compile a source file into a libtool library object. This mode accepts the following additional options: -o OUTPUT-FILE set the output file name to OUTPUT-FILE -no-suppress do not suppress compiler output for multiple passes -prefer-pic try to build PIC objects only -prefer-non-pic try to build non-PIC objects only -shared do not build a \`.o' file suitable for static linking -static only build a \`.o' file suitable for static linking -Wc,FLAG pass FLAG directly to the compiler COMPILE-COMMAND is a command to be used in creating a \`standard' object file from the given SOURCEFILE. The output file name is determined by removing the directory component from SOURCEFILE, then substituting the C source code suffix \`.c' with the library object suffix, \`.lo'." ;; execute) $ECHO \ "Usage: $progname [OPTION]... --mode=execute COMMAND [ARGS]... Automatically set library path, then run a program. This mode accepts the following additional options: -dlopen FILE add the directory containing FILE to the library path This mode sets the library path environment variable according to \`-dlopen' flags. If any of the ARGS are libtool executable wrappers, then they are translated into their corresponding uninstalled binary, and any of their required library directories are added to the library path. Then, COMMAND is executed, with ARGS as arguments." ;; finish) $ECHO \ "Usage: $progname [OPTION]... --mode=finish [LIBDIR]... Complete the installation of libtool libraries. Each LIBDIR is a directory that contains libtool libraries. The commands that this mode executes may require superuser privileges. Use the \`--dry-run' option if you just want to see what would be executed." ;; install) $ECHO \ "Usage: $progname [OPTION]... --mode=install INSTALL-COMMAND... Install executables or libraries. INSTALL-COMMAND is the installation command. The first component should be either the \`install' or \`cp' program. The following components of INSTALL-COMMAND are treated specially: -inst-prefix-dir PREFIX-DIR Use PREFIX-DIR as a staging area for installation The rest of the components are interpreted as arguments to that command (only BSD-compatible install options are recognized)." ;; link) $ECHO \ "Usage: $progname [OPTION]... --mode=link LINK-COMMAND... Link object files or libraries together to form another library, or to create an executable program. LINK-COMMAND is a command using the C compiler that you would use to create a program from several object files. The following components of LINK-COMMAND are treated specially: -all-static do not do any dynamic linking at all -avoid-version do not add a version suffix if possible -bindir BINDIR specify path to binaries directory (for systems where libraries must be found in the PATH setting at runtime) -dlopen FILE \`-dlpreopen' FILE if it cannot be dlopened at runtime -dlpreopen FILE link in FILE and add its symbols to lt_preloaded_symbols -export-dynamic allow symbols from OUTPUT-FILE to be resolved with dlsym(3) -export-symbols SYMFILE try to export only the symbols listed in SYMFILE -export-symbols-regex REGEX try to export only the symbols matching REGEX -LLIBDIR search LIBDIR for required installed libraries -lNAME OUTPUT-FILE requires the installed library libNAME -module build a library that can dlopened -no-fast-install disable the fast-install mode -no-install link a not-installable executable -no-undefined declare that a library does not refer to external symbols -o OUTPUT-FILE create OUTPUT-FILE from the specified objects -objectlist FILE Use a list of object files found in FILE to specify objects -precious-files-regex REGEX don't remove output files matching REGEX -release RELEASE specify package release information -rpath LIBDIR the created library will eventually be installed in LIBDIR -R[ ]LIBDIR add LIBDIR to the runtime path of programs and libraries -shared only do dynamic linking of libtool libraries -shrext SUFFIX override the standard shared library file extension -static do not do any dynamic linking of uninstalled libtool libraries -static-libtool-libs do not do any dynamic linking of libtool libraries -version-info CURRENT[:REVISION[:AGE]] specify library version info [each variable defaults to 0] -weak LIBNAME declare that the target provides the LIBNAME interface -Wc,FLAG -Xcompiler FLAG pass linker-specific FLAG directly to the compiler -Wl,FLAG -Xlinker FLAG pass linker-specific FLAG directly to the linker -XCClinker FLAG pass link-specific FLAG to the compiler driver (CC) All other options (arguments beginning with \`-') are ignored. Every other argument is treated as a filename. Files ending in \`.la' are treated as uninstalled libtool libraries, other files are standard or library object files. If the OUTPUT-FILE ends in \`.la', then a libtool library is created, only library objects (\`.lo' files) may be specified, and \`-rpath' is required, except when creating a convenience library. If OUTPUT-FILE ends in \`.a' or \`.lib', then a standard library is created using \`ar' and \`ranlib', or on Windows using \`lib'. If OUTPUT-FILE ends in \`.lo' or \`.${objext}', then a reloadable object file is created, otherwise an executable program is created." ;; uninstall) $ECHO \ "Usage: $progname [OPTION]... --mode=uninstall RM [RM-OPTION]... FILE... Remove libraries from an installation directory. RM is the name of the program to use to delete files associated with each FILE (typically \`/bin/rm'). RM-OPTIONS are options (such as \`-f') to be passed to RM. If FILE is a libtool library, all the files associated with it are deleted. Otherwise, only FILE itself is deleted using RM." ;; *) func_fatal_help "invalid operation mode \`$opt_mode'" ;; esac echo $ECHO "Try \`$progname --help' for more information about other modes." } # Now that we've collected a possible --mode arg, show help if necessary if $opt_help; then if test "$opt_help" = :; then func_mode_help else { func_help noexit for opt_mode in compile link execute install finish uninstall clean; do func_mode_help done } | sed -n '1p; 2,$s/^Usage:/ or: /p' { func_help noexit for opt_mode in compile link execute install finish uninstall clean; do echo func_mode_help done } | sed '1d /^When reporting/,/^Report/{ H d } $x /information about other modes/d /more detailed .*MODE/d s/^Usage:.*--mode=\([^ ]*\) .*/Description of \1 mode:/' fi exit $? fi # func_mode_execute arg... func_mode_execute () { $opt_debug # The first argument is the command name. cmd="$nonopt" test -z "$cmd" && \ func_fatal_help "you must specify a COMMAND" # Handle -dlopen flags immediately. for file in $opt_dlopen; do test -f "$file" \ || func_fatal_help "\`$file' is not a file" dir= case $file in *.la) func_resolve_sysroot "$file" file=$func_resolve_sysroot_result # Check to see that this really is a libtool archive. func_lalib_unsafe_p "$file" \ || func_fatal_help "\`$lib' is not a valid libtool archive" # Read the libtool library. dlname= library_names= func_source "$file" # Skip this library if it cannot be dlopened. if test -z "$dlname"; then # Warn if it was a shared library. test -n "$library_names" && \ func_warning "\`$file' was not linked with \`-export-dynamic'" continue fi func_dirname "$file" "" "." dir="$func_dirname_result" if test -f "$dir/$objdir/$dlname"; then func_append dir "/$objdir" else if test ! -f "$dir/$dlname"; then func_fatal_error "cannot find \`$dlname' in \`$dir' or \`$dir/$objdir'" fi fi ;; *.lo) # Just add the directory containing the .lo file. func_dirname "$file" "" "." dir="$func_dirname_result" ;; *) func_warning "\`-dlopen' is ignored for non-libtool libraries and objects" continue ;; esac # Get the absolute pathname. absdir=`cd "$dir" && pwd` test -n "$absdir" && dir="$absdir" # Now add the directory to shlibpath_var. if eval "test -z \"\$$shlibpath_var\""; then eval "$shlibpath_var=\"\$dir\"" else eval "$shlibpath_var=\"\$dir:\$$shlibpath_var\"" fi done # This variable tells wrapper scripts just to set shlibpath_var # rather than running their programs. libtool_execute_magic="$magic" # Check if any of the arguments is a wrapper script. args= for file do case $file in -* | *.la | *.lo ) ;; *) # Do a test to see if this is really a libtool program. if func_ltwrapper_script_p "$file"; then func_source "$file" # Transform arg to wrapped name. file="$progdir/$program" elif func_ltwrapper_executable_p "$file"; then func_ltwrapper_scriptname "$file" func_source "$func_ltwrapper_scriptname_result" # Transform arg to wrapped name. file="$progdir/$program" fi ;; esac # Quote arguments (to preserve shell metacharacters). func_append_quoted args "$file" done if test "X$opt_dry_run" = Xfalse; then if test -n "$shlibpath_var"; then # Export the shlibpath_var. eval "export $shlibpath_var" fi # Restore saved environment variables for lt_var in LANG LANGUAGE LC_ALL LC_CTYPE LC_COLLATE LC_MESSAGES do eval "if test \"\${save_$lt_var+set}\" = set; then $lt_var=\$save_$lt_var; export $lt_var else $lt_unset $lt_var fi" done # Now prepare to actually exec the command. exec_cmd="\$cmd$args" else # Display what would be done. if test -n "$shlibpath_var"; then eval "\$ECHO \"\$shlibpath_var=\$$shlibpath_var\"" echo "export $shlibpath_var" fi $ECHO "$cmd$args" exit $EXIT_SUCCESS fi } test "$opt_mode" = execute && func_mode_execute ${1+"$@"} # func_mode_finish arg... func_mode_finish () { $opt_debug libs= libdirs= admincmds= for opt in "$nonopt" ${1+"$@"} do if test -d "$opt"; then func_append libdirs " $opt" elif test -f "$opt"; then if func_lalib_unsafe_p "$opt"; then func_append libs " $opt" else func_warning "\`$opt' is not a valid libtool archive" fi else func_fatal_error "invalid argument \`$opt'" fi done if test -n "$libs"; then if test -n "$lt_sysroot"; then sysroot_regex=`$ECHO "$lt_sysroot" | $SED "$sed_make_literal_regex"` sysroot_cmd="s/\([ ']\)$sysroot_regex/\1/g;" else sysroot_cmd= fi # Remove sysroot references if $opt_dry_run; then for lib in $libs; do echo "removing references to $lt_sysroot and \`=' prefixes from $lib" done else tmpdir=`func_mktempdir` for lib in $libs; do sed -e "${sysroot_cmd} s/\([ ']-[LR]\)=/\1/g; s/\([ ']\)=/\1/g" $lib \ > $tmpdir/tmp-la mv -f $tmpdir/tmp-la $lib done ${RM}r "$tmpdir" fi fi if test -n "$finish_cmds$finish_eval" && test -n "$libdirs"; then for libdir in $libdirs; do if test -n "$finish_cmds"; then # Do each command in the finish commands. func_execute_cmds "$finish_cmds" 'admincmds="$admincmds '"$cmd"'"' fi if test -n "$finish_eval"; then # Do the single finish_eval. eval cmds=\"$finish_eval\" $opt_dry_run || eval "$cmds" || func_append admincmds " $cmds" fi done fi # Exit here if they wanted silent mode. $opt_silent && exit $EXIT_SUCCESS if test -n "$finish_cmds$finish_eval" && test -n "$libdirs"; then echo "----------------------------------------------------------------------" echo "Libraries have been installed in:" for libdir in $libdirs; do $ECHO " $libdir" done echo echo "If you ever happen to want to link against installed libraries" echo "in a given directory, LIBDIR, you must either use libtool, and" echo "specify the full pathname of the library, or use the \`-LLIBDIR'" echo "flag during linking and do at least one of the following:" if test -n "$shlibpath_var"; then echo " - add LIBDIR to the \`$shlibpath_var' environment variable" echo " during execution" fi if test -n "$runpath_var"; then echo " - add LIBDIR to the \`$runpath_var' environment variable" echo " during linking" fi if test -n "$hardcode_libdir_flag_spec"; then libdir=LIBDIR eval flag=\"$hardcode_libdir_flag_spec\" $ECHO " - use the \`$flag' linker flag" fi if test -n "$admincmds"; then $ECHO " - have your system administrator run these commands:$admincmds" fi if test -f /etc/ld.so.conf; then echo " - have your system administrator add LIBDIR to \`/etc/ld.so.conf'" fi echo echo "See any operating system documentation about shared libraries for" case $host in solaris2.[6789]|solaris2.1[0-9]) echo "more information, such as the ld(1), crle(1) and ld.so(8) manual" echo "pages." ;; *) echo "more information, such as the ld(1) and ld.so(8) manual pages." ;; esac echo "----------------------------------------------------------------------" fi exit $EXIT_SUCCESS } test "$opt_mode" = finish && func_mode_finish ${1+"$@"} # func_mode_install arg... func_mode_install () { $opt_debug # There may be an optional sh(1) argument at the beginning of # install_prog (especially on Windows NT). if test "$nonopt" = "$SHELL" || test "$nonopt" = /bin/sh || # Allow the use of GNU shtool's install command. case $nonopt in *shtool*) :;; *) false;; esac; then # Aesthetically quote it. func_quote_for_eval "$nonopt" install_prog="$func_quote_for_eval_result " arg=$1 shift else install_prog= arg=$nonopt fi # The real first argument should be the name of the installation program. # Aesthetically quote it. func_quote_for_eval "$arg" func_append install_prog "$func_quote_for_eval_result" install_shared_prog=$install_prog case " $install_prog " in *[\\\ /]cp\ *) install_cp=: ;; *) install_cp=false ;; esac # We need to accept at least all the BSD install flags. dest= files= opts= prev= install_type= isdir=no stripme= no_mode=: for arg do arg2= if test -n "$dest"; then func_append files " $dest" dest=$arg continue fi case $arg in -d) isdir=yes ;; -f) if $install_cp; then :; else prev=$arg fi ;; -g | -m | -o) prev=$arg ;; -s) stripme=" -s" continue ;; -*) ;; *) # If the previous option needed an argument, then skip it. if test -n "$prev"; then if test "x$prev" = x-m && test -n "$install_override_mode"; then arg2=$install_override_mode no_mode=false fi prev= else dest=$arg continue fi ;; esac # Aesthetically quote the argument. func_quote_for_eval "$arg" func_append install_prog " $func_quote_for_eval_result" if test -n "$arg2"; then func_quote_for_eval "$arg2" fi func_append install_shared_prog " $func_quote_for_eval_result" done test -z "$install_prog" && \ func_fatal_help "you must specify an install program" test -n "$prev" && \ func_fatal_help "the \`$prev' option requires an argument" if test -n "$install_override_mode" && $no_mode; then if $install_cp; then :; else func_quote_for_eval "$install_override_mode" func_append install_shared_prog " -m $func_quote_for_eval_result" fi fi if test -z "$files"; then if test -z "$dest"; then func_fatal_help "no file or destination specified" else func_fatal_help "you must specify a destination" fi fi # Strip any trailing slash from the destination. func_stripname '' '/' "$dest" dest=$func_stripname_result # Check to see that the destination is a directory. test -d "$dest" && isdir=yes if test "$isdir" = yes; then destdir="$dest" destname= else func_dirname_and_basename "$dest" "" "." destdir="$func_dirname_result" destname="$func_basename_result" # Not a directory, so check to see that there is only one file specified. set dummy $files; shift test "$#" -gt 1 && \ func_fatal_help "\`$dest' is not a directory" fi case $destdir in [\\/]* | [A-Za-z]:[\\/]*) ;; *) for file in $files; do case $file in *.lo) ;; *) func_fatal_help "\`$destdir' must be an absolute directory name" ;; esac done ;; esac # This variable tells wrapper scripts just to set variables rather # than running their programs. libtool_install_magic="$magic" staticlibs= future_libdirs= current_libdirs= for file in $files; do # Do each installation. case $file in *.$libext) # Do the static libraries later. func_append staticlibs " $file" ;; *.la) func_resolve_sysroot "$file" file=$func_resolve_sysroot_result # Check to see that this really is a libtool archive. func_lalib_unsafe_p "$file" \ || func_fatal_help "\`$file' is not a valid libtool archive" library_names= old_library= relink_command= func_source "$file" # Add the libdir to current_libdirs if it is the destination. if test "X$destdir" = "X$libdir"; then case "$current_libdirs " in *" $libdir "*) ;; *) func_append current_libdirs " $libdir" ;; esac else # Note the libdir as a future libdir. case "$future_libdirs " in *" $libdir "*) ;; *) func_append future_libdirs " $libdir" ;; esac fi func_dirname "$file" "/" "" dir="$func_dirname_result" func_append dir "$objdir" if test -n "$relink_command"; then # Determine the prefix the user has applied to our future dir. inst_prefix_dir=`$ECHO "$destdir" | $SED -e "s%$libdir\$%%"` # Don't allow the user to place us outside of our expected # location b/c this prevents finding dependent libraries that # are installed to the same prefix. # At present, this check doesn't affect windows .dll's that # are installed into $libdir/../bin (currently, that works fine) # but it's something to keep an eye on. test "$inst_prefix_dir" = "$destdir" && \ func_fatal_error "error: cannot install \`$file' to a directory not ending in $libdir" if test -n "$inst_prefix_dir"; then # Stick the inst_prefix_dir data into the link command. relink_command=`$ECHO "$relink_command" | $SED "s%@inst_prefix_dir@%-inst-prefix-dir $inst_prefix_dir%"` else relink_command=`$ECHO "$relink_command" | $SED "s%@inst_prefix_dir@%%"` fi func_warning "relinking \`$file'" func_show_eval "$relink_command" \ 'func_fatal_error "error: relink \`$file'\'' with the above command before installing it"' fi # See the names of the shared library. set dummy $library_names; shift if test -n "$1"; then realname="$1" shift srcname="$realname" test -n "$relink_command" && srcname="$realname"T # Install the shared library and build the symlinks. func_show_eval "$install_shared_prog $dir/$srcname $destdir/$realname" \ 'exit $?' tstripme="$stripme" case $host_os in cygwin* | mingw* | pw32* | cegcc*) case $realname in *.dll.a) tstripme="" ;; esac ;; esac if test -n "$tstripme" && test -n "$striplib"; then func_show_eval "$striplib $destdir/$realname" 'exit $?' fi if test "$#" -gt 0; then # Delete the old symlinks, and create new ones. # Try `ln -sf' first, because the `ln' binary might depend on # the symlink we replace! Solaris /bin/ln does not understand -f, # so we also need to try rm && ln -s. for linkname do test "$linkname" != "$realname" \ && func_show_eval "(cd $destdir && { $LN_S -f $realname $linkname || { $RM $linkname && $LN_S $realname $linkname; }; })" done fi # Do each command in the postinstall commands. lib="$destdir/$realname" func_execute_cmds "$postinstall_cmds" 'exit $?' fi # Install the pseudo-library for information purposes. func_basename "$file" name="$func_basename_result" instname="$dir/$name"i func_show_eval "$install_prog $instname $destdir/$name" 'exit $?' # Maybe install the static library, too. test -n "$old_library" && func_append staticlibs " $dir/$old_library" ;; *.lo) # Install (i.e. copy) a libtool object. # Figure out destination file name, if it wasn't already specified. if test -n "$destname"; then destfile="$destdir/$destname" else func_basename "$file" destfile="$func_basename_result" destfile="$destdir/$destfile" fi # Deduce the name of the destination old-style object file. case $destfile in *.lo) func_lo2o "$destfile" staticdest=$func_lo2o_result ;; *.$objext) staticdest="$destfile" destfile= ;; *) func_fatal_help "cannot copy a libtool object to \`$destfile'" ;; esac # Install the libtool object if requested. test -n "$destfile" && \ func_show_eval "$install_prog $file $destfile" 'exit $?' # Install the old object if enabled. if test "$build_old_libs" = yes; then # Deduce the name of the old-style object file. func_lo2o "$file" staticobj=$func_lo2o_result func_show_eval "$install_prog \$staticobj \$staticdest" 'exit $?' fi exit $EXIT_SUCCESS ;; *) # Figure out destination file name, if it wasn't already specified. if test -n "$destname"; then destfile="$destdir/$destname" else func_basename "$file" destfile="$func_basename_result" destfile="$destdir/$destfile" fi # If the file is missing, and there is a .exe on the end, strip it # because it is most likely a libtool script we actually want to # install stripped_ext="" case $file in *.exe) if test ! -f "$file"; then func_stripname '' '.exe' "$file" file=$func_stripname_result stripped_ext=".exe" fi ;; esac # Do a test to see if this is really a libtool program. case $host in *cygwin* | *mingw*) if func_ltwrapper_executable_p "$file"; then func_ltwrapper_scriptname "$file" wrapper=$func_ltwrapper_scriptname_result else func_stripname '' '.exe' "$file" wrapper=$func_stripname_result fi ;; *) wrapper=$file ;; esac if func_ltwrapper_script_p "$wrapper"; then notinst_deplibs= relink_command= func_source "$wrapper" # Check the variables that should have been set. test -z "$generated_by_libtool_version" && \ func_fatal_error "invalid libtool wrapper script \`$wrapper'" finalize=yes for lib in $notinst_deplibs; do # Check to see that each library is installed. libdir= if test -f "$lib"; then func_source "$lib" fi libfile="$libdir/"`$ECHO "$lib" | $SED 's%^.*/%%g'` ### testsuite: skip nested quoting test if test -n "$libdir" && test ! -f "$libfile"; then func_warning "\`$lib' has not been installed in \`$libdir'" finalize=no fi done relink_command= func_source "$wrapper" outputname= if test "$fast_install" = no && test -n "$relink_command"; then $opt_dry_run || { if test "$finalize" = yes; then tmpdir=`func_mktempdir` func_basename "$file$stripped_ext" file="$func_basename_result" outputname="$tmpdir/$file" # Replace the output file specification. relink_command=`$ECHO "$relink_command" | $SED 's%@OUTPUT@%'"$outputname"'%g'` $opt_silent || { func_quote_for_expand "$relink_command" eval "func_echo $func_quote_for_expand_result" } if eval "$relink_command"; then : else func_error "error: relink \`$file' with the above command before installing it" $opt_dry_run || ${RM}r "$tmpdir" continue fi file="$outputname" else func_warning "cannot relink \`$file'" fi } else # Install the binary that we compiled earlier. file=`$ECHO "$file$stripped_ext" | $SED "s%\([^/]*\)$%$objdir/\1%"` fi fi # remove .exe since cygwin /usr/bin/install will append another # one anyway case $install_prog,$host in */usr/bin/install*,*cygwin*) case $file:$destfile in *.exe:*.exe) # this is ok ;; *.exe:*) destfile=$destfile.exe ;; *:*.exe) func_stripname '' '.exe' "$destfile" destfile=$func_stripname_result ;; esac ;; esac func_show_eval "$install_prog\$stripme \$file \$destfile" 'exit $?' $opt_dry_run || if test -n "$outputname"; then ${RM}r "$tmpdir" fi ;; esac done for file in $staticlibs; do func_basename "$file" name="$func_basename_result" # Set up the ranlib parameters. oldlib="$destdir/$name" func_to_tool_file "$oldlib" func_convert_file_msys_to_w32 tool_oldlib=$func_to_tool_file_result func_show_eval "$install_prog \$file \$oldlib" 'exit $?' if test -n "$stripme" && test -n "$old_striplib"; then func_show_eval "$old_striplib $tool_oldlib" 'exit $?' fi # Do each command in the postinstall commands. func_execute_cmds "$old_postinstall_cmds" 'exit $?' done test -n "$future_libdirs" && \ func_warning "remember to run \`$progname --finish$future_libdirs'" if test -n "$current_libdirs"; then # Maybe just do a dry run. $opt_dry_run && current_libdirs=" -n$current_libdirs" exec_cmd='$SHELL $progpath $preserve_args --finish$current_libdirs' else exit $EXIT_SUCCESS fi } test "$opt_mode" = install && func_mode_install ${1+"$@"} # func_generate_dlsyms outputname originator pic_p # Extract symbols from dlprefiles and create ${outputname}S.o with # a dlpreopen symbol table. func_generate_dlsyms () { $opt_debug my_outputname="$1" my_originator="$2" my_pic_p="${3-no}" my_prefix=`$ECHO "$my_originator" | sed 's%[^a-zA-Z0-9]%_%g'` my_dlsyms= if test -n "$dlfiles$dlprefiles" || test "$dlself" != no; then if test -n "$NM" && test -n "$global_symbol_pipe"; then my_dlsyms="${my_outputname}S.c" else func_error "not configured to extract global symbols from dlpreopened files" fi fi if test -n "$my_dlsyms"; then case $my_dlsyms in "") ;; *.c) # Discover the nlist of each of the dlfiles. nlist="$output_objdir/${my_outputname}.nm" func_show_eval "$RM $nlist ${nlist}S ${nlist}T" # Parse the name list into a source file. func_verbose "creating $output_objdir/$my_dlsyms" $opt_dry_run || $ECHO > "$output_objdir/$my_dlsyms" "\ /* $my_dlsyms - symbol resolution table for \`$my_outputname' dlsym emulation. */ /* Generated by $PROGRAM (GNU $PACKAGE$TIMESTAMP) $VERSION */ #ifdef __cplusplus extern \"C\" { #endif #if defined(__GNUC__) && (((__GNUC__ == 4) && (__GNUC_MINOR__ >= 4)) || (__GNUC__ > 4)) #pragma GCC diagnostic ignored \"-Wstrict-prototypes\" #endif /* Keep this code in sync between libtool.m4, ltmain, lt_system.h, and tests. */ #if defined(_WIN32) || defined(__CYGWIN__) || defined(_WIN32_WCE) /* DATA imports from DLLs on WIN32 con't be const, because runtime relocations are performed -- see ld's documentation on pseudo-relocs. */ # define LT_DLSYM_CONST #elif defined(__osf__) /* This system does not cope well with relocations in const data. */ # define LT_DLSYM_CONST #else # define LT_DLSYM_CONST const #endif /* External symbol declarations for the compiler. */\ " if test "$dlself" = yes; then func_verbose "generating symbol list for \`$output'" $opt_dry_run || echo ': @PROGRAM@ ' > "$nlist" # Add our own program objects to the symbol list. progfiles=`$ECHO "$objs$old_deplibs" | $SP2NL | $SED "$lo2o" | $NL2SP` for progfile in $progfiles; do func_to_tool_file "$progfile" func_convert_file_msys_to_w32 func_verbose "extracting global C symbols from \`$func_to_tool_file_result'" $opt_dry_run || eval "$NM $func_to_tool_file_result | $global_symbol_pipe >> '$nlist'" done if test -n "$exclude_expsyms"; then $opt_dry_run || { eval '$EGREP -v " ($exclude_expsyms)$" "$nlist" > "$nlist"T' eval '$MV "$nlist"T "$nlist"' } fi if test -n "$export_symbols_regex"; then $opt_dry_run || { eval '$EGREP -e "$export_symbols_regex" "$nlist" > "$nlist"T' eval '$MV "$nlist"T "$nlist"' } fi # Prepare the list of exported symbols if test -z "$export_symbols"; then export_symbols="$output_objdir/$outputname.exp" $opt_dry_run || { $RM $export_symbols eval "${SED} -n -e '/^: @PROGRAM@ $/d' -e 's/^.* \(.*\)$/\1/p' "'< "$nlist" > "$export_symbols"' case $host in *cygwin* | *mingw* | *cegcc* ) eval "echo EXPORTS "'> "$output_objdir/$outputname.def"' eval 'cat "$export_symbols" >> "$output_objdir/$outputname.def"' ;; esac } else $opt_dry_run || { eval "${SED} -e 's/\([].[*^$]\)/\\\\\1/g' -e 's/^/ /' -e 's/$/$/'"' < "$export_symbols" > "$output_objdir/$outputname.exp"' eval '$GREP -f "$output_objdir/$outputname.exp" < "$nlist" > "$nlist"T' eval '$MV "$nlist"T "$nlist"' case $host in *cygwin* | *mingw* | *cegcc* ) eval "echo EXPORTS "'> "$output_objdir/$outputname.def"' eval 'cat "$nlist" >> "$output_objdir/$outputname.def"' ;; esac } fi fi for dlprefile in $dlprefiles; do func_verbose "extracting global C symbols from \`$dlprefile'" func_basename "$dlprefile" name="$func_basename_result" case $host in *cygwin* | *mingw* | *cegcc* ) # if an import library, we need to obtain dlname if func_win32_import_lib_p "$dlprefile"; then func_tr_sh "$dlprefile" eval "curr_lafile=\$libfile_$func_tr_sh_result" dlprefile_dlbasename="" if test -n "$curr_lafile" && func_lalib_p "$curr_lafile"; then # Use subshell, to avoid clobbering current variable values dlprefile_dlname=`source "$curr_lafile" && echo "$dlname"` if test -n "$dlprefile_dlname" ; then func_basename "$dlprefile_dlname" dlprefile_dlbasename="$func_basename_result" else # no lafile. user explicitly requested -dlpreopen . $sharedlib_from_linklib_cmd "$dlprefile" dlprefile_dlbasename=$sharedlib_from_linklib_result fi fi $opt_dry_run || { if test -n "$dlprefile_dlbasename" ; then eval '$ECHO ": $dlprefile_dlbasename" >> "$nlist"' else func_warning "Could not compute DLL name from $name" eval '$ECHO ": $name " >> "$nlist"' fi func_to_tool_file "$dlprefile" func_convert_file_msys_to_w32 eval "$NM \"$func_to_tool_file_result\" 2>/dev/null | $global_symbol_pipe | $SED -e '/I __imp/d' -e 's/I __nm_/D /;s/_nm__//' >> '$nlist'" } else # not an import lib $opt_dry_run || { eval '$ECHO ": $name " >> "$nlist"' func_to_tool_file "$dlprefile" func_convert_file_msys_to_w32 eval "$NM \"$func_to_tool_file_result\" 2>/dev/null | $global_symbol_pipe >> '$nlist'" } fi ;; *) $opt_dry_run || { eval '$ECHO ": $name " >> "$nlist"' func_to_tool_file "$dlprefile" func_convert_file_msys_to_w32 eval "$NM \"$func_to_tool_file_result\" 2>/dev/null | $global_symbol_pipe >> '$nlist'" } ;; esac done $opt_dry_run || { # Make sure we have at least an empty file. test -f "$nlist" || : > "$nlist" if test -n "$exclude_expsyms"; then $EGREP -v " ($exclude_expsyms)$" "$nlist" > "$nlist"T $MV "$nlist"T "$nlist" fi # Try sorting and uniquifying the output. if $GREP -v "^: " < "$nlist" | if sort -k 3 /dev/null 2>&1; then sort -k 3 else sort +2 fi | uniq > "$nlist"S; then : else $GREP -v "^: " < "$nlist" > "$nlist"S fi if test -f "$nlist"S; then eval "$global_symbol_to_cdecl"' < "$nlist"S >> "$output_objdir/$my_dlsyms"' else echo '/* NONE */' >> "$output_objdir/$my_dlsyms" fi echo >> "$output_objdir/$my_dlsyms" "\ /* The mapping between symbol names and symbols. */ typedef struct { const char *name; void *address; } lt_dlsymlist; extern LT_DLSYM_CONST lt_dlsymlist lt_${my_prefix}_LTX_preloaded_symbols[]; LT_DLSYM_CONST lt_dlsymlist lt_${my_prefix}_LTX_preloaded_symbols[] = {\ { \"$my_originator\", (void *) 0 }," case $need_lib_prefix in no) eval "$global_symbol_to_c_name_address" < "$nlist" >> "$output_objdir/$my_dlsyms" ;; *) eval "$global_symbol_to_c_name_address_lib_prefix" < "$nlist" >> "$output_objdir/$my_dlsyms" ;; esac echo >> "$output_objdir/$my_dlsyms" "\ {0, (void *) 0} }; /* This works around a problem in FreeBSD linker */ #ifdef FREEBSD_WORKAROUND static const void *lt_preloaded_setup() { return lt_${my_prefix}_LTX_preloaded_symbols; } #endif #ifdef __cplusplus } #endif\ " } # !$opt_dry_run pic_flag_for_symtable= case "$compile_command " in *" -static "*) ;; *) case $host in # compiling the symbol table file with pic_flag works around # a FreeBSD bug that causes programs to crash when -lm is # linked before any other PIC object. But we must not use # pic_flag when linking with -static. The problem exists in # FreeBSD 2.2.6 and is fixed in FreeBSD 3.1. *-*-freebsd2.*|*-*-freebsd3.0*|*-*-freebsdelf3.0*) pic_flag_for_symtable=" $pic_flag -DFREEBSD_WORKAROUND" ;; *-*-hpux*) pic_flag_for_symtable=" $pic_flag" ;; *) if test "X$my_pic_p" != Xno; then pic_flag_for_symtable=" $pic_flag" fi ;; esac ;; esac symtab_cflags= for arg in $LTCFLAGS; do case $arg in -pie | -fpie | -fPIE) ;; *) func_append symtab_cflags " $arg" ;; esac done # Now compile the dynamic symbol file. func_show_eval '(cd $output_objdir && $LTCC$symtab_cflags -c$no_builtin_flag$pic_flag_for_symtable "$my_dlsyms")' 'exit $?' # Clean up the generated files. func_show_eval '$RM "$output_objdir/$my_dlsyms" "$nlist" "${nlist}S" "${nlist}T"' # Transform the symbol file into the correct name. symfileobj="$output_objdir/${my_outputname}S.$objext" case $host in *cygwin* | *mingw* | *cegcc* ) if test -f "$output_objdir/$my_outputname.def"; then compile_command=`$ECHO "$compile_command" | $SED "s%@SYMFILE@%$output_objdir/$my_outputname.def $symfileobj%"` finalize_command=`$ECHO "$finalize_command" | $SED "s%@SYMFILE@%$output_objdir/$my_outputname.def $symfileobj%"` else compile_command=`$ECHO "$compile_command" | $SED "s%@SYMFILE@%$symfileobj%"` finalize_command=`$ECHO "$finalize_command" | $SED "s%@SYMFILE@%$symfileobj%"` fi ;; *) compile_command=`$ECHO "$compile_command" | $SED "s%@SYMFILE@%$symfileobj%"` finalize_command=`$ECHO "$finalize_command" | $SED "s%@SYMFILE@%$symfileobj%"` ;; esac ;; *) func_fatal_error "unknown suffix for \`$my_dlsyms'" ;; esac else # We keep going just in case the user didn't refer to # lt_preloaded_symbols. The linker will fail if global_symbol_pipe # really was required. # Nullify the symbol file. compile_command=`$ECHO "$compile_command" | $SED "s% @SYMFILE@%%"` finalize_command=`$ECHO "$finalize_command" | $SED "s% @SYMFILE@%%"` fi } # func_win32_libid arg # return the library type of file 'arg' # # Need a lot of goo to handle *both* DLLs and import libs # Has to be a shell function in order to 'eat' the argument # that is supplied when $file_magic_command is called. # Despite the name, also deal with 64 bit binaries. func_win32_libid () { $opt_debug win32_libid_type="unknown" win32_fileres=`file -L $1 2>/dev/null` case $win32_fileres in *ar\ archive\ import\ library*) # definitely import win32_libid_type="x86 archive import" ;; *ar\ archive*) # could be an import, or static # Keep the egrep pattern in sync with the one in _LT_CHECK_MAGIC_METHOD. if eval $OBJDUMP -f $1 | $SED -e '10q' 2>/dev/null | $EGREP 'file format (pei*-i386(.*architecture: i386)?|pe-arm-wince|pe-x86-64)' >/dev/null; then func_to_tool_file "$1" func_convert_file_msys_to_w32 win32_nmres=`eval $NM -f posix -A \"$func_to_tool_file_result\" | $SED -n -e ' 1,100{ / I /{ s,.*,import, p q } }'` case $win32_nmres in import*) win32_libid_type="x86 archive import";; *) win32_libid_type="x86 archive static";; esac fi ;; *DLL*) win32_libid_type="x86 DLL" ;; *executable*) # but shell scripts are "executable" too... case $win32_fileres in *MS\ Windows\ PE\ Intel*) win32_libid_type="x86 DLL" ;; esac ;; esac $ECHO "$win32_libid_type" } # func_cygming_dll_for_implib ARG # # Platform-specific function to extract the # name of the DLL associated with the specified # import library ARG. # Invoked by eval'ing the libtool variable # $sharedlib_from_linklib_cmd # Result is available in the variable # $sharedlib_from_linklib_result func_cygming_dll_for_implib () { $opt_debug sharedlib_from_linklib_result=`$DLLTOOL --identify-strict --identify "$1"` } # func_cygming_dll_for_implib_fallback_core SECTION_NAME LIBNAMEs # # The is the core of a fallback implementation of a # platform-specific function to extract the name of the # DLL associated with the specified import library LIBNAME. # # SECTION_NAME is either .idata$6 or .idata$7, depending # on the platform and compiler that created the implib. # # Echos the name of the DLL associated with the # specified import library. func_cygming_dll_for_implib_fallback_core () { $opt_debug match_literal=`$ECHO "$1" | $SED "$sed_make_literal_regex"` $OBJDUMP -s --section "$1" "$2" 2>/dev/null | $SED '/^Contents of section '"$match_literal"':/{ # Place marker at beginning of archive member dllname section s/.*/====MARK====/ p d } # These lines can sometimes be longer than 43 characters, but # are always uninteresting /:[ ]*file format pe[i]\{,1\}-/d /^In archive [^:]*:/d # Ensure marker is printed /^====MARK====/p # Remove all lines with less than 43 characters /^.\{43\}/!d # From remaining lines, remove first 43 characters s/^.\{43\}//' | $SED -n ' # Join marker and all lines until next marker into a single line /^====MARK====/ b para H $ b para b :para x s/\n//g # Remove the marker s/^====MARK====// # Remove trailing dots and whitespace s/[\. \t]*$// # Print /./p' | # we now have a list, one entry per line, of the stringified # contents of the appropriate section of all members of the # archive which possess that section. Heuristic: eliminate # all those which have a first or second character that is # a '.' (that is, objdump's representation of an unprintable # character.) This should work for all archives with less than # 0x302f exports -- but will fail for DLLs whose name actually # begins with a literal '.' or a single character followed by # a '.'. # # Of those that remain, print the first one. $SED -e '/^\./d;/^.\./d;q' } # func_cygming_gnu_implib_p ARG # This predicate returns with zero status (TRUE) if # ARG is a GNU/binutils-style import library. Returns # with nonzero status (FALSE) otherwise. func_cygming_gnu_implib_p () { $opt_debug func_to_tool_file "$1" func_convert_file_msys_to_w32 func_cygming_gnu_implib_tmp=`$NM "$func_to_tool_file_result" | eval "$global_symbol_pipe" | $EGREP ' (_head_[A-Za-z0-9_]+_[ad]l*|[A-Za-z0-9_]+_[ad]l*_iname)$'` test -n "$func_cygming_gnu_implib_tmp" } # func_cygming_ms_implib_p ARG # This predicate returns with zero status (TRUE) if # ARG is an MS-style import library. Returns # with nonzero status (FALSE) otherwise. func_cygming_ms_implib_p () { $opt_debug func_to_tool_file "$1" func_convert_file_msys_to_w32 func_cygming_ms_implib_tmp=`$NM "$func_to_tool_file_result" | eval "$global_symbol_pipe" | $GREP '_NULL_IMPORT_DESCRIPTOR'` test -n "$func_cygming_ms_implib_tmp" } # func_cygming_dll_for_implib_fallback ARG # Platform-specific function to extract the # name of the DLL associated with the specified # import library ARG. # # This fallback implementation is for use when $DLLTOOL # does not support the --identify-strict option. # Invoked by eval'ing the libtool variable # $sharedlib_from_linklib_cmd # Result is available in the variable # $sharedlib_from_linklib_result func_cygming_dll_for_implib_fallback () { $opt_debug if func_cygming_gnu_implib_p "$1" ; then # binutils import library sharedlib_from_linklib_result=`func_cygming_dll_for_implib_fallback_core '.idata$7' "$1"` elif func_cygming_ms_implib_p "$1" ; then # ms-generated import library sharedlib_from_linklib_result=`func_cygming_dll_for_implib_fallback_core '.idata$6' "$1"` else # unknown sharedlib_from_linklib_result="" fi } # func_extract_an_archive dir oldlib func_extract_an_archive () { $opt_debug f_ex_an_ar_dir="$1"; shift f_ex_an_ar_oldlib="$1" if test "$lock_old_archive_extraction" = yes; then lockfile=$f_ex_an_ar_oldlib.lock until $opt_dry_run || ln "$progpath" "$lockfile" 2>/dev/null; do func_echo "Waiting for $lockfile to be removed" sleep 2 done fi func_show_eval "(cd \$f_ex_an_ar_dir && $AR x \"\$f_ex_an_ar_oldlib\")" \ 'stat=$?; rm -f "$lockfile"; exit $stat' if test "$lock_old_archive_extraction" = yes; then $opt_dry_run || rm -f "$lockfile" fi if ($AR t "$f_ex_an_ar_oldlib" | sort | sort -uc >/dev/null 2>&1); then : else func_fatal_error "object name conflicts in archive: $f_ex_an_ar_dir/$f_ex_an_ar_oldlib" fi } # func_extract_archives gentop oldlib ... func_extract_archives () { $opt_debug my_gentop="$1"; shift my_oldlibs=${1+"$@"} my_oldobjs="" my_xlib="" my_xabs="" my_xdir="" for my_xlib in $my_oldlibs; do # Extract the objects. case $my_xlib in [\\/]* | [A-Za-z]:[\\/]*) my_xabs="$my_xlib" ;; *) my_xabs=`pwd`"/$my_xlib" ;; esac func_basename "$my_xlib" my_xlib="$func_basename_result" my_xlib_u=$my_xlib while :; do case " $extracted_archives " in *" $my_xlib_u "*) func_arith $extracted_serial + 1 extracted_serial=$func_arith_result my_xlib_u=lt$extracted_serial-$my_xlib ;; *) break ;; esac done extracted_archives="$extracted_archives $my_xlib_u" my_xdir="$my_gentop/$my_xlib_u" func_mkdir_p "$my_xdir" case $host in *-darwin*) func_verbose "Extracting $my_xabs" # Do not bother doing anything if just a dry run $opt_dry_run || { darwin_orig_dir=`pwd` cd $my_xdir || exit $? darwin_archive=$my_xabs darwin_curdir=`pwd` darwin_base_archive=`basename "$darwin_archive"` darwin_arches=`$LIPO -info "$darwin_archive" 2>/dev/null | $GREP Architectures 2>/dev/null || true` if test -n "$darwin_arches"; then darwin_arches=`$ECHO "$darwin_arches" | $SED -e 's/.*are://'` darwin_arch= func_verbose "$darwin_base_archive has multiple architectures $darwin_arches" for darwin_arch in $darwin_arches ; do func_mkdir_p "unfat-$$/${darwin_base_archive}-${darwin_arch}" $LIPO -thin $darwin_arch -output "unfat-$$/${darwin_base_archive}-${darwin_arch}/${darwin_base_archive}" "${darwin_archive}" cd "unfat-$$/${darwin_base_archive}-${darwin_arch}" func_extract_an_archive "`pwd`" "${darwin_base_archive}" cd "$darwin_curdir" $RM "unfat-$$/${darwin_base_archive}-${darwin_arch}/${darwin_base_archive}" done # $darwin_arches ## Okay now we've a bunch of thin objects, gotta fatten them up :) darwin_filelist=`find unfat-$$ -type f -name \*.o -print -o -name \*.lo -print | $SED -e "$basename" | sort -u` darwin_file= darwin_files= for darwin_file in $darwin_filelist; do darwin_files=`find unfat-$$ -name $darwin_file -print | sort | $NL2SP` $LIPO -create -output "$darwin_file" $darwin_files done # $darwin_filelist $RM -rf unfat-$$ cd "$darwin_orig_dir" else cd $darwin_orig_dir func_extract_an_archive "$my_xdir" "$my_xabs" fi # $darwin_arches } # !$opt_dry_run ;; *) func_extract_an_archive "$my_xdir" "$my_xabs" ;; esac my_oldobjs="$my_oldobjs "`find $my_xdir -name \*.$objext -print -o -name \*.lo -print | sort | $NL2SP` done func_extract_archives_result="$my_oldobjs" } # func_emit_wrapper [arg=no] # # Emit a libtool wrapper script on stdout. # Don't directly open a file because we may want to # incorporate the script contents within a cygwin/mingw # wrapper executable. Must ONLY be called from within # func_mode_link because it depends on a number of variables # set therein. # # ARG is the value that the WRAPPER_SCRIPT_BELONGS_IN_OBJDIR # variable will take. If 'yes', then the emitted script # will assume that the directory in which it is stored is # the $objdir directory. This is a cygwin/mingw-specific # behavior. func_emit_wrapper () { func_emit_wrapper_arg1=${1-no} $ECHO "\ #! $SHELL # $output - temporary wrapper script for $objdir/$outputname # Generated by $PROGRAM (GNU $PACKAGE$TIMESTAMP) $VERSION # # The $output program cannot be directly executed until all the libtool # libraries that it depends on are installed. # # This wrapper script should never be moved out of the build directory. # If it is, it will not operate correctly. # Sed substitution that helps us do robust quoting. It backslashifies # metacharacters that are still active within double-quoted strings. sed_quote_subst='$sed_quote_subst' # Be Bourne compatible if test -n \"\${ZSH_VERSION+set}\" && (emulate sh) >/dev/null 2>&1; then emulate sh NULLCMD=: # Zsh 3.x and 4.x performs word splitting on \${1+\"\$@\"}, which # is contrary to our usage. Disable this feature. alias -g '\${1+\"\$@\"}'='\"\$@\"' setopt NO_GLOB_SUBST else case \`(set -o) 2>/dev/null\` in *posix*) set -o posix;; esac fi BIN_SH=xpg4; export BIN_SH # for Tru64 DUALCASE=1; export DUALCASE # for MKS sh # The HP-UX ksh and POSIX shell print the target directory to stdout # if CDPATH is set. (unset CDPATH) >/dev/null 2>&1 && unset CDPATH relink_command=\"$relink_command\" # This environment variable determines our operation mode. if test \"\$libtool_install_magic\" = \"$magic\"; then # install mode needs the following variables: generated_by_libtool_version='$macro_version' notinst_deplibs='$notinst_deplibs' else # When we are sourced in execute mode, \$file and \$ECHO are already set. if test \"\$libtool_execute_magic\" != \"$magic\"; then file=\"\$0\"" qECHO=`$ECHO "$ECHO" | $SED "$sed_quote_subst"` $ECHO "\ # A function that is used when there is no print builtin or printf. func_fallback_echo () { eval 'cat <<_LTECHO_EOF \$1 _LTECHO_EOF' } ECHO=\"$qECHO\" fi # Very basic option parsing. These options are (a) specific to # the libtool wrapper, (b) are identical between the wrapper # /script/ and the wrapper /executable/ which is used only on # windows platforms, and (c) all begin with the string "--lt-" # (application programs are unlikely to have options which match # this pattern). # # There are only two supported options: --lt-debug and # --lt-dump-script. There is, deliberately, no --lt-help. # # The first argument to this parsing function should be the # script's $0 value, followed by "$@". lt_option_debug= func_parse_lt_options () { lt_script_arg0=\$0 shift for lt_opt do case \"\$lt_opt\" in --lt-debug) lt_option_debug=1 ;; --lt-dump-script) lt_dump_D=\`\$ECHO \"X\$lt_script_arg0\" | $SED -e 's/^X//' -e 's%/[^/]*$%%'\` test \"X\$lt_dump_D\" = \"X\$lt_script_arg0\" && lt_dump_D=. lt_dump_F=\`\$ECHO \"X\$lt_script_arg0\" | $SED -e 's/^X//' -e 's%^.*/%%'\` cat \"\$lt_dump_D/\$lt_dump_F\" exit 0 ;; --lt-*) \$ECHO \"Unrecognized --lt- option: '\$lt_opt'\" 1>&2 exit 1 ;; esac done # Print the debug banner immediately: if test -n \"\$lt_option_debug\"; then echo \"${outputname}:${output}:\${LINENO}: libtool wrapper (GNU $PACKAGE$TIMESTAMP) $VERSION\" 1>&2 fi } # Used when --lt-debug. Prints its arguments to stdout # (redirection is the responsibility of the caller) func_lt_dump_args () { lt_dump_args_N=1; for lt_arg do \$ECHO \"${outputname}:${output}:\${LINENO}: newargv[\$lt_dump_args_N]: \$lt_arg\" lt_dump_args_N=\`expr \$lt_dump_args_N + 1\` done } # Core function for launching the target application func_exec_program_core () { " case $host in # Backslashes separate directories on plain windows *-*-mingw | *-*-os2* | *-cegcc*) $ECHO "\ if test -n \"\$lt_option_debug\"; then \$ECHO \"${outputname}:${output}:\${LINENO}: newargv[0]: \$progdir\\\\\$program\" 1>&2 func_lt_dump_args \${1+\"\$@\"} 1>&2 fi exec \"\$progdir\\\\\$program\" \${1+\"\$@\"} " ;; *) $ECHO "\ if test -n \"\$lt_option_debug\"; then \$ECHO \"${outputname}:${output}:\${LINENO}: newargv[0]: \$progdir/\$program\" 1>&2 func_lt_dump_args \${1+\"\$@\"} 1>&2 fi exec \"\$progdir/\$program\" \${1+\"\$@\"} " ;; esac $ECHO "\ \$ECHO \"\$0: cannot exec \$program \$*\" 1>&2 exit 1 } # A function to encapsulate launching the target application # Strips options in the --lt-* namespace from \$@ and # launches target application with the remaining arguments. func_exec_program () { case \" \$* \" in *\\ --lt-*) for lt_wr_arg do case \$lt_wr_arg in --lt-*) ;; *) set x \"\$@\" \"\$lt_wr_arg\"; shift;; esac shift done ;; esac func_exec_program_core \${1+\"\$@\"} } # Parse options func_parse_lt_options \"\$0\" \${1+\"\$@\"} # Find the directory that this script lives in. thisdir=\`\$ECHO \"\$file\" | $SED 's%/[^/]*$%%'\` test \"x\$thisdir\" = \"x\$file\" && thisdir=. # Follow symbolic links until we get to the real thisdir. file=\`ls -ld \"\$file\" | $SED -n 's/.*-> //p'\` while test -n \"\$file\"; do destdir=\`\$ECHO \"\$file\" | $SED 's%/[^/]*\$%%'\` # If there was a directory component, then change thisdir. if test \"x\$destdir\" != \"x\$file\"; then case \"\$destdir\" in [\\\\/]* | [A-Za-z]:[\\\\/]*) thisdir=\"\$destdir\" ;; *) thisdir=\"\$thisdir/\$destdir\" ;; esac fi file=\`\$ECHO \"\$file\" | $SED 's%^.*/%%'\` file=\`ls -ld \"\$thisdir/\$file\" | $SED -n 's/.*-> //p'\` done # Usually 'no', except on cygwin/mingw when embedded into # the cwrapper. WRAPPER_SCRIPT_BELONGS_IN_OBJDIR=$func_emit_wrapper_arg1 if test \"\$WRAPPER_SCRIPT_BELONGS_IN_OBJDIR\" = \"yes\"; then # special case for '.' if test \"\$thisdir\" = \".\"; then thisdir=\`pwd\` fi # remove .libs from thisdir case \"\$thisdir\" in *[\\\\/]$objdir ) thisdir=\`\$ECHO \"\$thisdir\" | $SED 's%[\\\\/][^\\\\/]*$%%'\` ;; $objdir ) thisdir=. ;; esac fi # Try to get the absolute directory name. absdir=\`cd \"\$thisdir\" && pwd\` test -n \"\$absdir\" && thisdir=\"\$absdir\" " if test "$fast_install" = yes; then $ECHO "\ program=lt-'$outputname'$exeext progdir=\"\$thisdir/$objdir\" if test ! -f \"\$progdir/\$program\" || { file=\`ls -1dt \"\$progdir/\$program\" \"\$progdir/../\$program\" 2>/dev/null | ${SED} 1q\`; \\ test \"X\$file\" != \"X\$progdir/\$program\"; }; then file=\"\$\$-\$program\" if test ! -d \"\$progdir\"; then $MKDIR \"\$progdir\" else $RM \"\$progdir/\$file\" fi" $ECHO "\ # relink executable if necessary if test -n \"\$relink_command\"; then if relink_command_output=\`eval \$relink_command 2>&1\`; then : else $ECHO \"\$relink_command_output\" >&2 $RM \"\$progdir/\$file\" exit 1 fi fi $MV \"\$progdir/\$file\" \"\$progdir/\$program\" 2>/dev/null || { $RM \"\$progdir/\$program\"; $MV \"\$progdir/\$file\" \"\$progdir/\$program\"; } $RM \"\$progdir/\$file\" fi" else $ECHO "\ program='$outputname' progdir=\"\$thisdir/$objdir\" " fi $ECHO "\ if test -f \"\$progdir/\$program\"; then" # fixup the dll searchpath if we need to. # # Fix the DLL searchpath if we need to. Do this before prepending # to shlibpath, because on Windows, both are PATH and uninstalled # libraries must come first. if test -n "$dllsearchpath"; then $ECHO "\ # Add the dll search path components to the executable PATH PATH=$dllsearchpath:\$PATH " fi # Export our shlibpath_var if we have one. if test "$shlibpath_overrides_runpath" = yes && test -n "$shlibpath_var" && test -n "$temp_rpath"; then $ECHO "\ # Add our own library path to $shlibpath_var $shlibpath_var=\"$temp_rpath\$$shlibpath_var\" # Some systems cannot cope with colon-terminated $shlibpath_var # The second colon is a workaround for a bug in BeOS R4 sed $shlibpath_var=\`\$ECHO \"\$$shlibpath_var\" | $SED 's/::*\$//'\` export $shlibpath_var " fi $ECHO "\ if test \"\$libtool_execute_magic\" != \"$magic\"; then # Run the actual program with our arguments. func_exec_program \${1+\"\$@\"} fi else # The program doesn't exist. \$ECHO \"\$0: error: \\\`\$progdir/\$program' does not exist\" 1>&2 \$ECHO \"This script is just a wrapper for \$program.\" 1>&2 \$ECHO \"See the $PACKAGE documentation for more information.\" 1>&2 exit 1 fi fi\ " } # func_emit_cwrapperexe_src # emit the source code for a wrapper executable on stdout # Must ONLY be called from within func_mode_link because # it depends on a number of variable set therein. func_emit_cwrapperexe_src () { cat < #include #ifdef _MSC_VER # include # include # include #else # include # include # ifdef __CYGWIN__ # include # endif #endif #include #include #include #include #include #include #include #include /* declarations of non-ANSI functions */ #if defined(__MINGW32__) # ifdef __STRICT_ANSI__ int _putenv (const char *); # endif #elif defined(__CYGWIN__) # ifdef __STRICT_ANSI__ char *realpath (const char *, char *); int putenv (char *); int setenv (const char *, const char *, int); # endif /* #elif defined (other platforms) ... */ #endif /* portability defines, excluding path handling macros */ #if defined(_MSC_VER) # define setmode _setmode # define stat _stat # define chmod _chmod # define getcwd _getcwd # define putenv _putenv # define S_IXUSR _S_IEXEC # ifndef _INTPTR_T_DEFINED # define _INTPTR_T_DEFINED # define intptr_t int # endif #elif defined(__MINGW32__) # define setmode _setmode # define stat _stat # define chmod _chmod # define getcwd _getcwd # define putenv _putenv #elif defined(__CYGWIN__) # define HAVE_SETENV # define FOPEN_WB "wb" /* #elif defined (other platforms) ... */ #endif #if defined(PATH_MAX) # define LT_PATHMAX PATH_MAX #elif defined(MAXPATHLEN) # define LT_PATHMAX MAXPATHLEN #else # define LT_PATHMAX 1024 #endif #ifndef S_IXOTH # define S_IXOTH 0 #endif #ifndef S_IXGRP # define S_IXGRP 0 #endif /* path handling portability macros */ #ifndef DIR_SEPARATOR # define DIR_SEPARATOR '/' # define PATH_SEPARATOR ':' #endif #if defined (_WIN32) || defined (__MSDOS__) || defined (__DJGPP__) || \ defined (__OS2__) # define HAVE_DOS_BASED_FILE_SYSTEM # define FOPEN_WB "wb" # ifndef DIR_SEPARATOR_2 # define DIR_SEPARATOR_2 '\\' # endif # ifndef PATH_SEPARATOR_2 # define PATH_SEPARATOR_2 ';' # endif #endif #ifndef DIR_SEPARATOR_2 # define IS_DIR_SEPARATOR(ch) ((ch) == DIR_SEPARATOR) #else /* DIR_SEPARATOR_2 */ # define IS_DIR_SEPARATOR(ch) \ (((ch) == DIR_SEPARATOR) || ((ch) == DIR_SEPARATOR_2)) #endif /* DIR_SEPARATOR_2 */ #ifndef PATH_SEPARATOR_2 # define IS_PATH_SEPARATOR(ch) ((ch) == PATH_SEPARATOR) #else /* PATH_SEPARATOR_2 */ # define IS_PATH_SEPARATOR(ch) ((ch) == PATH_SEPARATOR_2) #endif /* PATH_SEPARATOR_2 */ #ifndef FOPEN_WB # define FOPEN_WB "w" #endif #ifndef _O_BINARY # define _O_BINARY 0 #endif #define XMALLOC(type, num) ((type *) xmalloc ((num) * sizeof(type))) #define XFREE(stale) do { \ if (stale) { free ((void *) stale); stale = 0; } \ } while (0) #if defined(LT_DEBUGWRAPPER) static int lt_debug = 1; #else static int lt_debug = 0; #endif const char *program_name = "libtool-wrapper"; /* in case xstrdup fails */ void *xmalloc (size_t num); char *xstrdup (const char *string); const char *base_name (const char *name); char *find_executable (const char *wrapper); char *chase_symlinks (const char *pathspec); int make_executable (const char *path); int check_executable (const char *path); char *strendzap (char *str, const char *pat); void lt_debugprintf (const char *file, int line, const char *fmt, ...); void lt_fatal (const char *file, int line, const char *message, ...); static const char *nonnull (const char *s); static const char *nonempty (const char *s); void lt_setenv (const char *name, const char *value); char *lt_extend_str (const char *orig_value, const char *add, int to_end); void lt_update_exe_path (const char *name, const char *value); void lt_update_lib_path (const char *name, const char *value); char **prepare_spawn (char **argv); void lt_dump_script (FILE *f); EOF cat <= 0) && (st.st_mode & (S_IXUSR | S_IXGRP | S_IXOTH))) return 1; else return 0; } int make_executable (const char *path) { int rval = 0; struct stat st; lt_debugprintf (__FILE__, __LINE__, "(make_executable): %s\n", nonempty (path)); if ((!path) || (!*path)) return 0; if (stat (path, &st) >= 0) { rval = chmod (path, st.st_mode | S_IXOTH | S_IXGRP | S_IXUSR); } return rval; } /* Searches for the full path of the wrapper. Returns newly allocated full path name if found, NULL otherwise Does not chase symlinks, even on platforms that support them. */ char * find_executable (const char *wrapper) { int has_slash = 0; const char *p; const char *p_next; /* static buffer for getcwd */ char tmp[LT_PATHMAX + 1]; int tmp_len; char *concat_name; lt_debugprintf (__FILE__, __LINE__, "(find_executable): %s\n", nonempty (wrapper)); if ((wrapper == NULL) || (*wrapper == '\0')) return NULL; /* Absolute path? */ #if defined (HAVE_DOS_BASED_FILE_SYSTEM) if (isalpha ((unsigned char) wrapper[0]) && wrapper[1] == ':') { concat_name = xstrdup (wrapper); if (check_executable (concat_name)) return concat_name; XFREE (concat_name); } else { #endif if (IS_DIR_SEPARATOR (wrapper[0])) { concat_name = xstrdup (wrapper); if (check_executable (concat_name)) return concat_name; XFREE (concat_name); } #if defined (HAVE_DOS_BASED_FILE_SYSTEM) } #endif for (p = wrapper; *p; p++) if (*p == '/') { has_slash = 1; break; } if (!has_slash) { /* no slashes; search PATH */ const char *path = getenv ("PATH"); if (path != NULL) { for (p = path; *p; p = p_next) { const char *q; size_t p_len; for (q = p; *q; q++) if (IS_PATH_SEPARATOR (*q)) break; p_len = q - p; p_next = (*q == '\0' ? q : q + 1); if (p_len == 0) { /* empty path: current directory */ if (getcwd (tmp, LT_PATHMAX) == NULL) lt_fatal (__FILE__, __LINE__, "getcwd failed: %s", nonnull (strerror (errno))); tmp_len = strlen (tmp); concat_name = XMALLOC (char, tmp_len + 1 + strlen (wrapper) + 1); memcpy (concat_name, tmp, tmp_len); concat_name[tmp_len] = '/'; strcpy (concat_name + tmp_len + 1, wrapper); } else { concat_name = XMALLOC (char, p_len + 1 + strlen (wrapper) + 1); memcpy (concat_name, p, p_len); concat_name[p_len] = '/'; strcpy (concat_name + p_len + 1, wrapper); } if (check_executable (concat_name)) return concat_name; XFREE (concat_name); } } /* not found in PATH; assume curdir */ } /* Relative path | not found in path: prepend cwd */ if (getcwd (tmp, LT_PATHMAX) == NULL) lt_fatal (__FILE__, __LINE__, "getcwd failed: %s", nonnull (strerror (errno))); tmp_len = strlen (tmp); concat_name = XMALLOC (char, tmp_len + 1 + strlen (wrapper) + 1); memcpy (concat_name, tmp, tmp_len); concat_name[tmp_len] = '/'; strcpy (concat_name + tmp_len + 1, wrapper); if (check_executable (concat_name)) return concat_name; XFREE (concat_name); return NULL; } char * chase_symlinks (const char *pathspec) { #ifndef S_ISLNK return xstrdup (pathspec); #else char buf[LT_PATHMAX]; struct stat s; char *tmp_pathspec = xstrdup (pathspec); char *p; int has_symlinks = 0; while (strlen (tmp_pathspec) && !has_symlinks) { lt_debugprintf (__FILE__, __LINE__, "checking path component for symlinks: %s\n", tmp_pathspec); if (lstat (tmp_pathspec, &s) == 0) { if (S_ISLNK (s.st_mode) != 0) { has_symlinks = 1; break; } /* search backwards for last DIR_SEPARATOR */ p = tmp_pathspec + strlen (tmp_pathspec) - 1; while ((p > tmp_pathspec) && (!IS_DIR_SEPARATOR (*p))) p--; if ((p == tmp_pathspec) && (!IS_DIR_SEPARATOR (*p))) { /* no more DIR_SEPARATORS left */ break; } *p = '\0'; } else { lt_fatal (__FILE__, __LINE__, "error accessing file \"%s\": %s", tmp_pathspec, nonnull (strerror (errno))); } } XFREE (tmp_pathspec); if (!has_symlinks) { return xstrdup (pathspec); } tmp_pathspec = realpath (pathspec, buf); if (tmp_pathspec == 0) { lt_fatal (__FILE__, __LINE__, "could not follow symlinks for %s", pathspec); } return xstrdup (tmp_pathspec); #endif } char * strendzap (char *str, const char *pat) { size_t len, patlen; assert (str != NULL); assert (pat != NULL); len = strlen (str); patlen = strlen (pat); if (patlen <= len) { str += len - patlen; if (strcmp (str, pat) == 0) *str = '\0'; } return str; } void lt_debugprintf (const char *file, int line, const char *fmt, ...) { va_list args; if (lt_debug) { (void) fprintf (stderr, "%s:%s:%d: ", program_name, file, line); va_start (args, fmt); (void) vfprintf (stderr, fmt, args); va_end (args); } } static void lt_error_core (int exit_status, const char *file, int line, const char *mode, const char *message, va_list ap) { fprintf (stderr, "%s:%s:%d: %s: ", program_name, file, line, mode); vfprintf (stderr, message, ap); fprintf (stderr, ".\n"); if (exit_status >= 0) exit (exit_status); } void lt_fatal (const char *file, int line, const char *message, ...) { va_list ap; va_start (ap, message); lt_error_core (EXIT_FAILURE, file, line, "FATAL", message, ap); va_end (ap); } static const char * nonnull (const char *s) { return s ? s : "(null)"; } static const char * nonempty (const char *s) { return (s && !*s) ? "(empty)" : nonnull (s); } void lt_setenv (const char *name, const char *value) { lt_debugprintf (__FILE__, __LINE__, "(lt_setenv) setting '%s' to '%s'\n", nonnull (name), nonnull (value)); { #ifdef HAVE_SETENV /* always make a copy, for consistency with !HAVE_SETENV */ char *str = xstrdup (value); setenv (name, str, 1); #else int len = strlen (name) + 1 + strlen (value) + 1; char *str = XMALLOC (char, len); sprintf (str, "%s=%s", name, value); if (putenv (str) != EXIT_SUCCESS) { XFREE (str); } #endif } } char * lt_extend_str (const char *orig_value, const char *add, int to_end) { char *new_value; if (orig_value && *orig_value) { int orig_value_len = strlen (orig_value); int add_len = strlen (add); new_value = XMALLOC (char, add_len + orig_value_len + 1); if (to_end) { strcpy (new_value, orig_value); strcpy (new_value + orig_value_len, add); } else { strcpy (new_value, add); strcpy (new_value + add_len, orig_value); } } else { new_value = xstrdup (add); } return new_value; } void lt_update_exe_path (const char *name, const char *value) { lt_debugprintf (__FILE__, __LINE__, "(lt_update_exe_path) modifying '%s' by prepending '%s'\n", nonnull (name), nonnull (value)); if (name && *name && value && *value) { char *new_value = lt_extend_str (getenv (name), value, 0); /* some systems can't cope with a ':'-terminated path #' */ int len = strlen (new_value); while (((len = strlen (new_value)) > 0) && IS_PATH_SEPARATOR (new_value[len-1])) { new_value[len-1] = '\0'; } lt_setenv (name, new_value); XFREE (new_value); } } void lt_update_lib_path (const char *name, const char *value) { lt_debugprintf (__FILE__, __LINE__, "(lt_update_lib_path) modifying '%s' by prepending '%s'\n", nonnull (name), nonnull (value)); if (name && *name && value && *value) { char *new_value = lt_extend_str (getenv (name), value, 0); lt_setenv (name, new_value); XFREE (new_value); } } EOF case $host_os in mingw*) cat <<"EOF" /* Prepares an argument vector before calling spawn(). Note that spawn() does not by itself call the command interpreter (getenv ("COMSPEC") != NULL ? getenv ("COMSPEC") : ({ OSVERSIONINFO v; v.dwOSVersionInfoSize = sizeof(OSVERSIONINFO); GetVersionEx(&v); v.dwPlatformId == VER_PLATFORM_WIN32_NT; }) ? "cmd.exe" : "command.com"). Instead it simply concatenates the arguments, separated by ' ', and calls CreateProcess(). We must quote the arguments since Win32 CreateProcess() interprets characters like ' ', '\t', '\\', '"' (but not '<' and '>') in a special way: - Space and tab are interpreted as delimiters. They are not treated as delimiters if they are surrounded by double quotes: "...". - Unescaped double quotes are removed from the input. Their only effect is that within double quotes, space and tab are treated like normal characters. - Backslashes not followed by double quotes are not special. - But 2*n+1 backslashes followed by a double quote become n backslashes followed by a double quote (n >= 0): \" -> " \\\" -> \" \\\\\" -> \\" */ #define SHELL_SPECIAL_CHARS "\"\\ \001\002\003\004\005\006\007\010\011\012\013\014\015\016\017\020\021\022\023\024\025\026\027\030\031\032\033\034\035\036\037" #define SHELL_SPACE_CHARS " \001\002\003\004\005\006\007\010\011\012\013\014\015\016\017\020\021\022\023\024\025\026\027\030\031\032\033\034\035\036\037" char ** prepare_spawn (char **argv) { size_t argc; char **new_argv; size_t i; /* Count number of arguments. */ for (argc = 0; argv[argc] != NULL; argc++) ; /* Allocate new argument vector. */ new_argv = XMALLOC (char *, argc + 1); /* Put quoted arguments into the new argument vector. */ for (i = 0; i < argc; i++) { const char *string = argv[i]; if (string[0] == '\0') new_argv[i] = xstrdup ("\"\""); else if (strpbrk (string, SHELL_SPECIAL_CHARS) != NULL) { int quote_around = (strpbrk (string, SHELL_SPACE_CHARS) != NULL); size_t length; unsigned int backslashes; const char *s; char *quoted_string; char *p; length = 0; backslashes = 0; if (quote_around) length++; for (s = string; *s != '\0'; s++) { char c = *s; if (c == '"') length += backslashes + 1; length++; if (c == '\\') backslashes++; else backslashes = 0; } if (quote_around) length += backslashes + 1; quoted_string = XMALLOC (char, length + 1); p = quoted_string; backslashes = 0; if (quote_around) *p++ = '"'; for (s = string; *s != '\0'; s++) { char c = *s; if (c == '"') { unsigned int j; for (j = backslashes + 1; j > 0; j--) *p++ = '\\'; } *p++ = c; if (c == '\\') backslashes++; else backslashes = 0; } if (quote_around) { unsigned int j; for (j = backslashes; j > 0; j--) *p++ = '\\'; *p++ = '"'; } *p = '\0'; new_argv[i] = quoted_string; } else new_argv[i] = (char *) string; } new_argv[argc] = NULL; return new_argv; } EOF ;; esac cat <<"EOF" void lt_dump_script (FILE* f) { EOF func_emit_wrapper yes | $SED -n -e ' s/^\(.\{79\}\)\(..*\)/\1\ \2/ h s/\([\\"]\)/\\\1/g s/$/\\n/ s/\([^\n]*\).*/ fputs ("\1", f);/p g D' cat <<"EOF" } EOF } # end: func_emit_cwrapperexe_src # func_win32_import_lib_p ARG # True if ARG is an import lib, as indicated by $file_magic_cmd func_win32_import_lib_p () { $opt_debug case `eval $file_magic_cmd \"\$1\" 2>/dev/null | $SED -e 10q` in *import*) : ;; *) false ;; esac } # func_mode_link arg... func_mode_link () { $opt_debug case $host in *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-cegcc*) # It is impossible to link a dll without this setting, and # we shouldn't force the makefile maintainer to figure out # which system we are compiling for in order to pass an extra # flag for every libtool invocation. # allow_undefined=no # FIXME: Unfortunately, there are problems with the above when trying # to make a dll which has undefined symbols, in which case not # even a static library is built. For now, we need to specify # -no-undefined on the libtool link line when we can be certain # that all symbols are satisfied, otherwise we get a static library. allow_undefined=yes ;; *) allow_undefined=yes ;; esac libtool_args=$nonopt base_compile="$nonopt $@" compile_command=$nonopt finalize_command=$nonopt compile_rpath= finalize_rpath= compile_shlibpath= finalize_shlibpath= convenience= old_convenience= deplibs= old_deplibs= compiler_flags= linker_flags= dllsearchpath= lib_search_path=`pwd` inst_prefix_dir= new_inherited_linker_flags= avoid_version=no bindir= dlfiles= dlprefiles= dlself=no export_dynamic=no export_symbols= export_symbols_regex= generated= libobjs= ltlibs= module=no no_install=no objs= non_pic_objects= precious_files_regex= prefer_static_libs=no preload=no prev= prevarg= release= rpath= xrpath= perm_rpath= temp_rpath= thread_safe=no vinfo= vinfo_number=no weak_libs= single_module="${wl}-single_module" func_infer_tag $base_compile # We need to know -static, to get the right output filenames. for arg do case $arg in -shared) test "$build_libtool_libs" != yes && \ func_fatal_configuration "can not build a shared library" build_old_libs=no break ;; -all-static | -static | -static-libtool-libs) case $arg in -all-static) if test "$build_libtool_libs" = yes && test -z "$link_static_flag"; then func_warning "complete static linking is impossible in this configuration" fi if test -n "$link_static_flag"; then dlopen_self=$dlopen_self_static fi prefer_static_libs=yes ;; -static) if test -z "$pic_flag" && test -n "$link_static_flag"; then dlopen_self=$dlopen_self_static fi prefer_static_libs=built ;; -static-libtool-libs) if test -z "$pic_flag" && test -n "$link_static_flag"; then dlopen_self=$dlopen_self_static fi prefer_static_libs=yes ;; esac build_libtool_libs=no build_old_libs=yes break ;; esac done # See if our shared archives depend on static archives. test -n "$old_archive_from_new_cmds" && build_old_libs=yes # Go through the arguments, transforming them on the way. while test "$#" -gt 0; do arg="$1" shift func_quote_for_eval "$arg" qarg=$func_quote_for_eval_unquoted_result func_append libtool_args " $func_quote_for_eval_result" # If the previous option needs an argument, assign it. if test -n "$prev"; then case $prev in output) func_append compile_command " @OUTPUT@" func_append finalize_command " @OUTPUT@" ;; esac case $prev in bindir) bindir="$arg" prev= continue ;; dlfiles|dlprefiles) if test "$preload" = no; then # Add the symbol object into the linking commands. func_append compile_command " @SYMFILE@" func_append finalize_command " @SYMFILE@" preload=yes fi case $arg in *.la | *.lo) ;; # We handle these cases below. force) if test "$dlself" = no; then dlself=needless export_dynamic=yes fi prev= continue ;; self) if test "$prev" = dlprefiles; then dlself=yes elif test "$prev" = dlfiles && test "$dlopen_self" != yes; then dlself=yes else dlself=needless export_dynamic=yes fi prev= continue ;; *) if test "$prev" = dlfiles; then func_append dlfiles " $arg" else func_append dlprefiles " $arg" fi prev= continue ;; esac ;; expsyms) export_symbols="$arg" test -f "$arg" \ || func_fatal_error "symbol file \`$arg' does not exist" prev= continue ;; expsyms_regex) export_symbols_regex="$arg" prev= continue ;; framework) case $host in *-*-darwin*) case "$deplibs " in *" $qarg.ltframework "*) ;; *) func_append deplibs " $qarg.ltframework" # this is fixed later ;; esac ;; esac prev= continue ;; inst_prefix) inst_prefix_dir="$arg" prev= continue ;; objectlist) if test -f "$arg"; then save_arg=$arg moreargs= for fil in `cat "$save_arg"` do # func_append moreargs " $fil" arg=$fil # A libtool-controlled object. # Check to see that this really is a libtool object. if func_lalib_unsafe_p "$arg"; then pic_object= non_pic_object= # Read the .lo file func_source "$arg" if test -z "$pic_object" || test -z "$non_pic_object" || test "$pic_object" = none && test "$non_pic_object" = none; then func_fatal_error "cannot find name of object for \`$arg'" fi # Extract subdirectory from the argument. func_dirname "$arg" "/" "" xdir="$func_dirname_result" if test "$pic_object" != none; then # Prepend the subdirectory the object is found in. pic_object="$xdir$pic_object" if test "$prev" = dlfiles; then if test "$build_libtool_libs" = yes && test "$dlopen_support" = yes; then func_append dlfiles " $pic_object" prev= continue else # If libtool objects are unsupported, then we need to preload. prev=dlprefiles fi fi # CHECK ME: I think I busted this. -Ossama if test "$prev" = dlprefiles; then # Preload the old-style object. func_append dlprefiles " $pic_object" prev= fi # A PIC object. func_append libobjs " $pic_object" arg="$pic_object" fi # Non-PIC object. if test "$non_pic_object" != none; then # Prepend the subdirectory the object is found in. non_pic_object="$xdir$non_pic_object" # A standard non-PIC object func_append non_pic_objects " $non_pic_object" if test -z "$pic_object" || test "$pic_object" = none ; then arg="$non_pic_object" fi else # If the PIC object exists, use it instead. # $xdir was prepended to $pic_object above. non_pic_object="$pic_object" func_append non_pic_objects " $non_pic_object" fi else # Only an error if not doing a dry-run. if $opt_dry_run; then # Extract subdirectory from the argument. func_dirname "$arg" "/" "" xdir="$func_dirname_result" func_lo2o "$arg" pic_object=$xdir$objdir/$func_lo2o_result non_pic_object=$xdir$func_lo2o_result func_append libobjs " $pic_object" func_append non_pic_objects " $non_pic_object" else func_fatal_error "\`$arg' is not a valid libtool object" fi fi done else func_fatal_error "link input file \`$arg' does not exist" fi arg=$save_arg prev= continue ;; precious_regex) precious_files_regex="$arg" prev= continue ;; release) release="-$arg" prev= continue ;; rpath | xrpath) # We need an absolute path. case $arg in [\\/]* | [A-Za-z]:[\\/]*) ;; *) func_fatal_error "only absolute run-paths are allowed" ;; esac if test "$prev" = rpath; then case "$rpath " in *" $arg "*) ;; *) func_append rpath " $arg" ;; esac else case "$xrpath " in *" $arg "*) ;; *) func_append xrpath " $arg" ;; esac fi prev= continue ;; shrext) shrext_cmds="$arg" prev= continue ;; weak) func_append weak_libs " $arg" prev= continue ;; xcclinker) func_append linker_flags " $qarg" func_append compiler_flags " $qarg" prev= func_append compile_command " $qarg" func_append finalize_command " $qarg" continue ;; xcompiler) func_append compiler_flags " $qarg" prev= func_append compile_command " $qarg" func_append finalize_command " $qarg" continue ;; xlinker) func_append linker_flags " $qarg" func_append compiler_flags " $wl$qarg" prev= func_append compile_command " $wl$qarg" func_append finalize_command " $wl$qarg" continue ;; *) eval "$prev=\"\$arg\"" prev= continue ;; esac fi # test -n "$prev" prevarg="$arg" case $arg in -all-static) if test -n "$link_static_flag"; then # See comment for -static flag below, for more details. func_append compile_command " $link_static_flag" func_append finalize_command " $link_static_flag" fi continue ;; -allow-undefined) # FIXME: remove this flag sometime in the future. func_fatal_error "\`-allow-undefined' must not be used because it is the default" ;; -avoid-version) avoid_version=yes continue ;; -bindir) prev=bindir continue ;; -dlopen) prev=dlfiles continue ;; -dlpreopen) prev=dlprefiles continue ;; -export-dynamic) export_dynamic=yes continue ;; -export-symbols | -export-symbols-regex) if test -n "$export_symbols" || test -n "$export_symbols_regex"; then func_fatal_error "more than one -exported-symbols argument is not allowed" fi if test "X$arg" = "X-export-symbols"; then prev=expsyms else prev=expsyms_regex fi continue ;; -framework) prev=framework continue ;; -inst-prefix-dir) prev=inst_prefix continue ;; # The native IRIX linker understands -LANG:*, -LIST:* and -LNO:* # so, if we see these flags be careful not to treat them like -L -L[A-Z][A-Z]*:*) case $with_gcc/$host in no/*-*-irix* | /*-*-irix*) func_append compile_command " $arg" func_append finalize_command " $arg" ;; esac continue ;; -L*) func_stripname "-L" '' "$arg" if test -z "$func_stripname_result"; then if test "$#" -gt 0; then func_fatal_error "require no space between \`-L' and \`$1'" else func_fatal_error "need path for \`-L' option" fi fi func_resolve_sysroot "$func_stripname_result" dir=$func_resolve_sysroot_result # We need an absolute path. case $dir in [\\/]* | [A-Za-z]:[\\/]*) ;; *) absdir=`cd "$dir" && pwd` test -z "$absdir" && \ func_fatal_error "cannot determine absolute directory name of \`$dir'" dir="$absdir" ;; esac case "$deplibs " in *" -L$dir "* | *" $arg "*) # Will only happen for absolute or sysroot arguments ;; *) # Preserve sysroot, but never include relative directories case $dir in [\\/]* | [A-Za-z]:[\\/]* | =*) func_append deplibs " $arg" ;; *) func_append deplibs " -L$dir" ;; esac func_append lib_search_path " $dir" ;; esac case $host in *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-cegcc*) testbindir=`$ECHO "$dir" | $SED 's*/lib$*/bin*'` case :$dllsearchpath: in *":$dir:"*) ;; ::) dllsearchpath=$dir;; *) func_append dllsearchpath ":$dir";; esac case :$dllsearchpath: in *":$testbindir:"*) ;; ::) dllsearchpath=$testbindir;; *) func_append dllsearchpath ":$testbindir";; esac ;; esac continue ;; -l*) if test "X$arg" = "X-lc" || test "X$arg" = "X-lm"; then case $host in *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-beos* | *-cegcc* | *-*-haiku*) # These systems don't actually have a C or math library (as such) continue ;; *-*-os2*) # These systems don't actually have a C library (as such) test "X$arg" = "X-lc" && continue ;; *-*-openbsd* | *-*-freebsd* | *-*-dragonfly*) # Do not include libc due to us having libc/libc_r. test "X$arg" = "X-lc" && continue ;; *-*-rhapsody* | *-*-darwin1.[012]) # Rhapsody C and math libraries are in the System framework func_append deplibs " System.ltframework" continue ;; *-*-sco3.2v5* | *-*-sco5v6*) # Causes problems with __ctype test "X$arg" = "X-lc" && continue ;; *-*-sysv4.2uw2* | *-*-sysv5* | *-*-unixware* | *-*-OpenUNIX*) # Compiler inserts libc in the correct place for threads to work test "X$arg" = "X-lc" && continue ;; esac elif test "X$arg" = "X-lc_r"; then case $host in *-*-openbsd* | *-*-freebsd* | *-*-dragonfly*) # Do not include libc_r directly, use -pthread flag. continue ;; esac fi func_append deplibs " $arg" continue ;; -module) module=yes continue ;; # Tru64 UNIX uses -model [arg] to determine the layout of C++ # classes, name mangling, and exception handling. # Darwin uses the -arch flag to determine output architecture. -model|-arch|-isysroot|--sysroot) func_append compiler_flags " $arg" func_append compile_command " $arg" func_append finalize_command " $arg" prev=xcompiler continue ;; -mt|-mthreads|-kthread|-Kthread|-pthread|-pthreads|--thread-safe \ |-threads|-fopenmp|-openmp|-mp|-xopenmp|-omp|-qsmp=*) func_append compiler_flags " $arg" func_append compile_command " $arg" func_append finalize_command " $arg" case "$new_inherited_linker_flags " in *" $arg "*) ;; * ) func_append new_inherited_linker_flags " $arg" ;; esac continue ;; -multi_module) single_module="${wl}-multi_module" continue ;; -no-fast-install) fast_install=no continue ;; -no-install) case $host in *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-*-darwin* | *-cegcc*) # The PATH hackery in wrapper scripts is required on Windows # and Darwin in order for the loader to find any dlls it needs. func_warning "\`-no-install' is ignored for $host" func_warning "assuming \`-no-fast-install' instead" fast_install=no ;; *) no_install=yes ;; esac continue ;; -no-undefined) allow_undefined=no continue ;; -objectlist) prev=objectlist continue ;; -o) prev=output ;; -precious-files-regex) prev=precious_regex continue ;; -release) prev=release continue ;; -rpath) prev=rpath continue ;; -R) prev=xrpath continue ;; -R*) func_stripname '-R' '' "$arg" dir=$func_stripname_result # We need an absolute path. case $dir in [\\/]* | [A-Za-z]:[\\/]*) ;; =*) func_stripname '=' '' "$dir" dir=$lt_sysroot$func_stripname_result ;; *) func_fatal_error "only absolute run-paths are allowed" ;; esac case "$xrpath " in *" $dir "*) ;; *) func_append xrpath " $dir" ;; esac continue ;; -shared) # The effects of -shared are defined in a previous loop. continue ;; -shrext) prev=shrext continue ;; -static | -static-libtool-libs) # The effects of -static are defined in a previous loop. # We used to do the same as -all-static on platforms that # didn't have a PIC flag, but the assumption that the effects # would be equivalent was wrong. It would break on at least # Digital Unix and AIX. continue ;; -thread-safe) thread_safe=yes continue ;; -version-info) prev=vinfo continue ;; -version-number) prev=vinfo vinfo_number=yes continue ;; -weak) prev=weak continue ;; -Wc,*) func_stripname '-Wc,' '' "$arg" args=$func_stripname_result arg= save_ifs="$IFS"; IFS=',' for flag in $args; do IFS="$save_ifs" func_quote_for_eval "$flag" func_append arg " $func_quote_for_eval_result" func_append compiler_flags " $func_quote_for_eval_result" done IFS="$save_ifs" func_stripname ' ' '' "$arg" arg=$func_stripname_result ;; -Wl,*) func_stripname '-Wl,' '' "$arg" args=$func_stripname_result arg= save_ifs="$IFS"; IFS=',' for flag in $args; do IFS="$save_ifs" func_quote_for_eval "$flag" func_append arg " $wl$func_quote_for_eval_result" func_append compiler_flags " $wl$func_quote_for_eval_result" func_append linker_flags " $func_quote_for_eval_result" done IFS="$save_ifs" func_stripname ' ' '' "$arg" arg=$func_stripname_result ;; -Xcompiler) prev=xcompiler continue ;; -Xlinker) prev=xlinker continue ;; -XCClinker) prev=xcclinker continue ;; # -msg_* for osf cc -msg_*) func_quote_for_eval "$arg" arg="$func_quote_for_eval_result" ;; # Flags to be passed through unchanged, with rationale: # -64, -mips[0-9] enable 64-bit mode for the SGI compiler # -r[0-9][0-9]* specify processor for the SGI compiler # -xarch=*, -xtarget=* enable 64-bit mode for the Sun compiler # +DA*, +DD* enable 64-bit mode for the HP compiler # -q* compiler args for the IBM compiler # -m*, -t[45]*, -txscale* architecture-specific flags for GCC # -F/path path to uninstalled frameworks, gcc on darwin # -p, -pg, --coverage, -fprofile-* profiling flags for GCC # @file GCC response files # -tp=* Portland pgcc target processor selection # --sysroot=* for sysroot support # -O*, -flto*, -fwhopr*, -fuse-linker-plugin GCC link-time optimization -64|-mips[0-9]|-r[0-9][0-9]*|-xarch=*|-xtarget=*|+DA*|+DD*|-q*|-m*| \ -t[45]*|-txscale*|-p|-pg|--coverage|-fprofile-*|-F*|@*|-tp=*|--sysroot=*| \ -O*|-flto*|-fwhopr*|-fuse-linker-plugin) func_quote_for_eval "$arg" arg="$func_quote_for_eval_result" func_append compile_command " $arg" func_append finalize_command " $arg" func_append compiler_flags " $arg" continue ;; # Some other compiler flag. -* | +*) func_quote_for_eval "$arg" arg="$func_quote_for_eval_result" ;; *.$objext) # A standard object. func_append objs " $arg" ;; *.lo) # A libtool-controlled object. # Check to see that this really is a libtool object. if func_lalib_unsafe_p "$arg"; then pic_object= non_pic_object= # Read the .lo file func_source "$arg" if test -z "$pic_object" || test -z "$non_pic_object" || test "$pic_object" = none && test "$non_pic_object" = none; then func_fatal_error "cannot find name of object for \`$arg'" fi # Extract subdirectory from the argument. func_dirname "$arg" "/" "" xdir="$func_dirname_result" if test "$pic_object" != none; then # Prepend the subdirectory the object is found in. pic_object="$xdir$pic_object" if test "$prev" = dlfiles; then if test "$build_libtool_libs" = yes && test "$dlopen_support" = yes; then func_append dlfiles " $pic_object" prev= continue else # If libtool objects are unsupported, then we need to preload. prev=dlprefiles fi fi # CHECK ME: I think I busted this. -Ossama if test "$prev" = dlprefiles; then # Preload the old-style object. func_append dlprefiles " $pic_object" prev= fi # A PIC object. func_append libobjs " $pic_object" arg="$pic_object" fi # Non-PIC object. if test "$non_pic_object" != none; then # Prepend the subdirectory the object is found in. non_pic_object="$xdir$non_pic_object" # A standard non-PIC object func_append non_pic_objects " $non_pic_object" if test -z "$pic_object" || test "$pic_object" = none ; then arg="$non_pic_object" fi else # If the PIC object exists, use it instead. # $xdir was prepended to $pic_object above. non_pic_object="$pic_object" func_append non_pic_objects " $non_pic_object" fi else # Only an error if not doing a dry-run. if $opt_dry_run; then # Extract subdirectory from the argument. func_dirname "$arg" "/" "" xdir="$func_dirname_result" func_lo2o "$arg" pic_object=$xdir$objdir/$func_lo2o_result non_pic_object=$xdir$func_lo2o_result func_append libobjs " $pic_object" func_append non_pic_objects " $non_pic_object" else func_fatal_error "\`$arg' is not a valid libtool object" fi fi ;; *.$libext) # An archive. func_append deplibs " $arg" func_append old_deplibs " $arg" continue ;; *.la) # A libtool-controlled library. func_resolve_sysroot "$arg" if test "$prev" = dlfiles; then # This library was specified with -dlopen. func_append dlfiles " $func_resolve_sysroot_result" prev= elif test "$prev" = dlprefiles; then # The library was specified with -dlpreopen. func_append dlprefiles " $func_resolve_sysroot_result" prev= else func_append deplibs " $func_resolve_sysroot_result" fi continue ;; # Some other compiler argument. *) # Unknown arguments in both finalize_command and compile_command need # to be aesthetically quoted because they are evaled later. func_quote_for_eval "$arg" arg="$func_quote_for_eval_result" ;; esac # arg # Now actually substitute the argument into the commands. if test -n "$arg"; then func_append compile_command " $arg" func_append finalize_command " $arg" fi done # argument parsing loop test -n "$prev" && \ func_fatal_help "the \`$prevarg' option requires an argument" if test "$export_dynamic" = yes && test -n "$export_dynamic_flag_spec"; then eval arg=\"$export_dynamic_flag_spec\" func_append compile_command " $arg" func_append finalize_command " $arg" fi oldlibs= # calculate the name of the file, without its directory func_basename "$output" outputname="$func_basename_result" libobjs_save="$libobjs" if test -n "$shlibpath_var"; then # get the directories listed in $shlibpath_var eval shlib_search_path=\`\$ECHO \"\${$shlibpath_var}\" \| \$SED \'s/:/ /g\'\` else shlib_search_path= fi eval sys_lib_search_path=\"$sys_lib_search_path_spec\" eval sys_lib_dlsearch_path=\"$sys_lib_dlsearch_path_spec\" func_dirname "$output" "/" "" output_objdir="$func_dirname_result$objdir" func_to_tool_file "$output_objdir/" tool_output_objdir=$func_to_tool_file_result # Create the object directory. func_mkdir_p "$output_objdir" # Determine the type of output case $output in "") func_fatal_help "you must specify an output file" ;; *.$libext) linkmode=oldlib ;; *.lo | *.$objext) linkmode=obj ;; *.la) linkmode=lib ;; *) linkmode=prog ;; # Anything else should be a program. esac specialdeplibs= libs= # Find all interdependent deplibs by searching for libraries # that are linked more than once (e.g. -la -lb -la) for deplib in $deplibs; do if $opt_preserve_dup_deps ; then case "$libs " in *" $deplib "*) func_append specialdeplibs " $deplib" ;; esac fi func_append libs " $deplib" done if test "$linkmode" = lib; then libs="$predeps $libs $compiler_lib_search_path $postdeps" # Compute libraries that are listed more than once in $predeps # $postdeps and mark them as special (i.e., whose duplicates are # not to be eliminated). pre_post_deps= if $opt_duplicate_compiler_generated_deps; then for pre_post_dep in $predeps $postdeps; do case "$pre_post_deps " in *" $pre_post_dep "*) func_append specialdeplibs " $pre_post_deps" ;; esac func_append pre_post_deps " $pre_post_dep" done fi pre_post_deps= fi deplibs= newdependency_libs= newlib_search_path= need_relink=no # whether we're linking any uninstalled libtool libraries notinst_deplibs= # not-installed libtool libraries notinst_path= # paths that contain not-installed libtool libraries case $linkmode in lib) passes="conv dlpreopen link" for file in $dlfiles $dlprefiles; do case $file in *.la) ;; *) func_fatal_help "libraries can \`-dlopen' only libtool libraries: $file" ;; esac done ;; prog) compile_deplibs= finalize_deplibs= alldeplibs=no newdlfiles= newdlprefiles= passes="conv scan dlopen dlpreopen link" ;; *) passes="conv" ;; esac for pass in $passes; do # The preopen pass in lib mode reverses $deplibs; put it back here # so that -L comes before libs that need it for instance... if test "$linkmode,$pass" = "lib,link"; then ## FIXME: Find the place where the list is rebuilt in the wrong ## order, and fix it there properly tmp_deplibs= for deplib in $deplibs; do tmp_deplibs="$deplib $tmp_deplibs" done deplibs="$tmp_deplibs" fi if test "$linkmode,$pass" = "lib,link" || test "$linkmode,$pass" = "prog,scan"; then libs="$deplibs" deplibs= fi if test "$linkmode" = prog; then case $pass in dlopen) libs="$dlfiles" ;; dlpreopen) libs="$dlprefiles" ;; link) libs="$deplibs %DEPLIBS%" test "X$link_all_deplibs" != Xno && libs="$libs $dependency_libs" ;; esac fi if test "$linkmode,$pass" = "lib,dlpreopen"; then # Collect and forward deplibs of preopened libtool libs for lib in $dlprefiles; do # Ignore non-libtool-libs dependency_libs= func_resolve_sysroot "$lib" case $lib in *.la) func_source "$func_resolve_sysroot_result" ;; esac # Collect preopened libtool deplibs, except any this library # has declared as weak libs for deplib in $dependency_libs; do func_basename "$deplib" deplib_base=$func_basename_result case " $weak_libs " in *" $deplib_base "*) ;; *) func_append deplibs " $deplib" ;; esac done done libs="$dlprefiles" fi if test "$pass" = dlopen; then # Collect dlpreopened libraries save_deplibs="$deplibs" deplibs= fi for deplib in $libs; do lib= found=no case $deplib in -mt|-mthreads|-kthread|-Kthread|-pthread|-pthreads|--thread-safe \ |-threads|-fopenmp|-openmp|-mp|-xopenmp|-omp|-qsmp=*) if test "$linkmode,$pass" = "prog,link"; then compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" else func_append compiler_flags " $deplib" if test "$linkmode" = lib ; then case "$new_inherited_linker_flags " in *" $deplib "*) ;; * ) func_append new_inherited_linker_flags " $deplib" ;; esac fi fi continue ;; -l*) if test "$linkmode" != lib && test "$linkmode" != prog; then func_warning "\`-l' is ignored for archives/objects" continue fi func_stripname '-l' '' "$deplib" name=$func_stripname_result if test "$linkmode" = lib; then searchdirs="$newlib_search_path $lib_search_path $compiler_lib_search_dirs $sys_lib_search_path $shlib_search_path" else searchdirs="$newlib_search_path $lib_search_path $sys_lib_search_path $shlib_search_path" fi for searchdir in $searchdirs; do for search_ext in .la $std_shrext .so .a; do # Search the libtool library lib="$searchdir/lib${name}${search_ext}" if test -f "$lib"; then if test "$search_ext" = ".la"; then found=yes else found=no fi break 2 fi done done if test "$found" != yes; then # deplib doesn't seem to be a libtool library if test "$linkmode,$pass" = "prog,link"; then compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" else deplibs="$deplib $deplibs" test "$linkmode" = lib && newdependency_libs="$deplib $newdependency_libs" fi continue else # deplib is a libtool library # If $allow_libtool_libs_with_static_runtimes && $deplib is a stdlib, # We need to do some special things here, and not later. if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then case " $predeps $postdeps " in *" $deplib "*) if func_lalib_p "$lib"; then library_names= old_library= func_source "$lib" for l in $old_library $library_names; do ll="$l" done if test "X$ll" = "X$old_library" ; then # only static version available found=no func_dirname "$lib" "" "." ladir="$func_dirname_result" lib=$ladir/$old_library if test "$linkmode,$pass" = "prog,link"; then compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" else deplibs="$deplib $deplibs" test "$linkmode" = lib && newdependency_libs="$deplib $newdependency_libs" fi continue fi fi ;; *) ;; esac fi fi ;; # -l *.ltframework) if test "$linkmode,$pass" = "prog,link"; then compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" else deplibs="$deplib $deplibs" if test "$linkmode" = lib ; then case "$new_inherited_linker_flags " in *" $deplib "*) ;; * ) func_append new_inherited_linker_flags " $deplib" ;; esac fi fi continue ;; -L*) case $linkmode in lib) deplibs="$deplib $deplibs" test "$pass" = conv && continue newdependency_libs="$deplib $newdependency_libs" func_stripname '-L' '' "$deplib" func_resolve_sysroot "$func_stripname_result" func_append newlib_search_path " $func_resolve_sysroot_result" ;; prog) if test "$pass" = conv; then deplibs="$deplib $deplibs" continue fi if test "$pass" = scan; then deplibs="$deplib $deplibs" else compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" fi func_stripname '-L' '' "$deplib" func_resolve_sysroot "$func_stripname_result" func_append newlib_search_path " $func_resolve_sysroot_result" ;; *) func_warning "\`-L' is ignored for archives/objects" ;; esac # linkmode continue ;; # -L -R*) if test "$pass" = link; then func_stripname '-R' '' "$deplib" func_resolve_sysroot "$func_stripname_result" dir=$func_resolve_sysroot_result # Make sure the xrpath contains only unique directories. case "$xrpath " in *" $dir "*) ;; *) func_append xrpath " $dir" ;; esac fi deplibs="$deplib $deplibs" continue ;; *.la) func_resolve_sysroot "$deplib" lib=$func_resolve_sysroot_result ;; *.$libext) if test "$pass" = conv; then deplibs="$deplib $deplibs" continue fi case $linkmode in lib) # Linking convenience modules into shared libraries is allowed, # but linking other static libraries is non-portable. case " $dlpreconveniencelibs " in *" $deplib "*) ;; *) valid_a_lib=no case $deplibs_check_method in match_pattern*) set dummy $deplibs_check_method; shift match_pattern_regex=`expr "$deplibs_check_method" : "$1 \(.*\)"` if eval "\$ECHO \"$deplib\"" 2>/dev/null | $SED 10q \ | $EGREP "$match_pattern_regex" > /dev/null; then valid_a_lib=yes fi ;; pass_all) valid_a_lib=yes ;; esac if test "$valid_a_lib" != yes; then echo $ECHO "*** Warning: Trying to link with static lib archive $deplib." echo "*** I have the capability to make that library automatically link in when" echo "*** you link to this library. But I can only do this if you have a" echo "*** shared version of the library, which you do not appear to have" echo "*** because the file extensions .$libext of this argument makes me believe" echo "*** that it is just a static archive that I should not use here." else echo $ECHO "*** Warning: Linking the shared library $output against the" $ECHO "*** static library $deplib is not portable!" deplibs="$deplib $deplibs" fi ;; esac continue ;; prog) if test "$pass" != link; then deplibs="$deplib $deplibs" else compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" fi continue ;; esac # linkmode ;; # *.$libext *.lo | *.$objext) if test "$pass" = conv; then deplibs="$deplib $deplibs" elif test "$linkmode" = prog; then if test "$pass" = dlpreopen || test "$dlopen_support" != yes || test "$build_libtool_libs" = no; then # If there is no dlopen support or we're linking statically, # we need to preload. func_append newdlprefiles " $deplib" compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" else func_append newdlfiles " $deplib" fi fi continue ;; %DEPLIBS%) alldeplibs=yes continue ;; esac # case $deplib if test "$found" = yes || test -f "$lib"; then : else func_fatal_error "cannot find the library \`$lib' or unhandled argument \`$deplib'" fi # Check to see that this really is a libtool archive. func_lalib_unsafe_p "$lib" \ || func_fatal_error "\`$lib' is not a valid libtool archive" func_dirname "$lib" "" "." ladir="$func_dirname_result" dlname= dlopen= dlpreopen= libdir= library_names= old_library= inherited_linker_flags= # If the library was installed with an old release of libtool, # it will not redefine variables installed, or shouldnotlink installed=yes shouldnotlink=no avoidtemprpath= # Read the .la file func_source "$lib" # Convert "-framework foo" to "foo.ltframework" if test -n "$inherited_linker_flags"; then tmp_inherited_linker_flags=`$ECHO "$inherited_linker_flags" | $SED 's/-framework \([^ $]*\)/\1.ltframework/g'` for tmp_inherited_linker_flag in $tmp_inherited_linker_flags; do case " $new_inherited_linker_flags " in *" $tmp_inherited_linker_flag "*) ;; *) func_append new_inherited_linker_flags " $tmp_inherited_linker_flag";; esac done fi dependency_libs=`$ECHO " $dependency_libs" | $SED 's% \([^ $]*\).ltframework% -framework \1%g'` if test "$linkmode,$pass" = "lib,link" || test "$linkmode,$pass" = "prog,scan" || { test "$linkmode" != prog && test "$linkmode" != lib; }; then test -n "$dlopen" && func_append dlfiles " $dlopen" test -n "$dlpreopen" && func_append dlprefiles " $dlpreopen" fi if test "$pass" = conv; then # Only check for convenience libraries deplibs="$lib $deplibs" if test -z "$libdir"; then if test -z "$old_library"; then func_fatal_error "cannot find name of link library for \`$lib'" fi # It is a libtool convenience library, so add in its objects. func_append convenience " $ladir/$objdir/$old_library" func_append old_convenience " $ladir/$objdir/$old_library" tmp_libs= for deplib in $dependency_libs; do deplibs="$deplib $deplibs" if $opt_preserve_dup_deps ; then case "$tmp_libs " in *" $deplib "*) func_append specialdeplibs " $deplib" ;; esac fi func_append tmp_libs " $deplib" done elif test "$linkmode" != prog && test "$linkmode" != lib; then func_fatal_error "\`$lib' is not a convenience library" fi continue fi # $pass = conv # Get the name of the library we link against. linklib= if test -n "$old_library" && { test "$prefer_static_libs" = yes || test "$prefer_static_libs,$installed" = "built,no"; }; then linklib=$old_library else for l in $old_library $library_names; do linklib="$l" done fi if test -z "$linklib"; then func_fatal_error "cannot find name of link library for \`$lib'" fi # This library was specified with -dlopen. if test "$pass" = dlopen; then if test -z "$libdir"; then func_fatal_error "cannot -dlopen a convenience library: \`$lib'" fi if test -z "$dlname" || test "$dlopen_support" != yes || test "$build_libtool_libs" = no; then # If there is no dlname, no dlopen support or we're linking # statically, we need to preload. We also need to preload any # dependent libraries so libltdl's deplib preloader doesn't # bomb out in the load deplibs phase. func_append dlprefiles " $lib $dependency_libs" else func_append newdlfiles " $lib" fi continue fi # $pass = dlopen # We need an absolute path. case $ladir in [\\/]* | [A-Za-z]:[\\/]*) abs_ladir="$ladir" ;; *) abs_ladir=`cd "$ladir" && pwd` if test -z "$abs_ladir"; then func_warning "cannot determine absolute directory name of \`$ladir'" func_warning "passing it literally to the linker, although it might fail" abs_ladir="$ladir" fi ;; esac func_basename "$lib" laname="$func_basename_result" # Find the relevant object directory and library name. if test "X$installed" = Xyes; then if test ! -f "$lt_sysroot$libdir/$linklib" && test -f "$abs_ladir/$linklib"; then func_warning "library \`$lib' was moved." dir="$ladir" absdir="$abs_ladir" libdir="$abs_ladir" else dir="$lt_sysroot$libdir" absdir="$lt_sysroot$libdir" fi test "X$hardcode_automatic" = Xyes && avoidtemprpath=yes else if test ! -f "$ladir/$objdir/$linklib" && test -f "$abs_ladir/$linklib"; then dir="$ladir" absdir="$abs_ladir" # Remove this search path later func_append notinst_path " $abs_ladir" else dir="$ladir/$objdir" absdir="$abs_ladir/$objdir" # Remove this search path later func_append notinst_path " $abs_ladir" fi fi # $installed = yes func_stripname 'lib' '.la' "$laname" name=$func_stripname_result # This library was specified with -dlpreopen. if test "$pass" = dlpreopen; then if test -z "$libdir" && test "$linkmode" = prog; then func_fatal_error "only libraries may -dlpreopen a convenience library: \`$lib'" fi case "$host" in # special handling for platforms with PE-DLLs. *cygwin* | *mingw* | *cegcc* ) # Linker will automatically link against shared library if both # static and shared are present. Therefore, ensure we extract # symbols from the import library if a shared library is present # (otherwise, the dlopen module name will be incorrect). We do # this by putting the import library name into $newdlprefiles. # We recover the dlopen module name by 'saving' the la file # name in a special purpose variable, and (later) extracting the # dlname from the la file. if test -n "$dlname"; then func_tr_sh "$dir/$linklib" eval "libfile_$func_tr_sh_result=\$abs_ladir/\$laname" func_append newdlprefiles " $dir/$linklib" else func_append newdlprefiles " $dir/$old_library" # Keep a list of preopened convenience libraries to check # that they are being used correctly in the link pass. test -z "$libdir" && \ func_append dlpreconveniencelibs " $dir/$old_library" fi ;; * ) # Prefer using a static library (so that no silly _DYNAMIC symbols # are required to link). if test -n "$old_library"; then func_append newdlprefiles " $dir/$old_library" # Keep a list of preopened convenience libraries to check # that they are being used correctly in the link pass. test -z "$libdir" && \ func_append dlpreconveniencelibs " $dir/$old_library" # Otherwise, use the dlname, so that lt_dlopen finds it. elif test -n "$dlname"; then func_append newdlprefiles " $dir/$dlname" else func_append newdlprefiles " $dir/$linklib" fi ;; esac fi # $pass = dlpreopen if test -z "$libdir"; then # Link the convenience library if test "$linkmode" = lib; then deplibs="$dir/$old_library $deplibs" elif test "$linkmode,$pass" = "prog,link"; then compile_deplibs="$dir/$old_library $compile_deplibs" finalize_deplibs="$dir/$old_library $finalize_deplibs" else deplibs="$lib $deplibs" # used for prog,scan pass fi continue fi if test "$linkmode" = prog && test "$pass" != link; then func_append newlib_search_path " $ladir" deplibs="$lib $deplibs" linkalldeplibs=no if test "$link_all_deplibs" != no || test -z "$library_names" || test "$build_libtool_libs" = no; then linkalldeplibs=yes fi tmp_libs= for deplib in $dependency_libs; do case $deplib in -L*) func_stripname '-L' '' "$deplib" func_resolve_sysroot "$func_stripname_result" func_append newlib_search_path " $func_resolve_sysroot_result" ;; esac # Need to link against all dependency_libs? if test "$linkalldeplibs" = yes; then deplibs="$deplib $deplibs" else # Need to hardcode shared library paths # or/and link against static libraries newdependency_libs="$deplib $newdependency_libs" fi if $opt_preserve_dup_deps ; then case "$tmp_libs " in *" $deplib "*) func_append specialdeplibs " $deplib" ;; esac fi func_append tmp_libs " $deplib" done # for deplib continue fi # $linkmode = prog... if test "$linkmode,$pass" = "prog,link"; then if test -n "$library_names" && { { test "$prefer_static_libs" = no || test "$prefer_static_libs,$installed" = "built,yes"; } || test -z "$old_library"; }; then # We need to hardcode the library path if test -n "$shlibpath_var" && test -z "$avoidtemprpath" ; then # Make sure the rpath contains only unique directories. case "$temp_rpath:" in *"$absdir:"*) ;; *) func_append temp_rpath "$absdir:" ;; esac fi # Hardcode the library path. # Skip directories that are in the system default run-time # search path. case " $sys_lib_dlsearch_path " in *" $absdir "*) ;; *) case "$compile_rpath " in *" $absdir "*) ;; *) func_append compile_rpath " $absdir" ;; esac ;; esac case " $sys_lib_dlsearch_path " in *" $libdir "*) ;; *) case "$finalize_rpath " in *" $libdir "*) ;; *) func_append finalize_rpath " $libdir" ;; esac ;; esac fi # $linkmode,$pass = prog,link... if test "$alldeplibs" = yes && { test "$deplibs_check_method" = pass_all || { test "$build_libtool_libs" = yes && test -n "$library_names"; }; }; then # We only need to search for static libraries continue fi fi link_static=no # Whether the deplib will be linked statically use_static_libs=$prefer_static_libs if test "$use_static_libs" = built && test "$installed" = yes; then use_static_libs=no fi if test -n "$library_names" && { test "$use_static_libs" = no || test -z "$old_library"; }; then case $host in *cygwin* | *mingw* | *cegcc*) # No point in relinking DLLs because paths are not encoded func_append notinst_deplibs " $lib" need_relink=no ;; *) if test "$installed" = no; then func_append notinst_deplibs " $lib" need_relink=yes fi ;; esac # This is a shared library # Warn about portability, can't link against -module's on some # systems (darwin). Don't bleat about dlopened modules though! dlopenmodule="" for dlpremoduletest in $dlprefiles; do if test "X$dlpremoduletest" = "X$lib"; then dlopenmodule="$dlpremoduletest" break fi done if test -z "$dlopenmodule" && test "$shouldnotlink" = yes && test "$pass" = link; then echo if test "$linkmode" = prog; then $ECHO "*** Warning: Linking the executable $output against the loadable module" else $ECHO "*** Warning: Linking the shared library $output against the loadable module" fi $ECHO "*** $linklib is not portable!" fi if test "$linkmode" = lib && test "$hardcode_into_libs" = yes; then # Hardcode the library path. # Skip directories that are in the system default run-time # search path. case " $sys_lib_dlsearch_path " in *" $absdir "*) ;; *) case "$compile_rpath " in *" $absdir "*) ;; *) func_append compile_rpath " $absdir" ;; esac ;; esac case " $sys_lib_dlsearch_path " in *" $libdir "*) ;; *) case "$finalize_rpath " in *" $libdir "*) ;; *) func_append finalize_rpath " $libdir" ;; esac ;; esac fi if test -n "$old_archive_from_expsyms_cmds"; then # figure out the soname set dummy $library_names shift realname="$1" shift libname=`eval "\\$ECHO \"$libname_spec\""` # use dlname if we got it. it's perfectly good, no? if test -n "$dlname"; then soname="$dlname" elif test -n "$soname_spec"; then # bleh windows case $host in *cygwin* | mingw* | *cegcc*) func_arith $current - $age major=$func_arith_result versuffix="-$major" ;; esac eval soname=\"$soname_spec\" else soname="$realname" fi # Make a new name for the extract_expsyms_cmds to use soroot="$soname" func_basename "$soroot" soname="$func_basename_result" func_stripname 'lib' '.dll' "$soname" newlib=libimp-$func_stripname_result.a # If the library has no export list, then create one now if test -f "$output_objdir/$soname-def"; then : else func_verbose "extracting exported symbol list from \`$soname'" func_execute_cmds "$extract_expsyms_cmds" 'exit $?' fi # Create $newlib if test -f "$output_objdir/$newlib"; then :; else func_verbose "generating import library for \`$soname'" func_execute_cmds "$old_archive_from_expsyms_cmds" 'exit $?' fi # make sure the library variables are pointing to the new library dir=$output_objdir linklib=$newlib fi # test -n "$old_archive_from_expsyms_cmds" if test "$linkmode" = prog || test "$opt_mode" != relink; then add_shlibpath= add_dir= add= lib_linked=yes case $hardcode_action in immediate | unsupported) if test "$hardcode_direct" = no; then add="$dir/$linklib" case $host in *-*-sco3.2v5.0.[024]*) add_dir="-L$dir" ;; *-*-sysv4*uw2*) add_dir="-L$dir" ;; *-*-sysv5OpenUNIX* | *-*-sysv5UnixWare7.[01].[10]* | \ *-*-unixware7*) add_dir="-L$dir" ;; *-*-darwin* ) # if the lib is a (non-dlopened) module then we can not # link against it, someone is ignoring the earlier warnings if /usr/bin/file -L $add 2> /dev/null | $GREP ": [^:]* bundle" >/dev/null ; then if test "X$dlopenmodule" != "X$lib"; then $ECHO "*** Warning: lib $linklib is a module, not a shared library" if test -z "$old_library" ; then echo echo "*** And there doesn't seem to be a static archive available" echo "*** The link will probably fail, sorry" else add="$dir/$old_library" fi elif test -n "$old_library"; then add="$dir/$old_library" fi fi esac elif test "$hardcode_minus_L" = no; then case $host in *-*-sunos*) add_shlibpath="$dir" ;; esac add_dir="-L$dir" add="-l$name" elif test "$hardcode_shlibpath_var" = no; then add_shlibpath="$dir" add="-l$name" else lib_linked=no fi ;; relink) if test "$hardcode_direct" = yes && test "$hardcode_direct_absolute" = no; then add="$dir/$linklib" elif test "$hardcode_minus_L" = yes; then add_dir="-L$absdir" # Try looking first in the location we're being installed to. if test -n "$inst_prefix_dir"; then case $libdir in [\\/]*) func_append add_dir " -L$inst_prefix_dir$libdir" ;; esac fi add="-l$name" elif test "$hardcode_shlibpath_var" = yes; then add_shlibpath="$dir" add="-l$name" else lib_linked=no fi ;; *) lib_linked=no ;; esac if test "$lib_linked" != yes; then func_fatal_configuration "unsupported hardcode properties" fi if test -n "$add_shlibpath"; then case :$compile_shlibpath: in *":$add_shlibpath:"*) ;; *) func_append compile_shlibpath "$add_shlibpath:" ;; esac fi if test "$linkmode" = prog; then test -n "$add_dir" && compile_deplibs="$add_dir $compile_deplibs" test -n "$add" && compile_deplibs="$add $compile_deplibs" else test -n "$add_dir" && deplibs="$add_dir $deplibs" test -n "$add" && deplibs="$add $deplibs" if test "$hardcode_direct" != yes && test "$hardcode_minus_L" != yes && test "$hardcode_shlibpath_var" = yes; then case :$finalize_shlibpath: in *":$libdir:"*) ;; *) func_append finalize_shlibpath "$libdir:" ;; esac fi fi fi if test "$linkmode" = prog || test "$opt_mode" = relink; then add_shlibpath= add_dir= add= # Finalize command for both is simple: just hardcode it. if test "$hardcode_direct" = yes && test "$hardcode_direct_absolute" = no; then add="$libdir/$linklib" elif test "$hardcode_minus_L" = yes; then add_dir="-L$libdir" add="-l$name" elif test "$hardcode_shlibpath_var" = yes; then case :$finalize_shlibpath: in *":$libdir:"*) ;; *) func_append finalize_shlibpath "$libdir:" ;; esac add="-l$name" elif test "$hardcode_automatic" = yes; then if test -n "$inst_prefix_dir" && test -f "$inst_prefix_dir$libdir/$linklib" ; then add="$inst_prefix_dir$libdir/$linklib" else add="$libdir/$linklib" fi else # We cannot seem to hardcode it, guess we'll fake it. add_dir="-L$libdir" # Try looking first in the location we're being installed to. if test -n "$inst_prefix_dir"; then case $libdir in [\\/]*) func_append add_dir " -L$inst_prefix_dir$libdir" ;; esac fi add="-l$name" fi if test "$linkmode" = prog; then test -n "$add_dir" && finalize_deplibs="$add_dir $finalize_deplibs" test -n "$add" && finalize_deplibs="$add $finalize_deplibs" else test -n "$add_dir" && deplibs="$add_dir $deplibs" test -n "$add" && deplibs="$add $deplibs" fi fi elif test "$linkmode" = prog; then # Here we assume that one of hardcode_direct or hardcode_minus_L # is not unsupported. This is valid on all known static and # shared platforms. if test "$hardcode_direct" != unsupported; then test -n "$old_library" && linklib="$old_library" compile_deplibs="$dir/$linklib $compile_deplibs" finalize_deplibs="$dir/$linklib $finalize_deplibs" else compile_deplibs="-l$name -L$dir $compile_deplibs" finalize_deplibs="-l$name -L$dir $finalize_deplibs" fi elif test "$build_libtool_libs" = yes; then # Not a shared library if test "$deplibs_check_method" != pass_all; then # We're trying link a shared library against a static one # but the system doesn't support it. # Just print a warning and add the library to dependency_libs so # that the program can be linked against the static library. echo $ECHO "*** Warning: This system can not link to static lib archive $lib." echo "*** I have the capability to make that library automatically link in when" echo "*** you link to this library. But I can only do this if you have a" echo "*** shared version of the library, which you do not appear to have." if test "$module" = yes; then echo "*** But as you try to build a module library, libtool will still create " echo "*** a static module, that should work as long as the dlopening application" echo "*** is linked with the -dlopen flag to resolve symbols at runtime." if test -z "$global_symbol_pipe"; then echo echo "*** However, this would only work if libtool was able to extract symbol" echo "*** lists from a program, using \`nm' or equivalent, but libtool could" echo "*** not find such a program. So, this module is probably useless." echo "*** \`nm' from GNU binutils and a full rebuild may help." fi if test "$build_old_libs" = no; then build_libtool_libs=module build_old_libs=yes else build_libtool_libs=no fi fi else deplibs="$dir/$old_library $deplibs" link_static=yes fi fi # link shared/static library? if test "$linkmode" = lib; then if test -n "$dependency_libs" && { test "$hardcode_into_libs" != yes || test "$build_old_libs" = yes || test "$link_static" = yes; }; then # Extract -R from dependency_libs temp_deplibs= for libdir in $dependency_libs; do case $libdir in -R*) func_stripname '-R' '' "$libdir" temp_xrpath=$func_stripname_result case " $xrpath " in *" $temp_xrpath "*) ;; *) func_append xrpath " $temp_xrpath";; esac;; *) func_append temp_deplibs " $libdir";; esac done dependency_libs="$temp_deplibs" fi func_append newlib_search_path " $absdir" # Link against this library test "$link_static" = no && newdependency_libs="$abs_ladir/$laname $newdependency_libs" # ... and its dependency_libs tmp_libs= for deplib in $dependency_libs; do newdependency_libs="$deplib $newdependency_libs" case $deplib in -L*) func_stripname '-L' '' "$deplib" func_resolve_sysroot "$func_stripname_result";; *) func_resolve_sysroot "$deplib" ;; esac if $opt_preserve_dup_deps ; then case "$tmp_libs " in *" $func_resolve_sysroot_result "*) func_append specialdeplibs " $func_resolve_sysroot_result" ;; esac fi func_append tmp_libs " $func_resolve_sysroot_result" done if test "$link_all_deplibs" != no; then # Add the search paths of all dependency libraries for deplib in $dependency_libs; do path= case $deplib in -L*) path="$deplib" ;; *.la) func_resolve_sysroot "$deplib" deplib=$func_resolve_sysroot_result func_dirname "$deplib" "" "." dir=$func_dirname_result # We need an absolute path. case $dir in [\\/]* | [A-Za-z]:[\\/]*) absdir="$dir" ;; *) absdir=`cd "$dir" && pwd` if test -z "$absdir"; then func_warning "cannot determine absolute directory name of \`$dir'" absdir="$dir" fi ;; esac if $GREP "^installed=no" $deplib > /dev/null; then case $host in *-*-darwin*) depdepl= eval deplibrary_names=`${SED} -n -e 's/^library_names=\(.*\)$/\1/p' $deplib` if test -n "$deplibrary_names" ; then for tmp in $deplibrary_names ; do depdepl=$tmp done if test -f "$absdir/$objdir/$depdepl" ; then depdepl="$absdir/$objdir/$depdepl" darwin_install_name=`${OTOOL} -L $depdepl | awk '{if (NR == 2) {print $1;exit}}'` if test -z "$darwin_install_name"; then darwin_install_name=`${OTOOL64} -L $depdepl | awk '{if (NR == 2) {print $1;exit}}'` fi func_append compiler_flags " ${wl}-dylib_file ${wl}${darwin_install_name}:${depdepl}" func_append linker_flags " -dylib_file ${darwin_install_name}:${depdepl}" path= fi fi ;; *) path="-L$absdir/$objdir" ;; esac else eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $deplib` test -z "$libdir" && \ func_fatal_error "\`$deplib' is not a valid libtool archive" test "$absdir" != "$libdir" && \ func_warning "\`$deplib' seems to be moved" path="-L$absdir" fi ;; esac case " $deplibs " in *" $path "*) ;; *) deplibs="$path $deplibs" ;; esac done fi # link_all_deplibs != no fi # linkmode = lib done # for deplib in $libs if test "$pass" = link; then if test "$linkmode" = "prog"; then compile_deplibs="$new_inherited_linker_flags $compile_deplibs" finalize_deplibs="$new_inherited_linker_flags $finalize_deplibs" else compiler_flags="$compiler_flags "`$ECHO " $new_inherited_linker_flags" | $SED 's% \([^ $]*\).ltframework% -framework \1%g'` fi fi dependency_libs="$newdependency_libs" if test "$pass" = dlpreopen; then # Link the dlpreopened libraries before other libraries for deplib in $save_deplibs; do deplibs="$deplib $deplibs" done fi if test "$pass" != dlopen; then if test "$pass" != conv; then # Make sure lib_search_path contains only unique directories. lib_search_path= for dir in $newlib_search_path; do case "$lib_search_path " in *" $dir "*) ;; *) func_append lib_search_path " $dir" ;; esac done newlib_search_path= fi if test "$linkmode,$pass" != "prog,link"; then vars="deplibs" else vars="compile_deplibs finalize_deplibs" fi for var in $vars dependency_libs; do # Add libraries to $var in reverse order eval tmp_libs=\"\$$var\" new_libs= for deplib in $tmp_libs; do # FIXME: Pedantically, this is the right thing to do, so # that some nasty dependency loop isn't accidentally # broken: #new_libs="$deplib $new_libs" # Pragmatically, this seems to cause very few problems in # practice: case $deplib in -L*) new_libs="$deplib $new_libs" ;; -R*) ;; *) # And here is the reason: when a library appears more # than once as an explicit dependence of a library, or # is implicitly linked in more than once by the # compiler, it is considered special, and multiple # occurrences thereof are not removed. Compare this # with having the same library being listed as a # dependency of multiple other libraries: in this case, # we know (pedantically, we assume) the library does not # need to be listed more than once, so we keep only the # last copy. This is not always right, but it is rare # enough that we require users that really mean to play # such unportable linking tricks to link the library # using -Wl,-lname, so that libtool does not consider it # for duplicate removal. case " $specialdeplibs " in *" $deplib "*) new_libs="$deplib $new_libs" ;; *) case " $new_libs " in *" $deplib "*) ;; *) new_libs="$deplib $new_libs" ;; esac ;; esac ;; esac done tmp_libs= for deplib in $new_libs; do case $deplib in -L*) case " $tmp_libs " in *" $deplib "*) ;; *) func_append tmp_libs " $deplib" ;; esac ;; *) func_append tmp_libs " $deplib" ;; esac done eval $var=\"$tmp_libs\" done # for var fi # Last step: remove runtime libs from dependency_libs # (they stay in deplibs) tmp_libs= for i in $dependency_libs ; do case " $predeps $postdeps $compiler_lib_search_path " in *" $i "*) i="" ;; esac if test -n "$i" ; then func_append tmp_libs " $i" fi done dependency_libs=$tmp_libs done # for pass if test "$linkmode" = prog; then dlfiles="$newdlfiles" fi if test "$linkmode" = prog || test "$linkmode" = lib; then dlprefiles="$newdlprefiles" fi case $linkmode in oldlib) if test -n "$dlfiles$dlprefiles" || test "$dlself" != no; then func_warning "\`-dlopen' is ignored for archives" fi case " $deplibs" in *\ -l* | *\ -L*) func_warning "\`-l' and \`-L' are ignored for archives" ;; esac test -n "$rpath" && \ func_warning "\`-rpath' is ignored for archives" test -n "$xrpath" && \ func_warning "\`-R' is ignored for archives" test -n "$vinfo" && \ func_warning "\`-version-info/-version-number' is ignored for archives" test -n "$release" && \ func_warning "\`-release' is ignored for archives" test -n "$export_symbols$export_symbols_regex" && \ func_warning "\`-export-symbols' is ignored for archives" # Now set the variables for building old libraries. build_libtool_libs=no oldlibs="$output" func_append objs "$old_deplibs" ;; lib) # Make sure we only generate libraries of the form `libNAME.la'. case $outputname in lib*) func_stripname 'lib' '.la' "$outputname" name=$func_stripname_result eval shared_ext=\"$shrext_cmds\" eval libname=\"$libname_spec\" ;; *) test "$module" = no && \ func_fatal_help "libtool library \`$output' must begin with \`lib'" if test "$need_lib_prefix" != no; then # Add the "lib" prefix for modules if required func_stripname '' '.la' "$outputname" name=$func_stripname_result eval shared_ext=\"$shrext_cmds\" eval libname=\"$libname_spec\" else func_stripname '' '.la' "$outputname" libname=$func_stripname_result fi ;; esac if test -n "$objs"; then if test "$deplibs_check_method" != pass_all; then func_fatal_error "cannot build libtool library \`$output' from non-libtool objects on this host:$objs" else echo $ECHO "*** Warning: Linking the shared library $output against the non-libtool" $ECHO "*** objects $objs is not portable!" func_append libobjs " $objs" fi fi test "$dlself" != no && \ func_warning "\`-dlopen self' is ignored for libtool libraries" set dummy $rpath shift test "$#" -gt 1 && \ func_warning "ignoring multiple \`-rpath's for a libtool library" install_libdir="$1" oldlibs= if test -z "$rpath"; then if test "$build_libtool_libs" = yes; then # Building a libtool convenience library. # Some compilers have problems with a `.al' extension so # convenience libraries should have the same extension an # archive normally would. oldlibs="$output_objdir/$libname.$libext $oldlibs" build_libtool_libs=convenience build_old_libs=yes fi test -n "$vinfo" && \ func_warning "\`-version-info/-version-number' is ignored for convenience libraries" test -n "$release" && \ func_warning "\`-release' is ignored for convenience libraries" else # Parse the version information argument. save_ifs="$IFS"; IFS=':' set dummy $vinfo 0 0 0 shift IFS="$save_ifs" test -n "$7" && \ func_fatal_help "too many parameters to \`-version-info'" # convert absolute version numbers to libtool ages # this retains compatibility with .la files and attempts # to make the code below a bit more comprehensible case $vinfo_number in yes) number_major="$1" number_minor="$2" number_revision="$3" # # There are really only two kinds -- those that # use the current revision as the major version # and those that subtract age and use age as # a minor version. But, then there is irix # which has an extra 1 added just for fun # case $version_type in # correct linux to gnu/linux during the next big refactor darwin|linux|osf|windows|none) func_arith $number_major + $number_minor current=$func_arith_result age="$number_minor" revision="$number_revision" ;; freebsd-aout|freebsd-elf|qnx|sunos) current="$number_major" revision="$number_minor" age="0" ;; irix|nonstopux) func_arith $number_major + $number_minor current=$func_arith_result age="$number_minor" revision="$number_minor" lt_irix_increment=no ;; *) func_fatal_configuration "$modename: unknown library version type \`$version_type'" ;; esac ;; no) current="$1" revision="$2" age="$3" ;; esac # Check that each of the things are valid numbers. case $current in 0|[1-9]|[1-9][0-9]|[1-9][0-9][0-9]|[1-9][0-9][0-9][0-9]|[1-9][0-9][0-9][0-9][0-9]) ;; *) func_error "CURRENT \`$current' must be a nonnegative integer" func_fatal_error "\`$vinfo' is not valid version information" ;; esac case $revision in 0|[1-9]|[1-9][0-9]|[1-9][0-9][0-9]|[1-9][0-9][0-9][0-9]|[1-9][0-9][0-9][0-9][0-9]) ;; *) func_error "REVISION \`$revision' must be a nonnegative integer" func_fatal_error "\`$vinfo' is not valid version information" ;; esac case $age in 0|[1-9]|[1-9][0-9]|[1-9][0-9][0-9]|[1-9][0-9][0-9][0-9]|[1-9][0-9][0-9][0-9][0-9]) ;; *) func_error "AGE \`$age' must be a nonnegative integer" func_fatal_error "\`$vinfo' is not valid version information" ;; esac if test "$age" -gt "$current"; then func_error "AGE \`$age' is greater than the current interface number \`$current'" func_fatal_error "\`$vinfo' is not valid version information" fi # Calculate the version variables. major= versuffix= verstring= case $version_type in none) ;; darwin) # Like Linux, but with the current version available in # verstring for coding it into the library header func_arith $current - $age major=.$func_arith_result versuffix="$major.$age.$revision" # Darwin ld doesn't like 0 for these options... func_arith $current + 1 minor_current=$func_arith_result xlcverstring="${wl}-compatibility_version ${wl}$minor_current ${wl}-current_version ${wl}$minor_current.$revision" verstring="-compatibility_version $minor_current -current_version $minor_current.$revision" ;; freebsd-aout) major=".$current" versuffix=".$current.$revision"; ;; freebsd-elf) major=".$current" versuffix=".$current" ;; irix | nonstopux) if test "X$lt_irix_increment" = "Xno"; then func_arith $current - $age else func_arith $current - $age + 1 fi major=$func_arith_result case $version_type in nonstopux) verstring_prefix=nonstopux ;; *) verstring_prefix=sgi ;; esac verstring="$verstring_prefix$major.$revision" # Add in all the interfaces that we are compatible with. loop=$revision while test "$loop" -ne 0; do func_arith $revision - $loop iface=$func_arith_result func_arith $loop - 1 loop=$func_arith_result verstring="$verstring_prefix$major.$iface:$verstring" done # Before this point, $major must not contain `.'. major=.$major versuffix="$major.$revision" ;; linux) # correct to gnu/linux during the next big refactor func_arith $current - $age major=.$func_arith_result versuffix="$major.$age.$revision" ;; osf) func_arith $current - $age major=.$func_arith_result versuffix=".$current.$age.$revision" verstring="$current.$age.$revision" # Add in all the interfaces that we are compatible with. loop=$age while test "$loop" -ne 0; do func_arith $current - $loop iface=$func_arith_result func_arith $loop - 1 loop=$func_arith_result verstring="$verstring:${iface}.0" done # Make executables depend on our current version. func_append verstring ":${current}.0" ;; qnx) major=".$current" versuffix=".$current" ;; sunos) major=".$current" versuffix=".$current.$revision" ;; windows) # Use '-' rather than '.', since we only want one # extension on DOS 8.3 filesystems. func_arith $current - $age major=$func_arith_result versuffix="-$major" ;; *) func_fatal_configuration "unknown library version type \`$version_type'" ;; esac # Clear the version info if we defaulted, and they specified a release. if test -z "$vinfo" && test -n "$release"; then major= case $version_type in darwin) # we can't check for "0.0" in archive_cmds due to quoting # problems, so we reset it completely verstring= ;; *) verstring="0.0" ;; esac if test "$need_version" = no; then versuffix= else versuffix=".0.0" fi fi # Remove version info from name if versioning should be avoided if test "$avoid_version" = yes && test "$need_version" = no; then major= versuffix= verstring="" fi # Check to see if the archive will have undefined symbols. if test "$allow_undefined" = yes; then if test "$allow_undefined_flag" = unsupported; then func_warning "undefined symbols not allowed in $host shared libraries" build_libtool_libs=no build_old_libs=yes fi else # Don't allow undefined symbols. allow_undefined_flag="$no_undefined_flag" fi fi func_generate_dlsyms "$libname" "$libname" "yes" func_append libobjs " $symfileobj" test "X$libobjs" = "X " && libobjs= if test "$opt_mode" != relink; then # Remove our outputs, but don't remove object files since they # may have been created when compiling PIC objects. removelist= tempremovelist=`$ECHO "$output_objdir/*"` for p in $tempremovelist; do case $p in *.$objext | *.gcno) ;; $output_objdir/$outputname | $output_objdir/$libname.* | $output_objdir/${libname}${release}.*) if test "X$precious_files_regex" != "X"; then if $ECHO "$p" | $EGREP -e "$precious_files_regex" >/dev/null 2>&1 then continue fi fi func_append removelist " $p" ;; *) ;; esac done test -n "$removelist" && \ func_show_eval "${RM}r \$removelist" fi # Now set the variables for building old libraries. if test "$build_old_libs" = yes && test "$build_libtool_libs" != convenience ; then func_append oldlibs " $output_objdir/$libname.$libext" # Transform .lo files to .o files. oldobjs="$objs "`$ECHO "$libobjs" | $SP2NL | $SED "/\.${libext}$/d; $lo2o" | $NL2SP` fi # Eliminate all temporary directories. #for path in $notinst_path; do # lib_search_path=`$ECHO "$lib_search_path " | $SED "s% $path % %g"` # deplibs=`$ECHO "$deplibs " | $SED "s% -L$path % %g"` # dependency_libs=`$ECHO "$dependency_libs " | $SED "s% -L$path % %g"` #done if test -n "$xrpath"; then # If the user specified any rpath flags, then add them. temp_xrpath= for libdir in $xrpath; do func_replace_sysroot "$libdir" func_append temp_xrpath " -R$func_replace_sysroot_result" case "$finalize_rpath " in *" $libdir "*) ;; *) func_append finalize_rpath " $libdir" ;; esac done if test "$hardcode_into_libs" != yes || test "$build_old_libs" = yes; then dependency_libs="$temp_xrpath $dependency_libs" fi fi # Make sure dlfiles contains only unique files that won't be dlpreopened old_dlfiles="$dlfiles" dlfiles= for lib in $old_dlfiles; do case " $dlprefiles $dlfiles " in *" $lib "*) ;; *) func_append dlfiles " $lib" ;; esac done # Make sure dlprefiles contains only unique files old_dlprefiles="$dlprefiles" dlprefiles= for lib in $old_dlprefiles; do case "$dlprefiles " in *" $lib "*) ;; *) func_append dlprefiles " $lib" ;; esac done if test "$build_libtool_libs" = yes; then if test -n "$rpath"; then case $host in *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-*-beos* | *-cegcc* | *-*-haiku*) # these systems don't actually have a c library (as such)! ;; *-*-rhapsody* | *-*-darwin1.[012]) # Rhapsody C library is in the System framework func_append deplibs " System.ltframework" ;; *-*-netbsd*) # Don't link with libc until the a.out ld.so is fixed. ;; *-*-openbsd* | *-*-freebsd* | *-*-dragonfly*) # Do not include libc due to us having libc/libc_r. ;; *-*-sco3.2v5* | *-*-sco5v6*) # Causes problems with __ctype ;; *-*-sysv4.2uw2* | *-*-sysv5* | *-*-unixware* | *-*-OpenUNIX*) # Compiler inserts libc in the correct place for threads to work ;; *) # Add libc to deplibs on all other systems if necessary. if test "$build_libtool_need_lc" = "yes"; then func_append deplibs " -lc" fi ;; esac fi # Transform deplibs into only deplibs that can be linked in shared. name_save=$name libname_save=$libname release_save=$release versuffix_save=$versuffix major_save=$major # I'm not sure if I'm treating the release correctly. I think # release should show up in the -l (ie -lgmp5) so we don't want to # add it in twice. Is that correct? release="" versuffix="" major="" newdeplibs= droppeddeps=no case $deplibs_check_method in pass_all) # Don't check for shared/static. Everything works. # This might be a little naive. We might want to check # whether the library exists or not. But this is on # osf3 & osf4 and I'm not really sure... Just # implementing what was already the behavior. newdeplibs=$deplibs ;; test_compile) # This code stresses the "libraries are programs" paradigm to its # limits. Maybe even breaks it. We compile a program, linking it # against the deplibs as a proxy for the library. Then we can check # whether they linked in statically or dynamically with ldd. $opt_dry_run || $RM conftest.c cat > conftest.c </dev/null` $nocaseglob else potential_libs=`ls $i/$libnameglob[.-]* 2>/dev/null` fi for potent_lib in $potential_libs; do # Follow soft links. if ls -lLd "$potent_lib" 2>/dev/null | $GREP " -> " >/dev/null; then continue fi # The statement above tries to avoid entering an # endless loop below, in case of cyclic links. # We might still enter an endless loop, since a link # loop can be closed while we follow links, # but so what? potlib="$potent_lib" while test -h "$potlib" 2>/dev/null; do potliblink=`ls -ld $potlib | ${SED} 's/.* -> //'` case $potliblink in [\\/]* | [A-Za-z]:[\\/]*) potlib="$potliblink";; *) potlib=`$ECHO "$potlib" | $SED 's,[^/]*$,,'`"$potliblink";; esac done if eval $file_magic_cmd \"\$potlib\" 2>/dev/null | $SED -e 10q | $EGREP "$file_magic_regex" > /dev/null; then func_append newdeplibs " $a_deplib" a_deplib="" break 2 fi done done fi if test -n "$a_deplib" ; then droppeddeps=yes echo $ECHO "*** Warning: linker path does not have real file for library $a_deplib." echo "*** I have the capability to make that library automatically link in when" echo "*** you link to this library. But I can only do this if you have a" echo "*** shared version of the library, which you do not appear to have" echo "*** because I did check the linker path looking for a file starting" if test -z "$potlib" ; then $ECHO "*** with $libname but no candidates were found. (...for file magic test)" else $ECHO "*** with $libname and none of the candidates passed a file format test" $ECHO "*** using a file magic. 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But I can only do this if you have a" echo "*** shared version of the library, which you do not appear to have" echo "*** because I did check the linker path looking for a file starting" if test -z "$potlib" ; then $ECHO "*** with $libname but no candidates were found. (...for regex pattern test)" else $ECHO "*** with $libname and none of the candidates passed a file format test" $ECHO "*** using a regex pattern. Last file checked: $potlib" fi fi ;; *) # Add a -L argument. func_append newdeplibs " $a_deplib" ;; esac done # Gone through all deplibs. ;; none | unknown | *) newdeplibs="" tmp_deplibs=`$ECHO " $deplibs" | $SED 's/ -lc$//; s/ -[LR][^ ]*//g'` if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then for i in $predeps $postdeps ; do # can't use Xsed below, because $i might contain '/' tmp_deplibs=`$ECHO " $tmp_deplibs" | $SED "s,$i,,"` done fi case $tmp_deplibs in *[!\ \ ]*) echo if test "X$deplibs_check_method" = "Xnone"; then echo "*** Warning: inter-library dependencies are not supported in this platform." else echo "*** Warning: inter-library dependencies are not known to be supported." fi echo "*** All declared inter-library dependencies are being dropped." droppeddeps=yes ;; esac ;; esac versuffix=$versuffix_save major=$major_save release=$release_save libname=$libname_save name=$name_save case $host in *-*-rhapsody* | *-*-darwin1.[012]) # On Rhapsody replace the C library with the System framework newdeplibs=`$ECHO " $newdeplibs" | $SED 's/ -lc / System.ltframework /'` ;; esac if test "$droppeddeps" = yes; then if test "$module" = yes; then echo echo "*** Warning: libtool could not satisfy all declared inter-library" $ECHO "*** dependencies of module $libname. Therefore, libtool will create" echo "*** a static module, that should work as long as the dlopening" echo "*** application is linked with the -dlopen flag." if test -z "$global_symbol_pipe"; then echo echo "*** However, this would only work if libtool was able to extract symbol" echo "*** lists from a program, using \`nm' or equivalent, but libtool could" echo "*** not find such a program. So, this module is probably useless." echo "*** \`nm' from GNU binutils and a full rebuild may help." fi if test "$build_old_libs" = no; then oldlibs="$output_objdir/$libname.$libext" build_libtool_libs=module build_old_libs=yes else build_libtool_libs=no fi else echo "*** The inter-library dependencies that have been dropped here will be" echo "*** automatically added whenever a program is linked with this library" echo "*** or is declared to -dlopen it." if test "$allow_undefined" = no; then echo echo "*** Since this library must not contain undefined symbols," echo "*** because either the platform does not support them or" echo "*** it was explicitly requested with -no-undefined," echo "*** libtool will only create a static version of it." if test "$build_old_libs" = no; then oldlibs="$output_objdir/$libname.$libext" build_libtool_libs=module build_old_libs=yes else build_libtool_libs=no fi fi fi fi # Done checking deplibs! deplibs=$newdeplibs fi # Time to change all our "foo.ltframework" stuff back to "-framework foo" case $host in *-*-darwin*) newdeplibs=`$ECHO " $newdeplibs" | $SED 's% \([^ $]*\).ltframework% -framework \1%g'` new_inherited_linker_flags=`$ECHO " $new_inherited_linker_flags" | $SED 's% \([^ $]*\).ltframework% -framework \1%g'` deplibs=`$ECHO " $deplibs" | $SED 's% \([^ $]*\).ltframework% -framework \1%g'` ;; esac # move library search paths that coincide with paths to not yet # installed libraries to the beginning of the library search list new_libs= for path in $notinst_path; do case " $new_libs " in *" -L$path/$objdir "*) ;; *) case " $deplibs " in *" -L$path/$objdir "*) func_append new_libs " -L$path/$objdir" ;; esac ;; esac done for deplib in $deplibs; do case $deplib in -L*) case " $new_libs " in *" $deplib "*) ;; *) func_append new_libs " $deplib" ;; esac ;; *) func_append new_libs " $deplib" ;; esac done deplibs="$new_libs" # All the library-specific variables (install_libdir is set above). library_names= old_library= dlname= # Test again, we may have decided not to build it any more if test "$build_libtool_libs" = yes; then # Remove ${wl} instances when linking with ld. # FIXME: should test the right _cmds variable. case $archive_cmds in *\$LD\ *) wl= ;; esac if test "$hardcode_into_libs" = yes; then # Hardcode the library paths hardcode_libdirs= dep_rpath= rpath="$finalize_rpath" test "$opt_mode" != relink && rpath="$compile_rpath$rpath" for libdir in $rpath; do if test -n "$hardcode_libdir_flag_spec"; then if test -n "$hardcode_libdir_separator"; then func_replace_sysroot "$libdir" libdir=$func_replace_sysroot_result if test -z "$hardcode_libdirs"; then hardcode_libdirs="$libdir" else # Just accumulate the unique libdirs. case $hardcode_libdir_separator$hardcode_libdirs$hardcode_libdir_separator in *"$hardcode_libdir_separator$libdir$hardcode_libdir_separator"*) ;; *) func_append hardcode_libdirs "$hardcode_libdir_separator$libdir" ;; esac fi else eval flag=\"$hardcode_libdir_flag_spec\" func_append dep_rpath " $flag" fi elif test -n "$runpath_var"; then case "$perm_rpath " in *" $libdir "*) ;; *) func_append perm_rpath " $libdir" ;; esac fi done # Substitute the hardcoded libdirs into the rpath. if test -n "$hardcode_libdir_separator" && test -n "$hardcode_libdirs"; then libdir="$hardcode_libdirs" eval "dep_rpath=\"$hardcode_libdir_flag_spec\"" fi if test -n "$runpath_var" && test -n "$perm_rpath"; then # We should set the runpath_var. rpath= for dir in $perm_rpath; do func_append rpath "$dir:" done eval "$runpath_var='$rpath\$$runpath_var'; export $runpath_var" fi test -n "$dep_rpath" && deplibs="$dep_rpath $deplibs" fi shlibpath="$finalize_shlibpath" test "$opt_mode" != relink && shlibpath="$compile_shlibpath$shlibpath" if test -n "$shlibpath"; then eval "$shlibpath_var='$shlibpath\$$shlibpath_var'; export $shlibpath_var" fi # Get the real and link names of the library. eval shared_ext=\"$shrext_cmds\" eval library_names=\"$library_names_spec\" set dummy $library_names shift realname="$1" shift if test -n "$soname_spec"; then eval soname=\"$soname_spec\" else soname="$realname" fi if test -z "$dlname"; then dlname=$soname fi lib="$output_objdir/$realname" linknames= for link do func_append linknames " $link" done # Use standard objects if they are pic test -z "$pic_flag" && libobjs=`$ECHO "$libobjs" | $SP2NL | $SED "$lo2o" | $NL2SP` test "X$libobjs" = "X " && libobjs= delfiles= if test -n "$export_symbols" && test -n "$include_expsyms"; then $opt_dry_run || cp "$export_symbols" "$output_objdir/$libname.uexp" export_symbols="$output_objdir/$libname.uexp" func_append delfiles " $export_symbols" fi orig_export_symbols= case $host_os in cygwin* | mingw* | cegcc*) if test -n "$export_symbols" && test -z "$export_symbols_regex"; then # exporting using user supplied symfile if test "x`$SED 1q $export_symbols`" != xEXPORTS; then # and it's NOT already a .def file. Must figure out # which of the given symbols are data symbols and tag # them as such. So, trigger use of export_symbols_cmds. # export_symbols gets reassigned inside the "prepare # the list of exported symbols" if statement, so the # include_expsyms logic still works. orig_export_symbols="$export_symbols" export_symbols= always_export_symbols=yes fi fi ;; esac # Prepare the list of exported symbols if test -z "$export_symbols"; then if test "$always_export_symbols" = yes || test -n "$export_symbols_regex"; then func_verbose "generating symbol list for \`$libname.la'" export_symbols="$output_objdir/$libname.exp" $opt_dry_run || $RM $export_symbols cmds=$export_symbols_cmds save_ifs="$IFS"; IFS='~' for cmd1 in $cmds; do IFS="$save_ifs" # Take the normal branch if the nm_file_list_spec branch # doesn't work or if tool conversion is not needed. case $nm_file_list_spec~$to_tool_file_cmd in *~func_convert_file_noop | *~func_convert_file_msys_to_w32 | ~*) try_normal_branch=yes eval cmd=\"$cmd1\" func_len " $cmd" len=$func_len_result ;; *) try_normal_branch=no ;; esac if test "$try_normal_branch" = yes \ && { test "$len" -lt "$max_cmd_len" \ || test "$max_cmd_len" -le -1; } then func_show_eval "$cmd" 'exit $?' skipped_export=false elif test -n "$nm_file_list_spec"; then func_basename "$output" output_la=$func_basename_result save_libobjs=$libobjs save_output=$output output=${output_objdir}/${output_la}.nm func_to_tool_file "$output" libobjs=$nm_file_list_spec$func_to_tool_file_result func_append delfiles " $output" func_verbose "creating $NM input file list: $output" for obj in $save_libobjs; do func_to_tool_file "$obj" $ECHO "$func_to_tool_file_result" done > "$output" eval cmd=\"$cmd1\" func_show_eval "$cmd" 'exit $?' output=$save_output libobjs=$save_libobjs skipped_export=false else # The command line is too long to execute in one step. func_verbose "using reloadable object file for export list..." skipped_export=: # Break out early, otherwise skipped_export may be # set to false by a later but shorter cmd. break fi done IFS="$save_ifs" if test -n "$export_symbols_regex" && test "X$skipped_export" != "X:"; then func_show_eval '$EGREP -e "$export_symbols_regex" "$export_symbols" > "${export_symbols}T"' func_show_eval '$MV "${export_symbols}T" "$export_symbols"' fi fi fi if test -n "$export_symbols" && test -n "$include_expsyms"; then tmp_export_symbols="$export_symbols" test -n "$orig_export_symbols" && tmp_export_symbols="$orig_export_symbols" $opt_dry_run || eval '$ECHO "$include_expsyms" | $SP2NL >> "$tmp_export_symbols"' fi if test "X$skipped_export" != "X:" && test -n "$orig_export_symbols"; then # The given exports_symbols file has to be filtered, so filter it. func_verbose "filter symbol list for \`$libname.la' to tag DATA exports" # FIXME: $output_objdir/$libname.filter potentially contains lots of # 's' commands which not all seds can handle. GNU sed should be fine # though. Also, the filter scales superlinearly with the number of # global variables. join(1) would be nice here, but unfortunately # isn't a blessed tool. $opt_dry_run || $SED -e '/[ ,]DATA/!d;s,\(.*\)\([ \,].*\),s|^\1$|\1\2|,' < $export_symbols > $output_objdir/$libname.filter func_append delfiles " $export_symbols $output_objdir/$libname.filter" export_symbols=$output_objdir/$libname.def $opt_dry_run || $SED -f $output_objdir/$libname.filter < $orig_export_symbols > $export_symbols fi tmp_deplibs= for test_deplib in $deplibs; do case " $convenience " in *" $test_deplib "*) ;; *) func_append tmp_deplibs " $test_deplib" ;; esac done deplibs="$tmp_deplibs" if test -n "$convenience"; then if test -n "$whole_archive_flag_spec" && test "$compiler_needs_object" = yes && test -z "$libobjs"; then # extract the archives, so we have objects to list. # TODO: could optimize this to just extract one archive. whole_archive_flag_spec= fi if test -n "$whole_archive_flag_spec"; then save_libobjs=$libobjs eval libobjs=\"\$libobjs $whole_archive_flag_spec\" test "X$libobjs" = "X " && libobjs= else gentop="$output_objdir/${outputname}x" func_append generated " $gentop" func_extract_archives $gentop $convenience func_append libobjs " $func_extract_archives_result" test "X$libobjs" = "X " && libobjs= fi fi if test "$thread_safe" = yes && test -n "$thread_safe_flag_spec"; then eval flag=\"$thread_safe_flag_spec\" func_append linker_flags " $flag" fi # Make a backup of the uninstalled library when relinking if test "$opt_mode" = relink; then $opt_dry_run || eval '(cd $output_objdir && $RM ${realname}U && $MV $realname ${realname}U)' || exit $? fi # Do each of the archive commands. if test "$module" = yes && test -n "$module_cmds" ; then if test -n "$export_symbols" && test -n "$module_expsym_cmds"; then eval test_cmds=\"$module_expsym_cmds\" cmds=$module_expsym_cmds else eval test_cmds=\"$module_cmds\" cmds=$module_cmds fi else if test -n "$export_symbols" && test -n "$archive_expsym_cmds"; then eval test_cmds=\"$archive_expsym_cmds\" cmds=$archive_expsym_cmds else eval test_cmds=\"$archive_cmds\" cmds=$archive_cmds fi fi if test "X$skipped_export" != "X:" && func_len " $test_cmds" && len=$func_len_result && test "$len" -lt "$max_cmd_len" || test "$max_cmd_len" -le -1; then : else # The command line is too long to link in one step, link piecewise # or, if using GNU ld and skipped_export is not :, use a linker # script. # Save the value of $output and $libobjs because we want to # use them later. If we have whole_archive_flag_spec, we # want to use save_libobjs as it was before # whole_archive_flag_spec was expanded, because we can't # assume the linker understands whole_archive_flag_spec. # This may have to be revisited, in case too many # convenience libraries get linked in and end up exceeding # the spec. if test -z "$convenience" || test -z "$whole_archive_flag_spec"; then save_libobjs=$libobjs fi save_output=$output func_basename "$output" output_la=$func_basename_result # Clear the reloadable object creation command queue and # initialize k to one. test_cmds= concat_cmds= objlist= last_robj= k=1 if test -n "$save_libobjs" && test "X$skipped_export" != "X:" && test "$with_gnu_ld" = yes; then output=${output_objdir}/${output_la}.lnkscript func_verbose "creating GNU ld script: $output" echo 'INPUT (' > $output for obj in $save_libobjs do func_to_tool_file "$obj" $ECHO "$func_to_tool_file_result" >> $output done echo ')' >> $output func_append delfiles " $output" func_to_tool_file "$output" output=$func_to_tool_file_result elif test -n "$save_libobjs" && test "X$skipped_export" != "X:" && test "X$file_list_spec" != X; then output=${output_objdir}/${output_la}.lnk func_verbose "creating linker input file list: $output" : > $output set x $save_libobjs shift firstobj= if test "$compiler_needs_object" = yes; then firstobj="$1 " shift fi for obj do func_to_tool_file "$obj" $ECHO "$func_to_tool_file_result" >> $output done func_append delfiles " $output" func_to_tool_file "$output" output=$firstobj\"$file_list_spec$func_to_tool_file_result\" else if test -n "$save_libobjs"; then func_verbose "creating reloadable object files..." output=$output_objdir/$output_la-${k}.$objext eval test_cmds=\"$reload_cmds\" func_len " $test_cmds" len0=$func_len_result len=$len0 # Loop over the list of objects to be linked. for obj in $save_libobjs do func_len " $obj" func_arith $len + $func_len_result len=$func_arith_result if test "X$objlist" = X || test "$len" -lt "$max_cmd_len"; then func_append objlist " $obj" else # The command $test_cmds is almost too long, add a # command to the queue. if test "$k" -eq 1 ; then # The first file doesn't have a previous command to add. reload_objs=$objlist eval concat_cmds=\"$reload_cmds\" else # All subsequent reloadable object files will link in # the last one created. reload_objs="$objlist $last_robj" eval concat_cmds=\"\$concat_cmds~$reload_cmds~\$RM $last_robj\" fi last_robj=$output_objdir/$output_la-${k}.$objext func_arith $k + 1 k=$func_arith_result output=$output_objdir/$output_la-${k}.$objext objlist=" $obj" func_len " $last_robj" func_arith $len0 + $func_len_result len=$func_arith_result fi done # Handle the remaining objects by creating one last # reloadable object file. All subsequent reloadable object # files will link in the last one created. test -z "$concat_cmds" || concat_cmds=$concat_cmds~ reload_objs="$objlist $last_robj" eval concat_cmds=\"\${concat_cmds}$reload_cmds\" if test -n "$last_robj"; then eval concat_cmds=\"\${concat_cmds}~\$RM $last_robj\" fi func_append delfiles " $output" else output= fi if ${skipped_export-false}; then func_verbose "generating symbol list for \`$libname.la'" export_symbols="$output_objdir/$libname.exp" $opt_dry_run || $RM $export_symbols libobjs=$output # Append the command to create the export file. test -z "$concat_cmds" || concat_cmds=$concat_cmds~ eval concat_cmds=\"\$concat_cmds$export_symbols_cmds\" if test -n "$last_robj"; then eval concat_cmds=\"\$concat_cmds~\$RM $last_robj\" fi fi test -n "$save_libobjs" && func_verbose "creating a temporary reloadable object file: $output" # Loop through the commands generated above and execute them. save_ifs="$IFS"; IFS='~' for cmd in $concat_cmds; do IFS="$save_ifs" $opt_silent || { func_quote_for_expand "$cmd" eval "func_echo $func_quote_for_expand_result" } $opt_dry_run || eval "$cmd" || { lt_exit=$? # Restore the uninstalled library and exit if test "$opt_mode" = relink; then ( cd "$output_objdir" && \ $RM "${realname}T" && \ $MV "${realname}U" "$realname" ) fi exit $lt_exit } done IFS="$save_ifs" if test -n "$export_symbols_regex" && ${skipped_export-false}; then func_show_eval '$EGREP -e "$export_symbols_regex" "$export_symbols" > "${export_symbols}T"' func_show_eval '$MV "${export_symbols}T" "$export_symbols"' fi fi if ${skipped_export-false}; then if test -n "$export_symbols" && test -n "$include_expsyms"; then tmp_export_symbols="$export_symbols" test -n "$orig_export_symbols" && tmp_export_symbols="$orig_export_symbols" $opt_dry_run || eval '$ECHO "$include_expsyms" | $SP2NL >> "$tmp_export_symbols"' fi if test -n "$orig_export_symbols"; then # The given exports_symbols file has to be filtered, so filter it. func_verbose "filter symbol list for \`$libname.la' to tag DATA exports" # FIXME: $output_objdir/$libname.filter potentially contains lots of # 's' commands which not all seds can handle. GNU sed should be fine # though. Also, the filter scales superlinearly with the number of # global variables. join(1) would be nice here, but unfortunately # isn't a blessed tool. $opt_dry_run || $SED -e '/[ ,]DATA/!d;s,\(.*\)\([ \,].*\),s|^\1$|\1\2|,' < $export_symbols > $output_objdir/$libname.filter func_append delfiles " $export_symbols $output_objdir/$libname.filter" export_symbols=$output_objdir/$libname.def $opt_dry_run || $SED -f $output_objdir/$libname.filter < $orig_export_symbols > $export_symbols fi fi libobjs=$output # Restore the value of output. output=$save_output if test -n "$convenience" && test -n "$whole_archive_flag_spec"; then eval libobjs=\"\$libobjs $whole_archive_flag_spec\" test "X$libobjs" = "X " && libobjs= fi # Expand the library linking commands again to reset the # value of $libobjs for piecewise linking. # Do each of the archive commands. if test "$module" = yes && test -n "$module_cmds" ; then if test -n "$export_symbols" && test -n "$module_expsym_cmds"; then cmds=$module_expsym_cmds else cmds=$module_cmds fi else if test -n "$export_symbols" && test -n "$archive_expsym_cmds"; then cmds=$archive_expsym_cmds else cmds=$archive_cmds fi fi fi if test -n "$delfiles"; then # Append the command to remove temporary files to $cmds. eval cmds=\"\$cmds~\$RM $delfiles\" fi # Add any objects from preloaded convenience libraries if test -n "$dlprefiles"; then gentop="$output_objdir/${outputname}x" func_append generated " $gentop" func_extract_archives $gentop $dlprefiles func_append libobjs " $func_extract_archives_result" test "X$libobjs" = "X " && libobjs= fi save_ifs="$IFS"; IFS='~' for cmd in $cmds; do IFS="$save_ifs" eval cmd=\"$cmd\" $opt_silent || { func_quote_for_expand "$cmd" eval "func_echo $func_quote_for_expand_result" } $opt_dry_run || eval "$cmd" || { lt_exit=$? # Restore the uninstalled library and exit if test "$opt_mode" = relink; then ( cd "$output_objdir" && \ $RM "${realname}T" && \ $MV "${realname}U" "$realname" ) fi exit $lt_exit } done IFS="$save_ifs" # Restore the uninstalled library and exit if test "$opt_mode" = relink; then $opt_dry_run || eval '(cd $output_objdir && $RM ${realname}T && $MV $realname ${realname}T && $MV ${realname}U $realname)' || exit $? if test -n "$convenience"; then if test -z "$whole_archive_flag_spec"; then func_show_eval '${RM}r "$gentop"' fi fi exit $EXIT_SUCCESS fi # Create links to the real library. for linkname in $linknames; do if test "$realname" != "$linkname"; then func_show_eval '(cd "$output_objdir" && $RM "$linkname" && $LN_S "$realname" "$linkname")' 'exit $?' fi done # If -module or -export-dynamic was specified, set the dlname. if test "$module" = yes || test "$export_dynamic" = yes; then # On all known operating systems, these are identical. dlname="$soname" fi fi ;; obj) if test -n "$dlfiles$dlprefiles" || test "$dlself" != no; then func_warning "\`-dlopen' is ignored for objects" fi case " $deplibs" in *\ -l* | *\ -L*) func_warning "\`-l' and \`-L' are ignored for objects" ;; esac test -n "$rpath" && \ func_warning "\`-rpath' is ignored for objects" test -n "$xrpath" && \ func_warning "\`-R' is ignored for objects" test -n "$vinfo" && \ func_warning "\`-version-info' is ignored for objects" test -n "$release" && \ func_warning "\`-release' is ignored for objects" case $output in *.lo) test -n "$objs$old_deplibs" && \ func_fatal_error "cannot build library object \`$output' from non-libtool objects" libobj=$output func_lo2o "$libobj" obj=$func_lo2o_result ;; *) libobj= obj="$output" ;; esac # Delete the old objects. $opt_dry_run || $RM $obj $libobj # Objects from convenience libraries. This assumes # single-version convenience libraries. Whenever we create # different ones for PIC/non-PIC, this we'll have to duplicate # the extraction. reload_conv_objs= gentop= # reload_cmds runs $LD directly, so let us get rid of # -Wl from whole_archive_flag_spec and hope we can get by with # turning comma into space.. wl= if test -n "$convenience"; then if test -n "$whole_archive_flag_spec"; then eval tmp_whole_archive_flags=\"$whole_archive_flag_spec\" reload_conv_objs=$reload_objs\ `$ECHO "$tmp_whole_archive_flags" | $SED 's|,| |g'` else gentop="$output_objdir/${obj}x" func_append generated " $gentop" func_extract_archives $gentop $convenience reload_conv_objs="$reload_objs $func_extract_archives_result" fi fi # If we're not building shared, we need to use non_pic_objs test "$build_libtool_libs" != yes && libobjs="$non_pic_objects" # Create the old-style object. reload_objs="$objs$old_deplibs "`$ECHO "$libobjs" | $SP2NL | $SED "/\.${libext}$/d; /\.lib$/d; $lo2o" | $NL2SP`" $reload_conv_objs" ### testsuite: skip nested quoting test output="$obj" func_execute_cmds "$reload_cmds" 'exit $?' # Exit if we aren't doing a library object file. if test -z "$libobj"; then if test -n "$gentop"; then func_show_eval '${RM}r "$gentop"' fi exit $EXIT_SUCCESS fi if test "$build_libtool_libs" != yes; then if test -n "$gentop"; then func_show_eval '${RM}r "$gentop"' fi # Create an invalid libtool object if no PIC, so that we don't # accidentally link it into a program. # $show "echo timestamp > $libobj" # $opt_dry_run || eval "echo timestamp > $libobj" || exit $? exit $EXIT_SUCCESS fi if test -n "$pic_flag" || test "$pic_mode" != default; then # Only do commands if we really have different PIC objects. reload_objs="$libobjs $reload_conv_objs" output="$libobj" func_execute_cmds "$reload_cmds" 'exit $?' fi if test -n "$gentop"; then func_show_eval '${RM}r "$gentop"' fi exit $EXIT_SUCCESS ;; prog) case $host in *cygwin*) func_stripname '' '.exe' "$output" output=$func_stripname_result.exe;; esac test -n "$vinfo" && \ func_warning "\`-version-info' is ignored for programs" test -n "$release" && \ func_warning "\`-release' is ignored for programs" test "$preload" = yes \ && test "$dlopen_support" = unknown \ && test "$dlopen_self" = unknown \ && test "$dlopen_self_static" = unknown && \ func_warning "\`LT_INIT([dlopen])' not used. Assuming no dlopen support." case $host in *-*-rhapsody* | *-*-darwin1.[012]) # On Rhapsody replace the C library is the System framework compile_deplibs=`$ECHO " $compile_deplibs" | $SED 's/ -lc / System.ltframework /'` finalize_deplibs=`$ECHO " $finalize_deplibs" | $SED 's/ -lc / System.ltframework /'` ;; esac case $host in *-*-darwin*) # Don't allow lazy linking, it breaks C++ global constructors # But is supposedly fixed on 10.4 or later (yay!). if test "$tagname" = CXX ; then case ${MACOSX_DEPLOYMENT_TARGET-10.0} in 10.[0123]) func_append compile_command " ${wl}-bind_at_load" func_append finalize_command " ${wl}-bind_at_load" ;; esac fi # Time to change all our "foo.ltframework" stuff back to "-framework foo" compile_deplibs=`$ECHO " $compile_deplibs" | $SED 's% \([^ $]*\).ltframework% -framework \1%g'` finalize_deplibs=`$ECHO " $finalize_deplibs" | $SED 's% \([^ $]*\).ltframework% -framework \1%g'` ;; esac # move library search paths that coincide with paths to not yet # installed libraries to the beginning of the library search list new_libs= for path in $notinst_path; do case " $new_libs " in *" -L$path/$objdir "*) ;; *) case " $compile_deplibs " in *" -L$path/$objdir "*) func_append new_libs " -L$path/$objdir" ;; esac ;; esac done for deplib in $compile_deplibs; do case $deplib in -L*) case " $new_libs " in *" $deplib "*) ;; *) func_append new_libs " $deplib" ;; esac ;; *) func_append new_libs " $deplib" ;; esac done compile_deplibs="$new_libs" func_append compile_command " $compile_deplibs" func_append finalize_command " $finalize_deplibs" if test -n "$rpath$xrpath"; then # If the user specified any rpath flags, then add them. for libdir in $rpath $xrpath; do # This is the magic to use -rpath. case "$finalize_rpath " in *" $libdir "*) ;; *) func_append finalize_rpath " $libdir" ;; esac done fi # Now hardcode the library paths rpath= hardcode_libdirs= for libdir in $compile_rpath $finalize_rpath; do if test -n "$hardcode_libdir_flag_spec"; then if test -n "$hardcode_libdir_separator"; then if test -z "$hardcode_libdirs"; then hardcode_libdirs="$libdir" else # Just accumulate the unique libdirs. case $hardcode_libdir_separator$hardcode_libdirs$hardcode_libdir_separator in *"$hardcode_libdir_separator$libdir$hardcode_libdir_separator"*) ;; *) func_append hardcode_libdirs "$hardcode_libdir_separator$libdir" ;; esac fi else eval flag=\"$hardcode_libdir_flag_spec\" func_append rpath " $flag" fi elif test -n "$runpath_var"; then case "$perm_rpath " in *" $libdir "*) ;; *) func_append perm_rpath " $libdir" ;; esac fi case $host in *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-cegcc*) testbindir=`${ECHO} "$libdir" | ${SED} -e 's*/lib$*/bin*'` case :$dllsearchpath: in *":$libdir:"*) ;; ::) dllsearchpath=$libdir;; *) func_append dllsearchpath ":$libdir";; esac case :$dllsearchpath: in *":$testbindir:"*) ;; ::) dllsearchpath=$testbindir;; *) func_append dllsearchpath ":$testbindir";; esac ;; esac done # Substitute the hardcoded libdirs into the rpath. if test -n "$hardcode_libdir_separator" && test -n "$hardcode_libdirs"; then libdir="$hardcode_libdirs" eval rpath=\" $hardcode_libdir_flag_spec\" fi compile_rpath="$rpath" rpath= hardcode_libdirs= for libdir in $finalize_rpath; do if test -n "$hardcode_libdir_flag_spec"; then if test -n "$hardcode_libdir_separator"; then if test -z "$hardcode_libdirs"; then hardcode_libdirs="$libdir" else # Just accumulate the unique libdirs. case $hardcode_libdir_separator$hardcode_libdirs$hardcode_libdir_separator in *"$hardcode_libdir_separator$libdir$hardcode_libdir_separator"*) ;; *) func_append hardcode_libdirs "$hardcode_libdir_separator$libdir" ;; esac fi else eval flag=\"$hardcode_libdir_flag_spec\" func_append rpath " $flag" fi elif test -n "$runpath_var"; then case "$finalize_perm_rpath " in *" $libdir "*) ;; *) func_append finalize_perm_rpath " $libdir" ;; esac fi done # Substitute the hardcoded libdirs into the rpath. if test -n "$hardcode_libdir_separator" && test -n "$hardcode_libdirs"; then libdir="$hardcode_libdirs" eval rpath=\" $hardcode_libdir_flag_spec\" fi finalize_rpath="$rpath" if test -n "$libobjs" && test "$build_old_libs" = yes; then # Transform all the library objects into standard objects. compile_command=`$ECHO "$compile_command" | $SP2NL | $SED "$lo2o" | $NL2SP` finalize_command=`$ECHO "$finalize_command" | $SP2NL | $SED "$lo2o" | $NL2SP` fi func_generate_dlsyms "$outputname" "@PROGRAM@" "no" # template prelinking step if test -n "$prelink_cmds"; then func_execute_cmds "$prelink_cmds" 'exit $?' fi wrappers_required=yes case $host in *cegcc* | *mingw32ce*) # Disable wrappers for cegcc and mingw32ce hosts, we are cross compiling anyway. wrappers_required=no ;; *cygwin* | *mingw* ) if test "$build_libtool_libs" != yes; then wrappers_required=no fi ;; *) if test "$need_relink" = no || test "$build_libtool_libs" != yes; then wrappers_required=no fi ;; esac if test "$wrappers_required" = no; then # Replace the output file specification. compile_command=`$ECHO "$compile_command" | $SED 's%@OUTPUT@%'"$output"'%g'` link_command="$compile_command$compile_rpath" # We have no uninstalled library dependencies, so finalize right now. exit_status=0 func_show_eval "$link_command" 'exit_status=$?' if test -n "$postlink_cmds"; then func_to_tool_file "$output" postlink_cmds=`func_echo_all "$postlink_cmds" | $SED -e 's%@OUTPUT@%'"$output"'%g' -e 's%@TOOL_OUTPUT@%'"$func_to_tool_file_result"'%g'` func_execute_cmds "$postlink_cmds" 'exit $?' fi # Delete the generated files. if test -f "$output_objdir/${outputname}S.${objext}"; then func_show_eval '$RM "$output_objdir/${outputname}S.${objext}"' fi exit $exit_status fi if test -n "$compile_shlibpath$finalize_shlibpath"; then compile_command="$shlibpath_var=\"$compile_shlibpath$finalize_shlibpath\$$shlibpath_var\" $compile_command" fi if test -n "$finalize_shlibpath"; then finalize_command="$shlibpath_var=\"$finalize_shlibpath\$$shlibpath_var\" $finalize_command" fi compile_var= finalize_var= if test -n "$runpath_var"; then if test -n "$perm_rpath"; then # We should set the runpath_var. rpath= for dir in $perm_rpath; do func_append rpath "$dir:" done compile_var="$runpath_var=\"$rpath\$$runpath_var\" " fi if test -n "$finalize_perm_rpath"; then # We should set the runpath_var. rpath= for dir in $finalize_perm_rpath; do func_append rpath "$dir:" done finalize_var="$runpath_var=\"$rpath\$$runpath_var\" " fi fi if test "$no_install" = yes; then # We don't need to create a wrapper script. link_command="$compile_var$compile_command$compile_rpath" # Replace the output file specification. link_command=`$ECHO "$link_command" | $SED 's%@OUTPUT@%'"$output"'%g'` # Delete the old output file. $opt_dry_run || $RM $output # Link the executable and exit func_show_eval "$link_command" 'exit $?' if test -n "$postlink_cmds"; then func_to_tool_file "$output" postlink_cmds=`func_echo_all "$postlink_cmds" | $SED -e 's%@OUTPUT@%'"$output"'%g' -e 's%@TOOL_OUTPUT@%'"$func_to_tool_file_result"'%g'` func_execute_cmds "$postlink_cmds" 'exit $?' fi exit $EXIT_SUCCESS fi if test "$hardcode_action" = relink; then # Fast installation is not supported link_command="$compile_var$compile_command$compile_rpath" relink_command="$finalize_var$finalize_command$finalize_rpath" func_warning "this platform does not like uninstalled shared libraries" func_warning "\`$output' will be relinked during installation" else if test "$fast_install" != no; then link_command="$finalize_var$compile_command$finalize_rpath" if test "$fast_install" = yes; then relink_command=`$ECHO "$compile_var$compile_command$compile_rpath" | $SED 's%@OUTPUT@%\$progdir/\$file%g'` else # fast_install is set to needless relink_command= fi else link_command="$compile_var$compile_command$compile_rpath" relink_command="$finalize_var$finalize_command$finalize_rpath" fi fi # Replace the output file specification. link_command=`$ECHO "$link_command" | $SED 's%@OUTPUT@%'"$output_objdir/$outputname"'%g'` # Delete the old output files. $opt_dry_run || $RM $output $output_objdir/$outputname $output_objdir/lt-$outputname func_show_eval "$link_command" 'exit $?' if test -n "$postlink_cmds"; then func_to_tool_file "$output_objdir/$outputname" postlink_cmds=`func_echo_all "$postlink_cmds" | $SED -e 's%@OUTPUT@%'"$output_objdir/$outputname"'%g' -e 's%@TOOL_OUTPUT@%'"$func_to_tool_file_result"'%g'` func_execute_cmds "$postlink_cmds" 'exit $?' fi # Now create the wrapper script. func_verbose "creating $output" # Quote the relink command for shipping. if test -n "$relink_command"; then # Preserve any variables that may affect compiler behavior for var in $variables_saved_for_relink; do if eval test -z \"\${$var+set}\"; then relink_command="{ test -z \"\${$var+set}\" || $lt_unset $var || { $var=; export $var; }; }; $relink_command" elif eval var_value=\$$var; test -z "$var_value"; then relink_command="$var=; export $var; $relink_command" else func_quote_for_eval "$var_value" relink_command="$var=$func_quote_for_eval_result; export $var; $relink_command" fi done relink_command="(cd `pwd`; $relink_command)" relink_command=`$ECHO "$relink_command" | $SED "$sed_quote_subst"` fi # Only actually do things if not in dry run mode. $opt_dry_run || { # win32 will think the script is a binary if it has # a .exe suffix, so we strip it off here. case $output in *.exe) func_stripname '' '.exe' "$output" output=$func_stripname_result ;; esac # test for cygwin because mv fails w/o .exe extensions case $host in *cygwin*) exeext=.exe func_stripname '' '.exe' "$outputname" outputname=$func_stripname_result ;; *) exeext= ;; esac case $host in *cygwin* | *mingw* ) func_dirname_and_basename "$output" "" "." output_name=$func_basename_result output_path=$func_dirname_result cwrappersource="$output_path/$objdir/lt-$output_name.c" cwrapper="$output_path/$output_name.exe" $RM $cwrappersource $cwrapper trap "$RM $cwrappersource $cwrapper; exit $EXIT_FAILURE" 1 2 15 func_emit_cwrapperexe_src > $cwrappersource # The wrapper executable is built using the $host compiler, # because it contains $host paths and files. 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for obj in $save_oldobjs do last_oldobj=$obj done eval test_cmds=\"$old_archive_cmds\" func_len " $test_cmds" len0=$func_len_result len=$len0 for obj in $save_oldobjs do func_len " $obj" func_arith $len + $func_len_result len=$func_arith_result func_append objlist " $obj" if test "$len" -lt "$max_cmd_len"; then : else # the above command should be used before it gets too long oldobjs=$objlist if test "$obj" = "$last_oldobj" ; then RANLIB=$save_RANLIB fi test -z "$concat_cmds" || concat_cmds=$concat_cmds~ eval concat_cmds=\"\${concat_cmds}$old_archive_cmds\" objlist= len=$len0 fi done RANLIB=$save_RANLIB oldobjs=$objlist if test "X$oldobjs" = "X" ; then eval cmds=\"\$concat_cmds\" else eval cmds=\"\$concat_cmds~\$old_archive_cmds\" fi fi fi func_execute_cmds "$cmds" 'exit $?' done test -n "$generated" && \ func_show_eval "${RM}r$generated" # Now create the libtool archive. case $output in *.la) old_library= test "$build_old_libs" = yes && old_library="$libname.$libext" func_verbose "creating $output" # Preserve any variables that may affect compiler behavior for var in $variables_saved_for_relink; do if eval test -z \"\${$var+set}\"; then relink_command="{ test -z \"\${$var+set}\" || $lt_unset $var || { $var=; export $var; }; }; $relink_command" elif eval var_value=\$$var; test -z "$var_value"; then relink_command="$var=; export $var; $relink_command" else func_quote_for_eval "$var_value" relink_command="$var=$func_quote_for_eval_result; export $var; $relink_command" fi done # Quote the link command for shipping. relink_command="(cd `pwd`; $SHELL $progpath $preserve_args --mode=relink $libtool_args @inst_prefix_dir@)" relink_command=`$ECHO "$relink_command" | $SED "$sed_quote_subst"` if test "$hardcode_automatic" = yes ; then relink_command= fi # Only create the output if not a dry run. $opt_dry_run || { for installed in no yes; do if test "$installed" = yes; then if test -z "$install_libdir"; then break fi output="$output_objdir/$outputname"i # Replace all uninstalled libtool libraries with the installed ones newdependency_libs= for deplib in $dependency_libs; do case $deplib in *.la) func_basename "$deplib" name="$func_basename_result" func_resolve_sysroot "$deplib" eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $func_resolve_sysroot_result` test -z "$libdir" && \ func_fatal_error "\`$deplib' is not a valid libtool archive" func_append newdependency_libs " ${lt_sysroot:+=}$libdir/$name" ;; -L*) func_stripname -L '' "$deplib" func_replace_sysroot "$func_stripname_result" func_append newdependency_libs " -L$func_replace_sysroot_result" ;; -R*) func_stripname -R '' "$deplib" func_replace_sysroot "$func_stripname_result" func_append newdependency_libs " -R$func_replace_sysroot_result" ;; *) func_append newdependency_libs " $deplib" ;; esac done dependency_libs="$newdependency_libs" newdlfiles= for lib in $dlfiles; do case $lib in *.la) func_basename "$lib" name="$func_basename_result" eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $lib` test -z "$libdir" && \ func_fatal_error "\`$lib' is not a valid libtool archive" func_append newdlfiles " ${lt_sysroot:+=}$libdir/$name" ;; *) func_append newdlfiles " $lib" ;; esac done dlfiles="$newdlfiles" newdlprefiles= for lib in $dlprefiles; do case $lib in *.la) # Only pass preopened files to the pseudo-archive (for # eventual linking with the app. that links it) if we # didn't already link the preopened objects directly into # the library: func_basename "$lib" name="$func_basename_result" eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $lib` test -z "$libdir" && \ func_fatal_error "\`$lib' is not a valid libtool archive" func_append newdlprefiles " ${lt_sysroot:+=}$libdir/$name" ;; esac done dlprefiles="$newdlprefiles" else newdlfiles= for lib in $dlfiles; do case $lib in [\\/]* | [A-Za-z]:[\\/]*) abs="$lib" ;; *) abs=`pwd`"/$lib" ;; esac func_append newdlfiles " $abs" done dlfiles="$newdlfiles" newdlprefiles= for lib in $dlprefiles; do case $lib in [\\/]* | [A-Za-z]:[\\/]*) abs="$lib" ;; *) abs=`pwd`"/$lib" ;; esac func_append newdlprefiles " $abs" done dlprefiles="$newdlprefiles" fi $RM $output # place dlname in correct position for cygwin # In fact, it would be nice if we could use this code for all target # systems that can't hard-code library paths into their executables # and that have no shared library path variable independent of PATH, # but it turns out we can't easily determine that from inspecting # libtool variables, so we have to hard-code the OSs to which it # applies here; at the moment, that means platforms that use the PE # object format with DLL files. 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then case " $rmdirs " in *" $odir "*) ;; *) func_append rmdirs " $odir" ;; esac fi # Don't error if the file doesn't exist and rm -f was used. if { test -L "$file"; } >/dev/null 2>&1 || { test -h "$file"; } >/dev/null 2>&1 || test -f "$file"; then : elif test -d "$file"; then exit_status=1 continue elif test "$rmforce" = yes; then continue fi rmfiles="$file" case $name in *.la) # Possibly a libtool archive, so verify it. if func_lalib_p "$file"; then func_source $dir/$name # Delete the libtool libraries and symlinks. for n in $library_names; do func_append rmfiles " $odir/$n" done test -n "$old_library" && func_append rmfiles " $odir/$old_library" case "$opt_mode" in clean) case " $library_names " in *" $dlname "*) ;; *) test -n "$dlname" && func_append rmfiles " $odir/$dlname" ;; esac test -n "$libdir" && func_append rmfiles " $odir/$name $odir/${name}i" ;; uninstall) if test -n "$library_names"; then # Do each command in the postuninstall commands. func_execute_cmds "$postuninstall_cmds" 'test "$rmforce" = yes || exit_status=1' fi if test -n "$old_library"; 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then eval exec "$exec_cmd" exit $EXIT_FAILURE fi exit $exit_status # The TAGs below are defined such that we never get into a situation # in which we disable both kinds of libraries. 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Create the # directory the slow way, step by step, checking for races as we go. case $dstdir in /*) prefix='/';; [-=\(\)!]*) prefix='./';; *) prefix='';; esac eval "$initialize_posix_glob" oIFS=$IFS IFS=/ $posix_glob set -f set fnord $dstdir shift $posix_glob set +f IFS=$oIFS prefixes= for d do test X"$d" = X && continue prefix=$prefix$d if test -d "$prefix"; then prefixes= else if $posix_mkdir; then (umask=$mkdir_umask && $doit_exec $mkdirprog $mkdir_mode -p -- "$dstdir") && break # Don't fail if two instances are running concurrently. test -d "$prefix" || exit 1 else case $prefix in *\'*) qprefix=`echo "$prefix" | sed "s/'/'\\\\\\\\''/g"`;; *) qprefix=$prefix;; esac prefixes="$prefixes '$qprefix'" fi fi prefix=$prefix/ done if test -n "$prefixes"; then # Don't fail if two instances are running concurrently. (umask $mkdir_umask && eval "\$doit_exec \$mkdirprog $prefixes") || test -d "$dstdir" || exit 1 obsolete_mkdir_used=true fi fi fi if test -n "$dir_arg"; then { test -z "$chowncmd" || $doit $chowncmd "$dst"; } && { test -z "$chgrpcmd" || $doit $chgrpcmd "$dst"; } && { test "$obsolete_mkdir_used$chowncmd$chgrpcmd" = false || test -z "$chmodcmd" || $doit $chmodcmd $mode "$dst"; } || exit 1 else # Make a couple of temp file names in the proper directory. dsttmp=$dstdir/_inst.$$_ rmtmp=$dstdir/_rm.$$_ # Trap to clean up those temp files at exit. trap 'ret=$?; rm -f "$dsttmp" "$rmtmp" && exit $ret' 0 # Copy the file name to the temp name. (umask $cp_umask && $doit_exec $cpprog "$src" "$dsttmp") && # and set any options; do chmod last to preserve setuid bits. # # If any of these fail, we abort the whole thing. If we want to # ignore errors from any of these, just make sure not to ignore # errors from the above "$doit $cpprog $src $dsttmp" command. # { test -z "$chowncmd" || $doit $chowncmd "$dsttmp"; } && { test -z "$chgrpcmd" || $doit $chgrpcmd "$dsttmp"; } && { test -z "$stripcmd" || $doit $stripcmd "$dsttmp"; } && { test -z "$chmodcmd" || $doit $chmodcmd $mode "$dsttmp"; } && # If -C, don't bother to copy if it wouldn't change the file. if $copy_on_change && old=`LC_ALL=C ls -dlL "$dst" 2>/dev/null` && new=`LC_ALL=C ls -dlL "$dsttmp" 2>/dev/null` && eval "$initialize_posix_glob" && $posix_glob set -f && set X $old && old=:$2:$4:$5:$6 && set X $new && new=:$2:$4:$5:$6 && $posix_glob set +f && test "$old" = "$new" && $cmpprog "$dst" "$dsttmp" >/dev/null 2>&1 then rm -f "$dsttmp" else # Rename the file to the real destination. $doit $mvcmd -f "$dsttmp" "$dst" 2>/dev/null || # The rename failed, perhaps because mv can't rename something else # to itself, or perhaps because mv is so ancient that it does not # support -f. { # Now remove or move aside any old file at destination location. # We try this two ways since rm can't unlink itself on some # systems and the destination file might be busy for other # reasons. 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Here is a sample; alter the names: Yoyodyne, Inc., hereby disclaims all copyright interest in the library `Frob' (a library for tweaking knobs) written by James Random Hacker. , 1 April 1990 Ty Coon, President of Vice That's all there is to it! libotr-4.1.1/packaging/0000755000175000017500000000000011750506626011745 500000000000000libotr-4.1.1/packaging/fedora/0000755000175000017500000000000012637277541013213 500000000000000libotr-4.1.1/packaging/fedora/libotr.spec0000664000175000017500000001326612637277541015314 00000000000000%global snapshot 0 Summary: Off-The-Record Messaging library and toolkit Name: libotr Version: 4.0.0 Release: 1%{?dist} License: GPLv2 and LGPLv2 Group: System Environment/Libraries Source0: https://otr.cypherpunks.ca/%{name}-%{version}.tar.gz Url: https://otr.cypherpunks.ca/ BuildRoot: %{_tmppath}/%{name}-%{version}-%{release}-root-%(%{__id_u} -n) Provides: libotr-toolkit = %{version} Obsoletes: libotr-toolkit < %{version} Requires: libgcrypt >= 1.2.0 Requires: pkgconfig BuildRequires: libgcrypt-devel >= 1.2.0, libgpg-error-devel %if %{snapshot} Buildrequires: libtool automake autoconf %endif %description Off-the-Record Messaging Library and Toolkit This is a library and toolkit which implements Off-the-Record (OTR) Messaging. OTR allows you to have private conversations over IM by providing Encryption, Authentication, Deniability and Perfect forward secrecy. %package devel Summary: Development library and include files for libotr Group: Development/Libraries Requires: %{name} = %{version}-%{release}, libgcrypt-devel >= 1.2.0 %description devel The devel package contains the libotr library and include files. %prep %setup -q %if %{snapshot} aclocal intltoolize --force --copy autoreconf -s -i %endif %build %configure --with-pic --disable-rpath --disable-static sed -i 's|^hardcode_libdir_flag_spec=.*|hardcode_libdir_flag_spec=""|g' libtool sed -i 's|^runpath_var=LD_RUN_PATH|runpath_var=DIE_RPATH_DIE|g' libtool make %{?_smp_mflags} all %install rm -rf $RPM_BUILD_ROOT make \ DESTDIR=$RPM_BUILD_ROOT \ LIBINSTDIR=%{_libdir} \ install rm -rf $RPM_BUILD_ROOT%{_libdir}/*.la %clean rm -rf $RPM_BUILD_ROOT %post -p /sbin/ldconfig %postun -p /sbin/ldconfig %files %defattr(-,root,root) %doc AUTHORS README COPYING COPYING.LIB NEWS Protocol* %{_libdir}/libotr.so.* %{_bindir}/* %{_mandir}/man1/* %files devel %defattr(-,root,root,-) %doc ChangeLog %{_libdir}/libotr.so %{_libdir}/pkgconfig/libotr.pc %dir %{_includedir}/libotr %{_includedir}/libotr/* %{_datadir}/aclocal/* %changelog * Sat Jul 27 2013 Paul Wouters - 4.0.0-1 - Upgraded to libotr-4.0.0 - Since this is API incompatible, there is also a libotr3 package * Thu Feb 14 2013 Fedora Release Engineering - 3.2.1-2 - Rebuilt for https://fedoraproject.org/wiki/Fedora_19_Mass_Rebuild * Wed Aug 15 2012 Paul Wouters - 3.2.1-1 - Updated to 3.2.1, updates patch for rhbz#846377, CVE-2012-3461 * Wed Aug 08 2012 Paul Wouters - 3.2.0-9 - Patch for Multiple heap-based buffer overflows in the Base64 decoder (rhbz#846377, upstream will not release 3.2.1 for this) * Thu Jul 19 2012 Fedora Release Engineering - 3.2.0-8 - Rebuilt for https://fedoraproject.org/wiki/Fedora_18_Mass_Rebuild * Fri Jan 13 2012 Fedora Release Engineering - 3.2.0-7 - Rebuilt for https://fedoraproject.org/wiki/Fedora_17_Mass_Rebuild * Tue Feb 08 2011 Fedora Release Engineering - 3.2.0-6 - Rebuilt for https://fedoraproject.org/wiki/Fedora_15_Mass_Rebuild * Mon May 24 2010 Tom "spot" Callaway - 3.2.0-5 - disable static libs - disable rpath * Fri Jul 24 2009 Fedora Release Engineering - 3.2.0-4 - Rebuilt for https://fedoraproject.org/wiki/Fedora_12_Mass_Rebuild * Wed Feb 25 2009 Fedora Release Engineering - 3.2.0-3 - Rebuilt for https://fedoraproject.org/wiki/Fedora_11_Mass_Rebuild * Thu Aug 7 2008 Tom "spot" Callaway - 3.2.0-2 - fix license tag * Sun Jun 15 2008 Paul Wouters 3.2.0-1 - Upgraded to 3.2.0 * Tue Feb 19 2008 Fedora Release Engineering - 3.1.0-2 - Autorebuild for GCC 4.3 * Wed Aug 1 2007 Paul Wouters 3.1.0-1 - Upgraded to current version - Updated URLS and configure line * Mon Sep 11 2006 Paul Wouters 3.0.0-2 - Rebuild requested for PT_GNU_HASH support from gcc * Mon Oct 17 2005 Paul Wouters 3.0.0-1 - Minor change to allow for new documentation files. Fixed Requires: * Sat Jun 19 2005 Paul Wouters - Fixed defattr, groups, description and duplicate files in devel * Fri Jun 17 2005 Tom "spot" Callaway - reworked for Fedora Extras * Tue May 3 2005 Ian Goldberg - Bumped version number to 2.0.2 * Wed Feb 16 2005 Ian Goldberg - Bumped version number to 2.0.1 * Tue Feb 8 2005 Ian Goldberg - Bumped version number to 2.0.0 * Wed Feb 2 2005 Ian Goldberg - Added libotr.m4 to the devel package - Bumped version number to 1.99.0 * Wed Jan 19 2005 Paul Wouters - Updated spec file for the gaim-otr libotr split * Tue Dec 21 2004 Ian Goldberg - Bumped to version 1.0.2. * Fri Dec 17 2004 Paul Wouters - instll fix for x86_64 * Sun Dec 12 2004 Ian Goldberg - Bumped to version 1.0.0. * Fri Dec 10 2004 Ian Goldberg - Bumped to version 0.9.9rc2. * Thu Dec 9 2004 Ian Goldberg - Added CFLAGS to "make all", removed DESTDIR * Wed Dec 8 2004 Ian Goldberg - Bumped to version 0.9.9rc1. * Fri Dec 3 2004 Ian Goldberg - Bumped to version 0.9.1. * Wed Dec 1 2004 Paul Wouters - Bumped to version 0.9.0. - Fixed install for tools and cos - Added Obsoletes: target for otr-plugin so rpm-Uhv gaim-otr removes it. * Mon Nov 22 2004 Ian Goldberg - Bumped version to 0.8.1 * Sun Nov 21 2004 Paul Wouters - Initial version libotr-4.1.1/Makefile.in0000664000175000017500000007073612667305560012027 00000000000000# Makefile.in generated by automake 1.14.1 from Makefile.am. # @configure_input@ # Copyright (C) 1994-2013 Free Software Foundation, Inc. # This Makefile.in is free software; the Free Software Foundation # gives unlimited permission to copy and/or distribute it, # with or without modifications, as long as this notice is preserved. # This program is distributed in the hope that it will be useful, # but WITHOUT ANY WARRANTY, to the extent permitted by law; without # even the implied warranty of MERCHANTABILITY or FITNESS FOR A # PARTICULAR PURPOSE. @SET_MAKE@ VPATH = @srcdir@ am__is_gnu_make = test -n '$(MAKEFILE_LIST)' && test -n '$(MAKELEVEL)' am__make_running_with_option = \ case $${target_option-} in \ ?) ;; \ *) echo "am__make_running_with_option: internal error: invalid" \ "target option '$${target_option-}' specified" >&2; \ exit 1;; \ esac; \ has_opt=no; \ sane_makeflags=$$MAKEFLAGS; \ if $(am__is_gnu_make); then \ sane_makeflags=$$MFLAGS; \ else \ case $$MAKEFLAGS in \ *\\[\ \ ]*) \ bs=\\; \ sane_makeflags=`printf '%s\n' "$$MAKEFLAGS" \ | sed "s/$$bs$$bs[$$bs $$bs ]*//g"`;; \ esac; \ fi; \ skip_next=no; \ strip_trailopt () \ { \ flg=`printf '%s\n' "$$flg" | sed "s/$$1.*$$//"`; \ }; \ for flg in $$sane_makeflags; do \ test $$skip_next = yes && { skip_next=no; continue; }; \ case $$flg in \ *=*|--*) continue;; \ -*I) strip_trailopt 'I'; skip_next=yes;; \ -*I?*) strip_trailopt 'I';; \ -*O) strip_trailopt 'O'; skip_next=yes;; \ -*O?*) strip_trailopt 'O';; \ -*l) strip_trailopt 'l'; skip_next=yes;; \ -*l?*) strip_trailopt 'l';; \ -[dEDm]) skip_next=yes;; \ -[JT]) skip_next=yes;; \ esac; \ case $$flg in \ *$$target_option*) has_opt=yes; break;; \ esac; \ done; \ test $$has_opt = yes am__make_dryrun = (target_option=n; $(am__make_running_with_option)) am__make_keepgoing = (target_option=k; $(am__make_running_with_option)) pkgdatadir = $(datadir)/@PACKAGE@ pkgincludedir = $(includedir)/@PACKAGE@ pkglibdir = $(libdir)/@PACKAGE@ pkglibexecdir = $(libexecdir)/@PACKAGE@ am__cd = CDPATH="$${ZSH_VERSION+.}$(PATH_SEPARATOR)" && cd install_sh_DATA = $(install_sh) -c -m 644 install_sh_PROGRAM = $(install_sh) -c install_sh_SCRIPT = $(install_sh) -c INSTALL_HEADER = $(INSTALL_DATA) transform = $(program_transform_name) NORMAL_INSTALL = : PRE_INSTALL = : POST_INSTALL = : NORMAL_UNINSTALL = : PRE_UNINSTALL = : POST_UNINSTALL = : build_triplet = @build@ host_triplet = @host@ @BUILD_TESTS_TRUE@am__append_1 = tests subdir = . 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OTR allows you to have private conversations over IM by providing: - Encryption - No one else can read your instant messages. - Authentication - You are assured the correspondent is who you think it is. - Deniability - The messages you send do _not_ have digital signatures that are checkable by a third party. Anyone can forge messages after a conversation to make them look like they came from you. However, _during_ a conversation, your correspondent is assured the messages he sees are authentic and unmodified. - Perfect forward secrecy - If you lose control of your private keys, no previous conversation is compromised. For more information on Off-the-Record Messaging, see https://otr.cypherpunks.ca/ LIBRARY USAGE 1. Initialization Before you call any other libotr routine, you need to initialize the library. The easiest way to do that is to include proto.h, and use the macro: OTRL_INIT; somewhere early in your program. This should be called only once. You will also need an OtrlUserState. An OtrlUserState encapsulates the list of known fingerprints and the list of private keys, so it should be "one per user". Many OTR-enabled programs (such as IM clients) only have a single user, so for them, you can just create a single one, and use it throughout. Create an OtrlUserState as follows: userstate = otrl_userstate_create(); If you need to free an OtrlUserState: otrl_userstate_free(userstate); To read stored private keys: otrl_privkey_read(userstate, privkeyfilename); To read stored instance tags: otrl_instag_read(userstate, instagfilename); To read stored fingerprints: otrl_privkey_read_fingerprints(userstate, fingerprintfilename, add_app_info, add_app_info_data); add_app_info is a function that will be called in the event that a new ConnContext is created. It will be passed the add_app_info_data that you supplied, as well as a pointer to the new ConnContext. You can use this to add application-specific information to the ConnContext using the "context->app" field, for example. If you don't need to do this, you can pass NULL for the last two arguments of otrl_privkey_read_fingerprints. 2. Setting up the UI functions You need to let the library know how to do any UI it might require (error messages, confirming new fingerprints, etc.). To this end, you need to define a number of UI functions, and collect them in a OtrlMessageAppOps struct. The first parameter of every UI function is "void *opdata". This is a pointer you pass to the library, and it will pass back (opaquely) to the UI functions when it calls them. You can use this to keep track of state or any other information. You will need to include proto.h and message.h, and you can find a list of the UI functions in message.h. 3. Sending messages When you have a message you're about to send, you'll need to know four things: you account name, the protocol id, the name of the recipient, their instance tag, and the message. OTR protocol version 3 introduces the notion of "instance tags." A client may be logged into the same account multiple times from different locations. An instance tag is intended to differentiate these clients. When sending a message, you may also specify a particular instance tag, or use meta instance tags like OTRL_INSTAG_MOST_SECURE. The protocol id is just a unique string that is used to distinguish the user foo on AIM from the user foo on MSN, etc. It can be anything you like, so long as you're consistent, but if you've got nothing better to use, you may as well use the ids from gaim. (Programs that use the same protocol ids can share fingerprint and private key files.) The gaim protocol id for AIM/ICQ is "prpl-oscar". Note that a name does not uniquely identify a user (as shown by the "foo" example above). Even if you know both the name and the protocol, it may not identify the user, since there may be multiple "foo" users on IRC, on different servers. But the *three* items (your account name, protocol id, their name) _must_ uniquely identify a user, so your account name needs to include any network identifier, such as a server name. Examples would be "foo@irc.freenode.net" or "foo@jabber.org". Protocols such as AIM that do not have separate networks can just use "foo", of course. To encrypt the message (if necessary; the library keeps track of which users you have secure connections to, so you should *always* call this next function), simply do this: gcry_error_t err; char *newmessage = NULL; err = otrl_message_sending(userstate, &ui_ops, opdata, accountname, protocolid, recipient_name, instag, message, tlvs, &newmessage, fragPolicy, contextp, add_app_info, add_app_info_data); add_app_info and add_app_info_data are as above, and may be NULL. tlvs should usually be NULL. If it's not, then it points to a chain of OtrlTLVs which represent machine-readable data to send along with this message. If contextp is not NULL, it will be set to the context that was used for sending the message. If err is non-zero, then the library tried to encrypt the message, but for some reason failed. DO NOT send the message in the clear in that case. If newmessage gets set by the call to something non-NULL, then you should replace your message with the contents of newmessage, and send that instead. Once the message is encrypted, it may still be too large to send over the network in a single piece. To check the maximum message size and break your message into fragments if necessary, do this: gcry_error_t err; char *extrafragment = NULL; err = otrl_message_fragment_and_send(&ui_ops, opdata, context, message, fragmentPolicy, extrafragment); fragmentPolicy determines which, if any, fragments to return instead of sending them immediately. For example, you may wish to send all fragments except the last one, which is handled differently. Valid policies may be found in proto.h. If err returns a nonzero value from fragment_and_send, the application tried to break your message into fragments but failed for some reason. You may still attempt to send the original message, but it might be rejected if it too large. When you're done with newmessage, you must call otrl_message_free(newmessage) 4. Receiving messages Receiving messages is similarly straightforward. Again, you need to know four things: your account name, the protocol id, the sender's name, and the message. int ignore_message; char *newmessage = NULL; ignore_message = otrl_message_receiving(userstate, &ui_ops, opdata, accountname, protocolid, sender_name, message, &newmessage, &tlvs, contextp, add_app_info, add_app_info_data); add_app_info and add_app_info_data are as above, and may be NULL. If contextp is not NULL, it will be set to the context that was used for receiving the message. If otrl_message_receiving returns 1, then the message you received was an internal protocol message, and no message should be delivered to the user. If it returns 0, then check if newmessage was set to non-NULL. If so, replace the received message with the contents of newmessage, and deliver that to the user instead. You must call otrl_message_free(newmessage) when you're done with it. If otrl_message_receiving returns 0 and newmessage is NULL, then this was an ordinary, non-OTR message, which should just be delivered to the user without modification. If tlvs is set to non-NULL, then there is machine-readable data that was sent along with this message. Call otrl_tlv_free(tlvs) when you're done dealing with it (or ignoring it). 5. Socialist Millionaires' Protocol The Socialist Millionaires' Protocol (SMP) is a way to detect eavesdropping and man-in-the-middle attacks without requiring users to work with fingerprints. This feature was added to OTR starting in version 3.1.0. To learn how to modify your application to use SMP, read the UPGRADING file. TOOLKIT Along with the library, this package comes with the OTR Messaging Toolkit. This toolkit is useful for analyzing and/or forging OTR messages. Why do we offer this? Primarily, to make absolutely sure that transcripts of OTR conversations are really easy to forge after the fact. [Note that *during* an OTR conversation, messages can't be forged without real-time access to the secret keys on the participants' computers, and in that case, all security has already been lost.] Easily forgeable transcripts help us provide the "Deniability" property: if someone claims you said something over OTR, they'll have no proof, as anyone at all can modify a transcript to make it say whatever they like, and still have all the verification come out correctly. Here are the six programs in the toolkit: - otr_parse - Parse OTR messages given on stdin, showing the values of all the fields in OTR protocol messages. - otr_sesskeys our_privkey their_pubkey - Shows our public key, the session id, two AES and two MAC keys derived from the given Diffie-Hellman keys (one private, one public). - otr_mackey aes_enc_key - Shows the MAC key derived from the given AES key. - otr_readforge aes_enc_key [newmsg] - Decrypts an OTR Data message using the given AES key, and displays the message, if the key was correct. - If newmsg is given, replace the message with that one, encrypt and MAC it properly, and output the resulting OTR Data Message. This works even if the given key was not correct for the original message, so as to enable complete forgeries. - otr_modify mackey old_text new_text offset - Even if you can't read the data because you don't know either the AES key or the Diffie-Hellman private key, but you can make a good guess that the substring "old_text" appears at the given offset in the message, replace the old_text with the new_text (which must be of the same length), recalculate the MAC with the given mackey, and output the resulting Data message. - Note that, even if you don't know any text in an existing message, you can still forge messages of your choice using the otr_readforge command, above. - otr_remac mackey sender_instance receiver_instance flags keyid keyid pubkey counter encdata revealed_mackeys - Make a new OTR Data Message, with the given pieces (note that the data part is already encrypted). MAC it with the given mackey. NOTES Please send your bug reports, comments, suggestions, patches, etc. to us at the contact address below. In otrl_message_sending, specifying an instance tag allows you to send a message to a particular session of a buddy who is logged in multiple times with an otr-enabled client. The OTRL_INSTAG_RECENT_RECEIVED meta-instance relies on the time that libotr processed the most recent message. Meta- instance tags resolve to actual instance tags before a message is sent. An instant messaging network may not agree on which session of the remote party is the most recent, e.g., due to underlying network race conditions. If the behaviour of an instant messaging network is to only deliver to the most recent, and libotr and the network disagree on which session is the most recent, the other party will not process the given message. That is, the instant messaging network will deliver the message to the session whose actual instance tag does not match the addressed instance tag. Also note that OTRL_INSTAG_BEST also prefers more recent instance tags in the case of multiple instances with the same "best" status (most secure). In this case, the most recent has a resolution of one second. If otrl_message_sending is called with an original_msg that contains the text "?OTR?", this is a signal to initiate or refresh an OTR session. There is currently no way to indicate if this text was actually typed in by a user and part of a conversation (e.g., someone communicating instructions on how to refresh OTR). In the future, we may allow a policy to specify whether "?OTR?" is a signal to start OTR, or just an ordinary message for encrypted and unencrypted conversations. MAILING LISTS There are three mailing lists pertaining to Off-the-Record Messaging: otr-announce: https://lists.cypherpunks.ca/mailman/listinfo/otr-announce/ *** All users of OTR software should join this. *** It is used to announce new versions of OTR software, and other important information. otr-users: https://lists.cypherpunks.ca/mailman/listinfo/otr-users/ Discussion of usage issues related to OTR Messaging software. otr-dev: https://lists.cypherpunks.ca/mailman/listinfo/otr-dev/ Discussion of OTR Messaging software development. LICENSE The Off-the-Record Messaging library (in the src directory) is covered by the following (LGPL) license: Off-the-Record Messaging library Copyright (C) 2004-2016 Ian Goldberg, David Goulet, Rob Smits, Chris Alexander, Willy Lew, Lisa Du, Nikita Borisov This library is free software; you can redistribute it and/or modify it under the terms of version 2.1 of the GNU Lesser General Public License as published by the Free Software Foundation. This library is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details. There is a copy of the GNU Lesser General Public License in the COPYING.LIB file packaged with this library; if you cannot find it, write to the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA The library comes with a test suite (in the tests directory), which is covered by the following (GPL) license: Copyright (C) 2014 Julien Voisin , David Goulet This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License, version 2 only, as published by the Free Software Foundation. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program; if not, write to the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. The Off-the-Record Messaging Toolkit (in the toolkit directory) is covered by the following (GPL) license: Off-the-Record Messaging Toolkit Copyright (C) 2004-2014 Ian Goldberg, David Goulet, Rob Smits, Chris Alexander, Nikita Borisov This program is free software; you can redistribute it and/or modify it under the terms of version 2 of the GNU General Public License as published by the Free Software Foundation. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. There is a copy of the GNU General Public License in the COPYING file packaged with this toolkit; if you cannot find it, write to the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA CONTACT To report problems, comments, suggestions, patches, etc., you can email the authors: Ian Goldberg, David Goulet, Rob Smits, Chris Alexander, Lisa Du, Nikita Borisov For more information on Off-the-Record Messaging, visit https://otr.cypherpunks.ca/ libotr-4.1.1/ChangeLog0000664000175000017500000007024712667303734011532 000000000000002016-03-07 * tests/regression/client/Makefile.am: * tests/unit/Makefile.am: Add LIBGCRYPT_CFLAGS to the test suite * Makefile.am: * configure.ac: Only build the test suite on Linux, since it currently uses Linux-specific features such as epoll 2016-03-06 * Makefile.am: Add bootstrap to the tarball 2016-03-04 * README: * configure.ac: * src/version.h: Bump version number to 4.1.1 2016-03-03 * src/proto.c (otrl_proto_accept_data): * src/proto.c (otrl_proto_fragment_accumulate): * src/proto.c (otrl_proto_fragment_create): Prevent integer overflow on 64-bit architectures when receiving 4GB messages. In several places in proto.c, the sizes of portions of incoming messages were stored in variables of type int or unsigned int instead of size_t. If a message arrives with very large sizes (for example unsigned int datalen = UINT_MAX), then constructions like malloc(datalen+1) will turn into malloc(0), which on some architectures returns a non-NULL pointer, but UINT_MAX bytes will get written to that pointer. Ensure all calls to malloc or realloc cannot integer overflow like this. Thanks to Markus Vervier of X41 D-Sec GmbH for the report. * Protocol-v3.html: Clarify that instance tags and fragment numbers in the OTR fragment format are allowed to have leading 0s. Also fix that how to handle v2 versus v3 messages for the Reveal Signature and Signature messages was missing. Thanks to Ola Bini for the report. 2015-12-25 * src/instag.c (otrl_instag_read_FILEp): Fix memory leak in otrl_instag_read_FILEp if the tag file is malformed. Thanks to Jean-Philippe Aumasson for the report. 2015-08-18 * src/message.c (otrl_message_receiving): * src/proto.c (otrl_proto_create_data): Set to NULL the sendsmp pointer when handling SMP to avoid a potential free() of an uninitialized pointer. Also ensure the message pointer is set to NULL in otrl_proto_create_data for extra precaution and to prevent future code paths from having the same error. Thanks to Nicolas Guigo and Ben Hawkes for the report. 2015-02-08 * Protocol-v3.html: Typo fixes, thanks to Hannes Mehnert and Nadim Kobeissi for the reports. * src/message.c: Be stricter about parsing v3 fragments. Thanks to Jean-Philippe Aumasson for the report. 2014-12-18 * Protocol-v3.html: Remove "sender_instance, receiver_instance," from description of v2 fragmentation and clarify that you can't fragment a fragment. Thanks to Hannes Mehnert for the report. * Protocol-v3.html: Remove a stray "DRAFT" from the tag. * Protocol-v2.html: * Protocol-v3.html: Clarify the DSA computation in the protocol specs. Thanks to Adam Langley <agl@imperialviolet.org> and Hannes Mehnert <hannes@mehnert.org> for the report. 2014-11-29 * README: * Makefile.am: * configure.ac: * tests/*: Brand new testsuite, thanks to David Goulet <dgoulet@ev0ke.net> and Julien Voisin <julien.voisin@dustri.org>. "make check" to run it. 2014-11-11 * b64.c (otrl_base64_otr_encode): In case some future code path tries to call otrl_base64_otr_encode with a buffer more than 3/4 the size of all addressable memory, return NULL rather than causing an integer overflow and a heap overrun. Thanks to David Remahl <david@remahl.se> for the report. * proto.c (otrl_proto_create_data): Tiny refactor to call otrl_base64_otr_encode instead of duplicating the code here. 2014-10-18 * README: * configure.ac: * src/version.h: Bump version number to 4.1.0 2014-10-18 * Protocol-v3.html: Correctly count the number of actions an OTR client must handle. Thanks to Fred Yontz <fred@ridersite.org> for the report. 2014-10-13 * src/context.h: Add API functions otrl_context_find_recent_instance and otrl_context_find_recent_secure_instance. 2014-10-13 * src/context.c (otrl_context_forget): Correct check for children contexts' state being OTRL_MSGSTATE_PLAINTEXT. Thanks to k007k <k007k@wp.pl> for the report. 2014-10-13 * src/message.c (otrl_message_receiving): Fix memory leak in fragment reassembly. Thanks to Matthew D. Green <matthewdgreen@gmail.com> for the report and David Goulet <dgoulet@ev0ke.net> for the patch. 2014-10-13 * src/message.c (otrl_message_sending): Fix possible memory leak. 2014-07-13 * src/auth.c (otrl_auth_handle_commit): Add a clarifying comment. 2014-06-12 * src/message.h: Typo fix. 2014-06-03 * Makefile.am: * configure.ac: Modernize autoconf build system. Thanks to David Goulet <dgoulet@ev0ke.net> for the patch. 2014-05-22 * README: * src/context.c: Typo fixes. 2014-05-04 * INSTALL: * bootstrap: Add bootstrap script to set up the build system. Thanks to David Goulet <dgoulet@ev0ke.net> for the patch. 2014-05-04 * src/dh.c: * src/sm.c: * toolkit/sesskeys.c: Use gcrypt secure memory allocation. Thanks to Julien Voisin <julien.voisin@dustri.org> for the patch. 2014-04-21 * src/mem.c (otrl_mem_differ): Simplify otrl_mem_differ. Thanks to Julien Voisin <julien.voisin@dustri.org> for the patch. 2014-02-20 * src/proto.c (otrl_proto_instance): Fix a memory leak when receiving an invalid instance tag. Thanks to Julien Voisin <julien.voisin@dustri.org> for the patch. 2014-02-15 * src/proto.c: * src/auth.c: * src/mem.c: * src/mem.h: Use a constant-time memory comparison for safety. Thanks to jvoisin <julien.voisin@dustri.org> for the suggestion. 2013-10-13 * src/proto.c: Return 0 instead of crashing from otrl_proto_query_bestversion if passed an illegal input. Thanks to Conrad Hoffmann <ch@bitfehler.net> for the report and the patch. 2013-08-21 * src/proto.c: Fix warning from clang in proto.c. Before, trying to fragment a message into more than 65535 pieces would cause incorrect fragments to be output. Now, it just returns an error (as that is disallowed by the spec). Thanks to Teemu Huovila <thuovila@cs.helsinki.fi> for reporting the issue. 2013-08-08 * Protocol-v3.html: Random exponents in SMP should be 1536 bits. The spec (but not the code) incorrectly said "128 bits" before. 2013-07-28 * packaging/fedora/libotr.spec: Fedora spec file for 4.x from Paul Wouters <paul@cypherpunks.ca> 2013-07-17 * toolkit/sesskeys.c: Workaround for a crash bug in libgcrypt affecting otr_sesskeys. Passing a private key value of 0 to otr_sesskeys would cause libgcrypt to crash in gcry_mpi_powm. We reported this libgcrypt bug and it was then fixed in http://lists.gnupg.org/pipermail/gcrypt-devel/2013-July/002251.html but the workaround is simply to use gcry_mpi_new(DH1536_MOD_LEN_BITS) instead of gcry_mpi_new(0). Note that this only affected the otr_sesskeys toolkit program, and not libotr itself. Thanks to the Mayhem Team at CMU (Alexandre Rebert, Thanassis Avgerinos, Sang Kil Cha, David Brumley, Manuel Egele) for the report. 2013-01-19 * src/message.c: pass opdata when sending message fragment The inject_message callback was missing the opdata when sending message fragments. Thanks to David Goulet <dgoulet@ev0ke.net> for the report. 2012-12-18 * src/message.c: Copy lastmessage to the newly created context. This fixes a case where the first user message gets lost when OTRL_POLICY_REQUIRE_ENCRYPTION policy is set because after establishing the encryption lastmessage remains with the master context and will not be resent. Thanks to Andreas Schlick <schlick@lavabit.com> for the report. 2012-09-09 * configure.ac: Make linker hardening [DEP, ALSR] work on Windows builds. Thanks to Daniel Atallah <datallah@pidgin.im> for noticing that it wasn't working before. 2012-09-04 * README: Release 4.0.0 2012-08-28 * UPGRADING: * src/proto.h: * src/proto.c: Don't have otrl_init call exit(1) if the application's requested version number differs from libotr's. Rather, return a non-zero error code, and have the application clean up gracefully. The OTRL_INIT macro now checks the error code and does an exit(1) as the default behaviour, but the application can do what it likes. 2012-08-27 * src/auth.h: * src/auth.c: * src/message.c: Record the time the last COMMIT was sent from a master context. This will be used to clear the committed key from the master context once we don't expect any more instances of our buddy to respond with a DHKEY message. * UPGRADING: * src/userstate.h: * src/userstate.c: * src/message.h: * src/message.c: Add a timer_control callback to OtrlMessageAppOps in order to actually clear out the above stale committed keys. 2012-08-26 * src/context.c: * src/context_priv.c: * src/context_priv.h: libotr was exporting exactly two functions without the otrl_ prefix: context_priv_new and context_priv_force_finished. Change the names of these functions to start with otrl_. Thanks to David Goulet <dgoulet@ev0ke.net> for noticing it. * Protocol-v3.html: Document the v3 whitespace tag, and better document the extra symmetric key. Thanks to Kjell Braden <kb@pentabarf.de> for noticing the omission. 2012-08-25 * src/sm.c: * src/context.c: * src/auth.c: * src/message.c: If OTRL_DEBUGGING is non-zero, then a message containing a special debug string ("?OTR!") will cause debug info to be printed to stderr. (This #define should *not* be set in release code.) * src/auth.c: * src/auth.h: * src/message.c: Correct the logic for handling incoming COMMIT messages when we've recently sent our own COMMIT message. * src/message.c: Don't update the recent_sent_child field to point to the master context just becuase we sent a version 3 COMMIT message (which has no destination instance). 2012-08-24 * README: * configure.ac: Prepare for release 4.0.0 2012-08-24 * src/message.c: Consider copying the master auth context to the child, even if the child is already in ENCRYPTED, because we might be trying to refresh a private conversation. 2012-08-22 * configure.ac: Use gcc and ld hardening flags, where possible. * configure.ac: * src/auth.c: * src/dh.c: * src/mem.c: * src/privkey.c: * src/proto.c: * src/sm.c: * toolkit/sesskey.c: Build cleanly with -Wall -Wextra -Wformat-security -Wno-unused-parameter 2012-08-17 * src/message.c: Don't call memchr(foo,'\0',-1) even if it has no ill effects. Thanks to George Kadianakis <desnacked@riseup.net> for the report. 2012-07-20 * src/message.c, src/instag.c, toolkit/parse.c, src/sm.c, src/proto.c, src/privkey.c, src/auth.c, src/context.[ch]: Fix some memory leaks, some NULL pointer handling, and compilation warnings. Thanks to Paul Wouters <pwouters@redhat.com> for the report. * src/message.c: Better handling of OTRv3 fragments. 2012-07-19 * src/b64.[ch], src/proto.c, toolkit/parse.c: Clean up the previous b64 patch and apply it to all places where otrl_base64_decode() is called. 2012-07-17 * src/b64.c: Use ceil instead of floor to compute the size of the data buffer. This prevents a one-byte heap buffer overflow. Thanks to Justin Ferguson <jnferguson@gmail.com> for the report. 2012-06-21 * src/context.c: A couple bug fixes. * Release 4.0.0-beta2 2012-06-07 * Release 4.0.0-beta1 2012-05-08: * src/instag.c: * src/message.c: Returning proper gcry types to avoid compile warnings. 2012-05-03: * src/instag.c: Fixed otrl_instag_new(). 2012-04-30: * AUTHORS: * README: * toolkit/otr_parse.c: * toolkit/otr_remac.c: * toolkit/parse.c: * toolkit/parse.h: * src/auth.c: * src/auth.h: * src/context.c: * src/context.h: * src/message.c: * src/message.h: * src/privkey.c: * src/privkey.h: * src/proto.c: * src/proto.h: * src/serial.h: * src/tests.c: * src/userstate.c: * src/userstate.h: More changes for instance tags (Rob Smits). 2009-06-11: * src/auth.c: * src/auth.h: * src/context.c: * src/context.h: * src/context_priv.h: * src/message.c: * src/message.h: * src/privkey.c: * src/privkey.h: * src/proto.c: * src/proto.h: * src/serial.h: * src/tests.c: * src/userstate.c: * src/userstate.h: Core instance tag functionality (Lisa Du). 2009-09-30: * Protocol-v2.html: Edits from Göran Weinholt <goran@weinholt.se> 2009-04-28: * src/auth.c: pubkey_type should be shifted by 8, not 16. It doesn't matter right now, because it's always 0, but still. (Thanks to Can Tang.) 2008-08-15: * src/Makefile.am: * src/context.c: * src/context.h: * src/context_priv.c: * src/context_priv.h: * src/message.c: * src/message.h: * src/proto.c: * src/proto.h: Willy Lew's updates of the libotr API 2008-08-06: * src/proto.c: gcc 4.2 with -O2 assumes that integer overflow never occurs when optimizing away tests, including those for integer overflow. The code was made more specific. 2008-07-09: * src/privkey.h: * src/privkey.c: Add otrl_privkey_generate_cancel to handle the case that the background key generation thread is cancelled or fails. 2008-07-06: * configure.ac: Update libtool version to match 4.0.0. * src/privkey-t.h: * src/privkey.c: * src/privkey.h: * src/userstate.c: * src/userstate.h: Support for generating privkeys in a background thread. 2008-07-02: * version.h: Change version number to 4.0.0 (but still far from release). * tlv.h: * proto.h: * proto.c: * message.h: * message.c: * dh.h: * dh.c: Support for applications requesting an extra session key that can be used for things like file transfers. * message.h: * message.c: Applications now use the handle_smp_event callback to handle SMP events, rather than having to hardcode part of the SMP state machine themselves. 2008-06-15: * README: Release version 3.2.0. 2008-06-13: * UPGRADING: Clarify what was new in 3.1.0, what was changed in 3.2.0. 2008-05-27: * UPGRADING: Update documentation. * README: * toolkit/*.[ch]: * src/*.[ch]: Update copyright dates to 2004-2008. * src/tlv.h: Add new OTRL_TLV_SMP1Q TLV type to indicate an instance of the first SMP message, with an explicit question. * src/sm.h: * src/sm.c: More carefully track the progress of the SMP using a new smp_prog_state field. Also keep track of whether Bob received an explicit question from Alice using a new received_question field. * src/message.c: Handle explicit questions for the SMP. * src/message.c: Behave better if an SMP message fails verification. * README: * configure.ac: * src/version.h: Update version number to 3.2.0. 2007-07-26 * src/sm.c: * src/message.c: ISO C cleanups (no mixing declarations with code) * src/sm.c: Fixed a 64-bit pointer error 2007-07-25 * src/message.c: Behave sanely if we receive a totally malformed SMP message. 2007-07-24 * src/proto.h: * src/proto.c: * src/message.c: Implemented fragmentation of large messages * src/message.h: New callback for fragmentation * src/privkey.h: * src/privkey.c (otrl_privkey_fingerprint_raw): New function to return a raw hash of an account's public key * src/proto.c: Keep track of the API version number passed to otrl_init() * src/context.h: * src/context.c: * src/tlv.h: * src/sm.h: * src/sm.c: Implemented the Socialist Millionaires' Protocol for authenticating buddies without using user-visible fingerprints * src/b64.h: * src/b64.c (decode, otrl_base64_decode): Corrected char vs. unsigned char * README: * configure.ac: * src/version.h: Change version number to 3.1.0 * Most files: Update copyright information 2007-07-23 * src/message.h: * src/message.c: Added account_name and account_name_free callbacks to OtrlMessageAppOps to let the application choose how to display the account name in OTR Error Messages. Based on a patch from Evan Schoenberg <evan.s@dreskin.net>. 2006-07-24 * src/privkey.h: * src/privkey.c: Add routines to read and write privkey and fingerprint data to FILE*s, instead of to filenames. 2006-05-09 * Protocol-v2.html: Fix a typo, and correct the documentation regarding when MAC keys are revealed. 2006-04-13 * src/context.h: Change "struct fingerprint" to "struct s_fingerprint" to appease some C++ compilers. 2006-02-09 * src/auth.c (otrl_auth_handle_v1_key_exchange): Fix uninitialized variable received_pub. 2005-12-30 * src/message.c: Fix a typo, thanks to Anton Blanchard <anton@samba.org>. 2005-11-20 * src/proto.h: Fix typo in policy #defines. 2005-11-02 * README: * src/version.h: Release version 3.0.0 2005-10-30 * Protocol-v2.html: Clarified the uniqueness conditions for the counter. * src/auth.c (otrl_auth_handle_v1_key_exchange): Clear the auth structure when we receive an unexpected v1 Key Exchange Message. 2005-10-27 * src/auth.h: * src/auth.c: * src/message.c: Ensure version 2 AKEs are always done with fresh D-H parameters. * src/proto.h: * src/proto.c: * src/message.c: Add a "flags" field to the version 2 Data Message, which can indicate that the Data Message should be ignored if unreadable (as opposed to displaying an error). * toolkit/parse.h: * toolkit/parse.c: * toolkit/otr_parse.c: * toolkit/otr_remac.c: Deal with the new kind of Data Message. * src/message.c: Use the gone_secure callback instead of the still_secure callback if the other side changes its fingerprint. 2005-10-19 * src/context.h: * src/context.c: Added protocol_version as an explicit field in the ConnContext. * src/message.h: * src/message.c: protocol_version no longer needs to be explicitly passed to the gone_secure() and still_secure() callbacks. * packaging/fedora/libotr.spec: Patches from Paul * src/proto.c (rotate_dh_keys): Avoid potential double gcry_cipher_close(). * src/tests.c: Regression test for double gcry_cipher_close(). 2005-10-16 * Major overhaul with implementation of version 2 AKE. 2005-08-08 * toolkit/otr_parse.c (parse): Ignore MACs that are too short, rather than going into an infinite loop. 2005-08-04 * Protocol: Added section describing fragments. * src/proto.h: * src/proto.c (otrl_proto_fragment_accumulate): * src/context.h: * src/context.c (new_context, otrl_context_force_setup): Keep track of fragments in the ConnContext structure. * src/message.c (otrl_message_receiving): Handle fragments in received messages. * src/mem.c: Don't do arithmetic on void pointers. 2005-07-29 * src/message.h: * src/message.c: Move ops to be the first param of new_fingerprint, as it is with all the other callbacks. * src/context.h: * src/context.c (otrl_context_set_preshared_secret): * src/dh.h: * src/dh.c (otrl_dh_session, otrl_dh_cmpctr): * src/message.h: * src/message.c (otrl_message_sending, send_or_error, process_kem) (otrl_message_receiving, otrl_message_disconnect): * src/privkey.h: * src/privkey.c (otrl_privkey_hash_to_human): * src/proto.h: * src/proto.c (otrl_proto_create_data): * src/tlv.h: * src/tlv.c (otrl_tlv_new, otrl_tlv_parse, otrl_tlv_seriallen) (otrl_tlv_serialize): Add missing "const"s. (Closes #1243963) 2005-06-24 * README: * configure.ac: * packaging/fedora/libotr.spec: * src/version.h: Change version to 3.0.0 (but don't yet release) * Protocol: Clarify that, if the user requests to see the secure session id in the middle of the conversation, the value displayed should be the one calculated at the time the private connection was established (the last Key Exchange Message that caused a rekeying), _not_ the DH secure id calculated from DH keys in more recent Data Messages. * libotr.m4: Have the version check require an exact match on the major version, since, for example, source that expects libotr 2.0.0 won't work with libotr 3.0.0. * libotr.m4: Add #include <stdlib.h> to the version test so that it compiles cleanly with -Wall -Werror. * src/proto.c: * src/dh.h: * src/dh.c: * src/context.h: * src/context.c: Save the secure session id so that it can be displayed to the user upon request, instead of only when the private session is initially set up. * src/privkey.c: * src/context.h: * src/context.c: Allow the app to set a "trust level" for fingerprints. This is an arbitrary string, intended to indicate whether (or possibly by what means) the user has verified that this fingerprint is accurate. * src/context.h: * src/context.c: Allow the app to set an arbitrary binary "preshared secret" for the ConnContext. This is currently unused, but in the future it would allow for users to exchange a secret _before_ they generate their fingerprints. [But the protocol would have to be extended to support this.] * src/message.h: * src/message.c: Remove the "confirm_fingerprint" callback which requires the user to acknowledge the new fingerprint before it can be used. Replace it with a "new_fingerprint" callback which merely informs the user that a new fingerprint has been received. 2005-05-13 * libotr.m4: Fixed a bug which made configure fail to find the libotr header files if they weren't in the standard place. 2005-05-09 * src/privkey.c (otrl_privkey_read_fingerprints): Allow fields, particularly accountnames, to contain spaces. Closes #1198379. 2005-05-03 * README: * configure.ac: * packaging/fedora/libotr.spec: * src/version.h: Change version to 2.0.2 * packaging/debian: Remove this directory, as Thibaut VARENE <varenet@debian.org> is now responsible for the debian packages. 2005-02-23 * src/privkey.c (otrl_privkey_hash_to_human): Avoid writing a NUL one byte past the end of the buffer 2005-02-16 * README: * configure.ac: * packaging/debian/changelog: * packaging/fedora/libotr.spec: * src/version.h: Change version to 2.0.1 2005-02-15 * src/message.c (otrl_message_sending, otrl_message_receiving) (otrl_message_disconnect): * src/proto.c (otrl_proto_accept_key_exchange) (otrl_proto_create_data, otrl_proto_accept_data): Don't send encrypted messages to a buddy who has disconnected his private connection with us. * src/message.c (otrl_message_sending): Don't show the user the "the last message was resent" notice if the message has never actually been sent before. 2005-02-09 * src/proto.c (otrl_proto_create_data): Copy the msg before using since, since it may be an alias for context->lastmessage, which we're going to gcry_free(). 2005-02-08 * README: * configure.ac: * packaging/debian/changelog: * packaging/fedora/libotr.spec: * src/version.h: Change version to 2.0.0 2005-02-07 * src/context.h: * src/context.c (new_context, otrl_context_force_setup): * src/message.c (otrl_message_sending, otrl_message_receiving): * src/proto.c (otrl_proto_accept_key_exchange): Keep track of whether the last message is eligible for retransmission. 2005-02-02 * README: * configure.ac: * packaging/debian/changelog: * packaging/fedora/libotr.spec: * src/version.h: Change version to 1.99.0 * packaging/debian/libotr1.dirs: * packaging/debian/libotr1.install: * packaging/debian/rules: Build and install with the correct mandir * packaging/debian/rules: Install a shlibs file * packaging/debian/control: Add Replaces: to the packages so that dpkg -i will install them. * toolkit/Makefile.am: Create the mandir if it's not yet there * packaging/debian/libotr1-dev.dirs: * packaging/debian/libotr1-dev.install: * packaging/fedora/libotr.spec: Package the libotr.m4 file * Protocol: Added sections on policies and TLVs 2005-02-01 * Makefile.am: * src/Makefile.am: * toolkit/Makefile.am: Use automake-1.8 2005-01-31 * tlv.h: * tlv.c: * src/Makefile.am: add new files tlv.c and tlv.h * src/message.c (otrl_message_sending): Allow you to specify a TLV chain to attach to a message. * src/message.c (otrl_message_receiving): Also return any TLV chain attached to the message, if present. * src/README: Document new TLV parameters to message functions. * src/message.c (otrl_message_receiving): No longer handle messages starting with "?OTR:" specially; that functionality now goes into TLVs. * src/message.c (otrl_message_disconnect): Send the notice of disconnect as a OTRL_TLV_DISCONNECTED TLV. 2005-01-30 * README: update documentation for 2.0.0 API * src/message.c (otrl_message_receiving): Only send heartbeats in response to "real" messages. * src/message.c (otrl_message_receiving): If we receive a DATA message whose *plaintext* starts with "?OTR:", display it with display_otr_message if possible. * src/message.c (otrl_message_receiving): Display OTR_ERROR messages without the leading '?' using display_otr_message. * src/message.h (otrl_message_disconnect): * src/message.c (otrl_message_disconnect): new function * src/message.c (otrl_message_receiving): Display the "received unencrypted" warning message if we receive an unencrypted message with policy ALWAYS, even when not CONNECTED. 2005-01-29 * src/proto.c (otrl_proto_accept_key_exchange): * src/message.c (otrl_message_sending, process_kem): Make the retransmission of an unencrypted message in ALWAYS work. 2005-01-28 * src/message.h: New callback for checking whether a given user is online. * src/message.c (otrl_message_sending): Notify the user if he attempts to send an unencrypted message with policy ALWAYS. * src/message.h: New callback for fetching OTR policy * src/message.c (otrl_message_sending): Create a ConnContext if we don't have one already. Use it to fetch the OTR policy. Just return if the policy is NEVER. Only append the whitespace tag if the policy is OPPORTUNISTIC or ALWAYS. Don't send unencrypted messages in ALWAYS, but store them for retransmission later. * src/message.c (otrl_message_receiving): Fetch the OTR policy. Just return if the policy is NEVER. Only send a Key Exchange Message in response to an unexpected Data or Error Message in OPPORTUNISTIC and ALWAYS. Only recognize the whitespace tag in OPPORTUNISTIC and ALWAYS. * src/message.h: * src/message.c: add accountname/protocol/username parameters to notify callback * src/message.h: * src/message.c: add display_otr_message callback for displaying OTR control messages 2005-01-27 * src/privkey.h: #include <gcrypt.h> since we use things from libgcrypt in the .h file * src/proto.h: * src/proto.c: Make otrl_init take unsigned ints as arguments. * src/context.h: * src/context.c: * src/message.c: * src/proto.c: Keep track of the last message sent, and potentially resend it if sending it the first time triggered a rekey (because the other side had lost its OTR state, for example). 2005-01-26 * packaging/debian/control: Changed debian package names to libotr1 and libotr1-dev. * libotr.m4: Added copyright notice, more comments * src/userstate.c: * src/userstate.h: New files * src/Makefile.am: Added -Wall to default CFLAGS * toolkit/Makefile.am: Added -Wall to default CFLAGS * src/context.c (otrl_context_find, otrl_context_forget_all): * src/context.h (otrl_context_find, otrl_context_forget_all): * src/message.c (otrl_message_sending, process_kem) (process_confresp, otrl_message_receiving): * src/message.h (otrl_message_sending, otrl_message_receiving) (OtrlMessageAppOps.confirm_fingerprint): * src/privkey.c (otrl_privkey_fingerprint, otrl_privkey_read) (otrl_privkey_generate, otrl_privkey_read_fingerprints) (otrl_privkey_write_fingerprints, otrl_privkey_find) (otrl_privkey_forget_all): * src/privkey.h (otrl_privkey_fingerprint, otrl_privkey_read) (otrl_privkey_generate, otrl_privkey_read_fingerprints) (otrl_privkey_write_fingerprints, otrl_privkey_find) (otrl_privkey_forget_all): * src/proto.c (otrl_proto_create_key_exchange) (otrl_proto_accept_key_exchange): * src/proto.h (otrl_proto_create_key_exchange) (otrl_proto_accept_key_exchange): Added OtrlUserState parameter to many calls, eliminating global state. * src/privkey.c (otrl_privkey_fingerprint): the buffer is now passed in, and not static 2005-01-25 * src/version.h: bumped version number to 2.0.0 because API changed incompatibly * configure.ac: bumped version number to 2.0.0 because API changed incompatibly * src/message.h: added accountname parameter to confirm_fingerprint callback * src/message.c: passed accountname to confirm_fingerprint callback * libotr.m4: new file * Makefile.am: install (and uninstall) new libotr.m4 file * tools/Makefile.am: clean up manpage symlinks and add an uninstall rule 2005-01-23 * src/proto.h: moved numeric version defines into version.h * src/version.h: moved numeric version defines into version.h * src/message.c (otrl_message_receiving): Update the context list if we create a new context 2005-01-22 Released 1.0.4. Initial autoconfiscation, thanks to Greg Troxel <gdt@ir.bbn.com>. * src/message.c: log, but otherwise ignore, unrecognized OTR messages ���������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/INSTALL��������������������������������������������������������������������������������0000664�0001750�0001750�00000002571�12637277541�011007� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������REQUIREMENTS To compile the OTR library and toolkit, you'll need at least: - libgpg-error 1.0 [ftp://ftp.gnupg.org/gcrypt/libgpg-error/] - libgcrypt 1.2.0 [ftp://ftp.gnupg.org/gcrypt/libgcrypt/] If you install these with a package manager, you'll probably need the -dev or -devel versions of the packages. On Fedora, these packages are: libgpg-error-devel libgcrypt-devel On Debian (testing or unstable), they are: libgpg-error-dev libgcrypt11-dev COMPILING If you're got a CVS copy, you will need to regenerate the configure script using: ./bootstrap Once you have the configure script (which comes with the source deistribution), run it with the "--with-pic" option, as well as any other options that may be necessary for your system. Some examples: Linux: ./configure --with-pic --prefix=/usr --mandir=/usr/share/man NETBSD: CPPFLAGS="-I/usr/pkg/include" LDFLAGS="-R/usr/pkg/lib -L/usr/pkg/lib" \ ./configure --with-pic --prefix=/usr/pkg mingw cross-compiler from Debian Linux: ./configure --with-pic --host=i586-mingw32msvc \ --prefix=/usr/i586-mingw32msvc Once the configure script writes a Makefile, you should be able to just run "make". INSTALLATION You should be able to simply do "make install". If you want to install somewhere other than / (this is useful for package creators), use something like "make DESTDIR=/path/to/install/to install". ���������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/configure.ac���������������������������������������������������������������������������0000664�0001750�0001750�00000013643�12667303336�012241� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������dnl Process this file with autoconf to produce configure. dnl Notes on version numbering: dnl For an implementation-only change: dnl Change the libotr package version from a.b.c to a.b.(c+1) dnl Change the libotr libtool version from x:y:z to x:(y+1):z dnl For a backwards-compatible API change (e.g. adding functions): dnl Change the libotr package version from a.b.c to a.(b+1).0 dnl Change the libotr libtool version from x:y:z to (x+1):0:(z+1) dnl [Note that this does *not* change the major number of the .so.] dnl For a backwards-incompatible API change (e.g. changing data structures): dnl Change the libotr package version from a.b.c to (a+1).0.0 dnl Change the libotr libtool version from x:y:z to (x+1):0:0 AC_INIT([libotr],[4.1.1],[otr@cypherpunks.ca],[],[https://otr.cypherpunks.ca]) AM_CONFIG_HEADER(config.h) AC_CONFIG_AUX_DIR([config]) AM_INIT_AUTOMAKE LIBOTR_LIBTOOL_VERSION="6:1:1" AC_CONFIG_MACRO_DIR([config]) # Silent compilation so warnings can be spotted. m4_ifdef([AM_SILENT_RULES], [AM_SILENT_RULES([yes])]) AC_SUBST(LIBOTR_LIBTOOL_VERSION) AC_PROG_CC LT_INIT AM_PATH_LIBGCRYPT(1:1.2.0,,AC_MSG_ERROR(libgcrypt 1.2.0 or newer is required.)) AC_CANONICAL_HOST # Identify which OS we are building and do specific things based on the host case $host_os in *linux*) HOST_OS=linux ;; esac # Build tests for now only for Linux. AM_CONDITIONAL([BUILD_TESTS], [test x$HOST_OS = xlinux]) dnl 1:flags dnl Taken from Tor's autoconf magic repository AC_DEFUN([OTR_CHECK_CFLAGS], [ AS_VAR_PUSHDEF([VAR],[otr_cv_cflags_$1]) AC_CACHE_CHECK([whether the compiler accepts $1], VAR, [ otr_saved_CFLAGS="$CFLAGS" CFLAGS="$CFLAGS -pedantic -Werror $1" AC_TRY_COMPILE([], [return 0;], [AS_VAR_SET(VAR,yes)], [AS_VAR_SET(VAR,no)]) CFLAGS="$otr_saved_CFLAGS" ]) if test x$VAR = xyes; then CFLAGS="$CFLAGS $1" fi AS_VAR_POPDEF([VAR]) ]) dnl 1:flags dnl 2:extra ldflags dnl 3:extra libraries AC_DEFUN([OTR_CHECK_LDFLAGS], [ AS_VAR_PUSHDEF([VAR],[otr_cv_ldflags_$1]) AC_CACHE_CHECK([whether the linker accepts $1], VAR, [ otr_saved_CFLAGS="$CFLAGS" otr_saved_LDFLAGS="$LDFLAGS" otr_saved_LIBS="$LIBS" CFLAGS="$CFLAGS -pedantic -Werror" LDFLAGS="$LDFLAGS $2 $1" LIBS="$LIBS $3" AC_RUN_IFELSE([AC_LANG_PROGRAM([#include <stdio.h>], [fputs("", stdout)])], [AS_VAR_SET(VAR,yes)], [AS_VAR_SET(VAR,no)], [AC_TRY_LINK([], [return 0;], [AS_VAR_SET(VAR,yes)], [AS_VAR_SET(VAR,no)])]) CFLAGS="$otr_saved_CFLAGS" LDFLAGS="$otr_saved_LDFLAGS" LIBS="$otr_saved_LIBS" ]) if test x$VAR = xyes; then LDFLAGS="$LDFLAGS $1" fi AS_VAR_POPDEF([VAR]) ]) dnl If _WIN32 is defined and non-zero, we are building for win32 AC_MSG_CHECKING([for win32]) AC_RUN_IFELSE([AC_LANG_SOURCE([ int main(int c, char **v) { #ifdef _WIN32 #if _WIN32 return 0; #else return 1; #endif #else return 2; #endif }])], bwin32=true; AC_MSG_RESULT([yes]), bwin32=false; AC_MSG_RESULT([no]), bwin32=cross; AC_MSG_RESULT([cross]) ) if test "$bwin32" = cross; then AC_MSG_CHECKING([for win32 (cross)]) AC_COMPILE_IFELSE([AC_LANG_SOURCE([ #ifdef _WIN32 int main(int c, char **v) {return 0;} #else #error int main(int c, char **v) {return x(y);} #endif ])], bwin32=true; AC_MSG_RESULT([yes]), bwin32=false; AC_MSG_RESULT([no])) fi AM_CONDITIONAL(BUILD_NT_SERVICES, test x$bwin32 = xtrue) dnl Adam Shostack suggests the following for Windows: dnl -D_FORTIFY_SOURCE=2 -fstack-protector-all dnl Others suggest '/gs /safeseh /nxcompat /dynamicbase' for non-gcc on Windows dnl This requires that we use gcc and that we add -O2 to the CFLAGS. AC_ARG_ENABLE(gcc-hardening, AS_HELP_STRING(--disable-gcc-hardening, disable compiler security checks)) dnl Linker hardening options dnl Currently these options are ELF specific - you can't use this with MacOSX AC_ARG_ENABLE(linker-hardening, AS_HELP_STRING(--disable-linker-hardening, disable linker security fixups)) dnl --------------------------------------------------------------------- dnl Now that we know about our major libraries, we can check for compiler dnl and linker hardening options. 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" >&6; } if ${ac_cv_prog_DUMPBIN+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$DUMPBIN"; then ac_cv_prog_DUMPBIN="$DUMPBIN" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_DUMPBIN="$ac_tool_prefix$ac_prog" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi DUMPBIN=$ac_cv_prog_DUMPBIN if test -n "$DUMPBIN"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $DUMPBIN" >&5 $as_echo "$DUMPBIN" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi test -n "$DUMPBIN" && break done fi if test -z "$DUMPBIN"; then ac_ct_DUMPBIN=$DUMPBIN for ac_prog in dumpbin "link -dump" do # Extract the first word of "$ac_prog", so it can be a program name with args. set dummy $ac_prog; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_ac_ct_DUMPBIN+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$ac_ct_DUMPBIN"; then ac_cv_prog_ac_ct_DUMPBIN="$ac_ct_DUMPBIN" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_DUMPBIN="$ac_prog" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi ac_ct_DUMPBIN=$ac_cv_prog_ac_ct_DUMPBIN if test -n "$ac_ct_DUMPBIN"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_ct_DUMPBIN" >&5 $as_echo "$ac_ct_DUMPBIN" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi test -n "$ac_ct_DUMPBIN" && break done if test "x$ac_ct_DUMPBIN" = x; then DUMPBIN=":" else case $cross_compiling:$ac_tool_warned in yes:) { $as_echo "$as_me:${as_lineno-$LINENO}: WARNING: using cross tools not prefixed with host triplet" >&5 $as_echo "$as_me: WARNING: using cross tools not prefixed with host triplet" >&2;} ac_tool_warned=yes ;; esac DUMPBIN=$ac_ct_DUMPBIN fi fi case `$DUMPBIN -symbols /dev/null 2>&1 | sed '1q'` in *COFF*) DUMPBIN="$DUMPBIN -symbols" ;; *) DUMPBIN=: ;; esac fi if test "$DUMPBIN" != ":"; then NM="$DUMPBIN" fi fi test -z "$NM" && NM=nm { $as_echo "$as_me:${as_lineno-$LINENO}: checking the name lister ($NM) interface" >&5 $as_echo_n "checking the name lister ($NM) interface... " >&6; } if ${lt_cv_nm_interface+:} false; then : $as_echo_n "(cached) " >&6 else lt_cv_nm_interface="BSD nm" echo "int some_variable = 0;" > conftest.$ac_ext (eval echo "\"\$as_me:$LINENO: $ac_compile\"" >&5) (eval "$ac_compile" 2>conftest.err) cat conftest.err >&5 (eval echo "\"\$as_me:$LINENO: $NM \\\"conftest.$ac_objext\\\"\"" >&5) (eval "$NM \"conftest.$ac_objext\"" 2>conftest.err > conftest.out) cat conftest.err >&5 (eval echo "\"\$as_me:$LINENO: output\"" >&5) cat conftest.out >&5 if $GREP 'External.*some_variable' conftest.out > /dev/null; then lt_cv_nm_interface="MS dumpbin" fi rm -f conftest* fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $lt_cv_nm_interface" >&5 $as_echo "$lt_cv_nm_interface" >&6; } { $as_echo "$as_me:${as_lineno-$LINENO}: checking whether ln -s works" >&5 $as_echo_n "checking whether ln -s works... " >&6; } LN_S=$as_ln_s if test "$LN_S" = "ln -s"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: yes" >&5 $as_echo "yes" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no, using $LN_S" >&5 $as_echo "no, using $LN_S" >&6; } fi # find the maximum length of command line arguments { $as_echo "$as_me:${as_lineno-$LINENO}: checking the maximum length of command line arguments" >&5 $as_echo_n "checking the maximum length of command line arguments... " >&6; } if ${lt_cv_sys_max_cmd_len+:} false; then : $as_echo_n "(cached) " >&6 else i=0 teststring="ABCD" case $build_os in msdosdjgpp*) # On DJGPP, this test can blow up pretty badly due to problems in libc # (any single argument exceeding 2000 bytes causes a buffer overrun # during glob expansion). Even if it were fixed, the result of this # check would be larger than it should be. lt_cv_sys_max_cmd_len=12288; # 12K is about right ;; gnu*) # Under GNU Hurd, this test is not required because there is # no limit to the length of command line arguments. # Libtool will interpret -1 as no limit whatsoever lt_cv_sys_max_cmd_len=-1; ;; cygwin* | mingw* | cegcc*) # On Win9x/ME, this test blows up -- it succeeds, but takes # about 5 minutes as the teststring grows exponentially. # Worse, since 9x/ME are not pre-emptively multitasking, # you end up with a "frozen" computer, even though with patience # the test eventually succeeds (with a max line length of 256k). # Instead, let's just punt: use the minimum linelength reported by # all of the supported platforms: 8192 (on NT/2K/XP). lt_cv_sys_max_cmd_len=8192; ;; mint*) # On MiNT this can take a long time and run out of memory. lt_cv_sys_max_cmd_len=8192; ;; amigaos*) # On AmigaOS with pdksh, this test takes hours, literally. # So we just punt and use a minimum line length of 8192. lt_cv_sys_max_cmd_len=8192; ;; netbsd* | freebsd* | openbsd* | darwin* | dragonfly*) # This has been around since 386BSD, at least. Likely further. if test -x /sbin/sysctl; then lt_cv_sys_max_cmd_len=`/sbin/sysctl -n kern.argmax` elif test -x /usr/sbin/sysctl; then lt_cv_sys_max_cmd_len=`/usr/sbin/sysctl -n kern.argmax` else lt_cv_sys_max_cmd_len=65536 # usable default for all BSDs fi # And add a safety zone lt_cv_sys_max_cmd_len=`expr $lt_cv_sys_max_cmd_len \/ 4` lt_cv_sys_max_cmd_len=`expr $lt_cv_sys_max_cmd_len \* 3` ;; interix*) # We know the value 262144 and hardcode it with a safety zone (like BSD) lt_cv_sys_max_cmd_len=196608 ;; os2*) # The test takes a long time on OS/2. lt_cv_sys_max_cmd_len=8192 ;; osf*) # Dr. Hans Ekkehard Plesser reports seeing a kernel panic running configure # due to this test when exec_disable_arg_limit is 1 on Tru64. It is not # nice to cause kernel panics so lets avoid the loop below. # First set a reasonable default. lt_cv_sys_max_cmd_len=16384 # if test -x /sbin/sysconfig; then case `/sbin/sysconfig -q proc exec_disable_arg_limit` in *1*) lt_cv_sys_max_cmd_len=-1 ;; esac fi ;; sco3.2v5*) lt_cv_sys_max_cmd_len=102400 ;; sysv5* | sco5v6* | sysv4.2uw2*) kargmax=`grep ARG_MAX /etc/conf/cf.d/stune 2>/dev/null` if test -n "$kargmax"; then lt_cv_sys_max_cmd_len=`echo $kargmax | sed 's/.*[ ]//'` else lt_cv_sys_max_cmd_len=32768 fi ;; *) lt_cv_sys_max_cmd_len=`(getconf ARG_MAX) 2> /dev/null` if test -n "$lt_cv_sys_max_cmd_len"; then lt_cv_sys_max_cmd_len=`expr $lt_cv_sys_max_cmd_len \/ 4` lt_cv_sys_max_cmd_len=`expr $lt_cv_sys_max_cmd_len \* 3` else # Make teststring a little bigger before we do anything with it. # a 1K string should be a reasonable start. for i in 1 2 3 4 5 6 7 8 ; do teststring=$teststring$teststring done SHELL=${SHELL-${CONFIG_SHELL-/bin/sh}} # If test is not a shell built-in, we'll probably end up computing a # maximum length that is only half of the actual maximum length, but # we can't tell. while { test "X"`env echo "$teststring$teststring" 2>/dev/null` \ = "X$teststring$teststring"; } >/dev/null 2>&1 && test $i != 17 # 1/2 MB should be enough do i=`expr $i + 1` teststring=$teststring$teststring done # Only check the string length outside the loop. lt_cv_sys_max_cmd_len=`expr "X$teststring" : ".*" 2>&1` teststring= # Add a significant safety factor because C++ compilers can tack on # massive amounts of additional arguments before passing them to the # linker. It appears as though 1/2 is a usable value. lt_cv_sys_max_cmd_len=`expr $lt_cv_sys_max_cmd_len \/ 2` fi ;; esac fi if test -n $lt_cv_sys_max_cmd_len ; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $lt_cv_sys_max_cmd_len" >&5 $as_echo "$lt_cv_sys_max_cmd_len" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: none" >&5 $as_echo "none" >&6; } fi max_cmd_len=$lt_cv_sys_max_cmd_len : ${CP="cp -f"} : ${MV="mv -f"} : ${RM="rm -f"} { $as_echo "$as_me:${as_lineno-$LINENO}: checking whether the shell understands some XSI constructs" >&5 $as_echo_n "checking whether the shell understands some XSI constructs... 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" >&6; } if ${lt_cv_to_host_file_cmd+:} false; then : $as_echo_n "(cached) " >&6 else case $host in *-*-mingw* ) case $build in *-*-mingw* ) # actually msys lt_cv_to_host_file_cmd=func_convert_file_msys_to_w32 ;; *-*-cygwin* ) lt_cv_to_host_file_cmd=func_convert_file_cygwin_to_w32 ;; * ) # otherwise, assume *nix lt_cv_to_host_file_cmd=func_convert_file_nix_to_w32 ;; esac ;; *-*-cygwin* ) case $build in *-*-mingw* ) # actually msys lt_cv_to_host_file_cmd=func_convert_file_msys_to_cygwin ;; *-*-cygwin* ) lt_cv_to_host_file_cmd=func_convert_file_noop ;; * ) # otherwise, assume *nix lt_cv_to_host_file_cmd=func_convert_file_nix_to_cygwin ;; esac ;; * ) # unhandled hosts (and "normal" native builds) lt_cv_to_host_file_cmd=func_convert_file_noop ;; esac fi to_host_file_cmd=$lt_cv_to_host_file_cmd { $as_echo "$as_me:${as_lineno-$LINENO}: result: $lt_cv_to_host_file_cmd" >&5 $as_echo "$lt_cv_to_host_file_cmd" >&6; } { $as_echo "$as_me:${as_lineno-$LINENO}: checking how to convert $build file names to toolchain format" >&5 $as_echo_n "checking how to convert $build file names to toolchain format... " >&6; } if ${lt_cv_to_tool_file_cmd+:} false; then : $as_echo_n "(cached) " >&6 else #assume ordinary cross tools, or native build. lt_cv_to_tool_file_cmd=func_convert_file_noop case $host in *-*-mingw* ) case $build in *-*-mingw* ) # actually msys lt_cv_to_tool_file_cmd=func_convert_file_msys_to_w32 ;; esac ;; esac fi to_tool_file_cmd=$lt_cv_to_tool_file_cmd { $as_echo "$as_me:${as_lineno-$LINENO}: result: $lt_cv_to_tool_file_cmd" >&5 $as_echo "$lt_cv_to_tool_file_cmd" >&6; } { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $LD option to reload object files" >&5 $as_echo_n "checking for $LD option to reload object files... " >&6; } if ${lt_cv_ld_reload_flag+:} false; then : $as_echo_n "(cached) " >&6 else lt_cv_ld_reload_flag='-r' fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $lt_cv_ld_reload_flag" >&5 $as_echo "$lt_cv_ld_reload_flag" >&6; } reload_flag=$lt_cv_ld_reload_flag case $reload_flag in "" | " "*) ;; *) reload_flag=" $reload_flag" ;; esac reload_cmds='$LD$reload_flag -o $output$reload_objs' case $host_os in cygwin* | mingw* | pw32* | cegcc*) if test "$GCC" != yes; then reload_cmds=false fi ;; darwin*) if test "$GCC" = yes; then reload_cmds='$LTCC $LTCFLAGS -nostdlib ${wl}-r -o $output$reload_objs' else reload_cmds='$LD$reload_flag -o $output$reload_objs' fi ;; esac if test -n "$ac_tool_prefix"; then # Extract the first word of "${ac_tool_prefix}objdump", so it can be a program name with args. set dummy ${ac_tool_prefix}objdump; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_OBJDUMP+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$OBJDUMP"; then ac_cv_prog_OBJDUMP="$OBJDUMP" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_OBJDUMP="${ac_tool_prefix}objdump" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi OBJDUMP=$ac_cv_prog_OBJDUMP if test -n "$OBJDUMP"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $OBJDUMP" >&5 $as_echo "$OBJDUMP" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi fi if test -z "$ac_cv_prog_OBJDUMP"; then ac_ct_OBJDUMP=$OBJDUMP # Extract the first word of "objdump", so it can be a program name with args. set dummy objdump; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_ac_ct_OBJDUMP+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$ac_ct_OBJDUMP"; then ac_cv_prog_ac_ct_OBJDUMP="$ac_ct_OBJDUMP" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_OBJDUMP="objdump" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi ac_ct_OBJDUMP=$ac_cv_prog_ac_ct_OBJDUMP if test -n "$ac_ct_OBJDUMP"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_ct_OBJDUMP" >&5 $as_echo "$ac_ct_OBJDUMP" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi if test "x$ac_ct_OBJDUMP" = x; then OBJDUMP="false" else case $cross_compiling:$ac_tool_warned in yes:) { $as_echo "$as_me:${as_lineno-$LINENO}: WARNING: using cross tools not prefixed with host triplet" >&5 $as_echo "$as_me: WARNING: using cross tools not prefixed with host triplet" >&2;} ac_tool_warned=yes ;; esac OBJDUMP=$ac_ct_OBJDUMP fi else OBJDUMP="$ac_cv_prog_OBJDUMP" fi test -z "$OBJDUMP" && OBJDUMP=objdump { $as_echo "$as_me:${as_lineno-$LINENO}: checking how to recognize dependent libraries" >&5 $as_echo_n "checking how to recognize dependent libraries... " >&6; } if ${lt_cv_deplibs_check_method+:} false; then : $as_echo_n "(cached) " >&6 else lt_cv_file_magic_cmd='$MAGIC_CMD' lt_cv_file_magic_test_file= lt_cv_deplibs_check_method='unknown' # Need to set the preceding variable on all platforms that support # interlibrary dependencies. # 'none' -- dependencies not supported. # `unknown' -- same as none, but documents that we really don't know. # 'pass_all' -- all dependencies passed with no checks. # 'test_compile' -- check by making test program. # 'file_magic [[regex]]' -- check by looking for files in library path # which responds to the $file_magic_cmd with a given extended regex. # If you have `file' or equivalent on your system and you're not sure # whether `pass_all' will *always* work, you probably want this one. case $host_os in aix[4-9]*) lt_cv_deplibs_check_method=pass_all ;; beos*) lt_cv_deplibs_check_method=pass_all ;; bsdi[45]*) lt_cv_deplibs_check_method='file_magic ELF [0-9][0-9]*-bit [ML]SB (shared object|dynamic lib)' lt_cv_file_magic_cmd='/usr/bin/file -L' lt_cv_file_magic_test_file=/shlib/libc.so ;; cygwin*) # func_win32_libid is a shell function defined in ltmain.sh lt_cv_deplibs_check_method='file_magic ^x86 archive import|^x86 DLL' lt_cv_file_magic_cmd='func_win32_libid' ;; mingw* | pw32*) # Base MSYS/MinGW do not provide the 'file' command needed by # func_win32_libid shell function, so use a weaker test based on 'objdump', # unless we find 'file', for example because we are cross-compiling. # func_win32_libid assumes BSD nm, so disallow it if using MS dumpbin. if ( test "$lt_cv_nm_interface" = "BSD nm" && file / ) >/dev/null 2>&1; then lt_cv_deplibs_check_method='file_magic ^x86 archive import|^x86 DLL' lt_cv_file_magic_cmd='func_win32_libid' else # Keep this pattern in sync with the one in func_win32_libid. lt_cv_deplibs_check_method='file_magic file format (pei*-i386(.*architecture: i386)?|pe-arm-wince|pe-x86-64)' lt_cv_file_magic_cmd='$OBJDUMP -f' fi ;; cegcc*) # use the weaker test based on 'objdump'. See mingw*. lt_cv_deplibs_check_method='file_magic file format pe-arm-.*little(.*architecture: arm)?' lt_cv_file_magic_cmd='$OBJDUMP -f' ;; darwin* | rhapsody*) lt_cv_deplibs_check_method=pass_all ;; freebsd* | dragonfly*) if echo __ELF__ | $CC -E - | $GREP __ELF__ > /dev/null; then case $host_cpu in i*86 ) # Not sure whether the presence of OpenBSD here was a mistake. # Let's accept both of them until this is cleared up. lt_cv_deplibs_check_method='file_magic (FreeBSD|OpenBSD|DragonFly)/i[3-9]86 (compact )?demand paged shared library' lt_cv_file_magic_cmd=/usr/bin/file lt_cv_file_magic_test_file=`echo /usr/lib/libc.so.*` ;; esac else lt_cv_deplibs_check_method=pass_all fi ;; gnu*) lt_cv_deplibs_check_method=pass_all ;; haiku*) lt_cv_deplibs_check_method=pass_all ;; hpux10.20* | hpux11*) lt_cv_file_magic_cmd=/usr/bin/file case $host_cpu in ia64*) lt_cv_deplibs_check_method='file_magic (s[0-9][0-9][0-9]|ELF-[0-9][0-9]) shared object file - IA64' lt_cv_file_magic_test_file=/usr/lib/hpux32/libc.so ;; hppa*64*) lt_cv_deplibs_check_method='file_magic (s[0-9][0-9][0-9]|ELF[ -][0-9][0-9])(-bit)?( [LM]SB)? shared object( file)?[, -]* PA-RISC [0-9]\.[0-9]' lt_cv_file_magic_test_file=/usr/lib/pa20_64/libc.sl ;; *) lt_cv_deplibs_check_method='file_magic (s[0-9][0-9][0-9]|PA-RISC[0-9]\.[0-9]) shared library' lt_cv_file_magic_test_file=/usr/lib/libc.sl ;; esac ;; interix[3-9]*) # PIC code is broken on Interix 3.x, that's why |\.a not |_pic\.a here lt_cv_deplibs_check_method='match_pattern /lib[^/]+(\.so|\.a)$' ;; irix5* | irix6* | nonstopux*) case $LD in *-32|*"-32 ") libmagic=32-bit;; *-n32|*"-n32 ") libmagic=N32;; *-64|*"-64 ") libmagic=64-bit;; *) libmagic=never-match;; esac lt_cv_deplibs_check_method=pass_all ;; # This must be glibc/ELF. linux* | k*bsd*-gnu | kopensolaris*-gnu) lt_cv_deplibs_check_method=pass_all ;; netbsd* | netbsdelf*-gnu) if echo __ELF__ | $CC -E - | $GREP __ELF__ > /dev/null; then lt_cv_deplibs_check_method='match_pattern /lib[^/]+(\.so\.[0-9]+\.[0-9]+|_pic\.a)$' else lt_cv_deplibs_check_method='match_pattern /lib[^/]+(\.so|_pic\.a)$' fi ;; newos6*) lt_cv_deplibs_check_method='file_magic ELF [0-9][0-9]*-bit [ML]SB (executable|dynamic lib)' lt_cv_file_magic_cmd=/usr/bin/file lt_cv_file_magic_test_file=/usr/lib/libnls.so ;; *nto* | *qnx*) lt_cv_deplibs_check_method=pass_all ;; openbsd*) if test -z "`echo __ELF__ | $CC -E - | $GREP __ELF__`" || test "$host_os-$host_cpu" = "openbsd2.8-powerpc"; then lt_cv_deplibs_check_method='match_pattern /lib[^/]+(\.so\.[0-9]+\.[0-9]+|\.so|_pic\.a)$' else lt_cv_deplibs_check_method='match_pattern /lib[^/]+(\.so\.[0-9]+\.[0-9]+|_pic\.a)$' fi ;; osf3* | osf4* | osf5*) lt_cv_deplibs_check_method=pass_all ;; rdos*) lt_cv_deplibs_check_method=pass_all ;; solaris*) lt_cv_deplibs_check_method=pass_all ;; sysv5* | sco3.2v5* | sco5v6* | unixware* | OpenUNIX* | sysv4*uw2*) lt_cv_deplibs_check_method=pass_all ;; sysv4 | sysv4.3*) case $host_vendor in motorola) lt_cv_deplibs_check_method='file_magic ELF [0-9][0-9]*-bit [ML]SB (shared object|dynamic lib) M[0-9][0-9]* Version [0-9]' lt_cv_file_magic_test_file=`echo /usr/lib/libc.so*` ;; ncr) lt_cv_deplibs_check_method=pass_all ;; sequent) lt_cv_file_magic_cmd='/bin/file' lt_cv_deplibs_check_method='file_magic ELF [0-9][0-9]*-bit [LM]SB (shared object|dynamic lib )' ;; sni) lt_cv_file_magic_cmd='/bin/file' lt_cv_deplibs_check_method="file_magic ELF [0-9][0-9]*-bit [LM]SB dynamic lib" lt_cv_file_magic_test_file=/lib/libc.so ;; siemens) lt_cv_deplibs_check_method=pass_all ;; pc) lt_cv_deplibs_check_method=pass_all ;; esac ;; tpf*) lt_cv_deplibs_check_method=pass_all ;; esac fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $lt_cv_deplibs_check_method" >&5 $as_echo "$lt_cv_deplibs_check_method" >&6; } file_magic_glob= want_nocaseglob=no if test "$build" = "$host"; then case $host_os in mingw* | pw32*) if ( shopt | grep nocaseglob ) >/dev/null 2>&1; then want_nocaseglob=yes else file_magic_glob=`echo aAbBcCdDeEfFgGhHiIjJkKlLmMnNoOpPqQrRsStTuUvVwWxXyYzZ | $SED -e "s/\(..\)/s\/[\1]\/[\1]\/g;/g"` fi ;; esac fi file_magic_cmd=$lt_cv_file_magic_cmd deplibs_check_method=$lt_cv_deplibs_check_method test -z "$deplibs_check_method" && deplibs_check_method=unknown if test -n "$ac_tool_prefix"; then # Extract the first word of "${ac_tool_prefix}dlltool", so it can be a program name with args. set dummy ${ac_tool_prefix}dlltool; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_DLLTOOL+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$DLLTOOL"; then ac_cv_prog_DLLTOOL="$DLLTOOL" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_DLLTOOL="${ac_tool_prefix}dlltool" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi DLLTOOL=$ac_cv_prog_DLLTOOL if test -n "$DLLTOOL"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $DLLTOOL" >&5 $as_echo "$DLLTOOL" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi fi if test -z "$ac_cv_prog_DLLTOOL"; then ac_ct_DLLTOOL=$DLLTOOL # Extract the first word of "dlltool", so it can be a program name with args. set dummy dlltool; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_ac_ct_DLLTOOL+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$ac_ct_DLLTOOL"; then ac_cv_prog_ac_ct_DLLTOOL="$ac_ct_DLLTOOL" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_DLLTOOL="dlltool" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi ac_ct_DLLTOOL=$ac_cv_prog_ac_ct_DLLTOOL if test -n "$ac_ct_DLLTOOL"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_ct_DLLTOOL" >&5 $as_echo "$ac_ct_DLLTOOL" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi if test "x$ac_ct_DLLTOOL" = x; then DLLTOOL="false" else case $cross_compiling:$ac_tool_warned in yes:) { $as_echo "$as_me:${as_lineno-$LINENO}: WARNING: using cross tools not prefixed with host triplet" >&5 $as_echo "$as_me: WARNING: using cross tools not prefixed with host triplet" >&2;} ac_tool_warned=yes ;; esac DLLTOOL=$ac_ct_DLLTOOL fi else DLLTOOL="$ac_cv_prog_DLLTOOL" fi test -z "$DLLTOOL" && DLLTOOL=dlltool { $as_echo "$as_me:${as_lineno-$LINENO}: checking how to associate runtime and link libraries" >&5 $as_echo_n "checking how to associate runtime and link libraries... " >&6; } if ${lt_cv_sharedlib_from_linklib_cmd+:} false; then : $as_echo_n "(cached) " >&6 else lt_cv_sharedlib_from_linklib_cmd='unknown' case $host_os in cygwin* | mingw* | pw32* | cegcc*) # two different shell functions defined in ltmain.sh # decide which to use based on capabilities of $DLLTOOL case `$DLLTOOL --help 2>&1` in *--identify-strict*) lt_cv_sharedlib_from_linklib_cmd=func_cygming_dll_for_implib ;; *) lt_cv_sharedlib_from_linklib_cmd=func_cygming_dll_for_implib_fallback ;; esac ;; *) # fallback: assume linklib IS sharedlib lt_cv_sharedlib_from_linklib_cmd="$ECHO" ;; esac fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $lt_cv_sharedlib_from_linklib_cmd" >&5 $as_echo "$lt_cv_sharedlib_from_linklib_cmd" >&6; } sharedlib_from_linklib_cmd=$lt_cv_sharedlib_from_linklib_cmd test -z "$sharedlib_from_linklib_cmd" && sharedlib_from_linklib_cmd=$ECHO if test -n "$ac_tool_prefix"; then for ac_prog in ar do # Extract the first word of "$ac_tool_prefix$ac_prog", so it can be a program name with args. set dummy $ac_tool_prefix$ac_prog; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_AR+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$AR"; then ac_cv_prog_AR="$AR" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_AR="$ac_tool_prefix$ac_prog" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi AR=$ac_cv_prog_AR if test -n "$AR"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $AR" >&5 $as_echo "$AR" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi test -n "$AR" && break done fi if test -z "$AR"; then ac_ct_AR=$AR for ac_prog in ar do # Extract the first word of "$ac_prog", so it can be a program name with args. set dummy $ac_prog; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_ac_ct_AR+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$ac_ct_AR"; then ac_cv_prog_ac_ct_AR="$ac_ct_AR" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_AR="$ac_prog" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi ac_ct_AR=$ac_cv_prog_ac_ct_AR if test -n "$ac_ct_AR"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_ct_AR" >&5 $as_echo "$ac_ct_AR" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi test -n "$ac_ct_AR" && break done if test "x$ac_ct_AR" = x; then AR="false" else case $cross_compiling:$ac_tool_warned in yes:) { $as_echo "$as_me:${as_lineno-$LINENO}: WARNING: using cross tools not prefixed with host triplet" >&5 $as_echo "$as_me: WARNING: using cross tools not prefixed with host triplet" >&2;} ac_tool_warned=yes ;; esac AR=$ac_ct_AR fi fi : ${AR=ar} : ${AR_FLAGS=cru} { $as_echo "$as_me:${as_lineno-$LINENO}: checking for archiver @FILE support" >&5 $as_echo_n "checking for archiver @FILE support... " >&6; } if ${lt_cv_ar_at_file+:} false; then : $as_echo_n "(cached) " >&6 else lt_cv_ar_at_file=no cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ int main () { ; return 0; } _ACEOF if ac_fn_c_try_compile "$LINENO"; then : echo conftest.$ac_objext > conftest.lst lt_ar_try='$AR $AR_FLAGS libconftest.a @conftest.lst >&5' { { eval echo "\"\$as_me\":${as_lineno-$LINENO}: \"$lt_ar_try\""; } >&5 (eval $lt_ar_try) 2>&5 ac_status=$? $as_echo "$as_me:${as_lineno-$LINENO}: \$? = $ac_status" >&5 test $ac_status = 0; } if test "$ac_status" -eq 0; then # Ensure the archiver fails upon bogus file names. rm -f conftest.$ac_objext libconftest.a { { eval echo "\"\$as_me\":${as_lineno-$LINENO}: \"$lt_ar_try\""; } >&5 (eval $lt_ar_try) 2>&5 ac_status=$? $as_echo "$as_me:${as_lineno-$LINENO}: \$? = $ac_status" >&5 test $ac_status = 0; } if test "$ac_status" -ne 0; then lt_cv_ar_at_file=@ fi fi rm -f conftest.* libconftest.a fi rm -f core conftest.err conftest.$ac_objext conftest.$ac_ext fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $lt_cv_ar_at_file" >&5 $as_echo "$lt_cv_ar_at_file" >&6; } if test "x$lt_cv_ar_at_file" = xno; then archiver_list_spec= else archiver_list_spec=$lt_cv_ar_at_file fi if test -n "$ac_tool_prefix"; then # Extract the first word of "${ac_tool_prefix}strip", so it can be a program name with args. set dummy ${ac_tool_prefix}strip; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_STRIP+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$STRIP"; then ac_cv_prog_STRIP="$STRIP" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_STRIP="${ac_tool_prefix}strip" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi STRIP=$ac_cv_prog_STRIP if test -n "$STRIP"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $STRIP" >&5 $as_echo "$STRIP" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi fi if test -z "$ac_cv_prog_STRIP"; then ac_ct_STRIP=$STRIP # Extract the first word of "strip", so it can be a program name with args. set dummy strip; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_ac_ct_STRIP+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$ac_ct_STRIP"; then ac_cv_prog_ac_ct_STRIP="$ac_ct_STRIP" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_STRIP="strip" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi ac_ct_STRIP=$ac_cv_prog_ac_ct_STRIP if test -n "$ac_ct_STRIP"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_ct_STRIP" >&5 $as_echo "$ac_ct_STRIP" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi if test "x$ac_ct_STRIP" = x; then STRIP=":" else case $cross_compiling:$ac_tool_warned in yes:) { $as_echo "$as_me:${as_lineno-$LINENO}: WARNING: using cross tools not prefixed with host triplet" >&5 $as_echo "$as_me: WARNING: using cross tools not prefixed with host triplet" >&2;} ac_tool_warned=yes ;; esac STRIP=$ac_ct_STRIP fi else STRIP="$ac_cv_prog_STRIP" fi test -z "$STRIP" && STRIP=: if test -n "$ac_tool_prefix"; then # Extract the first word of "${ac_tool_prefix}ranlib", so it can be a program name with args. set dummy ${ac_tool_prefix}ranlib; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_RANLIB+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$RANLIB"; then ac_cv_prog_RANLIB="$RANLIB" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_RANLIB="${ac_tool_prefix}ranlib" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi RANLIB=$ac_cv_prog_RANLIB if test -n "$RANLIB"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $RANLIB" >&5 $as_echo "$RANLIB" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi fi if test -z "$ac_cv_prog_RANLIB"; then ac_ct_RANLIB=$RANLIB # Extract the first word of "ranlib", so it can be a program name with args. set dummy ranlib; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_ac_ct_RANLIB+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$ac_ct_RANLIB"; then ac_cv_prog_ac_ct_RANLIB="$ac_ct_RANLIB" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_RANLIB="ranlib" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi ac_ct_RANLIB=$ac_cv_prog_ac_ct_RANLIB if test -n "$ac_ct_RANLIB"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_ct_RANLIB" >&5 $as_echo "$ac_ct_RANLIB" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi if test "x$ac_ct_RANLIB" = x; then RANLIB=":" else case $cross_compiling:$ac_tool_warned in yes:) { $as_echo "$as_me:${as_lineno-$LINENO}: WARNING: using cross tools not prefixed with host triplet" >&5 $as_echo "$as_me: WARNING: using cross tools not prefixed with host triplet" >&2;} ac_tool_warned=yes ;; esac RANLIB=$ac_ct_RANLIB fi else RANLIB="$ac_cv_prog_RANLIB" fi test -z "$RANLIB" && RANLIB=: # Determine commands to create old-style static archives. old_archive_cmds='$AR $AR_FLAGS $oldlib$oldobjs' old_postinstall_cmds='chmod 644 $oldlib' old_postuninstall_cmds= if test -n "$RANLIB"; then case $host_os in openbsd*) old_postinstall_cmds="$old_postinstall_cmds~\$RANLIB -t \$tool_oldlib" ;; *) old_postinstall_cmds="$old_postinstall_cmds~\$RANLIB \$tool_oldlib" ;; esac old_archive_cmds="$old_archive_cmds~\$RANLIB \$tool_oldlib" fi case $host_os in darwin*) lock_old_archive_extraction=yes ;; *) lock_old_archive_extraction=no ;; esac # If no C compiler was specified, use CC. LTCC=${LTCC-"$CC"} # If no C compiler flags were specified, use CFLAGS. LTCFLAGS=${LTCFLAGS-"$CFLAGS"} # Allow CC to be a program name with arguments. compiler=$CC # Check for command to grab the raw symbol name followed by C symbol from nm. { $as_echo "$as_me:${as_lineno-$LINENO}: checking command to parse $NM output from $compiler object" >&5 $as_echo_n "checking command to parse $NM output from $compiler object... " >&6; } if ${lt_cv_sys_global_symbol_pipe+:} false; then : $as_echo_n "(cached) " >&6 else # These are sane defaults that work on at least a few old systems. # [They come from Ultrix. What could be older than Ultrix?!! ;)] # Character class describing NM global symbol codes. symcode='[BCDEGRST]' # Regexp to match symbols that can be accessed directly from C. sympat='\([_A-Za-z][_A-Za-z0-9]*\)' # Define system-specific variables. case $host_os in aix*) symcode='[BCDT]' ;; cygwin* | mingw* | pw32* | cegcc*) symcode='[ABCDGISTW]' ;; hpux*) if test "$host_cpu" = ia64; then symcode='[ABCDEGRST]' fi ;; irix* | nonstopux*) symcode='[BCDEGRST]' ;; osf*) symcode='[BCDEGQRST]' ;; solaris*) symcode='[BDRT]' ;; sco3.2v5*) symcode='[DT]' ;; sysv4.2uw2*) symcode='[DT]' ;; sysv5* | sco5v6* | unixware* | OpenUNIX*) symcode='[ABDT]' ;; sysv4) symcode='[DFNSTU]' ;; esac # If we're using GNU nm, then use its standard symbol codes. case `$NM -V 2>&1` in *GNU* | *'with BFD'*) symcode='[ABCDGIRSTW]' ;; esac # Transform an extracted symbol line into a proper C declaration. # Some systems (esp. on ia64) link data and code symbols differently, # so use this general approach. lt_cv_sys_global_symbol_to_cdecl="sed -n -e 's/^T .* \(.*\)$/extern int \1();/p' -e 's/^$symcode* .* \(.*\)$/extern char \1;/p'" # Transform an extracted symbol line into symbol name and symbol address lt_cv_sys_global_symbol_to_c_name_address="sed -n -e 's/^: \([^ ]*\)[ ]*$/ {\\\"\1\\\", (void *) 0},/p' -e 's/^$symcode* \([^ ]*\) \([^ ]*\)$/ {\"\2\", (void *) \&\2},/p'" lt_cv_sys_global_symbol_to_c_name_address_lib_prefix="sed -n -e 's/^: \([^ ]*\)[ ]*$/ {\\\"\1\\\", (void *) 0},/p' -e 's/^$symcode* \([^ ]*\) \(lib[^ ]*\)$/ {\"\2\", (void *) \&\2},/p' -e 's/^$symcode* \([^ ]*\) \([^ ]*\)$/ {\"lib\2\", (void *) \&\2},/p'" # Handle CRLF in mingw tool chain opt_cr= case $build_os in mingw*) opt_cr=`$ECHO 'x\{0,1\}' | tr x '\015'` # option cr in regexp ;; esac # Try without a prefix underscore, then with it. for ac_symprfx in "" "_"; do # Transform symcode, sympat, and symprfx into a raw symbol and a C symbol. symxfrm="\\1 $ac_symprfx\\2 \\2" # Write the raw and C identifiers. if test "$lt_cv_nm_interface" = "MS dumpbin"; then # Fake it for dumpbin and say T for any non-static function # and D for any global variable. # Also find C++ and __fastcall symbols from MSVC++, # which start with @ or ?. lt_cv_sys_global_symbol_pipe="$AWK '"\ " {last_section=section; section=\$ 3};"\ " /^COFF SYMBOL TABLE/{for(i in hide) delete hide[i]};"\ " /Section length .*#relocs.*(pick any)/{hide[last_section]=1};"\ " \$ 0!~/External *\|/{next};"\ " / 0+ UNDEF /{next}; / UNDEF \([^|]\)*()/{next};"\ " {if(hide[section]) next};"\ " {f=0}; \$ 0~/\(\).*\|/{f=1}; {printf f ? \"T \" : \"D \"};"\ " {split(\$ 0, a, /\||\r/); split(a[2], s)};"\ " s[1]~/^[@?]/{print s[1], s[1]; next};"\ " s[1]~prfx {split(s[1],t,\"@\"); print t[1], substr(t[1],length(prfx))}"\ " ' prfx=^$ac_symprfx" else lt_cv_sys_global_symbol_pipe="sed -n -e 's/^.*[ ]\($symcode$symcode*\)[ ][ ]*$ac_symprfx$sympat$opt_cr$/$symxfrm/p'" fi lt_cv_sys_global_symbol_pipe="$lt_cv_sys_global_symbol_pipe | sed '/ __gnu_lto/d'" # Check to see that the pipe works correctly. pipe_works=no rm -f conftest* cat > conftest.$ac_ext <<_LT_EOF #ifdef __cplusplus extern "C" { #endif char nm_test_var; void nm_test_func(void); void nm_test_func(void){} #ifdef __cplusplus } #endif int main(){nm_test_var='a';nm_test_func();return(0);} _LT_EOF if { { eval echo "\"\$as_me\":${as_lineno-$LINENO}: \"$ac_compile\""; } >&5 (eval $ac_compile) 2>&5 ac_status=$? $as_echo "$as_me:${as_lineno-$LINENO}: \$? = $ac_status" >&5 test $ac_status = 0; }; then # Now try to grab the symbols. nlist=conftest.nm if { { eval echo "\"\$as_me\":${as_lineno-$LINENO}: \"$NM conftest.$ac_objext \| "$lt_cv_sys_global_symbol_pipe" \> $nlist\""; } >&5 (eval $NM conftest.$ac_objext \| "$lt_cv_sys_global_symbol_pipe" \> $nlist) 2>&5 ac_status=$? $as_echo "$as_me:${as_lineno-$LINENO}: \$? = $ac_status" >&5 test $ac_status = 0; } && test -s "$nlist"; then # Try sorting and uniquifying the output. if sort "$nlist" | uniq > "$nlist"T; then mv -f "$nlist"T "$nlist" else rm -f "$nlist"T fi # Make sure that we snagged all the symbols we need. if $GREP ' nm_test_var$' "$nlist" >/dev/null; then if $GREP ' nm_test_func$' "$nlist" >/dev/null; then cat <<_LT_EOF > conftest.$ac_ext /* Keep this code in sync between libtool.m4, ltmain, lt_system.h, and tests. */ #if defined(_WIN32) || defined(__CYGWIN__) || defined(_WIN32_WCE) /* DATA imports from DLLs on WIN32 con't be const, because runtime relocations are performed -- see ld's documentation on pseudo-relocs. */ # define LT_DLSYM_CONST #elif defined(__osf__) /* This system does not cope well with relocations in const data. */ # define LT_DLSYM_CONST #else # define LT_DLSYM_CONST const #endif #ifdef __cplusplus extern "C" { #endif _LT_EOF # Now generate the symbol file. eval "$lt_cv_sys_global_symbol_to_cdecl"' < "$nlist" | $GREP -v main >> conftest.$ac_ext' cat <<_LT_EOF >> conftest.$ac_ext /* The mapping between symbol names and symbols. */ LT_DLSYM_CONST struct { const char *name; void *address; } lt__PROGRAM__LTX_preloaded_symbols[] = { { "@PROGRAM@", (void *) 0 }, _LT_EOF $SED "s/^$symcode$symcode* \(.*\) \(.*\)$/ {\"\2\", (void *) \&\2},/" < "$nlist" | $GREP -v main >> conftest.$ac_ext cat <<\_LT_EOF >> conftest.$ac_ext {0, (void *) 0} }; /* This works around a problem in FreeBSD linker */ #ifdef FREEBSD_WORKAROUND static const void *lt_preloaded_setup() { return lt__PROGRAM__LTX_preloaded_symbols; } #endif #ifdef __cplusplus } #endif _LT_EOF # Now try linking the two files. mv conftest.$ac_objext conftstm.$ac_objext lt_globsym_save_LIBS=$LIBS lt_globsym_save_CFLAGS=$CFLAGS LIBS="conftstm.$ac_objext" CFLAGS="$CFLAGS$lt_prog_compiler_no_builtin_flag" if { { eval echo "\"\$as_me\":${as_lineno-$LINENO}: \"$ac_link\""; } >&5 (eval $ac_link) 2>&5 ac_status=$? $as_echo "$as_me:${as_lineno-$LINENO}: \$? = $ac_status" >&5 test $ac_status = 0; } && test -s conftest${ac_exeext}; then pipe_works=yes fi LIBS=$lt_globsym_save_LIBS CFLAGS=$lt_globsym_save_CFLAGS else echo "cannot find nm_test_func in $nlist" >&5 fi else echo "cannot find nm_test_var in $nlist" >&5 fi else echo "cannot run $lt_cv_sys_global_symbol_pipe" >&5 fi else echo "$progname: failed program was:" >&5 cat conftest.$ac_ext >&5 fi rm -rf conftest* conftst* # Do not use the global_symbol_pipe unless it works. if test "$pipe_works" = yes; then break else lt_cv_sys_global_symbol_pipe= fi done fi if test -z "$lt_cv_sys_global_symbol_pipe"; then lt_cv_sys_global_symbol_to_cdecl= fi if test -z "$lt_cv_sys_global_symbol_pipe$lt_cv_sys_global_symbol_to_cdecl"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: failed" >&5 $as_echo "failed" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: ok" >&5 $as_echo "ok" >&6; } fi # Response file support. if test "$lt_cv_nm_interface" = "MS dumpbin"; then nm_file_list_spec='@' elif $NM --help 2>/dev/null | grep '[@]FILE' >/dev/null; then nm_file_list_spec='@' fi { $as_echo "$as_me:${as_lineno-$LINENO}: checking for sysroot" >&5 $as_echo_n "checking for sysroot... " >&6; } # Check whether --with-sysroot was given. if test "${with_sysroot+set}" = set; then : withval=$with_sysroot; else with_sysroot=no fi lt_sysroot= case ${with_sysroot} in #( yes) if test "$GCC" = yes; then lt_sysroot=`$CC --print-sysroot 2>/dev/null` fi ;; #( /*) lt_sysroot=`echo "$with_sysroot" | sed -e "$sed_quote_subst"` ;; #( no|'') ;; #( *) { $as_echo "$as_me:${as_lineno-$LINENO}: result: ${with_sysroot}" >&5 $as_echo "${with_sysroot}" >&6; } as_fn_error $? "The sysroot must be an absolute path." "$LINENO" 5 ;; esac { $as_echo "$as_me:${as_lineno-$LINENO}: result: ${lt_sysroot:-no}" >&5 $as_echo "${lt_sysroot:-no}" >&6; } # Check whether --enable-libtool-lock was given. if test "${enable_libtool_lock+set}" = set; then : enableval=$enable_libtool_lock; fi test "x$enable_libtool_lock" != xno && enable_libtool_lock=yes # Some flags need to be propagated to the compiler or linker for good # libtool support. case $host in ia64-*-hpux*) # Find out which ABI we are using. echo 'int i;' > conftest.$ac_ext if { { eval echo "\"\$as_me\":${as_lineno-$LINENO}: \"$ac_compile\""; } >&5 (eval $ac_compile) 2>&5 ac_status=$? $as_echo "$as_me:${as_lineno-$LINENO}: \$? = $ac_status" >&5 test $ac_status = 0; }; then case `/usr/bin/file conftest.$ac_objext` in *ELF-32*) HPUX_IA64_MODE="32" ;; *ELF-64*) HPUX_IA64_MODE="64" ;; esac fi rm -rf conftest* ;; *-*-irix6*) # Find out which ABI we are using. echo '#line '$LINENO' "configure"' > conftest.$ac_ext if { { eval echo "\"\$as_me\":${as_lineno-$LINENO}: \"$ac_compile\""; } >&5 (eval $ac_compile) 2>&5 ac_status=$? $as_echo "$as_me:${as_lineno-$LINENO}: \$? = $ac_status" >&5 test $ac_status = 0; }; then if test "$lt_cv_prog_gnu_ld" = yes; then case `/usr/bin/file conftest.$ac_objext` in *32-bit*) LD="${LD-ld} -melf32bsmip" ;; *N32*) LD="${LD-ld} -melf32bmipn32" ;; *64-bit*) LD="${LD-ld} -melf64bmip" ;; esac else case `/usr/bin/file conftest.$ac_objext` in *32-bit*) LD="${LD-ld} -32" ;; *N32*) LD="${LD-ld} -n32" ;; *64-bit*) LD="${LD-ld} -64" ;; esac fi fi rm -rf conftest* ;; x86_64-*kfreebsd*-gnu|x86_64-*linux*|ppc*-*linux*|powerpc*-*linux*| \ s390*-*linux*|s390*-*tpf*|sparc*-*linux*) # Find out which ABI we are using. echo 'int i;' > conftest.$ac_ext if { { eval echo "\"\$as_me\":${as_lineno-$LINENO}: \"$ac_compile\""; } >&5 (eval $ac_compile) 2>&5 ac_status=$? $as_echo "$as_me:${as_lineno-$LINENO}: \$? = $ac_status" >&5 test $ac_status = 0; }; then case `/usr/bin/file conftest.o` in *32-bit*) case $host in x86_64-*kfreebsd*-gnu) LD="${LD-ld} -m elf_i386_fbsd" ;; x86_64-*linux*) LD="${LD-ld} -m elf_i386" ;; ppc64-*linux*|powerpc64-*linux*) LD="${LD-ld} -m elf32ppclinux" ;; s390x-*linux*) LD="${LD-ld} -m elf_s390" ;; sparc64-*linux*) LD="${LD-ld} -m elf32_sparc" ;; esac ;; *64-bit*) case $host in x86_64-*kfreebsd*-gnu) LD="${LD-ld} -m elf_x86_64_fbsd" ;; x86_64-*linux*) LD="${LD-ld} -m elf_x86_64" ;; ppc*-*linux*|powerpc*-*linux*) LD="${LD-ld} -m elf64ppc" ;; s390*-*linux*|s390*-*tpf*) LD="${LD-ld} -m elf64_s390" ;; sparc*-*linux*) LD="${LD-ld} -m elf64_sparc" ;; esac ;; esac fi rm -rf conftest* ;; *-*-sco3.2v5*) # On SCO OpenServer 5, we need -belf to get full-featured binaries. SAVE_CFLAGS="$CFLAGS" CFLAGS="$CFLAGS -belf" { $as_echo "$as_me:${as_lineno-$LINENO}: checking whether the C compiler needs -belf" >&5 $as_echo_n "checking whether the C compiler needs -belf... " >&6; } if ${lt_cv_cc_needs_belf+:} false; then : $as_echo_n "(cached) " >&6 else ac_ext=c ac_cpp='$CPP $CPPFLAGS' ac_compile='$CC -c $CFLAGS $CPPFLAGS conftest.$ac_ext >&5' ac_link='$CC -o conftest$ac_exeext $CFLAGS $CPPFLAGS $LDFLAGS conftest.$ac_ext $LIBS >&5' ac_compiler_gnu=$ac_cv_c_compiler_gnu cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ int main () { ; return 0; } _ACEOF if ac_fn_c_try_link "$LINENO"; then : lt_cv_cc_needs_belf=yes else lt_cv_cc_needs_belf=no fi rm -f core conftest.err conftest.$ac_objext \ conftest$ac_exeext conftest.$ac_ext ac_ext=c ac_cpp='$CPP $CPPFLAGS' ac_compile='$CC -c $CFLAGS $CPPFLAGS conftest.$ac_ext >&5' ac_link='$CC -o conftest$ac_exeext $CFLAGS $CPPFLAGS $LDFLAGS conftest.$ac_ext $LIBS >&5' ac_compiler_gnu=$ac_cv_c_compiler_gnu fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $lt_cv_cc_needs_belf" >&5 $as_echo "$lt_cv_cc_needs_belf" >&6; } if test x"$lt_cv_cc_needs_belf" != x"yes"; then # this is probably gcc 2.8.0, egcs 1.0 or newer; no need for -belf CFLAGS="$SAVE_CFLAGS" fi ;; *-*solaris*) # Find out which ABI we are using. echo 'int i;' > conftest.$ac_ext if { { eval echo "\"\$as_me\":${as_lineno-$LINENO}: \"$ac_compile\""; } >&5 (eval $ac_compile) 2>&5 ac_status=$? $as_echo "$as_me:${as_lineno-$LINENO}: \$? = $ac_status" >&5 test $ac_status = 0; }; then case `/usr/bin/file conftest.o` in *64-bit*) case $lt_cv_prog_gnu_ld in yes*) case $host in i?86-*-solaris*) LD="${LD-ld} -m elf_x86_64" ;; sparc*-*-solaris*) LD="${LD-ld} -m elf64_sparc" ;; esac # GNU ld 2.21 introduced _sol2 emulations. Use them if available. if ${LD-ld} -V | grep _sol2 >/dev/null 2>&1; then LD="${LD-ld}_sol2" fi ;; *) if ${LD-ld} -64 -r -o conftest2.o conftest.o >/dev/null 2>&1; then LD="${LD-ld} -64" fi ;; esac ;; esac fi rm -rf conftest* ;; esac need_locks="$enable_libtool_lock" if test -n "$ac_tool_prefix"; then # Extract the first word of "${ac_tool_prefix}mt", so it can be a program name with args. set dummy ${ac_tool_prefix}mt; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_MANIFEST_TOOL+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$MANIFEST_TOOL"; then ac_cv_prog_MANIFEST_TOOL="$MANIFEST_TOOL" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_MANIFEST_TOOL="${ac_tool_prefix}mt" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi MANIFEST_TOOL=$ac_cv_prog_MANIFEST_TOOL if test -n "$MANIFEST_TOOL"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $MANIFEST_TOOL" >&5 $as_echo "$MANIFEST_TOOL" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi fi if test -z "$ac_cv_prog_MANIFEST_TOOL"; then ac_ct_MANIFEST_TOOL=$MANIFEST_TOOL # Extract the first word of "mt", so it can be a program name with args. set dummy mt; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_ac_ct_MANIFEST_TOOL+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$ac_ct_MANIFEST_TOOL"; then ac_cv_prog_ac_ct_MANIFEST_TOOL="$ac_ct_MANIFEST_TOOL" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_MANIFEST_TOOL="mt" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi ac_ct_MANIFEST_TOOL=$ac_cv_prog_ac_ct_MANIFEST_TOOL if test -n "$ac_ct_MANIFEST_TOOL"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_ct_MANIFEST_TOOL" >&5 $as_echo "$ac_ct_MANIFEST_TOOL" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi if test "x$ac_ct_MANIFEST_TOOL" = x; then MANIFEST_TOOL=":" else case $cross_compiling:$ac_tool_warned in yes:) { $as_echo "$as_me:${as_lineno-$LINENO}: WARNING: using cross tools not prefixed with host triplet" >&5 $as_echo "$as_me: WARNING: using cross tools not prefixed with host triplet" >&2;} ac_tool_warned=yes ;; esac MANIFEST_TOOL=$ac_ct_MANIFEST_TOOL fi else MANIFEST_TOOL="$ac_cv_prog_MANIFEST_TOOL" fi test -z "$MANIFEST_TOOL" && MANIFEST_TOOL=mt { $as_echo "$as_me:${as_lineno-$LINENO}: checking if $MANIFEST_TOOL is a manifest tool" >&5 $as_echo_n "checking if $MANIFEST_TOOL is a manifest tool... " >&6; } if ${lt_cv_path_mainfest_tool+:} false; then : $as_echo_n "(cached) " >&6 else lt_cv_path_mainfest_tool=no echo "$as_me:$LINENO: $MANIFEST_TOOL '-?'" >&5 $MANIFEST_TOOL '-?' 2>conftest.err > conftest.out cat conftest.err >&5 if $GREP 'Manifest Tool' conftest.out > /dev/null; then lt_cv_path_mainfest_tool=yes fi rm -f conftest* fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $lt_cv_path_mainfest_tool" >&5 $as_echo "$lt_cv_path_mainfest_tool" >&6; } if test "x$lt_cv_path_mainfest_tool" != xyes; then MANIFEST_TOOL=: fi case $host_os in rhapsody* | darwin*) if test -n "$ac_tool_prefix"; then # Extract the first word of "${ac_tool_prefix}dsymutil", so it can be a program name with args. set dummy ${ac_tool_prefix}dsymutil; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_DSYMUTIL+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$DSYMUTIL"; then ac_cv_prog_DSYMUTIL="$DSYMUTIL" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_DSYMUTIL="${ac_tool_prefix}dsymutil" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi DSYMUTIL=$ac_cv_prog_DSYMUTIL if test -n "$DSYMUTIL"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $DSYMUTIL" >&5 $as_echo "$DSYMUTIL" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi fi if test -z "$ac_cv_prog_DSYMUTIL"; then ac_ct_DSYMUTIL=$DSYMUTIL # Extract the first word of "dsymutil", so it can be a program name with args. set dummy dsymutil; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_ac_ct_DSYMUTIL+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$ac_ct_DSYMUTIL"; then ac_cv_prog_ac_ct_DSYMUTIL="$ac_ct_DSYMUTIL" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_DSYMUTIL="dsymutil" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi ac_ct_DSYMUTIL=$ac_cv_prog_ac_ct_DSYMUTIL if test -n "$ac_ct_DSYMUTIL"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_ct_DSYMUTIL" >&5 $as_echo "$ac_ct_DSYMUTIL" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi if test "x$ac_ct_DSYMUTIL" = x; then DSYMUTIL=":" else case $cross_compiling:$ac_tool_warned in yes:) { $as_echo "$as_me:${as_lineno-$LINENO}: WARNING: using cross tools not prefixed with host triplet" >&5 $as_echo "$as_me: WARNING: using cross tools not prefixed with host triplet" >&2;} ac_tool_warned=yes ;; esac DSYMUTIL=$ac_ct_DSYMUTIL fi else DSYMUTIL="$ac_cv_prog_DSYMUTIL" fi if test -n "$ac_tool_prefix"; then # Extract the first word of "${ac_tool_prefix}nmedit", so it can be a program name with args. set dummy ${ac_tool_prefix}nmedit; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_NMEDIT+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$NMEDIT"; then ac_cv_prog_NMEDIT="$NMEDIT" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_NMEDIT="${ac_tool_prefix}nmedit" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi NMEDIT=$ac_cv_prog_NMEDIT if test -n "$NMEDIT"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $NMEDIT" >&5 $as_echo "$NMEDIT" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi fi if test -z "$ac_cv_prog_NMEDIT"; then ac_ct_NMEDIT=$NMEDIT # Extract the first word of "nmedit", so it can be a program name with args. set dummy nmedit; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_ac_ct_NMEDIT+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$ac_ct_NMEDIT"; then ac_cv_prog_ac_ct_NMEDIT="$ac_ct_NMEDIT" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_NMEDIT="nmedit" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi ac_ct_NMEDIT=$ac_cv_prog_ac_ct_NMEDIT if test -n "$ac_ct_NMEDIT"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_ct_NMEDIT" >&5 $as_echo "$ac_ct_NMEDIT" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi if test "x$ac_ct_NMEDIT" = x; then NMEDIT=":" else case $cross_compiling:$ac_tool_warned in yes:) { $as_echo "$as_me:${as_lineno-$LINENO}: WARNING: using cross tools not prefixed with host triplet" >&5 $as_echo "$as_me: WARNING: using cross tools not prefixed with host triplet" >&2;} ac_tool_warned=yes ;; esac NMEDIT=$ac_ct_NMEDIT fi else NMEDIT="$ac_cv_prog_NMEDIT" fi if test -n "$ac_tool_prefix"; then # Extract the first word of "${ac_tool_prefix}lipo", so it can be a program name with args. set dummy ${ac_tool_prefix}lipo; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_LIPO+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$LIPO"; then ac_cv_prog_LIPO="$LIPO" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_LIPO="${ac_tool_prefix}lipo" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi LIPO=$ac_cv_prog_LIPO if test -n "$LIPO"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $LIPO" >&5 $as_echo "$LIPO" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi fi if test -z "$ac_cv_prog_LIPO"; then ac_ct_LIPO=$LIPO # Extract the first word of "lipo", so it can be a program name with args. set dummy lipo; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_ac_ct_LIPO+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$ac_ct_LIPO"; then ac_cv_prog_ac_ct_LIPO="$ac_ct_LIPO" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_LIPO="lipo" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi ac_ct_LIPO=$ac_cv_prog_ac_ct_LIPO if test -n "$ac_ct_LIPO"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_ct_LIPO" >&5 $as_echo "$ac_ct_LIPO" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi if test "x$ac_ct_LIPO" = x; then LIPO=":" else case $cross_compiling:$ac_tool_warned in yes:) { $as_echo "$as_me:${as_lineno-$LINENO}: WARNING: using cross tools not prefixed with host triplet" >&5 $as_echo "$as_me: WARNING: using cross tools not prefixed with host triplet" >&2;} ac_tool_warned=yes ;; esac LIPO=$ac_ct_LIPO fi else LIPO="$ac_cv_prog_LIPO" fi if test -n "$ac_tool_prefix"; then # Extract the first word of "${ac_tool_prefix}otool", so it can be a program name with args. set dummy ${ac_tool_prefix}otool; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_OTOOL+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$OTOOL"; then ac_cv_prog_OTOOL="$OTOOL" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_OTOOL="${ac_tool_prefix}otool" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi OTOOL=$ac_cv_prog_OTOOL if test -n "$OTOOL"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $OTOOL" >&5 $as_echo "$OTOOL" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi fi if test -z "$ac_cv_prog_OTOOL"; then ac_ct_OTOOL=$OTOOL # Extract the first word of "otool", so it can be a program name with args. set dummy otool; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_ac_ct_OTOOL+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$ac_ct_OTOOL"; then ac_cv_prog_ac_ct_OTOOL="$ac_ct_OTOOL" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_OTOOL="otool" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi ac_ct_OTOOL=$ac_cv_prog_ac_ct_OTOOL if test -n "$ac_ct_OTOOL"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_ct_OTOOL" >&5 $as_echo "$ac_ct_OTOOL" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi if test "x$ac_ct_OTOOL" = x; then OTOOL=":" else case $cross_compiling:$ac_tool_warned in yes:) { $as_echo "$as_me:${as_lineno-$LINENO}: WARNING: using cross tools not prefixed with host triplet" >&5 $as_echo "$as_me: WARNING: using cross tools not prefixed with host triplet" >&2;} ac_tool_warned=yes ;; esac OTOOL=$ac_ct_OTOOL fi else OTOOL="$ac_cv_prog_OTOOL" fi if test -n "$ac_tool_prefix"; then # Extract the first word of "${ac_tool_prefix}otool64", so it can be a program name with args. set dummy ${ac_tool_prefix}otool64; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_OTOOL64+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$OTOOL64"; then ac_cv_prog_OTOOL64="$OTOOL64" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_OTOOL64="${ac_tool_prefix}otool64" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi OTOOL64=$ac_cv_prog_OTOOL64 if test -n "$OTOOL64"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $OTOOL64" >&5 $as_echo "$OTOOL64" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi fi if test -z "$ac_cv_prog_OTOOL64"; then ac_ct_OTOOL64=$OTOOL64 # Extract the first word of "otool64", so it can be a program name with args. set dummy otool64; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if ${ac_cv_prog_ac_ct_OTOOL64+:} false; then : $as_echo_n "(cached) " >&6 else if test -n "$ac_ct_OTOOL64"; then ac_cv_prog_ac_ct_OTOOL64="$ac_ct_OTOOL64" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if as_fn_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_OTOOL64="otool64" $as_echo "$as_me:${as_lineno-$LINENO}: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done IFS=$as_save_IFS fi fi ac_ct_OTOOL64=$ac_cv_prog_ac_ct_OTOOL64 if test -n "$ac_ct_OTOOL64"; then { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_ct_OTOOL64" >&5 $as_echo "$ac_ct_OTOOL64" >&6; } else { $as_echo "$as_me:${as_lineno-$LINENO}: result: no" >&5 $as_echo "no" >&6; } fi if test "x$ac_ct_OTOOL64" = x; then OTOOL64=":" else case $cross_compiling:$ac_tool_warned in yes:) { $as_echo "$as_me:${as_lineno-$LINENO}: WARNING: using cross tools not prefixed with host triplet" >&5 $as_echo "$as_me: WARNING: using cross tools not prefixed with host triplet" >&2;} ac_tool_warned=yes ;; esac OTOOL64=$ac_ct_OTOOL64 fi else OTOOL64="$ac_cv_prog_OTOOL64" fi { $as_echo "$as_me:${as_lineno-$LINENO}: checking for -single_module linker flag" >&5 $as_echo_n "checking for -single_module linker flag... " >&6; } if ${lt_cv_apple_cc_single_mod+:} false; then : $as_echo_n "(cached) " >&6 else lt_cv_apple_cc_single_mod=no if test -z "${LT_MULTI_MODULE}"; then # By default we will add the -single_module flag. You can override # by either setting the environment variable LT_MULTI_MODULE # non-empty at configure time, or by adding -multi_module to the # link flags. rm -rf libconftest.dylib* echo "int foo(void){return 1;}" > conftest.c echo "$LTCC $LTCFLAGS $LDFLAGS -o libconftest.dylib \ -dynamiclib -Wl,-single_module conftest.c" >&5 $LTCC $LTCFLAGS $LDFLAGS -o libconftest.dylib \ -dynamiclib -Wl,-single_module conftest.c 2>conftest.err _lt_result=$? # If there is a non-empty error log, and "single_module" # appears in it, assume the flag caused a linker warning if test -s conftest.err && $GREP single_module conftest.err; then cat conftest.err >&5 # Otherwise, if the output was created with a 0 exit code from # the compiler, it worked. elif test -f libconftest.dylib && test $_lt_result -eq 0; then lt_cv_apple_cc_single_mod=yes else cat conftest.err >&5 fi rm -rf libconftest.dylib* rm -f conftest.* fi fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $lt_cv_apple_cc_single_mod" >&5 $as_echo "$lt_cv_apple_cc_single_mod" >&6; } { $as_echo "$as_me:${as_lineno-$LINENO}: checking for -exported_symbols_list linker flag" >&5 $as_echo_n "checking for -exported_symbols_list linker flag... 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Therefore, libtool *** is disabling shared libraries support. We urge you to upgrade GNU *** binutils to release 2.9.1 or newer. Another option is to modify *** your PATH or compiler configuration so that the native linker is *** used, and then restart. _LT_EOF elif $LD --help 2>&1 | $GREP ': supported targets:.* elf' > /dev/null; then archive_cmds='$CC -shared $pic_flag $libobjs $deplibs $compiler_flags ${wl}-soname $wl$soname -o $lib' archive_expsym_cmds='$CC -shared $pic_flag $libobjs $deplibs $compiler_flags ${wl}-soname $wl$soname ${wl}-retain-symbols-file $wl$export_symbols -o $lib' else ld_shlibs=no fi ;; sysv5* | sco3.2v5* | sco5v6* | unixware* | OpenUNIX*) case `$LD -v 2>&1` in *\ [01].* | *\ 2.[0-9].* | *\ 2.1[0-5].*) ld_shlibs=no cat <<_LT_EOF 1>&2 *** Warning: Releases of the GNU linker prior to 2.16.91.0.3 can not *** reliably create shared libraries on SCO systems. Therefore, libtool *** is disabling shared libraries support. We urge you to upgrade GNU *** binutils to release 2.16.91.0.3 or newer. Another option is to modify *** your PATH or compiler configuration so that the native linker is *** used, and then restart. _LT_EOF ;; *) # For security reasons, it is highly recommended that you always # use absolute paths for naming shared libraries, and exclude the # DT_RUNPATH tag from executables and libraries. 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then lt_cv_aix_libpath_=`dump -HX64 conftest$ac_exeext 2>/dev/null | $SED -n -e "$lt_aix_libpath_sed"` fi fi rm -f core conftest.err conftest.$ac_objext \ conftest$ac_exeext conftest.$ac_ext if test -z "$lt_cv_aix_libpath_"; then lt_cv_aix_libpath_="/usr/lib:/lib" fi fi aix_libpath=$lt_cv_aix_libpath_ fi hardcode_libdir_flag_spec='${wl}-blibpath:$libdir:'"$aix_libpath" archive_expsym_cmds='$CC -o $output_objdir/$soname $libobjs $deplibs '"\${wl}$no_entry_flag"' $compiler_flags `if test "x${allow_undefined_flag}" != "x"; then func_echo_all "${wl}${allow_undefined_flag}"; else :; fi` '"\${wl}$exp_sym_flag:\$export_symbols $shared_flag" else if test "$host_cpu" = ia64; then hardcode_libdir_flag_spec='${wl}-R $libdir:/usr/lib:/lib' allow_undefined_flag="-z nodefs" archive_expsym_cmds="\$CC $shared_flag"' -o $output_objdir/$soname $libobjs $deplibs '"\${wl}$no_entry_flag"' $compiler_flags ${wl}${allow_undefined_flag} '"\${wl}$exp_sym_flag:\$export_symbols" else # Determine the default libpath from the value encoded in an # empty executable. if test "${lt_cv_aix_libpath+set}" = set; 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then # We only use this code for GNU lds that support --whole-archive. whole_archive_flag_spec='${wl}--whole-archive$convenience ${wl}--no-whole-archive' else # Exported symbols can be pulled into shared objects from archives whole_archive_flag_spec='$convenience' fi archive_cmds_need_lc=yes # This is similar to how AIX traditionally builds its shared libraries. archive_expsym_cmds="\$CC $shared_flag"' -o $output_objdir/$soname $libobjs $deplibs ${wl}-bnoentry $compiler_flags ${wl}-bE:$export_symbols${allow_undefined_flag}~$AR $AR_FLAGS $output_objdir/$libname$release.a $output_objdir/$soname' fi fi ;; amigaos*) case $host_cpu in powerpc) # see comment about AmigaOS4 .so support archive_cmds='$CC -shared $libobjs $deplibs $compiler_flags ${wl}-soname $wl$soname -o $lib' archive_expsym_cmds='' ;; m68k) archive_cmds='$RM $output_objdir/a2ixlibrary.data~$ECHO "#define NAME $libname" > $output_objdir/a2ixlibrary.data~$ECHO "#define LIBRARY_ID 1" >> $output_objdir/a2ixlibrary.data~$ECHO "#define VERSION $major" >> $output_objdir/a2ixlibrary.data~$ECHO "#define REVISION $revision" >> $output_objdir/a2ixlibrary.data~$AR $AR_FLAGS $lib $libobjs~$RANLIB $lib~(cd $output_objdir && a2ixlibrary -32)' hardcode_libdir_flag_spec='-L$libdir' hardcode_minus_L=yes ;; esac ;; bsdi[45]*) export_dynamic_flag_spec=-rdynamic ;; cygwin* | mingw* | pw32* | cegcc*) # When not using gcc, we currently assume that we are using # Microsoft Visual C++. # hardcode_libdir_flag_spec is actually meaningless, as there is # no search path for DLLs. case $cc_basename in cl*) # Native MSVC hardcode_libdir_flag_spec=' ' allow_undefined_flag=unsupported always_export_symbols=yes file_list_spec='@' # Tell ltmain to make .lib files, not .a files. libext=lib # Tell ltmain to make .dll files, not .so files. shrext_cmds=".dll" # FIXME: Setting linknames here is a bad hack. archive_cmds='$CC -o $output_objdir/$soname $libobjs $compiler_flags $deplibs -Wl,-dll~linknames=' archive_expsym_cmds='if test "x`$SED 1q $export_symbols`" = xEXPORTS; then sed -n -e 's/\\\\\\\(.*\\\\\\\)/-link\\\ -EXPORT:\\\\\\\1/' -e '1\\\!p' < $export_symbols > $output_objdir/$soname.exp; else sed -e 's/\\\\\\\(.*\\\\\\\)/-link\\\ -EXPORT:\\\\\\\1/' < $export_symbols > $output_objdir/$soname.exp; fi~ $CC -o $tool_output_objdir$soname $libobjs $compiler_flags $deplibs "@$tool_output_objdir$soname.exp" -Wl,-DLL,-IMPLIB:"$tool_output_objdir$libname.dll.lib"~ linknames=' # The linker will not automatically build a static lib if we build a DLL. # _LT_TAGVAR(old_archive_from_new_cmds, )='true' enable_shared_with_static_runtimes=yes exclude_expsyms='_NULL_IMPORT_DESCRIPTOR|_IMPORT_DESCRIPTOR_.*' export_symbols_cmds='$NM $libobjs $convenience | $global_symbol_pipe | $SED -e '\''/^[BCDGRS][ ]/s/.*[ ]\([^ ]*\)/\1,DATA/'\'' | $SED -e '\''/^[AITW][ ]/s/.*[ ]//'\'' | sort | uniq > $export_symbols' # Don't use ranlib old_postinstall_cmds='chmod 644 $oldlib' postlink_cmds='lt_outputfile="@OUTPUT@"~ lt_tool_outputfile="@TOOL_OUTPUT@"~ case $lt_outputfile in *.exe|*.EXE) ;; *) lt_outputfile="$lt_outputfile.exe" lt_tool_outputfile="$lt_tool_outputfile.exe" ;; esac~ if test "$MANIFEST_TOOL" != ":" && test -f "$lt_outputfile.manifest"; then $MANIFEST_TOOL -manifest "$lt_tool_outputfile.manifest" -outputresource:"$lt_tool_outputfile" || exit 1; $RM "$lt_outputfile.manifest"; fi' ;; *) # Assume MSVC wrapper hardcode_libdir_flag_spec=' ' allow_undefined_flag=unsupported # Tell ltmain to make .lib files, not .a files. libext=lib # Tell ltmain to make .dll files, not .so files. shrext_cmds=".dll" # FIXME: Setting linknames here is a bad hack. archive_cmds='$CC -o $lib $libobjs $compiler_flags `func_echo_all "$deplibs" | $SED '\''s/ -lc$//'\''` -link -dll~linknames=' # The linker will automatically build a .lib file if we build a DLL. old_archive_from_new_cmds='true' # FIXME: Should let the user specify the lib program. old_archive_cmds='lib -OUT:$oldlib$oldobjs$old_deplibs' enable_shared_with_static_runtimes=yes ;; esac ;; darwin* | rhapsody*) archive_cmds_need_lc=no hardcode_direct=no hardcode_automatic=yes hardcode_shlibpath_var=unsupported if test "$lt_cv_ld_force_load" = "yes"; then whole_archive_flag_spec='`for conv in $convenience\"\"; do test -n \"$conv\" && new_convenience=\"$new_convenience ${wl}-force_load,$conv\"; done; func_echo_all \"$new_convenience\"`' else whole_archive_flag_spec='' fi link_all_deplibs=yes allow_undefined_flag="$_lt_dar_allow_undefined" case $cc_basename in ifort*) _lt_dar_can_shared=yes ;; *) _lt_dar_can_shared=$GCC ;; esac if test "$_lt_dar_can_shared" = "yes"; then output_verbose_link_cmd=func_echo_all archive_cmds="\$CC -dynamiclib \$allow_undefined_flag -o \$lib \$libobjs \$deplibs \$compiler_flags -install_name \$rpath/\$soname \$verstring $_lt_dar_single_mod${_lt_dsymutil}" module_cmds="\$CC \$allow_undefined_flag -o \$lib -bundle \$libobjs \$deplibs \$compiler_flags${_lt_dsymutil}" archive_expsym_cmds="sed 's,^,_,' < \$export_symbols > \$output_objdir/\${libname}-symbols.expsym~\$CC -dynamiclib \$allow_undefined_flag -o \$lib \$libobjs \$deplibs \$compiler_flags -install_name \$rpath/\$soname \$verstring ${_lt_dar_single_mod}${_lt_dar_export_syms}${_lt_dsymutil}" module_expsym_cmds="sed -e 's,^,_,' < \$export_symbols > \$output_objdir/\${libname}-symbols.expsym~\$CC \$allow_undefined_flag -o \$lib -bundle \$libobjs \$deplibs \$compiler_flags${_lt_dar_export_syms}${_lt_dsymutil}" else ld_shlibs=no fi ;; dgux*) archive_cmds='$LD -G -h $soname -o $lib $libobjs $deplibs $linker_flags' hardcode_libdir_flag_spec='-L$libdir' hardcode_shlibpath_var=no ;; # FreeBSD 2.2.[012] allows us to include c++rt0.o to get C++ constructor # support. Future versions do this automatically, but an explicit c++rt0.o # does not break anything, and helps significantly (at the cost of a little # extra space). freebsd2.2*) archive_cmds='$LD -Bshareable -o $lib $libobjs $deplibs $linker_flags /usr/lib/c++rt0.o' hardcode_libdir_flag_spec='-R$libdir' hardcode_direct=yes hardcode_shlibpath_var=no ;; # Unfortunately, older versions of FreeBSD 2 do not have this feature. freebsd2.*) archive_cmds='$LD -Bshareable -o $lib $libobjs $deplibs $linker_flags' hardcode_direct=yes hardcode_minus_L=yes hardcode_shlibpath_var=no ;; # FreeBSD 3 and greater uses gcc -shared to do shared libraries. freebsd* | dragonfly*) archive_cmds='$CC -shared $pic_flag -o $lib $libobjs $deplibs $compiler_flags' hardcode_libdir_flag_spec='-R$libdir' hardcode_direct=yes hardcode_shlibpath_var=no ;; hpux9*) if test "$GCC" = yes; then archive_cmds='$RM $output_objdir/$soname~$CC -shared $pic_flag ${wl}+b ${wl}$install_libdir -o $output_objdir/$soname $libobjs $deplibs $compiler_flags~test $output_objdir/$soname = $lib || mv $output_objdir/$soname $lib' else archive_cmds='$RM $output_objdir/$soname~$LD -b +b $install_libdir -o $output_objdir/$soname $libobjs $deplibs $linker_flags~test $output_objdir/$soname = $lib || mv $output_objdir/$soname $lib' fi hardcode_libdir_flag_spec='${wl}+b ${wl}$libdir' hardcode_libdir_separator=: hardcode_direct=yes # hardcode_minus_L: Not really in the search PATH, # but as the default location of the library. hardcode_minus_L=yes export_dynamic_flag_spec='${wl}-E' ;; hpux10*) if test "$GCC" = yes && test "$with_gnu_ld" = no; then archive_cmds='$CC -shared $pic_flag ${wl}+h ${wl}$soname ${wl}+b ${wl}$install_libdir -o $lib $libobjs $deplibs $compiler_flags' else archive_cmds='$LD -b +h $soname +b $install_libdir -o $lib $libobjs $deplibs $linker_flags' fi if test "$with_gnu_ld" = no; then hardcode_libdir_flag_spec='${wl}+b ${wl}$libdir' hardcode_libdir_separator=: hardcode_direct=yes hardcode_direct_absolute=yes export_dynamic_flag_spec='${wl}-E' # hardcode_minus_L: Not really in the search PATH, # but as the default location of the library. hardcode_minus_L=yes fi ;; hpux11*) if test "$GCC" = yes && test "$with_gnu_ld" = no; then case $host_cpu in hppa*64*) archive_cmds='$CC -shared ${wl}+h ${wl}$soname -o $lib $libobjs $deplibs $compiler_flags' ;; ia64*) archive_cmds='$CC -shared $pic_flag ${wl}+h ${wl}$soname ${wl}+nodefaultrpath -o $lib $libobjs $deplibs $compiler_flags' ;; *) archive_cmds='$CC -shared $pic_flag ${wl}+h ${wl}$soname ${wl}+b ${wl}$install_libdir -o $lib $libobjs $deplibs $compiler_flags' ;; esac else case $host_cpu in hppa*64*) archive_cmds='$CC -b ${wl}+h ${wl}$soname -o $lib $libobjs $deplibs $compiler_flags' ;; ia64*) archive_cmds='$CC -b ${wl}+h ${wl}$soname ${wl}+nodefaultrpath -o $lib $libobjs $deplibs $compiler_flags' ;; *) # Older versions of the 11.00 compiler do not understand -b yet # (HP92453-01 A.11.01.20 doesn't, HP92453-01 B.11.X.35175-35176.GP does) { $as_echo "$as_me:${as_lineno-$LINENO}: checking if $CC understands -b" >&5 $as_echo_n "checking if $CC understands -b... " >&6; } if ${lt_cv_prog_compiler__b+:} false; then : $as_echo_n "(cached) " >&6 else lt_cv_prog_compiler__b=no save_LDFLAGS="$LDFLAGS" LDFLAGS="$LDFLAGS -b" echo "$lt_simple_link_test_code" > conftest.$ac_ext if (eval $ac_link 2>conftest.err) && test -s conftest$ac_exeext; then # The linker can only warn and ignore the option if not recognized # So say no if there are warnings if test -s conftest.err; then # Append any errors to the config.log. cat conftest.err 1>&5 $ECHO "$_lt_linker_boilerplate" | $SED '/^$/d' > conftest.exp $SED '/^$/d; /^ *+/d' conftest.err >conftest.er2 if diff conftest.exp conftest.er2 >/dev/null; then lt_cv_prog_compiler__b=yes fi else lt_cv_prog_compiler__b=yes fi fi $RM -r conftest* LDFLAGS="$save_LDFLAGS" fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $lt_cv_prog_compiler__b" >&5 $as_echo "$lt_cv_prog_compiler__b" >&6; } if test x"$lt_cv_prog_compiler__b" = xyes; then archive_cmds='$CC -b ${wl}+h ${wl}$soname ${wl}+b ${wl}$install_libdir -o $lib $libobjs $deplibs $compiler_flags' else archive_cmds='$LD -b +h $soname +b $install_libdir -o $lib $libobjs $deplibs $linker_flags' fi ;; esac fi if test "$with_gnu_ld" = no; then hardcode_libdir_flag_spec='${wl}+b ${wl}$libdir' hardcode_libdir_separator=: case $host_cpu in hppa*64*|ia64*) hardcode_direct=no hardcode_shlibpath_var=no ;; *) hardcode_direct=yes hardcode_direct_absolute=yes export_dynamic_flag_spec='${wl}-E' # hardcode_minus_L: Not really in the search PATH, # but as the default location of the library. hardcode_minus_L=yes ;; esac fi ;; irix5* | irix6* | nonstopux*) if test "$GCC" = yes; then archive_cmds='$CC -shared $pic_flag $libobjs $deplibs $compiler_flags ${wl}-soname ${wl}$soname `test -n "$verstring" && func_echo_all "${wl}-set_version ${wl}$verstring"` ${wl}-update_registry ${wl}${output_objdir}/so_locations -o $lib' # Try to use the -exported_symbol ld option, if it does not # work, assume that -exports_file does not work either and # implicitly export all symbols. # This should be the same for all languages, so no per-tag cache variable. { $as_echo "$as_me:${as_lineno-$LINENO}: checking whether the $host_os linker accepts -exported_symbol" >&5 $as_echo_n "checking whether the $host_os linker accepts -exported_symbol... " >&6; } if ${lt_cv_irix_exported_symbol+:} false; then : $as_echo_n "(cached) " >&6 else save_LDFLAGS="$LDFLAGS" LDFLAGS="$LDFLAGS -shared ${wl}-exported_symbol ${wl}foo ${wl}-update_registry ${wl}/dev/null" cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ int foo (void) { return 0; } _ACEOF if ac_fn_c_try_link "$LINENO"; then : lt_cv_irix_exported_symbol=yes else lt_cv_irix_exported_symbol=no fi rm -f core conftest.err conftest.$ac_objext \ conftest$ac_exeext conftest.$ac_ext LDFLAGS="$save_LDFLAGS" fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $lt_cv_irix_exported_symbol" >&5 $as_echo "$lt_cv_irix_exported_symbol" >&6; } if test "$lt_cv_irix_exported_symbol" = yes; then archive_expsym_cmds='$CC -shared $pic_flag $libobjs $deplibs $compiler_flags ${wl}-soname ${wl}$soname `test -n "$verstring" && func_echo_all "${wl}-set_version ${wl}$verstring"` ${wl}-update_registry ${wl}${output_objdir}/so_locations ${wl}-exports_file ${wl}$export_symbols -o $lib' fi else archive_cmds='$CC -shared $libobjs $deplibs $compiler_flags -soname $soname `test -n "$verstring" && func_echo_all "-set_version $verstring"` -update_registry ${output_objdir}/so_locations -o $lib' archive_expsym_cmds='$CC -shared $libobjs $deplibs $compiler_flags -soname $soname `test -n "$verstring" && func_echo_all "-set_version $verstring"` -update_registry ${output_objdir}/so_locations -exports_file $export_symbols -o $lib' fi archive_cmds_need_lc='no' hardcode_libdir_flag_spec='${wl}-rpath ${wl}$libdir' hardcode_libdir_separator=: inherit_rpath=yes link_all_deplibs=yes ;; netbsd* | netbsdelf*-gnu) if echo __ELF__ | $CC -E - | $GREP __ELF__ >/dev/null; then archive_cmds='$LD -Bshareable -o $lib $libobjs $deplibs $linker_flags' # a.out else archive_cmds='$LD -shared -o $lib $libobjs $deplibs $linker_flags' # ELF fi hardcode_libdir_flag_spec='-R$libdir' hardcode_direct=yes hardcode_shlibpath_var=no ;; newsos6) archive_cmds='$LD -G -h $soname -o $lib $libobjs $deplibs $linker_flags' hardcode_direct=yes hardcode_libdir_flag_spec='${wl}-rpath ${wl}$libdir' hardcode_libdir_separator=: hardcode_shlibpath_var=no ;; *nto* | *qnx*) ;; openbsd*) if test -f /usr/libexec/ld.so; then hardcode_direct=yes hardcode_shlibpath_var=no hardcode_direct_absolute=yes if test -z "`echo __ELF__ | $CC -E - | $GREP __ELF__`" || test "$host_os-$host_cpu" = "openbsd2.8-powerpc"; then archive_cmds='$CC -shared $pic_flag -o $lib $libobjs $deplibs $compiler_flags' archive_expsym_cmds='$CC -shared $pic_flag -o $lib $libobjs $deplibs $compiler_flags ${wl}-retain-symbols-file,$export_symbols' hardcode_libdir_flag_spec='${wl}-rpath,$libdir' export_dynamic_flag_spec='${wl}-E' else case $host_os in openbsd[01].* | openbsd2.[0-7] | openbsd2.[0-7].*) archive_cmds='$LD -Bshareable -o $lib $libobjs $deplibs $linker_flags' hardcode_libdir_flag_spec='-R$libdir' ;; *) archive_cmds='$CC -shared $pic_flag -o $lib $libobjs $deplibs $compiler_flags' hardcode_libdir_flag_spec='${wl}-rpath,$libdir' ;; esac fi else ld_shlibs=no fi ;; os2*) hardcode_libdir_flag_spec='-L$libdir' hardcode_minus_L=yes allow_undefined_flag=unsupported archive_cmds='$ECHO "LIBRARY $libname INITINSTANCE" > $output_objdir/$libname.def~$ECHO "DESCRIPTION \"$libname\"" >> $output_objdir/$libname.def~echo DATA >> $output_objdir/$libname.def~echo " SINGLE NONSHARED" >> $output_objdir/$libname.def~echo EXPORTS >> $output_objdir/$libname.def~emxexp $libobjs >> $output_objdir/$libname.def~$CC -Zdll -Zcrtdll -o $lib $libobjs $deplibs $compiler_flags $output_objdir/$libname.def' old_archive_from_new_cmds='emximp -o $output_objdir/$libname.a $output_objdir/$libname.def' ;; osf3*) if test "$GCC" = yes; then allow_undefined_flag=' ${wl}-expect_unresolved ${wl}\*' archive_cmds='$CC -shared${allow_undefined_flag} $libobjs $deplibs $compiler_flags ${wl}-soname ${wl}$soname `test -n "$verstring" && func_echo_all "${wl}-set_version ${wl}$verstring"` ${wl}-update_registry ${wl}${output_objdir}/so_locations -o $lib' else allow_undefined_flag=' -expect_unresolved \*' archive_cmds='$CC -shared${allow_undefined_flag} $libobjs $deplibs $compiler_flags -soname $soname `test -n "$verstring" && func_echo_all "-set_version $verstring"` -update_registry ${output_objdir}/so_locations -o $lib' fi archive_cmds_need_lc='no' hardcode_libdir_flag_spec='${wl}-rpath ${wl}$libdir' hardcode_libdir_separator=: ;; osf4* | osf5*) # as osf3* with the addition of -msym flag if test "$GCC" = yes; then allow_undefined_flag=' ${wl}-expect_unresolved ${wl}\*' archive_cmds='$CC -shared${allow_undefined_flag} $pic_flag $libobjs $deplibs $compiler_flags ${wl}-msym ${wl}-soname ${wl}$soname `test -n "$verstring" && func_echo_all "${wl}-set_version ${wl}$verstring"` ${wl}-update_registry ${wl}${output_objdir}/so_locations -o $lib' hardcode_libdir_flag_spec='${wl}-rpath ${wl}$libdir' else allow_undefined_flag=' -expect_unresolved \*' archive_cmds='$CC -shared${allow_undefined_flag} $libobjs $deplibs $compiler_flags -msym -soname $soname `test -n "$verstring" && func_echo_all "-set_version $verstring"` -update_registry ${output_objdir}/so_locations -o $lib' archive_expsym_cmds='for i in `cat $export_symbols`; do printf "%s %s\\n" -exported_symbol "\$i" >> $lib.exp; done; printf "%s\\n" "-hidden">> $lib.exp~ $CC -shared${allow_undefined_flag} ${wl}-input ${wl}$lib.exp $compiler_flags $libobjs $deplibs -soname $soname `test -n "$verstring" && $ECHO "-set_version $verstring"` -update_registry ${output_objdir}/so_locations -o $lib~$RM $lib.exp' # Both c and cxx compiler support -rpath directly hardcode_libdir_flag_spec='-rpath $libdir' fi archive_cmds_need_lc='no' hardcode_libdir_separator=: ;; solaris*) no_undefined_flag=' -z defs' if test "$GCC" = yes; then wlarc='${wl}' archive_cmds='$CC -shared $pic_flag ${wl}-z ${wl}text ${wl}-h ${wl}$soname -o $lib $libobjs $deplibs $compiler_flags' archive_expsym_cmds='echo "{ global:" > $lib.exp~cat $export_symbols | $SED -e "s/\(.*\)/\1;/" >> $lib.exp~echo "local: *; };" >> $lib.exp~ $CC -shared $pic_flag ${wl}-z ${wl}text ${wl}-M ${wl}$lib.exp ${wl}-h ${wl}$soname -o $lib $libobjs $deplibs $compiler_flags~$RM $lib.exp' else case `$CC -V 2>&1` in *"Compilers 5.0"*) wlarc='' archive_cmds='$LD -G${allow_undefined_flag} -h $soname -o $lib $libobjs $deplibs $linker_flags' archive_expsym_cmds='echo "{ global:" > $lib.exp~cat $export_symbols | $SED -e "s/\(.*\)/\1;/" >> $lib.exp~echo "local: *; };" >> $lib.exp~ $LD -G${allow_undefined_flag} -M $lib.exp -h $soname -o $lib $libobjs $deplibs $linker_flags~$RM $lib.exp' ;; *) wlarc='${wl}' archive_cmds='$CC -G${allow_undefined_flag} -h $soname -o $lib $libobjs $deplibs $compiler_flags' archive_expsym_cmds='echo "{ global:" > $lib.exp~cat $export_symbols | $SED -e "s/\(.*\)/\1;/" >> $lib.exp~echo "local: *; };" >> $lib.exp~ $CC -G${allow_undefined_flag} -M $lib.exp -h $soname -o $lib $libobjs $deplibs $compiler_flags~$RM $lib.exp' ;; esac fi hardcode_libdir_flag_spec='-R$libdir' hardcode_shlibpath_var=no case $host_os in solaris2.[0-5] | solaris2.[0-5].*) ;; *) # The compiler driver will combine and reorder linker options, # but understands `-z linker_flag'. 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then sys_lib_search_path_spec="/usr/lib/hpux32 /usr/local/lib/hpux32 /usr/local/lib" else sys_lib_search_path_spec="/usr/lib/hpux64 /usr/local/lib/hpux64" fi sys_lib_dlsearch_path_spec=$sys_lib_search_path_spec ;; hppa*64*) shrext_cmds='.sl' hardcode_into_libs=yes dynamic_linker="$host_os dld.sl" shlibpath_var=LD_LIBRARY_PATH # How should we handle SHLIB_PATH shlibpath_overrides_runpath=yes # Unless +noenvvar is specified. library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext}$major $libname${shared_ext}' soname_spec='${libname}${release}${shared_ext}$major' sys_lib_search_path_spec="/usr/lib/pa20_64 /usr/ccs/lib/pa20_64" sys_lib_dlsearch_path_spec=$sys_lib_search_path_spec ;; *) shrext_cmds='.sl' dynamic_linker="$host_os dld.sl" shlibpath_var=SHLIB_PATH shlibpath_overrides_runpath=no # +s is required to enable SHLIB_PATH library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext}$major $libname${shared_ext}' soname_spec='${libname}${release}${shared_ext}$major' ;; esac # HP-UX runs *really* slowly unless shared libraries are mode 555, ... postinstall_cmds='chmod 555 $lib' # or fails outright, so override atomically: install_override_mode=555 ;; interix[3-9]*) version_type=linux # correct to gnu/linux during the next big refactor need_lib_prefix=no need_version=no library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext}$major ${libname}${shared_ext}' soname_spec='${libname}${release}${shared_ext}$major' dynamic_linker='Interix 3.x ld.so.1 (PE, like ELF)' shlibpath_var=LD_LIBRARY_PATH shlibpath_overrides_runpath=no hardcode_into_libs=yes ;; irix5* | irix6* | nonstopux*) case $host_os in nonstopux*) version_type=nonstopux ;; *) if test "$lt_cv_prog_gnu_ld" = yes; then version_type=linux # correct to gnu/linux during the next big refactor else version_type=irix fi ;; esac need_lib_prefix=no need_version=no soname_spec='${libname}${release}${shared_ext}$major' library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext}$major ${libname}${release}${shared_ext} $libname${shared_ext}' case $host_os in irix5* | nonstopux*) libsuff= shlibsuff= ;; *) case $LD in # libtool.m4 will add one of these switches to LD *-32|*"-32 "|*-melf32bsmip|*"-melf32bsmip ") libsuff= shlibsuff= libmagic=32-bit;; *-n32|*"-n32 "|*-melf32bmipn32|*"-melf32bmipn32 ") libsuff=32 shlibsuff=N32 libmagic=N32;; *-64|*"-64 "|*-melf64bmip|*"-melf64bmip ") libsuff=64 shlibsuff=64 libmagic=64-bit;; *) libsuff= shlibsuff= libmagic=never-match;; esac ;; esac shlibpath_var=LD_LIBRARY${shlibsuff}_PATH shlibpath_overrides_runpath=no sys_lib_search_path_spec="/usr/lib${libsuff} /lib${libsuff} /usr/local/lib${libsuff}" sys_lib_dlsearch_path_spec="/usr/lib${libsuff} /lib${libsuff}" hardcode_into_libs=yes ;; # No shared lib support for Linux oldld, aout, or coff. linux*oldld* | linux*aout* | linux*coff*) dynamic_linker=no ;; # This must be glibc/ELF. linux* | k*bsd*-gnu | kopensolaris*-gnu) version_type=linux # correct to gnu/linux during the next big refactor need_lib_prefix=no need_version=no library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext}$major $libname${shared_ext}' soname_spec='${libname}${release}${shared_ext}$major' finish_cmds='PATH="\$PATH:/sbin" ldconfig -n $libdir' shlibpath_var=LD_LIBRARY_PATH shlibpath_overrides_runpath=no # Some binutils ld are patched to set DT_RUNPATH if ${lt_cv_shlibpath_overrides_runpath+:} false; then : $as_echo_n "(cached) " >&6 else lt_cv_shlibpath_overrides_runpath=no save_LDFLAGS=$LDFLAGS save_libdir=$libdir eval "libdir=/foo; wl=\"$lt_prog_compiler_wl\"; \ LDFLAGS=\"\$LDFLAGS $hardcode_libdir_flag_spec\"" cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ int main () { ; return 0; } _ACEOF if ac_fn_c_try_link "$LINENO"; then : if ($OBJDUMP -p conftest$ac_exeext) 2>/dev/null | grep "RUNPATH.*$libdir" >/dev/null; then : lt_cv_shlibpath_overrides_runpath=yes fi fi rm -f core conftest.err conftest.$ac_objext \ conftest$ac_exeext conftest.$ac_ext LDFLAGS=$save_LDFLAGS libdir=$save_libdir fi shlibpath_overrides_runpath=$lt_cv_shlibpath_overrides_runpath # This implies no fast_install, which is unacceptable. # Some rework will be needed to allow for fast_install # before this can be enabled. hardcode_into_libs=yes # Append ld.so.conf contents to the search path if test -f /etc/ld.so.conf; then lt_ld_extra=`awk '/^include / { system(sprintf("cd /etc; cat %s 2>/dev/null", \$2)); skip = 1; } { if (!skip) print \$0; skip = 0; }' < /etc/ld.so.conf | $SED -e 's/#.*//;/^[ ]*hwcap[ ]/d;s/[:, ]/ /g;s/=[^=]*$//;s/=[^= ]* / /g;s/"//g;/^$/d' | tr '\n' ' '` sys_lib_dlsearch_path_spec="/lib /usr/lib $lt_ld_extra" fi # We used to test for /lib/ld.so.1 and disable shared libraries on # powerpc, because MkLinux only supported shared libraries with the # GNU dynamic linker. Since this was broken with cross compilers, # most powerpc-linux boxes support dynamic linking these days and # people can always --disable-shared, the test was removed, and we # assume the GNU/Linux dynamic linker is in use. dynamic_linker='GNU/Linux ld.so' ;; netbsdelf*-gnu) version_type=linux need_lib_prefix=no need_version=no library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext}$major ${libname}${shared_ext}' soname_spec='${libname}${release}${shared_ext}$major' shlibpath_var=LD_LIBRARY_PATH shlibpath_overrides_runpath=no hardcode_into_libs=yes dynamic_linker='NetBSD ld.elf_so' ;; netbsd*) version_type=sunos need_lib_prefix=no need_version=no if echo __ELF__ | $CC -E - | $GREP __ELF__ >/dev/null; then library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${shared_ext}$versuffix' finish_cmds='PATH="\$PATH:/sbin" ldconfig -m $libdir' dynamic_linker='NetBSD (a.out) ld.so' else library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext}$major ${libname}${shared_ext}' soname_spec='${libname}${release}${shared_ext}$major' dynamic_linker='NetBSD ld.elf_so' fi shlibpath_var=LD_LIBRARY_PATH shlibpath_overrides_runpath=yes hardcode_into_libs=yes ;; newsos6) version_type=linux # correct to gnu/linux during the next big refactor library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext}$major $libname${shared_ext}' shlibpath_var=LD_LIBRARY_PATH shlibpath_overrides_runpath=yes ;; *nto* | *qnx*) version_type=qnx need_lib_prefix=no need_version=no library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext}$major $libname${shared_ext}' soname_spec='${libname}${release}${shared_ext}$major' shlibpath_var=LD_LIBRARY_PATH shlibpath_overrides_runpath=no hardcode_into_libs=yes dynamic_linker='ldqnx.so' ;; openbsd*) version_type=sunos sys_lib_dlsearch_path_spec="/usr/lib" need_lib_prefix=no # Some older versions of OpenBSD (3.3 at least) *do* need versioned libs. case $host_os in openbsd3.3 | openbsd3.3.*) need_version=yes ;; *) need_version=no ;; esac library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${shared_ext}$versuffix' finish_cmds='PATH="\$PATH:/sbin" ldconfig -m $libdir' shlibpath_var=LD_LIBRARY_PATH if test -z "`echo __ELF__ | $CC -E - | $GREP __ELF__`" || test "$host_os-$host_cpu" = "openbsd2.8-powerpc"; then case $host_os in openbsd2.[89] | openbsd2.[89].*) shlibpath_overrides_runpath=no ;; *) shlibpath_overrides_runpath=yes ;; esac else shlibpath_overrides_runpath=yes fi ;; os2*) libname_spec='$name' shrext_cmds=".dll" need_lib_prefix=no library_names_spec='$libname${shared_ext} $libname.a' dynamic_linker='OS/2 ld.exe' shlibpath_var=LIBPATH ;; osf3* | osf4* | osf5*) version_type=osf need_lib_prefix=no need_version=no soname_spec='${libname}${release}${shared_ext}$major' library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext}$major $libname${shared_ext}' shlibpath_var=LD_LIBRARY_PATH sys_lib_search_path_spec="/usr/shlib /usr/ccs/lib /usr/lib/cmplrs/cc /usr/lib /usr/local/lib /var/shlib" sys_lib_dlsearch_path_spec="$sys_lib_search_path_spec" ;; rdos*) dynamic_linker=no ;; solaris*) version_type=linux # correct to gnu/linux during the next big refactor need_lib_prefix=no need_version=no library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext}$major $libname${shared_ext}' soname_spec='${libname}${release}${shared_ext}$major' shlibpath_var=LD_LIBRARY_PATH shlibpath_overrides_runpath=yes hardcode_into_libs=yes # ldd complains unless libraries are executable postinstall_cmds='chmod +x $lib' ;; sunos4*) version_type=sunos library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${shared_ext}$versuffix' finish_cmds='PATH="\$PATH:/usr/etc" ldconfig $libdir' shlibpath_var=LD_LIBRARY_PATH shlibpath_overrides_runpath=yes if test "$with_gnu_ld" = yes; then need_lib_prefix=no fi need_version=yes ;; sysv4 | sysv4.3*) version_type=linux # correct to gnu/linux during the next big refactor library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext}$major $libname${shared_ext}' soname_spec='${libname}${release}${shared_ext}$major' shlibpath_var=LD_LIBRARY_PATH case $host_vendor in sni) shlibpath_overrides_runpath=no need_lib_prefix=no runpath_var=LD_RUN_PATH ;; siemens) need_lib_prefix=no ;; motorola) need_lib_prefix=no need_version=no shlibpath_overrides_runpath=no sys_lib_search_path_spec='/lib /usr/lib /usr/ccs/lib' ;; esac ;; sysv4*MP*) if test -d /usr/nec ;then version_type=linux # correct to gnu/linux during the next big refactor library_names_spec='$libname${shared_ext}.$versuffix $libname${shared_ext}.$major $libname${shared_ext}' soname_spec='$libname${shared_ext}.$major' shlibpath_var=LD_LIBRARY_PATH fi ;; sysv5* | sco3.2v5* | sco5v6* | unixware* | OpenUNIX* | sysv4*uw2*) version_type=freebsd-elf need_lib_prefix=no need_version=no library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext} $libname${shared_ext}' soname_spec='${libname}${release}${shared_ext}$major' shlibpath_var=LD_LIBRARY_PATH shlibpath_overrides_runpath=yes hardcode_into_libs=yes if test "$with_gnu_ld" = yes; then sys_lib_search_path_spec='/usr/local/lib /usr/gnu/lib /usr/ccs/lib /usr/lib /lib' else sys_lib_search_path_spec='/usr/ccs/lib /usr/lib' case $host_os in sco3.2v5*) sys_lib_search_path_spec="$sys_lib_search_path_spec /lib" ;; esac fi sys_lib_dlsearch_path_spec='/usr/lib' ;; tpf*) # TPF is a cross-target only. Preferred cross-host = GNU/Linux. version_type=linux # correct to gnu/linux during the next big refactor need_lib_prefix=no need_version=no library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext}$major $libname${shared_ext}' shlibpath_var=LD_LIBRARY_PATH shlibpath_overrides_runpath=no hardcode_into_libs=yes ;; uts4*) version_type=linux # correct to gnu/linux during the next big refactor library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext}$major $libname${shared_ext}' soname_spec='${libname}${release}${shared_ext}$major' shlibpath_var=LD_LIBRARY_PATH ;; *) dynamic_linker=no ;; esac { $as_echo "$as_me:${as_lineno-$LINENO}: result: $dynamic_linker" >&5 $as_echo "$dynamic_linker" >&6; } test "$dynamic_linker" = no && can_build_shared=no variables_saved_for_relink="PATH $shlibpath_var $runpath_var" if test "$GCC" = yes; then variables_saved_for_relink="$variables_saved_for_relink GCC_EXEC_PREFIX COMPILER_PATH LIBRARY_PATH" fi if test "${lt_cv_sys_lib_search_path_spec+set}" = set; then sys_lib_search_path_spec="$lt_cv_sys_lib_search_path_spec" fi if test "${lt_cv_sys_lib_dlsearch_path_spec+set}" = set; then sys_lib_dlsearch_path_spec="$lt_cv_sys_lib_dlsearch_path_spec" fi { $as_echo "$as_me:${as_lineno-$LINENO}: checking how to hardcode library paths into programs" >&5 $as_echo_n "checking how to hardcode library paths into programs... " >&6; } hardcode_action= if test -n "$hardcode_libdir_flag_spec" || test -n "$runpath_var" || test "X$hardcode_automatic" = "Xyes" ; then # We can hardcode non-existent directories. if test "$hardcode_direct" != no && # If the only mechanism to avoid hardcoding is shlibpath_var, we # have to relink, otherwise we might link with an installed library # when we should be linking with a yet-to-be-installed one ## test "$_LT_TAGVAR(hardcode_shlibpath_var, )" != no && test "$hardcode_minus_L" != no; then # Linking always hardcodes the temporary library directory. hardcode_action=relink else # We can link without hardcoding, and we can hardcode nonexisting dirs. hardcode_action=immediate fi else # We cannot hardcode anything, or else we can only hardcode existing # directories. hardcode_action=unsupported fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $hardcode_action" >&5 $as_echo "$hardcode_action" >&6; } if test "$hardcode_action" = relink || test "$inherit_rpath" = yes; then # Fast installation is not supported enable_fast_install=no elif test "$shlibpath_overrides_runpath" = yes || test "$enable_shared" = no; then # Fast installation is not necessary enable_fast_install=needless fi if test "x$enable_dlopen" != xyes; then enable_dlopen=unknown enable_dlopen_self=unknown enable_dlopen_self_static=unknown else lt_cv_dlopen=no lt_cv_dlopen_libs= case $host_os in beos*) lt_cv_dlopen="load_add_on" lt_cv_dlopen_libs= lt_cv_dlopen_self=yes ;; mingw* | pw32* | cegcc*) lt_cv_dlopen="LoadLibrary" lt_cv_dlopen_libs= ;; cygwin*) lt_cv_dlopen="dlopen" lt_cv_dlopen_libs= ;; darwin*) # if libdl is installed we need to link against it { $as_echo "$as_me:${as_lineno-$LINENO}: checking for dlopen in -ldl" >&5 $as_echo_n "checking for dlopen in -ldl... " >&6; } if ${ac_cv_lib_dl_dlopen+:} false; then : $as_echo_n "(cached) " >&6 else ac_check_lib_save_LIBS=$LIBS LIBS="-ldl $LIBS" cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ /* Override any GCC internal prototype to avoid an error. Use char because int might match the return type of a GCC builtin and then its argument prototype would still apply. */ #ifdef __cplusplus extern "C" #endif char dlopen (); int main () { return dlopen (); ; return 0; } _ACEOF if ac_fn_c_try_link "$LINENO"; then : ac_cv_lib_dl_dlopen=yes else ac_cv_lib_dl_dlopen=no fi rm -f core conftest.err conftest.$ac_objext \ conftest$ac_exeext conftest.$ac_ext LIBS=$ac_check_lib_save_LIBS fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_cv_lib_dl_dlopen" >&5 $as_echo "$ac_cv_lib_dl_dlopen" >&6; } if test "x$ac_cv_lib_dl_dlopen" = xyes; then : lt_cv_dlopen="dlopen" lt_cv_dlopen_libs="-ldl" else lt_cv_dlopen="dyld" lt_cv_dlopen_libs= lt_cv_dlopen_self=yes fi ;; *) ac_fn_c_check_func "$LINENO" "shl_load" "ac_cv_func_shl_load" if test "x$ac_cv_func_shl_load" = xyes; then : lt_cv_dlopen="shl_load" else { $as_echo "$as_me:${as_lineno-$LINENO}: checking for shl_load in -ldld" >&5 $as_echo_n "checking for shl_load in -ldld... " >&6; } if ${ac_cv_lib_dld_shl_load+:} false; then : $as_echo_n "(cached) " >&6 else ac_check_lib_save_LIBS=$LIBS LIBS="-ldld $LIBS" cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ /* Override any GCC internal prototype to avoid an error. Use char because int might match the return type of a GCC builtin and then its argument prototype would still apply. */ #ifdef __cplusplus extern "C" #endif char shl_load (); int main () { return shl_load (); ; return 0; } _ACEOF if ac_fn_c_try_link "$LINENO"; then : ac_cv_lib_dld_shl_load=yes else ac_cv_lib_dld_shl_load=no fi rm -f core conftest.err conftest.$ac_objext \ conftest$ac_exeext conftest.$ac_ext LIBS=$ac_check_lib_save_LIBS fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_cv_lib_dld_shl_load" >&5 $as_echo "$ac_cv_lib_dld_shl_load" >&6; } if test "x$ac_cv_lib_dld_shl_load" = xyes; then : lt_cv_dlopen="shl_load" lt_cv_dlopen_libs="-ldld" else ac_fn_c_check_func "$LINENO" "dlopen" "ac_cv_func_dlopen" if test "x$ac_cv_func_dlopen" = xyes; then : lt_cv_dlopen="dlopen" else { $as_echo "$as_me:${as_lineno-$LINENO}: checking for dlopen in -ldl" >&5 $as_echo_n "checking for dlopen in -ldl... " >&6; } if ${ac_cv_lib_dl_dlopen+:} false; then : $as_echo_n "(cached) " >&6 else ac_check_lib_save_LIBS=$LIBS LIBS="-ldl $LIBS" cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ /* Override any GCC internal prototype to avoid an error. Use char because int might match the return type of a GCC builtin and then its argument prototype would still apply. */ #ifdef __cplusplus extern "C" #endif char dlopen (); int main () { return dlopen (); ; return 0; } _ACEOF if ac_fn_c_try_link "$LINENO"; then : ac_cv_lib_dl_dlopen=yes else ac_cv_lib_dl_dlopen=no fi rm -f core conftest.err conftest.$ac_objext \ conftest$ac_exeext conftest.$ac_ext LIBS=$ac_check_lib_save_LIBS fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_cv_lib_dl_dlopen" >&5 $as_echo "$ac_cv_lib_dl_dlopen" >&6; } if test "x$ac_cv_lib_dl_dlopen" = xyes; then : lt_cv_dlopen="dlopen" lt_cv_dlopen_libs="-ldl" else { $as_echo "$as_me:${as_lineno-$LINENO}: checking for dlopen in -lsvld" >&5 $as_echo_n "checking for dlopen in -lsvld... " >&6; } if ${ac_cv_lib_svld_dlopen+:} false; then : $as_echo_n "(cached) " >&6 else ac_check_lib_save_LIBS=$LIBS LIBS="-lsvld $LIBS" cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ /* Override any GCC internal prototype to avoid an error. Use char because int might match the return type of a GCC builtin and then its argument prototype would still apply. */ #ifdef __cplusplus extern "C" #endif char dlopen (); int main () { return dlopen (); ; return 0; } _ACEOF if ac_fn_c_try_link "$LINENO"; then : ac_cv_lib_svld_dlopen=yes else ac_cv_lib_svld_dlopen=no fi rm -f core conftest.err conftest.$ac_objext \ conftest$ac_exeext conftest.$ac_ext LIBS=$ac_check_lib_save_LIBS fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_cv_lib_svld_dlopen" >&5 $as_echo "$ac_cv_lib_svld_dlopen" >&6; } if test "x$ac_cv_lib_svld_dlopen" = xyes; then : lt_cv_dlopen="dlopen" lt_cv_dlopen_libs="-lsvld" else { $as_echo "$as_me:${as_lineno-$LINENO}: checking for dld_link in -ldld" >&5 $as_echo_n "checking for dld_link in -ldld... " >&6; } if ${ac_cv_lib_dld_dld_link+:} false; then : $as_echo_n "(cached) " >&6 else ac_check_lib_save_LIBS=$LIBS LIBS="-ldld $LIBS" cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ /* Override any GCC internal prototype to avoid an error. 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But MiNT is downward compatible to TOS, so this should # be no problem. atarist[e]:*MiNT:*:* | atarist[e]:*mint:*:* | atarist[e]:*TOS:*:*) echo m68k-atari-mint${UNAME_RELEASE} exit ;; atari*:*MiNT:*:* | atari*:*mint:*:* | atarist[e]:*TOS:*:*) echo m68k-atari-mint${UNAME_RELEASE} exit ;; *falcon*:*MiNT:*:* | *falcon*:*mint:*:* | *falcon*:*TOS:*:*) echo m68k-atari-mint${UNAME_RELEASE} exit ;; milan*:*MiNT:*:* | milan*:*mint:*:* | *milan*:*TOS:*:*) echo m68k-milan-mint${UNAME_RELEASE} exit ;; hades*:*MiNT:*:* | hades*:*mint:*:* | *hades*:*TOS:*:*) echo m68k-hades-mint${UNAME_RELEASE} exit ;; *:*MiNT:*:* | *:*mint:*:* | *:*TOS:*:*) echo m68k-unknown-mint${UNAME_RELEASE} exit ;; m68k:machten:*:*) echo m68k-apple-machten${UNAME_RELEASE} exit ;; powerpc:machten:*:*) echo powerpc-apple-machten${UNAME_RELEASE} exit ;; RISC*:Mach:*:*) echo mips-dec-mach_bsd4.3 exit ;; RISC*:ULTRIX:*:*) echo mips-dec-ultrix${UNAME_RELEASE} exit ;; VAX*:ULTRIX*:*:*) echo vax-dec-ultrix${UNAME_RELEASE} exit ;; 2020:CLIX:*:* | 2430:CLIX:*:*) echo clipper-intergraph-clix${UNAME_RELEASE} exit ;; mips:*:*:UMIPS | mips:*:*:RISCos) eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #ifdef __cplusplus #include <stdio.h> /* for printf() prototype */ int main (int argc, char *argv[]) { #else int main (argc, argv) int argc; char *argv[]; { #endif #if defined (host_mips) && defined (MIPSEB) #if defined (SYSTYPE_SYSV) printf ("mips-mips-riscos%ssysv\n", argv[1]); exit (0); #endif #if defined (SYSTYPE_SVR4) printf ("mips-mips-riscos%ssvr4\n", argv[1]); exit (0); #endif #if defined (SYSTYPE_BSD43) || defined(SYSTYPE_BSD) printf ("mips-mips-riscos%sbsd\n", argv[1]); exit (0); #endif #endif exit (-1); } EOF $CC_FOR_BUILD -o $dummy $dummy.c && dummyarg=`echo "${UNAME_RELEASE}" | sed -n 's/\([0-9]*\).*/\1/p'` && SYSTEM_NAME=`$dummy $dummyarg` && { echo "$SYSTEM_NAME"; exit; } echo mips-mips-riscos${UNAME_RELEASE} exit ;; Motorola:PowerMAX_OS:*:*) echo powerpc-motorola-powermax exit ;; Motorola:*:4.3:PL8-*) echo powerpc-harris-powermax exit ;; Night_Hawk:*:*:PowerMAX_OS | Synergy:PowerMAX_OS:*:*) echo powerpc-harris-powermax exit ;; Night_Hawk:Power_UNIX:*:*) echo powerpc-harris-powerunix exit ;; m88k:CX/UX:7*:*) echo m88k-harris-cxux7 exit ;; m88k:*:4*:R4*) echo m88k-motorola-sysv4 exit ;; m88k:*:3*:R3*) echo m88k-motorola-sysv3 exit ;; AViiON:dgux:*:*) # DG/UX returns AViiON for all architectures UNAME_PROCESSOR=`/usr/bin/uname -p` if [ $UNAME_PROCESSOR = mc88100 ] || [ $UNAME_PROCESSOR = mc88110 ] then if [ ${TARGET_BINARY_INTERFACE}x = m88kdguxelfx ] || \ [ ${TARGET_BINARY_INTERFACE}x = x ] then echo m88k-dg-dgux${UNAME_RELEASE} else echo m88k-dg-dguxbcs${UNAME_RELEASE} fi else echo i586-dg-dgux${UNAME_RELEASE} fi exit ;; M88*:DolphinOS:*:*) # DolphinOS (SVR3) echo m88k-dolphin-sysv3 exit ;; M88*:*:R3*:*) # Delta 88k system running SVR3 echo m88k-motorola-sysv3 exit ;; XD88*:*:*:*) # Tektronix XD88 system running UTekV (SVR3) echo m88k-tektronix-sysv3 exit ;; Tek43[0-9][0-9]:UTek:*:*) # Tektronix 4300 system running UTek (BSD) echo m68k-tektronix-bsd exit ;; *:IRIX*:*:*) echo mips-sgi-irix`echo ${UNAME_RELEASE}|sed -e 's/-/_/g'` exit ;; ????????:AIX?:[12].1:2) # AIX 2.2.1 or AIX 2.1.1 is RT/PC AIX. echo romp-ibm-aix # uname -m gives an 8 hex-code CPU id exit ;; # Note that: echo "'`uname -s`'" gives 'AIX ' i*86:AIX:*:*) echo i386-ibm-aix exit ;; ia64:AIX:*:*) if [ -x /usr/bin/oslevel ] ; then IBM_REV=`/usr/bin/oslevel` else IBM_REV=${UNAME_VERSION}.${UNAME_RELEASE} fi echo ${UNAME_MACHINE}-ibm-aix${IBM_REV} exit ;; *:AIX:2:3) if grep bos325 /usr/include/stdio.h >/dev/null 2>&1; then eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #include <sys/systemcfg.h> main() { if (!__power_pc()) exit(1); puts("powerpc-ibm-aix3.2.5"); exit(0); } EOF if $CC_FOR_BUILD -o $dummy $dummy.c && SYSTEM_NAME=`$dummy` then echo "$SYSTEM_NAME" else echo rs6000-ibm-aix3.2.5 fi elif grep bos324 /usr/include/stdio.h >/dev/null 2>&1; then echo rs6000-ibm-aix3.2.4 else echo rs6000-ibm-aix3.2 fi exit ;; *:AIX:*:[4567]) IBM_CPU_ID=`/usr/sbin/lsdev -C -c processor -S available | sed 1q | awk '{ print $1 }'` if /usr/sbin/lsattr -El ${IBM_CPU_ID} | grep ' POWER' >/dev/null 2>&1; then IBM_ARCH=rs6000 else IBM_ARCH=powerpc fi if [ -x /usr/bin/oslevel ] ; then IBM_REV=`/usr/bin/oslevel` else IBM_REV=${UNAME_VERSION}.${UNAME_RELEASE} fi echo ${IBM_ARCH}-ibm-aix${IBM_REV} exit ;; *:AIX:*:*) echo rs6000-ibm-aix exit ;; ibmrt:4.4BSD:*|romp-ibm:BSD:*) echo romp-ibm-bsd4.4 exit ;; ibmrt:*BSD:*|romp-ibm:BSD:*) # covers RT/PC BSD and echo romp-ibm-bsd${UNAME_RELEASE} # 4.3 with uname added to exit ;; # report: romp-ibm BSD 4.3 *:BOSX:*:*) echo rs6000-bull-bosx exit ;; DPX/2?00:B.O.S.:*:*) echo m68k-bull-sysv3 exit ;; 9000/[34]??:4.3bsd:1.*:*) echo m68k-hp-bsd exit ;; hp300:4.4BSD:*:* | 9000/[34]??:4.3bsd:2.*:*) echo m68k-hp-bsd4.4 exit ;; 9000/[34678]??:HP-UX:*:*) HPUX_REV=`echo ${UNAME_RELEASE}|sed -e 's/[^.]*.[0B]*//'` case "${UNAME_MACHINE}" in 9000/31? ) HP_ARCH=m68000 ;; 9000/[34]?? ) HP_ARCH=m68k ;; 9000/[678][0-9][0-9]) if [ -x /usr/bin/getconf ]; then sc_cpu_version=`/usr/bin/getconf SC_CPU_VERSION 2>/dev/null` sc_kernel_bits=`/usr/bin/getconf SC_KERNEL_BITS 2>/dev/null` case "${sc_cpu_version}" in 523) HP_ARCH="hppa1.0" ;; # CPU_PA_RISC1_0 528) HP_ARCH="hppa1.1" ;; # CPU_PA_RISC1_1 532) # CPU_PA_RISC2_0 case "${sc_kernel_bits}" in 32) HP_ARCH="hppa2.0n" ;; 64) HP_ARCH="hppa2.0w" ;; '') HP_ARCH="hppa2.0" ;; # HP-UX 10.20 esac ;; esac fi if [ "${HP_ARCH}" = "" ]; then eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #define _HPUX_SOURCE #include <stdlib.h> #include <unistd.h> int main () { #if defined(_SC_KERNEL_BITS) long bits = sysconf(_SC_KERNEL_BITS); #endif long cpu = sysconf (_SC_CPU_VERSION); switch (cpu) { case CPU_PA_RISC1_0: puts ("hppa1.0"); break; case CPU_PA_RISC1_1: puts ("hppa1.1"); break; case CPU_PA_RISC2_0: #if defined(_SC_KERNEL_BITS) switch (bits) { case 64: puts ("hppa2.0w"); break; case 32: puts ("hppa2.0n"); break; default: puts ("hppa2.0"); break; } break; #else /* !defined(_SC_KERNEL_BITS) */ puts ("hppa2.0"); break; #endif default: puts ("hppa1.0"); break; } exit (0); } EOF (CCOPTS= $CC_FOR_BUILD -o $dummy $dummy.c 2>/dev/null) && HP_ARCH=`$dummy` test -z "$HP_ARCH" && HP_ARCH=hppa fi ;; esac if [ ${HP_ARCH} = "hppa2.0w" ] then eval $set_cc_for_build # hppa2.0w-hp-hpux* has a 64-bit kernel and a compiler generating # 32-bit code. hppa64-hp-hpux* has the same kernel and a compiler # generating 64-bit code. GNU and HP use different nomenclature: # # $ CC_FOR_BUILD=cc ./config.guess # => hppa2.0w-hp-hpux11.23 # $ CC_FOR_BUILD="cc +DA2.0w" ./config.guess # => hppa64-hp-hpux11.23 if echo __LP64__ | (CCOPTS= $CC_FOR_BUILD -E - 2>/dev/null) | grep -q __LP64__ then HP_ARCH="hppa2.0w" else HP_ARCH="hppa64" fi fi echo ${HP_ARCH}-hp-hpux${HPUX_REV} exit ;; ia64:HP-UX:*:*) HPUX_REV=`echo ${UNAME_RELEASE}|sed -e 's/[^.]*.[0B]*//'` echo ia64-hp-hpux${HPUX_REV} exit ;; 3050*:HI-UX:*:*) eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #include <unistd.h> int main () { long cpu = sysconf (_SC_CPU_VERSION); /* The order matters, because CPU_IS_HP_MC68K erroneously returns true for CPU_PA_RISC1_0. CPU_IS_PA_RISC returns correct results, however. */ if (CPU_IS_PA_RISC (cpu)) { switch (cpu) { case CPU_PA_RISC1_0: puts ("hppa1.0-hitachi-hiuxwe2"); break; case CPU_PA_RISC1_1: puts ("hppa1.1-hitachi-hiuxwe2"); break; case CPU_PA_RISC2_0: puts ("hppa2.0-hitachi-hiuxwe2"); break; default: puts ("hppa-hitachi-hiuxwe2"); break; } } else if (CPU_IS_HP_MC68K (cpu)) puts ("m68k-hitachi-hiuxwe2"); else puts ("unknown-hitachi-hiuxwe2"); exit (0); } EOF $CC_FOR_BUILD -o $dummy $dummy.c && SYSTEM_NAME=`$dummy` && { echo "$SYSTEM_NAME"; exit; } echo unknown-hitachi-hiuxwe2 exit ;; 9000/7??:4.3bsd:*:* | 9000/8?[79]:4.3bsd:*:* ) echo hppa1.1-hp-bsd exit ;; 9000/8??:4.3bsd:*:*) echo hppa1.0-hp-bsd exit ;; *9??*:MPE/iX:*:* | *3000*:MPE/iX:*:*) echo hppa1.0-hp-mpeix exit ;; hp7??:OSF1:*:* | hp8?[79]:OSF1:*:* ) echo hppa1.1-hp-osf exit ;; hp8??:OSF1:*:*) echo hppa1.0-hp-osf exit ;; i*86:OSF1:*:*) if [ -x /usr/sbin/sysversion ] ; then echo ${UNAME_MACHINE}-unknown-osf1mk else echo ${UNAME_MACHINE}-unknown-osf1 fi exit ;; parisc*:Lites*:*:*) echo hppa1.1-hp-lites exit ;; C1*:ConvexOS:*:* | convex:ConvexOS:C1*:*) echo c1-convex-bsd exit ;; C2*:ConvexOS:*:* | convex:ConvexOS:C2*:*) if getsysinfo -f scalar_acc then echo c32-convex-bsd else echo c2-convex-bsd fi exit ;; C34*:ConvexOS:*:* | convex:ConvexOS:C34*:*) echo c34-convex-bsd exit ;; C38*:ConvexOS:*:* | convex:ConvexOS:C38*:*) echo c38-convex-bsd exit ;; C4*:ConvexOS:*:* | convex:ConvexOS:C4*:*) echo c4-convex-bsd exit ;; CRAY*Y-MP:*:*:*) echo ymp-cray-unicos${UNAME_RELEASE} | sed -e 's/\.[^.]*$/.X/' exit ;; CRAY*[A-Z]90:*:*:*) echo ${UNAME_MACHINE}-cray-unicos${UNAME_RELEASE} \ | sed -e 's/CRAY.*\([A-Z]90\)/\1/' \ -e y/ABCDEFGHIJKLMNOPQRSTUVWXYZ/abcdefghijklmnopqrstuvwxyz/ \ -e 's/\.[^.]*$/.X/' exit ;; CRAY*TS:*:*:*) echo t90-cray-unicos${UNAME_RELEASE} | sed -e 's/\.[^.]*$/.X/' exit ;; CRAY*T3E:*:*:*) echo alphaev5-cray-unicosmk${UNAME_RELEASE} | sed -e 's/\.[^.]*$/.X/' exit ;; CRAY*SV1:*:*:*) echo sv1-cray-unicos${UNAME_RELEASE} | sed -e 's/\.[^.]*$/.X/' exit ;; *:UNICOS/mp:*:*) echo craynv-cray-unicosmp${UNAME_RELEASE} | sed -e 's/\.[^.]*$/.X/' exit ;; F30[01]:UNIX_System_V:*:* | F700:UNIX_System_V:*:*) FUJITSU_PROC=`uname -m | tr 'ABCDEFGHIJKLMNOPQRSTUVWXYZ' 'abcdefghijklmnopqrstuvwxyz'` FUJITSU_SYS=`uname -p | tr 'ABCDEFGHIJKLMNOPQRSTUVWXYZ' 'abcdefghijklmnopqrstuvwxyz' | sed -e 's/\///'` FUJITSU_REL=`echo ${UNAME_RELEASE} | sed -e 's/ /_/'` echo "${FUJITSU_PROC}-fujitsu-${FUJITSU_SYS}${FUJITSU_REL}" exit ;; 5000:UNIX_System_V:4.*:*) FUJITSU_SYS=`uname -p | tr 'ABCDEFGHIJKLMNOPQRSTUVWXYZ' 'abcdefghijklmnopqrstuvwxyz' | sed -e 's/\///'` FUJITSU_REL=`echo ${UNAME_RELEASE} | tr 'ABCDEFGHIJKLMNOPQRSTUVWXYZ' 'abcdefghijklmnopqrstuvwxyz' | sed -e 's/ /_/'` echo "sparc-fujitsu-${FUJITSU_SYS}${FUJITSU_REL}" exit ;; i*86:BSD/386:*:* | i*86:BSD/OS:*:* | *:Ascend\ Embedded/OS:*:*) echo ${UNAME_MACHINE}-pc-bsdi${UNAME_RELEASE} exit ;; sparc*:BSD/OS:*:*) echo sparc-unknown-bsdi${UNAME_RELEASE} exit ;; *:BSD/OS:*:*) echo ${UNAME_MACHINE}-unknown-bsdi${UNAME_RELEASE} exit ;; *:FreeBSD:*:*) UNAME_PROCESSOR=`/usr/bin/uname -p` case ${UNAME_PROCESSOR} in amd64) echo x86_64-unknown-freebsd`echo ${UNAME_RELEASE}|sed -e 's/[-(].*//'` ;; *) echo ${UNAME_PROCESSOR}-unknown-freebsd`echo ${UNAME_RELEASE}|sed -e 's/[-(].*//'` ;; esac exit ;; i*:CYGWIN*:*) echo ${UNAME_MACHINE}-pc-cygwin exit ;; *:MINGW64*:*) echo ${UNAME_MACHINE}-pc-mingw64 exit ;; *:MINGW*:*) echo ${UNAME_MACHINE}-pc-mingw32 exit ;; i*:MSYS*:*) echo ${UNAME_MACHINE}-pc-msys exit ;; i*:windows32*:*) # uname -m includes "-pc" on this system. echo ${UNAME_MACHINE}-mingw32 exit ;; i*:PW*:*) echo ${UNAME_MACHINE}-pc-pw32 exit ;; *:Interix*:*) case ${UNAME_MACHINE} in x86) echo i586-pc-interix${UNAME_RELEASE} exit ;; authenticamd | genuineintel | EM64T) echo x86_64-unknown-interix${UNAME_RELEASE} exit ;; IA64) echo ia64-unknown-interix${UNAME_RELEASE} exit ;; esac ;; [345]86:Windows_95:* | [345]86:Windows_98:* | [345]86:Windows_NT:*) echo i${UNAME_MACHINE}-pc-mks exit ;; 8664:Windows_NT:*) echo x86_64-pc-mks exit ;; i*:Windows_NT*:* | Pentium*:Windows_NT*:*) # How do we know it's Interix rather than the generic POSIX subsystem? # It also conflicts with pre-2.0 versions of AT&T UWIN. Should we # UNAME_MACHINE based on the output of uname instead of i386? echo i586-pc-interix exit ;; i*:UWIN*:*) echo ${UNAME_MACHINE}-pc-uwin exit ;; amd64:CYGWIN*:*:* | x86_64:CYGWIN*:*:*) echo x86_64-unknown-cygwin exit ;; p*:CYGWIN*:*) echo powerpcle-unknown-cygwin exit ;; prep*:SunOS:5.*:*) echo powerpcle-unknown-solaris2`echo ${UNAME_RELEASE}|sed -e 's/[^.]*//'` exit ;; *:GNU:*:*) # the GNU system echo `echo ${UNAME_MACHINE}|sed -e 's,[-/].*$,,'`-unknown-${LIBC}`echo ${UNAME_RELEASE}|sed -e 's,/.*$,,'` exit ;; *:GNU/*:*:*) # other systems with GNU libc and userland echo ${UNAME_MACHINE}-unknown-`echo ${UNAME_SYSTEM} | sed 's,^[^/]*/,,' | tr '[A-Z]' '[a-z]'``echo ${UNAME_RELEASE}|sed -e 's/[-(].*//'`-${LIBC} exit ;; i*86:Minix:*:*) echo ${UNAME_MACHINE}-pc-minix exit ;; aarch64:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; aarch64_be:Linux:*:*) UNAME_MACHINE=aarch64_be echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; alpha:Linux:*:*) case `sed -n '/^cpu model/s/^.*: \(.*\)/\1/p' < /proc/cpuinfo` in EV5) UNAME_MACHINE=alphaev5 ;; EV56) UNAME_MACHINE=alphaev56 ;; PCA56) UNAME_MACHINE=alphapca56 ;; PCA57) UNAME_MACHINE=alphapca56 ;; EV6) UNAME_MACHINE=alphaev6 ;; EV67) UNAME_MACHINE=alphaev67 ;; EV68*) UNAME_MACHINE=alphaev68 ;; esac objdump --private-headers /bin/sh | grep -q ld.so.1 if test "$?" = 0 ; then LIBC="gnulibc1" ; fi echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; arc:Linux:*:* | arceb:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; arm*:Linux:*:*) eval $set_cc_for_build if echo __ARM_EABI__ | $CC_FOR_BUILD -E - 2>/dev/null \ | grep -q __ARM_EABI__ then echo ${UNAME_MACHINE}-unknown-linux-${LIBC} else if echo __ARM_PCS_VFP | $CC_FOR_BUILD -E - 2>/dev/null \ | grep -q __ARM_PCS_VFP then echo ${UNAME_MACHINE}-unknown-linux-${LIBC}eabi else echo ${UNAME_MACHINE}-unknown-linux-${LIBC}eabihf fi fi exit ;; avr32*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; cris:Linux:*:*) echo ${UNAME_MACHINE}-axis-linux-${LIBC} exit ;; crisv32:Linux:*:*) echo ${UNAME_MACHINE}-axis-linux-${LIBC} exit ;; frv:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; hexagon:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; i*86:Linux:*:*) echo ${UNAME_MACHINE}-pc-linux-${LIBC} exit ;; ia64:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; m32r*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; m68*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; mips:Linux:*:* | mips64:Linux:*:*) eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #undef CPU #undef ${UNAME_MACHINE} #undef ${UNAME_MACHINE}el #if defined(__MIPSEL__) || defined(__MIPSEL) || defined(_MIPSEL) || defined(MIPSEL) CPU=${UNAME_MACHINE}el #else #if defined(__MIPSEB__) || defined(__MIPSEB) || defined(_MIPSEB) || defined(MIPSEB) CPU=${UNAME_MACHINE} #else CPU= #endif #endif EOF eval `$CC_FOR_BUILD -E $dummy.c 2>/dev/null | grep '^CPU'` test x"${CPU}" != x && { echo "${CPU}-unknown-linux-${LIBC}"; exit; } ;; or1k:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; or32:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; padre:Linux:*:*) echo sparc-unknown-linux-${LIBC} exit ;; parisc64:Linux:*:* | hppa64:Linux:*:*) echo hppa64-unknown-linux-${LIBC} exit ;; parisc:Linux:*:* | hppa:Linux:*:*) # Look for CPU level case `grep '^cpu[^a-z]*:' /proc/cpuinfo 2>/dev/null | cut -d' ' -f2` in PA7*) echo hppa1.1-unknown-linux-${LIBC} ;; PA8*) echo hppa2.0-unknown-linux-${LIBC} ;; *) echo hppa-unknown-linux-${LIBC} ;; esac exit ;; ppc64:Linux:*:*) echo powerpc64-unknown-linux-${LIBC} exit ;; ppc:Linux:*:*) echo powerpc-unknown-linux-${LIBC} exit ;; ppc64le:Linux:*:*) echo powerpc64le-unknown-linux-${LIBC} exit ;; ppcle:Linux:*:*) echo powerpcle-unknown-linux-${LIBC} exit ;; s390:Linux:*:* | s390x:Linux:*:*) echo ${UNAME_MACHINE}-ibm-linux-${LIBC} exit ;; sh64*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; sh*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; sparc:Linux:*:* | sparc64:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; tile*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; vax:Linux:*:*) echo ${UNAME_MACHINE}-dec-linux-${LIBC} exit ;; x86_64:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; xtensa*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-${LIBC} exit ;; i*86:DYNIX/ptx:4*:*) # ptx 4.0 does uname -s correctly, with DYNIX/ptx in there. # earlier versions are messed up and put the nodename in both # sysname and nodename. echo i386-sequent-sysv4 exit ;; i*86:UNIX_SV:4.2MP:2.*) # Unixware is an offshoot of SVR4, but it has its own version # number series starting with 2... # I am not positive that other SVR4 systems won't match this, # I just have to hope. -- rms. # Use sysv4.2uw... so that sysv4* matches it. echo ${UNAME_MACHINE}-pc-sysv4.2uw${UNAME_VERSION} exit ;; i*86:OS/2:*:*) # If we were able to find `uname', then EMX Unix compatibility # is probably installed. echo ${UNAME_MACHINE}-pc-os2-emx exit ;; i*86:XTS-300:*:STOP) echo ${UNAME_MACHINE}-unknown-stop exit ;; i*86:atheos:*:*) echo ${UNAME_MACHINE}-unknown-atheos exit ;; i*86:syllable:*:*) echo ${UNAME_MACHINE}-pc-syllable exit ;; i*86:LynxOS:2.*:* | i*86:LynxOS:3.[01]*:* | i*86:LynxOS:4.[02]*:*) echo i386-unknown-lynxos${UNAME_RELEASE} exit ;; i*86:*DOS:*:*) echo ${UNAME_MACHINE}-pc-msdosdjgpp exit ;; i*86:*:4.*:* | i*86:SYSTEM_V:4.*:*) UNAME_REL=`echo ${UNAME_RELEASE} | sed 's/\/MP$//'` if grep Novell /usr/include/link.h >/dev/null 2>/dev/null; then echo ${UNAME_MACHINE}-univel-sysv${UNAME_REL} else echo ${UNAME_MACHINE}-pc-sysv${UNAME_REL} fi exit ;; i*86:*:5:[678]*) # UnixWare 7.x, OpenUNIX and OpenServer 6. case `/bin/uname -X | grep "^Machine"` in *486*) UNAME_MACHINE=i486 ;; *Pentium) UNAME_MACHINE=i586 ;; *Pent*|*Celeron) UNAME_MACHINE=i686 ;; esac echo ${UNAME_MACHINE}-unknown-sysv${UNAME_RELEASE}${UNAME_SYSTEM}${UNAME_VERSION} exit ;; i*86:*:3.2:*) if test -f /usr/options/cb.name; then UNAME_REL=`sed -n 's/.*Version //p' </usr/options/cb.name` echo ${UNAME_MACHINE}-pc-isc$UNAME_REL elif /bin/uname -X 2>/dev/null >/dev/null ; then UNAME_REL=`(/bin/uname -X|grep Release|sed -e 's/.*= //')` (/bin/uname -X|grep i80486 >/dev/null) && UNAME_MACHINE=i486 (/bin/uname -X|grep '^Machine.*Pentium' >/dev/null) \ && UNAME_MACHINE=i586 (/bin/uname -X|grep '^Machine.*Pent *II' >/dev/null) \ && UNAME_MACHINE=i686 (/bin/uname -X|grep '^Machine.*Pentium Pro' >/dev/null) \ && UNAME_MACHINE=i686 echo ${UNAME_MACHINE}-pc-sco$UNAME_REL else echo ${UNAME_MACHINE}-pc-sysv32 fi exit ;; pc:*:*:*) # Left here for compatibility: # uname -m prints for DJGPP always 'pc', but it prints nothing about # the processor, so we play safe by assuming i586. # Note: whatever this is, it MUST be the same as what config.sub # prints for the "djgpp" host, or else GDB configury will decide that # this is a cross-build. echo i586-pc-msdosdjgpp exit ;; Intel:Mach:3*:*) echo i386-pc-mach3 exit ;; paragon:*:*:*) echo i860-intel-osf1 exit ;; i860:*:4.*:*) # i860-SVR4 if grep Stardent /usr/include/sys/uadmin.h >/dev/null 2>&1 ; then echo i860-stardent-sysv${UNAME_RELEASE} # Stardent Vistra i860-SVR4 else # Add other i860-SVR4 vendors below as they are discovered. echo i860-unknown-sysv${UNAME_RELEASE} # Unknown i860-SVR4 fi exit ;; mini*:CTIX:SYS*5:*) # "miniframe" echo m68010-convergent-sysv exit ;; mc68k:UNIX:SYSTEM5:3.51m) echo m68k-convergent-sysv exit ;; M680?0:D-NIX:5.3:*) echo m68k-diab-dnix exit ;; M68*:*:R3V[5678]*:*) test -r /sysV68 && { echo 'm68k-motorola-sysv'; exit; } ;; 3[345]??:*:4.0:3.0 | 3[34]??A:*:4.0:3.0 | 3[34]??,*:*:4.0:3.0 | 3[34]??/*:*:4.0:3.0 | 4400:*:4.0:3.0 | 4850:*:4.0:3.0 | SKA40:*:4.0:3.0 | SDS2:*:4.0:3.0 | SHG2:*:4.0:3.0 | S7501*:*:4.0:3.0) OS_REL='' test -r /etc/.relid \ && OS_REL=.`sed -n 's/[^ ]* [^ ]* \([0-9][0-9]\).*/\1/p' < /etc/.relid` /bin/uname -p 2>/dev/null | grep 86 >/dev/null \ && { echo i486-ncr-sysv4.3${OS_REL}; exit; } /bin/uname -p 2>/dev/null | /bin/grep entium >/dev/null \ && { echo i586-ncr-sysv4.3${OS_REL}; exit; } ;; 3[34]??:*:4.0:* | 3[34]??,*:*:4.0:*) /bin/uname -p 2>/dev/null | grep 86 >/dev/null \ && { echo i486-ncr-sysv4; exit; } ;; NCR*:*:4.2:* | MPRAS*:*:4.2:*) OS_REL='.3' test -r /etc/.relid \ && OS_REL=.`sed -n 's/[^ ]* [^ ]* \([0-9][0-9]\).*/\1/p' < /etc/.relid` /bin/uname -p 2>/dev/null | grep 86 >/dev/null \ && { echo i486-ncr-sysv4.3${OS_REL}; exit; } /bin/uname -p 2>/dev/null | /bin/grep entium >/dev/null \ && { echo i586-ncr-sysv4.3${OS_REL}; exit; } /bin/uname -p 2>/dev/null | /bin/grep pteron >/dev/null \ && { echo i586-ncr-sysv4.3${OS_REL}; exit; } ;; m68*:LynxOS:2.*:* | m68*:LynxOS:3.0*:*) echo m68k-unknown-lynxos${UNAME_RELEASE} exit ;; mc68030:UNIX_System_V:4.*:*) echo m68k-atari-sysv4 exit ;; TSUNAMI:LynxOS:2.*:*) echo sparc-unknown-lynxos${UNAME_RELEASE} exit ;; rs6000:LynxOS:2.*:*) echo rs6000-unknown-lynxos${UNAME_RELEASE} exit ;; PowerPC:LynxOS:2.*:* | PowerPC:LynxOS:3.[01]*:* | PowerPC:LynxOS:4.[02]*:*) echo powerpc-unknown-lynxos${UNAME_RELEASE} exit ;; SM[BE]S:UNIX_SV:*:*) echo mips-dde-sysv${UNAME_RELEASE} exit ;; RM*:ReliantUNIX-*:*:*) echo mips-sni-sysv4 exit ;; RM*:SINIX-*:*:*) echo mips-sni-sysv4 exit ;; *:SINIX-*:*:*) if uname -p 2>/dev/null >/dev/null ; then UNAME_MACHINE=`(uname -p) 2>/dev/null` echo ${UNAME_MACHINE}-sni-sysv4 else echo ns32k-sni-sysv fi exit ;; PENTIUM:*:4.0*:*) # Unisys `ClearPath HMP IX 4000' SVR4/MP effort # says <Richard.M.Bartel@ccMail.Census.GOV> echo i586-unisys-sysv4 exit ;; *:UNIX_System_V:4*:FTX*) # From Gerald Hewes <hewes@openmarket.com>. # How about differentiating between stratus architectures? -djm echo hppa1.1-stratus-sysv4 exit ;; *:*:*:FTX*) # From seanf@swdc.stratus.com. echo i860-stratus-sysv4 exit ;; i*86:VOS:*:*) # From Paul.Green@stratus.com. echo ${UNAME_MACHINE}-stratus-vos exit ;; *:VOS:*:*) # From Paul.Green@stratus.com. echo hppa1.1-stratus-vos exit ;; mc68*:A/UX:*:*) echo m68k-apple-aux${UNAME_RELEASE} exit ;; news*:NEWS-OS:6*:*) echo mips-sony-newsos6 exit ;; R[34]000:*System_V*:*:* | R4000:UNIX_SYSV:*:* | R*000:UNIX_SV:*:*) if [ -d /usr/nec ]; then echo mips-nec-sysv${UNAME_RELEASE} else echo mips-unknown-sysv${UNAME_RELEASE} fi exit ;; BeBox:BeOS:*:*) # BeOS running on hardware made by Be, PPC only. echo powerpc-be-beos exit ;; BeMac:BeOS:*:*) # BeOS running on Mac or Mac clone, PPC only. echo powerpc-apple-beos exit ;; BePC:BeOS:*:*) # BeOS running on Intel PC compatible. echo i586-pc-beos exit ;; BePC:Haiku:*:*) # Haiku running on Intel PC compatible. echo i586-pc-haiku exit ;; x86_64:Haiku:*:*) echo x86_64-unknown-haiku exit ;; SX-4:SUPER-UX:*:*) echo sx4-nec-superux${UNAME_RELEASE} exit ;; SX-5:SUPER-UX:*:*) echo sx5-nec-superux${UNAME_RELEASE} exit ;; SX-6:SUPER-UX:*:*) echo sx6-nec-superux${UNAME_RELEASE} exit ;; SX-7:SUPER-UX:*:*) echo sx7-nec-superux${UNAME_RELEASE} exit ;; SX-8:SUPER-UX:*:*) echo sx8-nec-superux${UNAME_RELEASE} exit ;; SX-8R:SUPER-UX:*:*) echo sx8r-nec-superux${UNAME_RELEASE} exit ;; Power*:Rhapsody:*:*) echo powerpc-apple-rhapsody${UNAME_RELEASE} exit ;; *:Rhapsody:*:*) echo ${UNAME_MACHINE}-apple-rhapsody${UNAME_RELEASE} exit ;; *:Darwin:*:*) UNAME_PROCESSOR=`uname -p` || UNAME_PROCESSOR=unknown eval $set_cc_for_build if test "$UNAME_PROCESSOR" = unknown ; then UNAME_PROCESSOR=powerpc fi if [ "$CC_FOR_BUILD" != 'no_compiler_found' ]; then if (echo '#ifdef __LP64__'; echo IS_64BIT_ARCH; echo '#endif') | \ (CCOPTS= $CC_FOR_BUILD -E - 2>/dev/null) | \ grep IS_64BIT_ARCH >/dev/null then case $UNAME_PROCESSOR in i386) UNAME_PROCESSOR=x86_64 ;; powerpc) UNAME_PROCESSOR=powerpc64 ;; esac fi fi echo ${UNAME_PROCESSOR}-apple-darwin${UNAME_RELEASE} exit ;; *:procnto*:*:* | *:QNX:[0123456789]*:*) UNAME_PROCESSOR=`uname -p` if test "$UNAME_PROCESSOR" = "x86"; then UNAME_PROCESSOR=i386 UNAME_MACHINE=pc fi echo ${UNAME_PROCESSOR}-${UNAME_MACHINE}-nto-qnx${UNAME_RELEASE} exit ;; *:QNX:*:4*) echo i386-pc-qnx exit ;; NEO-?:NONSTOP_KERNEL:*:*) echo neo-tandem-nsk${UNAME_RELEASE} exit ;; NSE-*:NONSTOP_KERNEL:*:*) echo nse-tandem-nsk${UNAME_RELEASE} exit ;; NSR-?:NONSTOP_KERNEL:*:*) echo nsr-tandem-nsk${UNAME_RELEASE} exit ;; *:NonStop-UX:*:*) echo mips-compaq-nonstopux exit ;; BS2000:POSIX*:*:*) echo bs2000-siemens-sysv exit ;; DS/*:UNIX_System_V:*:*) echo ${UNAME_MACHINE}-${UNAME_SYSTEM}-${UNAME_RELEASE} exit ;; *:Plan9:*:*) # "uname -m" is not consistent, so use $cputype instead. 386 # is converted to i386 for consistency with other x86 # operating systems. if test "$cputype" = "386"; then UNAME_MACHINE=i386 else UNAME_MACHINE="$cputype" fi echo ${UNAME_MACHINE}-unknown-plan9 exit ;; *:TOPS-10:*:*) echo pdp10-unknown-tops10 exit ;; *:TENEX:*:*) echo pdp10-unknown-tenex exit ;; KS10:TOPS-20:*:* | KL10:TOPS-20:*:* | TYPE4:TOPS-20:*:*) echo pdp10-dec-tops20 exit ;; XKL-1:TOPS-20:*:* | TYPE5:TOPS-20:*:*) echo pdp10-xkl-tops20 exit ;; *:TOPS-20:*:*) echo pdp10-unknown-tops20 exit ;; *:ITS:*:*) echo pdp10-unknown-its exit ;; SEI:*:*:SEIUX) echo mips-sei-seiux${UNAME_RELEASE} exit ;; *:DragonFly:*:*) echo ${UNAME_MACHINE}-unknown-dragonfly`echo ${UNAME_RELEASE}|sed -e 's/[-(].*//'` exit ;; *:*VMS:*:*) UNAME_MACHINE=`(uname -p) 2>/dev/null` case "${UNAME_MACHINE}" in A*) echo alpha-dec-vms ; exit ;; I*) echo ia64-dec-vms ; exit ;; V*) echo vax-dec-vms ; exit ;; esac ;; *:XENIX:*:SysV) echo i386-pc-xenix exit ;; i*86:skyos:*:*) echo ${UNAME_MACHINE}-pc-skyos`echo ${UNAME_RELEASE}` | sed -e 's/ .*$//' exit ;; i*86:rdos:*:*) echo ${UNAME_MACHINE}-pc-rdos exit ;; i*86:AROS:*:*) echo ${UNAME_MACHINE}-pc-aros exit ;; x86_64:VMkernel:*:*) echo ${UNAME_MACHINE}-unknown-esx exit ;; esac eval $set_cc_for_build cat >$dummy.c <<EOF #ifdef _SEQUENT_ # include <sys/types.h> # include <sys/utsname.h> #endif main () { #if defined (sony) #if defined (MIPSEB) /* BFD wants "bsd" instead of "newsos". 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It is advised that you download the most up to date version of the config scripts from http://git.savannah.gnu.org/gitweb/?p=config.git;a=blob_plain;f=config.guess;hb=HEAD and http://git.savannah.gnu.org/gitweb/?p=config.git;a=blob_plain;f=config.sub;hb=HEAD If the version you run ($0) is already up to date, please send the following data and any information you think might be pertinent to <config-patches@gnu.org> in order to provide the needed information to handle your system. config.guess timestamp = $timestamp uname -m = `(uname -m) 2>/dev/null || echo unknown` uname -r = `(uname -r) 2>/dev/null || echo unknown` uname -s = `(uname -s) 2>/dev/null || echo unknown` uname -v = `(uname -v) 2>/dev/null || echo unknown` /usr/bin/uname -p = `(/usr/bin/uname -p) 2>/dev/null` /bin/uname -X = `(/bin/uname -X) 2>/dev/null` hostinfo = `(hostinfo) 2>/dev/null` /bin/universe = `(/bin/universe) 2>/dev/null` /usr/bin/arch -k = `(/usr/bin/arch -k) 2>/dev/null` /bin/arch = `(/bin/arch) 2>/dev/null` /usr/bin/oslevel = `(/usr/bin/oslevel) 2>/dev/null` /usr/convex/getsysinfo = `(/usr/convex/getsysinfo) 2>/dev/null` UNAME_MACHINE = ${UNAME_MACHINE} UNAME_RELEASE = ${UNAME_RELEASE} UNAME_SYSTEM = ${UNAME_SYSTEM} UNAME_VERSION = ${UNAME_VERSION} EOF exit 1 # Local variables: # eval: (add-hook 'write-file-hooks 'time-stamp) # time-stamp-start: "timestamp='" # time-stamp-format: "%:y-%02m-%02d" # time-stamp-end: "'" # End: �������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/Makefile.am����������������������������������������������������������������������������0000664�0001750�0001750�00000000446�12667303336�012004� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������ACLOCAL_AMFLAGS = -I config SUBDIRS = src toolkit if BUILD_TESTS SUBDIRS += tests endif EXTRA_DIST = Protocol-v3.html UPGRADING packaging libotr.m4 libotr.pc.in bootstrap aclocaldir = $(datadir)/aclocal aclocal_DATA = libotr.m4 pkgconfigdir = $(libdir)/pkgconfig pkgconfig_DATA = libotr.pc ��������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/UPGRADING������������������������������������������������������������������������������0000664�0001750�0001750�00000054051�12637277541�011221� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������Table of Contents 1. Introduction 2. Major Additions 2.1. Instance Tags 2.2. Asynchronous Private Key Generation 2.3. Extra Symmetric Key 2.4. Convert Operations 2.5. SMP, Error, and Message Event Callbacks 2.6. Fragmentation Changes 3. Required Changes 3.1. OtrlMessageAppOps Callbacks 3.1.1. Removed Operations 3.1.2. Added Operations 3.2. Instance Tags 3.3. Fragmentation Changes 3.4. Asynchronous Private Key Generation 3.5. Library Initialization 1. Introduction This file contains information about the changes between the 3.2.0 and the 4.0.0 APIs for libotr. Note that applications compiled against previous versions of OTR will not work with libotr 4.0.0. 2. Major Additions This section describes the new features in OTR 4.0.0 along with a short history or motivation for each. 2.1. Instance Tags Clients generate instance tags that are intended to be persistent. If the same client is logged into the same account from multiple locations, the intention is that he or she will have different instance tags at each location. OTR wire messages (fragmented and unfragmented) include the source and destination instance tags. If a client receives a message that lists a destination instance tag different from his own, the client will discard it (and issue a callback notifying the application of the event). This avoids an issue on IM networks that always relay all messages to all sessions of a client who is logged in multiple times. In this situation, OTR clients can attempt to establish an OTR session indefinitely if there are interleaving messages from each of the sessions. 2.2. Asynchronous Private Key Generation Key generation can happen in a separate thread without blocking an application. 2.3. Extra Symmetric Key An extra symmetric key is kept synchronized during a conversation with a buddy. Either side can send a signal that they wish to use this key for some external purpose (e.g. things like a file transfer, in some other channel of communication). 2.4. Convert Operations There is now a callback that is made immediately before a message is encrypted and immediately after a message is decrypted. This callback can tweak the plaintext message as needed. For example, this could allow an application to convert formatting on a message if this would normally be done on the plaintext by some other entity while the message is in transit. 2.5. SMP, Error, and Message Event Callbacks To avoid hard-coded English phrases in libotr, operations which used to pass back strings are replaced by operations that pass back event codes. 2.6. Fragmentation Changes In libotr version 3.2.0, you would need to call otrl_message_sending() to create an encrypted message, and then call fragment_and_send() to get libotr to fragment and inject that message. In libotr 4.0.0, the functionality of fragment_and_send() has been integrated into otrl_message_sending(). 3. Required Changes 3.1. OtrlMessageAppOps Callbacks 3.1.1. Removed Operations /* Display a notification message for a particular accountname / * protocol / username conversation. */ void (*notify)(void *opdata, OtrlNotifyLevel level, const char *accountname, const char *protocol, const char *username, const char *title, const char *primary, const char *secondary); The notify() operation was removed since it was used to pass in hardcoded English strings. This has been replaced by error and message event callbacks, described below, which pass event codes rather than hardcoded strings. /* Display an OTR control message for a particular accountname / * protocol / username conversation. Return 0 if you are able to * successfully display it. If you return non-0 (or if this * function is NULL), the control message will be displayed inline, * as a received message, or else by using the above notify() * callback. */ int (*display_otr_message)(void *opdata, const char *accountname, const char *protocol, const char *username, const char *msg); The display_otr_message() operation was removed for the same reasons as above for the notify() operation. /* Return a newly allocated string containing a human-friendly name * for the given protocol id */ const char *(*protocol_name)(void *opdata, const char *protocol); /* Deallocate a string allocated by protocol_name */ void (*protocol_name_free)(void *opdata, const char *protocol_name); The above operations are no longer required, as they were used when preparing messages shown to users. /* Log a message. The passed message will end in "\n". */ void (*log_message)(void *opdata, const char *message); The log_message() operation was also replaced by message event callbacks. 3.1.2. Added Operations /* We received a request from the buddy to use the current "extra" * symmetric key. The key will be passed in symkey, of length * OTRL_EXTRAKEY_BYTES. The requested use, as well as use-specific * data will be passed so that the applications can communicate other * information (some id for the data transfer, for example). */ void (*received_symkey)(void *opdata, ConnContext *context, unsigned int use, const unsigned char *usedata, size_t usedatalen, const unsigned char *symkey); This is called when a remote buddy has specified a use for the current symmetric key. If your application does not use the extra symmetric key it does not need to provide an implementation for this operation. /* Return a string according to the error event. This string will then * be concatenated to an OTR header to produce an OTR protocol error * message. The following are the possible error events: * - OTRL_ERRCODE_ENCRYPTION_ERROR * occured while encrypting a message * - OTRL_ERRCODE_MSG_NOT_IN_PRIVATE * sent encrypted message to somebody who is not in * a mutual OTR session * - OTRL_ERRCODE_MSG_UNREADABLE * sent an unreadable encrypted message * - OTRL_ERRCODE_MSG_MALFORMED * message sent is malformed */ const char *(*otr_error_message)(void *opdata, ConnContext *context, OtrlErrorCode err_code); /* Deallocate a string returned by otr_error_message */ void (*otr_error_message_free)(void *opdata, const char *err_msg); These methods are for producing human-readable error message that will be sent to the remote buddy when one of these error conditions occurs. They will be appended to the string "?OTR Error: ". Implementing this operation is not required, but depending on your application it may be a good idea. /* Return a string that will be prefixed to any resent message. If this * function is not provided by the application then the default prefix, * "[resent]", will be used. * */ const char *(*resent_msg_prefix)(void *opdata, ConnContext *context); /* Deallocate a string returned by resent_msg_prefix */ void (*resent_msg_prefix_free)(void *opdata, const char *prefix); These operations give the option of chosing an alternative to the English string "[resent]", when a message is resent. /* Update the authentication UI with respect to SMP events * These are the possible events: * - OTRL_SMPEVENT_ASK_FOR_SECRET * prompt the user to enter a shared secret. The sender application * should call otrl_message_initiate_smp, passing NULL as the question. * When the receiver application resumes the SM protocol by calling * otrl_message_respond_smp with the secret answer. * - OTRL_SMPEVENT_ASK_FOR_ANSWER * (same as OTRL_SMPEVENT_ASK_FOR_SECRET but sender calls * otrl_message_initiate_smp_q instead) * - OTRL_SMPEVENT_CHEATED * abort the current auth and update the auth progress dialog * with progress_percent. otrl_message_abort_smp should be called to * stop the SM protocol. * - OTRL_SMPEVENT_INPROGRESS and * OTRL_SMPEVENT_SUCCESS and * OTRL_SMPEVENT_FAILURE and * OTRL_SMPEVENT_ABORT * update the auth progress dialog with progress_percent * - OTRL_SMPEVENT_ERROR * (same as OTRL_SMPEVENT_CHEATED) * */ void (*handle_smp_event)(void *opdata, OtrlSMPEvent smp_event, ConnContext *context, unsigned short progress_percent, char *question); These SMP events are initiated by otrl_message_receiving() when it has received an SMP TLV from a remote buddy. If you application is implementing support for SMP authentication it should handle these events appropriately. Previously applications had to manually check, upon receiving messages, whether the message contained any SMP TLVs that are relevant to the current SMP state. /* Handle and send the appropriate message(s) to the sender/recipient * depending on the message events. All the events only require an opdata, * the event, and the context. The message and err will be NULL except for * some events (see below). The possible events are: * - OTRL_MSGEVENT_ENCRYPTION_REQUIRED * Our policy requires encryption but we are trying to send * an unencrypted message out. * - OTRL_MSGEVENT_ENCRYPTION_ERROR * An error occured while encrypting a message and the message * was not sent. * - OTRL_MSGEVENT_CONNECTION_ENDED * Message has not been sent because our buddy has ended the * private conversation. We should either close the connection, * or refresh it. * - OTRL_MSGEVENT_SETUP_ERROR * A private conversation could not be set up. A gcry_error_t * will be passed. * - OTRL_MSGEVENT_MSG_REFLECTED * Received our own OTR messages. * - OTRL_MSGEVENT_MSG_RESENT * The previous message was resent. * - OTRL_MSGEVENT_RCVDMSG_NOT_IN_PRIVATE * Received an encrypted message but cannot read * it because no private connection is established yet. * - OTRL_MSGEVENT_RCVDMSG_UNREADABLE * Cannot read the received message. * - OTRL_MSGEVENT_RCVDMSG_MALFORMED * The message received contains malformed data. * - OTRL_MSGEVENT_LOG_HEARTBEAT_RCVD * Received a heartbeat. * - OTRL_MSGEVENT_LOG_HEARTBEAT_SENT * Sent a heartbeat. * - OTRL_MSGEVENT_RCVDMSG_GENERAL_ERR * Received a general OTR error. The argument 'message' will * also be passed and it will contain the OTR error message. * - OTRL_MSGEVENT_RCVDMSG_UNENCRYPTED * Received an unencrypted message. The argument 'smessage' will * also be passed and it will contain the plaintext message. * - OTRL_MSGEVENT_RCVDMSG_UNRECOGNIZED * Cannot recognize the type of OTR message received. * - OTRL_MSGEVENT_RCVDMSG_FOR_OTHER_INSTANCE * Received and discarded a message intended for another instance. */ void (*handle_msg_event)(void *opdata, OtrlMessageEvent msg_event, ConnContext *context, const char *message, gcry_error_t err); This operation is called when some type of exceptional event has occured that your application may want to be aware of. Your application may want to write an event to a log file, display a message to the user, or ignore the event. While it is not required to implement this operation, it is probably a good idea. /* Create a instance tag for the given accountname/protocol if * desired. */ void (*create_instag)(void *opdata, const char *accountname, const char *protocol); This is called when the library notices this account name and protocol pair does not have an instance tag. Similar to create_privkey(), your application may simply open a file handle and call: gcry_error_t otrl_instag_generate_FILEp(OtrlUserState us, FILE *instf, const char *accountname, const char *protocol) If you don't provide an implementation for this operation, a new non-persistent instance tag will be randomly generated. One benefit to having a persisted instance tag is that if your application closes and re-opens during a private conversation, further messages you receive from this buddy will correctly raise the OTRL_MSGEVENT_RCVDMSG_UNREADABLE event instead of raising OTRL_MSGEVENT_RCVDMSG_FOR_OTHER_INSTANCE because destination instance tag is now different from your own. /* Called immediately before a data message is encrypted, and after a data * message is decrypted. The OtrlConvertType parameter has the value * OTRL_CONVERT_SENDING or OTRL_CONVERT_RECEIVING to differentiate these * cases. */ void (*convert_msg)(void *opdata, ConnContext *context, OtrlConvertType convert_type, char ** dest, const char *src); /* Deallocate a string returned by convert_msg. */ void (*convert_free)(void *opdata, ConnContext *context, char *dest); The convert_msg() operation is called immediately before a message is encrypted and immediately after a message is decrypted. This callback can tweak the plaintext message as needed. One use case would be for an application to tweak formatting on the plaintext if, for example, this is something that would normally be done on the plaintext by some other entity while the message is in transit. /* When timer_control is called, turn off any existing periodic * timer. * * Additionally, if interval > 0, set a new periodic timer * to go off every interval seconds. When that timer fires, you * must call otrl_message_poll(userstate, uiops, uiopdata); from the * main libotr thread. * * The timing does not have to be exact; this timer is used to * provide forward secrecy by cleaning up stale private state that * may otherwise stick around in memory. Note that the * timer_control callback may be invoked from otrl_message_poll * itself, possibly to indicate that interval == 0 (that is, that * there's no more periodic work to be done at this time). * * If you set this callback to NULL, then you must ensure that your * application calls otrl_message_poll(userstate, uiops, uiopdata); * from the main libotr thread every definterval seconds (where * definterval can be obtained by calling * definterval = otrl_message_poll_get_default_interval(userstate); * right after creating the userstate). The advantage of * implementing the timer_control callback is that the timer can be * turned on by libotr only when it's needed. * * It is not a problem (except for a minor performance hit) to call * otrl_message_poll more often than requested, whether * timer_control is implemented or not. * * If you fail to implement the timer_control callback, and also * fail to periodically call otrl_message_poll, then you open your * users to a possible forward secrecy violation: an attacker that * compromises the user's computer may be able to decrypt a handful * of long-past messages (the first messages of an OTR * conversation). */ void (*timer_control)(void *opdata, unsigned int interval); In order to prevent a forward secrecy violation, applications using libotr now need to be able to call otrl_message_poll on occasion. The simplest thing to do is just to set up a local timer that calls that function every definterval = otrl_message_poll_get_default_interval(userstate) seconds. To avoid unnecessary overhead, however, the timer_control callback is available. If you set timer_control to non-NULL, it will be called with instructions to turn on or off the periodic timer, and to what interval. You must also be sure to turn off the timer before freeing your userstate with otrl_userstate_free. 3.2. Instance Tags If your application allows the same user to be logged in multiple times from different locations, it should probably be aware of instance tags. A user can maintain multiple concurrent OTR conversations with a buddy who is logged in multiple times. Only one of the buddy's sessions can be a client who is running OTR protocol version 2. When a user has a conversation with a buddy who is running OTR protocol version 2, the conversation is associated with a ConnContext that lists "their_instance" as OTRL_INSTAG_MASTER (which has a value of 0). Each version 3 conversation with the same buddy will have its own ConnContext, which you can differentiate by the value in the "their_instance" field. In the linked list of ConnContexts, the master context for a buddy is always listed immediately before its children. Fingerprints are only stored with the master context. Given a ConnContext associated to a conversation with a buddy, you can easily iterate over all the contexts for that buddy by doing the following: void example_something_happened(ConnContext * context) { ConnContext * context_iter = context->m_context; while (context_iter && context_iter->m_context == context->m_context) { /* Something you wish to affect all contexts of a particular buddy */ context_iter = context_iter->next; } If a user has multiple OTR sessions with the same buddy, your application will likely want to provide some way for the user to select which instance to send outgoing messages to. You can detect when a user has multiple OTR sessions with the same buddy by iterating over the ConnContexts of a buddy when a conversation has gone secure and checking whether more than one is not in plaintext state. You specify which instance outgoing messages are directed to in otrl_message_sending: gcry_error_t otrl_message_sending(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, const char *accountname, const char *protocol, const char *recipient, otrl_instag_t instag, const char *original_msg, OtrlTLV *tlvs, char **messagep, OtrlFragmentPolicy fragPolicy, ConnContext **contextp, void (*add_appdata)(void *data, ConnContext *context), void *data); Instead of an actual instance tag, you can specify a meta instance tag (e.g., if the user has not made an explicit selection). Here are the list of meta instance tags, as defined in instag.h: #define OTRL_INSTAG_BEST 1 /* Most secure, based on: conv status, * then fingerprint status, then most recent. */ #define OTRL_INSTAG_RECENT 2 /* Most recent of the two meta instances below */ #define OTRL_INSTAG_RECENT_RECEIVED 3 #define OTRL_INSTAG_RECENT_SENT 4 OTRL_INSTAG_BEST choses the instance that has the best conv status, then fingerprint status (in the event of a tie), then most recent (similarly in the event of a tie). When calculating how recent an instance has been active, OTRL_INSTAG_BEST is limited by a one second resolution. OTRL_INSTAG_RECENT* does not have this limitation, but due to inherent uncertainty in some networks, libotr's notion of the most recent may not always agree with the remote network. It is important to understand this limitation due to the issue noted in the next paragraph. Note that instances do add some uncertainty when dealing with networks that only deliver messages to the most recently active session for a buddy who is logged in multiple times. If you have a particular instance selected, and the IM network is simply not going to deliver to that particular instance, there isn't too much libotr can do. In this case, you may want your application to warn when a user has selected an instance that is not the most recent. To explicitly specify the destination instance of a protocol version 2 conversation with a particular buddy, the instag value is OTRL_INSTAG_MASTER. To look up a ConnContext associated with a particular instance (or meta- instance), specify the instance in otrl_context_find(): ConnContext * otrl_context_find(OtrlUserState us, const char *user, const char *accountname, const char *protocol, otrl_instag_t their_instance, int add_if_missing, int *addedp, void (*add_app_data)(void *data, ConnContext *context), void *data) If your application persists instance tags, when it starts up, it should call one the following functions to read the persisted instance tags: gcry_error_t otrl_instag_read(OtrlUserState us, const char *filename); gcry_error_t otrl_instag_read_FILEp(OtrlUserState us, FILE *instf); It would make sense to do this immediately after your application has read stored privkeys and fingerprints. 3.3. Fragmentation Changes In libotr version 3.2.0, you would need to call otrl_message_sending() to create an encrypted message, and then call fragment_and_send() to get libotr to fragment and inject that message. In libotr 4.0.0, the functionality of fragment_and_send() has been integrated into otrl_message_sending(). Simply specify an OtrlFragmentPolicy to otrl_message_sending(). The fragmentation policies are the same as before, and an addition policy "OTRL_FRAGMENT_SEND_SKIP" has been added for cases when fragmentation is not desired. 3.4. Asynchronous Private Key Generation An application that wants to begin asynchronous key generation calls the following method: /* Begin a private key generation that will potentially take place in * a background thread. This routine must be called from the main * thread. It will set *newkeyp, which you can pass to * otrl_privkey_generate_calculate in a background thread. If it * returns gcry_error(GPG_ERR_EEXIST), then a privkey creation for * this accountname/protocol is already in progress, and *newkeyp will * be set to NULL. */ gcry_error_t otrl_privkey_generate_start(OtrlUserState us, const char *accountname, const char *protocol, void **newkeyp) A background thread can call the following method with the structure that was passed into "newkeyp" above: /* Do the private key generation calculation. You may call this from a * background thread. When it completes, call * otrl_privkey_generate_finish from the _main_ thread. */ gcry_error_t otrl_privkey_generate_calculate(void *newkey) Upon completion the application would call: /* Call this from the main thread only. It will write the newly created * private key into the given file and store it in the OtrlUserState. */ gcry_error_t otrl_privkey_generate_finish(OtrlUserState us, void *newkey, const char *filename) If the privkey generation was cancelled, the application should call: /* Call this from the main thread only, in the event that the background * thread generating the key is cancelled. The newkey is deallocated, * and must not be used further. */ void otrl_privkey_generate_cancelled(OtrlUserState us, void *newkey) 3.5. Library Initialization If you currently initialize libotr with the recommended OTRL_INIT; macro, you do not need to change anything. If you call otrl_init(ver_major, ver_minor, ver_sub) directly, then know that this function no longer returns void. Previously, if the application requested version numbers incompatible with those of the library, the library would exit(1). Now, the otrl_init call will return a non-zero error code. You must check the return value of otrl_init (a gcry_error_t), and if it is non-zero, your application's expected API/ABI does not match the installed libotr, and libotr cannot be used. ���������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/libotr.pc.in���������������������������������������������������������������������������0000664�0001750�0001750�00000000362�12637277541�012176� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������prefix=@prefix@ exec_prefix=@exec_prefix@ libdir=@libdir@ includedir=@includedir@ Name: libotr Description: Off-the-Record Messaging Library Version: @VERSION@ URL: https://otr.cypherpunks.ca/ Libs: -L${libdir} -lotr Cflags: -I${includedir} ������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/config/��������������������������������������������������������������������������������0000775�0001750�0001750�00000000000�12667401053�011264� 5����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/config/ltsugar.m4����������������������������������������������������������������������0000644�0001750�0001750�00000010424�12343351634�013126� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������# ltsugar.m4 -- libtool m4 base layer. -*-Autoconf-*- # # Copyright (C) 2004, 2005, 2007, 2008 Free Software Foundation, Inc. # Written by Gary V. Vaughan, 2004 # # This file is free software; the Free Software Foundation gives # unlimited permission to copy and/or distribute it, with or without # modifications, as long as this notice is preserved. # serial 6 ltsugar.m4 # This is to help aclocal find these macros, as it can't see m4_define. AC_DEFUN([LTSUGAR_VERSION], [m4_if([0.1])]) # lt_join(SEP, ARG1, [ARG2...]) # ----------------------------- # Produce ARG1SEPARG2...SEPARGn, omitting [] arguments and their # associated separator. # Needed until we can rely on m4_join from Autoconf 2.62, since all earlier # versions in m4sugar had bugs. m4_define([lt_join], [m4_if([$#], [1], [], [$#], [2], [[$2]], [m4_if([$2], [], [], [[$2]_])$0([$1], m4_shift(m4_shift($@)))])]) m4_define([_lt_join], [m4_if([$#$2], [2], [], [m4_if([$2], [], [], [[$1$2]])$0([$1], m4_shift(m4_shift($@)))])]) # lt_car(LIST) # lt_cdr(LIST) # ------------ # Manipulate m4 lists. # These macros are necessary as long as will still need to support # Autoconf-2.59 which quotes differently. m4_define([lt_car], [[$1]]) m4_define([lt_cdr], [m4_if([$#], 0, [m4_fatal([$0: cannot be called without arguments])], [$#], 1, [], [m4_dquote(m4_shift($@))])]) m4_define([lt_unquote], $1) # lt_append(MACRO-NAME, STRING, [SEPARATOR]) # ------------------------------------------ # Redefine MACRO-NAME to hold its former content plus `SEPARATOR'`STRING'. # Note that neither SEPARATOR nor STRING are expanded; they are appended # to MACRO-NAME as is (leaving the expansion for when MACRO-NAME is invoked). # No SEPARATOR is output if MACRO-NAME was previously undefined (different # than defined and empty). # # This macro is needed until we can rely on Autoconf 2.62, since earlier # versions of m4sugar mistakenly expanded SEPARATOR but not STRING. m4_define([lt_append], [m4_define([$1], m4_ifdef([$1], [m4_defn([$1])[$3]])[$2])]) # lt_combine(SEP, PREFIX-LIST, INFIX, SUFFIX1, [SUFFIX2...]) # ---------------------------------------------------------- # Produce a SEP delimited list of all paired combinations of elements of # PREFIX-LIST with SUFFIX1 through SUFFIXn. Each element of the list # has the form PREFIXmINFIXSUFFIXn. # Needed until we can rely on m4_combine added in Autoconf 2.62. m4_define([lt_combine], [m4_if(m4_eval([$# > 3]), [1], [m4_pushdef([_Lt_sep], [m4_define([_Lt_sep], m4_defn([lt_car]))])]]dnl [[m4_foreach([_Lt_prefix], [$2], [m4_foreach([_Lt_suffix], ]m4_dquote(m4_dquote(m4_shift(m4_shift(m4_shift($@)))))[, [_Lt_sep([$1])[]m4_defn([_Lt_prefix])[$3]m4_defn([_Lt_suffix])])])])]) # lt_if_append_uniq(MACRO-NAME, VARNAME, [SEPARATOR], [UNIQ], [NOT-UNIQ]) # ----------------------------------------------------------------------- # Iff MACRO-NAME does not yet contain VARNAME, then append it (delimited # by SEPARATOR if supplied) and expand UNIQ, else NOT-UNIQ. m4_define([lt_if_append_uniq], [m4_ifdef([$1], [m4_if(m4_index([$3]m4_defn([$1])[$3], [$3$2$3]), [-1], [lt_append([$1], [$2], [$3])$4], [$5])], [lt_append([$1], [$2], [$3])$4])]) # lt_dict_add(DICT, KEY, VALUE) # ----------------------------- m4_define([lt_dict_add], [m4_define([$1($2)], [$3])]) # lt_dict_add_subkey(DICT, KEY, SUBKEY, VALUE) # -------------------------------------------- m4_define([lt_dict_add_subkey], [m4_define([$1($2:$3)], [$4])]) # lt_dict_fetch(DICT, KEY, [SUBKEY]) # ---------------------------------- m4_define([lt_dict_fetch], [m4_ifval([$3], m4_ifdef([$1($2:$3)], [m4_defn([$1($2:$3)])]), m4_ifdef([$1($2)], [m4_defn([$1($2)])]))]) # lt_if_dict_fetch(DICT, KEY, [SUBKEY], VALUE, IF-TRUE, [IF-FALSE]) # ----------------------------------------------------------------- m4_define([lt_if_dict_fetch], [m4_if(lt_dict_fetch([$1], [$2], [$3]), [$4], [$5], [$6])]) # lt_dict_filter(DICT, [SUBKEY], VALUE, [SEPARATOR], KEY, [...]) # -------------------------------------------------------------- m4_define([lt_dict_filter], [m4_if([$5], [], [], [lt_join(m4_quote(m4_default([$4], [[, ]])), lt_unquote(m4_split(m4_normalize(m4_foreach(_Lt_key, lt_car([m4_shiftn(4, $@)]), [lt_if_dict_fetch([$1], _Lt_key, [$2], [$3], [_Lt_key ])])))))])[]dnl ]) ��������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/config/config.sub����������������������������������������������������������������������0000755�0001750�0001750�00000105176�12343351633�013176� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������#! /bin/sh # Configuration validation subroutine script. # Copyright (C) 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, # 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010, # 2011, 2012 Free Software Foundation, Inc. timestamp='2012-02-10' # This file is (in principle) common to ALL GNU software. # The presence of a machine in this file suggests that SOME GNU software # can handle that machine. 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The user should be able to distinguish # a failure to support a valid configuration from a meaningless # configuration. # The goal of this file is to map all the various variations of a given # machine specification into a single specification in the form: # CPU_TYPE-MANUFACTURER-OPERATING_SYSTEM # or in some cases, the newer four-part form: # CPU_TYPE-MANUFACTURER-KERNEL-OPERATING_SYSTEM # It is wrong to echo any other type of specification. me=`echo "$0" | sed -e 's,.*/,,'` usage="\ Usage: $0 [OPTION] CPU-MFR-OPSYS $0 [OPTION] ALIAS Canonicalize a configuration name. Operation modes: -h, --help print this help, then exit -t, --time-stamp print date of last modification, then exit -v, --version print version number, then exit Report bugs and patches to <config-patches@gnu.org>." version="\ GNU config.sub ($timestamp) Copyright (C) 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010, 2011, 2012 Free Software Foundation, Inc. This is free software; see the source for copying conditions. There is NO warranty; not even for MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE." help=" Try \`$me --help' for more information." # Parse command line while test $# -gt 0 ; do case $1 in --time-stamp | --time* | -t ) echo "$timestamp" ; exit ;; --version | -v ) echo "$version" ; exit ;; --help | --h* | -h ) echo "$usage"; exit ;; -- ) # Stop option processing shift; break ;; - ) # Use stdin as input. break ;; -* ) echo "$me: invalid option $1$help" exit 1 ;; *local*) # First pass through any local machine types. echo $1 exit ;; * ) break ;; esac done case $# in 0) echo "$me: missing argument$help" >&2 exit 1;; 1) ;; *) echo "$me: too many arguments$help" >&2 exit 1;; esac # Separate what the user gave into CPU-COMPANY and OS or KERNEL-OS (if any). # Here we must recognize all the valid KERNEL-OS combinations. maybe_os=`echo $1 | sed 's/^\(.*\)-\([^-]*-[^-]*\)$/\2/'` case $maybe_os in nto-qnx* | linux-gnu* | linux-android* | linux-dietlibc | linux-newlib* | \ linux-uclibc* | uclinux-uclibc* | uclinux-gnu* | kfreebsd*-gnu* | \ knetbsd*-gnu* | netbsd*-gnu* | \ kopensolaris*-gnu* | \ storm-chaos* | os2-emx* | rtmk-nova*) os=-$maybe_os basic_machine=`echo $1 | sed 's/^\(.*\)-\([^-]*-[^-]*\)$/\1/'` ;; android-linux) os=-linux-android basic_machine=`echo $1 | sed 's/^\(.*\)-\([^-]*-[^-]*\)$/\1/'`-unknown ;; *) basic_machine=`echo $1 | sed 's/-[^-]*$//'` if [ $basic_machine != $1 ] then os=`echo $1 | sed 's/.*-/-/'` else os=; fi ;; esac ### Let's recognize common machines as not being operating systems so ### that things like config.sub decstation-3100 work. We also ### recognize some manufacturers as not being operating systems, so we ### can provide default operating systems below. case $os in -sun*os*) # Prevent following clause from handling this invalid input. ;; -dec* | -mips* | -sequent* | -encore* | -pc532* | -sgi* | -sony* | \ -att* | -7300* | -3300* | -delta* | -motorola* | -sun[234]* | \ -unicom* | -ibm* | -next | -hp | -isi* | -apollo | -altos* | \ -convergent* | -ncr* | -news | -32* | -3600* | -3100* | -hitachi* |\ -c[123]* | -convex* | -sun | -crds | -omron* | -dg | -ultra | -tti* | \ -harris | -dolphin | -highlevel | -gould | -cbm | -ns | -masscomp | \ -apple | -axis | -knuth | -cray | -microblaze) os= basic_machine=$1 ;; -bluegene*) os=-cnk ;; -sim | -cisco | -oki | -wec | -winbond) os= basic_machine=$1 ;; -scout) ;; -wrs) os=-vxworks basic_machine=$1 ;; -chorusos*) os=-chorusos basic_machine=$1 ;; -chorusrdb) os=-chorusrdb basic_machine=$1 ;; -hiux*) os=-hiuxwe2 ;; -sco6) os=-sco5v6 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco5) os=-sco3.2v5 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco4) os=-sco3.2v4 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco3.2.[4-9]*) os=`echo $os | sed -e 's/sco3.2./sco3.2v/'` basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco3.2v[4-9]*) # Don't forget version if it is 3.2v4 or newer. basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco5v6*) # Don't forget version if it is 3.2v4 or newer. basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco*) os=-sco3.2v2 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -udk*) basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -isc) os=-isc2.2 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -clix*) basic_machine=clipper-intergraph ;; -isc*) basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -lynx*) os=-lynxos ;; -ptx*) basic_machine=`echo $1 | sed -e 's/86-.*/86-sequent/'` ;; -windowsnt*) os=`echo $os | sed -e 's/windowsnt/winnt/'` ;; -psos*) os=-psos ;; -mint | -mint[0-9]*) basic_machine=m68k-atari os=-mint ;; esac # Decode aliases for certain CPU-COMPANY combinations. case $basic_machine in # Recognize the basic CPU types without company name. # Some are omitted here because they have special meanings below. 1750a | 580 \ | a29k \ | aarch64 | aarch64_be \ | alpha | alphaev[4-8] | alphaev56 | alphaev6[78] | alphapca5[67] \ | alpha64 | alpha64ev[4-8] | alpha64ev56 | alpha64ev6[78] | alpha64pca5[67] \ | am33_2.0 \ | arc | arm | arm[bl]e | arme[lb] | armv[2345] | armv[345][lb] | avr | avr32 \ | be32 | be64 \ | bfin \ | c4x | clipper \ | d10v | d30v | dlx | dsp16xx \ | epiphany \ | fido | fr30 | frv \ | h8300 | h8500 | hppa | hppa1.[01] | hppa2.0 | hppa2.0[nw] | hppa64 \ | hexagon \ | i370 | i860 | i960 | ia64 \ | ip2k | iq2000 \ | le32 | le64 \ | lm32 \ | m32c | m32r | m32rle | m68000 | m68k | m88k \ | maxq | mb | microblaze | mcore | mep | metag \ | mips | mipsbe | mipseb | mipsel | mipsle \ | mips16 \ | mips64 | mips64el \ | mips64octeon | mips64octeonel \ | mips64orion | mips64orionel \ | mips64r5900 | mips64r5900el \ | mips64vr | mips64vrel \ | mips64vr4100 | mips64vr4100el \ | mips64vr4300 | mips64vr4300el \ | mips64vr5000 | mips64vr5000el \ | mips64vr5900 | mips64vr5900el \ | mipsisa32 | mipsisa32el \ | mipsisa32r2 | mipsisa32r2el \ | mipsisa64 | mipsisa64el \ | mipsisa64r2 | mipsisa64r2el \ | mipsisa64sb1 | mipsisa64sb1el \ | mipsisa64sr71k | mipsisa64sr71kel \ | mipstx39 | mipstx39el \ | mn10200 | mn10300 \ | moxie \ | mt \ | msp430 \ | nds32 | nds32le | nds32be \ | nios | nios2 \ | ns16k | ns32k \ | open8 \ | or32 \ | pdp10 | pdp11 | pj | pjl \ | powerpc | powerpc64 | powerpc64le | powerpcle \ | pyramid \ | rl78 | rx \ | score \ | sh | sh[1234] | sh[24]a | sh[24]aeb | sh[23]e | sh[34]eb | sheb | shbe | shle | sh[1234]le | sh3ele \ | sh64 | sh64le \ | sparc | sparc64 | sparc64b | sparc64v | sparc86x | sparclet | sparclite \ | sparcv8 | sparcv9 | sparcv9b | sparcv9v \ | spu \ | tahoe | tic4x | tic54x | tic55x | tic6x | tic80 | tron \ | ubicom32 \ | v850 | v850e | v850e1 | v850e2 | v850es | v850e2v3 \ | we32k \ | x86 | xc16x | xstormy16 | xtensa \ | z8k | z80) basic_machine=$basic_machine-unknown ;; c54x) basic_machine=tic54x-unknown ;; c55x) basic_machine=tic55x-unknown ;; c6x) basic_machine=tic6x-unknown ;; m6811 | m68hc11 | m6812 | m68hc12 | m68hcs12x | picochip) basic_machine=$basic_machine-unknown os=-none ;; m88110 | m680[12346]0 | m683?2 | m68360 | m5200 | v70 | w65 | z8k) ;; ms1) basic_machine=mt-unknown ;; strongarm | thumb | xscale) basic_machine=arm-unknown ;; xgate) basic_machine=$basic_machine-unknown os=-none ;; xscaleeb) basic_machine=armeb-unknown ;; xscaleel) basic_machine=armel-unknown ;; # We use `pc' rather than `unknown' # because (1) that's what they normally are, and # (2) the word "unknown" tends to confuse beginning users. i*86 | x86_64) basic_machine=$basic_machine-pc ;; # Object if more than one company name word. *-*-*) echo Invalid configuration \`$1\': machine \`$basic_machine\' not recognized 1>&2 exit 1 ;; # Recognize the basic CPU types with company name. 580-* \ | a29k-* \ | aarch64-* | aarch64_be-* \ | alpha-* | alphaev[4-8]-* | alphaev56-* | alphaev6[78]-* \ | alpha64-* | alpha64ev[4-8]-* | alpha64ev56-* | alpha64ev6[78]-* \ | alphapca5[67]-* | alpha64pca5[67]-* | arc-* \ | arm-* | armbe-* | armle-* | armeb-* | armv*-* \ | avr-* | avr32-* \ | be32-* | be64-* \ | bfin-* | bs2000-* \ | c[123]* | c30-* | [cjt]90-* | c4x-* \ | clipper-* | craynv-* | cydra-* \ | d10v-* | d30v-* | dlx-* \ | elxsi-* \ | f30[01]-* | f700-* | fido-* | fr30-* | frv-* | fx80-* \ | h8300-* | h8500-* \ | hppa-* | hppa1.[01]-* | hppa2.0-* | hppa2.0[nw]-* | hppa64-* \ | hexagon-* \ | i*86-* | i860-* | i960-* | ia64-* \ | ip2k-* | iq2000-* \ | le32-* | le64-* \ | lm32-* \ | m32c-* | m32r-* | m32rle-* \ | m68000-* | m680[012346]0-* | m68360-* | m683?2-* | m68k-* \ | m88110-* | m88k-* | maxq-* | mcore-* | metag-* | microblaze-* \ | mips-* | mipsbe-* | mipseb-* | mipsel-* | mipsle-* \ | mips16-* \ | mips64-* | mips64el-* \ | mips64octeon-* | mips64octeonel-* \ | mips64orion-* | mips64orionel-* \ | mips64r5900-* | mips64r5900el-* \ | mips64vr-* | mips64vrel-* \ | mips64vr4100-* | mips64vr4100el-* \ | mips64vr4300-* | mips64vr4300el-* \ | mips64vr5000-* | mips64vr5000el-* \ | mips64vr5900-* | mips64vr5900el-* \ | mipsisa32-* | mipsisa32el-* \ | mipsisa32r2-* | mipsisa32r2el-* \ | mipsisa64-* | mipsisa64el-* \ | mipsisa64r2-* | mipsisa64r2el-* \ | mipsisa64sb1-* | mipsisa64sb1el-* \ | mipsisa64sr71k-* | mipsisa64sr71kel-* \ | mipstx39-* | mipstx39el-* \ | mmix-* \ | mt-* \ | msp430-* \ | nds32-* | nds32le-* | nds32be-* \ | nios-* | nios2-* \ | none-* | np1-* | ns16k-* | ns32k-* \ | open8-* \ | orion-* \ | pdp10-* | pdp11-* | pj-* | pjl-* | pn-* | power-* \ | powerpc-* | powerpc64-* | powerpc64le-* | powerpcle-* \ | pyramid-* \ | rl78-* | romp-* | rs6000-* | rx-* \ | sh-* | sh[1234]-* | sh[24]a-* | sh[24]aeb-* | sh[23]e-* | sh[34]eb-* | sheb-* | shbe-* \ | shle-* | sh[1234]le-* | sh3ele-* | sh64-* | sh64le-* \ | sparc-* | sparc64-* | sparc64b-* | sparc64v-* | sparc86x-* | sparclet-* \ | sparclite-* \ | sparcv8-* | sparcv9-* | sparcv9b-* | sparcv9v-* | sv1-* | sx?-* \ | tahoe-* \ | tic30-* | tic4x-* | tic54x-* | tic55x-* | tic6x-* | tic80-* \ | tile*-* \ | tron-* \ | ubicom32-* \ | v850-* | v850e-* | v850e1-* | v850es-* | v850e2-* | v850e2v3-* \ | vax-* \ | we32k-* \ | x86-* | x86_64-* | xc16x-* | xps100-* \ | xstormy16-* | xtensa*-* \ | ymp-* \ | z8k-* | z80-*) ;; # Recognize the basic CPU types without company name, with glob match. xtensa*) basic_machine=$basic_machine-unknown ;; # Recognize the various machine names and aliases which stand # for a CPU type and a company and sometimes even an OS. 386bsd) basic_machine=i386-unknown os=-bsd ;; 3b1 | 7300 | 7300-att | att-7300 | pc7300 | safari | unixpc) basic_machine=m68000-att ;; 3b*) basic_machine=we32k-att ;; a29khif) basic_machine=a29k-amd os=-udi ;; abacus) basic_machine=abacus-unknown ;; adobe68k) basic_machine=m68010-adobe os=-scout ;; alliant | fx80) basic_machine=fx80-alliant ;; altos | altos3068) basic_machine=m68k-altos ;; am29k) basic_machine=a29k-none os=-bsd ;; amd64) basic_machine=x86_64-pc ;; amd64-*) basic_machine=x86_64-`echo $basic_machine | sed 's/^[^-]*-//'` ;; amdahl) basic_machine=580-amdahl os=-sysv ;; amiga | amiga-*) basic_machine=m68k-unknown ;; amigaos | amigados) basic_machine=m68k-unknown os=-amigaos ;; amigaunix | amix) basic_machine=m68k-unknown os=-sysv4 ;; apollo68) basic_machine=m68k-apollo os=-sysv ;; apollo68bsd) basic_machine=m68k-apollo os=-bsd ;; aros) basic_machine=i386-pc os=-aros ;; aux) basic_machine=m68k-apple os=-aux ;; balance) basic_machine=ns32k-sequent os=-dynix ;; blackfin) basic_machine=bfin-unknown os=-linux ;; blackfin-*) basic_machine=bfin-`echo $basic_machine | sed 's/^[^-]*-//'` os=-linux ;; bluegene*) basic_machine=powerpc-ibm os=-cnk ;; c54x-*) basic_machine=tic54x-`echo $basic_machine | sed 's/^[^-]*-//'` ;; c55x-*) basic_machine=tic55x-`echo $basic_machine | sed 's/^[^-]*-//'` ;; c6x-*) basic_machine=tic6x-`echo $basic_machine | sed 's/^[^-]*-//'` ;; c90) basic_machine=c90-cray os=-unicos ;; cegcc) basic_machine=arm-unknown os=-cegcc ;; convex-c1) basic_machine=c1-convex os=-bsd ;; convex-c2) basic_machine=c2-convex os=-bsd ;; convex-c32) basic_machine=c32-convex os=-bsd ;; convex-c34) basic_machine=c34-convex os=-bsd ;; convex-c38) basic_machine=c38-convex os=-bsd ;; cray | j90) basic_machine=j90-cray os=-unicos ;; craynv) basic_machine=craynv-cray os=-unicosmp ;; cr16 | cr16-*) basic_machine=cr16-unknown os=-elf ;; crds | unos) basic_machine=m68k-crds ;; crisv32 | crisv32-* | etraxfs*) basic_machine=crisv32-axis ;; cris | cris-* | etrax*) basic_machine=cris-axis ;; crx) basic_machine=crx-unknown os=-elf ;; da30 | da30-*) basic_machine=m68k-da30 ;; decstation | decstation-3100 | pmax | pmax-* | pmin | dec3100 | decstatn) basic_machine=mips-dec ;; decsystem10* | dec10*) basic_machine=pdp10-dec os=-tops10 ;; decsystem20* | dec20*) basic_machine=pdp10-dec os=-tops20 ;; delta | 3300 | motorola-3300 | motorola-delta \ | 3300-motorola | delta-motorola) basic_machine=m68k-motorola ;; delta88) basic_machine=m88k-motorola os=-sysv3 ;; dicos) basic_machine=i686-pc os=-dicos ;; djgpp) basic_machine=i586-pc os=-msdosdjgpp ;; dpx20 | dpx20-*) basic_machine=rs6000-bull os=-bosx ;; dpx2* | dpx2*-bull) basic_machine=m68k-bull os=-sysv3 ;; ebmon29k) basic_machine=a29k-amd os=-ebmon ;; elxsi) basic_machine=elxsi-elxsi os=-bsd ;; encore | umax | mmax) basic_machine=ns32k-encore ;; es1800 | OSE68k | ose68k | ose | OSE) basic_machine=m68k-ericsson os=-ose ;; fx2800) basic_machine=i860-alliant ;; genix) basic_machine=ns32k-ns ;; gmicro) basic_machine=tron-gmicro os=-sysv ;; go32) basic_machine=i386-pc os=-go32 ;; h3050r* | hiux*) basic_machine=hppa1.1-hitachi os=-hiuxwe2 ;; h8300hms) basic_machine=h8300-hitachi os=-hms ;; h8300xray) basic_machine=h8300-hitachi os=-xray ;; h8500hms) basic_machine=h8500-hitachi os=-hms ;; harris) basic_machine=m88k-harris os=-sysv3 ;; hp300-*) basic_machine=m68k-hp ;; hp300bsd) basic_machine=m68k-hp os=-bsd ;; hp300hpux) basic_machine=m68k-hp os=-hpux ;; hp3k9[0-9][0-9] | hp9[0-9][0-9]) basic_machine=hppa1.0-hp ;; hp9k2[0-9][0-9] | hp9k31[0-9]) basic_machine=m68000-hp ;; hp9k3[2-9][0-9]) basic_machine=m68k-hp ;; hp9k6[0-9][0-9] | hp6[0-9][0-9]) basic_machine=hppa1.0-hp ;; hp9k7[0-79][0-9] | hp7[0-79][0-9]) basic_machine=hppa1.1-hp ;; hp9k78[0-9] | hp78[0-9]) # FIXME: really hppa2.0-hp basic_machine=hppa1.1-hp ;; hp9k8[67]1 | hp8[67]1 | hp9k80[24] | hp80[24] | hp9k8[78]9 | hp8[78]9 | hp9k893 | hp893) # FIXME: really hppa2.0-hp basic_machine=hppa1.1-hp ;; hp9k8[0-9][13679] | hp8[0-9][13679]) basic_machine=hppa1.1-hp ;; hp9k8[0-9][0-9] | hp8[0-9][0-9]) basic_machine=hppa1.0-hp ;; hppa-next) os=-nextstep3 ;; hppaosf) basic_machine=hppa1.1-hp os=-osf ;; hppro) basic_machine=hppa1.1-hp os=-proelf ;; i370-ibm* | ibm*) basic_machine=i370-ibm ;; i*86v32) basic_machine=`echo $1 | sed -e 's/86.*/86-pc/'` os=-sysv32 ;; i*86v4*) basic_machine=`echo $1 | sed -e 's/86.*/86-pc/'` os=-sysv4 ;; i*86v) basic_machine=`echo $1 | sed -e 's/86.*/86-pc/'` os=-sysv ;; i*86sol2) basic_machine=`echo $1 | sed -e 's/86.*/86-pc/'` os=-solaris2 ;; i386mach) basic_machine=i386-mach os=-mach ;; i386-vsta | vsta) basic_machine=i386-unknown os=-vsta ;; iris | iris4d) basic_machine=mips-sgi case $os in -irix*) ;; *) os=-irix4 ;; esac ;; isi68 | isi) basic_machine=m68k-isi os=-sysv ;; m68knommu) basic_machine=m68k-unknown os=-linux ;; m68knommu-*) basic_machine=m68k-`echo $basic_machine | sed 's/^[^-]*-//'` os=-linux ;; m88k-omron*) basic_machine=m88k-omron ;; magnum | m3230) basic_machine=mips-mips os=-sysv ;; merlin) basic_machine=ns32k-utek os=-sysv ;; microblaze) basic_machine=microblaze-xilinx ;; mingw32) basic_machine=i386-pc os=-mingw32 ;; mingw32ce) basic_machine=arm-unknown os=-mingw32ce ;; miniframe) basic_machine=m68000-convergent ;; *mint | -mint[0-9]* | *MiNT | *MiNT[0-9]*) basic_machine=m68k-atari os=-mint ;; mips3*-*) basic_machine=`echo $basic_machine | sed -e 's/mips3/mips64/'` ;; mips3*) basic_machine=`echo $basic_machine | sed -e 's/mips3/mips64/'`-unknown ;; monitor) basic_machine=m68k-rom68k os=-coff ;; morphos) basic_machine=powerpc-unknown os=-morphos ;; msdos) basic_machine=i386-pc os=-msdos ;; ms1-*) basic_machine=`echo $basic_machine | sed -e 's/ms1-/mt-/'` ;; msys) basic_machine=i386-pc os=-msys ;; mvs) basic_machine=i370-ibm os=-mvs ;; nacl) basic_machine=le32-unknown os=-nacl ;; ncr3000) basic_machine=i486-ncr os=-sysv4 ;; netbsd386) basic_machine=i386-unknown os=-netbsd ;; netwinder) basic_machine=armv4l-rebel os=-linux ;; news | news700 | news800 | news900) basic_machine=m68k-sony os=-newsos ;; news1000) basic_machine=m68030-sony os=-newsos ;; news-3600 | risc-news) basic_machine=mips-sony os=-newsos ;; necv70) basic_machine=v70-nec os=-sysv ;; next | m*-next ) basic_machine=m68k-next case $os in -nextstep* ) ;; -ns2*) os=-nextstep2 ;; *) os=-nextstep3 ;; esac ;; nh3000) basic_machine=m68k-harris os=-cxux ;; nh[45]000) basic_machine=m88k-harris os=-cxux ;; nindy960) basic_machine=i960-intel os=-nindy ;; mon960) basic_machine=i960-intel os=-mon960 ;; nonstopux) basic_machine=mips-compaq os=-nonstopux ;; np1) basic_machine=np1-gould ;; neo-tandem) basic_machine=neo-tandem ;; nse-tandem) basic_machine=nse-tandem ;; nsr-tandem) basic_machine=nsr-tandem ;; op50n-* | op60c-*) basic_machine=hppa1.1-oki os=-proelf ;; openrisc | openrisc-*) basic_machine=or32-unknown ;; os400) basic_machine=powerpc-ibm os=-os400 ;; OSE68000 | ose68000) basic_machine=m68000-ericsson os=-ose ;; os68k) basic_machine=m68k-none os=-os68k ;; pa-hitachi) basic_machine=hppa1.1-hitachi os=-hiuxwe2 ;; paragon) basic_machine=i860-intel os=-osf ;; parisc) basic_machine=hppa-unknown os=-linux ;; parisc-*) basic_machine=hppa-`echo $basic_machine | sed 's/^[^-]*-//'` os=-linux ;; pbd) basic_machine=sparc-tti ;; pbb) basic_machine=m68k-tti ;; pc532 | pc532-*) basic_machine=ns32k-pc532 ;; pc98) basic_machine=i386-pc ;; pc98-*) basic_machine=i386-`echo $basic_machine | sed 's/^[^-]*-//'` ;; pentium | p5 | k5 | k6 | nexgen | viac3) basic_machine=i586-pc ;; pentiumpro | p6 | 6x86 | athlon | athlon_*) basic_machine=i686-pc ;; pentiumii | pentium2 | pentiumiii | pentium3) basic_machine=i686-pc ;; pentium4) basic_machine=i786-pc ;; pentium-* | p5-* | k5-* | k6-* | nexgen-* | viac3-*) basic_machine=i586-`echo $basic_machine | sed 's/^[^-]*-//'` ;; pentiumpro-* | p6-* | 6x86-* | athlon-*) basic_machine=i686-`echo $basic_machine | sed 's/^[^-]*-//'` ;; pentiumii-* | pentium2-* | pentiumiii-* | pentium3-*) basic_machine=i686-`echo $basic_machine | sed 's/^[^-]*-//'` ;; pentium4-*) basic_machine=i786-`echo $basic_machine | sed 's/^[^-]*-//'` ;; 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See the # GNU General Public License for more details. # You should have received a copy of the GNU General Public License # along with this program. If not, see <http://www.gnu.org/licenses/>. # As a special exception to the GNU General Public License, if you # distribute this file as part of a program that contains a # configuration script generated by Autoconf, you may include it under # the same distribution terms that you use for the rest of that program. # Originally written by Alexandre Oliva <oliva@dcc.unicamp.br>. case $1 in '') echo "$0: No command. Try \`$0 --help' for more information." 1>&2 exit 1; ;; -h | --h*) cat <<\EOF Usage: depcomp [--help] [--version] PROGRAM [ARGS] Run PROGRAMS ARGS to compile a file, generating dependencies as side-effects. Environment variables: depmode Dependency tracking mode. source Source file read by `PROGRAMS ARGS'. object Object file output by `PROGRAMS ARGS'. DEPDIR directory where to store dependencies. depfile Dependency file to output. tmpdepfile Temporary file to use when outputting dependencies. libtool Whether libtool is used (yes/no). Report bugs to <bug-automake@gnu.org>. EOF exit $? ;; -v | --v*) echo "depcomp $scriptversion" exit $? ;; esac if test -z "$depmode" || test -z "$source" || test -z "$object"; then echo "depcomp: Variables source, object and depmode must be set" 1>&2 exit 1 fi # Dependencies for sub/bar.o or sub/bar.obj go into sub/.deps/bar.Po. depfile=${depfile-`echo "$object" | sed 's|[^\\/]*$|'${DEPDIR-.deps}'/&|;s|\.\([^.]*\)$|.P\1|;s|Pobj$|Po|'`} tmpdepfile=${tmpdepfile-`echo "$depfile" | sed 's/\.\([^.]*\)$/.T\1/'`} rm -f "$tmpdepfile" # Some modes work just like other modes, but use different flags. We # parameterize here, but still list the modes in the big case below, # to make depend.m4 easier to write. Note that we *cannot* use a case # here, because this file can only contain one case statement. if test "$depmode" = hp; then # HP compiler uses -M and no extra arg. gccflag=-M depmode=gcc fi if test "$depmode" = dashXmstdout; then # This is just like dashmstdout with a different argument. dashmflag=-xM depmode=dashmstdout fi cygpath_u="cygpath -u -f -" if test "$depmode" = msvcmsys; then # This is just like msvisualcpp but w/o cygpath translation. # Just convert the backslash-escaped backslashes to single forward # slashes to satisfy depend.m4 cygpath_u='sed s,\\\\,/,g' depmode=msvisualcpp fi if test "$depmode" = msvc7msys; then # This is just like msvc7 but w/o cygpath translation. # Just convert the backslash-escaped backslashes to single forward # slashes to satisfy depend.m4 cygpath_u='sed s,\\\\,/,g' depmode=msvc7 fi case "$depmode" in gcc3) ## gcc 3 implements dependency tracking that does exactly what ## we want. Yay! Note: for some reason libtool 1.4 doesn't like ## it if -MD -MP comes after the -MF stuff. Hmm. ## Unfortunately, FreeBSD c89 acceptance of flags depends upon ## the command line argument order; so add the flags where they ## appear in depend2.am. Note that the slowdown incurred here ## affects only configure: in makefiles, %FASTDEP% shortcuts this. for arg do case $arg in -c) set fnord "$@" -MT "$object" -MD -MP -MF "$tmpdepfile" "$arg" ;; *) set fnord "$@" "$arg" ;; esac shift # fnord shift # $arg done "$@" stat=$? if test $stat -eq 0; then : else rm -f "$tmpdepfile" exit $stat fi mv "$tmpdepfile" "$depfile" ;; gcc) ## There are various ways to get dependency output from gcc. Here's ## why we pick this rather obscure method: ## - Don't want to use -MD because we'd like the dependencies to end ## up in a subdir. Having to rename by hand is ugly. ## (We might end up doing this anyway to support other compilers.) ## - The DEPENDENCIES_OUTPUT environment variable makes gcc act like ## -MM, not -M (despite what the docs say). ## - Using -M directly means running the compiler twice (even worse ## than renaming). if test -z "$gccflag"; then gccflag=-MD, fi "$@" -Wp,"$gccflag$tmpdepfile" stat=$? if test $stat -eq 0; then : else rm -f "$tmpdepfile" exit $stat fi rm -f "$depfile" echo "$object : \\" > "$depfile" alpha=ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz ## The second -e expression handles DOS-style file names with drive letters. sed -e 's/^[^:]*: / /' \ -e 's/^['$alpha']:\/[^:]*: / /' < "$tmpdepfile" >> "$depfile" ## This next piece of magic avoids the `deleted header file' problem. ## The problem is that when a header file which appears in a .P file ## is deleted, the dependency causes make to die (because there is ## typically no way to rebuild the header). We avoid this by adding ## dummy dependencies for each header file. Too bad gcc doesn't do ## this for us directly. tr ' ' ' ' < "$tmpdepfile" | ## Some versions of gcc put a space before the `:'. On the theory ## that the space means something, we add a space to the output as ## well. hp depmode also adds that space, but also prefixes the VPATH ## to the object. Take care to not repeat it in the output. ## Some versions of the HPUX 10.20 sed can't process this invocation ## correctly. Breaking it into two sed invocations is a workaround. sed -e 's/^\\$//' -e '/^$/d' -e "s|.*$object$||" -e '/:$/d' \ | sed -e 's/$/ :/' >> "$depfile" rm -f "$tmpdepfile" ;; hp) # This case exists only to let depend.m4 do its work. It works by # looking at the text of this script. This case will never be run, # since it is checked for above. exit 1 ;; sgi) if test "$libtool" = yes; then "$@" "-Wp,-MDupdate,$tmpdepfile" else "$@" -MDupdate "$tmpdepfile" fi stat=$? if test $stat -eq 0; then : else rm -f "$tmpdepfile" exit $stat fi rm -f "$depfile" if test -f "$tmpdepfile"; then # yes, the sourcefile depend on other files echo "$object : \\" > "$depfile" # Clip off the initial element (the dependent). Don't try to be # clever and replace this with sed code, as IRIX sed won't handle # lines with more than a fixed number of characters (4096 in # IRIX 6.2 sed, 8192 in IRIX 6.5). 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When passed as first option, # `--mode=MODE' may be abbreviated as `MODE' or a unique abbreviation of that. # Try `$progname --help --mode=MODE' for a more detailed description of MODE. # # When reporting a bug, please describe a test case to reproduce it and # include the following information: # # host-triplet: $host # shell: $SHELL # compiler: $LTCC # compiler flags: $LTCFLAGS # linker: $LD (gnu? $with_gnu_ld) # $progname: (GNU libtool) 2.4.2 Debian-2.4.2-1ubuntu1 # automake: $automake_version # autoconf: $autoconf_version # # Report bugs to <bug-libtool@gnu.org>. # GNU libtool home page: <http://www.gnu.org/software/libtool/>. # General help using GNU software: <http://www.gnu.org/gethelp/>. 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Disable this feature. alias -g '${1+"$@"}'='"$@"' setopt NO_GLOB_SUBST else case `(set -o) 2>/dev/null` in *posix*) set -o posix;; esac fi BIN_SH=xpg4; export BIN_SH # for Tru64 DUALCASE=1; export DUALCASE # for MKS sh # A function that is used when there is no print builtin or printf. func_fallback_echo () { eval 'cat <<_LTECHO_EOF $1 _LTECHO_EOF' } # NLS nuisances: We save the old values to restore during execute mode. lt_user_locale= lt_safe_locale= for lt_var in LANG LANGUAGE LC_ALL LC_CTYPE LC_COLLATE LC_MESSAGES do eval "if test \"\${$lt_var+set}\" = set; then save_$lt_var=\$$lt_var $lt_var=C export $lt_var lt_user_locale=\"$lt_var=\\\$save_\$lt_var; \$lt_user_locale\" lt_safe_locale=\"$lt_var=C; \$lt_safe_locale\" fi" done LC_ALL=C LANGUAGE=C export LANGUAGE LC_ALL $lt_unset CDPATH # Work around backward compatibility issue on IRIX 6.5. On IRIX 6.4+, sh # is ksh but when the shell is invoked as "sh" and the current value of # the _XPG environment variable is not equal to 1 (one), the special # positional parameter $0, within a function call, is the name of the # function. progpath="$0" : ${CP="cp -f"} test "${ECHO+set}" = set || ECHO=${as_echo-'printf %s\n'} : ${MAKE="make"} : ${MKDIR="mkdir"} : ${MV="mv -f"} : ${RM="rm -f"} : ${SHELL="${CONFIG_SHELL-/bin/sh}"} : ${Xsed="$SED -e 1s/^X//"} # Global variables: EXIT_SUCCESS=0 EXIT_FAILURE=1 EXIT_MISMATCH=63 # $? = 63 is used to indicate version mismatch to missing. EXIT_SKIP=77 # $? = 77 is used to indicate a skipped test to automake. exit_status=$EXIT_SUCCESS # Make sure IFS has a sensible default lt_nl=' ' IFS=" $lt_nl" dirname="s,/[^/]*$,," basename="s,^.*/,," # func_dirname file append nondir_replacement # Compute the dirname of FILE. If nonempty, add APPEND to the result, # otherwise set result to NONDIR_REPLACEMENT. func_dirname () { func_dirname_result=`$ECHO "${1}" | $SED "$dirname"` if test "X$func_dirname_result" = "X${1}"; then func_dirname_result="${3}" else func_dirname_result="$func_dirname_result${2}" fi } # func_dirname may be replaced by extended shell implementation # func_basename file func_basename () { func_basename_result=`$ECHO "${1}" | $SED "$basename"` } # func_basename may be replaced by extended shell implementation # func_dirname_and_basename file append nondir_replacement # perform func_basename and func_dirname in a single function # call: # dirname: Compute the dirname of FILE. If nonempty, # add APPEND to the result, otherwise set result # to NONDIR_REPLACEMENT. # value returned in "$func_dirname_result" # basename: Compute filename of FILE. # value retuned in "$func_basename_result" # Implementation must be kept synchronized with func_dirname # and func_basename. For efficiency, we do not delegate to # those functions but instead duplicate the functionality here. func_dirname_and_basename () { # Extract subdirectory from the argument. func_dirname_result=`$ECHO "${1}" | $SED -e "$dirname"` if test "X$func_dirname_result" = "X${1}"; then func_dirname_result="${3}" else func_dirname_result="$func_dirname_result${2}" fi func_basename_result=`$ECHO "${1}" | $SED -e "$basename"` } # func_dirname_and_basename may be replaced by extended shell implementation # func_stripname prefix suffix name # strip PREFIX and SUFFIX off of NAME. # PREFIX and SUFFIX must not contain globbing or regex special # characters, hashes, percent signs, but SUFFIX may contain a leading # dot (in which case that matches only a dot). # func_strip_suffix prefix name func_stripname () { case ${2} in .*) func_stripname_result=`$ECHO "${3}" | $SED "s%^${1}%%; s%\\\\${2}\$%%"`;; *) func_stripname_result=`$ECHO "${3}" | $SED "s%^${1}%%; s%${2}\$%%"`;; esac } # func_stripname may be replaced by extended shell implementation # These SED scripts presuppose an absolute path with a trailing slash. pathcar='s,^/\([^/]*\).*$,\1,' pathcdr='s,^/[^/]*,,' removedotparts=':dotsl s@/\./@/@g t dotsl s,/\.$,/,' collapseslashes='s@/\{1,\}@/@g' finalslash='s,/*$,/,' # func_normal_abspath PATH # Remove doubled-up and trailing slashes, "." path components, # and cancel out any ".." path components in PATH after making # it an absolute path. # value returned in "$func_normal_abspath_result" func_normal_abspath () { # Start from root dir and reassemble the path. func_normal_abspath_result= func_normal_abspath_tpath=$1 func_normal_abspath_altnamespace= case $func_normal_abspath_tpath in "") # Empty path, that just means $cwd. func_stripname '' '/' "`pwd`" func_normal_abspath_result=$func_stripname_result return ;; # The next three entries are used to spot a run of precisely # two leading slashes without using negated character classes; # we take advantage of case's first-match behaviour. ///*) # Unusual form of absolute path, do nothing. ;; //*) # Not necessarily an ordinary path; POSIX reserves leading '//' # and for example Cygwin uses it to access remote file shares # over CIFS/SMB, so we conserve a leading double slash if found. func_normal_abspath_altnamespace=/ ;; /*) # Absolute path, do nothing. ;; *) # Relative path, prepend $cwd. func_normal_abspath_tpath=`pwd`/$func_normal_abspath_tpath ;; esac # Cancel out all the simple stuff to save iterations. 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If bindir is libdir, return empty string, # else relative path ending with a slash; either way, target # file name can be directly appended. if test ! -z "$func_relative_path_result"; then func_stripname './' '' "$func_relative_path_result/" func_relative_path_result=$func_stripname_result fi } # The name of this program: func_dirname_and_basename "$progpath" progname=$func_basename_result # Make sure we have an absolute path for reexecution: case $progpath in [\\/]*|[A-Za-z]:\\*) ;; *[\\/]*) progdir=$func_dirname_result progdir=`cd "$progdir" && pwd` progpath="$progdir/$progname" ;; *) save_IFS="$IFS" IFS=${PATH_SEPARATOR-:} for progdir in $PATH; do IFS="$save_IFS" test -x "$progdir/$progname" && break done IFS="$save_IFS" test -n "$progdir" || progdir=`pwd` progpath="$progdir/$progname" ;; esac # Sed substitution that helps us do robust quoting. It backslashifies # metacharacters that are still active within double-quoted strings. Xsed="${SED}"' -e 1s/^X//' sed_quote_subst='s/\([`"$\\]\)/\\\1/g' # Same as above, but do not quote variable references. double_quote_subst='s/\(["`\\]\)/\\\1/g' # Sed substitution that turns a string into a regex matching for the # string literally. sed_make_literal_regex='s,[].[^$\\*\/],\\&,g' # Sed substitution that converts a w32 file name or path # which contains forward slashes, into one that contains # (escaped) backslashes. A very naive implementation. lt_sed_naive_backslashify='s|\\\\*|\\|g;s|/|\\|g;s|\\|\\\\|g' # Re-`\' parameter expansions in output of double_quote_subst that were # `\'-ed in input to the same. If an odd number of `\' preceded a '$' # in input to double_quote_subst, that '$' was protected from expansion. # Since each input `\' is now two `\'s, look for any number of runs of # four `\'s followed by two `\'s and then a '$'. `\' that '$'. bs='\\' bs2='\\\\' bs4='\\\\\\\\' dollar='\$' sed_double_backslash="\ s/$bs4/&\\ /g s/^$bs2$dollar/$bs&/ s/\\([^$bs]\\)$bs2$dollar/\\1$bs2$bs$dollar/g s/\n//g" # Standard options: opt_dry_run=false opt_help=false opt_quiet=false opt_verbose=false opt_warning=: # func_echo arg... # Echo program name prefixed message, along with the current mode # name if it has been set yet. func_echo () { $ECHO "$progname: ${opt_mode+$opt_mode: }$*" } # func_verbose arg... # Echo program name prefixed message in verbose mode only. func_verbose () { $opt_verbose && func_echo ${1+"$@"} # A bug in bash halts the script if the last line of a function # fails when set -e is in force, so we need another command to # work around that: : } # func_echo_all arg... # Invoke $ECHO with all args, space-separated. func_echo_all () { $ECHO "$*" } # func_error arg... # Echo program name prefixed message to standard error. func_error () { $ECHO "$progname: ${opt_mode+$opt_mode: }"${1+"$@"} 1>&2 } # func_warning arg... # Echo program name prefixed warning message to standard error. func_warning () { $opt_warning && $ECHO "$progname: ${opt_mode+$opt_mode: }warning: "${1+"$@"} 1>&2 # bash bug again: : } # func_fatal_error arg... # Echo program name prefixed message to standard error, and exit. func_fatal_error () { func_error ${1+"$@"} exit $EXIT_FAILURE } # func_fatal_help arg... # Echo program name prefixed message to standard error, followed by # a help hint, and exit. func_fatal_help () { func_error ${1+"$@"} func_fatal_error "$help" } help="Try \`$progname --help' for more information." ## default # func_grep expression filename # Check whether EXPRESSION matches any line of FILENAME, without output. func_grep () { $GREP "$1" "$2" >/dev/null 2>&1 } # func_mkdir_p directory-path # Make sure the entire path to DIRECTORY-PATH is available. func_mkdir_p () { my_directory_path="$1" my_dir_list= if test -n "$my_directory_path" && test "$opt_dry_run" != ":"; then # Protect directory names starting with `-' case $my_directory_path in -*) my_directory_path="./$my_directory_path" ;; esac # While some portion of DIR does not yet exist... while test ! -d "$my_directory_path"; do # ...make a list in topmost first order. Use a colon delimited # list incase some portion of path contains whitespace. my_dir_list="$my_directory_path:$my_dir_list" # If the last portion added has no slash in it, the list is done case $my_directory_path in */*) ;; *) break ;; esac # ...otherwise throw away the child directory and loop my_directory_path=`$ECHO "$my_directory_path" | $SED -e "$dirname"` done my_dir_list=`$ECHO "$my_dir_list" | $SED 's,:*$,,'` save_mkdir_p_IFS="$IFS"; IFS=':' for my_dir in $my_dir_list; do IFS="$save_mkdir_p_IFS" # mkdir can fail with a `File exist' error if two processes # try to create one of the directories concurrently. Don't # stop in that case! $MKDIR "$my_dir" 2>/dev/null || : done IFS="$save_mkdir_p_IFS" # Bail out if we (or some other process) failed to create a directory. test -d "$my_directory_path" || \ func_fatal_error "Failed to create \`$1'" fi } # func_mktempdir [string] # Make a temporary directory that won't clash with other running # libtool processes, and avoids race conditions if possible. If # given, STRING is the basename for that directory. func_mktempdir () { my_template="${TMPDIR-/tmp}/${1-$progname}" if test "$opt_dry_run" = ":"; then # Return a directory name, but don't create it in dry-run mode my_tmpdir="${my_template}-$$" else # If mktemp works, use that first and foremost my_tmpdir=`mktemp -d "${my_template}-XXXXXXXX" 2>/dev/null` if test ! -d "$my_tmpdir"; then # Failing that, at least try and use $RANDOM to avoid a race my_tmpdir="${my_template}-${RANDOM-0}$$" save_mktempdir_umask=`umask` umask 0077 $MKDIR "$my_tmpdir" umask $save_mktempdir_umask fi # If we're not in dry-run mode, bomb out on failure test -d "$my_tmpdir" || \ func_fatal_error "cannot create temporary directory \`$my_tmpdir'" fi $ECHO "$my_tmpdir" } # func_quote_for_eval arg # Aesthetically quote ARG to be evaled later. # This function returns two values: FUNC_QUOTE_FOR_EVAL_RESULT # is double-quoted, suitable for a subsequent eval, whereas # FUNC_QUOTE_FOR_EVAL_UNQUOTED_RESULT has merely all characters # which are still active within double quotes backslashified. func_quote_for_eval () { case $1 in *[\\\`\"\$]*) func_quote_for_eval_unquoted_result=`$ECHO "$1" | $SED "$sed_quote_subst"` ;; *) func_quote_for_eval_unquoted_result="$1" ;; esac case $func_quote_for_eval_unquoted_result in # Double-quote args containing shell metacharacters to delay # word splitting, command substitution and and variable # expansion for a subsequent eval. # Many Bourne shells cannot handle close brackets correctly # in scan sets, so we specify it separately. *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \ ]*|*]*|"") func_quote_for_eval_result="\"$func_quote_for_eval_unquoted_result\"" ;; *) func_quote_for_eval_result="$func_quote_for_eval_unquoted_result" esac } # func_quote_for_expand arg # Aesthetically quote ARG to be evaled later; same as above, # but do not quote variable references. func_quote_for_expand () { case $1 in *[\\\`\"]*) my_arg=`$ECHO "$1" | $SED \ -e "$double_quote_subst" -e "$sed_double_backslash"` ;; *) my_arg="$1" ;; esac case $my_arg in # Double-quote args containing shell metacharacters to delay # word splitting and command substitution for a subsequent eval. # Many Bourne shells cannot handle close brackets correctly # in scan sets, so we specify it separately. *[\[\~\#\^\&\*\(\)\{\}\|\;\<\>\?\'\ \ ]*|*]*|"") my_arg="\"$my_arg\"" ;; esac func_quote_for_expand_result="$my_arg" } # func_show_eval cmd [fail_exp] # Unless opt_silent is true, then output CMD. Then, if opt_dryrun is # not true, evaluate CMD. If the evaluation of CMD fails, and FAIL_EXP # is given, then evaluate it. func_show_eval () { my_cmd="$1" my_fail_exp="${2-:}" ${opt_silent-false} || { func_quote_for_expand "$my_cmd" eval "func_echo $func_quote_for_expand_result" } if ${opt_dry_run-false}; then :; else eval "$my_cmd" my_status=$? if test "$my_status" -eq 0; then :; else eval "(exit $my_status); $my_fail_exp" fi fi } # func_show_eval_locale cmd [fail_exp] # Unless opt_silent is true, then output CMD. Then, if opt_dryrun is # not true, evaluate CMD. If the evaluation of CMD fails, and FAIL_EXP # is given, then evaluate it. Use the saved locale for evaluation. func_show_eval_locale () { my_cmd="$1" my_fail_exp="${2-:}" ${opt_silent-false} || { func_quote_for_expand "$my_cmd" eval "func_echo $func_quote_for_expand_result" } if ${opt_dry_run-false}; then :; else eval "$lt_user_locale $my_cmd" my_status=$? eval "$lt_safe_locale" if test "$my_status" -eq 0; then :; else eval "(exit $my_status); $my_fail_exp" fi fi } # func_tr_sh # Turn $1 into a string suitable for a shell variable name. # Result is stored in $func_tr_sh_result. All characters # not in the set a-zA-Z0-9_ are replaced with '_'. Further, # if $1 begins with a digit, a '_' is prepended as well. func_tr_sh () { case $1 in [0-9]* | *[!a-zA-Z0-9_]*) func_tr_sh_result=`$ECHO "$1" | $SED 's/^\([0-9]\)/_\1/; s/[^a-zA-Z0-9_]/_/g'` ;; * ) func_tr_sh_result=$1 ;; esac } # func_version # Echo version message to standard output and exit. func_version () { $opt_debug $SED -n '/(C)/!b go :more /\./!{ N s/\n# / / b more } :go /^# '$PROGRAM' (GNU /,/# warranty; / { s/^# // s/^# *$// s/\((C)\)[ 0-9,-]*\( [1-9][0-9]*\)/\1\2/ p }' < "$progpath" exit $? } # func_usage # Echo short help message to standard output and exit. func_usage () { $opt_debug $SED -n '/^# Usage:/,/^# *.*--help/ { s/^# // s/^# *$// s/\$progname/'$progname'/ p }' < "$progpath" echo $ECHO "run \`$progname --help | more' for full usage" exit $? } # func_help [NOEXIT] # Echo long help message to standard output and exit, # unless 'noexit' is passed as argument. func_help () { $opt_debug $SED -n '/^# Usage:/,/# Report bugs to/ { :print s/^# // s/^# *$// s*\$progname*'$progname'* s*\$host*'"$host"'* s*\$SHELL*'"$SHELL"'* s*\$LTCC*'"$LTCC"'* s*\$LTCFLAGS*'"$LTCFLAGS"'* s*\$LD*'"$LD"'* s/\$with_gnu_ld/'"$with_gnu_ld"'/ s/\$automake_version/'"`(${AUTOMAKE-automake} --version) 2>/dev/null |$SED 1q`"'/ s/\$autoconf_version/'"`(${AUTOCONF-autoconf} --version) 2>/dev/null |$SED 1q`"'/ p d } /^# .* home page:/b print /^# General help using/b print ' < "$progpath" ret=$? if test -z "$1"; then exit $ret fi } # func_missing_arg argname # Echo program name prefixed message to standard error and set global # exit_cmd. func_missing_arg () { $opt_debug func_error "missing argument for $1." exit_cmd=exit } # func_split_short_opt shortopt # Set func_split_short_opt_name and func_split_short_opt_arg shell # variables after splitting SHORTOPT after the 2nd character. func_split_short_opt () { my_sed_short_opt='1s/^\(..\).*$/\1/;q' my_sed_short_rest='1s/^..\(.*\)$/\1/;q' func_split_short_opt_name=`$ECHO "$1" | $SED "$my_sed_short_opt"` func_split_short_opt_arg=`$ECHO "$1" | $SED "$my_sed_short_rest"` } # func_split_short_opt may be replaced by extended shell implementation # func_split_long_opt longopt # Set func_split_long_opt_name and func_split_long_opt_arg shell # variables after splitting LONGOPT at the `=' sign. func_split_long_opt () { my_sed_long_opt='1s/^\(--[^=]*\)=.*/\1/;q' my_sed_long_arg='1s/^--[^=]*=//' func_split_long_opt_name=`$ECHO "$1" | $SED "$my_sed_long_opt"` func_split_long_opt_arg=`$ECHO "$1" | $SED "$my_sed_long_arg"` } # func_split_long_opt may be replaced by extended shell implementation exit_cmd=: magic="%%%MAGIC variable%%%" magic_exe="%%%MAGIC EXE variable%%%" # Global variables. nonopt= preserve_args= lo2o="s/\\.lo\$/.${objext}/" o2lo="s/\\.${objext}\$/.lo/" extracted_archives= extracted_serial=0 # If this variable is set in any of the actions, the command in it # will be execed at the end. This prevents here-documents from being # left over by shells. exec_cmd= # func_append var value # Append VALUE to the end of shell variable VAR. func_append () { eval "${1}=\$${1}\${2}" } # func_append may be replaced by extended shell implementation # func_append_quoted var value # Quote VALUE and append to the end of shell variable VAR, separated # by a space. func_append_quoted () { func_quote_for_eval "${2}" eval "${1}=\$${1}\\ \$func_quote_for_eval_result" } # func_append_quoted may be replaced by extended shell implementation # func_arith arithmetic-term... func_arith () { func_arith_result=`expr "${@}"` } # func_arith may be replaced by extended shell implementation # func_len string # STRING may not start with a hyphen. func_len () { func_len_result=`expr "${1}" : ".*" 2>/dev/null || echo $max_cmd_len` } # func_len may be replaced by extended shell implementation # func_lo2o object func_lo2o () { func_lo2o_result=`$ECHO "${1}" | $SED "$lo2o"` } # func_lo2o may be replaced by extended shell implementation # func_xform libobj-or-source func_xform () { func_xform_result=`$ECHO "${1}" | $SED 's/\.[^.]*$/.lo/'` } # func_xform may be replaced by extended shell implementation # func_fatal_configuration arg... # Echo program name prefixed message to standard error, followed by # a configuration failure hint, and exit. func_fatal_configuration () { func_error ${1+"$@"} func_error "See the $PACKAGE documentation for more information." func_fatal_error "Fatal configuration error." } # func_config # Display the configuration for all the tags in this script. func_config () { re_begincf='^# ### BEGIN LIBTOOL' re_endcf='^# ### END LIBTOOL' # Default configuration. $SED "1,/$re_begincf CONFIG/d;/$re_endcf CONFIG/,\$d" < "$progpath" # Now print the configurations for the tags. for tagname in $taglist; do $SED -n "/$re_begincf TAG CONFIG: $tagname\$/,/$re_endcf TAG CONFIG: $tagname\$/p" < "$progpath" done exit $? } # func_features # Display the features supported by this script. func_features () { echo "host: $host" if test "$build_libtool_libs" = yes; then echo "enable shared libraries" else echo "disable shared libraries" fi if test "$build_old_libs" = yes; then echo "enable static libraries" else echo "disable static libraries" fi exit $? } # func_enable_tag tagname # Verify that TAGNAME is valid, and either flag an error and exit, or # enable the TAGNAME tag. We also add TAGNAME to the global $taglist # variable here. func_enable_tag () { # Global variable: tagname="$1" re_begincf="^# ### BEGIN LIBTOOL TAG CONFIG: $tagname\$" re_endcf="^# ### END LIBTOOL TAG CONFIG: $tagname\$" sed_extractcf="/$re_begincf/,/$re_endcf/p" # Validate tagname. case $tagname in *[!-_A-Za-z0-9,/]*) func_fatal_error "invalid tag name: $tagname" ;; esac # Don't test for the "default" C tag, as we know it's # there but not specially marked. case $tagname in CC) ;; *) if $GREP "$re_begincf" "$progpath" >/dev/null 2>&1; then taglist="$taglist $tagname" # Evaluate the configuration. Be careful to quote the path # and the sed script, to avoid splitting on whitespace, but # also don't use non-portable quotes within backquotes within # quotes we have to do it in 2 steps: extractedcf=`$SED -n -e "$sed_extractcf" < "$progpath"` eval "$extractedcf" else func_error "ignoring unknown tag $tagname" fi ;; esac } # func_check_version_match # Ensure that we are using m4 macros, and libtool script from the same # release of libtool. func_check_version_match () { if test "$package_revision" != "$macro_revision"; then if test "$VERSION" != "$macro_version"; then if test -z "$macro_version"; then cat >&2 <<_LT_EOF $progname: Version mismatch error. This is $PACKAGE $VERSION, but the $progname: definition of this LT_INIT comes from an older release. $progname: You should recreate aclocal.m4 with macros from $PACKAGE $VERSION $progname: and run autoconf again. _LT_EOF else cat >&2 <<_LT_EOF $progname: Version mismatch error. This is $PACKAGE $VERSION, but the $progname: definition of this LT_INIT comes from $PACKAGE $macro_version. $progname: You should recreate aclocal.m4 with macros from $PACKAGE $VERSION $progname: and run autoconf again. _LT_EOF fi else cat >&2 <<_LT_EOF $progname: Version mismatch error. This is $PACKAGE $VERSION, revision $package_revision, $progname: but the definition of this LT_INIT comes from revision $macro_revision. $progname: You should recreate aclocal.m4 with macros from revision $package_revision $progname: of $PACKAGE $VERSION and run autoconf again. _LT_EOF fi exit $EXIT_MISMATCH fi } # Shorthand for --mode=foo, only valid as the first argument case $1 in clean|clea|cle|cl) shift; set dummy --mode clean ${1+"$@"}; shift ;; compile|compil|compi|comp|com|co|c) shift; set dummy --mode compile ${1+"$@"}; shift ;; execute|execut|execu|exec|exe|ex|e) shift; set dummy --mode execute ${1+"$@"}; shift ;; finish|finis|fini|fin|fi|f) shift; set dummy --mode finish ${1+"$@"}; shift ;; install|instal|insta|inst|ins|in|i) shift; set dummy --mode install ${1+"$@"}; shift ;; link|lin|li|l) shift; set dummy --mode link ${1+"$@"}; shift ;; uninstall|uninstal|uninsta|uninst|unins|unin|uni|un|u) shift; set dummy --mode uninstall ${1+"$@"}; shift ;; esac # Option defaults: opt_debug=: opt_dry_run=false opt_config=false opt_preserve_dup_deps=false opt_features=false opt_finish=false opt_help=false opt_help_all=false opt_silent=: opt_warning=: opt_verbose=: opt_silent=false opt_verbose=false # Parse options once, thoroughly. This comes as soon as possible in the # script to make things like `--version' happen as quickly as we can. { # this just eases exit handling while test $# -gt 0; do opt="$1" shift case $opt in --debug|-x) opt_debug='set -x' func_echo "enabling shell trace mode" $opt_debug ;; --dry-run|--dryrun|-n) opt_dry_run=: ;; --config) opt_config=: func_config ;; --dlopen|-dlopen) optarg="$1" opt_dlopen="${opt_dlopen+$opt_dlopen }$optarg" shift ;; --preserve-dup-deps) opt_preserve_dup_deps=: ;; --features) opt_features=: func_features ;; --finish) opt_finish=: set dummy --mode finish ${1+"$@"}; shift ;; --help) opt_help=: ;; --help-all) opt_help_all=: opt_help=': help-all' ;; --mode) test $# = 0 && func_missing_arg $opt && break optarg="$1" opt_mode="$optarg" case $optarg in # Valid mode arguments: clean|compile|execute|finish|install|link|relink|uninstall) ;; # Catch anything else as an error *) func_error "invalid argument for $opt" exit_cmd=exit break ;; esac shift ;; --no-silent|--no-quiet) opt_silent=false func_append preserve_args " $opt" ;; --no-warning|--no-warn) opt_warning=false func_append preserve_args " $opt" ;; --no-verbose) opt_verbose=false func_append preserve_args " $opt" ;; --silent|--quiet) opt_silent=: func_append preserve_args " $opt" opt_verbose=false ;; --verbose|-v) opt_verbose=: func_append preserve_args " $opt" opt_silent=false ;; --tag) test $# = 0 && func_missing_arg $opt && break optarg="$1" opt_tag="$optarg" func_append preserve_args " $opt $optarg" func_enable_tag "$optarg" shift ;; -\?|-h) func_usage ;; --help) func_help ;; --version) func_version ;; # Separate optargs to long options: --*=*) func_split_long_opt "$opt" set dummy "$func_split_long_opt_name" "$func_split_long_opt_arg" ${1+"$@"} shift ;; # Separate non-argument short options: -\?*|-h*|-n*|-v*) func_split_short_opt "$opt" set dummy "$func_split_short_opt_name" "-$func_split_short_opt_arg" ${1+"$@"} shift ;; --) break ;; -*) func_fatal_help "unrecognized option \`$opt'" ;; *) set dummy "$opt" ${1+"$@"}; shift; break ;; esac done # Validate options: # save first non-option argument if test "$#" -gt 0; then nonopt="$opt" shift fi # preserve --debug test "$opt_debug" = : || func_append preserve_args " --debug" case $host in *cygwin* | *mingw* | *pw32* | *cegcc*) # don't eliminate duplications in $postdeps and $predeps opt_duplicate_compiler_generated_deps=: ;; *) opt_duplicate_compiler_generated_deps=$opt_preserve_dup_deps ;; esac $opt_help || { # Sanity checks first: func_check_version_match if test "$build_libtool_libs" != yes && test "$build_old_libs" != yes; then func_fatal_configuration "not configured to build any kind of library" fi # Darwin sucks eval std_shrext=\"$shrext_cmds\" # Only execute mode is allowed to have -dlopen flags. if test -n "$opt_dlopen" && test "$opt_mode" != execute; then func_error "unrecognized option \`-dlopen'" $ECHO "$help" 1>&2 exit $EXIT_FAILURE fi # Change the help message to a mode-specific one. generic_help="$help" help="Try \`$progname --help --mode=$opt_mode' for more information." } # Bail if the options were screwed $exit_cmd $EXIT_FAILURE } ## ----------- ## ## Main. ## ## ----------- ## # func_lalib_p file # True iff FILE is a libtool `.la' library or `.lo' object file. # This function is only a basic sanity check; it will hardly flush out # determined imposters. func_lalib_p () { test -f "$1" && $SED -e 4q "$1" 2>/dev/null \ | $GREP "^# Generated by .*$PACKAGE" > /dev/null 2>&1 } # func_lalib_unsafe_p file # True iff FILE is a libtool `.la' library or `.lo' object file. # This function implements the same check as func_lalib_p without # resorting to external programs. To this end, it redirects stdin and # closes it afterwards, without saving the original file descriptor. # As a safety measure, use it only where a negative result would be # fatal anyway. Works if `file' does not exist. func_lalib_unsafe_p () { lalib_p=no if test -f "$1" && test -r "$1" && exec 5<&0 <"$1"; then for lalib_p_l in 1 2 3 4 do read lalib_p_line case "$lalib_p_line" in \#\ Generated\ by\ *$PACKAGE* ) lalib_p=yes; break;; esac done exec 0<&5 5<&- fi test "$lalib_p" = yes } # func_ltwrapper_script_p file # True iff FILE is a libtool wrapper script # This function is only a basic sanity check; it will hardly flush out # determined imposters. func_ltwrapper_script_p () { func_lalib_p "$1" } # func_ltwrapper_executable_p file # True iff FILE is a libtool wrapper executable # This function is only a basic sanity check; it will hardly flush out # determined imposters. func_ltwrapper_executable_p () { func_ltwrapper_exec_suffix= case $1 in *.exe) ;; *) func_ltwrapper_exec_suffix=.exe ;; esac $GREP "$magic_exe" "$1$func_ltwrapper_exec_suffix" >/dev/null 2>&1 } # func_ltwrapper_scriptname file # Assumes file is an ltwrapper_executable # uses $file to determine the appropriate filename for a # temporary ltwrapper_script. func_ltwrapper_scriptname () { func_dirname_and_basename "$1" "" "." func_stripname '' '.exe' "$func_basename_result" func_ltwrapper_scriptname_result="$func_dirname_result/$objdir/${func_stripname_result}_ltshwrapper" } # func_ltwrapper_p file # True iff FILE is a libtool wrapper script or wrapper executable # This function is only a basic sanity check; it will hardly flush out # determined imposters. func_ltwrapper_p () { func_ltwrapper_script_p "$1" || func_ltwrapper_executable_p "$1" } # func_execute_cmds commands fail_cmd # Execute tilde-delimited COMMANDS. # If FAIL_CMD is given, eval that upon failure. # FAIL_CMD may read-access the current command in variable CMD! func_execute_cmds () { $opt_debug save_ifs=$IFS; IFS='~' for cmd in $1; do IFS=$save_ifs eval cmd=\"$cmd\" func_show_eval "$cmd" "${2-:}" done IFS=$save_ifs } # func_source file # Source FILE, adding directory component if necessary. # Note that it is not necessary on cygwin/mingw to append a dot to # FILE even if both FILE and FILE.exe exist: automatic-append-.exe # behavior happens only for exec(3), not for open(2)! Also, sourcing # `FILE.' does not work on cygwin managed mounts. func_source () { $opt_debug case $1 in */* | *\\*) . "$1" ;; *) . "./$1" ;; esac } # func_resolve_sysroot PATH # Replace a leading = in PATH with a sysroot. Store the result into # func_resolve_sysroot_result func_resolve_sysroot () { func_resolve_sysroot_result=$1 case $func_resolve_sysroot_result in =*) func_stripname '=' '' "$func_resolve_sysroot_result" func_resolve_sysroot_result=$lt_sysroot$func_stripname_result ;; esac } # func_replace_sysroot PATH # If PATH begins with the sysroot, replace it with = and # store the result into func_replace_sysroot_result. func_replace_sysroot () { case "$lt_sysroot:$1" in ?*:"$lt_sysroot"*) func_stripname "$lt_sysroot" '' "$1" func_replace_sysroot_result="=$func_stripname_result" ;; *) # Including no sysroot. func_replace_sysroot_result=$1 ;; esac } # func_infer_tag arg # Infer tagged configuration to use if any are available and # if one wasn't chosen via the "--tag" command line option. # Only attempt this if the compiler in the base compile # command doesn't match the default compiler. # arg is usually of the form 'gcc ...' func_infer_tag () { $opt_debug if test -n "$available_tags" && test -z "$tagname"; then CC_quoted= for arg in $CC; do func_append_quoted CC_quoted "$arg" done CC_expanded=`func_echo_all $CC` CC_quoted_expanded=`func_echo_all $CC_quoted` case $@ in # Blanks in the command may have been stripped by the calling shell, # but not from the CC environment variable when configure was run. " $CC "* | "$CC "* | " $CC_expanded "* | "$CC_expanded "* | \ " $CC_quoted"* | "$CC_quoted "* | " $CC_quoted_expanded "* | "$CC_quoted_expanded "*) ;; # Blanks at the start of $base_compile will cause this to fail # if we don't check for them as well. *) for z in $available_tags; do if $GREP "^# ### BEGIN LIBTOOL TAG CONFIG: $z$" < "$progpath" > /dev/null; then # Evaluate the configuration. eval "`${SED} -n -e '/^# ### BEGIN LIBTOOL TAG CONFIG: '$z'$/,/^# ### END LIBTOOL TAG CONFIG: '$z'$/p' < $progpath`" CC_quoted= for arg in $CC; do # Double-quote args containing other shell metacharacters. func_append_quoted CC_quoted "$arg" done CC_expanded=`func_echo_all $CC` CC_quoted_expanded=`func_echo_all $CC_quoted` case "$@ " in " $CC "* | "$CC "* | " $CC_expanded "* | "$CC_expanded "* | \ " $CC_quoted"* | "$CC_quoted "* | " $CC_quoted_expanded "* | "$CC_quoted_expanded "*) # The compiler in the base compile command matches # the one in the tagged configuration. # Assume this is the tagged configuration we want. tagname=$z break ;; esac fi done # If $tagname still isn't set, then no tagged configuration # was found and let the user know that the "--tag" command # line option must be used. if test -z "$tagname"; then func_echo "unable to infer tagged configuration" func_fatal_error "specify a tag with \`--tag'" # else # func_verbose "using $tagname tagged configuration" fi ;; esac fi } # func_write_libtool_object output_name pic_name nonpic_name # Create a libtool object file (analogous to a ".la" file), # but don't create it if we're doing a dry run. func_write_libtool_object () { write_libobj=${1} if test "$build_libtool_libs" = yes; then write_lobj=\'${2}\' else write_lobj=none fi if test "$build_old_libs" = yes; then write_oldobj=\'${3}\' else write_oldobj=none fi $opt_dry_run || { cat >${write_libobj}T <<EOF # $write_libobj - a libtool object file # Generated by $PROGRAM (GNU $PACKAGE$TIMESTAMP) $VERSION # # Please DO NOT delete this file! # It is necessary for linking the library. # Name of the PIC object. pic_object=$write_lobj # Name of the non-PIC object non_pic_object=$write_oldobj EOF $MV "${write_libobj}T" "${write_libobj}" } } ################################################## # FILE NAME AND PATH CONVERSION HELPER FUNCTIONS # ################################################## # func_convert_core_file_wine_to_w32 ARG # Helper function used by file name conversion functions when $build is *nix, # and $host is mingw, cygwin, or some other w32 environment. Relies on a # correctly configured wine environment available, with the winepath program # in $build's $PATH. # # ARG is the $build file name to be converted to w32 format. # Result is available in $func_convert_core_file_wine_to_w32_result, and will # be empty on error (or when ARG is empty) func_convert_core_file_wine_to_w32 () { $opt_debug func_convert_core_file_wine_to_w32_result="$1" if test -n "$1"; then # Unfortunately, winepath does not exit with a non-zero error code, so we # are forced to check the contents of stdout. On the other hand, if the # command is not found, the shell will set an exit code of 127 and print # *an error message* to stdout. So we must check for both error code of # zero AND non-empty stdout, which explains the odd construction: func_convert_core_file_wine_to_w32_tmp=`winepath -w "$1" 2>/dev/null` if test "$?" -eq 0 && test -n "${func_convert_core_file_wine_to_w32_tmp}"; then func_convert_core_file_wine_to_w32_result=`$ECHO "$func_convert_core_file_wine_to_w32_tmp" | $SED -e "$lt_sed_naive_backslashify"` else func_convert_core_file_wine_to_w32_result= fi fi } # end: func_convert_core_file_wine_to_w32 # func_convert_core_path_wine_to_w32 ARG # Helper function used by path conversion functions when $build is *nix, and # $host is mingw, cygwin, or some other w32 environment. Relies on a correctly # configured wine environment available, with the winepath program in $build's # $PATH. Assumes ARG has no leading or trailing path separator characters. # # ARG is path to be converted from $build format to win32. # Result is available in $func_convert_core_path_wine_to_w32_result. # Unconvertible file (directory) names in ARG are skipped; if no directory names # are convertible, then the result may be empty. func_convert_core_path_wine_to_w32 () { $opt_debug # unfortunately, winepath doesn't convert paths, only file names func_convert_core_path_wine_to_w32_result="" if test -n "$1"; then oldIFS=$IFS IFS=: for func_convert_core_path_wine_to_w32_f in $1; do IFS=$oldIFS func_convert_core_file_wine_to_w32 "$func_convert_core_path_wine_to_w32_f" if test -n "$func_convert_core_file_wine_to_w32_result" ; then if test -z "$func_convert_core_path_wine_to_w32_result"; then func_convert_core_path_wine_to_w32_result="$func_convert_core_file_wine_to_w32_result" else func_append func_convert_core_path_wine_to_w32_result ";$func_convert_core_file_wine_to_w32_result" fi fi done IFS=$oldIFS fi } # end: func_convert_core_path_wine_to_w32 # func_cygpath ARGS... # Wrapper around calling the cygpath program via LT_CYGPATH. This is used when # when (1) $build is *nix and Cygwin is hosted via a wine environment; or (2) # $build is MSYS and $host is Cygwin, or (3) $build is Cygwin. In case (1) or # (2), returns the Cygwin file name or path in func_cygpath_result (input # file name or path is assumed to be in w32 format, as previously converted # from $build's *nix or MSYS format). In case (3), returns the w32 file name # or path in func_cygpath_result (input file name or path is assumed to be in # Cygwin format). Returns an empty string on error. # # ARGS are passed to cygpath, with the last one being the file name or path to # be converted. # # Specify the absolute *nix (or w32) name to cygpath in the LT_CYGPATH # environment variable; do not put it in $PATH. func_cygpath () { $opt_debug if test -n "$LT_CYGPATH" && test -f "$LT_CYGPATH"; then func_cygpath_result=`$LT_CYGPATH "$@" 2>/dev/null` if test "$?" -ne 0; then # on failure, ensure result is empty func_cygpath_result= fi else func_cygpath_result= func_error "LT_CYGPATH is empty or specifies non-existent file: \`$LT_CYGPATH'" fi } #end: func_cygpath # func_convert_core_msys_to_w32 ARG # Convert file name or path ARG from MSYS format to w32 format. Return # result in func_convert_core_msys_to_w32_result. func_convert_core_msys_to_w32 () { $opt_debug # awkward: cmd appends spaces to result func_convert_core_msys_to_w32_result=`( cmd //c echo "$1" ) 2>/dev/null | $SED -e 's/[ ]*$//' -e "$lt_sed_naive_backslashify"` } #end: func_convert_core_msys_to_w32 # func_convert_file_check ARG1 ARG2 # Verify that ARG1 (a file name in $build format) was converted to $host # format in ARG2. Otherwise, emit an error message, but continue (resetting # func_to_host_file_result to ARG1). func_convert_file_check () { $opt_debug if test -z "$2" && test -n "$1" ; then func_error "Could not determine host file name corresponding to" func_error " \`$1'" func_error "Continuing, but uninstalled executables may not work." # Fallback: func_to_host_file_result="$1" fi } # end func_convert_file_check # func_convert_path_check FROM_PATHSEP TO_PATHSEP FROM_PATH TO_PATH # Verify that FROM_PATH (a path in $build format) was converted to $host # format in TO_PATH. Otherwise, emit an error message, but continue, resetting # func_to_host_file_result to a simplistic fallback value (see below). func_convert_path_check () { $opt_debug if test -z "$4" && test -n "$3"; then func_error "Could not determine the host path corresponding to" func_error " \`$3'" func_error "Continuing, but uninstalled executables may not work." # Fallback. This is a deliberately simplistic "conversion" and # should not be "improved". See libtool.info. if test "x$1" != "x$2"; then lt_replace_pathsep_chars="s|$1|$2|g" func_to_host_path_result=`echo "$3" | $SED -e "$lt_replace_pathsep_chars"` else func_to_host_path_result="$3" fi fi } # end func_convert_path_check # func_convert_path_front_back_pathsep FRONTPAT BACKPAT REPL ORIG # Modifies func_to_host_path_result by prepending REPL if ORIG matches FRONTPAT # and appending REPL if ORIG matches BACKPAT. func_convert_path_front_back_pathsep () { $opt_debug case $4 in $1 ) func_to_host_path_result="$3$func_to_host_path_result" ;; esac case $4 in $2 ) func_append func_to_host_path_result "$3" ;; esac } # end func_convert_path_front_back_pathsep ################################################## # $build to $host FILE NAME CONVERSION FUNCTIONS # ################################################## # invoked via `$to_host_file_cmd ARG' # # In each case, ARG is the path to be converted from $build to $host format. # Result will be available in $func_to_host_file_result. # func_to_host_file ARG # Converts the file name ARG from $build format to $host format. Return result # in func_to_host_file_result. func_to_host_file () { $opt_debug $to_host_file_cmd "$1" } # end func_to_host_file # func_to_tool_file ARG LAZY # converts the file name ARG from $build format to toolchain format. Return # result in func_to_tool_file_result. If the conversion in use is listed # in (the comma separated) LAZY, no conversion takes place. func_to_tool_file () { $opt_debug case ,$2, in *,"$to_tool_file_cmd",*) func_to_tool_file_result=$1 ;; *) $to_tool_file_cmd "$1" func_to_tool_file_result=$func_to_host_file_result ;; esac } # end func_to_tool_file # func_convert_file_noop ARG # Copy ARG to func_to_host_file_result. func_convert_file_noop () { func_to_host_file_result="$1" } # end func_convert_file_noop # func_convert_file_msys_to_w32 ARG # Convert file name ARG from (mingw) MSYS to (mingw) w32 format; automatic # conversion to w32 is not available inside the cwrapper. Returns result in # func_to_host_file_result. func_convert_file_msys_to_w32 () { $opt_debug func_to_host_file_result="$1" if test -n "$1"; then func_convert_core_msys_to_w32 "$1" func_to_host_file_result="$func_convert_core_msys_to_w32_result" fi func_convert_file_check "$1" "$func_to_host_file_result" } # end func_convert_file_msys_to_w32 # func_convert_file_cygwin_to_w32 ARG # Convert file name ARG from Cygwin to w32 format. Returns result in # func_to_host_file_result. func_convert_file_cygwin_to_w32 () { $opt_debug func_to_host_file_result="$1" if test -n "$1"; then # because $build is cygwin, we call "the" cygpath in $PATH; no need to use # LT_CYGPATH in this case. func_to_host_file_result=`cygpath -m "$1"` fi func_convert_file_check "$1" "$func_to_host_file_result" } # end func_convert_file_cygwin_to_w32 # func_convert_file_nix_to_w32 ARG # Convert file name ARG from *nix to w32 format. Requires a wine environment # and a working winepath. Returns result in func_to_host_file_result. func_convert_file_nix_to_w32 () { $opt_debug func_to_host_file_result="$1" if test -n "$1"; then func_convert_core_file_wine_to_w32 "$1" func_to_host_file_result="$func_convert_core_file_wine_to_w32_result" fi func_convert_file_check "$1" "$func_to_host_file_result" } # end func_convert_file_nix_to_w32 # func_convert_file_msys_to_cygwin ARG # Convert file name ARG from MSYS to Cygwin format. Requires LT_CYGPATH set. # Returns result in func_to_host_file_result. func_convert_file_msys_to_cygwin () { $opt_debug func_to_host_file_result="$1" if test -n "$1"; then func_convert_core_msys_to_w32 "$1" func_cygpath -u "$func_convert_core_msys_to_w32_result" func_to_host_file_result="$func_cygpath_result" fi func_convert_file_check "$1" "$func_to_host_file_result" } # end func_convert_file_msys_to_cygwin # func_convert_file_nix_to_cygwin ARG # Convert file name ARG from *nix to Cygwin format. Requires Cygwin installed # in a wine environment, working winepath, and LT_CYGPATH set. Returns result # in func_to_host_file_result. func_convert_file_nix_to_cygwin () { $opt_debug func_to_host_file_result="$1" if test -n "$1"; then # convert from *nix to w32, then use cygpath to convert from w32 to cygwin. func_convert_core_file_wine_to_w32 "$1" func_cygpath -u "$func_convert_core_file_wine_to_w32_result" func_to_host_file_result="$func_cygpath_result" fi func_convert_file_check "$1" "$func_to_host_file_result" } # end func_convert_file_nix_to_cygwin ############################################# # $build to $host PATH CONVERSION FUNCTIONS # ############################################# # invoked via `$to_host_path_cmd ARG' # # In each case, ARG is the path to be converted from $build to $host format. # The result will be available in $func_to_host_path_result. # # Path separators are also converted from $build format to $host format. If # ARG begins or ends with a path separator character, it is preserved (but # converted to $host format) on output. # # All path conversion functions are named using the following convention: # file name conversion function : func_convert_file_X_to_Y () # path conversion function : func_convert_path_X_to_Y () # where, for any given $build/$host combination the 'X_to_Y' value is the # same. If conversion functions are added for new $build/$host combinations, # the two new functions must follow this pattern, or func_init_to_host_path_cmd # will break. # func_init_to_host_path_cmd # Ensures that function "pointer" variable $to_host_path_cmd is set to the # appropriate value, based on the value of $to_host_file_cmd. to_host_path_cmd= func_init_to_host_path_cmd () { $opt_debug if test -z "$to_host_path_cmd"; then func_stripname 'func_convert_file_' '' "$to_host_file_cmd" to_host_path_cmd="func_convert_path_${func_stripname_result}" fi } # func_to_host_path ARG # Converts the path ARG from $build format to $host format. Return result # in func_to_host_path_result. func_to_host_path () { $opt_debug func_init_to_host_path_cmd $to_host_path_cmd "$1" } # end func_to_host_path # func_convert_path_noop ARG # Copy ARG to func_to_host_path_result. func_convert_path_noop () { func_to_host_path_result="$1" } # end func_convert_path_noop # func_convert_path_msys_to_w32 ARG # Convert path ARG from (mingw) MSYS to (mingw) w32 format; automatic # conversion to w32 is not available inside the cwrapper. Returns result in # func_to_host_path_result. func_convert_path_msys_to_w32 () { $opt_debug func_to_host_path_result="$1" if test -n "$1"; then # Remove leading and trailing path separator characters from ARG. MSYS # behavior is inconsistent here; cygpath turns them into '.;' and ';.'; # and winepath ignores them completely. func_stripname : : "$1" func_to_host_path_tmp1=$func_stripname_result func_convert_core_msys_to_w32 "$func_to_host_path_tmp1" func_to_host_path_result="$func_convert_core_msys_to_w32_result" func_convert_path_check : ";" \ "$func_to_host_path_tmp1" "$func_to_host_path_result" func_convert_path_front_back_pathsep ":*" "*:" ";" "$1" fi } # end func_convert_path_msys_to_w32 # func_convert_path_cygwin_to_w32 ARG # Convert path ARG from Cygwin to w32 format. Returns result in # func_to_host_file_result. func_convert_path_cygwin_to_w32 () { $opt_debug func_to_host_path_result="$1" if test -n "$1"; then # See func_convert_path_msys_to_w32: func_stripname : : "$1" func_to_host_path_tmp1=$func_stripname_result func_to_host_path_result=`cygpath -m -p "$func_to_host_path_tmp1"` func_convert_path_check : ";" \ "$func_to_host_path_tmp1" "$func_to_host_path_result" func_convert_path_front_back_pathsep ":*" "*:" ";" "$1" fi } # end func_convert_path_cygwin_to_w32 # func_convert_path_nix_to_w32 ARG # Convert path ARG from *nix to w32 format. Requires a wine environment and # a working winepath. Returns result in func_to_host_file_result. func_convert_path_nix_to_w32 () { $opt_debug func_to_host_path_result="$1" if test -n "$1"; then # See func_convert_path_msys_to_w32: func_stripname : : "$1" func_to_host_path_tmp1=$func_stripname_result func_convert_core_path_wine_to_w32 "$func_to_host_path_tmp1" func_to_host_path_result="$func_convert_core_path_wine_to_w32_result" func_convert_path_check : ";" \ "$func_to_host_path_tmp1" "$func_to_host_path_result" func_convert_path_front_back_pathsep ":*" "*:" ";" "$1" fi } # end func_convert_path_nix_to_w32 # func_convert_path_msys_to_cygwin ARG # Convert path ARG from MSYS to Cygwin format. Requires LT_CYGPATH set. # Returns result in func_to_host_file_result. func_convert_path_msys_to_cygwin () { $opt_debug func_to_host_path_result="$1" if test -n "$1"; then # See func_convert_path_msys_to_w32: func_stripname : : "$1" func_to_host_path_tmp1=$func_stripname_result func_convert_core_msys_to_w32 "$func_to_host_path_tmp1" func_cygpath -u -p "$func_convert_core_msys_to_w32_result" func_to_host_path_result="$func_cygpath_result" func_convert_path_check : : \ "$func_to_host_path_tmp1" "$func_to_host_path_result" func_convert_path_front_back_pathsep ":*" "*:" : "$1" fi } # end func_convert_path_msys_to_cygwin # func_convert_path_nix_to_cygwin ARG # Convert path ARG from *nix to Cygwin format. Requires Cygwin installed in a # a wine environment, working winepath, and LT_CYGPATH set. Returns result in # func_to_host_file_result. func_convert_path_nix_to_cygwin () { $opt_debug func_to_host_path_result="$1" if test -n "$1"; then # Remove leading and trailing path separator characters from # ARG. msys behavior is inconsistent here, cygpath turns them # into '.;' and ';.', and winepath ignores them completely. func_stripname : : "$1" func_to_host_path_tmp1=$func_stripname_result func_convert_core_path_wine_to_w32 "$func_to_host_path_tmp1" func_cygpath -u -p "$func_convert_core_path_wine_to_w32_result" func_to_host_path_result="$func_cygpath_result" func_convert_path_check : : \ "$func_to_host_path_tmp1" "$func_to_host_path_result" func_convert_path_front_back_pathsep ":*" "*:" : "$1" fi } # end func_convert_path_nix_to_cygwin # func_mode_compile arg... func_mode_compile () { $opt_debug # Get the compilation command and the source file. base_compile= srcfile="$nonopt" # always keep a non-empty value in "srcfile" suppress_opt=yes suppress_output= arg_mode=normal libobj= later= pie_flag= for arg do case $arg_mode in arg ) # do not "continue". Instead, add this to base_compile lastarg="$arg" arg_mode=normal ;; target ) libobj="$arg" arg_mode=normal continue ;; normal ) # Accept any command-line options. case $arg in -o) test -n "$libobj" && \ func_fatal_error "you cannot specify \`-o' more than once" arg_mode=target continue ;; -pie | -fpie | -fPIE) func_append pie_flag " $arg" continue ;; -shared | -static | -prefer-pic | -prefer-non-pic) func_append later " $arg" continue ;; -no-suppress) suppress_opt=no continue ;; -Xcompiler) arg_mode=arg # the next one goes into the "base_compile" arg list continue # The current "srcfile" will either be retained or ;; # replaced later. I would guess that would be a bug. -Wc,*) func_stripname '-Wc,' '' "$arg" args=$func_stripname_result lastarg= save_ifs="$IFS"; IFS=',' for arg in $args; do IFS="$save_ifs" func_append_quoted lastarg "$arg" done IFS="$save_ifs" func_stripname ' ' '' "$lastarg" lastarg=$func_stripname_result # Add the arguments to base_compile. func_append base_compile " $lastarg" continue ;; *) # Accept the current argument as the source file. # The previous "srcfile" becomes the current argument. # lastarg="$srcfile" srcfile="$arg" ;; esac # case $arg ;; esac # case $arg_mode # Aesthetically quote the previous argument. func_append_quoted base_compile "$lastarg" done # for arg case $arg_mode in arg) func_fatal_error "you must specify an argument for -Xcompile" ;; target) func_fatal_error "you must specify a target with \`-o'" ;; *) # Get the name of the library object. test -z "$libobj" && { func_basename "$srcfile" libobj="$func_basename_result" } ;; esac # Recognize several different file suffixes. # If the user specifies -o file.o, it is replaced with file.lo case $libobj in *.[cCFSifmso] | \ *.ada | *.adb | *.ads | *.asm | \ *.c++ | *.cc | *.ii | *.class | *.cpp | *.cxx | \ *.[fF][09]? | *.for | *.java | *.go | *.obj | *.sx | *.cu | *.cup) func_xform "$libobj" libobj=$func_xform_result ;; esac case $libobj in *.lo) func_lo2o "$libobj"; obj=$func_lo2o_result ;; *) func_fatal_error "cannot determine name of library object from \`$libobj'" ;; esac func_infer_tag $base_compile for arg in $later; do case $arg in -shared) test "$build_libtool_libs" != yes && \ func_fatal_configuration "can not build a shared library" build_old_libs=no continue ;; -static) build_libtool_libs=no build_old_libs=yes continue ;; -prefer-pic) pic_mode=yes continue ;; -prefer-non-pic) pic_mode=no continue ;; esac done func_quote_for_eval "$libobj" test "X$libobj" != "X$func_quote_for_eval_result" \ && $ECHO "X$libobj" | $GREP '[]~#^*{};<>?"'"'"' &()|`$[]' \ && func_warning "libobj name \`$libobj' may not contain shell special characters." func_dirname_and_basename "$obj" "/" "" objname="$func_basename_result" xdir="$func_dirname_result" lobj=${xdir}$objdir/$objname test -z "$base_compile" && \ func_fatal_help "you must specify a compilation command" # Delete any leftover library objects. if test "$build_old_libs" = yes; then removelist="$obj $lobj $libobj ${libobj}T" else removelist="$lobj $libobj ${libobj}T" fi # On Cygwin there's no "real" PIC flag so we must build both object types case $host_os in cygwin* | mingw* | pw32* | os2* | cegcc*) pic_mode=default ;; esac if test "$pic_mode" = no && test "$deplibs_check_method" != pass_all; then # non-PIC code in shared libraries is not supported pic_mode=default fi # Calculate the filename of the output object if compiler does # not support -o with -c if test "$compiler_c_o" = no; then output_obj=`$ECHO "$srcfile" | $SED 's%^.*/%%; s%\.[^.]*$%%'`.${objext} lockfile="$output_obj.lock" else output_obj= need_locks=no lockfile= fi # Lock this critical section if it is needed # We use this script file to make the link, it avoids creating a new file if test "$need_locks" = yes; then until $opt_dry_run || ln "$progpath" "$lockfile" 2>/dev/null; do func_echo "Waiting for $lockfile to be removed" sleep 2 done elif test "$need_locks" = warn; then if test -f "$lockfile"; then $ECHO "\ *** ERROR, $lockfile exists and contains: `cat $lockfile 2>/dev/null` This indicates that another process is trying to use the same temporary object file, and libtool could not work around it because your compiler does not support \`-c' and \`-o' together. If you repeat this compilation, it may succeed, by chance, but you had better avoid parallel builds (make -j) in this platform, or get a better compiler." $opt_dry_run || $RM $removelist exit $EXIT_FAILURE fi func_append removelist " $output_obj" $ECHO "$srcfile" > "$lockfile" fi $opt_dry_run || $RM $removelist func_append removelist " $lockfile" trap '$opt_dry_run || $RM $removelist; exit $EXIT_FAILURE' 1 2 15 func_to_tool_file "$srcfile" func_convert_file_msys_to_w32 srcfile=$func_to_tool_file_result func_quote_for_eval "$srcfile" qsrcfile=$func_quote_for_eval_result # Only build a PIC object if we are building libtool libraries. if test "$build_libtool_libs" = yes; then # Without this assignment, base_compile gets emptied. fbsd_hideous_sh_bug=$base_compile if test "$pic_mode" != no; then command="$base_compile $qsrcfile $pic_flag" else # Don't build PIC code command="$base_compile $qsrcfile" fi func_mkdir_p "$xdir$objdir" if test -z "$output_obj"; then # Place PIC objects in $objdir func_append command " -o $lobj" fi func_show_eval_locale "$command" \ 'test -n "$output_obj" && $RM $removelist; exit $EXIT_FAILURE' if test "$need_locks" = warn && test "X`cat $lockfile 2>/dev/null`" != "X$srcfile"; then $ECHO "\ *** ERROR, $lockfile contains: `cat $lockfile 2>/dev/null` but it should contain: $srcfile This indicates that another process is trying to use the same temporary object file, and libtool could not work around it because your compiler does not support \`-c' and \`-o' together. If you repeat this compilation, it may succeed, by chance, but you had better avoid parallel builds (make -j) in this platform, or get a better compiler." $opt_dry_run || $RM $removelist exit $EXIT_FAILURE fi # Just move the object if needed, then go on to compile the next one if test -n "$output_obj" && test "X$output_obj" != "X$lobj"; then func_show_eval '$MV "$output_obj" "$lobj"' \ 'error=$?; $opt_dry_run || $RM $removelist; exit $error' fi # Allow error messages only from the first compilation. if test "$suppress_opt" = yes; then suppress_output=' >/dev/null 2>&1' fi fi # Only build a position-dependent object if we build old libraries. if test "$build_old_libs" = yes; then if test "$pic_mode" != yes; then # Don't build PIC code command="$base_compile $qsrcfile$pie_flag" else command="$base_compile $qsrcfile $pic_flag" fi if test "$compiler_c_o" = yes; then func_append command " -o $obj" fi # Suppress compiler output if we already did a PIC compilation. func_append command "$suppress_output" func_show_eval_locale "$command" \ '$opt_dry_run || $RM $removelist; exit $EXIT_FAILURE' if test "$need_locks" = warn && test "X`cat $lockfile 2>/dev/null`" != "X$srcfile"; then $ECHO "\ *** ERROR, $lockfile contains: `cat $lockfile 2>/dev/null` but it should contain: $srcfile This indicates that another process is trying to use the same temporary object file, and libtool could not work around it because your compiler does not support \`-c' and \`-o' together. If you repeat this compilation, it may succeed, by chance, but you had better avoid parallel builds (make -j) in this platform, or get a better compiler." $opt_dry_run || $RM $removelist exit $EXIT_FAILURE fi # Just move the object if needed if test -n "$output_obj" && test "X$output_obj" != "X$obj"; then func_show_eval '$MV "$output_obj" "$obj"' \ 'error=$?; $opt_dry_run || $RM $removelist; exit $error' fi fi $opt_dry_run || { func_write_libtool_object "$libobj" "$objdir/$objname" "$objname" # Unlock the critical section if it was locked if test "$need_locks" != no; then removelist=$lockfile $RM "$lockfile" fi } exit $EXIT_SUCCESS } $opt_help || { test "$opt_mode" = compile && func_mode_compile ${1+"$@"} } func_mode_help () { # We need to display help for each of the modes. case $opt_mode in "") # Generic help is extracted from the usage comments # at the start of this file. func_help ;; clean) $ECHO \ "Usage: $progname [OPTION]... --mode=clean RM [RM-OPTION]... FILE... Remove files from the build directory. RM is the name of the program to use to delete files associated with each FILE (typically \`/bin/rm'). RM-OPTIONS are options (such as \`-f') to be passed to RM. If FILE is a libtool library, object or program, all the files associated with it are deleted. Otherwise, only FILE itself is deleted using RM." ;; compile) $ECHO \ "Usage: $progname [OPTION]... --mode=compile COMPILE-COMMAND... SOURCEFILE Compile a source file into a libtool library object. This mode accepts the following additional options: -o OUTPUT-FILE set the output file name to OUTPUT-FILE -no-suppress do not suppress compiler output for multiple passes -prefer-pic try to build PIC objects only -prefer-non-pic try to build non-PIC objects only -shared do not build a \`.o' file suitable for static linking -static only build a \`.o' file suitable for static linking -Wc,FLAG pass FLAG directly to the compiler COMPILE-COMMAND is a command to be used in creating a \`standard' object file from the given SOURCEFILE. The output file name is determined by removing the directory component from SOURCEFILE, then substituting the C source code suffix \`.c' with the library object suffix, \`.lo'." ;; execute) $ECHO \ "Usage: $progname [OPTION]... --mode=execute COMMAND [ARGS]... Automatically set library path, then run a program. This mode accepts the following additional options: -dlopen FILE add the directory containing FILE to the library path This mode sets the library path environment variable according to \`-dlopen' flags. If any of the ARGS are libtool executable wrappers, then they are translated into their corresponding uninstalled binary, and any of their required library directories are added to the library path. Then, COMMAND is executed, with ARGS as arguments." ;; finish) $ECHO \ "Usage: $progname [OPTION]... --mode=finish [LIBDIR]... Complete the installation of libtool libraries. Each LIBDIR is a directory that contains libtool libraries. The commands that this mode executes may require superuser privileges. Use the \`--dry-run' option if you just want to see what would be executed." ;; install) $ECHO \ "Usage: $progname [OPTION]... --mode=install INSTALL-COMMAND... Install executables or libraries. INSTALL-COMMAND is the installation command. The first component should be either the \`install' or \`cp' program. The following components of INSTALL-COMMAND are treated specially: -inst-prefix-dir PREFIX-DIR Use PREFIX-DIR as a staging area for installation The rest of the components are interpreted as arguments to that command (only BSD-compatible install options are recognized)." ;; link) $ECHO \ "Usage: $progname [OPTION]... --mode=link LINK-COMMAND... Link object files or libraries together to form another library, or to create an executable program. LINK-COMMAND is a command using the C compiler that you would use to create a program from several object files. The following components of LINK-COMMAND are treated specially: -all-static do not do any dynamic linking at all -avoid-version do not add a version suffix if possible -bindir BINDIR specify path to binaries directory (for systems where libraries must be found in the PATH setting at runtime) -dlopen FILE \`-dlpreopen' FILE if it cannot be dlopened at runtime -dlpreopen FILE link in FILE and add its symbols to lt_preloaded_symbols -export-dynamic allow symbols from OUTPUT-FILE to be resolved with dlsym(3) -export-symbols SYMFILE try to export only the symbols listed in SYMFILE -export-symbols-regex REGEX try to export only the symbols matching REGEX -LLIBDIR search LIBDIR for required installed libraries -lNAME OUTPUT-FILE requires the installed library libNAME -module build a library that can dlopened -no-fast-install disable the fast-install mode -no-install link a not-installable executable -no-undefined declare that a library does not refer to external symbols -o OUTPUT-FILE create OUTPUT-FILE from the specified objects -objectlist FILE Use a list of object files found in FILE to specify objects -precious-files-regex REGEX don't remove output files matching REGEX -release RELEASE specify package release information -rpath LIBDIR the created library will eventually be installed in LIBDIR -R[ ]LIBDIR add LIBDIR to the runtime path of programs and libraries -shared only do dynamic linking of libtool libraries -shrext SUFFIX override the standard shared library file extension -static do not do any dynamic linking of uninstalled libtool libraries -static-libtool-libs do not do any dynamic linking of libtool libraries -version-info CURRENT[:REVISION[:AGE]] specify library version info [each variable defaults to 0] -weak LIBNAME declare that the target provides the LIBNAME interface -Wc,FLAG -Xcompiler FLAG pass linker-specific FLAG directly to the compiler -Wl,FLAG -Xlinker FLAG pass linker-specific FLAG directly to the linker -XCClinker FLAG pass link-specific FLAG to the compiler driver (CC) All other options (arguments beginning with \`-') are ignored. Every other argument is treated as a filename. Files ending in \`.la' are treated as uninstalled libtool libraries, other files are standard or library object files. If the OUTPUT-FILE ends in \`.la', then a libtool library is created, only library objects (\`.lo' files) may be specified, and \`-rpath' is required, except when creating a convenience library. If OUTPUT-FILE ends in \`.a' or \`.lib', then a standard library is created using \`ar' and \`ranlib', or on Windows using \`lib'. If OUTPUT-FILE ends in \`.lo' or \`.${objext}', then a reloadable object file is created, otherwise an executable program is created." ;; uninstall) $ECHO \ "Usage: $progname [OPTION]... --mode=uninstall RM [RM-OPTION]... FILE... Remove libraries from an installation directory. RM is the name of the program to use to delete files associated with each FILE (typically \`/bin/rm'). RM-OPTIONS are options (such as \`-f') to be passed to RM. If FILE is a libtool library, all the files associated with it are deleted. Otherwise, only FILE itself is deleted using RM." ;; *) func_fatal_help "invalid operation mode \`$opt_mode'" ;; esac echo $ECHO "Try \`$progname --help' for more information about other modes." } # Now that we've collected a possible --mode arg, show help if necessary if $opt_help; then if test "$opt_help" = :; then func_mode_help else { func_help noexit for opt_mode in compile link execute install finish uninstall clean; do func_mode_help done } | sed -n '1p; 2,$s/^Usage:/ or: /p' { func_help noexit for opt_mode in compile link execute install finish uninstall clean; do echo func_mode_help done } | sed '1d /^When reporting/,/^Report/{ H d } $x /information about other modes/d /more detailed .*MODE/d s/^Usage:.*--mode=\([^ ]*\) .*/Description of \1 mode:/' fi exit $? fi # func_mode_execute arg... func_mode_execute () { $opt_debug # The first argument is the command name. cmd="$nonopt" test -z "$cmd" && \ func_fatal_help "you must specify a COMMAND" # Handle -dlopen flags immediately. for file in $opt_dlopen; do test -f "$file" \ || func_fatal_help "\`$file' is not a file" dir= case $file in *.la) func_resolve_sysroot "$file" file=$func_resolve_sysroot_result # Check to see that this really is a libtool archive. func_lalib_unsafe_p "$file" \ || func_fatal_help "\`$lib' is not a valid libtool archive" # Read the libtool library. dlname= library_names= func_source "$file" # Skip this library if it cannot be dlopened. if test -z "$dlname"; then # Warn if it was a shared library. test -n "$library_names" && \ func_warning "\`$file' was not linked with \`-export-dynamic'" continue fi func_dirname "$file" "" "." dir="$func_dirname_result" if test -f "$dir/$objdir/$dlname"; then func_append dir "/$objdir" else if test ! -f "$dir/$dlname"; then func_fatal_error "cannot find \`$dlname' in \`$dir' or \`$dir/$objdir'" fi fi ;; *.lo) # Just add the directory containing the .lo file. func_dirname "$file" "" "." dir="$func_dirname_result" ;; *) func_warning "\`-dlopen' is ignored for non-libtool libraries and objects" continue ;; esac # Get the absolute pathname. absdir=`cd "$dir" && pwd` test -n "$absdir" && dir="$absdir" # Now add the directory to shlibpath_var. if eval "test -z \"\$$shlibpath_var\""; then eval "$shlibpath_var=\"\$dir\"" else eval "$shlibpath_var=\"\$dir:\$$shlibpath_var\"" fi done # This variable tells wrapper scripts just to set shlibpath_var # rather than running their programs. libtool_execute_magic="$magic" # Check if any of the arguments is a wrapper script. args= for file do case $file in -* | *.la | *.lo ) ;; *) # Do a test to see if this is really a libtool program. if func_ltwrapper_script_p "$file"; then func_source "$file" # Transform arg to wrapped name. file="$progdir/$program" elif func_ltwrapper_executable_p "$file"; then func_ltwrapper_scriptname "$file" func_source "$func_ltwrapper_scriptname_result" # Transform arg to wrapped name. file="$progdir/$program" fi ;; esac # Quote arguments (to preserve shell metacharacters). func_append_quoted args "$file" done if test "X$opt_dry_run" = Xfalse; then if test -n "$shlibpath_var"; then # Export the shlibpath_var. eval "export $shlibpath_var" fi # Restore saved environment variables for lt_var in LANG LANGUAGE LC_ALL LC_CTYPE LC_COLLATE LC_MESSAGES do eval "if test \"\${save_$lt_var+set}\" = set; then $lt_var=\$save_$lt_var; export $lt_var else $lt_unset $lt_var fi" done # Now prepare to actually exec the command. exec_cmd="\$cmd$args" else # Display what would be done. if test -n "$shlibpath_var"; then eval "\$ECHO \"\$shlibpath_var=\$$shlibpath_var\"" echo "export $shlibpath_var" fi $ECHO "$cmd$args" exit $EXIT_SUCCESS fi } test "$opt_mode" = execute && func_mode_execute ${1+"$@"} # func_mode_finish arg... func_mode_finish () { $opt_debug libs= libdirs= admincmds= for opt in "$nonopt" ${1+"$@"} do if test -d "$opt"; then func_append libdirs " $opt" elif test -f "$opt"; then if func_lalib_unsafe_p "$opt"; then func_append libs " $opt" else func_warning "\`$opt' is not a valid libtool archive" fi else func_fatal_error "invalid argument \`$opt'" fi done if test -n "$libs"; then if test -n "$lt_sysroot"; then sysroot_regex=`$ECHO "$lt_sysroot" | $SED "$sed_make_literal_regex"` sysroot_cmd="s/\([ ']\)$sysroot_regex/\1/g;" else sysroot_cmd= fi # Remove sysroot references if $opt_dry_run; then for lib in $libs; do echo "removing references to $lt_sysroot and \`=' prefixes from $lib" done else tmpdir=`func_mktempdir` for lib in $libs; do sed -e "${sysroot_cmd} s/\([ ']-[LR]\)=/\1/g; s/\([ ']\)=/\1/g" $lib \ > $tmpdir/tmp-la mv -f $tmpdir/tmp-la $lib done ${RM}r "$tmpdir" fi fi if test -n "$finish_cmds$finish_eval" && test -n "$libdirs"; then for libdir in $libdirs; do if test -n "$finish_cmds"; then # Do each command in the finish commands. func_execute_cmds "$finish_cmds" 'admincmds="$admincmds '"$cmd"'"' fi if test -n "$finish_eval"; then # Do the single finish_eval. eval cmds=\"$finish_eval\" $opt_dry_run || eval "$cmds" || func_append admincmds " $cmds" fi done fi # Exit here if they wanted silent mode. $opt_silent && exit $EXIT_SUCCESS if test -n "$finish_cmds$finish_eval" && test -n "$libdirs"; then echo "----------------------------------------------------------------------" echo "Libraries have been installed in:" for libdir in $libdirs; do $ECHO " $libdir" done echo echo "If you ever happen to want to link against installed libraries" echo "in a given directory, LIBDIR, you must either use libtool, and" echo "specify the full pathname of the library, or use the \`-LLIBDIR'" echo "flag during linking and do at least one of the following:" if test -n "$shlibpath_var"; then echo " - add LIBDIR to the \`$shlibpath_var' environment variable" echo " during execution" fi if test -n "$runpath_var"; then echo " - add LIBDIR to the \`$runpath_var' environment variable" echo " during linking" fi if test -n "$hardcode_libdir_flag_spec"; then libdir=LIBDIR eval flag=\"$hardcode_libdir_flag_spec\" $ECHO " - use the \`$flag' linker flag" fi if test -n "$admincmds"; then $ECHO " - have your system administrator run these commands:$admincmds" fi if test -f /etc/ld.so.conf; then echo " - have your system administrator add LIBDIR to \`/etc/ld.so.conf'" fi echo echo "See any operating system documentation about shared libraries for" case $host in solaris2.[6789]|solaris2.1[0-9]) echo "more information, such as the ld(1), crle(1) and ld.so(8) manual" echo "pages." ;; *) echo "more information, such as the ld(1) and ld.so(8) manual pages." ;; esac echo "----------------------------------------------------------------------" fi exit $EXIT_SUCCESS } test "$opt_mode" = finish && func_mode_finish ${1+"$@"} # func_mode_install arg... func_mode_install () { $opt_debug # There may be an optional sh(1) argument at the beginning of # install_prog (especially on Windows NT). if test "$nonopt" = "$SHELL" || test "$nonopt" = /bin/sh || # Allow the use of GNU shtool's install command. case $nonopt in *shtool*) :;; *) false;; esac; then # Aesthetically quote it. func_quote_for_eval "$nonopt" install_prog="$func_quote_for_eval_result " arg=$1 shift else install_prog= arg=$nonopt fi # The real first argument should be the name of the installation program. # Aesthetically quote it. func_quote_for_eval "$arg" func_append install_prog "$func_quote_for_eval_result" install_shared_prog=$install_prog case " $install_prog " in *[\\\ /]cp\ *) install_cp=: ;; *) install_cp=false ;; esac # We need to accept at least all the BSD install flags. dest= files= opts= prev= install_type= isdir=no stripme= no_mode=: for arg do arg2= if test -n "$dest"; then func_append files " $dest" dest=$arg continue fi case $arg in -d) isdir=yes ;; -f) if $install_cp; then :; else prev=$arg fi ;; -g | -m | -o) prev=$arg ;; -s) stripme=" -s" continue ;; -*) ;; *) # If the previous option needed an argument, then skip it. if test -n "$prev"; then if test "x$prev" = x-m && test -n "$install_override_mode"; then arg2=$install_override_mode no_mode=false fi prev= else dest=$arg continue fi ;; esac # Aesthetically quote the argument. func_quote_for_eval "$arg" func_append install_prog " $func_quote_for_eval_result" if test -n "$arg2"; then func_quote_for_eval "$arg2" fi func_append install_shared_prog " $func_quote_for_eval_result" done test -z "$install_prog" && \ func_fatal_help "you must specify an install program" test -n "$prev" && \ func_fatal_help "the \`$prev' option requires an argument" if test -n "$install_override_mode" && $no_mode; then if $install_cp; then :; else func_quote_for_eval "$install_override_mode" func_append install_shared_prog " -m $func_quote_for_eval_result" fi fi if test -z "$files"; then if test -z "$dest"; then func_fatal_help "no file or destination specified" else func_fatal_help "you must specify a destination" fi fi # Strip any trailing slash from the destination. func_stripname '' '/' "$dest" dest=$func_stripname_result # Check to see that the destination is a directory. test -d "$dest" && isdir=yes if test "$isdir" = yes; then destdir="$dest" destname= else func_dirname_and_basename "$dest" "" "." destdir="$func_dirname_result" destname="$func_basename_result" # Not a directory, so check to see that there is only one file specified. set dummy $files; shift test "$#" -gt 1 && \ func_fatal_help "\`$dest' is not a directory" fi case $destdir in [\\/]* | [A-Za-z]:[\\/]*) ;; *) for file in $files; do case $file in *.lo) ;; *) func_fatal_help "\`$destdir' must be an absolute directory name" ;; esac done ;; esac # This variable tells wrapper scripts just to set variables rather # than running their programs. libtool_install_magic="$magic" staticlibs= future_libdirs= current_libdirs= for file in $files; do # Do each installation. case $file in *.$libext) # Do the static libraries later. func_append staticlibs " $file" ;; *.la) func_resolve_sysroot "$file" file=$func_resolve_sysroot_result # Check to see that this really is a libtool archive. func_lalib_unsafe_p "$file" \ || func_fatal_help "\`$file' is not a valid libtool archive" library_names= old_library= relink_command= func_source "$file" # Add the libdir to current_libdirs if it is the destination. if test "X$destdir" = "X$libdir"; then case "$current_libdirs " in *" $libdir "*) ;; *) func_append current_libdirs " $libdir" ;; esac else # Note the libdir as a future libdir. case "$future_libdirs " in *" $libdir "*) ;; *) func_append future_libdirs " $libdir" ;; esac fi func_dirname "$file" "/" "" dir="$func_dirname_result" func_append dir "$objdir" if test -n "$relink_command"; then # Determine the prefix the user has applied to our future dir. inst_prefix_dir=`$ECHO "$destdir" | $SED -e "s%$libdir\$%%"` # Don't allow the user to place us outside of our expected # location b/c this prevents finding dependent libraries that # are installed to the same prefix. # At present, this check doesn't affect windows .dll's that # are installed into $libdir/../bin (currently, that works fine) # but it's something to keep an eye on. test "$inst_prefix_dir" = "$destdir" && \ func_fatal_error "error: cannot install \`$file' to a directory not ending in $libdir" if test -n "$inst_prefix_dir"; then # Stick the inst_prefix_dir data into the link command. relink_command=`$ECHO "$relink_command" | $SED "s%@inst_prefix_dir@%-inst-prefix-dir $inst_prefix_dir%"` else relink_command=`$ECHO "$relink_command" | $SED "s%@inst_prefix_dir@%%"` fi func_warning "relinking \`$file'" func_show_eval "$relink_command" \ 'func_fatal_error "error: relink \`$file'\'' with the above command before installing it"' fi # See the names of the shared library. set dummy $library_names; shift if test -n "$1"; then realname="$1" shift srcname="$realname" test -n "$relink_command" && srcname="$realname"T # Install the shared library and build the symlinks. func_show_eval "$install_shared_prog $dir/$srcname $destdir/$realname" \ 'exit $?' tstripme="$stripme" case $host_os in cygwin* | mingw* | pw32* | cegcc*) case $realname in *.dll.a) tstripme="" ;; esac ;; esac if test -n "$tstripme" && test -n "$striplib"; then func_show_eval "$striplib $destdir/$realname" 'exit $?' fi if test "$#" -gt 0; then # Delete the old symlinks, and create new ones. # Try `ln -sf' first, because the `ln' binary might depend on # the symlink we replace! Solaris /bin/ln does not understand -f, # so we also need to try rm && ln -s. for linkname do test "$linkname" != "$realname" \ && func_show_eval "(cd $destdir && { $LN_S -f $realname $linkname || { $RM $linkname && $LN_S $realname $linkname; }; })" done fi # Do each command in the postinstall commands. lib="$destdir/$realname" func_execute_cmds "$postinstall_cmds" 'exit $?' fi # Install the pseudo-library for information purposes. func_basename "$file" name="$func_basename_result" instname="$dir/$name"i func_show_eval "$install_prog $instname $destdir/$name" 'exit $?' # Maybe install the static library, too. test -n "$old_library" && func_append staticlibs " $dir/$old_library" ;; *.lo) # Install (i.e. copy) a libtool object. # Figure out destination file name, if it wasn't already specified. if test -n "$destname"; then destfile="$destdir/$destname" else func_basename "$file" destfile="$func_basename_result" destfile="$destdir/$destfile" fi # Deduce the name of the destination old-style object file. case $destfile in *.lo) func_lo2o "$destfile" staticdest=$func_lo2o_result ;; *.$objext) staticdest="$destfile" destfile= ;; *) func_fatal_help "cannot copy a libtool object to \`$destfile'" ;; esac # Install the libtool object if requested. test -n "$destfile" && \ func_show_eval "$install_prog $file $destfile" 'exit $?' # Install the old object if enabled. if test "$build_old_libs" = yes; then # Deduce the name of the old-style object file. func_lo2o "$file" staticobj=$func_lo2o_result func_show_eval "$install_prog \$staticobj \$staticdest" 'exit $?' fi exit $EXIT_SUCCESS ;; *) # Figure out destination file name, if it wasn't already specified. if test -n "$destname"; then destfile="$destdir/$destname" else func_basename "$file" destfile="$func_basename_result" destfile="$destdir/$destfile" fi # If the file is missing, and there is a .exe on the end, strip it # because it is most likely a libtool script we actually want to # install stripped_ext="" case $file in *.exe) if test ! -f "$file"; then func_stripname '' '.exe' "$file" file=$func_stripname_result stripped_ext=".exe" fi ;; esac # Do a test to see if this is really a libtool program. case $host in *cygwin* | *mingw*) if func_ltwrapper_executable_p "$file"; then func_ltwrapper_scriptname "$file" wrapper=$func_ltwrapper_scriptname_result else func_stripname '' '.exe' "$file" wrapper=$func_stripname_result fi ;; *) wrapper=$file ;; esac if func_ltwrapper_script_p "$wrapper"; then notinst_deplibs= relink_command= func_source "$wrapper" # Check the variables that should have been set. test -z "$generated_by_libtool_version" && \ func_fatal_error "invalid libtool wrapper script \`$wrapper'" finalize=yes for lib in $notinst_deplibs; do # Check to see that each library is installed. libdir= if test -f "$lib"; then func_source "$lib" fi libfile="$libdir/"`$ECHO "$lib" | $SED 's%^.*/%%g'` ### testsuite: skip nested quoting test if test -n "$libdir" && test ! -f "$libfile"; then func_warning "\`$lib' has not been installed in \`$libdir'" finalize=no fi done relink_command= func_source "$wrapper" outputname= if test "$fast_install" = no && test -n "$relink_command"; then $opt_dry_run || { if test "$finalize" = yes; then tmpdir=`func_mktempdir` func_basename "$file$stripped_ext" file="$func_basename_result" outputname="$tmpdir/$file" # Replace the output file specification. relink_command=`$ECHO "$relink_command" | $SED 's%@OUTPUT@%'"$outputname"'%g'` $opt_silent || { func_quote_for_expand "$relink_command" eval "func_echo $func_quote_for_expand_result" } if eval "$relink_command"; then : else func_error "error: relink \`$file' with the above command before installing it" $opt_dry_run || ${RM}r "$tmpdir" continue fi file="$outputname" else func_warning "cannot relink \`$file'" fi } else # Install the binary that we compiled earlier. file=`$ECHO "$file$stripped_ext" | $SED "s%\([^/]*\)$%$objdir/\1%"` fi fi # remove .exe since cygwin /usr/bin/install will append another # one anyway case $install_prog,$host in */usr/bin/install*,*cygwin*) case $file:$destfile in *.exe:*.exe) # this is ok ;; *.exe:*) destfile=$destfile.exe ;; *:*.exe) func_stripname '' '.exe' "$destfile" destfile=$func_stripname_result ;; esac ;; esac func_show_eval "$install_prog\$stripme \$file \$destfile" 'exit $?' $opt_dry_run || if test -n "$outputname"; then ${RM}r "$tmpdir" fi ;; esac done for file in $staticlibs; do func_basename "$file" name="$func_basename_result" # Set up the ranlib parameters. oldlib="$destdir/$name" func_to_tool_file "$oldlib" func_convert_file_msys_to_w32 tool_oldlib=$func_to_tool_file_result func_show_eval "$install_prog \$file \$oldlib" 'exit $?' if test -n "$stripme" && test -n "$old_striplib"; then func_show_eval "$old_striplib $tool_oldlib" 'exit $?' fi # Do each command in the postinstall commands. func_execute_cmds "$old_postinstall_cmds" 'exit $?' done test -n "$future_libdirs" && \ func_warning "remember to run \`$progname --finish$future_libdirs'" if test -n "$current_libdirs"; then # Maybe just do a dry run. $opt_dry_run && current_libdirs=" -n$current_libdirs" exec_cmd='$SHELL $progpath $preserve_args --finish$current_libdirs' else exit $EXIT_SUCCESS fi } test "$opt_mode" = install && func_mode_install ${1+"$@"} # func_generate_dlsyms outputname originator pic_p # Extract symbols from dlprefiles and create ${outputname}S.o with # a dlpreopen symbol table. func_generate_dlsyms () { $opt_debug my_outputname="$1" my_originator="$2" my_pic_p="${3-no}" my_prefix=`$ECHO "$my_originator" | sed 's%[^a-zA-Z0-9]%_%g'` my_dlsyms= if test -n "$dlfiles$dlprefiles" || test "$dlself" != no; then if test -n "$NM" && test -n "$global_symbol_pipe"; then my_dlsyms="${my_outputname}S.c" else func_error "not configured to extract global symbols from dlpreopened files" fi fi if test -n "$my_dlsyms"; then case $my_dlsyms in "") ;; *.c) # Discover the nlist of each of the dlfiles. nlist="$output_objdir/${my_outputname}.nm" func_show_eval "$RM $nlist ${nlist}S ${nlist}T" # Parse the name list into a source file. func_verbose "creating $output_objdir/$my_dlsyms" $opt_dry_run || $ECHO > "$output_objdir/$my_dlsyms" "\ /* $my_dlsyms - symbol resolution table for \`$my_outputname' dlsym emulation. */ /* Generated by $PROGRAM (GNU $PACKAGE$TIMESTAMP) $VERSION */ #ifdef __cplusplus extern \"C\" { #endif #if defined(__GNUC__) && (((__GNUC__ == 4) && (__GNUC_MINOR__ >= 4)) || (__GNUC__ > 4)) #pragma GCC diagnostic ignored \"-Wstrict-prototypes\" #endif /* Keep this code in sync between libtool.m4, ltmain, lt_system.h, and tests. */ #if defined(_WIN32) || defined(__CYGWIN__) || defined(_WIN32_WCE) /* DATA imports from DLLs on WIN32 con't be const, because runtime relocations are performed -- see ld's documentation on pseudo-relocs. */ # define LT_DLSYM_CONST #elif defined(__osf__) /* This system does not cope well with relocations in const data. */ # define LT_DLSYM_CONST #else # define LT_DLSYM_CONST const #endif /* External symbol declarations for the compiler. */\ " if test "$dlself" = yes; then func_verbose "generating symbol list for \`$output'" $opt_dry_run || echo ': @PROGRAM@ ' > "$nlist" # Add our own program objects to the symbol list. progfiles=`$ECHO "$objs$old_deplibs" | $SP2NL | $SED "$lo2o" | $NL2SP` for progfile in $progfiles; do func_to_tool_file "$progfile" func_convert_file_msys_to_w32 func_verbose "extracting global C symbols from \`$func_to_tool_file_result'" $opt_dry_run || eval "$NM $func_to_tool_file_result | $global_symbol_pipe >> '$nlist'" done if test -n "$exclude_expsyms"; then $opt_dry_run || { eval '$EGREP -v " ($exclude_expsyms)$" "$nlist" > "$nlist"T' eval '$MV "$nlist"T "$nlist"' } fi if test -n "$export_symbols_regex"; then $opt_dry_run || { eval '$EGREP -e "$export_symbols_regex" "$nlist" > "$nlist"T' eval '$MV "$nlist"T "$nlist"' } fi # Prepare the list of exported symbols if test -z "$export_symbols"; then export_symbols="$output_objdir/$outputname.exp" $opt_dry_run || { $RM $export_symbols eval "${SED} -n -e '/^: @PROGRAM@ $/d' -e 's/^.* \(.*\)$/\1/p' "'< "$nlist" > "$export_symbols"' case $host in *cygwin* | *mingw* | *cegcc* ) eval "echo EXPORTS "'> "$output_objdir/$outputname.def"' eval 'cat "$export_symbols" >> "$output_objdir/$outputname.def"' ;; esac } else $opt_dry_run || { eval "${SED} -e 's/\([].[*^$]\)/\\\\\1/g' -e 's/^/ /' -e 's/$/$/'"' < "$export_symbols" > "$output_objdir/$outputname.exp"' eval '$GREP -f "$output_objdir/$outputname.exp" < "$nlist" > "$nlist"T' eval '$MV "$nlist"T "$nlist"' case $host in *cygwin* | *mingw* | *cegcc* ) eval "echo EXPORTS "'> "$output_objdir/$outputname.def"' eval 'cat "$nlist" >> "$output_objdir/$outputname.def"' ;; esac } fi fi for dlprefile in $dlprefiles; do func_verbose "extracting global C symbols from \`$dlprefile'" func_basename "$dlprefile" name="$func_basename_result" case $host in *cygwin* | *mingw* | *cegcc* ) # if an import library, we need to obtain dlname if func_win32_import_lib_p "$dlprefile"; then func_tr_sh "$dlprefile" eval "curr_lafile=\$libfile_$func_tr_sh_result" dlprefile_dlbasename="" if test -n "$curr_lafile" && func_lalib_p "$curr_lafile"; then # Use subshell, to avoid clobbering current variable values dlprefile_dlname=`source "$curr_lafile" && echo "$dlname"` if test -n "$dlprefile_dlname" ; then func_basename "$dlprefile_dlname" dlprefile_dlbasename="$func_basename_result" else # no lafile. user explicitly requested -dlpreopen <import library>. $sharedlib_from_linklib_cmd "$dlprefile" dlprefile_dlbasename=$sharedlib_from_linklib_result fi fi $opt_dry_run || { if test -n "$dlprefile_dlbasename" ; then eval '$ECHO ": $dlprefile_dlbasename" >> "$nlist"' else func_warning "Could not compute DLL name from $name" eval '$ECHO ": $name " >> "$nlist"' fi func_to_tool_file "$dlprefile" func_convert_file_msys_to_w32 eval "$NM \"$func_to_tool_file_result\" 2>/dev/null | $global_symbol_pipe | $SED -e '/I __imp/d' -e 's/I __nm_/D /;s/_nm__//' >> '$nlist'" } else # not an import lib $opt_dry_run || { eval '$ECHO ": $name " >> "$nlist"' func_to_tool_file "$dlprefile" func_convert_file_msys_to_w32 eval "$NM \"$func_to_tool_file_result\" 2>/dev/null | $global_symbol_pipe >> '$nlist'" } fi ;; *) $opt_dry_run || { eval '$ECHO ": $name " >> "$nlist"' func_to_tool_file "$dlprefile" func_convert_file_msys_to_w32 eval "$NM \"$func_to_tool_file_result\" 2>/dev/null | $global_symbol_pipe >> '$nlist'" } ;; esac done $opt_dry_run || { # Make sure we have at least an empty file. test -f "$nlist" || : > "$nlist" if test -n "$exclude_expsyms"; then $EGREP -v " ($exclude_expsyms)$" "$nlist" > "$nlist"T $MV "$nlist"T "$nlist" fi # Try sorting and uniquifying the output. if $GREP -v "^: " < "$nlist" | if sort -k 3 </dev/null >/dev/null 2>&1; then sort -k 3 else sort +2 fi | uniq > "$nlist"S; then : else $GREP -v "^: " < "$nlist" > "$nlist"S fi if test -f "$nlist"S; then eval "$global_symbol_to_cdecl"' < "$nlist"S >> "$output_objdir/$my_dlsyms"' else echo '/* NONE */' >> "$output_objdir/$my_dlsyms" fi echo >> "$output_objdir/$my_dlsyms" "\ /* The mapping between symbol names and symbols. */ typedef struct { const char *name; void *address; } lt_dlsymlist; extern LT_DLSYM_CONST lt_dlsymlist lt_${my_prefix}_LTX_preloaded_symbols[]; LT_DLSYM_CONST lt_dlsymlist lt_${my_prefix}_LTX_preloaded_symbols[] = {\ { \"$my_originator\", (void *) 0 }," case $need_lib_prefix in no) eval "$global_symbol_to_c_name_address" < "$nlist" >> "$output_objdir/$my_dlsyms" ;; *) eval "$global_symbol_to_c_name_address_lib_prefix" < "$nlist" >> "$output_objdir/$my_dlsyms" ;; esac echo >> "$output_objdir/$my_dlsyms" "\ {0, (void *) 0} }; /* This works around a problem in FreeBSD linker */ #ifdef FREEBSD_WORKAROUND static const void *lt_preloaded_setup() { return lt_${my_prefix}_LTX_preloaded_symbols; } #endif #ifdef __cplusplus } #endif\ " } # !$opt_dry_run pic_flag_for_symtable= case "$compile_command " in *" -static "*) ;; *) case $host in # compiling the symbol table file with pic_flag works around # a FreeBSD bug that causes programs to crash when -lm is # linked before any other PIC object. But we must not use # pic_flag when linking with -static. The problem exists in # FreeBSD 2.2.6 and is fixed in FreeBSD 3.1. *-*-freebsd2.*|*-*-freebsd3.0*|*-*-freebsdelf3.0*) pic_flag_for_symtable=" $pic_flag -DFREEBSD_WORKAROUND" ;; *-*-hpux*) pic_flag_for_symtable=" $pic_flag" ;; *) if test "X$my_pic_p" != Xno; then pic_flag_for_symtable=" $pic_flag" fi ;; esac ;; esac symtab_cflags= for arg in $LTCFLAGS; do case $arg in -pie | -fpie | -fPIE) ;; *) func_append symtab_cflags " $arg" ;; esac done # Now compile the dynamic symbol file. func_show_eval '(cd $output_objdir && $LTCC$symtab_cflags -c$no_builtin_flag$pic_flag_for_symtable "$my_dlsyms")' 'exit $?' # Clean up the generated files. func_show_eval '$RM "$output_objdir/$my_dlsyms" "$nlist" "${nlist}S" "${nlist}T"' # Transform the symbol file into the correct name. symfileobj="$output_objdir/${my_outputname}S.$objext" case $host in *cygwin* | *mingw* | *cegcc* ) if test -f "$output_objdir/$my_outputname.def"; then compile_command=`$ECHO "$compile_command" | $SED "s%@SYMFILE@%$output_objdir/$my_outputname.def $symfileobj%"` finalize_command=`$ECHO "$finalize_command" | $SED "s%@SYMFILE@%$output_objdir/$my_outputname.def $symfileobj%"` else compile_command=`$ECHO "$compile_command" | $SED "s%@SYMFILE@%$symfileobj%"` finalize_command=`$ECHO "$finalize_command" | $SED "s%@SYMFILE@%$symfileobj%"` fi ;; *) compile_command=`$ECHO "$compile_command" | $SED "s%@SYMFILE@%$symfileobj%"` finalize_command=`$ECHO "$finalize_command" | $SED "s%@SYMFILE@%$symfileobj%"` ;; esac ;; *) func_fatal_error "unknown suffix for \`$my_dlsyms'" ;; esac else # We keep going just in case the user didn't refer to # lt_preloaded_symbols. The linker will fail if global_symbol_pipe # really was required. # Nullify the symbol file. compile_command=`$ECHO "$compile_command" | $SED "s% @SYMFILE@%%"` finalize_command=`$ECHO "$finalize_command" | $SED "s% @SYMFILE@%%"` fi } # func_win32_libid arg # return the library type of file 'arg' # # Need a lot of goo to handle *both* DLLs and import libs # Has to be a shell function in order to 'eat' the argument # that is supplied when $file_magic_command is called. # Despite the name, also deal with 64 bit binaries. func_win32_libid () { $opt_debug win32_libid_type="unknown" win32_fileres=`file -L $1 2>/dev/null` case $win32_fileres in *ar\ archive\ import\ library*) # definitely import win32_libid_type="x86 archive import" ;; *ar\ archive*) # could be an import, or static # Keep the egrep pattern in sync with the one in _LT_CHECK_MAGIC_METHOD. if eval $OBJDUMP -f $1 | $SED -e '10q' 2>/dev/null | $EGREP 'file format (pei*-i386(.*architecture: i386)?|pe-arm-wince|pe-x86-64)' >/dev/null; then func_to_tool_file "$1" func_convert_file_msys_to_w32 win32_nmres=`eval $NM -f posix -A \"$func_to_tool_file_result\" | $SED -n -e ' 1,100{ / I /{ s,.*,import, p q } }'` case $win32_nmres in import*) win32_libid_type="x86 archive import";; *) win32_libid_type="x86 archive static";; esac fi ;; *DLL*) win32_libid_type="x86 DLL" ;; *executable*) # but shell scripts are "executable" too... case $win32_fileres in *MS\ Windows\ PE\ Intel*) win32_libid_type="x86 DLL" ;; esac ;; esac $ECHO "$win32_libid_type" } # func_cygming_dll_for_implib ARG # # Platform-specific function to extract the # name of the DLL associated with the specified # import library ARG. # Invoked by eval'ing the libtool variable # $sharedlib_from_linklib_cmd # Result is available in the variable # $sharedlib_from_linklib_result func_cygming_dll_for_implib () { $opt_debug sharedlib_from_linklib_result=`$DLLTOOL --identify-strict --identify "$1"` } # func_cygming_dll_for_implib_fallback_core SECTION_NAME LIBNAMEs # # The is the core of a fallback implementation of a # platform-specific function to extract the name of the # DLL associated with the specified import library LIBNAME. # # SECTION_NAME is either .idata$6 or .idata$7, depending # on the platform and compiler that created the implib. # # Echos the name of the DLL associated with the # specified import library. func_cygming_dll_for_implib_fallback_core () { $opt_debug match_literal=`$ECHO "$1" | $SED "$sed_make_literal_regex"` $OBJDUMP -s --section "$1" "$2" 2>/dev/null | $SED '/^Contents of section '"$match_literal"':/{ # Place marker at beginning of archive member dllname section s/.*/====MARK====/ p d } # These lines can sometimes be longer than 43 characters, but # are always uninteresting /:[ ]*file format pe[i]\{,1\}-/d /^In archive [^:]*:/d # Ensure marker is printed /^====MARK====/p # Remove all lines with less than 43 characters /^.\{43\}/!d # From remaining lines, remove first 43 characters s/^.\{43\}//' | $SED -n ' # Join marker and all lines until next marker into a single line /^====MARK====/ b para H $ b para b :para x s/\n//g # Remove the marker s/^====MARK====// # Remove trailing dots and whitespace s/[\. \t]*$// # Print /./p' | # we now have a list, one entry per line, of the stringified # contents of the appropriate section of all members of the # archive which possess that section. Heuristic: eliminate # all those which have a first or second character that is # a '.' (that is, objdump's representation of an unprintable # character.) This should work for all archives with less than # 0x302f exports -- but will fail for DLLs whose name actually # begins with a literal '.' or a single character followed by # a '.'. # # Of those that remain, print the first one. $SED -e '/^\./d;/^.\./d;q' } # func_cygming_gnu_implib_p ARG # This predicate returns with zero status (TRUE) if # ARG is a GNU/binutils-style import library. Returns # with nonzero status (FALSE) otherwise. func_cygming_gnu_implib_p () { $opt_debug func_to_tool_file "$1" func_convert_file_msys_to_w32 func_cygming_gnu_implib_tmp=`$NM "$func_to_tool_file_result" | eval "$global_symbol_pipe" | $EGREP ' (_head_[A-Za-z0-9_]+_[ad]l*|[A-Za-z0-9_]+_[ad]l*_iname)$'` test -n "$func_cygming_gnu_implib_tmp" } # func_cygming_ms_implib_p ARG # This predicate returns with zero status (TRUE) if # ARG is an MS-style import library. Returns # with nonzero status (FALSE) otherwise. func_cygming_ms_implib_p () { $opt_debug func_to_tool_file "$1" func_convert_file_msys_to_w32 func_cygming_ms_implib_tmp=`$NM "$func_to_tool_file_result" | eval "$global_symbol_pipe" | $GREP '_NULL_IMPORT_DESCRIPTOR'` test -n "$func_cygming_ms_implib_tmp" } # func_cygming_dll_for_implib_fallback ARG # Platform-specific function to extract the # name of the DLL associated with the specified # import library ARG. # # This fallback implementation is for use when $DLLTOOL # does not support the --identify-strict option. # Invoked by eval'ing the libtool variable # $sharedlib_from_linklib_cmd # Result is available in the variable # $sharedlib_from_linklib_result func_cygming_dll_for_implib_fallback () { $opt_debug if func_cygming_gnu_implib_p "$1" ; then # binutils import library sharedlib_from_linklib_result=`func_cygming_dll_for_implib_fallback_core '.idata$7' "$1"` elif func_cygming_ms_implib_p "$1" ; then # ms-generated import library sharedlib_from_linklib_result=`func_cygming_dll_for_implib_fallback_core '.idata$6' "$1"` else # unknown sharedlib_from_linklib_result="" fi } # func_extract_an_archive dir oldlib func_extract_an_archive () { $opt_debug f_ex_an_ar_dir="$1"; shift f_ex_an_ar_oldlib="$1" if test "$lock_old_archive_extraction" = yes; then lockfile=$f_ex_an_ar_oldlib.lock until $opt_dry_run || ln "$progpath" "$lockfile" 2>/dev/null; do func_echo "Waiting for $lockfile to be removed" sleep 2 done fi func_show_eval "(cd \$f_ex_an_ar_dir && $AR x \"\$f_ex_an_ar_oldlib\")" \ 'stat=$?; rm -f "$lockfile"; exit $stat' if test "$lock_old_archive_extraction" = yes; then $opt_dry_run || rm -f "$lockfile" fi if ($AR t "$f_ex_an_ar_oldlib" | sort | sort -uc >/dev/null 2>&1); then : else func_fatal_error "object name conflicts in archive: $f_ex_an_ar_dir/$f_ex_an_ar_oldlib" fi } # func_extract_archives gentop oldlib ... func_extract_archives () { $opt_debug my_gentop="$1"; shift my_oldlibs=${1+"$@"} my_oldobjs="" my_xlib="" my_xabs="" my_xdir="" for my_xlib in $my_oldlibs; do # Extract the objects. case $my_xlib in [\\/]* | [A-Za-z]:[\\/]*) my_xabs="$my_xlib" ;; *) my_xabs=`pwd`"/$my_xlib" ;; esac func_basename "$my_xlib" my_xlib="$func_basename_result" my_xlib_u=$my_xlib while :; do case " $extracted_archives " in *" $my_xlib_u "*) func_arith $extracted_serial + 1 extracted_serial=$func_arith_result my_xlib_u=lt$extracted_serial-$my_xlib ;; *) break ;; esac done extracted_archives="$extracted_archives $my_xlib_u" my_xdir="$my_gentop/$my_xlib_u" func_mkdir_p "$my_xdir" case $host in *-darwin*) func_verbose "Extracting $my_xabs" # Do not bother doing anything if just a dry run $opt_dry_run || { darwin_orig_dir=`pwd` cd $my_xdir || exit $? darwin_archive=$my_xabs darwin_curdir=`pwd` darwin_base_archive=`basename "$darwin_archive"` darwin_arches=`$LIPO -info "$darwin_archive" 2>/dev/null | $GREP Architectures 2>/dev/null || true` if test -n "$darwin_arches"; then darwin_arches=`$ECHO "$darwin_arches" | $SED -e 's/.*are://'` darwin_arch= func_verbose "$darwin_base_archive has multiple architectures $darwin_arches" for darwin_arch in $darwin_arches ; do func_mkdir_p "unfat-$$/${darwin_base_archive}-${darwin_arch}" $LIPO -thin $darwin_arch -output "unfat-$$/${darwin_base_archive}-${darwin_arch}/${darwin_base_archive}" "${darwin_archive}" cd "unfat-$$/${darwin_base_archive}-${darwin_arch}" func_extract_an_archive "`pwd`" "${darwin_base_archive}" cd "$darwin_curdir" $RM "unfat-$$/${darwin_base_archive}-${darwin_arch}/${darwin_base_archive}" done # $darwin_arches ## Okay now we've a bunch of thin objects, gotta fatten them up :) darwin_filelist=`find unfat-$$ -type f -name \*.o -print -o -name \*.lo -print | $SED -e "$basename" | sort -u` darwin_file= darwin_files= for darwin_file in $darwin_filelist; do darwin_files=`find unfat-$$ -name $darwin_file -print | sort | $NL2SP` $LIPO -create -output "$darwin_file" $darwin_files done # $darwin_filelist $RM -rf unfat-$$ cd "$darwin_orig_dir" else cd $darwin_orig_dir func_extract_an_archive "$my_xdir" "$my_xabs" fi # $darwin_arches } # !$opt_dry_run ;; *) func_extract_an_archive "$my_xdir" "$my_xabs" ;; esac my_oldobjs="$my_oldobjs "`find $my_xdir -name \*.$objext -print -o -name \*.lo -print | sort | $NL2SP` done func_extract_archives_result="$my_oldobjs" } # func_emit_wrapper [arg=no] # # Emit a libtool wrapper script on stdout. # Don't directly open a file because we may want to # incorporate the script contents within a cygwin/mingw # wrapper executable. Must ONLY be called from within # func_mode_link because it depends on a number of variables # set therein. # # ARG is the value that the WRAPPER_SCRIPT_BELONGS_IN_OBJDIR # variable will take. If 'yes', then the emitted script # will assume that the directory in which it is stored is # the $objdir directory. This is a cygwin/mingw-specific # behavior. func_emit_wrapper () { func_emit_wrapper_arg1=${1-no} $ECHO "\ #! $SHELL # $output - temporary wrapper script for $objdir/$outputname # Generated by $PROGRAM (GNU $PACKAGE$TIMESTAMP) $VERSION # # The $output program cannot be directly executed until all the libtool # libraries that it depends on are installed. # # This wrapper script should never be moved out of the build directory. # If it is, it will not operate correctly. # Sed substitution that helps us do robust quoting. It backslashifies # metacharacters that are still active within double-quoted strings. sed_quote_subst='$sed_quote_subst' # Be Bourne compatible if test -n \"\${ZSH_VERSION+set}\" && (emulate sh) >/dev/null 2>&1; then emulate sh NULLCMD=: # Zsh 3.x and 4.x performs word splitting on \${1+\"\$@\"}, which # is contrary to our usage. Disable this feature. alias -g '\${1+\"\$@\"}'='\"\$@\"' setopt NO_GLOB_SUBST else case \`(set -o) 2>/dev/null\` in *posix*) set -o posix;; esac fi BIN_SH=xpg4; export BIN_SH # for Tru64 DUALCASE=1; export DUALCASE # for MKS sh # The HP-UX ksh and POSIX shell print the target directory to stdout # if CDPATH is set. (unset CDPATH) >/dev/null 2>&1 && unset CDPATH relink_command=\"$relink_command\" # This environment variable determines our operation mode. if test \"\$libtool_install_magic\" = \"$magic\"; then # install mode needs the following variables: generated_by_libtool_version='$macro_version' notinst_deplibs='$notinst_deplibs' else # When we are sourced in execute mode, \$file and \$ECHO are already set. if test \"\$libtool_execute_magic\" != \"$magic\"; then file=\"\$0\"" qECHO=`$ECHO "$ECHO" | $SED "$sed_quote_subst"` $ECHO "\ # A function that is used when there is no print builtin or printf. func_fallback_echo () { eval 'cat <<_LTECHO_EOF \$1 _LTECHO_EOF' } ECHO=\"$qECHO\" fi # Very basic option parsing. These options are (a) specific to # the libtool wrapper, (b) are identical between the wrapper # /script/ and the wrapper /executable/ which is used only on # windows platforms, and (c) all begin with the string "--lt-" # (application programs are unlikely to have options which match # this pattern). # # There are only two supported options: --lt-debug and # --lt-dump-script. There is, deliberately, no --lt-help. # # The first argument to this parsing function should be the # script's $0 value, followed by "$@". lt_option_debug= func_parse_lt_options () { lt_script_arg0=\$0 shift for lt_opt do case \"\$lt_opt\" in --lt-debug) lt_option_debug=1 ;; --lt-dump-script) lt_dump_D=\`\$ECHO \"X\$lt_script_arg0\" | $SED -e 's/^X//' -e 's%/[^/]*$%%'\` test \"X\$lt_dump_D\" = \"X\$lt_script_arg0\" && lt_dump_D=. lt_dump_F=\`\$ECHO \"X\$lt_script_arg0\" | $SED -e 's/^X//' -e 's%^.*/%%'\` cat \"\$lt_dump_D/\$lt_dump_F\" exit 0 ;; --lt-*) \$ECHO \"Unrecognized --lt- option: '\$lt_opt'\" 1>&2 exit 1 ;; esac done # Print the debug banner immediately: if test -n \"\$lt_option_debug\"; then echo \"${outputname}:${output}:\${LINENO}: libtool wrapper (GNU $PACKAGE$TIMESTAMP) $VERSION\" 1>&2 fi } # Used when --lt-debug. Prints its arguments to stdout # (redirection is the responsibility of the caller) func_lt_dump_args () { lt_dump_args_N=1; for lt_arg do \$ECHO \"${outputname}:${output}:\${LINENO}: newargv[\$lt_dump_args_N]: \$lt_arg\" lt_dump_args_N=\`expr \$lt_dump_args_N + 1\` done } # Core function for launching the target application func_exec_program_core () { " case $host in # Backslashes separate directories on plain windows *-*-mingw | *-*-os2* | *-cegcc*) $ECHO "\ if test -n \"\$lt_option_debug\"; then \$ECHO \"${outputname}:${output}:\${LINENO}: newargv[0]: \$progdir\\\\\$program\" 1>&2 func_lt_dump_args \${1+\"\$@\"} 1>&2 fi exec \"\$progdir\\\\\$program\" \${1+\"\$@\"} " ;; *) $ECHO "\ if test -n \"\$lt_option_debug\"; then \$ECHO \"${outputname}:${output}:\${LINENO}: newargv[0]: \$progdir/\$program\" 1>&2 func_lt_dump_args \${1+\"\$@\"} 1>&2 fi exec \"\$progdir/\$program\" \${1+\"\$@\"} " ;; esac $ECHO "\ \$ECHO \"\$0: cannot exec \$program \$*\" 1>&2 exit 1 } # A function to encapsulate launching the target application # Strips options in the --lt-* namespace from \$@ and # launches target application with the remaining arguments. func_exec_program () { case \" \$* \" in *\\ --lt-*) for lt_wr_arg do case \$lt_wr_arg in --lt-*) ;; *) set x \"\$@\" \"\$lt_wr_arg\"; shift;; esac shift done ;; esac func_exec_program_core \${1+\"\$@\"} } # Parse options func_parse_lt_options \"\$0\" \${1+\"\$@\"} # Find the directory that this script lives in. thisdir=\`\$ECHO \"\$file\" | $SED 's%/[^/]*$%%'\` test \"x\$thisdir\" = \"x\$file\" && thisdir=. # Follow symbolic links until we get to the real thisdir. file=\`ls -ld \"\$file\" | $SED -n 's/.*-> //p'\` while test -n \"\$file\"; do destdir=\`\$ECHO \"\$file\" | $SED 's%/[^/]*\$%%'\` # If there was a directory component, then change thisdir. if test \"x\$destdir\" != \"x\$file\"; then case \"\$destdir\" in [\\\\/]* | [A-Za-z]:[\\\\/]*) thisdir=\"\$destdir\" ;; *) thisdir=\"\$thisdir/\$destdir\" ;; esac fi file=\`\$ECHO \"\$file\" | $SED 's%^.*/%%'\` file=\`ls -ld \"\$thisdir/\$file\" | $SED -n 's/.*-> //p'\` done # Usually 'no', except on cygwin/mingw when embedded into # the cwrapper. WRAPPER_SCRIPT_BELONGS_IN_OBJDIR=$func_emit_wrapper_arg1 if test \"\$WRAPPER_SCRIPT_BELONGS_IN_OBJDIR\" = \"yes\"; then # special case for '.' if test \"\$thisdir\" = \".\"; then thisdir=\`pwd\` fi # remove .libs from thisdir case \"\$thisdir\" in *[\\\\/]$objdir ) thisdir=\`\$ECHO \"\$thisdir\" | $SED 's%[\\\\/][^\\\\/]*$%%'\` ;; $objdir ) thisdir=. ;; esac fi # Try to get the absolute directory name. absdir=\`cd \"\$thisdir\" && pwd\` test -n \"\$absdir\" && thisdir=\"\$absdir\" " if test "$fast_install" = yes; then $ECHO "\ program=lt-'$outputname'$exeext progdir=\"\$thisdir/$objdir\" if test ! -f \"\$progdir/\$program\" || { file=\`ls -1dt \"\$progdir/\$program\" \"\$progdir/../\$program\" 2>/dev/null | ${SED} 1q\`; \\ test \"X\$file\" != \"X\$progdir/\$program\"; }; then file=\"\$\$-\$program\" if test ! -d \"\$progdir\"; then $MKDIR \"\$progdir\" else $RM \"\$progdir/\$file\" fi" $ECHO "\ # relink executable if necessary if test -n \"\$relink_command\"; then if relink_command_output=\`eval \$relink_command 2>&1\`; then : else $ECHO \"\$relink_command_output\" >&2 $RM \"\$progdir/\$file\" exit 1 fi fi $MV \"\$progdir/\$file\" \"\$progdir/\$program\" 2>/dev/null || { $RM \"\$progdir/\$program\"; $MV \"\$progdir/\$file\" \"\$progdir/\$program\"; } $RM \"\$progdir/\$file\" fi" else $ECHO "\ program='$outputname' progdir=\"\$thisdir/$objdir\" " fi $ECHO "\ if test -f \"\$progdir/\$program\"; then" # fixup the dll searchpath if we need to. # # Fix the DLL searchpath if we need to. Do this before prepending # to shlibpath, because on Windows, both are PATH and uninstalled # libraries must come first. if test -n "$dllsearchpath"; then $ECHO "\ # Add the dll search path components to the executable PATH PATH=$dllsearchpath:\$PATH " fi # Export our shlibpath_var if we have one. if test "$shlibpath_overrides_runpath" = yes && test -n "$shlibpath_var" && test -n "$temp_rpath"; then $ECHO "\ # Add our own library path to $shlibpath_var $shlibpath_var=\"$temp_rpath\$$shlibpath_var\" # Some systems cannot cope with colon-terminated $shlibpath_var # The second colon is a workaround for a bug in BeOS R4 sed $shlibpath_var=\`\$ECHO \"\$$shlibpath_var\" | $SED 's/::*\$//'\` export $shlibpath_var " fi $ECHO "\ if test \"\$libtool_execute_magic\" != \"$magic\"; then # Run the actual program with our arguments. func_exec_program \${1+\"\$@\"} fi else # The program doesn't exist. \$ECHO \"\$0: error: \\\`\$progdir/\$program' does not exist\" 1>&2 \$ECHO \"This script is just a wrapper for \$program.\" 1>&2 \$ECHO \"See the $PACKAGE documentation for more information.\" 1>&2 exit 1 fi fi\ " } # func_emit_cwrapperexe_src # emit the source code for a wrapper executable on stdout # Must ONLY be called from within func_mode_link because # it depends on a number of variable set therein. func_emit_cwrapperexe_src () { cat <<EOF /* $cwrappersource - temporary wrapper executable for $objdir/$outputname Generated by $PROGRAM (GNU $PACKAGE$TIMESTAMP) $VERSION The $output program cannot be directly executed until all the libtool libraries that it depends on are installed. This wrapper executable should never be moved out of the build directory. If it is, it will not operate correctly. */ EOF cat <<"EOF" #ifdef _MSC_VER # define _CRT_SECURE_NO_DEPRECATE 1 #endif #include <stdio.h> #include <stdlib.h> #ifdef _MSC_VER # include <direct.h> # include <process.h> # include <io.h> #else # include <unistd.h> # include <stdint.h> # ifdef __CYGWIN__ # include <io.h> # endif #endif #include <malloc.h> #include <stdarg.h> #include <assert.h> #include <string.h> #include <ctype.h> #include <errno.h> #include <fcntl.h> #include <sys/stat.h> /* declarations of non-ANSI functions */ #if defined(__MINGW32__) # ifdef __STRICT_ANSI__ int _putenv (const char *); # endif #elif defined(__CYGWIN__) # ifdef __STRICT_ANSI__ char *realpath (const char *, char *); int putenv (char *); int setenv (const char *, const char *, int); # endif /* #elif defined (other platforms) ... */ #endif /* portability defines, excluding path handling macros */ #if defined(_MSC_VER) # define setmode _setmode # define stat _stat # define chmod _chmod # define getcwd _getcwd # define putenv _putenv # define S_IXUSR _S_IEXEC # ifndef _INTPTR_T_DEFINED # define _INTPTR_T_DEFINED # define intptr_t int # endif #elif defined(__MINGW32__) # define setmode _setmode # define stat _stat # define chmod _chmod # define getcwd _getcwd # define putenv _putenv #elif defined(__CYGWIN__) # define HAVE_SETENV # define FOPEN_WB "wb" /* #elif defined (other platforms) ... */ #endif #if defined(PATH_MAX) # define LT_PATHMAX PATH_MAX #elif defined(MAXPATHLEN) # define LT_PATHMAX MAXPATHLEN #else # define LT_PATHMAX 1024 #endif #ifndef S_IXOTH # define S_IXOTH 0 #endif #ifndef S_IXGRP # define S_IXGRP 0 #endif /* path handling portability macros */ #ifndef DIR_SEPARATOR # define DIR_SEPARATOR '/' # define PATH_SEPARATOR ':' #endif #if defined (_WIN32) || defined (__MSDOS__) || defined (__DJGPP__) || \ defined (__OS2__) # define HAVE_DOS_BASED_FILE_SYSTEM # define FOPEN_WB "wb" # ifndef DIR_SEPARATOR_2 # define DIR_SEPARATOR_2 '\\' # endif # ifndef PATH_SEPARATOR_2 # define PATH_SEPARATOR_2 ';' # endif #endif #ifndef DIR_SEPARATOR_2 # define IS_DIR_SEPARATOR(ch) ((ch) == DIR_SEPARATOR) #else /* DIR_SEPARATOR_2 */ # define IS_DIR_SEPARATOR(ch) \ (((ch) == DIR_SEPARATOR) || ((ch) == DIR_SEPARATOR_2)) #endif /* DIR_SEPARATOR_2 */ #ifndef PATH_SEPARATOR_2 # define IS_PATH_SEPARATOR(ch) ((ch) == PATH_SEPARATOR) #else /* PATH_SEPARATOR_2 */ # define IS_PATH_SEPARATOR(ch) ((ch) == PATH_SEPARATOR_2) #endif /* PATH_SEPARATOR_2 */ #ifndef FOPEN_WB # define FOPEN_WB "w" #endif #ifndef _O_BINARY # define _O_BINARY 0 #endif #define XMALLOC(type, num) ((type *) xmalloc ((num) * sizeof(type))) #define XFREE(stale) do { \ if (stale) { free ((void *) stale); stale = 0; } \ } while (0) #if defined(LT_DEBUGWRAPPER) static int lt_debug = 1; #else static int lt_debug = 0; #endif const char *program_name = "libtool-wrapper"; /* in case xstrdup fails */ void *xmalloc (size_t num); char *xstrdup (const char *string); const char *base_name (const char *name); char *find_executable (const char *wrapper); char *chase_symlinks (const char *pathspec); int make_executable (const char *path); int check_executable (const char *path); char *strendzap (char *str, const char *pat); void lt_debugprintf (const char *file, int line, const char *fmt, ...); void lt_fatal (const char *file, int line, const char *message, ...); static const char *nonnull (const char *s); static const char *nonempty (const char *s); void lt_setenv (const char *name, const char *value); char *lt_extend_str (const char *orig_value, const char *add, int to_end); void lt_update_exe_path (const char *name, const char *value); void lt_update_lib_path (const char *name, const char *value); char **prepare_spawn (char **argv); void lt_dump_script (FILE *f); EOF cat <<EOF volatile const char * MAGIC_EXE = "$magic_exe"; const char * LIB_PATH_VARNAME = "$shlibpath_var"; EOF if test "$shlibpath_overrides_runpath" = yes && test -n "$shlibpath_var" && test -n "$temp_rpath"; then func_to_host_path "$temp_rpath" cat <<EOF const char * LIB_PATH_VALUE = "$func_to_host_path_result"; EOF else cat <<"EOF" const char * LIB_PATH_VALUE = ""; EOF fi if test -n "$dllsearchpath"; then func_to_host_path "$dllsearchpath:" cat <<EOF const char * EXE_PATH_VARNAME = "PATH"; const char * EXE_PATH_VALUE = "$func_to_host_path_result"; EOF else cat <<"EOF" const char * EXE_PATH_VARNAME = ""; const char * EXE_PATH_VALUE = ""; EOF fi if test "$fast_install" = yes; then cat <<EOF const char * TARGET_PROGRAM_NAME = "lt-$outputname"; /* hopefully, no .exe */ EOF else cat <<EOF const char * TARGET_PROGRAM_NAME = "$outputname"; /* hopefully, no .exe */ EOF fi cat <<"EOF" #define LTWRAPPER_OPTION_PREFIX "--lt-" static const char *ltwrapper_option_prefix = LTWRAPPER_OPTION_PREFIX; static const char *dumpscript_opt = LTWRAPPER_OPTION_PREFIX "dump-script"; static const char *debug_opt = LTWRAPPER_OPTION_PREFIX "debug"; int main (int argc, char *argv[]) { char **newargz; int newargc; char *tmp_pathspec; char *actual_cwrapper_path; char *actual_cwrapper_name; char *target_name; char *lt_argv_zero; intptr_t rval = 127; int i; program_name = (char *) xstrdup (base_name (argv[0])); newargz = XMALLOC (char *, argc + 1); /* very simple arg parsing; don't want to rely on getopt * also, copy all non cwrapper options to newargz, except * argz[0], which is handled differently */ newargc=0; for (i = 1; i < argc; i++) { if (strcmp (argv[i], dumpscript_opt) == 0) { EOF case "$host" in *mingw* | *cygwin* ) # make stdout use "unix" line endings echo " setmode(1,_O_BINARY);" ;; esac cat <<"EOF" lt_dump_script (stdout); return 0; } if (strcmp (argv[i], debug_opt) == 0) { lt_debug = 1; continue; } if (strcmp (argv[i], ltwrapper_option_prefix) == 0) { /* however, if there is an option in the LTWRAPPER_OPTION_PREFIX namespace, but it is not one of the ones we know about and have already dealt with, above (inluding dump-script), then report an error. Otherwise, targets might begin to believe they are allowed to use options in the LTWRAPPER_OPTION_PREFIX namespace. The first time any user complains about this, we'll need to make LTWRAPPER_OPTION_PREFIX a configure-time option or a configure.ac-settable value. */ lt_fatal (__FILE__, __LINE__, "unrecognized %s option: '%s'", ltwrapper_option_prefix, argv[i]); } /* otherwise ... */ newargz[++newargc] = xstrdup (argv[i]); } newargz[++newargc] = NULL; EOF cat <<EOF /* The GNU banner must be the first non-error debug message */ lt_debugprintf (__FILE__, __LINE__, "libtool wrapper (GNU $PACKAGE$TIMESTAMP) $VERSION\n"); EOF cat <<"EOF" lt_debugprintf (__FILE__, __LINE__, "(main) argv[0]: %s\n", argv[0]); lt_debugprintf (__FILE__, __LINE__, "(main) program_name: %s\n", program_name); tmp_pathspec = find_executable (argv[0]); if (tmp_pathspec == NULL) lt_fatal (__FILE__, __LINE__, "couldn't find %s", argv[0]); lt_debugprintf (__FILE__, __LINE__, "(main) found exe (before symlink chase) at: %s\n", tmp_pathspec); actual_cwrapper_path = chase_symlinks (tmp_pathspec); lt_debugprintf (__FILE__, __LINE__, "(main) found exe (after symlink chase) at: %s\n", actual_cwrapper_path); XFREE (tmp_pathspec); actual_cwrapper_name = xstrdup (base_name (actual_cwrapper_path)); strendzap (actual_cwrapper_path, actual_cwrapper_name); /* wrapper name transforms */ strendzap (actual_cwrapper_name, ".exe"); tmp_pathspec = lt_extend_str (actual_cwrapper_name, ".exe", 1); XFREE (actual_cwrapper_name); actual_cwrapper_name = tmp_pathspec; tmp_pathspec = 0; /* target_name transforms -- use actual target program name; might have lt- prefix */ target_name = xstrdup (base_name (TARGET_PROGRAM_NAME)); strendzap (target_name, ".exe"); tmp_pathspec = lt_extend_str (target_name, ".exe", 1); XFREE (target_name); target_name = tmp_pathspec; tmp_pathspec = 0; lt_debugprintf (__FILE__, __LINE__, "(main) libtool target name: %s\n", target_name); EOF cat <<EOF newargz[0] = XMALLOC (char, (strlen (actual_cwrapper_path) + strlen ("$objdir") + 1 + strlen (actual_cwrapper_name) + 1)); strcpy (newargz[0], actual_cwrapper_path); strcat (newargz[0], "$objdir"); strcat (newargz[0], "/"); EOF cat <<"EOF" /* stop here, and copy so we don't have to do this twice */ tmp_pathspec = xstrdup (newargz[0]); /* do NOT want the lt- prefix here, so use actual_cwrapper_name */ strcat (newargz[0], actual_cwrapper_name); /* DO want the lt- prefix here if it exists, so use target_name */ lt_argv_zero = lt_extend_str (tmp_pathspec, target_name, 1); XFREE (tmp_pathspec); tmp_pathspec = NULL; EOF case $host_os in mingw*) cat <<"EOF" { char* p; while ((p = strchr (newargz[0], '\\')) != NULL) { *p = '/'; } while ((p = strchr (lt_argv_zero, '\\')) != NULL) { *p = '/'; } } EOF ;; esac cat <<"EOF" XFREE (target_name); XFREE (actual_cwrapper_path); XFREE (actual_cwrapper_name); lt_setenv ("BIN_SH", "xpg4"); /* for Tru64 */ lt_setenv ("DUALCASE", "1"); /* for MSK sh */ /* Update the DLL searchpath. EXE_PATH_VALUE ($dllsearchpath) must be prepended before (that is, appear after) LIB_PATH_VALUE ($temp_rpath) because on Windows, both *_VARNAMEs are PATH but uninstalled libraries must come first. */ lt_update_exe_path (EXE_PATH_VARNAME, EXE_PATH_VALUE); lt_update_lib_path (LIB_PATH_VARNAME, LIB_PATH_VALUE); lt_debugprintf (__FILE__, __LINE__, "(main) lt_argv_zero: %s\n", nonnull (lt_argv_zero)); for (i = 0; i < newargc; i++) { lt_debugprintf (__FILE__, __LINE__, "(main) newargz[%d]: %s\n", i, nonnull (newargz[i])); } EOF case $host_os in mingw*) cat <<"EOF" /* execv doesn't actually work on mingw as expected on unix */ newargz = prepare_spawn (newargz); rval = _spawnv (_P_WAIT, lt_argv_zero, (const char * const *) newargz); if (rval == -1) { /* failed to start process */ lt_debugprintf (__FILE__, __LINE__, "(main) failed to launch target \"%s\": %s\n", lt_argv_zero, nonnull (strerror (errno))); return 127; } return rval; EOF ;; *) cat <<"EOF" execv (lt_argv_zero, newargz); return rval; /* =127, but avoids unused variable warning */ EOF ;; esac cat <<"EOF" } void * xmalloc (size_t num) { void *p = (void *) malloc (num); if (!p) lt_fatal (__FILE__, __LINE__, "memory exhausted"); return p; } char * xstrdup (const char *string) { return string ? strcpy ((char *) xmalloc (strlen (string) + 1), string) : NULL; } const char * base_name (const char *name) { const char *base; #if defined (HAVE_DOS_BASED_FILE_SYSTEM) /* Skip over the disk name in MSDOS pathnames. */ if (isalpha ((unsigned char) name[0]) && name[1] == ':') name += 2; #endif for (base = name; *name; name++) if (IS_DIR_SEPARATOR (*name)) base = name + 1; return base; } int check_executable (const char *path) { struct stat st; lt_debugprintf (__FILE__, __LINE__, "(check_executable): %s\n", nonempty (path)); if ((!path) || (!*path)) return 0; if ((stat (path, &st) >= 0) && (st.st_mode & (S_IXUSR | S_IXGRP | S_IXOTH))) return 1; else return 0; } int make_executable (const char *path) { int rval = 0; struct stat st; lt_debugprintf (__FILE__, __LINE__, "(make_executable): %s\n", nonempty (path)); if ((!path) || (!*path)) return 0; if (stat (path, &st) >= 0) { rval = chmod (path, st.st_mode | S_IXOTH | S_IXGRP | S_IXUSR); } return rval; } /* Searches for the full path of the wrapper. Returns newly allocated full path name if found, NULL otherwise Does not chase symlinks, even on platforms that support them. */ char * find_executable (const char *wrapper) { int has_slash = 0; const char *p; const char *p_next; /* static buffer for getcwd */ char tmp[LT_PATHMAX + 1]; int tmp_len; char *concat_name; lt_debugprintf (__FILE__, __LINE__, "(find_executable): %s\n", nonempty (wrapper)); if ((wrapper == NULL) || (*wrapper == '\0')) return NULL; /* Absolute path? */ #if defined (HAVE_DOS_BASED_FILE_SYSTEM) if (isalpha ((unsigned char) wrapper[0]) && wrapper[1] == ':') { concat_name = xstrdup (wrapper); if (check_executable (concat_name)) return concat_name; XFREE (concat_name); } else { #endif if (IS_DIR_SEPARATOR (wrapper[0])) { concat_name = xstrdup (wrapper); if (check_executable (concat_name)) return concat_name; XFREE (concat_name); } #if defined (HAVE_DOS_BASED_FILE_SYSTEM) } #endif for (p = wrapper; *p; p++) if (*p == '/') { has_slash = 1; break; } if (!has_slash) { /* no slashes; search PATH */ const char *path = getenv ("PATH"); if (path != NULL) { for (p = path; *p; p = p_next) { const char *q; size_t p_len; for (q = p; *q; q++) if (IS_PATH_SEPARATOR (*q)) break; p_len = q - p; p_next = (*q == '\0' ? q : q + 1); if (p_len == 0) { /* empty path: current directory */ if (getcwd (tmp, LT_PATHMAX) == NULL) lt_fatal (__FILE__, __LINE__, "getcwd failed: %s", nonnull (strerror (errno))); tmp_len = strlen (tmp); concat_name = XMALLOC (char, tmp_len + 1 + strlen (wrapper) + 1); memcpy (concat_name, tmp, tmp_len); concat_name[tmp_len] = '/'; strcpy (concat_name + tmp_len + 1, wrapper); } else { concat_name = XMALLOC (char, p_len + 1 + strlen (wrapper) + 1); memcpy (concat_name, p, p_len); concat_name[p_len] = '/'; strcpy (concat_name + p_len + 1, wrapper); } if (check_executable (concat_name)) return concat_name; XFREE (concat_name); } } /* not found in PATH; assume curdir */ } /* Relative path | not found in path: prepend cwd */ if (getcwd (tmp, LT_PATHMAX) == NULL) lt_fatal (__FILE__, __LINE__, "getcwd failed: %s", nonnull (strerror (errno))); tmp_len = strlen (tmp); concat_name = XMALLOC (char, tmp_len + 1 + strlen (wrapper) + 1); memcpy (concat_name, tmp, tmp_len); concat_name[tmp_len] = '/'; strcpy (concat_name + tmp_len + 1, wrapper); if (check_executable (concat_name)) return concat_name; XFREE (concat_name); return NULL; } char * chase_symlinks (const char *pathspec) { #ifndef S_ISLNK return xstrdup (pathspec); #else char buf[LT_PATHMAX]; struct stat s; char *tmp_pathspec = xstrdup (pathspec); char *p; int has_symlinks = 0; while (strlen (tmp_pathspec) && !has_symlinks) { lt_debugprintf (__FILE__, __LINE__, "checking path component for symlinks: %s\n", tmp_pathspec); if (lstat (tmp_pathspec, &s) == 0) { if (S_ISLNK (s.st_mode) != 0) { has_symlinks = 1; break; } /* search backwards for last DIR_SEPARATOR */ p = tmp_pathspec + strlen (tmp_pathspec) - 1; while ((p > tmp_pathspec) && (!IS_DIR_SEPARATOR (*p))) p--; if ((p == tmp_pathspec) && (!IS_DIR_SEPARATOR (*p))) { /* no more DIR_SEPARATORS left */ break; } *p = '\0'; } else { lt_fatal (__FILE__, __LINE__, "error accessing file \"%s\": %s", tmp_pathspec, nonnull (strerror (errno))); } } XFREE (tmp_pathspec); if (!has_symlinks) { return xstrdup (pathspec); } tmp_pathspec = realpath (pathspec, buf); if (tmp_pathspec == 0) { lt_fatal (__FILE__, __LINE__, "could not follow symlinks for %s", pathspec); } return xstrdup (tmp_pathspec); #endif } char * strendzap (char *str, const char *pat) { size_t len, patlen; assert (str != NULL); assert (pat != NULL); len = strlen (str); patlen = strlen (pat); if (patlen <= len) { str += len - patlen; if (strcmp (str, pat) == 0) *str = '\0'; } return str; } void lt_debugprintf (const char *file, int line, const char *fmt, ...) { va_list args; if (lt_debug) { (void) fprintf (stderr, "%s:%s:%d: ", program_name, file, line); va_start (args, fmt); (void) vfprintf (stderr, fmt, args); va_end (args); } } static void lt_error_core (int exit_status, const char *file, int line, const char *mode, const char *message, va_list ap) { fprintf (stderr, "%s:%s:%d: %s: ", program_name, file, line, mode); vfprintf (stderr, message, ap); fprintf (stderr, ".\n"); if (exit_status >= 0) exit (exit_status); } void lt_fatal (const char *file, int line, const char *message, ...) { va_list ap; va_start (ap, message); lt_error_core (EXIT_FAILURE, file, line, "FATAL", message, ap); va_end (ap); } static const char * nonnull (const char *s) { return s ? s : "(null)"; } static const char * nonempty (const char *s) { return (s && !*s) ? "(empty)" : nonnull (s); } void lt_setenv (const char *name, const char *value) { lt_debugprintf (__FILE__, __LINE__, "(lt_setenv) setting '%s' to '%s'\n", nonnull (name), nonnull (value)); { #ifdef HAVE_SETENV /* always make a copy, for consistency with !HAVE_SETENV */ char *str = xstrdup (value); setenv (name, str, 1); #else int len = strlen (name) + 1 + strlen (value) + 1; char *str = XMALLOC (char, len); sprintf (str, "%s=%s", name, value); if (putenv (str) != EXIT_SUCCESS) { XFREE (str); } #endif } } char * lt_extend_str (const char *orig_value, const char *add, int to_end) { char *new_value; if (orig_value && *orig_value) { int orig_value_len = strlen (orig_value); int add_len = strlen (add); new_value = XMALLOC (char, add_len + orig_value_len + 1); if (to_end) { strcpy (new_value, orig_value); strcpy (new_value + orig_value_len, add); } else { strcpy (new_value, add); strcpy (new_value + add_len, orig_value); } } else { new_value = xstrdup (add); } return new_value; } void lt_update_exe_path (const char *name, const char *value) { lt_debugprintf (__FILE__, __LINE__, "(lt_update_exe_path) modifying '%s' by prepending '%s'\n", nonnull (name), nonnull (value)); if (name && *name && value && *value) { char *new_value = lt_extend_str (getenv (name), value, 0); /* some systems can't cope with a ':'-terminated path #' */ int len = strlen (new_value); while (((len = strlen (new_value)) > 0) && IS_PATH_SEPARATOR (new_value[len-1])) { new_value[len-1] = '\0'; } lt_setenv (name, new_value); XFREE (new_value); } } void lt_update_lib_path (const char *name, const char *value) { lt_debugprintf (__FILE__, __LINE__, "(lt_update_lib_path) modifying '%s' by prepending '%s'\n", nonnull (name), nonnull (value)); if (name && *name && value && *value) { char *new_value = lt_extend_str (getenv (name), value, 0); lt_setenv (name, new_value); XFREE (new_value); } } EOF case $host_os in mingw*) cat <<"EOF" /* Prepares an argument vector before calling spawn(). Note that spawn() does not by itself call the command interpreter (getenv ("COMSPEC") != NULL ? getenv ("COMSPEC") : ({ OSVERSIONINFO v; v.dwOSVersionInfoSize = sizeof(OSVERSIONINFO); GetVersionEx(&v); v.dwPlatformId == VER_PLATFORM_WIN32_NT; }) ? "cmd.exe" : "command.com"). Instead it simply concatenates the arguments, separated by ' ', and calls CreateProcess(). We must quote the arguments since Win32 CreateProcess() interprets characters like ' ', '\t', '\\', '"' (but not '<' and '>') in a special way: - Space and tab are interpreted as delimiters. They are not treated as delimiters if they are surrounded by double quotes: "...". - Unescaped double quotes are removed from the input. Their only effect is that within double quotes, space and tab are treated like normal characters. - Backslashes not followed by double quotes are not special. - But 2*n+1 backslashes followed by a double quote become n backslashes followed by a double quote (n >= 0): \" -> " \\\" -> \" \\\\\" -> \\" */ #define SHELL_SPECIAL_CHARS "\"\\ \001\002\003\004\005\006\007\010\011\012\013\014\015\016\017\020\021\022\023\024\025\026\027\030\031\032\033\034\035\036\037" #define SHELL_SPACE_CHARS " \001\002\003\004\005\006\007\010\011\012\013\014\015\016\017\020\021\022\023\024\025\026\027\030\031\032\033\034\035\036\037" char ** prepare_spawn (char **argv) { size_t argc; char **new_argv; size_t i; /* Count number of arguments. */ for (argc = 0; argv[argc] != NULL; argc++) ; /* Allocate new argument vector. */ new_argv = XMALLOC (char *, argc + 1); /* Put quoted arguments into the new argument vector. */ for (i = 0; i < argc; i++) { const char *string = argv[i]; if (string[0] == '\0') new_argv[i] = xstrdup ("\"\""); else if (strpbrk (string, SHELL_SPECIAL_CHARS) != NULL) { int quote_around = (strpbrk (string, SHELL_SPACE_CHARS) != NULL); size_t length; unsigned int backslashes; const char *s; char *quoted_string; char *p; length = 0; backslashes = 0; if (quote_around) length++; for (s = string; *s != '\0'; s++) { char c = *s; if (c == '"') length += backslashes + 1; length++; if (c == '\\') backslashes++; else backslashes = 0; } if (quote_around) length += backslashes + 1; quoted_string = XMALLOC (char, length + 1); p = quoted_string; backslashes = 0; if (quote_around) *p++ = '"'; for (s = string; *s != '\0'; s++) { char c = *s; if (c == '"') { unsigned int j; for (j = backslashes + 1; j > 0; j--) *p++ = '\\'; } *p++ = c; if (c == '\\') backslashes++; else backslashes = 0; } if (quote_around) { unsigned int j; for (j = backslashes; j > 0; j--) *p++ = '\\'; *p++ = '"'; } *p = '\0'; new_argv[i] = quoted_string; } else new_argv[i] = (char *) string; } new_argv[argc] = NULL; return new_argv; } EOF ;; esac cat <<"EOF" void lt_dump_script (FILE* f) { EOF func_emit_wrapper yes | $SED -n -e ' s/^\(.\{79\}\)\(..*\)/\1\ \2/ h s/\([\\"]\)/\\\1/g s/$/\\n/ s/\([^\n]*\).*/ fputs ("\1", f);/p g D' cat <<"EOF" } EOF } # end: func_emit_cwrapperexe_src # func_win32_import_lib_p ARG # True if ARG is an import lib, as indicated by $file_magic_cmd func_win32_import_lib_p () { $opt_debug case `eval $file_magic_cmd \"\$1\" 2>/dev/null | $SED -e 10q` in *import*) : ;; *) false ;; esac } # func_mode_link arg... func_mode_link () { $opt_debug case $host in *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-cegcc*) # It is impossible to link a dll without this setting, and # we shouldn't force the makefile maintainer to figure out # which system we are compiling for in order to pass an extra # flag for every libtool invocation. # allow_undefined=no # FIXME: Unfortunately, there are problems with the above when trying # to make a dll which has undefined symbols, in which case not # even a static library is built. For now, we need to specify # -no-undefined on the libtool link line when we can be certain # that all symbols are satisfied, otherwise we get a static library. allow_undefined=yes ;; *) allow_undefined=yes ;; esac libtool_args=$nonopt base_compile="$nonopt $@" compile_command=$nonopt finalize_command=$nonopt compile_rpath= finalize_rpath= compile_shlibpath= finalize_shlibpath= convenience= old_convenience= deplibs= old_deplibs= compiler_flags= linker_flags= dllsearchpath= lib_search_path=`pwd` inst_prefix_dir= new_inherited_linker_flags= avoid_version=no bindir= dlfiles= dlprefiles= dlself=no export_dynamic=no export_symbols= export_symbols_regex= generated= libobjs= ltlibs= module=no no_install=no objs= non_pic_objects= precious_files_regex= prefer_static_libs=no preload=no prev= prevarg= release= rpath= xrpath= perm_rpath= temp_rpath= thread_safe=no vinfo= vinfo_number=no weak_libs= single_module="${wl}-single_module" func_infer_tag $base_compile # We need to know -static, to get the right output filenames. for arg do case $arg in -shared) test "$build_libtool_libs" != yes && \ func_fatal_configuration "can not build a shared library" build_old_libs=no break ;; -all-static | -static | -static-libtool-libs) case $arg in -all-static) if test "$build_libtool_libs" = yes && test -z "$link_static_flag"; then func_warning "complete static linking is impossible in this configuration" fi if test -n "$link_static_flag"; then dlopen_self=$dlopen_self_static fi prefer_static_libs=yes ;; -static) if test -z "$pic_flag" && test -n "$link_static_flag"; then dlopen_self=$dlopen_self_static fi prefer_static_libs=built ;; -static-libtool-libs) if test -z "$pic_flag" && test -n "$link_static_flag"; then dlopen_self=$dlopen_self_static fi prefer_static_libs=yes ;; esac build_libtool_libs=no build_old_libs=yes break ;; esac done # See if our shared archives depend on static archives. test -n "$old_archive_from_new_cmds" && build_old_libs=yes # Go through the arguments, transforming them on the way. while test "$#" -gt 0; do arg="$1" shift func_quote_for_eval "$arg" qarg=$func_quote_for_eval_unquoted_result func_append libtool_args " $func_quote_for_eval_result" # If the previous option needs an argument, assign it. if test -n "$prev"; then case $prev in output) func_append compile_command " @OUTPUT@" func_append finalize_command " @OUTPUT@" ;; esac case $prev in bindir) bindir="$arg" prev= continue ;; dlfiles|dlprefiles) if test "$preload" = no; then # Add the symbol object into the linking commands. func_append compile_command " @SYMFILE@" func_append finalize_command " @SYMFILE@" preload=yes fi case $arg in *.la | *.lo) ;; # We handle these cases below. force) if test "$dlself" = no; then dlself=needless export_dynamic=yes fi prev= continue ;; self) if test "$prev" = dlprefiles; then dlself=yes elif test "$prev" = dlfiles && test "$dlopen_self" != yes; then dlself=yes else dlself=needless export_dynamic=yes fi prev= continue ;; *) if test "$prev" = dlfiles; then func_append dlfiles " $arg" else func_append dlprefiles " $arg" fi prev= continue ;; esac ;; expsyms) export_symbols="$arg" test -f "$arg" \ || func_fatal_error "symbol file \`$arg' does not exist" prev= continue ;; expsyms_regex) export_symbols_regex="$arg" prev= continue ;; framework) case $host in *-*-darwin*) case "$deplibs " in *" $qarg.ltframework "*) ;; *) func_append deplibs " $qarg.ltframework" # this is fixed later ;; esac ;; esac prev= continue ;; inst_prefix) inst_prefix_dir="$arg" prev= continue ;; objectlist) if test -f "$arg"; then save_arg=$arg moreargs= for fil in `cat "$save_arg"` do # func_append moreargs " $fil" arg=$fil # A libtool-controlled object. # Check to see that this really is a libtool object. if func_lalib_unsafe_p "$arg"; then pic_object= non_pic_object= # Read the .lo file func_source "$arg" if test -z "$pic_object" || test -z "$non_pic_object" || test "$pic_object" = none && test "$non_pic_object" = none; then func_fatal_error "cannot find name of object for \`$arg'" fi # Extract subdirectory from the argument. func_dirname "$arg" "/" "" xdir="$func_dirname_result" if test "$pic_object" != none; then # Prepend the subdirectory the object is found in. pic_object="$xdir$pic_object" if test "$prev" = dlfiles; then if test "$build_libtool_libs" = yes && test "$dlopen_support" = yes; then func_append dlfiles " $pic_object" prev= continue else # If libtool objects are unsupported, then we need to preload. prev=dlprefiles fi fi # CHECK ME: I think I busted this. -Ossama if test "$prev" = dlprefiles; then # Preload the old-style object. func_append dlprefiles " $pic_object" prev= fi # A PIC object. func_append libobjs " $pic_object" arg="$pic_object" fi # Non-PIC object. if test "$non_pic_object" != none; then # Prepend the subdirectory the object is found in. non_pic_object="$xdir$non_pic_object" # A standard non-PIC object func_append non_pic_objects " $non_pic_object" if test -z "$pic_object" || test "$pic_object" = none ; then arg="$non_pic_object" fi else # If the PIC object exists, use it instead. # $xdir was prepended to $pic_object above. non_pic_object="$pic_object" func_append non_pic_objects " $non_pic_object" fi else # Only an error if not doing a dry-run. if $opt_dry_run; then # Extract subdirectory from the argument. func_dirname "$arg" "/" "" xdir="$func_dirname_result" func_lo2o "$arg" pic_object=$xdir$objdir/$func_lo2o_result non_pic_object=$xdir$func_lo2o_result func_append libobjs " $pic_object" func_append non_pic_objects " $non_pic_object" else func_fatal_error "\`$arg' is not a valid libtool object" fi fi done else func_fatal_error "link input file \`$arg' does not exist" fi arg=$save_arg prev= continue ;; precious_regex) precious_files_regex="$arg" prev= continue ;; release) release="-$arg" prev= continue ;; rpath | xrpath) # We need an absolute path. case $arg in [\\/]* | [A-Za-z]:[\\/]*) ;; *) func_fatal_error "only absolute run-paths are allowed" ;; esac if test "$prev" = rpath; then case "$rpath " in *" $arg "*) ;; *) func_append rpath " $arg" ;; esac else case "$xrpath " in *" $arg "*) ;; *) func_append xrpath " $arg" ;; esac fi prev= continue ;; shrext) shrext_cmds="$arg" prev= continue ;; weak) func_append weak_libs " $arg" prev= continue ;; xcclinker) func_append linker_flags " $qarg" func_append compiler_flags " $qarg" prev= func_append compile_command " $qarg" func_append finalize_command " $qarg" continue ;; xcompiler) func_append compiler_flags " $qarg" prev= func_append compile_command " $qarg" func_append finalize_command " $qarg" continue ;; xlinker) func_append linker_flags " $qarg" func_append compiler_flags " $wl$qarg" prev= func_append compile_command " $wl$qarg" func_append finalize_command " $wl$qarg" continue ;; *) eval "$prev=\"\$arg\"" prev= continue ;; esac fi # test -n "$prev" prevarg="$arg" case $arg in -all-static) if test -n "$link_static_flag"; then # See comment for -static flag below, for more details. func_append compile_command " $link_static_flag" func_append finalize_command " $link_static_flag" fi continue ;; -allow-undefined) # FIXME: remove this flag sometime in the future. func_fatal_error "\`-allow-undefined' must not be used because it is the default" ;; -avoid-version) avoid_version=yes continue ;; -bindir) prev=bindir continue ;; -dlopen) prev=dlfiles continue ;; -dlpreopen) prev=dlprefiles continue ;; -export-dynamic) export_dynamic=yes continue ;; -export-symbols | -export-symbols-regex) if test -n "$export_symbols" || test -n "$export_symbols_regex"; then func_fatal_error "more than one -exported-symbols argument is not allowed" fi if test "X$arg" = "X-export-symbols"; then prev=expsyms else prev=expsyms_regex fi continue ;; -framework) prev=framework continue ;; -inst-prefix-dir) prev=inst_prefix continue ;; # The native IRIX linker understands -LANG:*, -LIST:* and -LNO:* # so, if we see these flags be careful not to treat them like -L -L[A-Z][A-Z]*:*) case $with_gcc/$host in no/*-*-irix* | /*-*-irix*) func_append compile_command " $arg" func_append finalize_command " $arg" ;; esac continue ;; -L*) func_stripname "-L" '' "$arg" if test -z "$func_stripname_result"; then if test "$#" -gt 0; then func_fatal_error "require no space between \`-L' and \`$1'" else func_fatal_error "need path for \`-L' option" fi fi func_resolve_sysroot "$func_stripname_result" dir=$func_resolve_sysroot_result # We need an absolute path. case $dir in [\\/]* | [A-Za-z]:[\\/]*) ;; *) absdir=`cd "$dir" && pwd` test -z "$absdir" && \ func_fatal_error "cannot determine absolute directory name of \`$dir'" dir="$absdir" ;; esac case "$deplibs " in *" -L$dir "* | *" $arg "*) # Will only happen for absolute or sysroot arguments ;; *) # Preserve sysroot, but never include relative directories case $dir in [\\/]* | [A-Za-z]:[\\/]* | =*) func_append deplibs " $arg" ;; *) func_append deplibs " -L$dir" ;; esac func_append lib_search_path " $dir" ;; esac case $host in *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-cegcc*) testbindir=`$ECHO "$dir" | $SED 's*/lib$*/bin*'` case :$dllsearchpath: in *":$dir:"*) ;; ::) dllsearchpath=$dir;; *) func_append dllsearchpath ":$dir";; esac case :$dllsearchpath: in *":$testbindir:"*) ;; ::) dllsearchpath=$testbindir;; *) func_append dllsearchpath ":$testbindir";; esac ;; esac continue ;; -l*) if test "X$arg" = "X-lc" || test "X$arg" = "X-lm"; then case $host in *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-beos* | *-cegcc* | *-*-haiku*) # These systems don't actually have a C or math library (as such) continue ;; *-*-os2*) # These systems don't actually have a C library (as such) test "X$arg" = "X-lc" && continue ;; *-*-openbsd* | *-*-freebsd* | *-*-dragonfly*) # Do not include libc due to us having libc/libc_r. test "X$arg" = "X-lc" && continue ;; *-*-rhapsody* | *-*-darwin1.[012]) # Rhapsody C and math libraries are in the System framework func_append deplibs " System.ltframework" continue ;; *-*-sco3.2v5* | *-*-sco5v6*) # Causes problems with __ctype test "X$arg" = "X-lc" && continue ;; *-*-sysv4.2uw2* | *-*-sysv5* | *-*-unixware* | *-*-OpenUNIX*) # Compiler inserts libc in the correct place for threads to work test "X$arg" = "X-lc" && continue ;; esac elif test "X$arg" = "X-lc_r"; then case $host in *-*-openbsd* | *-*-freebsd* | *-*-dragonfly*) # Do not include libc_r directly, use -pthread flag. continue ;; esac fi func_append deplibs " $arg" continue ;; -module) module=yes continue ;; # Tru64 UNIX uses -model [arg] to determine the layout of C++ # classes, name mangling, and exception handling. # Darwin uses the -arch flag to determine output architecture. -model|-arch|-isysroot|--sysroot) func_append compiler_flags " $arg" func_append compile_command " $arg" func_append finalize_command " $arg" prev=xcompiler continue ;; -mt|-mthreads|-kthread|-Kthread|-pthread|-pthreads|--thread-safe \ |-threads|-fopenmp|-openmp|-mp|-xopenmp|-omp|-qsmp=*) func_append compiler_flags " $arg" func_append compile_command " $arg" func_append finalize_command " $arg" case "$new_inherited_linker_flags " in *" $arg "*) ;; * ) func_append new_inherited_linker_flags " $arg" ;; esac continue ;; -multi_module) single_module="${wl}-multi_module" continue ;; -no-fast-install) fast_install=no continue ;; -no-install) case $host in *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-*-darwin* | *-cegcc*) # The PATH hackery in wrapper scripts is required on Windows # and Darwin in order for the loader to find any dlls it needs. func_warning "\`-no-install' is ignored for $host" func_warning "assuming \`-no-fast-install' instead" fast_install=no ;; *) no_install=yes ;; esac continue ;; -no-undefined) allow_undefined=no continue ;; -objectlist) prev=objectlist continue ;; -o) prev=output ;; -precious-files-regex) prev=precious_regex continue ;; -release) prev=release continue ;; -rpath) prev=rpath continue ;; -R) prev=xrpath continue ;; -R*) func_stripname '-R' '' "$arg" dir=$func_stripname_result # We need an absolute path. case $dir in [\\/]* | [A-Za-z]:[\\/]*) ;; =*) func_stripname '=' '' "$dir" dir=$lt_sysroot$func_stripname_result ;; *) func_fatal_error "only absolute run-paths are allowed" ;; esac case "$xrpath " in *" $dir "*) ;; *) func_append xrpath " $dir" ;; esac continue ;; -shared) # The effects of -shared are defined in a previous loop. continue ;; -shrext) prev=shrext continue ;; -static | -static-libtool-libs) # The effects of -static are defined in a previous loop. # We used to do the same as -all-static on platforms that # didn't have a PIC flag, but the assumption that the effects # would be equivalent was wrong. It would break on at least # Digital Unix and AIX. continue ;; -thread-safe) thread_safe=yes continue ;; -version-info) prev=vinfo continue ;; -version-number) prev=vinfo vinfo_number=yes continue ;; -weak) prev=weak continue ;; -Wc,*) func_stripname '-Wc,' '' "$arg" args=$func_stripname_result arg= save_ifs="$IFS"; IFS=',' for flag in $args; do IFS="$save_ifs" func_quote_for_eval "$flag" func_append arg " $func_quote_for_eval_result" func_append compiler_flags " $func_quote_for_eval_result" done IFS="$save_ifs" func_stripname ' ' '' "$arg" arg=$func_stripname_result ;; -Wl,*) func_stripname '-Wl,' '' "$arg" args=$func_stripname_result arg= save_ifs="$IFS"; IFS=',' for flag in $args; do IFS="$save_ifs" func_quote_for_eval "$flag" func_append arg " $wl$func_quote_for_eval_result" func_append compiler_flags " $wl$func_quote_for_eval_result" func_append linker_flags " $func_quote_for_eval_result" done IFS="$save_ifs" func_stripname ' ' '' "$arg" arg=$func_stripname_result ;; -Xcompiler) prev=xcompiler continue ;; -Xlinker) prev=xlinker continue ;; -XCClinker) prev=xcclinker continue ;; # -msg_* for osf cc -msg_*) func_quote_for_eval "$arg" arg="$func_quote_for_eval_result" ;; # Flags to be passed through unchanged, with rationale: # -64, -mips[0-9] enable 64-bit mode for the SGI compiler # -r[0-9][0-9]* specify processor for the SGI compiler # -xarch=*, -xtarget=* enable 64-bit mode for the Sun compiler # +DA*, +DD* enable 64-bit mode for the HP compiler # -q* compiler args for the IBM compiler # -m*, -t[45]*, -txscale* architecture-specific flags for GCC # -F/path path to uninstalled frameworks, gcc on darwin # -p, -pg, --coverage, -fprofile-* profiling flags for GCC # @file GCC response files # -tp=* Portland pgcc target processor selection # --sysroot=* for sysroot support # -O*, -flto*, -fwhopr*, -fuse-linker-plugin GCC link-time optimization -64|-mips[0-9]|-r[0-9][0-9]*|-xarch=*|-xtarget=*|+DA*|+DD*|-q*|-m*| \ -t[45]*|-txscale*|-p|-pg|--coverage|-fprofile-*|-F*|@*|-tp=*|--sysroot=*| \ -O*|-flto*|-fwhopr*|-fuse-linker-plugin) func_quote_for_eval "$arg" arg="$func_quote_for_eval_result" func_append compile_command " $arg" func_append finalize_command " $arg" func_append compiler_flags " $arg" continue ;; # Some other compiler flag. -* | +*) func_quote_for_eval "$arg" arg="$func_quote_for_eval_result" ;; *.$objext) # A standard object. func_append objs " $arg" ;; *.lo) # A libtool-controlled object. # Check to see that this really is a libtool object. if func_lalib_unsafe_p "$arg"; then pic_object= non_pic_object= # Read the .lo file func_source "$arg" if test -z "$pic_object" || test -z "$non_pic_object" || test "$pic_object" = none && test "$non_pic_object" = none; then func_fatal_error "cannot find name of object for \`$arg'" fi # Extract subdirectory from the argument. func_dirname "$arg" "/" "" xdir="$func_dirname_result" if test "$pic_object" != none; then # Prepend the subdirectory the object is found in. pic_object="$xdir$pic_object" if test "$prev" = dlfiles; then if test "$build_libtool_libs" = yes && test "$dlopen_support" = yes; then func_append dlfiles " $pic_object" prev= continue else # If libtool objects are unsupported, then we need to preload. prev=dlprefiles fi fi # CHECK ME: I think I busted this. -Ossama if test "$prev" = dlprefiles; then # Preload the old-style object. func_append dlprefiles " $pic_object" prev= fi # A PIC object. func_append libobjs " $pic_object" arg="$pic_object" fi # Non-PIC object. if test "$non_pic_object" != none; then # Prepend the subdirectory the object is found in. non_pic_object="$xdir$non_pic_object" # A standard non-PIC object func_append non_pic_objects " $non_pic_object" if test -z "$pic_object" || test "$pic_object" = none ; then arg="$non_pic_object" fi else # If the PIC object exists, use it instead. # $xdir was prepended to $pic_object above. non_pic_object="$pic_object" func_append non_pic_objects " $non_pic_object" fi else # Only an error if not doing a dry-run. if $opt_dry_run; then # Extract subdirectory from the argument. func_dirname "$arg" "/" "" xdir="$func_dirname_result" func_lo2o "$arg" pic_object=$xdir$objdir/$func_lo2o_result non_pic_object=$xdir$func_lo2o_result func_append libobjs " $pic_object" func_append non_pic_objects " $non_pic_object" else func_fatal_error "\`$arg' is not a valid libtool object" fi fi ;; *.$libext) # An archive. func_append deplibs " $arg" func_append old_deplibs " $arg" continue ;; *.la) # A libtool-controlled library. func_resolve_sysroot "$arg" if test "$prev" = dlfiles; then # This library was specified with -dlopen. func_append dlfiles " $func_resolve_sysroot_result" prev= elif test "$prev" = dlprefiles; then # The library was specified with -dlpreopen. func_append dlprefiles " $func_resolve_sysroot_result" prev= else func_append deplibs " $func_resolve_sysroot_result" fi continue ;; # Some other compiler argument. *) # Unknown arguments in both finalize_command and compile_command need # to be aesthetically quoted because they are evaled later. func_quote_for_eval "$arg" arg="$func_quote_for_eval_result" ;; esac # arg # Now actually substitute the argument into the commands. if test -n "$arg"; then func_append compile_command " $arg" func_append finalize_command " $arg" fi done # argument parsing loop test -n "$prev" && \ func_fatal_help "the \`$prevarg' option requires an argument" if test "$export_dynamic" = yes && test -n "$export_dynamic_flag_spec"; then eval arg=\"$export_dynamic_flag_spec\" func_append compile_command " $arg" func_append finalize_command " $arg" fi oldlibs= # calculate the name of the file, without its directory func_basename "$output" outputname="$func_basename_result" libobjs_save="$libobjs" if test -n "$shlibpath_var"; then # get the directories listed in $shlibpath_var eval shlib_search_path=\`\$ECHO \"\${$shlibpath_var}\" \| \$SED \'s/:/ /g\'\` else shlib_search_path= fi eval sys_lib_search_path=\"$sys_lib_search_path_spec\" eval sys_lib_dlsearch_path=\"$sys_lib_dlsearch_path_spec\" func_dirname "$output" "/" "" output_objdir="$func_dirname_result$objdir" func_to_tool_file "$output_objdir/" tool_output_objdir=$func_to_tool_file_result # Create the object directory. func_mkdir_p "$output_objdir" # Determine the type of output case $output in "") func_fatal_help "you must specify an output file" ;; *.$libext) linkmode=oldlib ;; *.lo | *.$objext) linkmode=obj ;; *.la) linkmode=lib ;; *) linkmode=prog ;; # Anything else should be a program. esac specialdeplibs= libs= # Find all interdependent deplibs by searching for libraries # that are linked more than once (e.g. -la -lb -la) for deplib in $deplibs; do if $opt_preserve_dup_deps ; then case "$libs " in *" $deplib "*) func_append specialdeplibs " $deplib" ;; esac fi func_append libs " $deplib" done if test "$linkmode" = lib; then libs="$predeps $libs $compiler_lib_search_path $postdeps" # Compute libraries that are listed more than once in $predeps # $postdeps and mark them as special (i.e., whose duplicates are # not to be eliminated). pre_post_deps= if $opt_duplicate_compiler_generated_deps; then for pre_post_dep in $predeps $postdeps; do case "$pre_post_deps " in *" $pre_post_dep "*) func_append specialdeplibs " $pre_post_deps" ;; esac func_append pre_post_deps " $pre_post_dep" done fi pre_post_deps= fi deplibs= newdependency_libs= newlib_search_path= need_relink=no # whether we're linking any uninstalled libtool libraries notinst_deplibs= # not-installed libtool libraries notinst_path= # paths that contain not-installed libtool libraries case $linkmode in lib) passes="conv dlpreopen link" for file in $dlfiles $dlprefiles; do case $file in *.la) ;; *) func_fatal_help "libraries can \`-dlopen' only libtool libraries: $file" ;; esac done ;; prog) compile_deplibs= finalize_deplibs= alldeplibs=no newdlfiles= newdlprefiles= passes="conv scan dlopen dlpreopen link" ;; *) passes="conv" ;; esac for pass in $passes; do # The preopen pass in lib mode reverses $deplibs; put it back here # so that -L comes before libs that need it for instance... if test "$linkmode,$pass" = "lib,link"; then ## FIXME: Find the place where the list is rebuilt in the wrong ## order, and fix it there properly tmp_deplibs= for deplib in $deplibs; do tmp_deplibs="$deplib $tmp_deplibs" done deplibs="$tmp_deplibs" fi if test "$linkmode,$pass" = "lib,link" || test "$linkmode,$pass" = "prog,scan"; then libs="$deplibs" deplibs= fi if test "$linkmode" = prog; then case $pass in dlopen) libs="$dlfiles" ;; dlpreopen) libs="$dlprefiles" ;; link) libs="$deplibs %DEPLIBS%" test "X$link_all_deplibs" != Xno && libs="$libs $dependency_libs" ;; esac fi if test "$linkmode,$pass" = "lib,dlpreopen"; then # Collect and forward deplibs of preopened libtool libs for lib in $dlprefiles; do # Ignore non-libtool-libs dependency_libs= func_resolve_sysroot "$lib" case $lib in *.la) func_source "$func_resolve_sysroot_result" ;; esac # Collect preopened libtool deplibs, except any this library # has declared as weak libs for deplib in $dependency_libs; do func_basename "$deplib" deplib_base=$func_basename_result case " $weak_libs " in *" $deplib_base "*) ;; *) func_append deplibs " $deplib" ;; esac done done libs="$dlprefiles" fi if test "$pass" = dlopen; then # Collect dlpreopened libraries save_deplibs="$deplibs" deplibs= fi for deplib in $libs; do lib= found=no case $deplib in -mt|-mthreads|-kthread|-Kthread|-pthread|-pthreads|--thread-safe \ |-threads|-fopenmp|-openmp|-mp|-xopenmp|-omp|-qsmp=*) if test "$linkmode,$pass" = "prog,link"; then compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" else func_append compiler_flags " $deplib" if test "$linkmode" = lib ; then case "$new_inherited_linker_flags " in *" $deplib "*) ;; * ) func_append new_inherited_linker_flags " $deplib" ;; esac fi fi continue ;; -l*) if test "$linkmode" != lib && test "$linkmode" != prog; then func_warning "\`-l' is ignored for archives/objects" continue fi func_stripname '-l' '' "$deplib" name=$func_stripname_result if test "$linkmode" = lib; then searchdirs="$newlib_search_path $lib_search_path $compiler_lib_search_dirs $sys_lib_search_path $shlib_search_path" else searchdirs="$newlib_search_path $lib_search_path $sys_lib_search_path $shlib_search_path" fi for searchdir in $searchdirs; do for search_ext in .la $std_shrext .so .a; do # Search the libtool library lib="$searchdir/lib${name}${search_ext}" if test -f "$lib"; then if test "$search_ext" = ".la"; then found=yes else found=no fi break 2 fi done done if test "$found" != yes; then # deplib doesn't seem to be a libtool library if test "$linkmode,$pass" = "prog,link"; then compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" else deplibs="$deplib $deplibs" test "$linkmode" = lib && newdependency_libs="$deplib $newdependency_libs" fi continue else # deplib is a libtool library # If $allow_libtool_libs_with_static_runtimes && $deplib is a stdlib, # We need to do some special things here, and not later. if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then case " $predeps $postdeps " in *" $deplib "*) if func_lalib_p "$lib"; then library_names= old_library= func_source "$lib" for l in $old_library $library_names; do ll="$l" done if test "X$ll" = "X$old_library" ; then # only static version available found=no func_dirname "$lib" "" "." ladir="$func_dirname_result" lib=$ladir/$old_library if test "$linkmode,$pass" = "prog,link"; then compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" else deplibs="$deplib $deplibs" test "$linkmode" = lib && newdependency_libs="$deplib $newdependency_libs" fi continue fi fi ;; *) ;; esac fi fi ;; # -l *.ltframework) if test "$linkmode,$pass" = "prog,link"; then compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" else deplibs="$deplib $deplibs" if test "$linkmode" = lib ; then case "$new_inherited_linker_flags " in *" $deplib "*) ;; * ) func_append new_inherited_linker_flags " $deplib" ;; esac fi fi continue ;; -L*) case $linkmode in lib) deplibs="$deplib $deplibs" test "$pass" = conv && continue newdependency_libs="$deplib $newdependency_libs" func_stripname '-L' '' "$deplib" func_resolve_sysroot "$func_stripname_result" func_append newlib_search_path " $func_resolve_sysroot_result" ;; prog) if test "$pass" = conv; then deplibs="$deplib $deplibs" continue fi if test "$pass" = scan; then deplibs="$deplib $deplibs" else compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" fi func_stripname '-L' '' "$deplib" func_resolve_sysroot "$func_stripname_result" func_append newlib_search_path " $func_resolve_sysroot_result" ;; *) func_warning "\`-L' is ignored for archives/objects" ;; esac # linkmode continue ;; # -L -R*) if test "$pass" = link; then func_stripname '-R' '' "$deplib" func_resolve_sysroot "$func_stripname_result" dir=$func_resolve_sysroot_result # Make sure the xrpath contains only unique directories. case "$xrpath " in *" $dir "*) ;; *) func_append xrpath " $dir" ;; esac fi deplibs="$deplib $deplibs" continue ;; *.la) func_resolve_sysroot "$deplib" lib=$func_resolve_sysroot_result ;; *.$libext) if test "$pass" = conv; then deplibs="$deplib $deplibs" continue fi case $linkmode in lib) # Linking convenience modules into shared libraries is allowed, # but linking other static libraries is non-portable. case " $dlpreconveniencelibs " in *" $deplib "*) ;; *) valid_a_lib=no case $deplibs_check_method in match_pattern*) set dummy $deplibs_check_method; shift match_pattern_regex=`expr "$deplibs_check_method" : "$1 \(.*\)"` if eval "\$ECHO \"$deplib\"" 2>/dev/null | $SED 10q \ | $EGREP "$match_pattern_regex" > /dev/null; then valid_a_lib=yes fi ;; pass_all) valid_a_lib=yes ;; esac if test "$valid_a_lib" != yes; then echo $ECHO "*** Warning: Trying to link with static lib archive $deplib." echo "*** I have the capability to make that library automatically link in when" echo "*** you link to this library. But I can only do this if you have a" echo "*** shared version of the library, which you do not appear to have" echo "*** because the file extensions .$libext of this argument makes me believe" echo "*** that it is just a static archive that I should not use here." else echo $ECHO "*** Warning: Linking the shared library $output against the" $ECHO "*** static library $deplib is not portable!" deplibs="$deplib $deplibs" fi ;; esac continue ;; prog) if test "$pass" != link; then deplibs="$deplib $deplibs" else compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" fi continue ;; esac # linkmode ;; # *.$libext *.lo | *.$objext) if test "$pass" = conv; then deplibs="$deplib $deplibs" elif test "$linkmode" = prog; then if test "$pass" = dlpreopen || test "$dlopen_support" != yes || test "$build_libtool_libs" = no; then # If there is no dlopen support or we're linking statically, # we need to preload. func_append newdlprefiles " $deplib" compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" else func_append newdlfiles " $deplib" fi fi continue ;; %DEPLIBS%) alldeplibs=yes continue ;; esac # case $deplib if test "$found" = yes || test -f "$lib"; then : else func_fatal_error "cannot find the library \`$lib' or unhandled argument \`$deplib'" fi # Check to see that this really is a libtool archive. func_lalib_unsafe_p "$lib" \ || func_fatal_error "\`$lib' is not a valid libtool archive" func_dirname "$lib" "" "." ladir="$func_dirname_result" dlname= dlopen= dlpreopen= libdir= library_names= old_library= inherited_linker_flags= # If the library was installed with an old release of libtool, # it will not redefine variables installed, or shouldnotlink installed=yes shouldnotlink=no avoidtemprpath= # Read the .la file func_source "$lib" # Convert "-framework foo" to "foo.ltframework" if test -n "$inherited_linker_flags"; then tmp_inherited_linker_flags=`$ECHO "$inherited_linker_flags" | $SED 's/-framework \([^ $]*\)/\1.ltframework/g'` for tmp_inherited_linker_flag in $tmp_inherited_linker_flags; do case " $new_inherited_linker_flags " in *" $tmp_inherited_linker_flag "*) ;; *) func_append new_inherited_linker_flags " $tmp_inherited_linker_flag";; esac done fi dependency_libs=`$ECHO " $dependency_libs" | $SED 's% \([^ $]*\).ltframework% -framework \1%g'` if test "$linkmode,$pass" = "lib,link" || test "$linkmode,$pass" = "prog,scan" || { test "$linkmode" != prog && test "$linkmode" != lib; }; then test -n "$dlopen" && func_append dlfiles " $dlopen" test -n "$dlpreopen" && func_append dlprefiles " $dlpreopen" fi if test "$pass" = conv; then # Only check for convenience libraries deplibs="$lib $deplibs" if test -z "$libdir"; then if test -z "$old_library"; then func_fatal_error "cannot find name of link library for \`$lib'" fi # It is a libtool convenience library, so add in its objects. func_append convenience " $ladir/$objdir/$old_library" func_append old_convenience " $ladir/$objdir/$old_library" tmp_libs= for deplib in $dependency_libs; do deplibs="$deplib $deplibs" if $opt_preserve_dup_deps ; then case "$tmp_libs " in *" $deplib "*) func_append specialdeplibs " $deplib" ;; esac fi func_append tmp_libs " $deplib" done elif test "$linkmode" != prog && test "$linkmode" != lib; then func_fatal_error "\`$lib' is not a convenience library" fi continue fi # $pass = conv # Get the name of the library we link against. linklib= if test -n "$old_library" && { test "$prefer_static_libs" = yes || test "$prefer_static_libs,$installed" = "built,no"; }; then linklib=$old_library else for l in $old_library $library_names; do linklib="$l" done fi if test -z "$linklib"; then func_fatal_error "cannot find name of link library for \`$lib'" fi # This library was specified with -dlopen. if test "$pass" = dlopen; then if test -z "$libdir"; then func_fatal_error "cannot -dlopen a convenience library: \`$lib'" fi if test -z "$dlname" || test "$dlopen_support" != yes || test "$build_libtool_libs" = no; then # If there is no dlname, no dlopen support or we're linking # statically, we need to preload. We also need to preload any # dependent libraries so libltdl's deplib preloader doesn't # bomb out in the load deplibs phase. func_append dlprefiles " $lib $dependency_libs" else func_append newdlfiles " $lib" fi continue fi # $pass = dlopen # We need an absolute path. case $ladir in [\\/]* | [A-Za-z]:[\\/]*) abs_ladir="$ladir" ;; *) abs_ladir=`cd "$ladir" && pwd` if test -z "$abs_ladir"; then func_warning "cannot determine absolute directory name of \`$ladir'" func_warning "passing it literally to the linker, although it might fail" abs_ladir="$ladir" fi ;; esac func_basename "$lib" laname="$func_basename_result" # Find the relevant object directory and library name. if test "X$installed" = Xyes; then if test ! -f "$lt_sysroot$libdir/$linklib" && test -f "$abs_ladir/$linklib"; then func_warning "library \`$lib' was moved." dir="$ladir" absdir="$abs_ladir" libdir="$abs_ladir" else dir="$lt_sysroot$libdir" absdir="$lt_sysroot$libdir" fi test "X$hardcode_automatic" = Xyes && avoidtemprpath=yes else if test ! -f "$ladir/$objdir/$linklib" && test -f "$abs_ladir/$linklib"; then dir="$ladir" absdir="$abs_ladir" # Remove this search path later func_append notinst_path " $abs_ladir" else dir="$ladir/$objdir" absdir="$abs_ladir/$objdir" # Remove this search path later func_append notinst_path " $abs_ladir" fi fi # $installed = yes func_stripname 'lib' '.la' "$laname" name=$func_stripname_result # This library was specified with -dlpreopen. if test "$pass" = dlpreopen; then if test -z "$libdir" && test "$linkmode" = prog; then func_fatal_error "only libraries may -dlpreopen a convenience library: \`$lib'" fi case "$host" in # special handling for platforms with PE-DLLs. *cygwin* | *mingw* | *cegcc* ) # Linker will automatically link against shared library if both # static and shared are present. Therefore, ensure we extract # symbols from the import library if a shared library is present # (otherwise, the dlopen module name will be incorrect). We do # this by putting the import library name into $newdlprefiles. # We recover the dlopen module name by 'saving' the la file # name in a special purpose variable, and (later) extracting the # dlname from the la file. if test -n "$dlname"; then func_tr_sh "$dir/$linklib" eval "libfile_$func_tr_sh_result=\$abs_ladir/\$laname" func_append newdlprefiles " $dir/$linklib" else func_append newdlprefiles " $dir/$old_library" # Keep a list of preopened convenience libraries to check # that they are being used correctly in the link pass. test -z "$libdir" && \ func_append dlpreconveniencelibs " $dir/$old_library" fi ;; * ) # Prefer using a static library (so that no silly _DYNAMIC symbols # are required to link). if test -n "$old_library"; then func_append newdlprefiles " $dir/$old_library" # Keep a list of preopened convenience libraries to check # that they are being used correctly in the link pass. test -z "$libdir" && \ func_append dlpreconveniencelibs " $dir/$old_library" # Otherwise, use the dlname, so that lt_dlopen finds it. elif test -n "$dlname"; then func_append newdlprefiles " $dir/$dlname" else func_append newdlprefiles " $dir/$linklib" fi ;; esac fi # $pass = dlpreopen if test -z "$libdir"; then # Link the convenience library if test "$linkmode" = lib; then deplibs="$dir/$old_library $deplibs" elif test "$linkmode,$pass" = "prog,link"; then compile_deplibs="$dir/$old_library $compile_deplibs" finalize_deplibs="$dir/$old_library $finalize_deplibs" else deplibs="$lib $deplibs" # used for prog,scan pass fi continue fi if test "$linkmode" = prog && test "$pass" != link; then func_append newlib_search_path " $ladir" deplibs="$lib $deplibs" linkalldeplibs=no if test "$link_all_deplibs" != no || test -z "$library_names" || test "$build_libtool_libs" = no; then linkalldeplibs=yes fi tmp_libs= for deplib in $dependency_libs; do case $deplib in -L*) func_stripname '-L' '' "$deplib" func_resolve_sysroot "$func_stripname_result" func_append newlib_search_path " $func_resolve_sysroot_result" ;; esac # Need to link against all dependency_libs? if test "$linkalldeplibs" = yes; then deplibs="$deplib $deplibs" else # Need to hardcode shared library paths # or/and link against static libraries newdependency_libs="$deplib $newdependency_libs" fi if $opt_preserve_dup_deps ; then case "$tmp_libs " in *" $deplib "*) func_append specialdeplibs " $deplib" ;; esac fi func_append tmp_libs " $deplib" done # for deplib continue fi # $linkmode = prog... if test "$linkmode,$pass" = "prog,link"; then if test -n "$library_names" && { { test "$prefer_static_libs" = no || test "$prefer_static_libs,$installed" = "built,yes"; } || test -z "$old_library"; }; then # We need to hardcode the library path if test -n "$shlibpath_var" && test -z "$avoidtemprpath" ; then # Make sure the rpath contains only unique directories. case "$temp_rpath:" in *"$absdir:"*) ;; *) func_append temp_rpath "$absdir:" ;; esac fi # Hardcode the library path. # Skip directories that are in the system default run-time # search path. case " $sys_lib_dlsearch_path " in *" $absdir "*) ;; *) case "$compile_rpath " in *" $absdir "*) ;; *) func_append compile_rpath " $absdir" ;; esac ;; esac case " $sys_lib_dlsearch_path " in *" $libdir "*) ;; *) case "$finalize_rpath " in *" $libdir "*) ;; *) func_append finalize_rpath " $libdir" ;; esac ;; esac fi # $linkmode,$pass = prog,link... if test "$alldeplibs" = yes && { test "$deplibs_check_method" = pass_all || { test "$build_libtool_libs" = yes && test -n "$library_names"; }; }; then # We only need to search for static libraries continue fi fi link_static=no # Whether the deplib will be linked statically use_static_libs=$prefer_static_libs if test "$use_static_libs" = built && test "$installed" = yes; then use_static_libs=no fi if test -n "$library_names" && { test "$use_static_libs" = no || test -z "$old_library"; }; then case $host in *cygwin* | *mingw* | *cegcc*) # No point in relinking DLLs because paths are not encoded func_append notinst_deplibs " $lib" need_relink=no ;; *) if test "$installed" = no; then func_append notinst_deplibs " $lib" need_relink=yes fi ;; esac # This is a shared library # Warn about portability, can't link against -module's on some # systems (darwin). Don't bleat about dlopened modules though! dlopenmodule="" for dlpremoduletest in $dlprefiles; do if test "X$dlpremoduletest" = "X$lib"; then dlopenmodule="$dlpremoduletest" break fi done if test -z "$dlopenmodule" && test "$shouldnotlink" = yes && test "$pass" = link; then echo if test "$linkmode" = prog; then $ECHO "*** Warning: Linking the executable $output against the loadable module" else $ECHO "*** Warning: Linking the shared library $output against the loadable module" fi $ECHO "*** $linklib is not portable!" fi if test "$linkmode" = lib && test "$hardcode_into_libs" = yes; then # Hardcode the library path. # Skip directories that are in the system default run-time # search path. case " $sys_lib_dlsearch_path " in *" $absdir "*) ;; *) case "$compile_rpath " in *" $absdir "*) ;; *) func_append compile_rpath " $absdir" ;; esac ;; esac case " $sys_lib_dlsearch_path " in *" $libdir "*) ;; *) case "$finalize_rpath " in *" $libdir "*) ;; *) func_append finalize_rpath " $libdir" ;; esac ;; esac fi if test -n "$old_archive_from_expsyms_cmds"; then # figure out the soname set dummy $library_names shift realname="$1" shift libname=`eval "\\$ECHO \"$libname_spec\""` # use dlname if we got it. it's perfectly good, no? if test -n "$dlname"; then soname="$dlname" elif test -n "$soname_spec"; then # bleh windows case $host in *cygwin* | mingw* | *cegcc*) func_arith $current - $age major=$func_arith_result versuffix="-$major" ;; esac eval soname=\"$soname_spec\" else soname="$realname" fi # Make a new name for the extract_expsyms_cmds to use soroot="$soname" func_basename "$soroot" soname="$func_basename_result" func_stripname 'lib' '.dll' "$soname" newlib=libimp-$func_stripname_result.a # If the library has no export list, then create one now if test -f "$output_objdir/$soname-def"; then : else func_verbose "extracting exported symbol list from \`$soname'" func_execute_cmds "$extract_expsyms_cmds" 'exit $?' fi # Create $newlib if test -f "$output_objdir/$newlib"; then :; else func_verbose "generating import library for \`$soname'" func_execute_cmds "$old_archive_from_expsyms_cmds" 'exit $?' fi # make sure the library variables are pointing to the new library dir=$output_objdir linklib=$newlib fi # test -n "$old_archive_from_expsyms_cmds" if test "$linkmode" = prog || test "$opt_mode" != relink; then add_shlibpath= add_dir= add= lib_linked=yes case $hardcode_action in immediate | unsupported) if test "$hardcode_direct" = no; then add="$dir/$linklib" case $host in *-*-sco3.2v5.0.[024]*) add_dir="-L$dir" ;; *-*-sysv4*uw2*) add_dir="-L$dir" ;; *-*-sysv5OpenUNIX* | *-*-sysv5UnixWare7.[01].[10]* | \ *-*-unixware7*) add_dir="-L$dir" ;; *-*-darwin* ) # if the lib is a (non-dlopened) module then we can not # link against it, someone is ignoring the earlier warnings if /usr/bin/file -L $add 2> /dev/null | $GREP ": [^:]* bundle" >/dev/null ; then if test "X$dlopenmodule" != "X$lib"; then $ECHO "*** Warning: lib $linklib is a module, not a shared library" if test -z "$old_library" ; then echo echo "*** And there doesn't seem to be a static archive available" echo "*** The link will probably fail, sorry" else add="$dir/$old_library" fi elif test -n "$old_library"; then add="$dir/$old_library" fi fi esac elif test "$hardcode_minus_L" = no; then case $host in *-*-sunos*) add_shlibpath="$dir" ;; esac add_dir="-L$dir" add="-l$name" elif test "$hardcode_shlibpath_var" = no; then add_shlibpath="$dir" add="-l$name" else lib_linked=no fi ;; relink) if test "$hardcode_direct" = yes && test "$hardcode_direct_absolute" = no; then add="$dir/$linklib" elif test "$hardcode_minus_L" = yes; then add_dir="-L$absdir" # Try looking first in the location we're being installed to. if test -n "$inst_prefix_dir"; then case $libdir in [\\/]*) func_append add_dir " -L$inst_prefix_dir$libdir" ;; esac fi add="-l$name" elif test "$hardcode_shlibpath_var" = yes; then add_shlibpath="$dir" add="-l$name" else lib_linked=no fi ;; *) lib_linked=no ;; esac if test "$lib_linked" != yes; then func_fatal_configuration "unsupported hardcode properties" fi if test -n "$add_shlibpath"; then case :$compile_shlibpath: in *":$add_shlibpath:"*) ;; *) func_append compile_shlibpath "$add_shlibpath:" ;; esac fi if test "$linkmode" = prog; then test -n "$add_dir" && compile_deplibs="$add_dir $compile_deplibs" test -n "$add" && compile_deplibs="$add $compile_deplibs" else test -n "$add_dir" && deplibs="$add_dir $deplibs" test -n "$add" && deplibs="$add $deplibs" if test "$hardcode_direct" != yes && test "$hardcode_minus_L" != yes && test "$hardcode_shlibpath_var" = yes; then case :$finalize_shlibpath: in *":$libdir:"*) ;; *) func_append finalize_shlibpath "$libdir:" ;; esac fi fi fi if test "$linkmode" = prog || test "$opt_mode" = relink; then add_shlibpath= add_dir= add= # Finalize command for both is simple: just hardcode it. if test "$hardcode_direct" = yes && test "$hardcode_direct_absolute" = no; then add="$libdir/$linklib" elif test "$hardcode_minus_L" = yes; then add_dir="-L$libdir" add="-l$name" elif test "$hardcode_shlibpath_var" = yes; then case :$finalize_shlibpath: in *":$libdir:"*) ;; *) func_append finalize_shlibpath "$libdir:" ;; esac add="-l$name" elif test "$hardcode_automatic" = yes; then if test -n "$inst_prefix_dir" && test -f "$inst_prefix_dir$libdir/$linklib" ; then add="$inst_prefix_dir$libdir/$linklib" else add="$libdir/$linklib" fi else # We cannot seem to hardcode it, guess we'll fake it. add_dir="-L$libdir" # Try looking first in the location we're being installed to. if test -n "$inst_prefix_dir"; then case $libdir in [\\/]*) func_append add_dir " -L$inst_prefix_dir$libdir" ;; esac fi add="-l$name" fi if test "$linkmode" = prog; then test -n "$add_dir" && finalize_deplibs="$add_dir $finalize_deplibs" test -n "$add" && finalize_deplibs="$add $finalize_deplibs" else test -n "$add_dir" && deplibs="$add_dir $deplibs" test -n "$add" && deplibs="$add $deplibs" fi fi elif test "$linkmode" = prog; then # Here we assume that one of hardcode_direct or hardcode_minus_L # is not unsupported. This is valid on all known static and # shared platforms. if test "$hardcode_direct" != unsupported; then test -n "$old_library" && linklib="$old_library" compile_deplibs="$dir/$linklib $compile_deplibs" finalize_deplibs="$dir/$linklib $finalize_deplibs" else compile_deplibs="-l$name -L$dir $compile_deplibs" finalize_deplibs="-l$name -L$dir $finalize_deplibs" fi elif test "$build_libtool_libs" = yes; then # Not a shared library if test "$deplibs_check_method" != pass_all; then # We're trying link a shared library against a static one # but the system doesn't support it. # Just print a warning and add the library to dependency_libs so # that the program can be linked against the static library. echo $ECHO "*** Warning: This system can not link to static lib archive $lib." echo "*** I have the capability to make that library automatically link in when" echo "*** you link to this library. But I can only do this if you have a" echo "*** shared version of the library, which you do not appear to have." if test "$module" = yes; then echo "*** But as you try to build a module library, libtool will still create " echo "*** a static module, that should work as long as the dlopening application" echo "*** is linked with the -dlopen flag to resolve symbols at runtime." if test -z "$global_symbol_pipe"; then echo echo "*** However, this would only work if libtool was able to extract symbol" echo "*** lists from a program, using \`nm' or equivalent, but libtool could" echo "*** not find such a program. So, this module is probably useless." echo "*** \`nm' from GNU binutils and a full rebuild may help." fi if test "$build_old_libs" = no; then build_libtool_libs=module build_old_libs=yes else build_libtool_libs=no fi fi else deplibs="$dir/$old_library $deplibs" link_static=yes fi fi # link shared/static library? if test "$linkmode" = lib; then if test -n "$dependency_libs" && { test "$hardcode_into_libs" != yes || test "$build_old_libs" = yes || test "$link_static" = yes; }; then # Extract -R from dependency_libs temp_deplibs= for libdir in $dependency_libs; do case $libdir in -R*) func_stripname '-R' '' "$libdir" temp_xrpath=$func_stripname_result case " $xrpath " in *" $temp_xrpath "*) ;; *) func_append xrpath " $temp_xrpath";; esac;; *) func_append temp_deplibs " $libdir";; esac done dependency_libs="$temp_deplibs" fi func_append newlib_search_path " $absdir" # Link against this library test "$link_static" = no && newdependency_libs="$abs_ladir/$laname $newdependency_libs" # ... and its dependency_libs tmp_libs= for deplib in $dependency_libs; do newdependency_libs="$deplib $newdependency_libs" case $deplib in -L*) func_stripname '-L' '' "$deplib" func_resolve_sysroot "$func_stripname_result";; *) func_resolve_sysroot "$deplib" ;; esac if $opt_preserve_dup_deps ; then case "$tmp_libs " in *" $func_resolve_sysroot_result "*) func_append specialdeplibs " $func_resolve_sysroot_result" ;; esac fi func_append tmp_libs " $func_resolve_sysroot_result" done if test "$link_all_deplibs" != no; then # Add the search paths of all dependency libraries for deplib in $dependency_libs; do path= case $deplib in -L*) path="$deplib" ;; *.la) func_resolve_sysroot "$deplib" deplib=$func_resolve_sysroot_result func_dirname "$deplib" "" "." dir=$func_dirname_result # We need an absolute path. case $dir in [\\/]* | [A-Za-z]:[\\/]*) absdir="$dir" ;; *) absdir=`cd "$dir" && pwd` if test -z "$absdir"; then func_warning "cannot determine absolute directory name of \`$dir'" absdir="$dir" fi ;; esac if $GREP "^installed=no" $deplib > /dev/null; then case $host in *-*-darwin*) depdepl= eval deplibrary_names=`${SED} -n -e 's/^library_names=\(.*\)$/\1/p' $deplib` if test -n "$deplibrary_names" ; then for tmp in $deplibrary_names ; do depdepl=$tmp done if test -f "$absdir/$objdir/$depdepl" ; then depdepl="$absdir/$objdir/$depdepl" darwin_install_name=`${OTOOL} -L $depdepl | awk '{if (NR == 2) {print $1;exit}}'` if test -z "$darwin_install_name"; then darwin_install_name=`${OTOOL64} -L $depdepl | awk '{if (NR == 2) {print $1;exit}}'` fi func_append compiler_flags " ${wl}-dylib_file ${wl}${darwin_install_name}:${depdepl}" func_append linker_flags " -dylib_file ${darwin_install_name}:${depdepl}" path= fi fi ;; *) path="-L$absdir/$objdir" ;; esac else eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $deplib` test -z "$libdir" && \ func_fatal_error "\`$deplib' is not a valid libtool archive" test "$absdir" != "$libdir" && \ func_warning "\`$deplib' seems to be moved" path="-L$absdir" fi ;; esac case " $deplibs " in *" $path "*) ;; *) deplibs="$path $deplibs" ;; esac done fi # link_all_deplibs != no fi # linkmode = lib done # for deplib in $libs if test "$pass" = link; then if test "$linkmode" = "prog"; then compile_deplibs="$new_inherited_linker_flags $compile_deplibs" finalize_deplibs="$new_inherited_linker_flags $finalize_deplibs" else compiler_flags="$compiler_flags "`$ECHO " $new_inherited_linker_flags" | $SED 's% \([^ $]*\).ltframework% -framework \1%g'` fi fi dependency_libs="$newdependency_libs" if test "$pass" = dlpreopen; then # Link the dlpreopened libraries before other libraries for deplib in $save_deplibs; do deplibs="$deplib $deplibs" done fi if test "$pass" != dlopen; then if test "$pass" != conv; then # Make sure lib_search_path contains only unique directories. lib_search_path= for dir in $newlib_search_path; do case "$lib_search_path " in *" $dir "*) ;; *) func_append lib_search_path " $dir" ;; esac done newlib_search_path= fi if test "$linkmode,$pass" != "prog,link"; then vars="deplibs" else vars="compile_deplibs finalize_deplibs" fi for var in $vars dependency_libs; do # Add libraries to $var in reverse order eval tmp_libs=\"\$$var\" new_libs= for deplib in $tmp_libs; do # FIXME: Pedantically, this is the right thing to do, so # that some nasty dependency loop isn't accidentally # broken: #new_libs="$deplib $new_libs" # Pragmatically, this seems to cause very few problems in # practice: case $deplib in -L*) new_libs="$deplib $new_libs" ;; -R*) ;; *) # And here is the reason: when a library appears more # than once as an explicit dependence of a library, or # is implicitly linked in more than once by the # compiler, it is considered special, and multiple # occurrences thereof are not removed. Compare this # with having the same library being listed as a # dependency of multiple other libraries: in this case, # we know (pedantically, we assume) the library does not # need to be listed more than once, so we keep only the # last copy. This is not always right, but it is rare # enough that we require users that really mean to play # such unportable linking tricks to link the library # using -Wl,-lname, so that libtool does not consider it # for duplicate removal. case " $specialdeplibs " in *" $deplib "*) new_libs="$deplib $new_libs" ;; *) case " $new_libs " in *" $deplib "*) ;; *) new_libs="$deplib $new_libs" ;; esac ;; esac ;; esac done tmp_libs= for deplib in $new_libs; do case $deplib in -L*) case " $tmp_libs " in *" $deplib "*) ;; *) func_append tmp_libs " $deplib" ;; esac ;; *) func_append tmp_libs " $deplib" ;; esac done eval $var=\"$tmp_libs\" done # for var fi # Last step: remove runtime libs from dependency_libs # (they stay in deplibs) tmp_libs= for i in $dependency_libs ; do case " $predeps $postdeps $compiler_lib_search_path " in *" $i "*) i="" ;; esac if test -n "$i" ; then func_append tmp_libs " $i" fi done dependency_libs=$tmp_libs done # for pass if test "$linkmode" = prog; then dlfiles="$newdlfiles" fi if test "$linkmode" = prog || test "$linkmode" = lib; then dlprefiles="$newdlprefiles" fi case $linkmode in oldlib) if test -n "$dlfiles$dlprefiles" || test "$dlself" != no; then func_warning "\`-dlopen' is ignored for archives" fi case " $deplibs" in *\ -l* | *\ -L*) func_warning "\`-l' and \`-L' are ignored for archives" ;; esac test -n "$rpath" && \ func_warning "\`-rpath' is ignored for archives" test -n "$xrpath" && \ func_warning "\`-R' is ignored for archives" test -n "$vinfo" && \ func_warning "\`-version-info/-version-number' is ignored for archives" test -n "$release" && \ func_warning "\`-release' is ignored for archives" test -n "$export_symbols$export_symbols_regex" && \ func_warning "\`-export-symbols' is ignored for archives" # Now set the variables for building old libraries. build_libtool_libs=no oldlibs="$output" func_append objs "$old_deplibs" ;; lib) # Make sure we only generate libraries of the form `libNAME.la'. case $outputname in lib*) func_stripname 'lib' '.la' "$outputname" name=$func_stripname_result eval shared_ext=\"$shrext_cmds\" eval libname=\"$libname_spec\" ;; *) test "$module" = no && \ func_fatal_help "libtool library \`$output' must begin with \`lib'" if test "$need_lib_prefix" != no; then # Add the "lib" prefix for modules if required func_stripname '' '.la' "$outputname" name=$func_stripname_result eval shared_ext=\"$shrext_cmds\" eval libname=\"$libname_spec\" else func_stripname '' '.la' "$outputname" libname=$func_stripname_result fi ;; esac if test -n "$objs"; then if test "$deplibs_check_method" != pass_all; then func_fatal_error "cannot build libtool library \`$output' from non-libtool objects on this host:$objs" else echo $ECHO "*** Warning: Linking the shared library $output against the non-libtool" $ECHO "*** objects $objs is not portable!" func_append libobjs " $objs" fi fi test "$dlself" != no && \ func_warning "\`-dlopen self' is ignored for libtool libraries" set dummy $rpath shift test "$#" -gt 1 && \ func_warning "ignoring multiple \`-rpath's for a libtool library" install_libdir="$1" oldlibs= if test -z "$rpath"; then if test "$build_libtool_libs" = yes; then # Building a libtool convenience library. # Some compilers have problems with a `.al' extension so # convenience libraries should have the same extension an # archive normally would. oldlibs="$output_objdir/$libname.$libext $oldlibs" build_libtool_libs=convenience build_old_libs=yes fi test -n "$vinfo" && \ func_warning "\`-version-info/-version-number' is ignored for convenience libraries" test -n "$release" && \ func_warning "\`-release' is ignored for convenience libraries" else # Parse the version information argument. save_ifs="$IFS"; IFS=':' set dummy $vinfo 0 0 0 shift IFS="$save_ifs" test -n "$7" && \ func_fatal_help "too many parameters to \`-version-info'" # convert absolute version numbers to libtool ages # this retains compatibility with .la files and attempts # to make the code below a bit more comprehensible case $vinfo_number in yes) number_major="$1" number_minor="$2" number_revision="$3" # # There are really only two kinds -- those that # use the current revision as the major version # and those that subtract age and use age as # a minor version. But, then there is irix # which has an extra 1 added just for fun # case $version_type in # correct linux to gnu/linux during the next big refactor darwin|linux|osf|windows|none) func_arith $number_major + $number_minor current=$func_arith_result age="$number_minor" revision="$number_revision" ;; freebsd-aout|freebsd-elf|qnx|sunos) current="$number_major" revision="$number_minor" age="0" ;; irix|nonstopux) func_arith $number_major + $number_minor current=$func_arith_result age="$number_minor" revision="$number_minor" lt_irix_increment=no ;; *) func_fatal_configuration "$modename: unknown library version type \`$version_type'" ;; esac ;; no) current="$1" revision="$2" age="$3" ;; esac # Check that each of the things are valid numbers. case $current in 0|[1-9]|[1-9][0-9]|[1-9][0-9][0-9]|[1-9][0-9][0-9][0-9]|[1-9][0-9][0-9][0-9][0-9]) ;; *) func_error "CURRENT \`$current' must be a nonnegative integer" func_fatal_error "\`$vinfo' is not valid version information" ;; esac case $revision in 0|[1-9]|[1-9][0-9]|[1-9][0-9][0-9]|[1-9][0-9][0-9][0-9]|[1-9][0-9][0-9][0-9][0-9]) ;; *) func_error "REVISION \`$revision' must be a nonnegative integer" func_fatal_error "\`$vinfo' is not valid version information" ;; esac case $age in 0|[1-9]|[1-9][0-9]|[1-9][0-9][0-9]|[1-9][0-9][0-9][0-9]|[1-9][0-9][0-9][0-9][0-9]) ;; *) func_error "AGE \`$age' must be a nonnegative integer" func_fatal_error "\`$vinfo' is not valid version information" ;; esac if test "$age" -gt "$current"; then func_error "AGE \`$age' is greater than the current interface number \`$current'" func_fatal_error "\`$vinfo' is not valid version information" fi # Calculate the version variables. major= versuffix= verstring= case $version_type in none) ;; darwin) # Like Linux, but with the current version available in # verstring for coding it into the library header func_arith $current - $age major=.$func_arith_result versuffix="$major.$age.$revision" # Darwin ld doesn't like 0 for these options... func_arith $current + 1 minor_current=$func_arith_result xlcverstring="${wl}-compatibility_version ${wl}$minor_current ${wl}-current_version ${wl}$minor_current.$revision" verstring="-compatibility_version $minor_current -current_version $minor_current.$revision" ;; freebsd-aout) major=".$current" versuffix=".$current.$revision"; ;; freebsd-elf) major=".$current" versuffix=".$current" ;; irix | nonstopux) if test "X$lt_irix_increment" = "Xno"; then func_arith $current - $age else func_arith $current - $age + 1 fi major=$func_arith_result case $version_type in nonstopux) verstring_prefix=nonstopux ;; *) verstring_prefix=sgi ;; esac verstring="$verstring_prefix$major.$revision" # Add in all the interfaces that we are compatible with. loop=$revision while test "$loop" -ne 0; do func_arith $revision - $loop iface=$func_arith_result func_arith $loop - 1 loop=$func_arith_result verstring="$verstring_prefix$major.$iface:$verstring" done # Before this point, $major must not contain `.'. major=.$major versuffix="$major.$revision" ;; linux) # correct to gnu/linux during the next big refactor func_arith $current - $age major=.$func_arith_result versuffix="$major.$age.$revision" ;; osf) func_arith $current - $age major=.$func_arith_result versuffix=".$current.$age.$revision" verstring="$current.$age.$revision" # Add in all the interfaces that we are compatible with. loop=$age while test "$loop" -ne 0; do func_arith $current - $loop iface=$func_arith_result func_arith $loop - 1 loop=$func_arith_result verstring="$verstring:${iface}.0" done # Make executables depend on our current version. func_append verstring ":${current}.0" ;; qnx) major=".$current" versuffix=".$current" ;; sunos) major=".$current" versuffix=".$current.$revision" ;; windows) # Use '-' rather than '.', since we only want one # extension on DOS 8.3 filesystems. func_arith $current - $age major=$func_arith_result versuffix="-$major" ;; *) func_fatal_configuration "unknown library version type \`$version_type'" ;; esac # Clear the version info if we defaulted, and they specified a release. if test -z "$vinfo" && test -n "$release"; then major= case $version_type in darwin) # we can't check for "0.0" in archive_cmds due to quoting # problems, so we reset it completely verstring= ;; *) verstring="0.0" ;; esac if test "$need_version" = no; then versuffix= else versuffix=".0.0" fi fi # Remove version info from name if versioning should be avoided if test "$avoid_version" = yes && test "$need_version" = no; then major= versuffix= verstring="" fi # Check to see if the archive will have undefined symbols. if test "$allow_undefined" = yes; then if test "$allow_undefined_flag" = unsupported; then func_warning "undefined symbols not allowed in $host shared libraries" build_libtool_libs=no build_old_libs=yes fi else # Don't allow undefined symbols. allow_undefined_flag="$no_undefined_flag" fi fi func_generate_dlsyms "$libname" "$libname" "yes" func_append libobjs " $symfileobj" test "X$libobjs" = "X " && libobjs= if test "$opt_mode" != relink; then # Remove our outputs, but don't remove object files since they # may have been created when compiling PIC objects. removelist= tempremovelist=`$ECHO "$output_objdir/*"` for p in $tempremovelist; do case $p in *.$objext | *.gcno) ;; $output_objdir/$outputname | $output_objdir/$libname.* | $output_objdir/${libname}${release}.*) if test "X$precious_files_regex" != "X"; then if $ECHO "$p" | $EGREP -e "$precious_files_regex" >/dev/null 2>&1 then continue fi fi func_append removelist " $p" ;; *) ;; esac done test -n "$removelist" && \ func_show_eval "${RM}r \$removelist" fi # Now set the variables for building old libraries. if test "$build_old_libs" = yes && test "$build_libtool_libs" != convenience ; then func_append oldlibs " $output_objdir/$libname.$libext" # Transform .lo files to .o files. oldobjs="$objs "`$ECHO "$libobjs" | $SP2NL | $SED "/\.${libext}$/d; $lo2o" | $NL2SP` fi # Eliminate all temporary directories. #for path in $notinst_path; do # lib_search_path=`$ECHO "$lib_search_path " | $SED "s% $path % %g"` # deplibs=`$ECHO "$deplibs " | $SED "s% -L$path % %g"` # dependency_libs=`$ECHO "$dependency_libs " | $SED "s% -L$path % %g"` #done if test -n "$xrpath"; then # If the user specified any rpath flags, then add them. temp_xrpath= for libdir in $xrpath; do func_replace_sysroot "$libdir" func_append temp_xrpath " -R$func_replace_sysroot_result" case "$finalize_rpath " in *" $libdir "*) ;; *) func_append finalize_rpath " $libdir" ;; esac done if test "$hardcode_into_libs" != yes || test "$build_old_libs" = yes; then dependency_libs="$temp_xrpath $dependency_libs" fi fi # Make sure dlfiles contains only unique files that won't be dlpreopened old_dlfiles="$dlfiles" dlfiles= for lib in $old_dlfiles; do case " $dlprefiles $dlfiles " in *" $lib "*) ;; *) func_append dlfiles " $lib" ;; esac done # Make sure dlprefiles contains only unique files old_dlprefiles="$dlprefiles" dlprefiles= for lib in $old_dlprefiles; do case "$dlprefiles " in *" $lib "*) ;; *) func_append dlprefiles " $lib" ;; esac done if test "$build_libtool_libs" = yes; then if test -n "$rpath"; then case $host in *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-*-beos* | *-cegcc* | *-*-haiku*) # these systems don't actually have a c library (as such)! ;; *-*-rhapsody* | *-*-darwin1.[012]) # Rhapsody C library is in the System framework func_append deplibs " System.ltframework" ;; *-*-netbsd*) # Don't link with libc until the a.out ld.so is fixed. ;; *-*-openbsd* | *-*-freebsd* | *-*-dragonfly*) # Do not include libc due to us having libc/libc_r. ;; *-*-sco3.2v5* | *-*-sco5v6*) # Causes problems with __ctype ;; *-*-sysv4.2uw2* | *-*-sysv5* | *-*-unixware* | *-*-OpenUNIX*) # Compiler inserts libc in the correct place for threads to work ;; *) # Add libc to deplibs on all other systems if necessary. if test "$build_libtool_need_lc" = "yes"; then func_append deplibs " -lc" fi ;; esac fi # Transform deplibs into only deplibs that can be linked in shared. name_save=$name libname_save=$libname release_save=$release versuffix_save=$versuffix major_save=$major # I'm not sure if I'm treating the release correctly. I think # release should show up in the -l (ie -lgmp5) so we don't want to # add it in twice. Is that correct? release="" versuffix="" major="" newdeplibs= droppeddeps=no case $deplibs_check_method in pass_all) # Don't check for shared/static. Everything works. # This might be a little naive. We might want to check # whether the library exists or not. But this is on # osf3 & osf4 and I'm not really sure... Just # implementing what was already the behavior. newdeplibs=$deplibs ;; test_compile) # This code stresses the "libraries are programs" paradigm to its # limits. Maybe even breaks it. We compile a program, linking it # against the deplibs as a proxy for the library. Then we can check # whether they linked in statically or dynamically with ldd. $opt_dry_run || $RM conftest.c cat > conftest.c <<EOF int main() { return 0; } EOF $opt_dry_run || $RM conftest if $LTCC $LTCFLAGS -o conftest conftest.c $deplibs; then ldd_output=`ldd conftest` for i in $deplibs; do case $i in -l*) func_stripname -l '' "$i" name=$func_stripname_result if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then case " $predeps $postdeps " in *" $i "*) func_append newdeplibs " $i" i="" ;; esac fi if test -n "$i" ; then libname=`eval "\\$ECHO \"$libname_spec\""` deplib_matches=`eval "\\$ECHO \"$library_names_spec\""` set dummy $deplib_matches; shift deplib_match=$1 if test `expr "$ldd_output" : ".*$deplib_match"` -ne 0 ; then func_append newdeplibs " $i" else droppeddeps=yes echo $ECHO "*** Warning: dynamic linker does not accept needed library $i." echo "*** I have the capability to make that library automatically link in when" echo "*** you link to this library. But I can only do this if you have a" echo "*** shared version of the library, which I believe you do not have" echo "*** because a test_compile did reveal that the linker did not use it for" echo "*** its dynamic dependency list that programs get resolved with at runtime." fi fi ;; *) func_append newdeplibs " $i" ;; esac done else # Error occurred in the first compile. Let's try to salvage # the situation: Compile a separate program for each library. for i in $deplibs; do case $i in -l*) func_stripname -l '' "$i" name=$func_stripname_result $opt_dry_run || $RM conftest if $LTCC $LTCFLAGS -o conftest conftest.c $i; then ldd_output=`ldd conftest` if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then case " $predeps $postdeps " in *" $i "*) func_append newdeplibs " $i" i="" ;; esac fi if test -n "$i" ; then libname=`eval "\\$ECHO \"$libname_spec\""` deplib_matches=`eval "\\$ECHO \"$library_names_spec\""` set dummy $deplib_matches; shift deplib_match=$1 if test `expr "$ldd_output" : ".*$deplib_match"` -ne 0 ; then func_append newdeplibs " $i" else droppeddeps=yes echo $ECHO "*** Warning: dynamic linker does not accept needed library $i." echo "*** I have the capability to make that library automatically link in when" echo "*** you link to this library. But I can only do this if you have a" echo "*** shared version of the library, which you do not appear to have" echo "*** because a test_compile did reveal that the linker did not use this one" echo "*** as a dynamic dependency that programs can get resolved with at runtime." fi fi else droppeddeps=yes echo $ECHO "*** Warning! Library $i is needed by this library but I was not able to" echo "*** make it link in! You will probably need to install it or some" echo "*** library that it depends on before this library will be fully" echo "*** functional. Installing it before continuing would be even better." fi ;; *) func_append newdeplibs " $i" ;; esac done fi ;; file_magic*) set dummy $deplibs_check_method; shift file_magic_regex=`expr "$deplibs_check_method" : "$1 \(.*\)"` for a_deplib in $deplibs; do case $a_deplib in -l*) func_stripname -l '' "$a_deplib" name=$func_stripname_result if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then case " $predeps $postdeps " in *" $a_deplib "*) func_append newdeplibs " $a_deplib" a_deplib="" ;; esac fi if test -n "$a_deplib" ; then libname=`eval "\\$ECHO \"$libname_spec\""` if test -n "$file_magic_glob"; then libnameglob=`func_echo_all "$libname" | $SED -e $file_magic_glob` else libnameglob=$libname fi test "$want_nocaseglob" = yes && nocaseglob=`shopt -p nocaseglob` for i in $lib_search_path $sys_lib_search_path $shlib_search_path; do if test "$want_nocaseglob" = yes; then shopt -s nocaseglob potential_libs=`ls $i/$libnameglob[.-]* 2>/dev/null` $nocaseglob else potential_libs=`ls $i/$libnameglob[.-]* 2>/dev/null` fi for potent_lib in $potential_libs; do # Follow soft links. if ls -lLd "$potent_lib" 2>/dev/null | $GREP " -> " >/dev/null; then continue fi # The statement above tries to avoid entering an # endless loop below, in case of cyclic links. # We might still enter an endless loop, since a link # loop can be closed while we follow links, # but so what? potlib="$potent_lib" while test -h "$potlib" 2>/dev/null; do potliblink=`ls -ld $potlib | ${SED} 's/.* -> //'` case $potliblink in [\\/]* | [A-Za-z]:[\\/]*) potlib="$potliblink";; *) potlib=`$ECHO "$potlib" | $SED 's,[^/]*$,,'`"$potliblink";; esac done if eval $file_magic_cmd \"\$potlib\" 2>/dev/null | $SED -e 10q | $EGREP "$file_magic_regex" > /dev/null; then func_append newdeplibs " $a_deplib" a_deplib="" break 2 fi done done fi if test -n "$a_deplib" ; then droppeddeps=yes echo $ECHO "*** Warning: linker path does not have real file for library $a_deplib." echo "*** I have the capability to make that library automatically link in when" echo "*** you link to this library. But I can only do this if you have a" echo "*** shared version of the library, which you do not appear to have" echo "*** because I did check the linker path looking for a file starting" if test -z "$potlib" ; then $ECHO "*** with $libname but no candidates were found. (...for file magic test)" else $ECHO "*** with $libname and none of the candidates passed a file format test" $ECHO "*** using a file magic. Last file checked: $potlib" fi fi ;; *) # Add a -L argument. func_append newdeplibs " $a_deplib" ;; esac done # Gone through all deplibs. ;; match_pattern*) set dummy $deplibs_check_method; shift match_pattern_regex=`expr "$deplibs_check_method" : "$1 \(.*\)"` for a_deplib in $deplibs; do case $a_deplib in -l*) func_stripname -l '' "$a_deplib" name=$func_stripname_result if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then case " $predeps $postdeps " in *" $a_deplib "*) func_append newdeplibs " $a_deplib" a_deplib="" ;; esac fi if test -n "$a_deplib" ; then libname=`eval "\\$ECHO \"$libname_spec\""` for i in $lib_search_path $sys_lib_search_path $shlib_search_path; do potential_libs=`ls $i/$libname[.-]* 2>/dev/null` for potent_lib in $potential_libs; do potlib="$potent_lib" # see symlink-check above in file_magic test if eval "\$ECHO \"$potent_lib\"" 2>/dev/null | $SED 10q | \ $EGREP "$match_pattern_regex" > /dev/null; then func_append newdeplibs " $a_deplib" a_deplib="" break 2 fi done done fi if test -n "$a_deplib" ; then droppeddeps=yes echo $ECHO "*** Warning: linker path does not have real file for library $a_deplib." echo "*** I have the capability to make that library automatically link in when" echo "*** you link to this library. But I can only do this if you have a" echo "*** shared version of the library, which you do not appear to have" echo "*** because I did check the linker path looking for a file starting" if test -z "$potlib" ; then $ECHO "*** with $libname but no candidates were found. (...for regex pattern test)" else $ECHO "*** with $libname and none of the candidates passed a file format test" $ECHO "*** using a regex pattern. Last file checked: $potlib" fi fi ;; *) # Add a -L argument. func_append newdeplibs " $a_deplib" ;; esac done # Gone through all deplibs. ;; none | unknown | *) newdeplibs="" tmp_deplibs=`$ECHO " $deplibs" | $SED 's/ -lc$//; s/ -[LR][^ ]*//g'` if test "X$allow_libtool_libs_with_static_runtimes" = "Xyes" ; then for i in $predeps $postdeps ; do # can't use Xsed below, because $i might contain '/' tmp_deplibs=`$ECHO " $tmp_deplibs" | $SED "s,$i,,"` done fi case $tmp_deplibs in *[!\ \ ]*) echo if test "X$deplibs_check_method" = "Xnone"; then echo "*** Warning: inter-library dependencies are not supported in this platform." else echo "*** Warning: inter-library dependencies are not known to be supported." fi echo "*** All declared inter-library dependencies are being dropped." droppeddeps=yes ;; esac ;; esac versuffix=$versuffix_save major=$major_save release=$release_save libname=$libname_save name=$name_save case $host in *-*-rhapsody* | *-*-darwin1.[012]) # On Rhapsody replace the C library with the System framework newdeplibs=`$ECHO " $newdeplibs" | $SED 's/ -lc / System.ltframework /'` ;; esac if test "$droppeddeps" = yes; then if test "$module" = yes; then echo echo "*** Warning: libtool could not satisfy all declared inter-library" $ECHO "*** dependencies of module $libname. Therefore, libtool will create" echo "*** a static module, that should work as long as the dlopening" echo "*** application is linked with the -dlopen flag." if test -z "$global_symbol_pipe"; then echo echo "*** However, this would only work if libtool was able to extract symbol" echo "*** lists from a program, using \`nm' or equivalent, but libtool could" echo "*** not find such a program. So, this module is probably useless." echo "*** \`nm' from GNU binutils and a full rebuild may help." fi if test "$build_old_libs" = no; then oldlibs="$output_objdir/$libname.$libext" build_libtool_libs=module build_old_libs=yes else build_libtool_libs=no fi else echo "*** The inter-library dependencies that have been dropped here will be" echo "*** automatically added whenever a program is linked with this library" echo "*** or is declared to -dlopen it." if test "$allow_undefined" = no; then echo echo "*** Since this library must not contain undefined symbols," echo "*** because either the platform does not support them or" echo "*** it was explicitly requested with -no-undefined," echo "*** libtool will only create a static version of it." if test "$build_old_libs" = no; then oldlibs="$output_objdir/$libname.$libext" build_libtool_libs=module build_old_libs=yes else build_libtool_libs=no fi fi fi fi # Done checking deplibs! deplibs=$newdeplibs fi # Time to change all our "foo.ltframework" stuff back to "-framework foo" case $host in *-*-darwin*) newdeplibs=`$ECHO " $newdeplibs" | $SED 's% \([^ $]*\).ltframework% -framework \1%g'` new_inherited_linker_flags=`$ECHO " $new_inherited_linker_flags" | $SED 's% \([^ $]*\).ltframework% -framework \1%g'` deplibs=`$ECHO " $deplibs" | $SED 's% \([^ $]*\).ltframework% -framework \1%g'` ;; esac # move library search paths that coincide with paths to not yet # installed libraries to the beginning of the library search list new_libs= for path in $notinst_path; do case " $new_libs " in *" -L$path/$objdir "*) ;; *) case " $deplibs " in *" -L$path/$objdir "*) func_append new_libs " -L$path/$objdir" ;; esac ;; esac done for deplib in $deplibs; do case $deplib in -L*) case " $new_libs " in *" $deplib "*) ;; *) func_append new_libs " $deplib" ;; esac ;; *) func_append new_libs " $deplib" ;; esac done deplibs="$new_libs" # All the library-specific variables (install_libdir is set above). library_names= old_library= dlname= # Test again, we may have decided not to build it any more if test "$build_libtool_libs" = yes; then # Remove ${wl} instances when linking with ld. # FIXME: should test the right _cmds variable. case $archive_cmds in *\$LD\ *) wl= ;; esac if test "$hardcode_into_libs" = yes; then # Hardcode the library paths hardcode_libdirs= dep_rpath= rpath="$finalize_rpath" test "$opt_mode" != relink && rpath="$compile_rpath$rpath" for libdir in $rpath; do if test -n "$hardcode_libdir_flag_spec"; then if test -n "$hardcode_libdir_separator"; then func_replace_sysroot "$libdir" libdir=$func_replace_sysroot_result if test -z "$hardcode_libdirs"; then hardcode_libdirs="$libdir" else # Just accumulate the unique libdirs. case $hardcode_libdir_separator$hardcode_libdirs$hardcode_libdir_separator in *"$hardcode_libdir_separator$libdir$hardcode_libdir_separator"*) ;; *) func_append hardcode_libdirs "$hardcode_libdir_separator$libdir" ;; esac fi else eval flag=\"$hardcode_libdir_flag_spec\" func_append dep_rpath " $flag" fi elif test -n "$runpath_var"; then case "$perm_rpath " in *" $libdir "*) ;; *) func_append perm_rpath " $libdir" ;; esac fi done # Substitute the hardcoded libdirs into the rpath. if test -n "$hardcode_libdir_separator" && test -n "$hardcode_libdirs"; then libdir="$hardcode_libdirs" eval "dep_rpath=\"$hardcode_libdir_flag_spec\"" fi if test -n "$runpath_var" && test -n "$perm_rpath"; then # We should set the runpath_var. rpath= for dir in $perm_rpath; do func_append rpath "$dir:" done eval "$runpath_var='$rpath\$$runpath_var'; export $runpath_var" fi test -n "$dep_rpath" && deplibs="$dep_rpath $deplibs" fi shlibpath="$finalize_shlibpath" test "$opt_mode" != relink && shlibpath="$compile_shlibpath$shlibpath" if test -n "$shlibpath"; then eval "$shlibpath_var='$shlibpath\$$shlibpath_var'; export $shlibpath_var" fi # Get the real and link names of the library. eval shared_ext=\"$shrext_cmds\" eval library_names=\"$library_names_spec\" set dummy $library_names shift realname="$1" shift if test -n "$soname_spec"; then eval soname=\"$soname_spec\" else soname="$realname" fi if test -z "$dlname"; then dlname=$soname fi lib="$output_objdir/$realname" linknames= for link do func_append linknames " $link" done # Use standard objects if they are pic test -z "$pic_flag" && libobjs=`$ECHO "$libobjs" | $SP2NL | $SED "$lo2o" | $NL2SP` test "X$libobjs" = "X " && libobjs= delfiles= if test -n "$export_symbols" && test -n "$include_expsyms"; then $opt_dry_run || cp "$export_symbols" "$output_objdir/$libname.uexp" export_symbols="$output_objdir/$libname.uexp" func_append delfiles " $export_symbols" fi orig_export_symbols= case $host_os in cygwin* | mingw* | cegcc*) if test -n "$export_symbols" && test -z "$export_symbols_regex"; then # exporting using user supplied symfile if test "x`$SED 1q $export_symbols`" != xEXPORTS; then # and it's NOT already a .def file. Must figure out # which of the given symbols are data symbols and tag # them as such. So, trigger use of export_symbols_cmds. # export_symbols gets reassigned inside the "prepare # the list of exported symbols" if statement, so the # include_expsyms logic still works. orig_export_symbols="$export_symbols" export_symbols= always_export_symbols=yes fi fi ;; esac # Prepare the list of exported symbols if test -z "$export_symbols"; then if test "$always_export_symbols" = yes || test -n "$export_symbols_regex"; then func_verbose "generating symbol list for \`$libname.la'" export_symbols="$output_objdir/$libname.exp" $opt_dry_run || $RM $export_symbols cmds=$export_symbols_cmds save_ifs="$IFS"; IFS='~' for cmd1 in $cmds; do IFS="$save_ifs" # Take the normal branch if the nm_file_list_spec branch # doesn't work or if tool conversion is not needed. case $nm_file_list_spec~$to_tool_file_cmd in *~func_convert_file_noop | *~func_convert_file_msys_to_w32 | ~*) try_normal_branch=yes eval cmd=\"$cmd1\" func_len " $cmd" len=$func_len_result ;; *) try_normal_branch=no ;; esac if test "$try_normal_branch" = yes \ && { test "$len" -lt "$max_cmd_len" \ || test "$max_cmd_len" -le -1; } then func_show_eval "$cmd" 'exit $?' skipped_export=false elif test -n "$nm_file_list_spec"; then func_basename "$output" output_la=$func_basename_result save_libobjs=$libobjs save_output=$output output=${output_objdir}/${output_la}.nm func_to_tool_file "$output" libobjs=$nm_file_list_spec$func_to_tool_file_result func_append delfiles " $output" func_verbose "creating $NM input file list: $output" for obj in $save_libobjs; do func_to_tool_file "$obj" $ECHO "$func_to_tool_file_result" done > "$output" eval cmd=\"$cmd1\" func_show_eval "$cmd" 'exit $?' output=$save_output libobjs=$save_libobjs skipped_export=false else # The command line is too long to execute in one step. func_verbose "using reloadable object file for export list..." skipped_export=: # Break out early, otherwise skipped_export may be # set to false by a later but shorter cmd. break fi done IFS="$save_ifs" if test -n "$export_symbols_regex" && test "X$skipped_export" != "X:"; then func_show_eval '$EGREP -e "$export_symbols_regex" "$export_symbols" > "${export_symbols}T"' func_show_eval '$MV "${export_symbols}T" "$export_symbols"' fi fi fi if test -n "$export_symbols" && test -n "$include_expsyms"; then tmp_export_symbols="$export_symbols" test -n "$orig_export_symbols" && tmp_export_symbols="$orig_export_symbols" $opt_dry_run || eval '$ECHO "$include_expsyms" | $SP2NL >> "$tmp_export_symbols"' fi if test "X$skipped_export" != "X:" && test -n "$orig_export_symbols"; then # The given exports_symbols file has to be filtered, so filter it. func_verbose "filter symbol list for \`$libname.la' to tag DATA exports" # FIXME: $output_objdir/$libname.filter potentially contains lots of # 's' commands which not all seds can handle. GNU sed should be fine # though. Also, the filter scales superlinearly with the number of # global variables. join(1) would be nice here, but unfortunately # isn't a blessed tool. $opt_dry_run || $SED -e '/[ ,]DATA/!d;s,\(.*\)\([ \,].*\),s|^\1$|\1\2|,' < $export_symbols > $output_objdir/$libname.filter func_append delfiles " $export_symbols $output_objdir/$libname.filter" export_symbols=$output_objdir/$libname.def $opt_dry_run || $SED -f $output_objdir/$libname.filter < $orig_export_symbols > $export_symbols fi tmp_deplibs= for test_deplib in $deplibs; do case " $convenience " in *" $test_deplib "*) ;; *) func_append tmp_deplibs " $test_deplib" ;; esac done deplibs="$tmp_deplibs" if test -n "$convenience"; then if test -n "$whole_archive_flag_spec" && test "$compiler_needs_object" = yes && test -z "$libobjs"; then # extract the archives, so we have objects to list. # TODO: could optimize this to just extract one archive. whole_archive_flag_spec= fi if test -n "$whole_archive_flag_spec"; then save_libobjs=$libobjs eval libobjs=\"\$libobjs $whole_archive_flag_spec\" test "X$libobjs" = "X " && libobjs= else gentop="$output_objdir/${outputname}x" func_append generated " $gentop" func_extract_archives $gentop $convenience func_append libobjs " $func_extract_archives_result" test "X$libobjs" = "X " && libobjs= fi fi if test "$thread_safe" = yes && test -n "$thread_safe_flag_spec"; then eval flag=\"$thread_safe_flag_spec\" func_append linker_flags " $flag" fi # Make a backup of the uninstalled library when relinking if test "$opt_mode" = relink; then $opt_dry_run || eval '(cd $output_objdir && $RM ${realname}U && $MV $realname ${realname}U)' || exit $? fi # Do each of the archive commands. if test "$module" = yes && test -n "$module_cmds" ; then if test -n "$export_symbols" && test -n "$module_expsym_cmds"; then eval test_cmds=\"$module_expsym_cmds\" cmds=$module_expsym_cmds else eval test_cmds=\"$module_cmds\" cmds=$module_cmds fi else if test -n "$export_symbols" && test -n "$archive_expsym_cmds"; then eval test_cmds=\"$archive_expsym_cmds\" cmds=$archive_expsym_cmds else eval test_cmds=\"$archive_cmds\" cmds=$archive_cmds fi fi if test "X$skipped_export" != "X:" && func_len " $test_cmds" && len=$func_len_result && test "$len" -lt "$max_cmd_len" || test "$max_cmd_len" -le -1; then : else # The command line is too long to link in one step, link piecewise # or, if using GNU ld and skipped_export is not :, use a linker # script. # Save the value of $output and $libobjs because we want to # use them later. If we have whole_archive_flag_spec, we # want to use save_libobjs as it was before # whole_archive_flag_spec was expanded, because we can't # assume the linker understands whole_archive_flag_spec. # This may have to be revisited, in case too many # convenience libraries get linked in and end up exceeding # the spec. if test -z "$convenience" || test -z "$whole_archive_flag_spec"; then save_libobjs=$libobjs fi save_output=$output func_basename "$output" output_la=$func_basename_result # Clear the reloadable object creation command queue and # initialize k to one. test_cmds= concat_cmds= objlist= last_robj= k=1 if test -n "$save_libobjs" && test "X$skipped_export" != "X:" && test "$with_gnu_ld" = yes; then output=${output_objdir}/${output_la}.lnkscript func_verbose "creating GNU ld script: $output" echo 'INPUT (' > $output for obj in $save_libobjs do func_to_tool_file "$obj" $ECHO "$func_to_tool_file_result" >> $output done echo ')' >> $output func_append delfiles " $output" func_to_tool_file "$output" output=$func_to_tool_file_result elif test -n "$save_libobjs" && test "X$skipped_export" != "X:" && test "X$file_list_spec" != X; then output=${output_objdir}/${output_la}.lnk func_verbose "creating linker input file list: $output" : > $output set x $save_libobjs shift firstobj= if test "$compiler_needs_object" = yes; then firstobj="$1 " shift fi for obj do func_to_tool_file "$obj" $ECHO "$func_to_tool_file_result" >> $output done func_append delfiles " $output" func_to_tool_file "$output" output=$firstobj\"$file_list_spec$func_to_tool_file_result\" else if test -n "$save_libobjs"; then func_verbose "creating reloadable object files..." output=$output_objdir/$output_la-${k}.$objext eval test_cmds=\"$reload_cmds\" func_len " $test_cmds" len0=$func_len_result len=$len0 # Loop over the list of objects to be linked. for obj in $save_libobjs do func_len " $obj" func_arith $len + $func_len_result len=$func_arith_result if test "X$objlist" = X || test "$len" -lt "$max_cmd_len"; then func_append objlist " $obj" else # The command $test_cmds is almost too long, add a # command to the queue. if test "$k" -eq 1 ; then # The first file doesn't have a previous command to add. reload_objs=$objlist eval concat_cmds=\"$reload_cmds\" else # All subsequent reloadable object files will link in # the last one created. reload_objs="$objlist $last_robj" eval concat_cmds=\"\$concat_cmds~$reload_cmds~\$RM $last_robj\" fi last_robj=$output_objdir/$output_la-${k}.$objext func_arith $k + 1 k=$func_arith_result output=$output_objdir/$output_la-${k}.$objext objlist=" $obj" func_len " $last_robj" func_arith $len0 + $func_len_result len=$func_arith_result fi done # Handle the remaining objects by creating one last # reloadable object file. All subsequent reloadable object # files will link in the last one created. test -z "$concat_cmds" || concat_cmds=$concat_cmds~ reload_objs="$objlist $last_robj" eval concat_cmds=\"\${concat_cmds}$reload_cmds\" if test -n "$last_robj"; then eval concat_cmds=\"\${concat_cmds}~\$RM $last_robj\" fi func_append delfiles " $output" else output= fi if ${skipped_export-false}; then func_verbose "generating symbol list for \`$libname.la'" export_symbols="$output_objdir/$libname.exp" $opt_dry_run || $RM $export_symbols libobjs=$output # Append the command to create the export file. test -z "$concat_cmds" || concat_cmds=$concat_cmds~ eval concat_cmds=\"\$concat_cmds$export_symbols_cmds\" if test -n "$last_robj"; then eval concat_cmds=\"\$concat_cmds~\$RM $last_robj\" fi fi test -n "$save_libobjs" && func_verbose "creating a temporary reloadable object file: $output" # Loop through the commands generated above and execute them. save_ifs="$IFS"; IFS='~' for cmd in $concat_cmds; do IFS="$save_ifs" $opt_silent || { func_quote_for_expand "$cmd" eval "func_echo $func_quote_for_expand_result" } $opt_dry_run || eval "$cmd" || { lt_exit=$? # Restore the uninstalled library and exit if test "$opt_mode" = relink; then ( cd "$output_objdir" && \ $RM "${realname}T" && \ $MV "${realname}U" "$realname" ) fi exit $lt_exit } done IFS="$save_ifs" if test -n "$export_symbols_regex" && ${skipped_export-false}; then func_show_eval '$EGREP -e "$export_symbols_regex" "$export_symbols" > "${export_symbols}T"' func_show_eval '$MV "${export_symbols}T" "$export_symbols"' fi fi if ${skipped_export-false}; then if test -n "$export_symbols" && test -n "$include_expsyms"; then tmp_export_symbols="$export_symbols" test -n "$orig_export_symbols" && tmp_export_symbols="$orig_export_symbols" $opt_dry_run || eval '$ECHO "$include_expsyms" | $SP2NL >> "$tmp_export_symbols"' fi if test -n "$orig_export_symbols"; then # The given exports_symbols file has to be filtered, so filter it. func_verbose "filter symbol list for \`$libname.la' to tag DATA exports" # FIXME: $output_objdir/$libname.filter potentially contains lots of # 's' commands which not all seds can handle. GNU sed should be fine # though. Also, the filter scales superlinearly with the number of # global variables. join(1) would be nice here, but unfortunately # isn't a blessed tool. $opt_dry_run || $SED -e '/[ ,]DATA/!d;s,\(.*\)\([ \,].*\),s|^\1$|\1\2|,' < $export_symbols > $output_objdir/$libname.filter func_append delfiles " $export_symbols $output_objdir/$libname.filter" export_symbols=$output_objdir/$libname.def $opt_dry_run || $SED -f $output_objdir/$libname.filter < $orig_export_symbols > $export_symbols fi fi libobjs=$output # Restore the value of output. output=$save_output if test -n "$convenience" && test -n "$whole_archive_flag_spec"; then eval libobjs=\"\$libobjs $whole_archive_flag_spec\" test "X$libobjs" = "X " && libobjs= fi # Expand the library linking commands again to reset the # value of $libobjs for piecewise linking. # Do each of the archive commands. if test "$module" = yes && test -n "$module_cmds" ; then if test -n "$export_symbols" && test -n "$module_expsym_cmds"; then cmds=$module_expsym_cmds else cmds=$module_cmds fi else if test -n "$export_symbols" && test -n "$archive_expsym_cmds"; then cmds=$archive_expsym_cmds else cmds=$archive_cmds fi fi fi if test -n "$delfiles"; then # Append the command to remove temporary files to $cmds. eval cmds=\"\$cmds~\$RM $delfiles\" fi # Add any objects from preloaded convenience libraries if test -n "$dlprefiles"; then gentop="$output_objdir/${outputname}x" func_append generated " $gentop" func_extract_archives $gentop $dlprefiles func_append libobjs " $func_extract_archives_result" test "X$libobjs" = "X " && libobjs= fi save_ifs="$IFS"; IFS='~' for cmd in $cmds; do IFS="$save_ifs" eval cmd=\"$cmd\" $opt_silent || { func_quote_for_expand "$cmd" eval "func_echo $func_quote_for_expand_result" } $opt_dry_run || eval "$cmd" || { lt_exit=$? # Restore the uninstalled library and exit if test "$opt_mode" = relink; then ( cd "$output_objdir" && \ $RM "${realname}T" && \ $MV "${realname}U" "$realname" ) fi exit $lt_exit } done IFS="$save_ifs" # Restore the uninstalled library and exit if test "$opt_mode" = relink; then $opt_dry_run || eval '(cd $output_objdir && $RM ${realname}T && $MV $realname ${realname}T && $MV ${realname}U $realname)' || exit $? if test -n "$convenience"; then if test -z "$whole_archive_flag_spec"; then func_show_eval '${RM}r "$gentop"' fi fi exit $EXIT_SUCCESS fi # Create links to the real library. for linkname in $linknames; do if test "$realname" != "$linkname"; then func_show_eval '(cd "$output_objdir" && $RM "$linkname" && $LN_S "$realname" "$linkname")' 'exit $?' fi done # If -module or -export-dynamic was specified, set the dlname. if test "$module" = yes || test "$export_dynamic" = yes; then # On all known operating systems, these are identical. dlname="$soname" fi fi ;; obj) if test -n "$dlfiles$dlprefiles" || test "$dlself" != no; then func_warning "\`-dlopen' is ignored for objects" fi case " $deplibs" in *\ -l* | *\ -L*) func_warning "\`-l' and \`-L' are ignored for objects" ;; esac test -n "$rpath" && \ func_warning "\`-rpath' is ignored for objects" test -n "$xrpath" && \ func_warning "\`-R' is ignored for objects" test -n "$vinfo" && \ func_warning "\`-version-info' is ignored for objects" test -n "$release" && \ func_warning "\`-release' is ignored for objects" case $output in *.lo) test -n "$objs$old_deplibs" && \ func_fatal_error "cannot build library object \`$output' from non-libtool objects" libobj=$output func_lo2o "$libobj" obj=$func_lo2o_result ;; *) libobj= obj="$output" ;; esac # Delete the old objects. $opt_dry_run || $RM $obj $libobj # Objects from convenience libraries. This assumes # single-version convenience libraries. Whenever we create # different ones for PIC/non-PIC, this we'll have to duplicate # the extraction. reload_conv_objs= gentop= # reload_cmds runs $LD directly, so let us get rid of # -Wl from whole_archive_flag_spec and hope we can get by with # turning comma into space.. wl= if test -n "$convenience"; then if test -n "$whole_archive_flag_spec"; then eval tmp_whole_archive_flags=\"$whole_archive_flag_spec\" reload_conv_objs=$reload_objs\ `$ECHO "$tmp_whole_archive_flags" | $SED 's|,| |g'` else gentop="$output_objdir/${obj}x" func_append generated " $gentop" func_extract_archives $gentop $convenience reload_conv_objs="$reload_objs $func_extract_archives_result" fi fi # If we're not building shared, we need to use non_pic_objs test "$build_libtool_libs" != yes && libobjs="$non_pic_objects" # Create the old-style object. reload_objs="$objs$old_deplibs "`$ECHO "$libobjs" | $SP2NL | $SED "/\.${libext}$/d; /\.lib$/d; $lo2o" | $NL2SP`" $reload_conv_objs" ### testsuite: skip nested quoting test output="$obj" func_execute_cmds "$reload_cmds" 'exit $?' # Exit if we aren't doing a library object file. if test -z "$libobj"; then if test -n "$gentop"; then func_show_eval '${RM}r "$gentop"' fi exit $EXIT_SUCCESS fi if test "$build_libtool_libs" != yes; then if test -n "$gentop"; then func_show_eval '${RM}r "$gentop"' fi # Create an invalid libtool object if no PIC, so that we don't # accidentally link it into a program. # $show "echo timestamp > $libobj" # $opt_dry_run || eval "echo timestamp > $libobj" || exit $? exit $EXIT_SUCCESS fi if test -n "$pic_flag" || test "$pic_mode" != default; then # Only do commands if we really have different PIC objects. reload_objs="$libobjs $reload_conv_objs" output="$libobj" func_execute_cmds "$reload_cmds" 'exit $?' fi if test -n "$gentop"; then func_show_eval '${RM}r "$gentop"' fi exit $EXIT_SUCCESS ;; prog) case $host in *cygwin*) func_stripname '' '.exe' "$output" output=$func_stripname_result.exe;; esac test -n "$vinfo" && \ func_warning "\`-version-info' is ignored for programs" test -n "$release" && \ func_warning "\`-release' is ignored for programs" test "$preload" = yes \ && test "$dlopen_support" = unknown \ && test "$dlopen_self" = unknown \ && test "$dlopen_self_static" = unknown && \ func_warning "\`LT_INIT([dlopen])' not used. Assuming no dlopen support." case $host in *-*-rhapsody* | *-*-darwin1.[012]) # On Rhapsody replace the C library is the System framework compile_deplibs=`$ECHO " $compile_deplibs" | $SED 's/ -lc / System.ltframework /'` finalize_deplibs=`$ECHO " $finalize_deplibs" | $SED 's/ -lc / System.ltframework /'` ;; esac case $host in *-*-darwin*) # Don't allow lazy linking, it breaks C++ global constructors # But is supposedly fixed on 10.4 or later (yay!). if test "$tagname" = CXX ; then case ${MACOSX_DEPLOYMENT_TARGET-10.0} in 10.[0123]) func_append compile_command " ${wl}-bind_at_load" func_append finalize_command " ${wl}-bind_at_load" ;; esac fi # Time to change all our "foo.ltframework" stuff back to "-framework foo" compile_deplibs=`$ECHO " $compile_deplibs" | $SED 's% \([^ $]*\).ltframework% -framework \1%g'` finalize_deplibs=`$ECHO " $finalize_deplibs" | $SED 's% \([^ $]*\).ltframework% -framework \1%g'` ;; esac # move library search paths that coincide with paths to not yet # installed libraries to the beginning of the library search list new_libs= for path in $notinst_path; do case " $new_libs " in *" -L$path/$objdir "*) ;; *) case " $compile_deplibs " in *" -L$path/$objdir "*) func_append new_libs " -L$path/$objdir" ;; esac ;; esac done for deplib in $compile_deplibs; do case $deplib in -L*) case " $new_libs " in *" $deplib "*) ;; *) func_append new_libs " $deplib" ;; esac ;; *) func_append new_libs " $deplib" ;; esac done compile_deplibs="$new_libs" func_append compile_command " $compile_deplibs" func_append finalize_command " $finalize_deplibs" if test -n "$rpath$xrpath"; then # If the user specified any rpath flags, then add them. for libdir in $rpath $xrpath; do # This is the magic to use -rpath. case "$finalize_rpath " in *" $libdir "*) ;; *) func_append finalize_rpath " $libdir" ;; esac done fi # Now hardcode the library paths rpath= hardcode_libdirs= for libdir in $compile_rpath $finalize_rpath; do if test -n "$hardcode_libdir_flag_spec"; then if test -n "$hardcode_libdir_separator"; then if test -z "$hardcode_libdirs"; then hardcode_libdirs="$libdir" else # Just accumulate the unique libdirs. case $hardcode_libdir_separator$hardcode_libdirs$hardcode_libdir_separator in *"$hardcode_libdir_separator$libdir$hardcode_libdir_separator"*) ;; *) func_append hardcode_libdirs "$hardcode_libdir_separator$libdir" ;; esac fi else eval flag=\"$hardcode_libdir_flag_spec\" func_append rpath " $flag" fi elif test -n "$runpath_var"; then case "$perm_rpath " in *" $libdir "*) ;; *) func_append perm_rpath " $libdir" ;; esac fi case $host in *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-cegcc*) testbindir=`${ECHO} "$libdir" | ${SED} -e 's*/lib$*/bin*'` case :$dllsearchpath: in *":$libdir:"*) ;; ::) dllsearchpath=$libdir;; *) func_append dllsearchpath ":$libdir";; esac case :$dllsearchpath: in *":$testbindir:"*) ;; ::) dllsearchpath=$testbindir;; *) func_append dllsearchpath ":$testbindir";; esac ;; esac done # Substitute the hardcoded libdirs into the rpath. if test -n "$hardcode_libdir_separator" && test -n "$hardcode_libdirs"; then libdir="$hardcode_libdirs" eval rpath=\" $hardcode_libdir_flag_spec\" fi compile_rpath="$rpath" rpath= hardcode_libdirs= for libdir in $finalize_rpath; do if test -n "$hardcode_libdir_flag_spec"; then if test -n "$hardcode_libdir_separator"; then if test -z "$hardcode_libdirs"; then hardcode_libdirs="$libdir" else # Just accumulate the unique libdirs. case $hardcode_libdir_separator$hardcode_libdirs$hardcode_libdir_separator in *"$hardcode_libdir_separator$libdir$hardcode_libdir_separator"*) ;; *) func_append hardcode_libdirs "$hardcode_libdir_separator$libdir" ;; esac fi else eval flag=\"$hardcode_libdir_flag_spec\" func_append rpath " $flag" fi elif test -n "$runpath_var"; then case "$finalize_perm_rpath " in *" $libdir "*) ;; *) func_append finalize_perm_rpath " $libdir" ;; esac fi done # Substitute the hardcoded libdirs into the rpath. if test -n "$hardcode_libdir_separator" && test -n "$hardcode_libdirs"; then libdir="$hardcode_libdirs" eval rpath=\" $hardcode_libdir_flag_spec\" fi finalize_rpath="$rpath" if test -n "$libobjs" && test "$build_old_libs" = yes; then # Transform all the library objects into standard objects. compile_command=`$ECHO "$compile_command" | $SP2NL | $SED "$lo2o" | $NL2SP` finalize_command=`$ECHO "$finalize_command" | $SP2NL | $SED "$lo2o" | $NL2SP` fi func_generate_dlsyms "$outputname" "@PROGRAM@" "no" # template prelinking step if test -n "$prelink_cmds"; then func_execute_cmds "$prelink_cmds" 'exit $?' fi wrappers_required=yes case $host in *cegcc* | *mingw32ce*) # Disable wrappers for cegcc and mingw32ce hosts, we are cross compiling anyway. wrappers_required=no ;; *cygwin* | *mingw* ) if test "$build_libtool_libs" != yes; then wrappers_required=no fi ;; *) if test "$need_relink" = no || test "$build_libtool_libs" != yes; then wrappers_required=no fi ;; esac if test "$wrappers_required" = no; then # Replace the output file specification. compile_command=`$ECHO "$compile_command" | $SED 's%@OUTPUT@%'"$output"'%g'` link_command="$compile_command$compile_rpath" # We have no uninstalled library dependencies, so finalize right now. exit_status=0 func_show_eval "$link_command" 'exit_status=$?' if test -n "$postlink_cmds"; then func_to_tool_file "$output" postlink_cmds=`func_echo_all "$postlink_cmds" | $SED -e 's%@OUTPUT@%'"$output"'%g' -e 's%@TOOL_OUTPUT@%'"$func_to_tool_file_result"'%g'` func_execute_cmds "$postlink_cmds" 'exit $?' fi # Delete the generated files. if test -f "$output_objdir/${outputname}S.${objext}"; then func_show_eval '$RM "$output_objdir/${outputname}S.${objext}"' fi exit $exit_status fi if test -n "$compile_shlibpath$finalize_shlibpath"; then compile_command="$shlibpath_var=\"$compile_shlibpath$finalize_shlibpath\$$shlibpath_var\" $compile_command" fi if test -n "$finalize_shlibpath"; then finalize_command="$shlibpath_var=\"$finalize_shlibpath\$$shlibpath_var\" $finalize_command" fi compile_var= finalize_var= if test -n "$runpath_var"; then if test -n "$perm_rpath"; then # We should set the runpath_var. rpath= for dir in $perm_rpath; do func_append rpath "$dir:" done compile_var="$runpath_var=\"$rpath\$$runpath_var\" " fi if test -n "$finalize_perm_rpath"; then # We should set the runpath_var. rpath= for dir in $finalize_perm_rpath; do func_append rpath "$dir:" done finalize_var="$runpath_var=\"$rpath\$$runpath_var\" " fi fi if test "$no_install" = yes; then # We don't need to create a wrapper script. link_command="$compile_var$compile_command$compile_rpath" # Replace the output file specification. link_command=`$ECHO "$link_command" | $SED 's%@OUTPUT@%'"$output"'%g'` # Delete the old output file. $opt_dry_run || $RM $output # Link the executable and exit func_show_eval "$link_command" 'exit $?' if test -n "$postlink_cmds"; then func_to_tool_file "$output" postlink_cmds=`func_echo_all "$postlink_cmds" | $SED -e 's%@OUTPUT@%'"$output"'%g' -e 's%@TOOL_OUTPUT@%'"$func_to_tool_file_result"'%g'` func_execute_cmds "$postlink_cmds" 'exit $?' fi exit $EXIT_SUCCESS fi if test "$hardcode_action" = relink; then # Fast installation is not supported link_command="$compile_var$compile_command$compile_rpath" relink_command="$finalize_var$finalize_command$finalize_rpath" func_warning "this platform does not like uninstalled shared libraries" func_warning "\`$output' will be relinked during installation" else if test "$fast_install" != no; then link_command="$finalize_var$compile_command$finalize_rpath" if test "$fast_install" = yes; then relink_command=`$ECHO "$compile_var$compile_command$compile_rpath" | $SED 's%@OUTPUT@%\$progdir/\$file%g'` else # fast_install is set to needless relink_command= fi else link_command="$compile_var$compile_command$compile_rpath" relink_command="$finalize_var$finalize_command$finalize_rpath" fi fi # Replace the output file specification. link_command=`$ECHO "$link_command" | $SED 's%@OUTPUT@%'"$output_objdir/$outputname"'%g'` # Delete the old output files. $opt_dry_run || $RM $output $output_objdir/$outputname $output_objdir/lt-$outputname func_show_eval "$link_command" 'exit $?' if test -n "$postlink_cmds"; then func_to_tool_file "$output_objdir/$outputname" postlink_cmds=`func_echo_all "$postlink_cmds" | $SED -e 's%@OUTPUT@%'"$output_objdir/$outputname"'%g' -e 's%@TOOL_OUTPUT@%'"$func_to_tool_file_result"'%g'` func_execute_cmds "$postlink_cmds" 'exit $?' fi # Now create the wrapper script. func_verbose "creating $output" # Quote the relink command for shipping. if test -n "$relink_command"; then # Preserve any variables that may affect compiler behavior for var in $variables_saved_for_relink; do if eval test -z \"\${$var+set}\"; then relink_command="{ test -z \"\${$var+set}\" || $lt_unset $var || { $var=; export $var; }; }; $relink_command" elif eval var_value=\$$var; test -z "$var_value"; then relink_command="$var=; export $var; $relink_command" else func_quote_for_eval "$var_value" relink_command="$var=$func_quote_for_eval_result; export $var; $relink_command" fi done relink_command="(cd `pwd`; $relink_command)" relink_command=`$ECHO "$relink_command" | $SED "$sed_quote_subst"` fi # Only actually do things if not in dry run mode. $opt_dry_run || { # win32 will think the script is a binary if it has # a .exe suffix, so we strip it off here. case $output in *.exe) func_stripname '' '.exe' "$output" output=$func_stripname_result ;; esac # test for cygwin because mv fails w/o .exe extensions case $host in *cygwin*) exeext=.exe func_stripname '' '.exe' "$outputname" outputname=$func_stripname_result ;; *) exeext= ;; esac case $host in *cygwin* | *mingw* ) func_dirname_and_basename "$output" "" "." output_name=$func_basename_result output_path=$func_dirname_result cwrappersource="$output_path/$objdir/lt-$output_name.c" cwrapper="$output_path/$output_name.exe" $RM $cwrappersource $cwrapper trap "$RM $cwrappersource $cwrapper; exit $EXIT_FAILURE" 1 2 15 func_emit_cwrapperexe_src > $cwrappersource # The wrapper executable is built using the $host compiler, # because it contains $host paths and files. If cross- # compiling, it, like the target executable, must be # executed on the $host or under an emulation environment. $opt_dry_run || { $LTCC $LTCFLAGS -o $cwrapper $cwrappersource $STRIP $cwrapper } # Now, create the wrapper script for func_source use: func_ltwrapper_scriptname $cwrapper $RM $func_ltwrapper_scriptname_result trap "$RM $func_ltwrapper_scriptname_result; exit $EXIT_FAILURE" 1 2 15 $opt_dry_run || { # note: this script will not be executed, so do not chmod. if test "x$build" = "x$host" ; then $cwrapper --lt-dump-script > $func_ltwrapper_scriptname_result else func_emit_wrapper no > $func_ltwrapper_scriptname_result fi } ;; * ) $RM $output trap "$RM $output; exit $EXIT_FAILURE" 1 2 15 func_emit_wrapper no > $output chmod +x $output ;; esac } exit $EXIT_SUCCESS ;; esac # See if we need to build an old-fashioned archive. for oldlib in $oldlibs; do if test "$build_libtool_libs" = convenience; then oldobjs="$libobjs_save $symfileobj" addlibs="$convenience" build_libtool_libs=no else if test "$build_libtool_libs" = module; then oldobjs="$libobjs_save" build_libtool_libs=no else oldobjs="$old_deplibs $non_pic_objects" if test "$preload" = yes && test -f "$symfileobj"; then func_append oldobjs " $symfileobj" fi fi addlibs="$old_convenience" fi if test -n "$addlibs"; then gentop="$output_objdir/${outputname}x" func_append generated " $gentop" func_extract_archives $gentop $addlibs func_append oldobjs " $func_extract_archives_result" fi # Do each command in the archive commands. if test -n "$old_archive_from_new_cmds" && test "$build_libtool_libs" = yes; then cmds=$old_archive_from_new_cmds else # Add any objects from preloaded convenience libraries if test -n "$dlprefiles"; then gentop="$output_objdir/${outputname}x" func_append generated " $gentop" func_extract_archives $gentop $dlprefiles func_append oldobjs " $func_extract_archives_result" fi # POSIX demands no paths to be encoded in archives. We have # to avoid creating archives with duplicate basenames if we # might have to extract them afterwards, e.g., when creating a # static archive out of a convenience library, or when linking # the entirety of a libtool archive into another (currently # not supported by libtool). if (for obj in $oldobjs do func_basename "$obj" $ECHO "$func_basename_result" done | sort | sort -uc >/dev/null 2>&1); then : else echo "copying selected object files to avoid basename conflicts..." gentop="$output_objdir/${outputname}x" func_append generated " $gentop" func_mkdir_p "$gentop" save_oldobjs=$oldobjs oldobjs= counter=1 for obj in $save_oldobjs do func_basename "$obj" objbase="$func_basename_result" case " $oldobjs " in " ") oldobjs=$obj ;; *[\ /]"$objbase "*) while :; do # Make sure we don't pick an alternate name that also # overlaps. newobj=lt$counter-$objbase func_arith $counter + 1 counter=$func_arith_result case " $oldobjs " in *[\ /]"$newobj "*) ;; *) if test ! -f "$gentop/$newobj"; then break; fi ;; esac done func_show_eval "ln $obj $gentop/$newobj || cp $obj $gentop/$newobj" func_append oldobjs " $gentop/$newobj" ;; *) func_append oldobjs " $obj" ;; esac done fi func_to_tool_file "$oldlib" func_convert_file_msys_to_w32 tool_oldlib=$func_to_tool_file_result eval cmds=\"$old_archive_cmds\" func_len " $cmds" len=$func_len_result if test "$len" -lt "$max_cmd_len" || test "$max_cmd_len" -le -1; then cmds=$old_archive_cmds elif test -n "$archiver_list_spec"; then func_verbose "using command file archive linking..." for obj in $oldobjs do func_to_tool_file "$obj" $ECHO "$func_to_tool_file_result" done > $output_objdir/$libname.libcmd func_to_tool_file "$output_objdir/$libname.libcmd" oldobjs=" $archiver_list_spec$func_to_tool_file_result" cmds=$old_archive_cmds else # the command line is too long to link in one step, link in parts func_verbose "using piecewise archive linking..." save_RANLIB=$RANLIB RANLIB=: objlist= concat_cmds= save_oldobjs=$oldobjs oldobjs= # Is there a better way of finding the last object in the list? for obj in $save_oldobjs do last_oldobj=$obj done eval test_cmds=\"$old_archive_cmds\" func_len " $test_cmds" len0=$func_len_result len=$len0 for obj in $save_oldobjs do func_len " $obj" func_arith $len + $func_len_result len=$func_arith_result func_append objlist " $obj" if test "$len" -lt "$max_cmd_len"; then : else # the above command should be used before it gets too long oldobjs=$objlist if test "$obj" = "$last_oldobj" ; then RANLIB=$save_RANLIB fi test -z "$concat_cmds" || concat_cmds=$concat_cmds~ eval concat_cmds=\"\${concat_cmds}$old_archive_cmds\" objlist= len=$len0 fi done RANLIB=$save_RANLIB oldobjs=$objlist if test "X$oldobjs" = "X" ; then eval cmds=\"\$concat_cmds\" else eval cmds=\"\$concat_cmds~\$old_archive_cmds\" fi fi fi func_execute_cmds "$cmds" 'exit $?' done test -n "$generated" && \ func_show_eval "${RM}r$generated" # Now create the libtool archive. case $output in *.la) old_library= test "$build_old_libs" = yes && old_library="$libname.$libext" func_verbose "creating $output" # Preserve any variables that may affect compiler behavior for var in $variables_saved_for_relink; do if eval test -z \"\${$var+set}\"; then relink_command="{ test -z \"\${$var+set}\" || $lt_unset $var || { $var=; export $var; }; }; $relink_command" elif eval var_value=\$$var; test -z "$var_value"; then relink_command="$var=; export $var; $relink_command" else func_quote_for_eval "$var_value" relink_command="$var=$func_quote_for_eval_result; export $var; $relink_command" fi done # Quote the link command for shipping. relink_command="(cd `pwd`; $SHELL $progpath $preserve_args --mode=relink $libtool_args @inst_prefix_dir@)" relink_command=`$ECHO "$relink_command" | $SED "$sed_quote_subst"` if test "$hardcode_automatic" = yes ; then relink_command= fi # Only create the output if not a dry run. $opt_dry_run || { for installed in no yes; do if test "$installed" = yes; then if test -z "$install_libdir"; then break fi output="$output_objdir/$outputname"i # Replace all uninstalled libtool libraries with the installed ones newdependency_libs= for deplib in $dependency_libs; do case $deplib in *.la) func_basename "$deplib" name="$func_basename_result" func_resolve_sysroot "$deplib" eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $func_resolve_sysroot_result` test -z "$libdir" && \ func_fatal_error "\`$deplib' is not a valid libtool archive" func_append newdependency_libs " ${lt_sysroot:+=}$libdir/$name" ;; -L*) func_stripname -L '' "$deplib" func_replace_sysroot "$func_stripname_result" func_append newdependency_libs " -L$func_replace_sysroot_result" ;; -R*) func_stripname -R '' "$deplib" func_replace_sysroot "$func_stripname_result" func_append newdependency_libs " -R$func_replace_sysroot_result" ;; *) func_append newdependency_libs " $deplib" ;; esac done dependency_libs="$newdependency_libs" newdlfiles= for lib in $dlfiles; do case $lib in *.la) func_basename "$lib" name="$func_basename_result" eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $lib` test -z "$libdir" && \ func_fatal_error "\`$lib' is not a valid libtool archive" func_append newdlfiles " ${lt_sysroot:+=}$libdir/$name" ;; *) func_append newdlfiles " $lib" ;; esac done dlfiles="$newdlfiles" newdlprefiles= for lib in $dlprefiles; do case $lib in *.la) # Only pass preopened files to the pseudo-archive (for # eventual linking with the app. that links it) if we # didn't already link the preopened objects directly into # the library: func_basename "$lib" name="$func_basename_result" eval libdir=`${SED} -n -e 's/^libdir=\(.*\)$/\1/p' $lib` test -z "$libdir" && \ func_fatal_error "\`$lib' is not a valid libtool archive" func_append newdlprefiles " ${lt_sysroot:+=}$libdir/$name" ;; esac done dlprefiles="$newdlprefiles" else newdlfiles= for lib in $dlfiles; do case $lib in [\\/]* | [A-Za-z]:[\\/]*) abs="$lib" ;; *) abs=`pwd`"/$lib" ;; esac func_append newdlfiles " $abs" done dlfiles="$newdlfiles" newdlprefiles= for lib in $dlprefiles; do case $lib in [\\/]* | [A-Za-z]:[\\/]*) abs="$lib" ;; *) abs=`pwd`"/$lib" ;; esac func_append newdlprefiles " $abs" done dlprefiles="$newdlprefiles" fi $RM $output # place dlname in correct position for cygwin # In fact, it would be nice if we could use this code for all target # systems that can't hard-code library paths into their executables # and that have no shared library path variable independent of PATH, # but it turns out we can't easily determine that from inspecting # libtool variables, so we have to hard-code the OSs to which it # applies here; at the moment, that means platforms that use the PE # object format with DLL files. See the long comment at the top of # tests/bindir.at for full details. tdlname=$dlname case $host,$output,$installed,$module,$dlname in *cygwin*,*lai,yes,no,*.dll | *mingw*,*lai,yes,no,*.dll | *cegcc*,*lai,yes,no,*.dll) # If a -bindir argument was supplied, place the dll there. if test "x$bindir" != x ; then func_relative_path "$install_libdir" "$bindir" tdlname=$func_relative_path_result$dlname else # Otherwise fall back on heuristic. tdlname=../bin/$dlname fi ;; esac $ECHO > $output "\ # $outputname - a libtool library file # Generated by $PROGRAM (GNU $PACKAGE$TIMESTAMP) $VERSION # # Please DO NOT delete this file! # It is necessary for linking the library. # The name that we can dlopen(3). dlname='$tdlname' # Names of this library. library_names='$library_names' # The name of the static archive. old_library='$old_library' # Linker flags that can not go in dependency_libs. inherited_linker_flags='$new_inherited_linker_flags' # Libraries that this one depends upon. dependency_libs='$dependency_libs' # Names of additional weak libraries provided by this library weak_library_names='$weak_libs' # Version information for $libname. current=$current age=$age revision=$revision # Is this an already installed library? installed=$installed # Should we warn about portability when linking against -modules? shouldnotlink=$module # Files to dlopen/dlpreopen dlopen='$dlfiles' dlpreopen='$dlprefiles' # Directory that this library needs to be installed in: libdir='$install_libdir'" if test "$installed" = no && test "$need_relink" = yes; then $ECHO >> $output "\ relink_command=\"$relink_command\"" fi done } # Do a symbolic link so that the libtool archive can be found in # LD_LIBRARY_PATH before the program is installed. func_show_eval '( cd "$output_objdir" && $RM "$outputname" && $LN_S "../$outputname" "$outputname" )' 'exit $?' ;; esac exit $EXIT_SUCCESS } { test "$opt_mode" = link || test "$opt_mode" = relink; } && func_mode_link ${1+"$@"} # func_mode_uninstall arg... func_mode_uninstall () { $opt_debug RM="$nonopt" files= rmforce= exit_status=0 # This variable tells wrapper scripts just to set variables rather # than running their programs. libtool_install_magic="$magic" for arg do case $arg in -f) func_append RM " $arg"; rmforce=yes ;; -*) func_append RM " $arg" ;; *) func_append files " $arg" ;; esac done test -z "$RM" && \ func_fatal_help "you must specify an RM program" rmdirs= for file in $files; do func_dirname "$file" "" "." dir="$func_dirname_result" if test "X$dir" = X.; then odir="$objdir" else odir="$dir/$objdir" fi func_basename "$file" name="$func_basename_result" test "$opt_mode" = uninstall && odir="$dir" # Remember odir for removal later, being careful to avoid duplicates if test "$opt_mode" = clean; then case " $rmdirs " in *" $odir "*) ;; *) func_append rmdirs " $odir" ;; esac fi # Don't error if the file doesn't exist and rm -f was used. if { test -L "$file"; } >/dev/null 2>&1 || { test -h "$file"; } >/dev/null 2>&1 || test -f "$file"; then : elif test -d "$file"; then exit_status=1 continue elif test "$rmforce" = yes; then continue fi rmfiles="$file" case $name in *.la) # Possibly a libtool archive, so verify it. if func_lalib_p "$file"; then func_source $dir/$name # Delete the libtool libraries and symlinks. for n in $library_names; do func_append rmfiles " $odir/$n" done test -n "$old_library" && func_append rmfiles " $odir/$old_library" case "$opt_mode" in clean) case " $library_names " in *" $dlname "*) ;; *) test -n "$dlname" && func_append rmfiles " $odir/$dlname" ;; esac test -n "$libdir" && func_append rmfiles " $odir/$name $odir/${name}i" ;; uninstall) if test -n "$library_names"; then # Do each command in the postuninstall commands. func_execute_cmds "$postuninstall_cmds" 'test "$rmforce" = yes || exit_status=1' fi if test -n "$old_library"; then # Do each command in the old_postuninstall commands. func_execute_cmds "$old_postuninstall_cmds" 'test "$rmforce" = yes || exit_status=1' fi # FIXME: should reinstall the best remaining shared library. ;; esac fi ;; *.lo) # Possibly a libtool object, so verify it. if func_lalib_p "$file"; then # Read the .lo file func_source $dir/$name # Add PIC object to the list of files to remove. if test -n "$pic_object" && test "$pic_object" != none; then func_append rmfiles " $dir/$pic_object" fi # Add non-PIC object to the list of files to remove. if test -n "$non_pic_object" && test "$non_pic_object" != none; then func_append rmfiles " $dir/$non_pic_object" fi fi ;; *) if test "$opt_mode" = clean ; then noexename=$name case $file in *.exe) func_stripname '' '.exe' "$file" file=$func_stripname_result func_stripname '' '.exe' "$name" noexename=$func_stripname_result # $file with .exe has already been added to rmfiles, # add $file without .exe func_append rmfiles " $file" ;; esac # Do a test to see if this is a libtool program. if func_ltwrapper_p "$file"; then if func_ltwrapper_executable_p "$file"; then func_ltwrapper_scriptname "$file" relink_command= func_source $func_ltwrapper_scriptname_result func_append rmfiles " $func_ltwrapper_scriptname_result" else relink_command= func_source $dir/$noexename fi # note $name still contains .exe if it was in $file originally # as does the version of $file that was added into $rmfiles func_append rmfiles " $odir/$name $odir/${name}S.${objext}" if test "$fast_install" = yes && test -n "$relink_command"; then func_append rmfiles " $odir/lt-$name" fi if test "X$noexename" != "X$name" ; then func_append rmfiles " $odir/lt-${noexename}.c" fi fi fi ;; esac func_show_eval "$RM $rmfiles" 'exit_status=1' done # Try to remove the ${objdir}s in the directories where we deleted files for dir in $rmdirs; do if test -d "$dir"; then func_show_eval "rmdir $dir >/dev/null 2>&1" fi done exit $exit_status } { test "$opt_mode" = uninstall || test "$opt_mode" = clean; } && func_mode_uninstall ${1+"$@"} test -z "$opt_mode" && { help="$generic_help" func_fatal_help "you must specify a MODE" } test -z "$exec_cmd" && \ func_fatal_help "invalid operation mode \`$opt_mode'" if test -n "$exec_cmd"; then eval exec "$exec_cmd" exit $EXIT_FAILURE fi exit $exit_status # The TAGs below are defined such that we never get into a situation # in which we disable both kinds of libraries. Given conflicting # choices, we go for a static library, that is the most portable, # since we can't tell whether shared libraries were disabled because # the user asked for that or because the platform doesn't support # them. This is particularly important on AIX, because we don't # support having both static and shared libraries enabled at the same # time on that platform, so we default to a shared-only configuration. # If a disable-shared tag is given, we'll fallback to a static-only # configuration. But we'll never go from static-only to shared-only. # ### BEGIN LIBTOOL TAG CONFIG: disable-shared build_libtool_libs=no build_old_libs=yes # ### END LIBTOOL TAG CONFIG: disable-shared # ### BEGIN LIBTOOL TAG CONFIG: disable-static build_old_libs=`case $build_libtool_libs in yes) echo no;; *) echo yes;; esac` # ### END LIBTOOL TAG CONFIG: disable-static # Local Variables: # mode:shell-script # sh-indentation:2 # End: # vi:sw=2 ������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/config/install-sh����������������������������������������������������������������������0000755�0001750�0001750�00000032537�12343351633�013217� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������#!/bin/sh # install - install a program, script, or datafile scriptversion=2009-04-28.21; # UTC # This originates from X11R5 (mit/util/scripts/install.sh), which was # later released in X11R6 (xc/config/util/install.sh) with the # following copyright and license. # # Copyright (C) 1994 X Consortium # # Permission is hereby granted, free of charge, to any person obtaining a copy # of this software and associated documentation files (the "Software"), to # deal in the Software without restriction, including without limitation the # rights to use, copy, modify, merge, publish, distribute, sublicense, and/or # sell copies of the Software, and to permit persons to whom the Software is # furnished to do so, subject to the following conditions: # # The above copyright notice and this permission notice shall be included in # all copies or substantial portions of the Software. # # THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR # IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, # FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE # X CONSORTIUM BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN # AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNEC- # TION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. # # Except as contained in this notice, the name of the X Consortium shall not # be used in advertising or otherwise to promote the sale, use or other deal- # ings in this Software without prior written authorization from the X Consor- # tium. # # # FSF changes to this file are in the public domain. # # Calling this script install-sh is preferred over install.sh, to prevent # `make' implicit rules from creating a file called install from it # when there is no Makefile. # # This script is compatible with the BSD install script, but was written # from scratch. nl=' ' IFS=" "" $nl" # set DOITPROG to echo to test this script # Don't use :- since 4.3BSD and earlier shells don't like it. doit=${DOITPROG-} if test -z "$doit"; then doit_exec=exec else doit_exec=$doit fi # Put in absolute file names if you don't have them in your path; # or use environment vars. chgrpprog=${CHGRPPROG-chgrp} chmodprog=${CHMODPROG-chmod} chownprog=${CHOWNPROG-chown} cmpprog=${CMPPROG-cmp} cpprog=${CPPROG-cp} mkdirprog=${MKDIRPROG-mkdir} mvprog=${MVPROG-mv} rmprog=${RMPROG-rm} stripprog=${STRIPPROG-strip} posix_glob='?' initialize_posix_glob=' test "$posix_glob" != "?" || { if (set -f) 2>/dev/null; then posix_glob= else posix_glob=: fi } ' posix_mkdir= # Desired mode of installed file. mode=0755 chgrpcmd= chmodcmd=$chmodprog chowncmd= mvcmd=$mvprog rmcmd="$rmprog -f" stripcmd= src= dst= dir_arg= dst_arg= copy_on_change=false no_target_directory= usage="\ Usage: $0 [OPTION]... [-T] SRCFILE DSTFILE or: $0 [OPTION]... SRCFILES... DIRECTORY or: $0 [OPTION]... -t DIRECTORY SRCFILES... or: $0 [OPTION]... -d DIRECTORIES... In the 1st form, copy SRCFILE to DSTFILE. In the 2nd and 3rd, copy all SRCFILES to DIRECTORY. In the 4th, create DIRECTORIES. Options: --help display this help and exit. --version display version info and exit. -c (ignored) -C install only if different (preserve the last data modification time) -d create directories instead of installing files. -g GROUP $chgrpprog installed files to GROUP. -m MODE $chmodprog installed files to MODE. -o USER $chownprog installed files to USER. -s $stripprog installed files. -t DIRECTORY install into DIRECTORY. -T report an error if DSTFILE is a directory. 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(umask $mkdir_umask && eval "\$doit_exec \$mkdirprog $prefixes") || test -d "$dstdir" || exit 1 obsolete_mkdir_used=true fi fi fi if test -n "$dir_arg"; then { test -z "$chowncmd" || $doit $chowncmd "$dst"; } && { test -z "$chgrpcmd" || $doit $chgrpcmd "$dst"; } && { test "$obsolete_mkdir_used$chowncmd$chgrpcmd" = false || test -z "$chmodcmd" || $doit $chmodcmd $mode "$dst"; } || exit 1 else # Make a couple of temp file names in the proper directory. dsttmp=$dstdir/_inst.$$_ rmtmp=$dstdir/_rm.$$_ # Trap to clean up those temp files at exit. trap 'ret=$?; rm -f "$dsttmp" "$rmtmp" && exit $ret' 0 # Copy the file name to the temp name. (umask $cp_umask && $doit_exec $cpprog "$src" "$dsttmp") && # and set any options; do chmod last to preserve setuid bits. # # If any of these fail, we abort the whole thing. If we want to # ignore errors from any of these, just make sure not to ignore # errors from the above "$doit $cpprog $src $dsttmp" command. # { test -z "$chowncmd" || $doit $chowncmd "$dsttmp"; } && { test -z "$chgrpcmd" || $doit $chgrpcmd "$dsttmp"; } && { test -z "$stripcmd" || $doit $stripcmd "$dsttmp"; } && { test -z "$chmodcmd" || $doit $chmodcmd $mode "$dsttmp"; } && # If -C, don't bother to copy if it wouldn't change the file. if $copy_on_change && old=`LC_ALL=C ls -dlL "$dst" 2>/dev/null` && new=`LC_ALL=C ls -dlL "$dsttmp" 2>/dev/null` && eval "$initialize_posix_glob" && $posix_glob set -f && set X $old && old=:$2:$4:$5:$6 && set X $new && new=:$2:$4:$5:$6 && $posix_glob set +f && test "$old" = "$new" && $cmpprog "$dst" "$dsttmp" >/dev/null 2>&1 then rm -f "$dsttmp" else # Rename the file to the real destination. $doit $mvcmd -f "$dsttmp" "$dst" 2>/dev/null || # The rename failed, perhaps because mv can't rename something else # to itself, or perhaps because mv is so ancient that it does not # support -f. { # Now remove or move aside any old file at destination location. # We try this two ways since rm can't unlink itself on some # systems and the destination file might be busy for other # reasons. In this case, the final cleanup might fail but the new # file should still install successfully. { test ! -f "$dst" || $doit $rmcmd -f "$dst" 2>/dev/null || { $doit $mvcmd -f "$dst" "$rmtmp" 2>/dev/null && { $doit $rmcmd -f "$rmtmp" 2>/dev/null; :; } } || { echo "$0: cannot unlink or rename $dst" >&2 (exit 1); exit 1 } } && # Now rename the file to the real destination. $doit $mvcmd "$dsttmp" "$dst" } fi || exit 1 trap '' 0 fi done # Local variables: # eval: (add-hook 'write-file-hooks 'time-stamp) # time-stamp-start: "scriptversion=" # time-stamp-format: "%:y-%02m-%02d.%02H" # time-stamp-time-zone: "UTC" # time-stamp-end: "; # UTC" # End: �����������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/config/ltoptions.m4��������������������������������������������������������������������0000644�0001750�0001750�00000030073�12343351634�013502� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������# Helper functions for option handling. -*- Autoconf -*- # # Copyright (C) 2004, 2005, 2007, 2008, 2009 Free Software Foundation, # Inc. # Written by Gary V. Vaughan, 2004 # # This file is free software; the Free Software Foundation gives # unlimited permission to copy and/or distribute it, with or without # modifications, as long as this notice is preserved. # serial 7 ltoptions.m4 # This is to help aclocal find these macros, as it can't see m4_define. AC_DEFUN([LTOPTIONS_VERSION], [m4_if([1])]) # _LT_MANGLE_OPTION(MACRO-NAME, OPTION-NAME) # ------------------------------------------ m4_define([_LT_MANGLE_OPTION], [[_LT_OPTION_]m4_bpatsubst($1__$2, [[^a-zA-Z0-9_]], [_])]) # _LT_SET_OPTION(MACRO-NAME, OPTION-NAME) # --------------------------------------- # Set option OPTION-NAME for macro MACRO-NAME, and if there is a # matching handler defined, dispatch to it. Other OPTION-NAMEs are # saved as a flag. m4_define([_LT_SET_OPTION], [m4_define(_LT_MANGLE_OPTION([$1], [$2]))dnl m4_ifdef(_LT_MANGLE_DEFUN([$1], [$2]), _LT_MANGLE_DEFUN([$1], [$2]), [m4_warning([Unknown $1 option `$2'])])[]dnl ]) # _LT_IF_OPTION(MACRO-NAME, OPTION-NAME, IF-SET, [IF-NOT-SET]) # ------------------------------------------------------------ # Execute IF-SET if OPTION is set, IF-NOT-SET otherwise. m4_define([_LT_IF_OPTION], [m4_ifdef(_LT_MANGLE_OPTION([$1], [$2]), [$3], [$4])]) # _LT_UNLESS_OPTIONS(MACRO-NAME, OPTION-LIST, IF-NOT-SET) # ------------------------------------------------------- # Execute IF-NOT-SET unless all options in OPTION-LIST for MACRO-NAME # are set. m4_define([_LT_UNLESS_OPTIONS], [m4_foreach([_LT_Option], m4_split(m4_normalize([$2])), [m4_ifdef(_LT_MANGLE_OPTION([$1], _LT_Option), [m4_define([$0_found])])])[]dnl m4_ifdef([$0_found], [m4_undefine([$0_found])], [$3 ])[]dnl ]) # _LT_SET_OPTIONS(MACRO-NAME, OPTION-LIST) # ---------------------------------------- # OPTION-LIST is a space-separated list of Libtool options associated # with MACRO-NAME. If any OPTION has a matching handler declared with # LT_OPTION_DEFINE, dispatch to that macro; otherwise complain about # the unknown option and exit. m4_defun([_LT_SET_OPTIONS], [# Set options m4_foreach([_LT_Option], m4_split(m4_normalize([$2])), [_LT_SET_OPTION([$1], _LT_Option)]) m4_if([$1],[LT_INIT],[ dnl dnl Simply set some default values (i.e off) if boolean options were not dnl specified: _LT_UNLESS_OPTIONS([LT_INIT], [dlopen], [enable_dlopen=no ]) _LT_UNLESS_OPTIONS([LT_INIT], [win32-dll], [enable_win32_dll=no ]) dnl dnl If no reference was made to various pairs of opposing options, then dnl we run the default mode handler for the pair. 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See the # GNU General Public License for more details. # # You should have received a copy of the GNU General Public License # along with GNU Libtool; see the file COPYING. If not, a copy # can be downloaded from http://www.gnu.org/licenses/gpl.html, or # obtained by writing to the Free Software Foundation, Inc., # 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA. ]) # serial 57 LT_INIT # LT_PREREQ(VERSION) # ------------------ # Complain and exit if this libtool version is less that VERSION. m4_defun([LT_PREREQ], [m4_if(m4_version_compare(m4_defn([LT_PACKAGE_VERSION]), [$1]), -1, [m4_default([$3], [m4_fatal([Libtool version $1 or higher is required], 63)])], [$2])]) # _LT_CHECK_BUILDDIR # ------------------ # Complain if the absolute build directory name contains unusual characters m4_defun([_LT_CHECK_BUILDDIR], [case `pwd` in *\ * | *\ *) AC_MSG_WARN([Libtool does not cope well with whitespace in `pwd`]) ;; esac ]) # LT_INIT([OPTIONS]) # ------------------ AC_DEFUN([LT_INIT], [AC_PREREQ([2.58])dnl We use AC_INCLUDES_DEFAULT AC_REQUIRE([AC_CONFIG_AUX_DIR_DEFAULT])dnl AC_BEFORE([$0], [LT_LANG])dnl AC_BEFORE([$0], [LT_OUTPUT])dnl AC_BEFORE([$0], [LTDL_INIT])dnl m4_require([_LT_CHECK_BUILDDIR])dnl dnl Autoconf doesn't catch unexpanded LT_ macros by default: m4_pattern_forbid([^_?LT_[A-Z_]+$])dnl m4_pattern_allow([^(_LT_EOF|LT_DLGLOBAL|LT_DLLAZY_OR_NOW|LT_MULTI_MODULE)$])dnl dnl aclocal doesn't pull ltoptions.m4, ltsugar.m4, or ltversion.m4 dnl unless we require an AC_DEFUNed macro: AC_REQUIRE([LTOPTIONS_VERSION])dnl AC_REQUIRE([LTSUGAR_VERSION])dnl AC_REQUIRE([LTVERSION_VERSION])dnl AC_REQUIRE([LTOBSOLETE_VERSION])dnl m4_require([_LT_PROG_LTMAIN])dnl _LT_SHELL_INIT([SHELL=${CONFIG_SHELL-/bin/sh}]) dnl Parse OPTIONS _LT_SET_OPTIONS([$0], [$1]) # This can be used to rebuild libtool when needed LIBTOOL_DEPS="$ltmain" # Always use our own libtool. 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then # do not overwrite the value of need_locks provided by the user AC_MSG_CHECKING([if we can lock with hard links]) hard_links=yes $RM conftest* ln conftest.a conftest.b 2>/dev/null && hard_links=no touch conftest.a ln conftest.a conftest.b 2>&5 || hard_links=no ln conftest.a conftest.b 2>/dev/null && hard_links=no AC_MSG_RESULT([$hard_links]) if test "$hard_links" = no; then AC_MSG_WARN([`$CC' does not support `-c -o', so `make -j' may be unsafe]) need_locks=warn fi else need_locks=no fi _LT_DECL([], [need_locks], [1], [Must we lock files when doing compilation?]) ])# _LT_COMPILER_FILE_LOCKS # _LT_CHECK_OBJDIR # ---------------- m4_defun([_LT_CHECK_OBJDIR], [AC_CACHE_CHECK([for objdir], [lt_cv_objdir], [rm -f .libs 2>/dev/null mkdir .libs 2>/dev/null if test -d .libs; then lt_cv_objdir=.libs else # MS-DOS does not allow filenames that begin with a dot. lt_cv_objdir=_libs fi rmdir .libs 2>/dev/null]) objdir=$lt_cv_objdir _LT_DECL([], [objdir], [0], [The name of the directory that contains temporary libtool files])dnl m4_pattern_allow([LT_OBJDIR])dnl AC_DEFINE_UNQUOTED(LT_OBJDIR, "$lt_cv_objdir/", [Define to the sub-directory in which libtool stores uninstalled libraries.]) ])# _LT_CHECK_OBJDIR # _LT_LINKER_HARDCODE_LIBPATH([TAGNAME]) # -------------------------------------- # Check hardcoding attributes. m4_defun([_LT_LINKER_HARDCODE_LIBPATH], [AC_MSG_CHECKING([how to hardcode library paths into programs]) _LT_TAGVAR(hardcode_action, $1)= if test -n "$_LT_TAGVAR(hardcode_libdir_flag_spec, $1)" || test -n "$_LT_TAGVAR(runpath_var, $1)" || test "X$_LT_TAGVAR(hardcode_automatic, $1)" = "Xyes" ; 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then # Fast installation is not necessary enable_fast_install=needless fi _LT_TAGDECL([], [hardcode_action], [0], [How to hardcode a shared library path into an executable]) ])# _LT_LINKER_HARDCODE_LIBPATH # _LT_CMD_STRIPLIB # ---------------- m4_defun([_LT_CMD_STRIPLIB], [m4_require([_LT_DECL_EGREP]) striplib= old_striplib= AC_MSG_CHECKING([whether stripping libraries is possible]) if test -n "$STRIP" && $STRIP -V 2>&1 | $GREP "GNU strip" >/dev/null; then test -z "$old_striplib" && old_striplib="$STRIP --strip-debug" test -z "$striplib" && striplib="$STRIP --strip-unneeded" AC_MSG_RESULT([yes]) else # FIXME - insert some real tests, host_os isn't really good enough case $host_os in darwin*) if test -n "$STRIP" ; then striplib="$STRIP -x" old_striplib="$STRIP -S" AC_MSG_RESULT([yes]) else AC_MSG_RESULT([no]) fi ;; *) AC_MSG_RESULT([no]) ;; esac fi _LT_DECL([], [old_striplib], [1], [Commands to strip libraries]) _LT_DECL([], [striplib], [1]) ])# _LT_CMD_STRIPLIB # _LT_SYS_DYNAMIC_LINKER([TAG]) # ----------------------------- # PORTME Fill in your ld.so characteristics m4_defun([_LT_SYS_DYNAMIC_LINKER], [AC_REQUIRE([AC_CANONICAL_HOST])dnl m4_require([_LT_DECL_EGREP])dnl m4_require([_LT_FILEUTILS_DEFAULTS])dnl m4_require([_LT_DECL_OBJDUMP])dnl m4_require([_LT_DECL_SED])dnl m4_require([_LT_CHECK_SHELL_FEATURES])dnl AC_MSG_CHECKING([dynamic linker characteristics]) m4_if([$1], [], [ if test "$GCC" = yes; 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*) case $LD in # libtool.m4 will add one of these switches to LD *-32|*"-32 "|*-melf32bsmip|*"-melf32bsmip ") libsuff= shlibsuff= libmagic=32-bit;; *-n32|*"-n32 "|*-melf32bmipn32|*"-melf32bmipn32 ") libsuff=32 shlibsuff=N32 libmagic=N32;; *-64|*"-64 "|*-melf64bmip|*"-melf64bmip ") libsuff=64 shlibsuff=64 libmagic=64-bit;; *) libsuff= shlibsuff= libmagic=never-match;; esac ;; esac shlibpath_var=LD_LIBRARY${shlibsuff}_PATH shlibpath_overrides_runpath=no sys_lib_search_path_spec="/usr/lib${libsuff} /lib${libsuff} /usr/local/lib${libsuff}" sys_lib_dlsearch_path_spec="/usr/lib${libsuff} /lib${libsuff}" hardcode_into_libs=yes ;; # No shared lib support for Linux oldld, aout, or coff. linux*oldld* | linux*aout* | linux*coff*) dynamic_linker=no ;; # This must be glibc/ELF. linux* | k*bsd*-gnu | kopensolaris*-gnu) version_type=linux # correct to gnu/linux during the next big refactor need_lib_prefix=no need_version=no library_names_spec='${libname}${release}${shared_ext}$versuffix ${libname}${release}${shared_ext}$major $libname${shared_ext}' soname_spec='${libname}${release}${shared_ext}$major' finish_cmds='PATH="\$PATH:/sbin" ldconfig -n $libdir' shlibpath_var=LD_LIBRARY_PATH shlibpath_overrides_runpath=no # Some binutils ld are patched to set DT_RUNPATH AC_CACHE_VAL([lt_cv_shlibpath_overrides_runpath], [lt_cv_shlibpath_overrides_runpath=no save_LDFLAGS=$LDFLAGS save_libdir=$libdir eval "libdir=/foo; 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esac _LT_COMPILER_OPTION([if $compiler supports -fno-rtti -fno-exceptions], lt_cv_prog_compiler_rtti_exceptions, [-fno-rtti -fno-exceptions], [], [_LT_TAGVAR(lt_prog_compiler_no_builtin_flag, $1)="$_LT_TAGVAR(lt_prog_compiler_no_builtin_flag, $1) -fno-rtti -fno-exceptions"]) fi _LT_TAGDECL([no_builtin_flag], [lt_prog_compiler_no_builtin_flag], [1], [Compiler flag to turn off builtin functions]) ])# _LT_COMPILER_NO_RTTI # _LT_CMD_GLOBAL_SYMBOLS # ---------------------- m4_defun([_LT_CMD_GLOBAL_SYMBOLS], [AC_REQUIRE([AC_CANONICAL_HOST])dnl AC_REQUIRE([AC_PROG_CC])dnl AC_REQUIRE([AC_PROG_AWK])dnl AC_REQUIRE([LT_PATH_NM])dnl AC_REQUIRE([LT_PATH_LD])dnl m4_require([_LT_DECL_SED])dnl m4_require([_LT_DECL_EGREP])dnl m4_require([_LT_TAG_COMPILER])dnl # Check for command to grab the raw symbol name followed by C symbol from nm. AC_MSG_CHECKING([command to parse $NM output from $compiler object]) AC_CACHE_VAL([lt_cv_sys_global_symbol_pipe], [ # These are sane defaults that work on at least a few old systems. # [They come from Ultrix. What could be older than Ultrix?!! ;)] # Character class describing NM global symbol codes. symcode='[[BCDEGRST]]' # Regexp to match symbols that can be accessed directly from C. sympat='\([[_A-Za-z]][[_A-Za-z0-9]]*\)' # Define system-specific variables. case $host_os in aix*) symcode='[[BCDT]]' ;; cygwin* | mingw* | pw32* | cegcc*) symcode='[[ABCDGISTW]]' ;; hpux*) if test "$host_cpu" = ia64; then symcode='[[ABCDEGRST]]' fi ;; irix* | nonstopux*) symcode='[[BCDEGRST]]' ;; osf*) symcode='[[BCDEGQRST]]' ;; solaris*) symcode='[[BDRT]]' ;; sco3.2v5*) symcode='[[DT]]' ;; sysv4.2uw2*) symcode='[[DT]]' ;; sysv5* | sco5v6* | unixware* | OpenUNIX*) symcode='[[ABDT]]' ;; sysv4) symcode='[[DFNSTU]]' ;; esac # If we're using GNU nm, then use its standard symbol codes. case `$NM -V 2>&1` in *GNU* | *'with BFD'*) symcode='[[ABCDGIRSTW]]' ;; esac # Transform an extracted symbol line into a proper C declaration. # Some systems (esp. on ia64) link data and code symbols differently, # so use this general approach. lt_cv_sys_global_symbol_to_cdecl="sed -n -e 's/^T .* \(.*\)$/extern int \1();/p' -e 's/^$symcode* .* \(.*\)$/extern char \1;/p'" # Transform an extracted symbol line into symbol name and symbol address lt_cv_sys_global_symbol_to_c_name_address="sed -n -e 's/^: \([[^ ]]*\)[[ ]]*$/ {\\\"\1\\\", (void *) 0},/p' -e 's/^$symcode* \([[^ ]]*\) \([[^ ]]*\)$/ {\"\2\", (void *) \&\2},/p'" lt_cv_sys_global_symbol_to_c_name_address_lib_prefix="sed -n -e 's/^: \([[^ ]]*\)[[ ]]*$/ {\\\"\1\\\", (void *) 0},/p' -e 's/^$symcode* \([[^ ]]*\) \(lib[[^ ]]*\)$/ {\"\2\", (void *) \&\2},/p' -e 's/^$symcode* \([[^ ]]*\) \([[^ ]]*\)$/ {\"lib\2\", (void *) \&\2},/p'" # Handle CRLF in mingw tool chain opt_cr= case $build_os in mingw*) opt_cr=`$ECHO 'x\{0,1\}' | tr x '\015'` # option cr in regexp ;; esac # Try without a prefix underscore, then with it. for ac_symprfx in "" "_"; do # Transform symcode, sympat, and symprfx into a raw symbol and a C symbol. symxfrm="\\1 $ac_symprfx\\2 \\2" # Write the raw and C identifiers. if test "$lt_cv_nm_interface" = "MS dumpbin"; then # Fake it for dumpbin and say T for any non-static function # and D for any global variable. # Also find C++ and __fastcall symbols from MSVC++, # which start with @ or ?. lt_cv_sys_global_symbol_pipe="$AWK ['"\ " {last_section=section; section=\$ 3};"\ " /^COFF SYMBOL TABLE/{for(i in hide) delete hide[i]};"\ " /Section length .*#relocs.*(pick any)/{hide[last_section]=1};"\ " \$ 0!~/External *\|/{next};"\ " / 0+ UNDEF /{next}; / UNDEF \([^|]\)*()/{next};"\ " {if(hide[section]) next};"\ " {f=0}; \$ 0~/\(\).*\|/{f=1}; {printf f ? \"T \" : \"D \"};"\ " {split(\$ 0, a, /\||\r/); split(a[2], s)};"\ " s[1]~/^[@?]/{print s[1], s[1]; next};"\ " s[1]~prfx {split(s[1],t,\"@\"); print t[1], substr(t[1],length(prfx))}"\ " ' prfx=^$ac_symprfx]" else lt_cv_sys_global_symbol_pipe="sed -n -e 's/^.*[[ ]]\($symcode$symcode*\)[[ ]][[ ]]*$ac_symprfx$sympat$opt_cr$/$symxfrm/p'" fi lt_cv_sys_global_symbol_pipe="$lt_cv_sys_global_symbol_pipe | sed '/ __gnu_lto/d'" # Check to see that the pipe works correctly. pipe_works=no rm -f conftest* cat > conftest.$ac_ext <<_LT_EOF #ifdef __cplusplus extern "C" { #endif char nm_test_var; void nm_test_func(void); void nm_test_func(void){} #ifdef __cplusplus } #endif int main(){nm_test_var='a';nm_test_func();return(0);} _LT_EOF if AC_TRY_EVAL(ac_compile); then # Now try to grab the symbols. nlist=conftest.nm if AC_TRY_EVAL(NM conftest.$ac_objext \| "$lt_cv_sys_global_symbol_pipe" \> $nlist) && test -s "$nlist"; then # Try sorting and uniquifying the output. if sort "$nlist" | uniq > "$nlist"T; then mv -f "$nlist"T "$nlist" else rm -f "$nlist"T fi # Make sure that we snagged all the symbols we need. if $GREP ' nm_test_var$' "$nlist" >/dev/null; then if $GREP ' nm_test_func$' "$nlist" >/dev/null; then cat <<_LT_EOF > conftest.$ac_ext /* Keep this code in sync between libtool.m4, ltmain, lt_system.h, and tests. */ #if defined(_WIN32) || defined(__CYGWIN__) || defined(_WIN32_WCE) /* DATA imports from DLLs on WIN32 con't be const, because runtime relocations are performed -- see ld's documentation on pseudo-relocs. */ # define LT@&t@_DLSYM_CONST #elif defined(__osf__) /* This system does not cope well with relocations in const data. */ # define LT@&t@_DLSYM_CONST #else # define LT@&t@_DLSYM_CONST const #endif #ifdef __cplusplus extern "C" { #endif _LT_EOF # Now generate the symbol file. eval "$lt_cv_sys_global_symbol_to_cdecl"' < "$nlist" | $GREP -v main >> conftest.$ac_ext' cat <<_LT_EOF >> conftest.$ac_ext /* The mapping between symbol names and symbols. */ LT@&t@_DLSYM_CONST struct { const char *name; void *address; } lt__PROGRAM__LTX_preloaded_symbols[[]] = { { "@PROGRAM@", (void *) 0 }, _LT_EOF $SED "s/^$symcode$symcode* \(.*\) \(.*\)$/ {\"\2\", (void *) \&\2},/" < "$nlist" | $GREP -v main >> conftest.$ac_ext cat <<\_LT_EOF >> conftest.$ac_ext {0, (void *) 0} }; /* This works around a problem in FreeBSD linker */ #ifdef FREEBSD_WORKAROUND static const void *lt_preloaded_setup() { return lt__PROGRAM__LTX_preloaded_symbols; } #endif #ifdef __cplusplus } #endif _LT_EOF # Now try linking the two files. mv conftest.$ac_objext conftstm.$ac_objext lt_globsym_save_LIBS=$LIBS lt_globsym_save_CFLAGS=$CFLAGS LIBS="conftstm.$ac_objext" CFLAGS="$CFLAGS$_LT_TAGVAR(lt_prog_compiler_no_builtin_flag, $1)" if AC_TRY_EVAL(ac_link) && test -s conftest${ac_exeext}; then pipe_works=yes fi LIBS=$lt_globsym_save_LIBS CFLAGS=$lt_globsym_save_CFLAGS else echo "cannot find nm_test_func in $nlist" >&AS_MESSAGE_LOG_FD fi else echo "cannot find nm_test_var in $nlist" >&AS_MESSAGE_LOG_FD fi else echo "cannot run $lt_cv_sys_global_symbol_pipe" >&AS_MESSAGE_LOG_FD fi else echo "$progname: failed program was:" >&AS_MESSAGE_LOG_FD cat conftest.$ac_ext >&5 fi rm -rf conftest* conftst* # Do not use the global_symbol_pipe unless it works. if test "$pipe_works" = yes; then break else lt_cv_sys_global_symbol_pipe= fi done ]) if test -z "$lt_cv_sys_global_symbol_pipe"; then lt_cv_sys_global_symbol_to_cdecl= fi if test -z "$lt_cv_sys_global_symbol_pipe$lt_cv_sys_global_symbol_to_cdecl"; then AC_MSG_RESULT(failed) else AC_MSG_RESULT(ok) fi # Response file support. if test "$lt_cv_nm_interface" = "MS dumpbin"; then nm_file_list_spec='@' elif $NM --help 2>/dev/null | grep '[[@]]FILE' >/dev/null; then nm_file_list_spec='@' fi _LT_DECL([global_symbol_pipe], [lt_cv_sys_global_symbol_pipe], [1], [Take the output of nm and produce a listing of raw symbols and C names]) _LT_DECL([global_symbol_to_cdecl], [lt_cv_sys_global_symbol_to_cdecl], [1], [Transform the output of nm in a proper C declaration]) _LT_DECL([global_symbol_to_c_name_address], [lt_cv_sys_global_symbol_to_c_name_address], [1], [Transform the output of nm in a C name address pair]) _LT_DECL([global_symbol_to_c_name_address_lib_prefix], [lt_cv_sys_global_symbol_to_c_name_address_lib_prefix], [1], [Transform the output of nm in a C name address pair when lib prefix is needed]) _LT_DECL([], [nm_file_list_spec], [1], [Specify filename containing input files for $NM]) ]) # _LT_CMD_GLOBAL_SYMBOLS # _LT_COMPILER_PIC([TAGNAME]) # --------------------------- m4_defun([_LT_COMPILER_PIC], [m4_require([_LT_TAG_COMPILER])dnl _LT_TAGVAR(lt_prog_compiler_wl, $1)= _LT_TAGVAR(lt_prog_compiler_pic, $1)= _LT_TAGVAR(lt_prog_compiler_static, $1)= m4_if([$1], [CXX], [ # C++ specific cases for pic, static, wl, etc. if test "$GXX" = yes; then _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_static, $1)='-static' case $host_os in aix*) # All AIX code is PIC. if test "$host_cpu" = ia64; then # AIX 5 now supports IA64 processor _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' fi ;; amigaos*) case $host_cpu in powerpc) # see comment about AmigaOS4 .so support _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fPIC' ;; m68k) # FIXME: we need at least 68020 code to build shared libraries, but # adding the `-m68020' flag to GCC prevents building anything better, # like `-m68040'. _LT_TAGVAR(lt_prog_compiler_pic, $1)='-m68020 -resident32 -malways-restore-a4' ;; esac ;; beos* | irix5* | irix6* | nonstopux* | osf3* | osf4* | osf5*) # PIC is the default for these OSes. ;; mingw* | cygwin* | os2* | pw32* | cegcc*) # This hack is so that the source file can tell whether it is being # built for inclusion in a dll (and should export symbols for example). # Although the cygwin gcc ignores -fPIC, still need this for old-style # (--disable-auto-import) libraries m4_if([$1], [GCJ], [], [_LT_TAGVAR(lt_prog_compiler_pic, $1)='-DDLL_EXPORT']) ;; darwin* | rhapsody*) # PIC is the default on this platform # Common symbols not allowed in MH_DYLIB files _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fno-common' ;; *djgpp*) # DJGPP does not support shared libraries at all _LT_TAGVAR(lt_prog_compiler_pic, $1)= ;; haiku*) # PIC is the default for Haiku. # The "-static" flag exists, but is broken. _LT_TAGVAR(lt_prog_compiler_static, $1)= ;; interix[[3-9]]*) # Interix 3.x gcc -fpic/-fPIC options generate broken code. # Instead, we relocate shared libraries at runtime. ;; sysv4*MP*) if test -d /usr/nec; then _LT_TAGVAR(lt_prog_compiler_pic, $1)=-Kconform_pic fi ;; hpux*) # PIC is the default for 64-bit PA HP-UX, but not for 32-bit # PA HP-UX. On IA64 HP-UX, PIC is the default but the pic flag # sets the default TLS model and affects inlining. case $host_cpu in hppa*64*) ;; *) _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fPIC' ;; esac ;; *qnx* | *nto*) # QNX uses GNU C++, but need to define -shared option too, otherwise # it will coredump. _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fPIC -shared' ;; *) _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fPIC' ;; esac else case $host_os in aix[[4-9]]*) # All AIX code is PIC. if test "$host_cpu" = ia64; then # AIX 5 now supports IA64 processor _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' else _LT_TAGVAR(lt_prog_compiler_static, $1)='-bnso -bI:/lib/syscalls.exp' fi ;; chorus*) case $cc_basename in cxch68*) # Green Hills C++ Compiler # _LT_TAGVAR(lt_prog_compiler_static, $1)="--no_auto_instantiation -u __main -u __premain -u _abort -r $COOL_DIR/lib/libOrb.a $MVME_DIR/lib/CC/libC.a $MVME_DIR/lib/classix/libcx.s.a" ;; esac ;; mingw* | cygwin* | os2* | pw32* | cegcc*) # This hack is so that the source file can tell whether it is being # built for inclusion in a dll (and should export symbols for example). m4_if([$1], [GCJ], [], [_LT_TAGVAR(lt_prog_compiler_pic, $1)='-DDLL_EXPORT']) ;; dgux*) case $cc_basename in ec++*) _LT_TAGVAR(lt_prog_compiler_pic, $1)='-KPIC' ;; ghcx*) # Green Hills C++ Compiler _LT_TAGVAR(lt_prog_compiler_pic, $1)='-pic' ;; *) ;; esac ;; freebsd* | dragonfly*) # FreeBSD uses GNU C++ ;; hpux9* | hpux10* | hpux11*) case $cc_basename in CC*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_static, $1)='${wl}-a ${wl}archive' if test "$host_cpu" != ia64; then _LT_TAGVAR(lt_prog_compiler_pic, $1)='+Z' fi ;; aCC*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_static, $1)='${wl}-a ${wl}archive' case $host_cpu in hppa*64*|ia64*) # +Z the default ;; *) _LT_TAGVAR(lt_prog_compiler_pic, $1)='+Z' ;; esac ;; *) ;; esac ;; interix*) # This is c89, which is MS Visual C++ (no shared libs) # Anyone wants to do a port? ;; irix5* | irix6* | nonstopux*) case $cc_basename in CC*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_static, $1)='-non_shared' # CC pic flag -KPIC is the default. ;; *) ;; esac ;; linux* | k*bsd*-gnu | kopensolaris*-gnu) case $cc_basename in KCC*) # KAI C++ Compiler _LT_TAGVAR(lt_prog_compiler_wl, $1)='--backend -Wl,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fPIC' ;; ecpc* ) # old Intel C++ for x86_64 which still supported -KPIC. _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-KPIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-static' ;; icpc* ) # Intel C++, used to be incompatible with GCC. # ICC 10 doesn't accept -KPIC any more. _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fPIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-static' ;; pgCC* | pgcpp*) # Portland Group C++ compiler _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fpic' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' ;; cxx*) # Compaq C++ # Make sure the PIC flag is empty. It appears that all Alpha # Linux and Compaq Tru64 Unix objects are PIC. _LT_TAGVAR(lt_prog_compiler_pic, $1)= _LT_TAGVAR(lt_prog_compiler_static, $1)='-non_shared' ;; xlc* | xlC* | bgxl[[cC]]* | mpixl[[cC]]*) # IBM XL 8.0, 9.0 on PPC and BlueGene _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-qpic' _LT_TAGVAR(lt_prog_compiler_static, $1)='-qstaticlink' ;; *) case `$CC -V 2>&1 | sed 5q` in *Sun\ C*) # Sun C++ 5.9 _LT_TAGVAR(lt_prog_compiler_pic, $1)='-KPIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Qoption ld ' ;; esac ;; esac ;; lynxos*) ;; m88k*) ;; mvs*) case $cc_basename in cxx*) _LT_TAGVAR(lt_prog_compiler_pic, $1)='-W c,exportall' ;; *) ;; esac ;; netbsd* | netbsdelf*-gnu) ;; *qnx* | *nto*) # QNX uses GNU C++, but need to define -shared option too, otherwise # it will coredump. _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fPIC -shared' ;; osf3* | osf4* | osf5*) case $cc_basename in KCC*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='--backend -Wl,' ;; RCC*) # Rational C++ 2.4.1 _LT_TAGVAR(lt_prog_compiler_pic, $1)='-pic' ;; cxx*) # Digital/Compaq C++ _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' # Make sure the PIC flag is empty. It appears that all Alpha # Linux and Compaq Tru64 Unix objects are PIC. _LT_TAGVAR(lt_prog_compiler_pic, $1)= _LT_TAGVAR(lt_prog_compiler_static, $1)='-non_shared' ;; *) ;; esac ;; psos*) ;; solaris*) case $cc_basename in CC* | sunCC*) # Sun C++ 4.2, 5.x and Centerline C++ _LT_TAGVAR(lt_prog_compiler_pic, $1)='-KPIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Qoption ld ' ;; gcx*) # Green Hills C++ Compiler _LT_TAGVAR(lt_prog_compiler_pic, $1)='-PIC' ;; *) ;; esac ;; sunos4*) case $cc_basename in CC*) # Sun C++ 4.x _LT_TAGVAR(lt_prog_compiler_pic, $1)='-pic' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' ;; lcc*) # Lucid _LT_TAGVAR(lt_prog_compiler_pic, $1)='-pic' ;; *) ;; esac ;; sysv5* | unixware* | sco3.2v5* | sco5v6* | OpenUNIX*) case $cc_basename in CC*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-KPIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' ;; esac ;; tandem*) case $cc_basename in NCC*) # NonStop-UX NCC 3.20 _LT_TAGVAR(lt_prog_compiler_pic, $1)='-KPIC' ;; *) ;; esac ;; vxworks*) ;; *) _LT_TAGVAR(lt_prog_compiler_can_build_shared, $1)=no ;; esac fi ], [ if test "$GCC" = yes; then _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_static, $1)='-static' case $host_os in aix*) # All AIX code is PIC. if test "$host_cpu" = ia64; then # AIX 5 now supports IA64 processor _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' fi ;; amigaos*) case $host_cpu in powerpc) # see comment about AmigaOS4 .so support _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fPIC' ;; m68k) # FIXME: we need at least 68020 code to build shared libraries, but # adding the `-m68020' flag to GCC prevents building anything better, # like `-m68040'. _LT_TAGVAR(lt_prog_compiler_pic, $1)='-m68020 -resident32 -malways-restore-a4' ;; esac ;; beos* | irix5* | irix6* | nonstopux* | osf3* | osf4* | osf5*) # PIC is the default for these OSes. ;; mingw* | cygwin* | pw32* | os2* | cegcc*) # This hack is so that the source file can tell whether it is being # built for inclusion in a dll (and should export symbols for example). # Although the cygwin gcc ignores -fPIC, still need this for old-style # (--disable-auto-import) libraries m4_if([$1], [GCJ], [], [_LT_TAGVAR(lt_prog_compiler_pic, $1)='-DDLL_EXPORT']) ;; darwin* | rhapsody*) # PIC is the default on this platform # Common symbols not allowed in MH_DYLIB files _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fno-common' ;; haiku*) # PIC is the default for Haiku. # The "-static" flag exists, but is broken. _LT_TAGVAR(lt_prog_compiler_static, $1)= ;; hpux*) # PIC is the default for 64-bit PA HP-UX, but not for 32-bit # PA HP-UX. On IA64 HP-UX, PIC is the default but the pic flag # sets the default TLS model and affects inlining. case $host_cpu in hppa*64*) # +Z the default ;; *) _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fPIC' ;; esac ;; interix[[3-9]]*) # Interix 3.x gcc -fpic/-fPIC options generate broken code. # Instead, we relocate shared libraries at runtime. ;; msdosdjgpp*) # Just because we use GCC doesn't mean we suddenly get shared libraries # on systems that don't support them. _LT_TAGVAR(lt_prog_compiler_can_build_shared, $1)=no enable_shared=no ;; *nto* | *qnx*) # QNX uses GNU C++, but need to define -shared option too, otherwise # it will coredump. _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fPIC -shared' ;; sysv4*MP*) if test -d /usr/nec; then _LT_TAGVAR(lt_prog_compiler_pic, $1)=-Kconform_pic fi ;; *) _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fPIC' ;; esac case $cc_basename in nvcc*) # Cuda Compiler Driver 2.2 _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Xlinker ' if test -n "$_LT_TAGVAR(lt_prog_compiler_pic, $1)"; then _LT_TAGVAR(lt_prog_compiler_pic, $1)="-Xcompiler $_LT_TAGVAR(lt_prog_compiler_pic, $1)" fi ;; esac else # PORTME Check for flag to pass linker flags through the system compiler. case $host_os in aix*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' if test "$host_cpu" = ia64; then # AIX 5 now supports IA64 processor _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' else _LT_TAGVAR(lt_prog_compiler_static, $1)='-bnso -bI:/lib/syscalls.exp' fi ;; mingw* | cygwin* | pw32* | os2* | cegcc*) # This hack is so that the source file can tell whether it is being # built for inclusion in a dll (and should export symbols for example). m4_if([$1], [GCJ], [], [_LT_TAGVAR(lt_prog_compiler_pic, $1)='-DDLL_EXPORT']) ;; hpux9* | hpux10* | hpux11*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' # PIC is the default for IA64 HP-UX and 64-bit HP-UX, but # not for PA HP-UX. case $host_cpu in hppa*64*|ia64*) # +Z the default ;; *) _LT_TAGVAR(lt_prog_compiler_pic, $1)='+Z' ;; esac # Is there a better lt_prog_compiler_static that works with the bundled CC? _LT_TAGVAR(lt_prog_compiler_static, $1)='${wl}-a ${wl}archive' ;; irix5* | irix6* | nonstopux*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' # PIC (with -KPIC) is the default. _LT_TAGVAR(lt_prog_compiler_static, $1)='-non_shared' ;; linux* | k*bsd*-gnu | kopensolaris*-gnu) case $cc_basename in # old Intel for x86_64 which still supported -KPIC. ecc*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-KPIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-static' ;; # icc used to be incompatible with GCC. # ICC 10 doesn't accept -KPIC any more. icc* | ifort*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fPIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-static' ;; # Lahey Fortran 8.1. lf95*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='--shared' _LT_TAGVAR(lt_prog_compiler_static, $1)='--static' ;; nagfor*) # NAG Fortran compiler _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,-Wl,,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-PIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' ;; pgcc* | pgf77* | pgf90* | pgf95* | pgfortran*) # Portland Group compilers (*not* the Pentium gcc compiler, # which looks to be a dead project) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fpic' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' ;; ccc*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' # All Alpha code is PIC. _LT_TAGVAR(lt_prog_compiler_static, $1)='-non_shared' ;; xl* | bgxl* | bgf* | mpixl*) # IBM XL C 8.0/Fortran 10.1, 11.1 on PPC and BlueGene _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-qpic' _LT_TAGVAR(lt_prog_compiler_static, $1)='-qstaticlink' ;; *) case `$CC -V 2>&1 | sed 5q` in *Sun\ Ceres\ Fortran* | *Sun*Fortran*\ [[1-7]].* | *Sun*Fortran*\ 8.[[0-3]]*) # Sun Fortran 8.3 passes all unrecognized flags to the linker _LT_TAGVAR(lt_prog_compiler_pic, $1)='-KPIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' _LT_TAGVAR(lt_prog_compiler_wl, $1)='' ;; *Sun\ F* | *Sun*Fortran*) _LT_TAGVAR(lt_prog_compiler_pic, $1)='-KPIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Qoption ld ' ;; *Sun\ C*) # Sun C 5.9 _LT_TAGVAR(lt_prog_compiler_pic, $1)='-KPIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' ;; *Intel*\ [[CF]]*Compiler*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fPIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-static' ;; *Portland\ Group*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fpic' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' ;; esac ;; esac ;; newsos6) _LT_TAGVAR(lt_prog_compiler_pic, $1)='-KPIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' ;; *nto* | *qnx*) # QNX uses GNU C++, but need to define -shared option too, otherwise # it will coredump. _LT_TAGVAR(lt_prog_compiler_pic, $1)='-fPIC -shared' ;; osf3* | osf4* | osf5*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' # All OSF/1 code is PIC. _LT_TAGVAR(lt_prog_compiler_static, $1)='-non_shared' ;; rdos*) _LT_TAGVAR(lt_prog_compiler_static, $1)='-non_shared' ;; solaris*) _LT_TAGVAR(lt_prog_compiler_pic, $1)='-KPIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' case $cc_basename in f77* | f90* | f95* | sunf77* | sunf90* | sunf95*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Qoption ld ';; *) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,';; esac ;; sunos4*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Qoption ld ' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-PIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' ;; sysv4 | sysv4.2uw2* | sysv4.3*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-KPIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' ;; sysv4*MP*) if test -d /usr/nec ;then _LT_TAGVAR(lt_prog_compiler_pic, $1)='-Kconform_pic' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' fi ;; sysv5* | unixware* | sco3.2v5* | sco5v6* | OpenUNIX*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_pic, $1)='-KPIC' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' ;; unicos*) _LT_TAGVAR(lt_prog_compiler_wl, $1)='-Wl,' _LT_TAGVAR(lt_prog_compiler_can_build_shared, $1)=no ;; uts4*) _LT_TAGVAR(lt_prog_compiler_pic, $1)='-pic' _LT_TAGVAR(lt_prog_compiler_static, $1)='-Bstatic' ;; *) _LT_TAGVAR(lt_prog_compiler_can_build_shared, $1)=no ;; esac fi ]) case $host_os in # For platforms which do not support PIC, -DPIC is meaningless: *djgpp*) _LT_TAGVAR(lt_prog_compiler_pic, $1)= ;; *) _LT_TAGVAR(lt_prog_compiler_pic, $1)="$_LT_TAGVAR(lt_prog_compiler_pic, $1)@&t@m4_if([$1],[],[ -DPIC],[m4_if([$1],[CXX],[ -DPIC],[])])" ;; esac AC_CACHE_CHECK([for $compiler option to produce PIC], [_LT_TAGVAR(lt_cv_prog_compiler_pic, $1)], [_LT_TAGVAR(lt_cv_prog_compiler_pic, $1)=$_LT_TAGVAR(lt_prog_compiler_pic, $1)]) _LT_TAGVAR(lt_prog_compiler_pic, $1)=$_LT_TAGVAR(lt_cv_prog_compiler_pic, $1) # # Check to make sure the PIC flag actually works. # if test -n "$_LT_TAGVAR(lt_prog_compiler_pic, $1)"; then _LT_COMPILER_OPTION([if $compiler PIC flag $_LT_TAGVAR(lt_prog_compiler_pic, $1) works], [_LT_TAGVAR(lt_cv_prog_compiler_pic_works, $1)], [$_LT_TAGVAR(lt_prog_compiler_pic, $1)@&t@m4_if([$1],[],[ -DPIC],[m4_if([$1],[CXX],[ -DPIC],[])])], [], [case $_LT_TAGVAR(lt_prog_compiler_pic, $1) in "" | " "*) ;; *) _LT_TAGVAR(lt_prog_compiler_pic, $1)=" $_LT_TAGVAR(lt_prog_compiler_pic, $1)" ;; esac], [_LT_TAGVAR(lt_prog_compiler_pic, $1)= _LT_TAGVAR(lt_prog_compiler_can_build_shared, $1)=no]) fi _LT_TAGDECL([pic_flag], [lt_prog_compiler_pic], [1], [Additional compiler flags for building library objects]) _LT_TAGDECL([wl], [lt_prog_compiler_wl], [1], [How to pass a linker flag through the compiler]) # # Check to make sure the static flag actually works. # wl=$_LT_TAGVAR(lt_prog_compiler_wl, $1) eval lt_tmp_static_flag=\"$_LT_TAGVAR(lt_prog_compiler_static, $1)\" _LT_LINKER_OPTION([if $compiler static flag $lt_tmp_static_flag works], _LT_TAGVAR(lt_cv_prog_compiler_static_works, $1), $lt_tmp_static_flag, [], [_LT_TAGVAR(lt_prog_compiler_static, $1)=]) _LT_TAGDECL([link_static_flag], [lt_prog_compiler_static], [1], [Compiler flag to prevent dynamic linking]) ])# _LT_COMPILER_PIC # _LT_LINKER_SHLIBS([TAGNAME]) # ---------------------------- # See if the linker supports building shared libraries. m4_defun([_LT_LINKER_SHLIBS], [AC_REQUIRE([LT_PATH_LD])dnl AC_REQUIRE([LT_PATH_NM])dnl m4_require([_LT_PATH_MANIFEST_TOOL])dnl m4_require([_LT_FILEUTILS_DEFAULTS])dnl m4_require([_LT_DECL_EGREP])dnl m4_require([_LT_DECL_SED])dnl m4_require([_LT_CMD_GLOBAL_SYMBOLS])dnl m4_require([_LT_TAG_COMPILER])dnl AC_MSG_CHECKING([whether the $compiler linker ($LD) supports shared libraries]) m4_if([$1], [CXX], [ _LT_TAGVAR(export_symbols_cmds, $1)='$NM $libobjs $convenience | $global_symbol_pipe | $SED '\''s/.* //'\'' | sort | uniq > $export_symbols' _LT_TAGVAR(exclude_expsyms, $1)=['_GLOBAL_OFFSET_TABLE_|_GLOBAL__F[ID]_.*'] case $host_os in aix[[4-9]]*) # If we're using GNU nm, then we don't want the "-C" option. # -C means demangle to AIX nm, but means don't demangle with GNU nm # Also, AIX nm treats weak defined symbols like other global defined # symbols, whereas GNU nm marks them as "W". if $NM -V 2>&1 | $GREP 'GNU' > /dev/null; 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FIXME _LT_TAGVAR(archive_cmds, $1)='$CC -nostart $libobjs $deplibs $compiler_flags ${wl}-soname $wl$soname -o $lib' else _LT_TAGVAR(ld_shlibs, $1)=no fi ;; cygwin* | mingw* | pw32* | cegcc*) # _LT_TAGVAR(hardcode_libdir_flag_spec, $1) is actually meaningless, # as there is no search path for DLLs. _LT_TAGVAR(hardcode_libdir_flag_spec, $1)='-L$libdir' _LT_TAGVAR(export_dynamic_flag_spec, $1)='${wl}--export-all-symbols' _LT_TAGVAR(allow_undefined_flag, $1)=unsupported _LT_TAGVAR(always_export_symbols, $1)=no _LT_TAGVAR(enable_shared_with_static_runtimes, $1)=yes _LT_TAGVAR(export_symbols_cmds, $1)='$NM $libobjs $convenience | $global_symbol_pipe | $SED -e '\''/^[[BCDGRS]][[ ]]/s/.*[[ ]]\([[^ ]]*\)/\1 DATA/;s/^.*[[ ]]__nm__\([[^ ]]*\)[[ ]][[^ ]]*/\1 DATA/;/^I[[ ]]/d;/^[[AITW]][[ ]]/s/.* //'\'' | sort | uniq > $export_symbols' _LT_TAGVAR(exclude_expsyms, $1)=['[_]+GLOBAL_OFFSET_TABLE_|[_]+GLOBAL__[FID]_.*|[_]+head_[A-Za-z0-9_]+_dll|[A-Za-z0-9_]+_dll_iname'] if $LD --help 2>&1 | $GREP 'auto-import' > /dev/null; then _LT_TAGVAR(archive_cmds, $1)='$CC -shared $libobjs $deplibs $compiler_flags -o $output_objdir/$soname ${wl}--enable-auto-image-base -Xlinker --out-implib -Xlinker $lib' # If the export-symbols file already is a .def file (1st line # is EXPORTS), use it as is; otherwise, prepend... _LT_TAGVAR(archive_expsym_cmds, $1)='if test "x`$SED 1q $export_symbols`" = xEXPORTS; then cp $export_symbols $output_objdir/$soname.def; else echo EXPORTS > $output_objdir/$soname.def; cat $export_symbols >> $output_objdir/$soname.def; fi~ $CC -shared $output_objdir/$soname.def $libobjs $deplibs $compiler_flags -o $output_objdir/$soname ${wl}--enable-auto-image-base -Xlinker --out-implib -Xlinker $lib' else _LT_TAGVAR(ld_shlibs, $1)=no fi ;; haiku*) _LT_TAGVAR(archive_cmds, $1)='$CC -shared $libobjs $deplibs $compiler_flags ${wl}-soname $wl$soname -o $lib' _LT_TAGVAR(link_all_deplibs, $1)=yes ;; interix[[3-9]]*) _LT_TAGVAR(hardcode_direct, $1)=no _LT_TAGVAR(hardcode_shlibpath_var, $1)=no _LT_TAGVAR(hardcode_libdir_flag_spec, $1)='${wl}-rpath,$libdir' _LT_TAGVAR(export_dynamic_flag_spec, $1)='${wl}-E' # Hack: On Interix 3.x, we cannot compile PIC because of a broken gcc. # Instead, shared libraries are loaded at an image base (0x10000000 by # default) and relocated if they conflict, which is a slow very memory # consuming and fragmenting process. 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Moving up from 0x10000000 also allows more sbrk(2) space. _LT_TAGVAR(archive_cmds, $1)='$CC -shared $pic_flag $libobjs $deplibs $compiler_flags ${wl}-h,$soname ${wl}--image-base,`expr ${RANDOM-$$} % 4096 / 2 \* 262144 + 1342177280` -o $lib' _LT_TAGVAR(archive_expsym_cmds, $1)='sed "s,^,_," $export_symbols >$output_objdir/$soname.expsym~$CC -shared $pic_flag $libobjs $deplibs $compiler_flags ${wl}-h,$soname ${wl}--retain-symbols-file,$output_objdir/$soname.expsym ${wl}--image-base,`expr ${RANDOM-$$} % 4096 / 2 \* 262144 + 1342177280` -o $lib' ;; gnu* | linux* | tpf* | k*bsd*-gnu | kopensolaris*-gnu) tmp_diet=no if test "$host_os" = linux-dietlibc; then case $cc_basename in diet\ *) tmp_diet=yes;; # linux-dietlibc with static linking (!diet-dyn) esac fi if $LD --help 2>&1 | $EGREP ': supported targets:.* elf' > /dev/null \ && test "$tmp_diet" = no then tmp_addflag=' $pic_flag' tmp_sharedflag='-shared' case $cc_basename,$host_cpu in pgcc*) # Portland Group C compiler _LT_TAGVAR(whole_archive_flag_spec, $1)='${wl}--whole-archive`for conv in $convenience\"\"; do test -n \"$conv\" && new_convenience=\"$new_convenience,$conv\"; done; func_echo_all \"$new_convenience\"` ${wl}--no-whole-archive' tmp_addflag=' $pic_flag' ;; pgf77* | pgf90* | pgf95* | pgfortran*) # Portland Group f77 and f90 compilers _LT_TAGVAR(whole_archive_flag_spec, $1)='${wl}--whole-archive`for conv in $convenience\"\"; do test -n \"$conv\" && new_convenience=\"$new_convenience,$conv\"; done; func_echo_all \"$new_convenience\"` ${wl}--no-whole-archive' tmp_addflag=' $pic_flag -Mnomain' ;; ecc*,ia64* | icc*,ia64*) # Intel C compiler on ia64 tmp_addflag=' -i_dynamic' ;; efc*,ia64* | ifort*,ia64*) # Intel Fortran compiler on ia64 tmp_addflag=' -i_dynamic -nofor_main' ;; ifc* | ifort*) # Intel Fortran compiler tmp_addflag=' -nofor_main' ;; lf95*) # Lahey Fortran 8.1 _LT_TAGVAR(whole_archive_flag_spec, $1)= tmp_sharedflag='--shared' ;; xl[[cC]]* | bgxl[[cC]]* | mpixl[[cC]]*) # IBM XL C 8.0 on PPC (deal with xlf below) tmp_sharedflag='-qmkshrobj' tmp_addflag= ;; nvcc*) # Cuda Compiler Driver 2.2 _LT_TAGVAR(whole_archive_flag_spec, $1)='${wl}--whole-archive`for conv in $convenience\"\"; do test -n \"$conv\" && new_convenience=\"$new_convenience,$conv\"; done; func_echo_all \"$new_convenience\"` ${wl}--no-whole-archive' _LT_TAGVAR(compiler_needs_object, $1)=yes ;; esac case `$CC -V 2>&1 | sed 5q` in *Sun\ C*) # Sun C 5.9 _LT_TAGVAR(whole_archive_flag_spec, $1)='${wl}--whole-archive`new_convenience=; for conv in $convenience\"\"; do test -z \"$conv\" || new_convenience=\"$new_convenience,$conv\"; done; func_echo_all \"$new_convenience\"` ${wl}--no-whole-archive' _LT_TAGVAR(compiler_needs_object, $1)=yes tmp_sharedflag='-G' ;; *Sun\ F*) # Sun Fortran 8.3 tmp_sharedflag='-G' ;; esac _LT_TAGVAR(archive_cmds, $1)='$CC '"$tmp_sharedflag""$tmp_addflag"' $libobjs $deplibs $compiler_flags ${wl}-soname $wl$soname -o $lib' if test "x$supports_anon_versioning" = xyes; then _LT_TAGVAR(archive_expsym_cmds, $1)='echo "{ global:" > $output_objdir/$libname.ver~ cat $export_symbols | sed -e "s/\(.*\)/\1;/" >> $output_objdir/$libname.ver~ echo "local: *; };" >> $output_objdir/$libname.ver~ $CC '"$tmp_sharedflag""$tmp_addflag"' $libobjs $deplibs $compiler_flags ${wl}-soname $wl$soname ${wl}-version-script ${wl}$output_objdir/$libname.ver -o $lib' fi case $cc_basename in xlf* | bgf* | bgxlf* | mpixlf*) # IBM XL Fortran 10.1 on PPC cannot create shared libs itself _LT_TAGVAR(whole_archive_flag_spec, $1)='--whole-archive$convenience --no-whole-archive' _LT_TAGVAR(hardcode_libdir_flag_spec, $1)='${wl}-rpath ${wl}$libdir' _LT_TAGVAR(archive_cmds, $1)='$LD -shared $libobjs $deplibs $linker_flags -soname $soname -o $lib' if test "x$supports_anon_versioning" = xyes; then _LT_TAGVAR(archive_expsym_cmds, $1)='echo "{ global:" > $output_objdir/$libname.ver~ cat $export_symbols | sed -e "s/\(.*\)/\1;/" >> $output_objdir/$libname.ver~ echo "local: *; };" >> $output_objdir/$libname.ver~ $LD -shared $libobjs $deplibs $linker_flags -soname $soname -version-script $output_objdir/$libname.ver -o $lib' fi ;; esac else _LT_TAGVAR(ld_shlibs, $1)=no fi ;; netbsd* | netbsdelf*-gnu) if echo __ELF__ | $CC -E - | $GREP __ELF__ >/dev/null; then _LT_TAGVAR(archive_cmds, $1)='$LD -Bshareable $libobjs $deplibs $linker_flags -o $lib' wlarc= else _LT_TAGVAR(archive_cmds, $1)='$CC -shared $pic_flag $libobjs $deplibs $compiler_flags ${wl}-soname $wl$soname -o $lib' _LT_TAGVAR(archive_expsym_cmds, $1)='$CC -shared $pic_flag $libobjs $deplibs $compiler_flags ${wl}-soname $wl$soname ${wl}-retain-symbols-file $wl$export_symbols -o $lib' fi ;; solaris*) if $LD -v 2>&1 | $GREP 'BFD 2\.8' > /dev/null; then _LT_TAGVAR(ld_shlibs, $1)=no cat <<_LT_EOF 1>&2 *** Warning: The releases 2.8.* of the GNU linker cannot reliably *** create shared libraries on Solaris systems. 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esac ;; darwin* | rhapsody*) _LT_DARWIN_LINKER_FEATURES($1) ;; dgux*) _LT_TAGVAR(archive_cmds, $1)='$LD -G -h $soname -o $lib $libobjs $deplibs $linker_flags' _LT_TAGVAR(hardcode_libdir_flag_spec, $1)='-L$libdir' _LT_TAGVAR(hardcode_shlibpath_var, $1)=no ;; # FreeBSD 2.2.[012] allows us to include c++rt0.o to get C++ constructor # support. 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See the GNU # General Public License for more details. # # You should have received a copy of the GNU General Public License # along with this program; if not, see <http://www.gnu.org/licenses/>. # # As a special exception to the GNU General Public License, if you # distribute this file as part of a program that contains a # configuration script generated by Autoconf, you may include it under # the same distribution terms that you use for the rest of that program. # Originally written by Per Bothner. Please send patches (context # diff format) to <config-patches@gnu.org> and include a ChangeLog # entry. # # This script attempts to guess a canonical system name similar to # config.sub. If it succeeds, it prints the system name on stdout, and # exits with 0. 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The system name ranges from "MiNT" over "FreeMiNT" # to the lowercase version "mint" (or "freemint"). Finally # the system name "TOS" denotes a system which is actually not # MiNT. But MiNT is downward compatible to TOS, so this should # be no problem. atarist[e]:*MiNT:*:* | atarist[e]:*mint:*:* | atarist[e]:*TOS:*:*) echo m68k-atari-mint${UNAME_RELEASE} exit ;; atari*:*MiNT:*:* | atari*:*mint:*:* | atarist[e]:*TOS:*:*) echo m68k-atari-mint${UNAME_RELEASE} exit ;; *falcon*:*MiNT:*:* | *falcon*:*mint:*:* | *falcon*:*TOS:*:*) echo m68k-atari-mint${UNAME_RELEASE} exit ;; milan*:*MiNT:*:* | milan*:*mint:*:* | *milan*:*TOS:*:*) echo m68k-milan-mint${UNAME_RELEASE} exit ;; hades*:*MiNT:*:* | hades*:*mint:*:* | *hades*:*TOS:*:*) echo m68k-hades-mint${UNAME_RELEASE} exit ;; *:*MiNT:*:* | *:*mint:*:* | *:*TOS:*:*) echo m68k-unknown-mint${UNAME_RELEASE} exit ;; m68k:machten:*:*) echo m68k-apple-machten${UNAME_RELEASE} exit ;; powerpc:machten:*:*) echo powerpc-apple-machten${UNAME_RELEASE} exit ;; RISC*:Mach:*:*) echo mips-dec-mach_bsd4.3 exit ;; RISC*:ULTRIX:*:*) echo mips-dec-ultrix${UNAME_RELEASE} exit ;; VAX*:ULTRIX*:*:*) echo vax-dec-ultrix${UNAME_RELEASE} exit ;; 2020:CLIX:*:* | 2430:CLIX:*:*) echo clipper-intergraph-clix${UNAME_RELEASE} exit ;; mips:*:*:UMIPS | mips:*:*:RISCos) eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #ifdef __cplusplus #include <stdio.h> /* for printf() prototype */ int main (int argc, char *argv[]) { #else int main (argc, argv) int argc; char *argv[]; { #endif #if defined (host_mips) && defined (MIPSEB) #if defined (SYSTYPE_SYSV) printf ("mips-mips-riscos%ssysv\n", argv[1]); exit (0); #endif #if defined (SYSTYPE_SVR4) printf ("mips-mips-riscos%ssvr4\n", argv[1]); exit (0); #endif #if defined (SYSTYPE_BSD43) || defined(SYSTYPE_BSD) printf ("mips-mips-riscos%sbsd\n", argv[1]); exit (0); #endif #endif exit (-1); } EOF $CC_FOR_BUILD -o $dummy $dummy.c && dummyarg=`echo "${UNAME_RELEASE}" | sed -n 's/\([0-9]*\).*/\1/p'` && SYSTEM_NAME=`$dummy $dummyarg` && { echo "$SYSTEM_NAME"; exit; } echo mips-mips-riscos${UNAME_RELEASE} exit ;; Motorola:PowerMAX_OS:*:*) echo powerpc-motorola-powermax exit ;; Motorola:*:4.3:PL8-*) echo powerpc-harris-powermax exit ;; Night_Hawk:*:*:PowerMAX_OS | Synergy:PowerMAX_OS:*:*) echo powerpc-harris-powermax exit ;; Night_Hawk:Power_UNIX:*:*) echo powerpc-harris-powerunix exit ;; m88k:CX/UX:7*:*) echo m88k-harris-cxux7 exit ;; m88k:*:4*:R4*) echo m88k-motorola-sysv4 exit ;; m88k:*:3*:R3*) echo m88k-motorola-sysv3 exit ;; AViiON:dgux:*:*) # DG/UX returns AViiON for all architectures UNAME_PROCESSOR=`/usr/bin/uname -p` if [ $UNAME_PROCESSOR = mc88100 ] || [ $UNAME_PROCESSOR = mc88110 ] then if [ ${TARGET_BINARY_INTERFACE}x = m88kdguxelfx ] || \ [ ${TARGET_BINARY_INTERFACE}x = x ] then echo m88k-dg-dgux${UNAME_RELEASE} else echo m88k-dg-dguxbcs${UNAME_RELEASE} fi else echo i586-dg-dgux${UNAME_RELEASE} fi exit ;; M88*:DolphinOS:*:*) # DolphinOS (SVR3) echo m88k-dolphin-sysv3 exit ;; M88*:*:R3*:*) # Delta 88k system running SVR3 echo m88k-motorola-sysv3 exit ;; XD88*:*:*:*) # Tektronix XD88 system running UTekV (SVR3) echo m88k-tektronix-sysv3 exit ;; Tek43[0-9][0-9]:UTek:*:*) # Tektronix 4300 system running UTek (BSD) echo m68k-tektronix-bsd exit ;; *:IRIX*:*:*) echo mips-sgi-irix`echo ${UNAME_RELEASE}|sed -e 's/-/_/g'` exit ;; ????????:AIX?:[12].1:2) # AIX 2.2.1 or AIX 2.1.1 is RT/PC AIX. echo romp-ibm-aix # uname -m gives an 8 hex-code CPU id exit ;; # Note that: echo "'`uname -s`'" gives 'AIX ' i*86:AIX:*:*) echo i386-ibm-aix exit ;; ia64:AIX:*:*) if [ -x /usr/bin/oslevel ] ; then IBM_REV=`/usr/bin/oslevel` else IBM_REV=${UNAME_VERSION}.${UNAME_RELEASE} fi echo ${UNAME_MACHINE}-ibm-aix${IBM_REV} exit ;; *:AIX:2:3) if grep bos325 /usr/include/stdio.h >/dev/null 2>&1; then eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #include <sys/systemcfg.h> main() { if (!__power_pc()) exit(1); puts("powerpc-ibm-aix3.2.5"); exit(0); } EOF if $CC_FOR_BUILD -o $dummy $dummy.c && SYSTEM_NAME=`$dummy` then echo "$SYSTEM_NAME" else echo rs6000-ibm-aix3.2.5 fi elif grep bos324 /usr/include/stdio.h >/dev/null 2>&1; then echo rs6000-ibm-aix3.2.4 else echo rs6000-ibm-aix3.2 fi exit ;; *:AIX:*:[4567]) IBM_CPU_ID=`/usr/sbin/lsdev -C -c processor -S available | sed 1q | awk '{ print $1 }'` if /usr/sbin/lsattr -El ${IBM_CPU_ID} | grep ' POWER' >/dev/null 2>&1; then IBM_ARCH=rs6000 else IBM_ARCH=powerpc fi if [ -x /usr/bin/oslevel ] ; then IBM_REV=`/usr/bin/oslevel` else IBM_REV=${UNAME_VERSION}.${UNAME_RELEASE} fi echo ${IBM_ARCH}-ibm-aix${IBM_REV} exit ;; *:AIX:*:*) echo rs6000-ibm-aix exit ;; ibmrt:4.4BSD:*|romp-ibm:BSD:*) echo romp-ibm-bsd4.4 exit ;; ibmrt:*BSD:*|romp-ibm:BSD:*) # covers RT/PC BSD and echo romp-ibm-bsd${UNAME_RELEASE} # 4.3 with uname added to exit ;; # report: romp-ibm BSD 4.3 *:BOSX:*:*) echo rs6000-bull-bosx exit ;; DPX/2?00:B.O.S.:*:*) echo m68k-bull-sysv3 exit ;; 9000/[34]??:4.3bsd:1.*:*) echo m68k-hp-bsd exit ;; hp300:4.4BSD:*:* | 9000/[34]??:4.3bsd:2.*:*) echo m68k-hp-bsd4.4 exit ;; 9000/[34678]??:HP-UX:*:*) HPUX_REV=`echo ${UNAME_RELEASE}|sed -e 's/[^.]*.[0B]*//'` case "${UNAME_MACHINE}" in 9000/31? ) HP_ARCH=m68000 ;; 9000/[34]?? ) HP_ARCH=m68k ;; 9000/[678][0-9][0-9]) if [ -x /usr/bin/getconf ]; then sc_cpu_version=`/usr/bin/getconf SC_CPU_VERSION 2>/dev/null` sc_kernel_bits=`/usr/bin/getconf SC_KERNEL_BITS 2>/dev/null` case "${sc_cpu_version}" in 523) HP_ARCH="hppa1.0" ;; # CPU_PA_RISC1_0 528) HP_ARCH="hppa1.1" ;; # CPU_PA_RISC1_1 532) # CPU_PA_RISC2_0 case "${sc_kernel_bits}" in 32) HP_ARCH="hppa2.0n" ;; 64) HP_ARCH="hppa2.0w" ;; '') HP_ARCH="hppa2.0" ;; # HP-UX 10.20 esac ;; esac fi if [ "${HP_ARCH}" = "" ]; then eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #define _HPUX_SOURCE #include <stdlib.h> #include <unistd.h> int main () { #if defined(_SC_KERNEL_BITS) long bits = sysconf(_SC_KERNEL_BITS); #endif long cpu = sysconf (_SC_CPU_VERSION); switch (cpu) { case CPU_PA_RISC1_0: puts ("hppa1.0"); break; case CPU_PA_RISC1_1: puts ("hppa1.1"); break; case CPU_PA_RISC2_0: #if defined(_SC_KERNEL_BITS) switch (bits) { case 64: puts ("hppa2.0w"); break; case 32: puts ("hppa2.0n"); break; default: puts ("hppa2.0"); break; } break; #else /* !defined(_SC_KERNEL_BITS) */ puts ("hppa2.0"); break; #endif default: puts ("hppa1.0"); break; } exit (0); } EOF (CCOPTS= $CC_FOR_BUILD -o $dummy $dummy.c 2>/dev/null) && HP_ARCH=`$dummy` test -z "$HP_ARCH" && HP_ARCH=hppa fi ;; esac if [ ${HP_ARCH} = "hppa2.0w" ] then eval $set_cc_for_build # hppa2.0w-hp-hpux* has a 64-bit kernel and a compiler generating # 32-bit code. hppa64-hp-hpux* has the same kernel and a compiler # generating 64-bit code. GNU and HP use different nomenclature: # # $ CC_FOR_BUILD=cc ./config.guess # => hppa2.0w-hp-hpux11.23 # $ CC_FOR_BUILD="cc +DA2.0w" ./config.guess # => hppa64-hp-hpux11.23 if echo __LP64__ | (CCOPTS= $CC_FOR_BUILD -E - 2>/dev/null) | grep -q __LP64__ then HP_ARCH="hppa2.0w" else HP_ARCH="hppa64" fi fi echo ${HP_ARCH}-hp-hpux${HPUX_REV} exit ;; ia64:HP-UX:*:*) HPUX_REV=`echo ${UNAME_RELEASE}|sed -e 's/[^.]*.[0B]*//'` echo ia64-hp-hpux${HPUX_REV} exit ;; 3050*:HI-UX:*:*) eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #include <unistd.h> int main () { long cpu = sysconf (_SC_CPU_VERSION); /* The order matters, because CPU_IS_HP_MC68K erroneously returns true for CPU_PA_RISC1_0. CPU_IS_PA_RISC returns correct results, however. */ if (CPU_IS_PA_RISC (cpu)) { switch (cpu) { case CPU_PA_RISC1_0: puts ("hppa1.0-hitachi-hiuxwe2"); break; case CPU_PA_RISC1_1: puts ("hppa1.1-hitachi-hiuxwe2"); break; case CPU_PA_RISC2_0: puts ("hppa2.0-hitachi-hiuxwe2"); break; default: puts ("hppa-hitachi-hiuxwe2"); break; } } else if (CPU_IS_HP_MC68K (cpu)) puts ("m68k-hitachi-hiuxwe2"); else puts ("unknown-hitachi-hiuxwe2"); exit (0); } EOF $CC_FOR_BUILD -o $dummy $dummy.c && SYSTEM_NAME=`$dummy` && { echo "$SYSTEM_NAME"; exit; } echo unknown-hitachi-hiuxwe2 exit ;; 9000/7??:4.3bsd:*:* | 9000/8?[79]:4.3bsd:*:* ) echo hppa1.1-hp-bsd exit ;; 9000/8??:4.3bsd:*:*) echo hppa1.0-hp-bsd exit ;; *9??*:MPE/iX:*:* | *3000*:MPE/iX:*:*) echo hppa1.0-hp-mpeix exit ;; hp7??:OSF1:*:* | hp8?[79]:OSF1:*:* ) echo hppa1.1-hp-osf exit ;; hp8??:OSF1:*:*) echo hppa1.0-hp-osf exit ;; i*86:OSF1:*:*) if [ -x /usr/sbin/sysversion ] ; then echo ${UNAME_MACHINE}-unknown-osf1mk else echo ${UNAME_MACHINE}-unknown-osf1 fi exit ;; parisc*:Lites*:*:*) echo hppa1.1-hp-lites exit ;; C1*:ConvexOS:*:* | convex:ConvexOS:C1*:*) echo c1-convex-bsd exit ;; C2*:ConvexOS:*:* | convex:ConvexOS:C2*:*) if getsysinfo -f scalar_acc then echo c32-convex-bsd else echo c2-convex-bsd fi exit ;; C34*:ConvexOS:*:* | convex:ConvexOS:C34*:*) echo c34-convex-bsd exit ;; C38*:ConvexOS:*:* | convex:ConvexOS:C38*:*) echo c38-convex-bsd exit ;; C4*:ConvexOS:*:* | convex:ConvexOS:C4*:*) echo c4-convex-bsd exit ;; CRAY*Y-MP:*:*:*) echo ymp-cray-unicos${UNAME_RELEASE} | sed -e 's/\.[^.]*$/.X/' exit ;; CRAY*[A-Z]90:*:*:*) echo ${UNAME_MACHINE}-cray-unicos${UNAME_RELEASE} \ | sed -e 's/CRAY.*\([A-Z]90\)/\1/' \ -e y/ABCDEFGHIJKLMNOPQRSTUVWXYZ/abcdefghijklmnopqrstuvwxyz/ \ -e 's/\.[^.]*$/.X/' exit ;; CRAY*TS:*:*:*) echo t90-cray-unicos${UNAME_RELEASE} | sed -e 's/\.[^.]*$/.X/' exit ;; CRAY*T3E:*:*:*) echo alphaev5-cray-unicosmk${UNAME_RELEASE} | sed -e 's/\.[^.]*$/.X/' exit ;; CRAY*SV1:*:*:*) echo sv1-cray-unicos${UNAME_RELEASE} | sed -e 's/\.[^.]*$/.X/' exit ;; *:UNICOS/mp:*:*) echo craynv-cray-unicosmp${UNAME_RELEASE} | sed -e 's/\.[^.]*$/.X/' exit ;; F30[01]:UNIX_System_V:*:* | F700:UNIX_System_V:*:*) FUJITSU_PROC=`uname -m | tr 'ABCDEFGHIJKLMNOPQRSTUVWXYZ' 'abcdefghijklmnopqrstuvwxyz'` FUJITSU_SYS=`uname -p | tr 'ABCDEFGHIJKLMNOPQRSTUVWXYZ' 'abcdefghijklmnopqrstuvwxyz' | sed -e 's/\///'` FUJITSU_REL=`echo ${UNAME_RELEASE} | sed -e 's/ /_/'` echo "${FUJITSU_PROC}-fujitsu-${FUJITSU_SYS}${FUJITSU_REL}" exit ;; 5000:UNIX_System_V:4.*:*) FUJITSU_SYS=`uname -p | tr 'ABCDEFGHIJKLMNOPQRSTUVWXYZ' 'abcdefghijklmnopqrstuvwxyz' | sed -e 's/\///'` FUJITSU_REL=`echo ${UNAME_RELEASE} | tr 'ABCDEFGHIJKLMNOPQRSTUVWXYZ' 'abcdefghijklmnopqrstuvwxyz' | sed -e 's/ /_/'` echo "sparc-fujitsu-${FUJITSU_SYS}${FUJITSU_REL}" exit ;; i*86:BSD/386:*:* | i*86:BSD/OS:*:* | *:Ascend\ Embedded/OS:*:*) echo ${UNAME_MACHINE}-pc-bsdi${UNAME_RELEASE} exit ;; sparc*:BSD/OS:*:*) echo sparc-unknown-bsdi${UNAME_RELEASE} exit ;; *:BSD/OS:*:*) echo ${UNAME_MACHINE}-unknown-bsdi${UNAME_RELEASE} exit ;; *:FreeBSD:*:*) UNAME_PROCESSOR=`/usr/bin/uname -p` case ${UNAME_PROCESSOR} in amd64) echo x86_64-unknown-freebsd`echo ${UNAME_RELEASE}|sed -e 's/[-(].*//'` ;; *) echo ${UNAME_PROCESSOR}-unknown-freebsd`echo ${UNAME_RELEASE}|sed -e 's/[-(].*//'` ;; esac exit ;; i*:CYGWIN*:*) echo ${UNAME_MACHINE}-pc-cygwin exit ;; *:MINGW*:*) echo ${UNAME_MACHINE}-pc-mingw32 exit ;; i*:MSYS*:*) echo ${UNAME_MACHINE}-pc-msys exit ;; i*:windows32*:*) # uname -m includes "-pc" on this system. echo ${UNAME_MACHINE}-mingw32 exit ;; i*:PW*:*) echo ${UNAME_MACHINE}-pc-pw32 exit ;; *:Interix*:*) case ${UNAME_MACHINE} in x86) echo i586-pc-interix${UNAME_RELEASE} exit ;; authenticamd | genuineintel | EM64T) echo x86_64-unknown-interix${UNAME_RELEASE} exit ;; IA64) echo ia64-unknown-interix${UNAME_RELEASE} exit ;; esac ;; [345]86:Windows_95:* | [345]86:Windows_98:* | [345]86:Windows_NT:*) echo i${UNAME_MACHINE}-pc-mks exit ;; 8664:Windows_NT:*) echo x86_64-pc-mks exit ;; i*:Windows_NT*:* | Pentium*:Windows_NT*:*) # How do we know it's Interix rather than the generic POSIX subsystem? # It also conflicts with pre-2.0 versions of AT&T UWIN. Should we # UNAME_MACHINE based on the output of uname instead of i386? echo i586-pc-interix exit ;; i*:UWIN*:*) echo ${UNAME_MACHINE}-pc-uwin exit ;; amd64:CYGWIN*:*:* | x86_64:CYGWIN*:*:*) echo x86_64-unknown-cygwin exit ;; p*:CYGWIN*:*) echo powerpcle-unknown-cygwin exit ;; prep*:SunOS:5.*:*) echo powerpcle-unknown-solaris2`echo ${UNAME_RELEASE}|sed -e 's/[^.]*//'` exit ;; *:GNU:*:*) # the GNU system echo `echo ${UNAME_MACHINE}|sed -e 's,[-/].*$,,'`-unknown-gnu`echo ${UNAME_RELEASE}|sed -e 's,/.*$,,'` exit ;; *:GNU/*:*:*) # other systems with GNU libc and userland echo ${UNAME_MACHINE}-unknown-`echo ${UNAME_SYSTEM} | sed 's,^[^/]*/,,' | tr '[A-Z]' '[a-z]'``echo ${UNAME_RELEASE}|sed -e 's/[-(].*//'`-gnu exit ;; i*86:Minix:*:*) echo ${UNAME_MACHINE}-pc-minix exit ;; aarch64:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; aarch64_be:Linux:*:*) UNAME_MACHINE=aarch64_be echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; alpha:Linux:*:*) case `sed -n '/^cpu model/s/^.*: \(.*\)/\1/p' < /proc/cpuinfo` in EV5) UNAME_MACHINE=alphaev5 ;; EV56) UNAME_MACHINE=alphaev56 ;; PCA56) UNAME_MACHINE=alphapca56 ;; PCA57) UNAME_MACHINE=alphapca56 ;; EV6) UNAME_MACHINE=alphaev6 ;; EV67) UNAME_MACHINE=alphaev67 ;; EV68*) UNAME_MACHINE=alphaev68 ;; esac objdump --private-headers /bin/sh | grep -q ld.so.1 if test "$?" = 0 ; then LIBC="libc1" ; else LIBC="" ; fi echo ${UNAME_MACHINE}-unknown-linux-gnu${LIBC} exit ;; arm*:Linux:*:*) eval $set_cc_for_build if echo __ARM_EABI__ | $CC_FOR_BUILD -E - 2>/dev/null \ | grep -q __ARM_EABI__ then echo ${UNAME_MACHINE}-unknown-linux-gnu else if echo __ARM_PCS_VFP | $CC_FOR_BUILD -E - 2>/dev/null \ | grep -q __ARM_PCS_VFP then echo ${UNAME_MACHINE}-unknown-linux-gnueabi else echo ${UNAME_MACHINE}-unknown-linux-gnueabihf fi fi exit ;; avr32*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; cris:Linux:*:*) echo ${UNAME_MACHINE}-axis-linux-gnu exit ;; crisv32:Linux:*:*) echo ${UNAME_MACHINE}-axis-linux-gnu exit ;; frv:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; hexagon:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; i*86:Linux:*:*) LIBC=gnu eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #ifdef __dietlibc__ LIBC=dietlibc #endif EOF eval `$CC_FOR_BUILD -E $dummy.c 2>/dev/null | grep '^LIBC'` echo "${UNAME_MACHINE}-pc-linux-${LIBC}" exit ;; ia64:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; m32r*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; m68*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; mips:Linux:*:* | mips64:Linux:*:*) eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #undef CPU #undef ${UNAME_MACHINE} #undef ${UNAME_MACHINE}el #if defined(__MIPSEL__) || defined(__MIPSEL) || defined(_MIPSEL) || defined(MIPSEL) CPU=${UNAME_MACHINE}el #else #if defined(__MIPSEB__) || defined(__MIPSEB) || defined(_MIPSEB) || defined(MIPSEB) CPU=${UNAME_MACHINE} #else CPU= #endif #endif EOF eval `$CC_FOR_BUILD -E $dummy.c 2>/dev/null | grep '^CPU'` test x"${CPU}" != x && { echo "${CPU}-unknown-linux-gnu"; exit; } ;; or32:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; padre:Linux:*:*) echo sparc-unknown-linux-gnu exit ;; parisc64:Linux:*:* | hppa64:Linux:*:*) echo hppa64-unknown-linux-gnu exit ;; parisc:Linux:*:* | hppa:Linux:*:*) # Look for CPU level case `grep '^cpu[^a-z]*:' /proc/cpuinfo 2>/dev/null | cut -d' ' -f2` in PA7*) echo hppa1.1-unknown-linux-gnu ;; PA8*) echo hppa2.0-unknown-linux-gnu ;; *) echo hppa-unknown-linux-gnu ;; esac exit ;; ppc64:Linux:*:*) echo powerpc64-unknown-linux-gnu exit ;; ppc:Linux:*:*) echo powerpc-unknown-linux-gnu exit ;; s390:Linux:*:* | s390x:Linux:*:*) echo ${UNAME_MACHINE}-ibm-linux exit ;; sh64*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; sh*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; sparc:Linux:*:* | sparc64:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; tile*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; vax:Linux:*:*) echo ${UNAME_MACHINE}-dec-linux-gnu exit ;; x86_64:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; xtensa*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; i*86:DYNIX/ptx:4*:*) # ptx 4.0 does uname -s correctly, with DYNIX/ptx in there. # earlier versions are messed up and put the nodename in both # sysname and nodename. echo i386-sequent-sysv4 exit ;; i*86:UNIX_SV:4.2MP:2.*) # Unixware is an offshoot of SVR4, but it has its own version # number series starting with 2... # I am not positive that other SVR4 systems won't match this, # I just have to hope. -- rms. # Use sysv4.2uw... so that sysv4* matches it. echo ${UNAME_MACHINE}-pc-sysv4.2uw${UNAME_VERSION} exit ;; i*86:OS/2:*:*) # If we were able to find `uname', then EMX Unix compatibility # is probably installed. echo ${UNAME_MACHINE}-pc-os2-emx exit ;; i*86:XTS-300:*:STOP) echo ${UNAME_MACHINE}-unknown-stop exit ;; i*86:atheos:*:*) echo ${UNAME_MACHINE}-unknown-atheos exit ;; i*86:syllable:*:*) echo ${UNAME_MACHINE}-pc-syllable exit ;; i*86:LynxOS:2.*:* | i*86:LynxOS:3.[01]*:* | i*86:LynxOS:4.[02]*:*) echo i386-unknown-lynxos${UNAME_RELEASE} exit ;; i*86:*DOS:*:*) echo ${UNAME_MACHINE}-pc-msdosdjgpp exit ;; i*86:*:4.*:* | i*86:SYSTEM_V:4.*:*) UNAME_REL=`echo ${UNAME_RELEASE} | sed 's/\/MP$//'` if grep Novell /usr/include/link.h >/dev/null 2>/dev/null; then echo ${UNAME_MACHINE}-univel-sysv${UNAME_REL} else echo ${UNAME_MACHINE}-pc-sysv${UNAME_REL} fi exit ;; i*86:*:5:[678]*) # UnixWare 7.x, OpenUNIX and OpenServer 6. case `/bin/uname -X | grep "^Machine"` in *486*) UNAME_MACHINE=i486 ;; *Pentium) UNAME_MACHINE=i586 ;; *Pent*|*Celeron) UNAME_MACHINE=i686 ;; esac echo ${UNAME_MACHINE}-unknown-sysv${UNAME_RELEASE}${UNAME_SYSTEM}${UNAME_VERSION} exit ;; i*86:*:3.2:*) if test -f /usr/options/cb.name; then UNAME_REL=`sed -n 's/.*Version //p' </usr/options/cb.name` echo ${UNAME_MACHINE}-pc-isc$UNAME_REL elif /bin/uname -X 2>/dev/null >/dev/null ; then UNAME_REL=`(/bin/uname -X|grep Release|sed -e 's/.*= //')` (/bin/uname -X|grep i80486 >/dev/null) && UNAME_MACHINE=i486 (/bin/uname -X|grep '^Machine.*Pentium' >/dev/null) \ && UNAME_MACHINE=i586 (/bin/uname -X|grep '^Machine.*Pent *II' >/dev/null) \ && UNAME_MACHINE=i686 (/bin/uname -X|grep '^Machine.*Pentium Pro' >/dev/null) \ && UNAME_MACHINE=i686 echo ${UNAME_MACHINE}-pc-sco$UNAME_REL else echo ${UNAME_MACHINE}-pc-sysv32 fi exit ;; pc:*:*:*) # Left here for compatibility: # uname -m prints for DJGPP always 'pc', but it prints nothing about # the processor, so we play safe by assuming i586. # Note: whatever this is, it MUST be the same as what config.sub # prints for the "djgpp" host, or else GDB configury will decide that # this is a cross-build. echo i586-pc-msdosdjgpp exit ;; Intel:Mach:3*:*) echo i386-pc-mach3 exit ;; paragon:*:*:*) echo i860-intel-osf1 exit ;; i860:*:4.*:*) # i860-SVR4 if grep Stardent /usr/include/sys/uadmin.h >/dev/null 2>&1 ; then echo i860-stardent-sysv${UNAME_RELEASE} # Stardent Vistra i860-SVR4 else # Add other i860-SVR4 vendors below as they are discovered. echo i860-unknown-sysv${UNAME_RELEASE} # Unknown i860-SVR4 fi exit ;; mini*:CTIX:SYS*5:*) # "miniframe" echo m68010-convergent-sysv exit ;; mc68k:UNIX:SYSTEM5:3.51m) echo m68k-convergent-sysv exit ;; M680?0:D-NIX:5.3:*) echo m68k-diab-dnix exit ;; M68*:*:R3V[5678]*:*) test -r /sysV68 && { echo 'm68k-motorola-sysv'; exit; } ;; 3[345]??:*:4.0:3.0 | 3[34]??A:*:4.0:3.0 | 3[34]??,*:*:4.0:3.0 | 3[34]??/*:*:4.0:3.0 | 4400:*:4.0:3.0 | 4850:*:4.0:3.0 | SKA40:*:4.0:3.0 | SDS2:*:4.0:3.0 | SHG2:*:4.0:3.0 | S7501*:*:4.0:3.0) OS_REL='' test -r /etc/.relid \ && OS_REL=.`sed -n 's/[^ ]* [^ ]* \([0-9][0-9]\).*/\1/p' < /etc/.relid` /bin/uname -p 2>/dev/null | grep 86 >/dev/null \ && { echo i486-ncr-sysv4.3${OS_REL}; exit; } /bin/uname -p 2>/dev/null | /bin/grep entium >/dev/null \ && { echo i586-ncr-sysv4.3${OS_REL}; exit; } ;; 3[34]??:*:4.0:* | 3[34]??,*:*:4.0:*) /bin/uname -p 2>/dev/null | grep 86 >/dev/null \ && { echo i486-ncr-sysv4; exit; } ;; NCR*:*:4.2:* | MPRAS*:*:4.2:*) OS_REL='.3' test -r /etc/.relid \ && OS_REL=.`sed -n 's/[^ ]* [^ ]* \([0-9][0-9]\).*/\1/p' < /etc/.relid` /bin/uname -p 2>/dev/null | grep 86 >/dev/null \ && { echo i486-ncr-sysv4.3${OS_REL}; exit; } /bin/uname -p 2>/dev/null | /bin/grep entium >/dev/null \ && { echo i586-ncr-sysv4.3${OS_REL}; exit; } /bin/uname -p 2>/dev/null | /bin/grep pteron >/dev/null \ && { echo i586-ncr-sysv4.3${OS_REL}; exit; } ;; m68*:LynxOS:2.*:* | m68*:LynxOS:3.0*:*) echo m68k-unknown-lynxos${UNAME_RELEASE} exit ;; mc68030:UNIX_System_V:4.*:*) echo m68k-atari-sysv4 exit ;; TSUNAMI:LynxOS:2.*:*) echo sparc-unknown-lynxos${UNAME_RELEASE} exit ;; rs6000:LynxOS:2.*:*) echo rs6000-unknown-lynxos${UNAME_RELEASE} exit ;; PowerPC:LynxOS:2.*:* | PowerPC:LynxOS:3.[01]*:* | PowerPC:LynxOS:4.[02]*:*) echo powerpc-unknown-lynxos${UNAME_RELEASE} exit ;; SM[BE]S:UNIX_SV:*:*) echo mips-dde-sysv${UNAME_RELEASE} exit ;; RM*:ReliantUNIX-*:*:*) echo mips-sni-sysv4 exit ;; RM*:SINIX-*:*:*) echo mips-sni-sysv4 exit ;; *:SINIX-*:*:*) if uname -p 2>/dev/null >/dev/null ; then UNAME_MACHINE=`(uname -p) 2>/dev/null` echo ${UNAME_MACHINE}-sni-sysv4 else echo ns32k-sni-sysv fi exit ;; PENTIUM:*:4.0*:*) # Unisys `ClearPath HMP IX 4000' SVR4/MP effort # says <Richard.M.Bartel@ccMail.Census.GOV> echo i586-unisys-sysv4 exit ;; *:UNIX_System_V:4*:FTX*) # From Gerald Hewes <hewes@openmarket.com>. # How about differentiating between stratus architectures? -djm echo hppa1.1-stratus-sysv4 exit ;; *:*:*:FTX*) # From seanf@swdc.stratus.com. echo i860-stratus-sysv4 exit ;; i*86:VOS:*:*) # From Paul.Green@stratus.com. echo ${UNAME_MACHINE}-stratus-vos exit ;; *:VOS:*:*) # From Paul.Green@stratus.com. echo hppa1.1-stratus-vos exit ;; mc68*:A/UX:*:*) echo m68k-apple-aux${UNAME_RELEASE} exit ;; news*:NEWS-OS:6*:*) echo mips-sony-newsos6 exit ;; R[34]000:*System_V*:*:* | R4000:UNIX_SYSV:*:* | R*000:UNIX_SV:*:*) if [ -d /usr/nec ]; then echo mips-nec-sysv${UNAME_RELEASE} else echo mips-unknown-sysv${UNAME_RELEASE} fi exit ;; BeBox:BeOS:*:*) # BeOS running on hardware made by Be, PPC only. echo powerpc-be-beos exit ;; BeMac:BeOS:*:*) # BeOS running on Mac or Mac clone, PPC only. echo powerpc-apple-beos exit ;; BePC:BeOS:*:*) # BeOS running on Intel PC compatible. echo i586-pc-beos exit ;; BePC:Haiku:*:*) # Haiku running on Intel PC compatible. echo i586-pc-haiku exit ;; SX-4:SUPER-UX:*:*) echo sx4-nec-superux${UNAME_RELEASE} exit ;; SX-5:SUPER-UX:*:*) echo sx5-nec-superux${UNAME_RELEASE} exit ;; SX-6:SUPER-UX:*:*) echo sx6-nec-superux${UNAME_RELEASE} exit ;; SX-7:SUPER-UX:*:*) echo sx7-nec-superux${UNAME_RELEASE} exit ;; SX-8:SUPER-UX:*:*) echo sx8-nec-superux${UNAME_RELEASE} exit ;; SX-8R:SUPER-UX:*:*) echo sx8r-nec-superux${UNAME_RELEASE} exit ;; Power*:Rhapsody:*:*) echo powerpc-apple-rhapsody${UNAME_RELEASE} exit ;; *:Rhapsody:*:*) echo ${UNAME_MACHINE}-apple-rhapsody${UNAME_RELEASE} exit ;; *:Darwin:*:*) UNAME_PROCESSOR=`uname -p` || UNAME_PROCESSOR=unknown case $UNAME_PROCESSOR in i386) eval $set_cc_for_build if [ "$CC_FOR_BUILD" != 'no_compiler_found' ]; then if (echo '#ifdef __LP64__'; echo IS_64BIT_ARCH; echo '#endif') | \ (CCOPTS= $CC_FOR_BUILD -E - 2>/dev/null) | \ grep IS_64BIT_ARCH >/dev/null then UNAME_PROCESSOR="x86_64" fi fi ;; unknown) UNAME_PROCESSOR=powerpc ;; esac echo ${UNAME_PROCESSOR}-apple-darwin${UNAME_RELEASE} exit ;; *:procnto*:*:* | *:QNX:[0123456789]*:*) UNAME_PROCESSOR=`uname -p` if test "$UNAME_PROCESSOR" = "x86"; then UNAME_PROCESSOR=i386 UNAME_MACHINE=pc fi echo ${UNAME_PROCESSOR}-${UNAME_MACHINE}-nto-qnx${UNAME_RELEASE} exit ;; *:QNX:*:4*) echo i386-pc-qnx exit ;; NEO-?:NONSTOP_KERNEL:*:*) echo neo-tandem-nsk${UNAME_RELEASE} exit ;; NSE-?:NONSTOP_KERNEL:*:*) echo nse-tandem-nsk${UNAME_RELEASE} exit ;; NSR-?:NONSTOP_KERNEL:*:*) echo nsr-tandem-nsk${UNAME_RELEASE} exit ;; *:NonStop-UX:*:*) echo mips-compaq-nonstopux exit ;; BS2000:POSIX*:*:*) echo bs2000-siemens-sysv exit ;; DS/*:UNIX_System_V:*:*) echo ${UNAME_MACHINE}-${UNAME_SYSTEM}-${UNAME_RELEASE} exit ;; *:Plan9:*:*) # "uname -m" is not consistent, so use $cputype instead. 386 # is converted to i386 for consistency with other x86 # operating systems. if test "$cputype" = "386"; then UNAME_MACHINE=i386 else UNAME_MACHINE="$cputype" fi echo ${UNAME_MACHINE}-unknown-plan9 exit ;; *:TOPS-10:*:*) echo pdp10-unknown-tops10 exit ;; *:TENEX:*:*) echo pdp10-unknown-tenex exit ;; KS10:TOPS-20:*:* | KL10:TOPS-20:*:* | TYPE4:TOPS-20:*:*) echo pdp10-dec-tops20 exit ;; XKL-1:TOPS-20:*:* | TYPE5:TOPS-20:*:*) echo pdp10-xkl-tops20 exit ;; *:TOPS-20:*:*) echo pdp10-unknown-tops20 exit ;; *:ITS:*:*) echo pdp10-unknown-its exit ;; SEI:*:*:SEIUX) echo mips-sei-seiux${UNAME_RELEASE} exit ;; *:DragonFly:*:*) echo ${UNAME_MACHINE}-unknown-dragonfly`echo ${UNAME_RELEASE}|sed -e 's/[-(].*//'` exit ;; *:*VMS:*:*) UNAME_MACHINE=`(uname -p) 2>/dev/null` case "${UNAME_MACHINE}" in A*) echo alpha-dec-vms ; exit ;; I*) echo ia64-dec-vms ; exit ;; V*) echo vax-dec-vms ; exit ;; esac ;; *:XENIX:*:SysV) echo i386-pc-xenix exit ;; i*86:skyos:*:*) echo ${UNAME_MACHINE}-pc-skyos`echo ${UNAME_RELEASE}` | sed -e 's/ .*$//' exit ;; i*86:rdos:*:*) echo ${UNAME_MACHINE}-pc-rdos exit ;; i*86:AROS:*:*) echo ${UNAME_MACHINE}-pc-aros exit ;; x86_64:VMkernel:*:*) echo ${UNAME_MACHINE}-unknown-esx exit ;; esac #echo '(No uname command or uname output not recognized.)' 1>&2 #echo "${UNAME_MACHINE}:${UNAME_SYSTEM}:${UNAME_RELEASE}:${UNAME_VERSION}" 1>&2 eval $set_cc_for_build cat >$dummy.c <<EOF #ifdef _SEQUENT_ # include <sys/types.h> # include <sys/utsname.h> #endif main () { #if defined (sony) #if defined (MIPSEB) /* BFD wants "bsd" instead of "newsos". Perhaps BFD should be changed, I don't know.... */ printf ("mips-sony-bsd\n"); exit (0); #else #include <sys/param.h> printf ("m68k-sony-newsos%s\n", #ifdef NEWSOS4 "4" #else "" #endif ); exit (0); #endif #endif #if defined (__arm) && defined (__acorn) && defined (__unix) printf ("arm-acorn-riscix\n"); exit (0); #endif #if defined (hp300) && !defined (hpux) printf ("m68k-hp-bsd\n"); exit (0); #endif #if defined (NeXT) #if !defined (__ARCHITECTURE__) #define __ARCHITECTURE__ "m68k" #endif int version; version=`(hostinfo | sed -n 's/.*NeXT Mach \([0-9]*\).*/\1/p') 2>/dev/null`; if (version < 4) printf ("%s-next-nextstep%d\n", __ARCHITECTURE__, version); else printf ("%s-next-openstep%d\n", __ARCHITECTURE__, version); exit (0); #endif #if defined (MULTIMAX) || defined (n16) #if defined (UMAXV) printf ("ns32k-encore-sysv\n"); exit (0); #else #if defined (CMU) printf ("ns32k-encore-mach\n"); exit (0); #else printf ("ns32k-encore-bsd\n"); exit (0); #endif #endif #endif #if defined (__386BSD__) printf ("i386-pc-bsd\n"); exit (0); #endif #if defined (sequent) #if defined (i386) printf ("i386-sequent-dynix\n"); exit (0); #endif #if defined (ns32000) printf ("ns32k-sequent-dynix\n"); exit (0); #endif #endif #if defined (_SEQUENT_) struct utsname un; uname(&un); if (strncmp(un.version, "V2", 2) == 0) { printf ("i386-sequent-ptx2\n"); exit (0); } if (strncmp(un.version, "V1", 2) == 0) { /* XXX is V1 correct? */ printf ("i386-sequent-ptx1\n"); exit (0); } printf ("i386-sequent-ptx\n"); exit (0); #endif #if defined (vax) # if !defined (ultrix) # include <sys/param.h> # if defined (BSD) # if BSD == 43 printf ("vax-dec-bsd4.3\n"); exit (0); # else # if BSD == 199006 printf ("vax-dec-bsd4.3reno\n"); exit (0); # else printf ("vax-dec-bsd\n"); exit (0); # endif # endif # else printf ("vax-dec-bsd\n"); exit (0); # endif # else printf ("vax-dec-ultrix\n"); exit (0); # endif #endif #if defined (alliant) && defined (i860) printf ("i860-alliant-bsd\n"); exit (0); #endif exit (1); } EOF $CC_FOR_BUILD -o $dummy $dummy.c 2>/dev/null && SYSTEM_NAME=`$dummy` && { echo "$SYSTEM_NAME"; exit; } # Apollos put the system type in the environment. test -d /usr/apollo && { echo ${ISP}-apollo-${SYSTYPE}; exit; } # Convex versions that predate uname can use getsysinfo(1) if [ -x /usr/convex/getsysinfo ] then case `getsysinfo -f cpu_type` in c1*) echo c1-convex-bsd exit ;; c2*) if getsysinfo -f scalar_acc then echo c32-convex-bsd else echo c2-convex-bsd fi exit ;; c34*) echo c34-convex-bsd exit ;; c38*) echo c38-convex-bsd exit ;; c4*) echo c4-convex-bsd exit ;; esac fi cat >&2 <<EOF $0: unable to guess system type This script, last modified $timestamp, has failed to recognize the operating system you are using. It is advised that you download the most up to date version of the config scripts from http://git.savannah.gnu.org/gitweb/?p=config.git;a=blob_plain;f=config.guess;hb=HEAD and http://git.savannah.gnu.org/gitweb/?p=config.git;a=blob_plain;f=config.sub;hb=HEAD If the version you run ($0) is already up to date, please send the following data and any information you think might be pertinent to <config-patches@gnu.org> in order to provide the needed information to handle your system. config.guess timestamp = $timestamp uname -m = `(uname -m) 2>/dev/null || echo unknown` uname -r = `(uname -r) 2>/dev/null || echo unknown` uname -s = `(uname -s) 2>/dev/null || echo unknown` uname -v = `(uname -v) 2>/dev/null || echo unknown` /usr/bin/uname -p = `(/usr/bin/uname -p) 2>/dev/null` /bin/uname -X = `(/bin/uname -X) 2>/dev/null` hostinfo = `(hostinfo) 2>/dev/null` /bin/universe = `(/bin/universe) 2>/dev/null` /usr/bin/arch -k = `(/usr/bin/arch -k) 2>/dev/null` /bin/arch = `(/bin/arch) 2>/dev/null` /usr/bin/oslevel = `(/usr/bin/oslevel) 2>/dev/null` /usr/convex/getsysinfo = `(/usr/convex/getsysinfo) 2>/dev/null` UNAME_MACHINE = ${UNAME_MACHINE} UNAME_RELEASE = ${UNAME_RELEASE} UNAME_SYSTEM = ${UNAME_SYSTEM} UNAME_VERSION = ${UNAME_VERSION} EOF exit 1 # Local variables: # eval: (add-hook 'write-file-hooks 'time-stamp) # time-stamp-start: "timestamp='" # time-stamp-format: "%:y-%02m-%02d" # time-stamp-end: "'" # End: ��������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/config/lt~obsolete.m4������������������������������������������������������������������0000644�0001750�0001750�00000013756�12343351634�014032� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������# lt~obsolete.m4 -- aclocal satisfying obsolete definitions. -*-Autoconf-*- # # Copyright (C) 2004, 2005, 2007, 2009 Free Software Foundation, Inc. # Written by Scott James Remnant, 2004. # # This file is free software; the Free Software Foundation gives # unlimited permission to copy and/or distribute it, with or without # modifications, as long as this notice is preserved. # serial 5 lt~obsolete.m4 # These exist entirely to fool aclocal when bootstrapping libtool. # # In the past libtool.m4 has provided macros via AC_DEFUN (or AU_DEFUN) # which have later been changed to m4_define as they aren't part of the # exported API, or moved to Autoconf or Automake where they belong. # # The trouble is, aclocal is a bit thick. It'll see the old AC_DEFUN # in /usr/share/aclocal/libtool.m4 and remember it, then when it sees us # using a macro with the same name in our local m4/libtool.m4 it'll # pull the old libtool.m4 in (it doesn't see our shiny new m4_define # and doesn't know about Autoconf macros at all.) # # So we provide this file, which has a silly filename so it's always # included after everything else. This provides aclocal with the # AC_DEFUNs it wants, but when m4 processes it, it doesn't do anything # because those macros already exist, or will be overwritten later. # We use AC_DEFUN over AU_DEFUN for compatibility with aclocal-1.6. # # Anytime we withdraw an AC_DEFUN or AU_DEFUN, remember to add it here. # Yes, that means every name once taken will need to remain here until # we give up compatibility with versions before 1.7, at which point # we need to keep only those names which we still refer to. # This is to help aclocal find these macros, as it can't see m4_define. AC_DEFUN([LTOBSOLETE_VERSION], [m4_if([1])]) m4_ifndef([AC_LIBTOOL_LINKER_OPTION], [AC_DEFUN([AC_LIBTOOL_LINKER_OPTION])]) m4_ifndef([AC_PROG_EGREP], [AC_DEFUN([AC_PROG_EGREP])]) m4_ifndef([_LT_AC_PROG_ECHO_BACKSLASH], [AC_DEFUN([_LT_AC_PROG_ECHO_BACKSLASH])]) m4_ifndef([_LT_AC_SHELL_INIT], [AC_DEFUN([_LT_AC_SHELL_INIT])]) m4_ifndef([_LT_AC_SYS_LIBPATH_AIX], [AC_DEFUN([_LT_AC_SYS_LIBPATH_AIX])]) m4_ifndef([_LT_PROG_LTMAIN], [AC_DEFUN([_LT_PROG_LTMAIN])]) m4_ifndef([_LT_AC_TAGVAR], [AC_DEFUN([_LT_AC_TAGVAR])]) m4_ifndef([AC_LTDL_ENABLE_INSTALL], [AC_DEFUN([AC_LTDL_ENABLE_INSTALL])]) m4_ifndef([AC_LTDL_PREOPEN], [AC_DEFUN([AC_LTDL_PREOPEN])]) m4_ifndef([_LT_AC_SYS_COMPILER], [AC_DEFUN([_LT_AC_SYS_COMPILER])]) m4_ifndef([_LT_AC_LOCK], [AC_DEFUN([_LT_AC_LOCK])]) m4_ifndef([AC_LIBTOOL_SYS_OLD_ARCHIVE], [AC_DEFUN([AC_LIBTOOL_SYS_OLD_ARCHIVE])]) m4_ifndef([_LT_AC_TRY_DLOPEN_SELF], [AC_DEFUN([_LT_AC_TRY_DLOPEN_SELF])]) m4_ifndef([AC_LIBTOOL_PROG_CC_C_O], [AC_DEFUN([AC_LIBTOOL_PROG_CC_C_O])]) m4_ifndef([AC_LIBTOOL_SYS_HARD_LINK_LOCKS], [AC_DEFUN([AC_LIBTOOL_SYS_HARD_LINK_LOCKS])]) m4_ifndef([AC_LIBTOOL_OBJDIR], [AC_DEFUN([AC_LIBTOOL_OBJDIR])]) m4_ifndef([AC_LTDL_OBJDIR], [AC_DEFUN([AC_LTDL_OBJDIR])]) m4_ifndef([AC_LIBTOOL_PROG_LD_HARDCODE_LIBPATH], [AC_DEFUN([AC_LIBTOOL_PROG_LD_HARDCODE_LIBPATH])]) m4_ifndef([AC_LIBTOOL_SYS_LIB_STRIP], [AC_DEFUN([AC_LIBTOOL_SYS_LIB_STRIP])]) m4_ifndef([AC_PATH_MAGIC], [AC_DEFUN([AC_PATH_MAGIC])]) m4_ifndef([AC_PROG_LD_GNU], [AC_DEFUN([AC_PROG_LD_GNU])]) m4_ifndef([AC_PROG_LD_RELOAD_FLAG], [AC_DEFUN([AC_PROG_LD_RELOAD_FLAG])]) m4_ifndef([AC_DEPLIBS_CHECK_METHOD], [AC_DEFUN([AC_DEPLIBS_CHECK_METHOD])]) m4_ifndef([AC_LIBTOOL_PROG_COMPILER_NO_RTTI], [AC_DEFUN([AC_LIBTOOL_PROG_COMPILER_NO_RTTI])]) m4_ifndef([AC_LIBTOOL_SYS_GLOBAL_SYMBOL_PIPE], [AC_DEFUN([AC_LIBTOOL_SYS_GLOBAL_SYMBOL_PIPE])]) m4_ifndef([AC_LIBTOOL_PROG_COMPILER_PIC], [AC_DEFUN([AC_LIBTOOL_PROG_COMPILER_PIC])]) m4_ifndef([AC_LIBTOOL_PROG_LD_SHLIBS], [AC_DEFUN([AC_LIBTOOL_PROG_LD_SHLIBS])]) m4_ifndef([AC_LIBTOOL_POSTDEP_PREDEP], [AC_DEFUN([AC_LIBTOOL_POSTDEP_PREDEP])]) m4_ifndef([LT_AC_PROG_EGREP], [AC_DEFUN([LT_AC_PROG_EGREP])]) m4_ifndef([LT_AC_PROG_SED], [AC_DEFUN([LT_AC_PROG_SED])]) m4_ifndef([_LT_CC_BASENAME], [AC_DEFUN([_LT_CC_BASENAME])]) m4_ifndef([_LT_COMPILER_BOILERPLATE], [AC_DEFUN([_LT_COMPILER_BOILERPLATE])]) m4_ifndef([_LT_LINKER_BOILERPLATE], [AC_DEFUN([_LT_LINKER_BOILERPLATE])]) m4_ifndef([_AC_PROG_LIBTOOL], [AC_DEFUN([_AC_PROG_LIBTOOL])]) m4_ifndef([AC_LIBTOOL_SETUP], [AC_DEFUN([AC_LIBTOOL_SETUP])]) m4_ifndef([_LT_AC_CHECK_DLFCN], [AC_DEFUN([_LT_AC_CHECK_DLFCN])]) m4_ifndef([AC_LIBTOOL_SYS_DYNAMIC_LINKER], [AC_DEFUN([AC_LIBTOOL_SYS_DYNAMIC_LINKER])]) m4_ifndef([_LT_AC_TAGCONFIG], [AC_DEFUN([_LT_AC_TAGCONFIG])]) m4_ifndef([AC_DISABLE_FAST_INSTALL], [AC_DEFUN([AC_DISABLE_FAST_INSTALL])]) m4_ifndef([_LT_AC_LANG_CXX], [AC_DEFUN([_LT_AC_LANG_CXX])]) m4_ifndef([_LT_AC_LANG_F77], [AC_DEFUN([_LT_AC_LANG_F77])]) m4_ifndef([_LT_AC_LANG_GCJ], [AC_DEFUN([_LT_AC_LANG_GCJ])]) m4_ifndef([AC_LIBTOOL_LANG_C_CONFIG], [AC_DEFUN([AC_LIBTOOL_LANG_C_CONFIG])]) m4_ifndef([_LT_AC_LANG_C_CONFIG], [AC_DEFUN([_LT_AC_LANG_C_CONFIG])]) m4_ifndef([AC_LIBTOOL_LANG_CXX_CONFIG], [AC_DEFUN([AC_LIBTOOL_LANG_CXX_CONFIG])]) m4_ifndef([_LT_AC_LANG_CXX_CONFIG], [AC_DEFUN([_LT_AC_LANG_CXX_CONFIG])]) m4_ifndef([AC_LIBTOOL_LANG_F77_CONFIG], [AC_DEFUN([AC_LIBTOOL_LANG_F77_CONFIG])]) m4_ifndef([_LT_AC_LANG_F77_CONFIG], [AC_DEFUN([_LT_AC_LANG_F77_CONFIG])]) m4_ifndef([AC_LIBTOOL_LANG_GCJ_CONFIG], [AC_DEFUN([AC_LIBTOOL_LANG_GCJ_CONFIG])]) m4_ifndef([_LT_AC_LANG_GCJ_CONFIG], [AC_DEFUN([_LT_AC_LANG_GCJ_CONFIG])]) m4_ifndef([AC_LIBTOOL_LANG_RC_CONFIG], [AC_DEFUN([AC_LIBTOOL_LANG_RC_CONFIG])]) m4_ifndef([_LT_AC_LANG_RC_CONFIG], [AC_DEFUN([_LT_AC_LANG_RC_CONFIG])]) m4_ifndef([AC_LIBTOOL_CONFIG], [AC_DEFUN([AC_LIBTOOL_CONFIG])]) m4_ifndef([_LT_AC_FILE_LTDLL_C], [AC_DEFUN([_LT_AC_FILE_LTDLL_C])]) m4_ifndef([_LT_REQUIRED_DARWIN_CHECKS], [AC_DEFUN([_LT_REQUIRED_DARWIN_CHECKS])]) m4_ifndef([_LT_AC_PROG_CXXCPP], [AC_DEFUN([_LT_AC_PROG_CXXCPP])]) m4_ifndef([_LT_PREPARE_SED_QUOTE_VARS], [AC_DEFUN([_LT_PREPARE_SED_QUOTE_VARS])]) m4_ifndef([_LT_PROG_ECHO_BACKSLASH], [AC_DEFUN([_LT_PROG_ECHO_BACKSLASH])]) m4_ifndef([_LT_PROG_F77], [AC_DEFUN([_LT_PROG_F77])]) m4_ifndef([_LT_PROG_FC], [AC_DEFUN([_LT_PROG_FC])]) m4_ifndef([_LT_PROG_CXX], [AC_DEFUN([_LT_PROG_CXX])]) ������������������libotr-4.1.1/config/ltversion.m4��������������������������������������������������������������������0000644�0001750�0001750�00000001262�12343351634�013472� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������# ltversion.m4 -- version numbers -*- Autoconf -*- # # Copyright (C) 2004 Free Software Foundation, Inc. # Written by Scott James Remnant, 2004 # # This file is free software; the Free Software Foundation gives # unlimited permission to copy and/or distribute it, with or without # modifications, as long as this notice is preserved. # @configure_input@ # serial 3337 ltversion.m4 # This file is part of GNU Libtool m4_define([LT_PACKAGE_VERSION], [2.4.2]) m4_define([LT_PACKAGE_REVISION], [1.3337]) AC_DEFUN([LTVERSION_VERSION], [macro_version='2.4.2' macro_revision='1.3337' _LT_DECL(, macro_version, 0, [Which release of libtool.m4 was used?]) _LT_DECL(, macro_revision, 0) ]) ����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/libotr.m4������������������������������������������������������������������������������0000664�0001750�0001750�00000010305�12637277541�011505� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������dnl dnl Off-the-Record Messaging library dnl Copyright (C) 2004-2007 Ian Goldberg, Chris Alexander, Nikita Borisov dnl <otr@cypherpunks.ca> dnl dnl This library is free software; you can redistribute it and/or dnl modify it under the terms of version 2.1 of the GNU Lesser General dnl Public License as published by the Free Software Foundation. dnl dnl This library is distributed in the hope that it will be useful, dnl but WITHOUT ANY WARRANTY; without even the implied warranty of dnl MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU dnl Lesser General Public License for more details. dnl dnl You should have received a copy of the GNU Lesser General Public dnl License along with this library; if not, write to the Free Software dnl Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA dnl dnl AM_PATH_LIBOTR([MINIMUM-VERSION [, ACTION-IF-FOUND [, ACTION-IF-NOT-FOUND]]]) dnl Test for libotr, and define LIBOTR_CFLAGS and LIBOTR_LIBS as appropriate. dnl enables arguments --with-libotr-prefix= dnl --with-libotr-inc-prefix= dnl dnl You must already have found libgcrypt with AM_PATH_LIBGCRYPT dnl dnl Adapted from alsa.m4, originally by dnl Richard Boulton <richard-alsa@tartarus.org> dnl Christopher Lansdown <lansdoct@cs.alfred.edu> dnl Jaroslav Kysela <perex@suse.cz> AC_DEFUN([AM_PATH_LIBOTR], [dnl Save the original CFLAGS, LDFLAGS, and LIBS libotr_save_CFLAGS="$CFLAGS" libotr_save_LDFLAGS="$LDFLAGS" libotr_save_LIBS="$LIBS" libotr_found=yes dnl dnl Get the cflags and libraries for libotr dnl AC_ARG_WITH(libotr-prefix, [ --with-libotr-prefix=PFX Prefix where libotr is installed(optional)], [libotr_prefix="$withval"], [libotr_prefix=""]) AC_ARG_WITH(libotr-inc-prefix, [ --with-libotr-inc-prefix=PFX Prefix where libotr includes are (optional)], [libotr_inc_prefix="$withval"], [libotr_inc_prefix=""]) dnl Add any special include directories AC_MSG_CHECKING(for libotr CFLAGS) if test "$libotr_inc_prefix" != "" ; then LIBOTR_CFLAGS="$LIBOTR_CFLAGS -I$libotr_inc_prefix" CFLAGS="$CFLAGS $LIBOTR_CFLAGS" fi AC_MSG_RESULT($LIBOTR_CFLAGS) dnl add any special lib dirs AC_MSG_CHECKING(for libotr LIBS) if test "$libotr_prefix" != "" ; then LIBOTR_LIBS="$LIBOTR_LIBS -L$libotr_prefix" LDFLAGS="$LDFLAGS $LIBOTR_LIBS" fi dnl add the libotr library LIBOTR_LIBS="$LIBOTR_LIBS -lotr" LIBS="$LIBOTR_LIBS $LIBS" AC_MSG_RESULT($LIBOTR_LIBS) dnl Check for a working version of libotr that is of the right version. min_libotr_version=ifelse([$1], ,3.0.0,$1) no_libotr="" libotr_min_major_version=`echo $min_libotr_version | \ sed 's/\([[0-9]]*\).\([[0-9]]*\).\([[0-9]]*\)/\1/'` libotr_min_minor_version=`echo $min_libotr_version | \ sed 's/\([[0-9]]*\).\([[0-9]]*\).\([[0-9]]*\)/\2/'` libotr_min_sub_version=`echo $min_libotr_version | \ sed 's/\([[0-9]]*\).\([[0-9]]*\).\([[0-9]]*\)/\3/'` AC_MSG_CHECKING(for libotr headers version $libotr_min_major_version.x >= $min_libotr_version) AC_LANG_SAVE AC_LANG_C AC_TRY_COMPILE([ #include <stdlib.h> #include <libotr/version.h> ], [ # if(OTRL_VERSION_MAJOR != $libotr_min_major_version) # error not present # else # if(OTRL_VERSION_MINOR > $libotr_min_minor_version) exit(0); # else # if(OTRL_VERSION_MINOR < $libotr_min_minor_version) # error not present # endif # if(OTRL_VERSION_SUB < $libotr_min_sub_version) # error not present # endif # endif # endif exit(0); ], [AC_MSG_RESULT(found.)], [AC_MSG_RESULT(not present.) ifelse([$3], , [AC_MSG_ERROR(Sufficiently new version of libotr not found.)]) libotr_found=no] ) AC_LANG_RESTORE dnl Now that we know that we have the right version, let's see if we have the library and not just the headers. AC_CHECK_LIB([otr], [otrl_message_receiving],, [ifelse([$3], , [AC_MSG_ERROR(No linkable libotr was found.)]) libotr_found=no], $LIBGCRYPT_LIBS ) LDFLAGS="$libotr_save_LDFLAGS" LIBS="$libotr_save_LIBS" if test "x$libotr_found" = "xyes" ; then ifelse([$2], , :, [$2]) else LIBOTR_CFLAGS="" LIBOTR_LIBS="" ifelse([$3], , :, [$3]) fi dnl That should be it. Now just export our symbols: AC_SUBST(LIBOTR_CFLAGS) AC_SUBST(LIBOTR_LIBS) ]) ���������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/���������������������������������������������������������������������������������0000775�0001750�0001750�00000000000�12667401053�011161� 5����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/run.sh���������������������������������������������������������������������������0000775�0001750�0001750�00000002363�12637277541�012262� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������#!/bin/bash # # Copyright (C) 2013 - Christian Babeux <christian.babeux@efficios.com> # # Permission is hereby granted, free of charge, to any person obtaining a copy # of this software and associated documentation files (the "Software"), to deal # in the Software without restriction, including without limitation the rights # to use, copy, modify, merge, publish, distribute, sublicense, and/or sell # copies of the Software, and to permit persons to whom the Software is # furnished to do so, subject to the following conditions: # # The above copyright notice and this permission notice shall be included in # all copies or substantial portions of the Software. # # THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR # IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, # FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE # AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER # LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, # OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE # SOFTWARE. # [ -z "$1" ] && echo "Error: No testlist. 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See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along with * this program; if not, write to the Free Software Foundation, Inc., 51 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ #include "utils.h" ���������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/utils/Makefile.am����������������������������������������������������������������0000664�0001750�0001750�00000000054�12637277541�014306� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������SUBDIRS = tap EXTRA_DIST = utils.c utils.h ������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/utils/tap/�����������������������������������������������������������������������0000775�0001750�0001750�00000000000�12667401053�013105� 5����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/utils/tap/tap.h������������������������������������������������������������������0000664�0001750�0001750�00000006176�12637277541�014006� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/*- * Copyright (c) 2004 Nik Clayton * All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * 1. Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF * SUCH DAMAGE. */ /* '## __VA_ARGS__' is a gcc'ism. C99 doesn't allow the token pasting and requires the caller to add the final comma if they've ommitted the optional arguments */ #ifdef __GNUC__ # define ok(e, test, ...) 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Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF * SUCH DAMAGE. */ #define _GNU_SOURCE #include <ctype.h> #include <stdarg.h> #include <stdio.h> #include <stdlib.h> #include "tap.h" static int no_plan = 0; static int skip_all = 0; static int have_plan = 0; static unsigned int test_count = 0; /* Number of tests that have been run */ static unsigned int e_tests = 0; /* Expected number of tests to run */ static unsigned int failures = 0; /* Number of tests that failed */ static char *todo_msg = NULL; static char *todo_msg_fixed = "libtap malloc issue"; static int todo = 0; static int test_died = 0; /* Encapsulate the pthread code in a conditional. In the absence of libpthread the code does nothing */ #ifdef HAVE_LIBPTHREAD #include <pthread.h> static pthread_mutex_t M = PTHREAD_MUTEX_INITIALIZER; # define LOCK pthread_mutex_lock(&M); # define UNLOCK pthread_mutex_unlock(&M); #else # define LOCK # define UNLOCK #endif static void _expected_tests(unsigned int); static void _tap_init(void); static void _cleanup(void); /* * Generate a test result. * * ok -- boolean, indicates whether or not the test passed. * test_name -- the name of the test, may be NULL * test_comment -- a comment to print afterwards, may be NULL */ unsigned int _gen_result(int ok, const char *func, char *file, unsigned int line, char *test_name, ...) { va_list ap; char *local_test_name = NULL; char *c; int name_is_digits; LOCK; test_count++; /* Start by taking the test name and performing any printf() expansions on it */ if(test_name != NULL) { va_start(ap, test_name); if (vasprintf(&local_test_name, test_name, ap) == -1) { local_test_name = NULL; } va_end(ap); /* Make sure the test name contains more than digits and spaces. Emit an error message and exit if it does */ if(local_test_name) { name_is_digits = 1; for(c = local_test_name; *c != '\0'; c++) { if(!isdigit((unsigned char)*c) && !isspace((unsigned char)*c)) { name_is_digits = 0; break; } } if(name_is_digits) { diag(" You named your test '%s'. You shouldn't use numbers for your test names.", local_test_name); diag(" Very confusing."); } } } if(!ok) { printf("not "); failures++; } printf("ok %d", test_count); if(test_name != NULL) { printf(" - "); /* Print the test name, escaping any '#' characters it might contain */ if(local_test_name != NULL) { flockfile(stdout); for(c = local_test_name; *c != '\0'; c++) { if(*c == '#') fputc('\\', stdout); fputc((int)*c, stdout); } funlockfile(stdout); } else { /* vasprintf() failed, use a fixed message */ printf("%s", todo_msg_fixed); } } /* If we're in a todo_start() block then flag the test as being TODO. todo_msg should contain the message to print at this point. If it's NULL then asprintf() failed, and we should use the fixed message. This is not counted as a failure, so decrement the counter if the test failed. */ if(todo) { printf(" # TODO %s", todo_msg ? todo_msg : todo_msg_fixed); if(!ok) failures--; } printf("\n"); if(!ok) { if(getenv("HARNESS_ACTIVE") != NULL) fputs("\n", stderr); diag(" Failed %stest (%s:%s() at line %d)", todo ? "(TODO) " : "", file, func, line); } free(local_test_name); UNLOCK; /* We only care (when testing) that ok is positive, but here we specifically only want to return 1 or 0 */ return ok ? 1 : 0; } /* * Initialise the TAP library. Will only do so once, however many times it's * called. */ void _tap_init(void) { static int run_once = 0; if(!run_once) { atexit(_cleanup); /* stdout needs to be unbuffered so that the output appears in the same place relative to stderr output as it does with Test::Harness */ setbuf(stdout, 0); run_once = 1; } } /* * Note that there's no plan. */ int plan_no_plan(void) { LOCK; _tap_init(); if(have_plan != 0) { fprintf(stderr, "You tried to plan twice!\n"); test_died = 1; UNLOCK; exit(255); } have_plan = 1; no_plan = 1; UNLOCK; return 1; } /* * Note that the plan is to skip all tests */ int plan_skip_all(char *reason) { LOCK; _tap_init(); skip_all = 1; printf("1..0"); if(reason != NULL) printf(" # Skip %s", reason); printf("\n"); UNLOCK; exit(0); } /* * Note the number of tests that will be run. */ int plan_tests(unsigned int tests) { LOCK; _tap_init(); if(have_plan != 0) { fprintf(stderr, "You tried to plan twice!\n"); test_died = 1; UNLOCK; exit(255); } if(tests == 0) { fprintf(stderr, "You said to run 0 tests! You've got to run something.\n"); test_died = 1; UNLOCK; exit(255); } have_plan = 1; _expected_tests(tests); UNLOCK; return e_tests; } unsigned int diag(char *fmt, ...) { va_list ap; fputs("# ", stderr); va_start(ap, fmt); vfprintf(stderr, fmt, ap); va_end(ap); fputs("\n", stderr); return 0; } void _expected_tests(unsigned int tests) { printf("1..%d\n", tests); e_tests = tests; } int skip(unsigned int n, char *fmt, ...) { va_list ap; char *skip_msg = NULL; LOCK; va_start(ap, fmt); if (asprintf(&skip_msg, fmt, ap) == -1) { skip_msg = NULL; } va_end(ap); while(n-- > 0) { test_count++; printf("ok %d # skip %s\n", test_count, skip_msg != NULL ? skip_msg : "libtap():malloc() failed"); } free(skip_msg); UNLOCK; return 1; } void todo_start(char *fmt, ...) { va_list ap; LOCK; va_start(ap, fmt); if (vasprintf(&todo_msg, fmt, ap) == -1) { todo_msg = NULL; } va_end(ap); todo = 1; UNLOCK; } void todo_end(void) { LOCK; todo = 0; free(todo_msg); UNLOCK; } int exit_status(void) { int r; LOCK; /* If there's no plan, just return the number of failures */ if(no_plan || !have_plan) { UNLOCK; return failures; } /* Ran too many tests? Return the number of tests that were run that shouldn't have been */ if(e_tests < test_count) { r = test_count - e_tests; UNLOCK; return r; } /* Return the number of tests that failed + the number of tests that weren't run */ r = failures + e_tests - test_count; UNLOCK; return r; } /* * Cleanup at the end of the run, produce any final output that might be * required. */ void _cleanup(void) { LOCK; /* If plan_no_plan() wasn't called, and we don't have a plan, and we're not skipping everything, then something happened before we could produce any output */ if(!no_plan && !have_plan && !skip_all) { diag("Looks like your test died before it could output anything."); UNLOCK; return; } if(test_died) { diag("Looks like your test died just after %d.", test_count); UNLOCK; return; } /* No plan provided, but now we know how many tests were run, and can print the header at the end */ if(!skip_all && (no_plan || !have_plan)) { printf("1..%d\n", test_count); } if((have_plan && !no_plan) && e_tests < test_count) { diag("Looks like you planned %d %s but ran %d extra.", e_tests, e_tests == 1 ? "test" : "tests", test_count - e_tests); UNLOCK; return; } if((have_plan || !no_plan) && e_tests > test_count) { diag("Looks like you planned %d %s but only ran %d.", e_tests, e_tests == 1 ? "test" : "tests", test_count); UNLOCK; return; } if(failures) diag("Looks like you failed %d %s of %d.", failures, failures == 1 ? "test" : "tests", test_count); UNLOCK; } ����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/utils/tap/tap.sh�����������������������������������������������������������������0000775�0001750�0001750�00000021267�12637277541�014172� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������#!/bin/bash # # Copyright 2010 Patrick LeBoutillier <patrick.leboutillier@gmail.com> # # This program is free software: you can redistribute it and/or modify # it under the terms of the GNU General Public License as published by # the Free Software Foundation, either version 3 of the License, or # (at your option) any later version. # # This program is distributed in the hope that it will be useful, # but WITHOUT ANY WARRANTY; without even the implied warranty of # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the # GNU General Public License for more details. # # You should have received a copy of the GNU General Public License # along with this program. If not, see <http://www.gnu.org/licenses/>. _version='1.01' _plan_set=0 _no_plan=0 _skip_all=0 _test_died=0 _expected_tests=0 _executed_tests=0 _failed_tests=0 TODO= usage(){ cat <<'USAGE' tap-functions: A TAP-producing BASH library PLAN: plan_no_plan plan_skip_all [REASON] plan_tests NB_TESTS TEST: ok RESULT [NAME] okx COMMAND is RESULT EXPECTED [NAME] isnt RESULT EXPECTED [NAME] like RESULT PATTERN [NAME] unlike RESULT PATTERN [NAME] pass [NAME] fail [NAME] SKIP: skip [CONDITION] [REASON] [NB_TESTS=1] skip $feature_not_present "feature not present" 2 || { is $a "a" is $b "b" } TODO: Specify TODO mode by setting $TODO: TODO="not implemented yet" ok $result "some not implemented test" unset TODO OTHER: diag MSG EXAMPLE: #!/bin/bash . tap-functions plan_tests 7 me=$USER is $USER $me "I am myself" like $HOME $me "My home is mine" like "`id`" $me "My id matches myself" /bin/ls $HOME 1>&2 ok $? "/bin/ls $HOME" # Same thing using okx shortcut okx /bin/ls $HOME [[ "`id -u`" != "0" ]] i_am_not_root=$? skip $i_am_not_root "Must be root" || { okx ls /root } TODO="figure out how to become root..." okx [ "$HOME" == "/root" ] unset TODO USAGE exit } opt= set_u= while getopts ":sx" opt ; do case $_opt in u) set_u=1 ;; *) usage ;; esac done shift $(( OPTIND - 1 )) # Don't allow uninitialized variables if requested [[ -n "$set_u" ]] && set -u unset opt set_u # Used to call _cleanup on shell exit trap _exit EXIT plan_no_plan(){ (( _plan_set != 0 )) && "You tried to plan twice!" _plan_set=1 _no_plan=1 return 0 } plan_skip_all(){ local reason=${1:-''} (( _plan_set != 0 )) && _die "You tried to plan twice!" _print_plan 0 "Skip $reason" _skip_all=1 _plan_set=1 _exit 0 return 0 } plan_tests(){ local tests=${1:?} (( _plan_set != 0 )) && _die "You tried to plan twice!" (( tests == 0 )) && _die "You said to run 0 tests! You've got to run something." _print_plan $tests _expected_tests=$tests _plan_set=1 return $tests } _print_plan(){ local tests=${1:?} local directive=${2:-''} echo -n "1..$tests" [[ -n "$directive" ]] && echo -n " # $directive" echo } pass(){ local name=$1 ok 0 "$name" } fail(){ local name=$1 ok 1 "$name" } # This is the workhorse method that actually # prints the tests result. ok(){ local result=${1:?} local name=${2:-''} (( _plan_set == 0 )) && _die "You tried to run a test without a plan! Gotta have a plan." _executed_tests=$(( $_executed_tests + 1 )) if [[ -n "$name" ]] ; then if _matches "$name" "^[0-9]+$" ; then diag " You named your test '$name'. You shouldn't use numbers for your test names." diag " Very confusing." fi fi if (( result != 0 )) ; then echo -n "not " _failed_tests=$(( _failed_tests + 1 )) fi echo -n "ok $_executed_tests" if [[ -n "$name" ]] ; then local ename=${name//\#/\\#} echo -n " - $ename" fi if [[ -n "$TODO" ]] ; then echo -n " # TODO $TODO" ; if (( result != 0 )) ; then _failed_tests=$(( _failed_tests - 1 )) fi fi echo if (( result != 0 )) ; then local file='tap-functions' local func= local line= local i=0 local bt=$(caller $i) while _matches "$bt" "tap-functions$" ; do i=$(( $i + 1 )) bt=$(caller $i) done local backtrace= eval $(caller $i | (read line func file ; echo "backtrace=\"$file:$func() at line $line.\"")) local t= [[ -n "$TODO" ]] && t="(TODO) " if [[ -n "$name" ]] ; then diag " Failed ${t}test '$name'" diag " in $backtrace" else diag " Failed ${t}test in $backtrace" fi fi return $result } okx(){ local command="$@" local line= diag "Output of '$command':" "$@" | while read line ; do diag "$line" done ok ${PIPESTATUS[0]} "$command" } _equals(){ local result=${1:?} local expected=${2:?} if [[ "$result" == "$expected" ]] ; then return 0 else return 1 fi } # Thanks to Aaron Kangas for the patch to allow regexp matching # under bash < 3. _bash_major_version=${BASH_VERSION%%.*} _matches(){ local result=${1:?} local pattern=${2:?} if [[ -z "$result" || -z "$pattern" ]] ; then return 1 else if (( _bash_major_version >= 3 )) ; then [[ "$result" =~ "$pattern" ]] else echo "$result" | egrep -q "$pattern" fi fi } _is_diag(){ local result=${1:?} local expected=${2:?} diag " got: '$result'" diag " expected: '$expected'" } is(){ local result=${1:?} local expected=${2:?} local name=${3:-''} _equals "$result" "$expected" (( $? == 0 )) ok $? "$name" local r=$? (( r != 0 )) && _is_diag "$result" "$expected" return $r } isnt(){ local result=${1:?} local expected=${2:?} local name=${3:-''} _equals "$result" "$expected" (( $? != 0 )) ok $? "$name" local r=$? (( r != 0 )) && _is_diag "$result" "$expected" return $r } like(){ local result=${1:?} local pattern=${2:?} local name=${3:-''} _matches "$result" "$pattern" (( $? == 0 )) ok $? "$name" local r=$? (( r != 0 )) && diag " '$result' doesn't match '$pattern'" return $r } unlike(){ local result=${1:?} local pattern=${2:?} local name=${3:-''} _matches "$result" "$pattern" (( $? != 0 )) ok $? "$name" local r=$? (( r != 0 )) && diag " '$result' matches '$pattern'" return $r } skip(){ local condition=${1:?} local reason=${2:-''} local n=${3:-1} if (( condition == 0 )) ; then local i= for (( i=0 ; i<$n ; i++ )) ; do _executed_tests=$(( _executed_tests + 1 )) echo "ok $_executed_tests # skip: $reason" done return 0 else return fi } diag(){ local msg=${1:?} if [[ -n "$msg" ]] ; then echo "# $msg" fi return 1 } _die(){ local reason=${1:-'<unspecified error>'} echo "$reason" >&2 _test_died=1 _exit 255 } BAIL_OUT(){ local reason=${1:-''} echo "Bail out! $reason" >&2 _exit 255 } _cleanup(){ local rc=0 if (( _plan_set == 0 )) ; then diag "Looks like your test died before it could output anything." return $rc fi if (( _test_died != 0 )) ; then diag "Looks like your test died just after $_executed_tests." return $rc fi if (( _skip_all == 0 && _no_plan != 0 )) ; then _print_plan $_executed_tests fi local s= if (( _no_plan == 0 && _expected_tests < _executed_tests )) ; then s= ; (( _expected_tests > 1 )) && s=s local extra=$(( _executed_tests - _expected_tests )) diag "Looks like you planned $_expected_tests test$s but ran $extra extra." rc=1 ; fi if (( _no_plan == 0 && _expected_tests > _executed_tests )) ; then s= ; (( _expected_tests > 1 )) && s=s diag "Looks like you planned $_expected_tests test$s but only ran $_executed_tests." fi if (( _failed_tests > 0 )) ; then s= ; (( _failed_tests > 1 )) && s=s diag "Looks like you failed $_failed_tests test$s of $_executed_tests." fi return $rc } _exit_status(){ if (( _no_plan != 0 || _plan_set == 0 )) ; then return $_failed_tests fi if (( _expected_tests < _executed_tests )) ; then return $(( _executed_tests - _expected_tests )) fi return $(( _failed_tests + ( _expected_tests - _executed_tests ))) } _exit(){ local rc=${1:-''} if [[ -z "$rc" ]] ; then _exit_status rc=$? fi _cleanup local alt_rc=$? (( alt_rc != 0 )) && rc=$alt_rc trap - EXIT exit $rc } �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/utils/tap/Makefile.am������������������������������������������������������������0000664�0001750�0001750�00000000254�12637277541�015074� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������AM_CFLAGS = -DHAVE_LIBPTHREAD noinst_LTLIBRARIES = libtap.la libtap_la_SOURCES = tap.c tap.h libtap_la_LIBADD = -lpthread dist_noinst_SCRIPTS = tap.sh EXTRA_DIST = tap.sh ����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/utils/utils.h��������������������������������������������������������������������0000664�0001750�0001750�00000001742�12637277541�013570� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Copyright (C) 2014 - David Goulet <dgoulet@ev0ke.net> * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License, version 2 only, as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along with * this program; if not, write to the Free Software Foundation, Inc., 51 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ #ifndef TESTS_UTILS_H #define TESTS_UTILS_H /* * Return 1 if the given buffer is zeroed or 0 if not. */ static inline int utils_is_zeroed(const unsigned char *buf, size_t size) { return buf[0] == 0 && !memcmp(buf, buf + 1, size - 1); } #endif /* TESTS_UTILS_H */ ������������������������������libotr-4.1.1/tests/unit/����������������������������������������������������������������������������0000775�0001750�0001750�00000000000�12667401053�012140� 5����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/unit/test_b64.c������������������������������������������������������������������0000664�0001750�0001750�00000006041�12637277541�013671� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Copyright (C) 2014 - Julien Voisin <julien.voisin@dustri.org> * David Goulet <dgoulet@ev0ke.net> * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License, version 2 only, as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along with * this program; if not, write to the Free Software Foundation, Inc., 51 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ #include <stdlib.h> #include <string.h> #include <pthread.h> #include <b64.h> #include <tap/tap.h> #include <proto.h> GCRY_THREAD_OPTION_PTHREAD_IMPL; #define NUM_TESTS 10 const char *alphanum_encoded = "?OTR:" "YWJjZGVmZ2hpamtsbW5vcHFyc3R1dnd4eXoxMjM0NTY3ODkwCg==" "."; const char *alphanum_decoded = "abcdefghijklmnopqrstuvwxyz1234567890\n"; static void test_otrl_base64_otr_decode(void) { int ret; unsigned char *bufp = NULL; size_t len = 0; /* * Invalid decoding. */ ok(otrl_base64_otr_decode("hello", NULL, NULL) == -2, "Call with no prefix returned an error"); ok(otrl_base64_otr_decode("?OTR:" "MTIzNAo=", NULL, NULL) == -2, "Call with no suffix returned an error"); /* Message of size 0. */ ret = otrl_base64_otr_decode("", &bufp, &len); ok(ret == -2 && bufp == NULL && len == 0, "Decode b64 with message of len 0"); /* * Valid decoding. */ /* Invalid chars are ignored */ ok(otrl_base64_otr_decode("?OTR:invalid_base64_thing.", &bufp, &len) == 0 && len == 12, "Invalid b64 data"); free(bufp); bufp = NULL; len = 0; ok(otrl_base64_otr_decode(alphanum_encoded, &bufp, &len) == 0, "Call with valid data successfull"); ok(strcmp((const char*)bufp, alphanum_decoded) == 0 && len == 37, "Decoded valid b64 test vector with success"); free(bufp); bufp = NULL; len = 0; /* Invalid base64 char. */ ret = otrl_base64_otr_decode("?OTR:_*&?!!*\"().", &bufp, &len); ok(ret == 0 && bufp != NULL && len == 0, "Decode b64 with invalid b64 characters"); free(bufp); bufp = NULL; len = 0; } static void test_otrl_base64_otr_encode(void) { unsigned char *bufp = NULL; size_t len = 0; char *encoded; encoded = otrl_base64_otr_encode((const unsigned char *) alphanum_decoded, strlen(alphanum_decoded)); ok(strcmp(encoded, alphanum_encoded) == 0, "Encoded b64 test vector with success"); ok(otrl_base64_otr_decode(encoded, &bufp, &len) == 0, "Decoded previously encoded test vector"); ok(memcmp(bufp, alphanum_decoded, len) == 0 && len == strlen(alphanum_decoded), "Decoded value is exact"); free(bufp); free(encoded); } int main(int argc, char** argv) { plan_tests(NUM_TESTS); gcry_control(GCRYCTL_SET_THREAD_CBS, &gcry_threads_pthread); OTRL_INIT; test_otrl_base64_otr_decode(); test_otrl_base64_otr_encode(); return 0; } �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/unit/test_privkey.c��������������������������������������������������������������0000664�0001750�0001750�00000016365�12637277541�015001� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Copyright (C) 2014 - Julien Voisin <julien.voisin@dustri.org> * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License, version 2 only, as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along with * this program; if not, write to the Free Software Foundation, Inc., 51 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ #include <gcrypt.h> #include <pthread.h> #include <unistd.h> #include <privkey.h> #include <proto.h> #include <tap/tap.h> GCRY_THREAD_OPTION_PTHREAD_IMPL; #define NUM_TESTS 13 static OtrlUserState us = NULL; static char filename[] = "/tmp/libotr-testing-XXXXXX"; static FILE* f = NULL; /* * Create a public key block from a private key */ static void make_pubkey(unsigned char **pubbufp, size_t *publenp, gcry_sexp_t privkey) { gcry_mpi_t p,q,g,y; gcry_sexp_t dsas,ps,qs,gs,ys; size_t np,nq,ng,ny; enum gcry_mpi_format format = GCRYMPI_FMT_USG; *pubbufp = NULL; *publenp = 0; /* Extract the public parameters */ dsas = gcry_sexp_find_token(privkey, "dsa", 0); ps = gcry_sexp_find_token(dsas, "p", 0); qs = gcry_sexp_find_token(dsas, "q", 0); gs = gcry_sexp_find_token(dsas, "g", 0); ys = gcry_sexp_find_token(dsas, "y", 0); gcry_sexp_release(dsas); p = gcry_sexp_nth_mpi(ps, 1, GCRYMPI_FMT_USG); gcry_sexp_release(ps); q = gcry_sexp_nth_mpi(qs, 1, GCRYMPI_FMT_USG); gcry_sexp_release(qs); g = gcry_sexp_nth_mpi(gs, 1, GCRYMPI_FMT_USG); gcry_sexp_release(gs); y = gcry_sexp_nth_mpi(ys, 1, GCRYMPI_FMT_USG); gcry_sexp_release(ys); *publenp = 0; gcry_mpi_print(format, NULL, 0, &np, p); *publenp += np + 4; gcry_mpi_print(format, NULL, 0, &nq, q); *publenp += nq + 4; gcry_mpi_print(format, NULL, 0, &ng, g); *publenp += ng + 4; gcry_mpi_print(format, NULL, 0, &ny, y); *publenp += ny + 4; *pubbufp = malloc(*publenp); gcry_mpi_release(p); gcry_mpi_release(q); gcry_mpi_release(g); gcry_mpi_release(y); } static void test_otrl_privkey_generate_FILEp(void) { int fd = mkstemp(filename); f = fdopen(fd, "w+b"); unlink(filename); // The file will be removed on close us = otrl_userstate_create(); ok(otrl_privkey_generate_FILEp(us, f, "alice", "irc") == gcry_error(GPG_ERR_NO_ERROR) && us->privkey_root != NULL, "key generated"); } static void test_otrl_privkey_hash_to_human(void) { int i; char human[OTRL_PRIVKEY_FPRINT_HUMAN_LEN]; unsigned char hash[20]; for(i = 0; i < 20; i++) { hash[i] = 'A' + i; } otrl_privkey_hash_to_human(human, hash); ok(strcmp("41424344 45464748 494A4B4C 4D4E4F50 51525354", human) == 0, "Hash to human ok"); } static void test_otrl_privkey_fingerprint(void) { char fingerprint[OTRL_PRIVKEY_FPRINT_HUMAN_LEN] = {0}; char expected_fingerprint[OTRL_PRIVKEY_FPRINT_HUMAN_LEN] = {0}; unsigned char hash[20] = {0}; char *fp = otrl_privkey_fingerprint(us, fingerprint, "alice", "irc"); const OtrlPrivKey *p = otrl_privkey_find(us, "alice", "irc"); gcry_md_hash_buffer(GCRY_MD_SHA1, hash, p->pubkey_data, p->pubkey_datalen); otrl_privkey_hash_to_human(expected_fingerprint, hash); ok(fp == fingerprint && memcmp(fingerprint, expected_fingerprint, OTRL_PRIVKEY_FPRINT_HUMAN_LEN) == 0, "Privkey fingerprint ok"); } static void test_otrl_privkey_fingerprint_raw(void) { unsigned char hash[20] = {0}; unsigned char expected_hash[20] = {0}; unsigned char *h = otrl_privkey_fingerprint_raw(us, hash, "alice", "irc"); const OtrlPrivKey *p = otrl_privkey_find(us, "alice", "irc"); gcry_md_hash_buffer(GCRY_MD_SHA1, expected_hash, p->pubkey_data, p->pubkey_datalen); ok(h == hash && memcmp(hash, expected_hash, 20) == 0, "Raw privkey fingerprint ok"); } static void test_otrl_privkey_find(void) { OtrlPrivKey *p = NULL; ok(otrl_privkey_find(us, "bob", "xmpp") == NULL, "Privkey not found"); ok(otrl_privkey_find(us, "alice", "xmpp") == NULL, "Privkey not found because of wrong protocol"); ok(otrl_privkey_find(us, "bob", "irc") == NULL, "Privkey not found because of wrong name"); p = otrl_privkey_find(us, "alice", "irc"); ok(p != NULL && strcmp(p->accountname, "alice") == 0 && strcmp(p->protocol, "irc") == 0, "Privkey found"); } static void test_otrl_privkey_sign(void) { unsigned char *sig = NULL; size_t siglen; const char *data = "Some data to sign."; size_t len = strlen(data); OtrlPrivKey *p = otrl_privkey_find(us, "alice", "irc"); p->pubkey_type = OTRL_PUBKEY_TYPE_DSA + 1; ok(otrl_privkey_sign(&sig, &siglen, p, (unsigned char *) data, len) == gcry_error(GPG_ERR_INV_VALUE), "Wrong pubkey type detected"); free(sig); p->pubkey_type = OTRL_PUBKEY_TYPE_DSA; ok(otrl_privkey_sign(&sig, &siglen, p, (unsigned char *) data, len) == gcry_error(GPG_ERR_NO_ERROR), "data signed"); free(sig); ok(otrl_privkey_sign(&sig, &siglen, p, (unsigned char*)data, 0) == gcry_error(GPG_ERR_NO_ERROR), "data with len 0 signed"); free(sig); } static void test_otrl_privkey_verify(void) { unsigned char *sigbuf = NULL; size_t siglen; const char *data = "Some data to sign."; OtrlPrivKey *privkey = otrl_privkey_find(us, "alice", "irc"); gcry_mpi_t p,q,g,y; gcry_sexp_t dsas, ps, qs, gs, ys; gcry_sexp_t pubs = NULL; gcry_error_t ret; /* Extract pubkey */ dsas = gcry_sexp_find_token(privkey->privkey, "dsa", 0); ps = gcry_sexp_find_token(dsas, "p", 0); qs = gcry_sexp_find_token(dsas, "q", 0); gs = gcry_sexp_find_token(dsas, "g", 0); ys = gcry_sexp_find_token(dsas, "y", 0); gcry_sexp_release(dsas); p = gcry_sexp_nth_mpi(ps, 1, GCRYMPI_FMT_USG); q = gcry_sexp_nth_mpi(qs, 1, GCRYMPI_FMT_USG); g = gcry_sexp_nth_mpi(gs, 1, GCRYMPI_FMT_USG); y = gcry_sexp_nth_mpi(ys, 1, GCRYMPI_FMT_USG); gcry_sexp_release(ps); gcry_sexp_release(qs); gcry_sexp_release(gs); gcry_sexp_release(ys); gcry_sexp_build(&pubs, NULL, "(public-key (dsa (p %m)(q %m)(g %m)(y %m)))", p, q, g, y); gcry_mpi_release(p); gcry_mpi_release(q); gcry_mpi_release(g); gcry_mpi_release(y); otrl_privkey_sign(&sigbuf, &siglen, privkey, (unsigned char*)data, strlen(data)); ok(otrl_privkey_verify(sigbuf, siglen, OTRL_PUBKEY_TYPE_DSA, pubs, (unsigned char *) data, strlen(data)) == 0, "Signature ok"); ret = otrl_privkey_verify(sigbuf, siglen, OTRL_PUBKEY_TYPE_DSA, pubs, (unsigned char *) data + 1, strlen(data) - 1); ok(gcry_error(ret) == gcry_error(GPG_ERR_BAD_SIGNATURE), "Wrong signature"); free(sigbuf); } int main(int argc, char **argv) { OtrlPrivKey *p; plan_tests(NUM_TESTS); gcry_control(GCRYCTL_SET_THREAD_CBS, &gcry_threads_pthread); OTRL_INIT; /* Set to quick random so we don't wait on /dev/random. */ gcry_control(GCRYCTL_ENABLE_QUICK_RANDOM, 0); test_otrl_privkey_generate_FILEp(); //This must be the first one p = otrl_privkey_find(us, "alice", "irc"); make_pubkey(&(p->pubkey_data), &(p->pubkey_datalen), p->privkey); test_otrl_privkey_hash_to_human(); test_otrl_privkey_fingerprint(); test_otrl_privkey_fingerprint_raw(); test_otrl_privkey_sign(); test_otrl_privkey_verify(); test_otrl_privkey_find(); fclose(f); otrl_userstate_free(us); return 0; } ���������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/unit/test_proto.c����������������������������������������������������������������0000664�0001750�0001750�00000030740�12637277541�014444� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Copyright (C) 2014 - Julien Voisin <julien.voisin@dustri.org> * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License, version 2 only, as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along with * this program; if not, write to the Free Software Foundation, Inc., 51 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ #include <limits.h> #include <pthread.h> #include <proto.h> #include <tap/tap.h> GCRY_THREAD_OPTION_PTHREAD_IMPL; #define NUM_TESTS 48 static ConnContext *new_context(const char *user, const char *accountname, const char *protocol) { ConnContext *context; OtrlSMState *smstate; context = malloc(sizeof(ConnContext)); context->username = strdup(user); context->accountname = strdup(accountname); context->protocol = strdup(protocol); context->msgstate = OTRL_MSGSTATE_PLAINTEXT; otrl_auth_new(context); smstate = malloc(sizeof(OtrlSMState)); otrl_sm_state_new(smstate); context->smstate = smstate; context->our_instance = 0; context->their_instance = OTRL_INSTAG_MASTER; context->fingerprint_root.fingerprint = NULL; context->fingerprint_root.context = context; context->fingerprint_root.next = NULL; context->fingerprint_root.tous = NULL; context->active_fingerprint = NULL; memset(context->sessionid, 0, 20); context->sessionid_len = 0; context->protocol_version = 0; context->otr_offer = OFFER_NOT; context->app_data = NULL; context->app_data_free = NULL; context->context_priv = otrl_context_priv_new(); context->next = NULL; context->m_context = context; context->recent_rcvd_child = NULL; context->recent_sent_child = NULL; context->recent_child = NULL; return context; } static void test_otrl_proto_whitespace_bestversion(void) { unsigned int ret; const char *start, *end; const char *test1 = OTRL_MESSAGE_TAG_BASE OTRL_MESSAGE_TAG_V2; const char *test2 = OTRL_MESSAGE_TAG_BASE OTRL_MESSAGE_TAG_V3; const char *test3 = OTRL_MESSAGE_TAG_BASE "foobar"; ret = otrl_proto_whitespace_bestversion(test1, &start, &end, OTRL_POLICY_ALLOW_V2); ok(ret == 2, "Best version whitespace v2"); ret = otrl_proto_whitespace_bestversion(test1, &start, &end, OTRL_POLICY_ALLOW_V2 | OTRL_POLICY_ALLOW_V3); ok(ret == 2, "Best version whitespace v2 dual policy"); ret = otrl_proto_whitespace_bestversion(test2, &start, &end, OTRL_POLICY_ALLOW_V3); ok(ret == 3, "Best version whitespace v3"); ret = otrl_proto_whitespace_bestversion(test2, &start, &end, OTRL_POLICY_ALLOW_V2 | OTRL_POLICY_ALLOW_V3); ok(ret == 3, "Best version whitespace v3 dual policy"); ret = otrl_proto_whitespace_bestversion(test3, &start, &end, OTRL_POLICY_ALLOW_V2 | OTRL_POLICY_ALLOW_V3); ok(ret == 0, "Best version whitespace invalid"); } static void test_otrl_proto_query_bestversion(void) { const char *query2 = "?OTRv2?\n<b>alice</b> has requested an " "<a href=\"https://otr.cypherpunks.ca/\">Off-the-Record " "private conversation</a>. However, you do not have a plugin " "to support that.\nSee <a href=\"https://otr.cypherpunks.ca/\">" "https://otr.cypherpunks.ca/</a> for more information."; const char *query23 = "?OTRv23?\n<b>alice</b> has requested an " "<a href=\"https://otr.cypherpunks.ca/\">Off-the-Record " "private conversation</a>. However, you do not have a plugin " "to support that.\nSee <a href=\"https://otr.cypherpunks.ca/\">" "https://otr.cypherpunks.ca/</a> for more information."; const char *query3 = "?OTRv3?\n<b>alice</b> has requested an " "<a href=\"https://otr.cypherpunks.ca/\">Off-the-Record " "private conversation</a>. However, you do not have a plugin " "to support that.\nSee <a href=\"https://otr.cypherpunks.ca/\">" "https://otr.cypherpunks.ca/</a> for more information."; ok(otrl_proto_query_bestversion(query2, OTRL_POLICY_ALLOW_V2) == 2, "The best from query2 is 2"); ok(otrl_proto_query_bestversion(query3, OTRL_POLICY_ALLOW_V3) == 3, "The best from query3 is 3"); ok(otrl_proto_query_bestversion(query23, OTRL_POLICY_ALLOW_V2) == 2, "The best from query23 is 2"); ok(otrl_proto_query_bestversion(query23, OTRL_POLICY_ALLOW_V3) == 3, "The best from query23 is 3"); } static void test_otrl_proto_default_query_msg(void) { const char *expected2 = "?OTRv2?\n<b>alice</b> has requested an " "<a href=\"https://otr.cypherpunks.ca/\">Off-the-Record " "private conversation</a>. However, you do not have a plugin " "to support that.\nSee <a href=\"https://otr.cypherpunks.ca/\">" "https://otr.cypherpunks.ca/</a> for more information."; const char *expected23 = "?OTRv23?\n<b>alice</b> has requested an " "<a href=\"https://otr.cypherpunks.ca/\">Off-the-Record " "private conversation</a>. However, you do not have a plugin " "to support that.\nSee <a href=\"https://otr.cypherpunks.ca/\">" "https://otr.cypherpunks.ca/</a> for more information."; const char *expected3 = "?OTRv3?\n<b>alice</b> has requested an " "<a href=\"https://otr.cypherpunks.ca/\">Off-the-Record " "private conversation</a>. However, you do not have a plugin " "to support that.\nSee <a href=\"https://otr.cypherpunks.ca/\">" "https://otr.cypherpunks.ca/</a> for more information."; const char *msg2 = otrl_proto_default_query_msg("alice", OTRL_POLICY_ALLOW_V2); const char *msg23 = otrl_proto_default_query_msg("alice", OTRL_POLICY_ALLOW_V2 | OTRL_POLICY_ALLOW_V3); const char *msg3 = otrl_proto_default_query_msg("alice", OTRL_POLICY_ALLOW_V3); ok(strcmp(expected2, msg2) == 0, "OTRv2 default query message is valid"); ok(strcmp(expected23, msg23) == 0, "OTRv23 default query message is valid"); ok(strcmp(expected3, msg3) == 0, "OTRv3 default query message is valid"); } void test_otrl_init(void) { extern unsigned int otrl_api_version; const unsigned int expected = rand(); otrl_api_version = expected; ok(otrl_init(OTRL_VERSION_MAJOR+1, 0, 0) == gcry_error(GPG_ERR_INV_VALUE), "Too recent major version"); ok(otrl_api_version == expected, "Api number unchanged"); ok(otrl_init(OTRL_VERSION_MAJOR-1, 0, 0) == gcry_error(GPG_ERR_INV_VALUE), "Too old major version"); ok(otrl_api_version == expected, "Api number unchanged"); ok(otrl_init(OTRL_VERSION_MAJOR, OTRL_VERSION_MINOR+1, 0) == gcry_error(GPG_ERR_INV_VALUE), "Too recent minor version"); ok(otrl_api_version = expected, "Api number unchanged"); ok(otrl_init(OTRL_VERSION_MAJOR, OTRL_VERSION_MINOR?OTRL_VERSION_MINOR-1:0, OTRL_VERSION_SUB) == gcry_error(GPG_ERR_NO_ERROR), "Inferior minor version"); ok(otrl_api_version = expected, "Api number unchanged"); otrl_api_version = 0; ok(otrl_init(OTRL_VERSION_MAJOR, OTRL_VERSION_MINOR, OTRL_VERSION_SUB) == gcry_error(GPG_ERR_NO_ERROR), "Exact version"); ok(otrl_api_version == ( (OTRL_VERSION_MAJOR << 16) | (OTRL_VERSION_MINOR << 8) | (OTRL_VERSION_SUB) ), "Api version set for exact version"); } static void test_otrl_proto_message_type(void) { OtrlMessageType ret; const char *test1 = "This is plaintext"; ret = otrl_proto_message_type(test1); ok(ret == OTRL_MSGTYPE_NOTOTR, "Proto message type is not OTR"); const char *test2 = OTRL_MESSAGE_TAG_BASE "This is plaintext"; ret = otrl_proto_message_type(test2); ok(ret == OTRL_MSGTYPE_TAGGEDPLAINTEXT, "Proto message type is tagged plaintext"); const char *test3 = "?OTR:AAIC"; ret = otrl_proto_message_type(test3); ok(ret == OTRL_MSGTYPE_DH_COMMIT, "Proto message type v2 is dh commit"); const char *test4 = "?OTR:AAMC"; ret = otrl_proto_message_type(test4); ok(ret == OTRL_MSGTYPE_DH_COMMIT, "Proto message type v3 is dh commit"); const char *test5 = "?OTR:AAIK"; ret = otrl_proto_message_type(test5); ok(ret == OTRL_MSGTYPE_DH_KEY, "Proto message type v2 is DH key"); const char *test6 = "?OTR:AAMK"; ret = otrl_proto_message_type(test6); ok(ret == OTRL_MSGTYPE_DH_KEY, "Proto message type v3 is DH key"); const char *test7 = "?OTR:AAIR"; ret = otrl_proto_message_type(test7); ok(ret == OTRL_MSGTYPE_REVEALSIG, "Proto message type v2 is revealsig"); const char *test8 = "?OTR:AAMR"; ret = otrl_proto_message_type(test8); ok(ret == OTRL_MSGTYPE_REVEALSIG, "Proto message type v3 is revealsig"); const char *test9 = "?OTR:AAIS"; ret = otrl_proto_message_type(test9); ok(ret == OTRL_MSGTYPE_SIGNATURE, "Proto message type v2 is a signature"); const char *test10 = "?OTR:AAMS"; ret = otrl_proto_message_type(test10); ok(ret == OTRL_MSGTYPE_SIGNATURE, "Proto message type v3 is a signature"); const char *test11 = "?OTR:AAID"; ret = otrl_proto_message_type(test11); ok(ret == OTRL_MSGTYPE_DATA, "Proto message type v2 is a data msg"); const char *test12 = "?OTR:AAMD"; ret = otrl_proto_message_type(test12); ok(ret == OTRL_MSGTYPE_DATA, "Proto message type v3 is a data msg"); const char *test13 = "?OTR?"; ret = otrl_proto_message_type(test13); ok(ret == OTRL_MSGTYPE_QUERY, "Proto message type is a query"); const char *test14 = "?OTR?v"; ret = otrl_proto_message_type(test14); ok(ret == OTRL_MSGTYPE_QUERY, "Proto message type is a query"); const char *test15 = "?OTR Error:"; ret = otrl_proto_message_type(test15); ok(ret == OTRL_MSGTYPE_ERROR, "Proto message type is an error"); const char *test16 = "?OTR: Please verify me"; ret = otrl_proto_message_type(test16); ok(ret == OTRL_MSGTYPE_UNKNOWN, "Proto message type is unknown"); const char *test17 = "?OTR:AAMA"; ret = otrl_proto_message_type(test17); ok(ret == OTRL_MSGTYPE_UNKNOWN, "Proto message type is unknown"); } static void test_otrl_proto_message_version(void) { int ret; const char *test1 = "?OTR:AAI"; ret = otrl_proto_message_version(test1); ok(ret == 2, "Protocol message version is 2"); const char *test2 = "?OTR:AAM"; ret = otrl_proto_message_version(test2); ok(ret == 3, "Protocol message version is 3"); const char *test3 = "?OTR:BLAH"; ret = otrl_proto_message_version(test3); ok(ret == 0, "Protocol message version is unknown"); } static void test_otrl_proto_instance(void) { /* Canary that shouldn't get modified on error. */ unsigned int inst_from = 42, inst_to = 42; gcry_error_t ret; /* * Instance tags only supported in protocol v3 (AAM in b64). The msg type * here is "A" which does not represent a valid one but we don't care * followed by the Sender Instance set to 1 and Receiver Instance set to 2. */ const char *test1 = "?OTR:AAMAAAAAAQAAAAI=="; ret = otrl_proto_instance(test1, &inst_from, &inst_to); ok(ret == gcry_error(GPG_ERR_NO_ERROR) && inst_from == 1 && inst_to == 2, "Proto instance find for v3"); /* Reset canary. */ inst_from = inst_to = 42; /* Len is not enough here. */ const char *test2 = "?OTR:AAMAAA="; ret = otrl_proto_instance(test2, &inst_from, &inst_to); ok(ret == gcry_error(GPG_ERR_INV_VALUE) && inst_from == 42 && inst_to == 42, "Proto instance failed for v3"); /* Reset canary. */ inst_from = inst_to = 42; /* Message from protocol v2. */ const char *test3 = "?OTR:AAIAAAAAAQAAAAI=="; ret = otrl_proto_instance(test3, &inst_from, &inst_to); ok(ret == gcry_error(GPG_ERR_INV_VALUE) && inst_from == 42 && inst_to == 42, "Proto instance failed for v2"); } static void test_otrl_version(void) { ok(strcmp(otrl_version(), OTRL_VERSION) == 0, "Otrl version OK"); } static void test_otrl_proto_create_data(void) { char *encmessagep = NULL, *msg = "HELO"; unsigned char flags = 12; unsigned char *extrakey = NULL; OtrlTLV *tlvs = NULL; ConnContext *context = new_context("Alice", "Alice's account", "Secret protocol"); context->msgstate = OTRL_MSGSTATE_PLAINTEXT; ok(otrl_proto_create_data(&encmessagep, context, msg, tlvs, flags, extrakey) == gcry_error(GPG_ERR_CONFLICT), "Conflict detected for msgstate plaintext"); context->msgstate = OTRL_MSGSTATE_ENCRYPTED; context->context_priv->their_keyid = 0; ok(otrl_proto_create_data(&encmessagep, context, msg, tlvs, flags, extrakey) == gcry_error(GPG_ERR_CONFLICT), "Conflict detected for msgstate encrypted"); } int main(int argc, char **argv) { plan_tests(NUM_TESTS); gcry_control(GCRYCTL_SET_THREAD_CBS, &gcry_threads_pthread); OTRL_INIT; test_otrl_proto_default_query_msg(); test_otrl_proto_query_bestversion(); test_otrl_init(); test_otrl_proto_whitespace_bestversion(); test_otrl_proto_message_type(); test_otrl_proto_message_version(); test_otrl_proto_instance(); test_otrl_version(); test_otrl_proto_create_data(); return 0; } ��������������������������������libotr-4.1.1/tests/unit/test_instag.c���������������������������������������������������������������0000664�0001750�0001750�00000014020�12637277541�014557� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Copyright (C) 2014 - Julien Voisin <julien.voisin@dustri.org> * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License, version 2 only, as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along with * this program; if not, write to the Free Software Foundation, Inc., 51 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ #include <gcrypt.h> #include <limits.h> #include <pthread.h> #include <unistd.h> #include <proto.h> #include <auth.h> #include <context.h> #include <tap/tap.h> #include <utils.h> GCRY_THREAD_OPTION_PTHREAD_IMPL; #define NUM_TESTS 13 /* Current directory of this executable. */ static char curdir[PATH_MAX]; static char instag_filepath[PATH_MAX]; static void test_otrl_instag_forget(void) { OtrlInsTag *instag1 = calloc(1, sizeof(OtrlInsTag)); OtrlInsTag *instag2 = calloc(1, sizeof(OtrlInsTag)); instag1->tous = &instag1; instag1->accountname = strdup("name one"); instag1->protocol = strdup("protocol one"); instag1->next = instag2; instag1->next->tous = &(instag1->next); instag2->accountname = strdup("name two"); instag2->protocol = strdup("protocol two"); otrl_instag_forget(NULL); ok(1, "Forget on NULL didn't segfault"); otrl_instag_forget(instag2); ok(instag1->next == NULL, "Instag forgotten without segfault"); } static void test_otrl_instag_forget_all(void) { OtrlUserState us = otrl_userstate_create(); OtrlInsTag *p = malloc(sizeof(OtrlInsTag)); p->accountname = strdup("account name"); p->protocol = strdup("protocol name"); p->instag = otrl_instag_get_new(); otrl_instag_forget_all(us); ok(1, "Forget all on empty user state"); p->next = us->instag_root; p->tous = &(us->instag_root); us->instag_root = p; otrl_instag_forget_all(us); ok(1, "Forget all on a non-empty user state"); } static void test_otrl_instag_find(void) { OtrlUserState us = otrl_userstate_create(); OtrlInsTag *p1 = malloc(sizeof(OtrlInsTag)); OtrlInsTag *p2 = malloc(sizeof(OtrlInsTag)); p1->accountname = strdup("account one"); p1->protocol = strdup("protocol one"); p1->instag = otrl_instag_get_new(); p1->next = us->instag_root; p1->tous = &(us->instag_root); us->instag_root = p1; p2->accountname = strdup("account two"); p2->protocol = strdup("protocol two"); p2->instag = otrl_instag_get_new(); p2->next = us->instag_root; p2->next->tous = &(p2->next); p2->tous = &(us->instag_root); us->instag_root = p2; ok(otrl_instag_find(us, "account two", "protocol two") == p2, "Found instag"); ok(otrl_instag_find(us, "account one", "protocol two") == NULL, "Instag not found"); ok(otrl_instag_find(us, "account three", "protocol three") == NULL, "Instag not found"); } static void test_otrl_instag_read(void) { OtrlUserState us = otrl_userstate_create(); OtrlInsTag *one, *two, *three, *four; char sone[9] = {0}, stwo[9] = {0}, sfour[9] = {0}; one = two = three = four = NULL; ok(otrl_instag_read(us, "/non_existent_file") == gcry_error_from_errno(ENOENT), "Non-existent file detected"); ok(otrl_instag_read(us, instag_filepath) == GPG_ERR_NO_ERROR, "Instag called with success"); one = otrl_instag_find(us, "alice_xmpp", "XMPP"); snprintf(sone, sizeof(sone), "%08x", one->instag); two = otrl_instag_find(us, "alice_irc", "IRC"); snprintf(stwo, sizeof(stwo), "%08x", two->instag); three = otrl_instag_find(us, "alice_inv", "IRC"); four = otrl_instag_find(us, "alice_icq", "ICQ"); snprintf(sfour, sizeof(sfour), "%08x", four->instag); ok(one && two && !three && four && strcmp(sone, "01234567") == 0 && strcmp(stwo, "9abcdef0") == 0 && strcmp(sfour, "98765432") == 0, "Instag succesfully read"); } static void test_otrl_instag_read_FILEp(void) { FILE* instf = fopen(instag_filepath, "rb"); OtrlUserState us = otrl_userstate_create(); OtrlInsTag* one, *two, *three, *four; char sone[9] = {0}, stwo[9] = {0}, sfour[9] = {0}; one = two = three = four = NULL; ok(otrl_instag_read_FILEp(us, instf) == gcry_error(GPG_ERR_NO_ERROR), "Instead read from FILEp"); fclose(instf); one = otrl_instag_find(us, "alice_xmpp", "XMPP"); snprintf(sone, sizeof(sone), "%08x", one->instag); two = otrl_instag_find(us, "alice_irc", "IRC"); snprintf(stwo, sizeof(stwo), "%08x", two->instag); three = otrl_instag_find(us, "alice_inv", "IRC"); four = otrl_instag_find(us, "alice_icq", "ICQ"); snprintf(sfour, sizeof(sfour), "%08x", four->instag); ok(one && two && !three && four && strcmp(sone, "01234567") == 0 && strcmp(stwo, "9abcdef0") == 0 && strcmp(sfour, "98765432") == 0, "Instag succesfully read"); } static void test_otrl_instag_get_new(void) { ok(otrl_instag_get_new() != 0, "New instag generated"); } static ssize_t get_exe_path(char *buf, size_t len) { char *path_end; if (readlink("/proc/self/exe", buf, len) < 0) { return -ENOMEM; } /* * Workaround to handle libtool path of the binary that is actually in the * $(buildir)/.libs. This is to make sure unit test works outside of tree. */ path_end = strstr(buf, ".libs/"); if (!path_end) { path_end = strrchr(buf, '/'); if (!path_end) { return -errno; } *(++path_end) = '\0'; } else { *path_end = '\0'; } return path_end - buf; } int main(int argc, char **argv) { /* Libtap call for the number of tests planned. */ plan_tests(NUM_TESTS); gcry_control(GCRYCTL_SET_THREAD_CBS, &gcry_threads_pthread); OTRL_INIT; if (get_exe_path(curdir, sizeof(curdir)) < 0) { return -ENOMEM; } /* Build the full path of the instag.txt file. */ (void) snprintf(instag_filepath, sizeof(instag_filepath), "%s%s", curdir, "instag.txt"); test_otrl_instag_forget(); test_otrl_instag_forget_all(); test_otrl_instag_find(); test_otrl_instag_read(); test_otrl_instag_read_FILEp(); test_otrl_instag_get_new(); return 0; } ����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/unit/test_auth.c�����������������������������������������������������������������0000664�0001750�0001750�00000011774�12637277541�014250� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Copyright (C) 2014 - David Goulet <dgoulet@ev0ke.net> * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License, version 2 only, as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along with * this program; if not, write to the Free Software Foundation, Inc., 51 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ #include <auth.h> #include <context.h> #include <gcrypt.h> #include <pthread.h> #include <tap/tap.h> #include <utils.h> #include <proto.h> GCRY_THREAD_OPTION_PTHREAD_IMPL; #define NUM_TESTS 5 static void test_auth_new(void) { struct context ctx; OtrlAuthInfo *auth = &ctx.auth; /* API call. */ otrl_auth_new(&ctx); ok(auth->authstate == OTRL_AUTHSTATE_NONE && auth->our_keyid == 0 && auth->encgx == NULL && auth->encgx_len == 0 && utils_is_zeroed(auth->r, 16) && utils_is_zeroed(auth->hashgx, 32) && auth->their_pub == NULL && auth->their_keyid == 0 && auth->enc_c == NULL && auth->enc_cp == NULL && auth->mac_m1 == NULL && auth->mac_m1p == NULL && auth->mac_m2 == NULL && auth->mac_m2p == NULL && utils_is_zeroed(auth->their_fingerprint, 20) && auth->initiated == 0 && auth->protocol_version == 0 && utils_is_zeroed(auth->secure_session_id, 20) && auth->secure_session_id_len == 0 && auth->lastauthmsg == NULL && auth->commit_sent_time == 0 && auth->context == &ctx, "OTR auth info init is valid"); } static void test_auth_clear(void) { struct context ctx; OtrlAuthInfo *auth = &ctx.auth; /* API call. */ otrl_auth_clear(auth); ok(auth->authstate == OTRL_AUTHSTATE_NONE && auth->our_keyid == 0 && auth->encgx == NULL && auth->encgx_len == 0 && utils_is_zeroed(auth->r, 16) && utils_is_zeroed(auth->hashgx, 32) && auth->their_pub == NULL && auth->their_keyid == 0 && auth->enc_c == NULL && auth->enc_cp == NULL && auth->mac_m1 == NULL && auth->mac_m1p == NULL && auth->mac_m2 == NULL && auth->mac_m2p == NULL && utils_is_zeroed(auth->their_fingerprint, 20) && auth->initiated == 0 && auth->protocol_version == 0 && utils_is_zeroed(auth->secure_session_id, 20) && auth->secure_session_id_len == 0 && auth->lastauthmsg == NULL && auth->commit_sent_time == 0 && auth->context == &ctx, "OTR auth info clear is valid"); } static void test_auth_start_v23(void) { unsigned int version = 3; gcry_error_t err; struct context ctx; OtrlAuthInfo *auth = &ctx.auth; /* API call. */ otrl_auth_new(&ctx); err = otrl_auth_start_v23(auth, version); ok(err == gcry_error(GPG_ERR_NO_ERROR) && auth->initiated == 1 && auth->protocol_version == version && auth->context->protocol_version == version && auth->our_keyid == 1 && !utils_is_zeroed(auth->r, sizeof(auth->r)) && auth->encgx != NULL && auth->encgx_len > 0 && !utils_is_zeroed(auth->hashgx, sizeof(auth->hashgx)) && auth->lastauthmsg != NULL && auth->authstate == OTRL_AUTHSTATE_AWAITING_DHKEY, "OTR auth start v23 is valid"); } static void test_otrl_auth_copy_on_key() { struct context m_ctx, ctx; OtrlAuthInfo *auth = &ctx.auth; OtrlAuthInfo *m_auth = &m_ctx.auth; otrl_auth_new(&ctx); otrl_auth_new(&m_ctx); otrl_auth_start_v23(auth, 3); otrl_auth_start_v23(m_auth, 3); m_auth->authstate = OTRL_AUTHSTATE_NONE; auth->authstate = OTRL_AUTHSTATE_AWAITING_REVEALSIG, otrl_auth_copy_on_key(m_auth, auth); ok(gcry_mpi_cmp((m_auth->our_dh.priv), (auth->our_dh.priv)) != 0 && gcry_mpi_cmp((m_auth->our_dh.pub), (auth->our_dh.pub)) != 0 && m_auth->our_keyid == auth->our_keyid && memcmp(m_auth->r, auth->r, 16) != 0 && memcmp(m_auth->encgx, auth->encgx, 16) != 0 && memcmp(m_auth->hashgx, auth->hashgx, 16) != 0 && auth->authstate == OTRL_AUTHSTATE_AWAITING_REVEALSIG, "Copy not done"); auth->authstate = OTRL_AUTHSTATE_AWAITING_DHKEY; m_auth->authstate = OTRL_AUTHSTATE_AWAITING_DHKEY; otrl_auth_copy_on_key(m_auth, auth); ok(m_auth->initiated == auth->initiated && m_auth->our_keyid == auth->our_keyid && m_auth->our_dh.groupid == auth->our_dh.groupid && gcry_mpi_cmp((m_auth->our_dh.priv), (auth->our_dh.priv)) == 0 && gcry_mpi_cmp((m_auth->our_dh.pub), (auth->our_dh.pub)) == 0 && m_auth->our_keyid == auth->our_keyid && memcmp(m_auth->r, auth->r, 16) == 0 && memcmp(m_auth->encgx, auth->encgx, 16) == 0 && memcmp(m_auth->hashgx, auth->hashgx, 16) == 0 && auth->authstate == OTRL_AUTHSTATE_AWAITING_DHKEY, "Copy OK"); } int main(int argc, char **argv) { /* Libtap call for the number of tests planned. */ plan_tests(NUM_TESTS); gcry_control(GCRYCTL_SET_THREAD_CBS, &gcry_threads_pthread); OTRL_INIT; /* Initialize libotr. */ otrl_dh_init(); test_auth_new(); test_auth_clear(); test_auth_start_v23(); test_otrl_auth_copy_on_key(); return 0; } ����libotr-4.1.1/tests/unit/test_userstate.c������������������������������������������������������������0000664�0001750�0001750�00000002527�12637277541�015322� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Copyright (C) 2014 - Julien Voisin <julien.voisin@dustri.org> * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License, version 2 only, as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along with * this program; if not, write to the Free Software Foundation, Inc., 51 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ #include <gcrypt.h> #include <pthread.h> #include <userstate.h> #include <proto.h> #include <tap/tap.h> GCRY_THREAD_OPTION_PTHREAD_IMPL; #define NUM_TESTS 1 static void test_otrl_userstate_create() { OtrlUserState us = otrl_userstate_create(); ok(us->context_root == NULL && us->privkey_root == NULL && us->instag_root == NULL && us->pending_root == NULL && us->timer_running == 0, "OtrlUserState ok"); otrl_userstate_free(us); } int main(int argc, char** argv) { plan_tests(NUM_TESTS); gcry_control(GCRYCTL_SET_THREAD_CBS, &gcry_threads_pthread); OTRL_INIT; test_otrl_userstate_create(); return 0; } �������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/unit/test_dh.c�������������������������������������������������������������������0000664�0001750�0001750�00000037535�12637277541�013705� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Copyright (C) 2014 - Julien Voisin <julien.voisin@dustri.org> * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License, version 2 only, as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along with * this program; if not, write to the Free Software Foundation, Inc., 51 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ #include <gcrypt.h> #include <pthread.h> #include <dh.h> #include <proto.h> #include <tap/tap.h> #include <utils.h> GCRY_THREAD_OPTION_PTHREAD_IMPL; #define NUM_TESTS 38 /* * The re-implementation/inclusion of crypto stuff is necessary because libotr * doesn't expose them. */ static const char* DH1536_MODULUS_S = "0x" "FFFFFFFFFFFFFFFFC90FDAA22168C234C4C6628B80DC1CD1" "29024E088A67CC74020BBEA63B139B22514A08798E3404DD" "EF9519B3CD3A431B302B0A6DF25F14374FE1356D6D51C245" "E485B576625E7EC6F44C42E9A637ED6B0BFF5CB6F406B7ED" "EE386BFB5A899FA5AE9F24117C4B1FE649286651ECE45B3D" "C2007CB8A163BF0598DA48361C55D39A69163FA8FD24CF5F" "83655D23DCA3AD961C62F356208552BB9ED529077096966D" "670C354E4ABC9804F1746C08CA237327FFFFFFFFFFFFFFFF"; static const char *DH1536_GENERATOR_S = "0x02"; static const int DH1536_MOD_LEN_BITS = 1536; static gcry_mpi_t DH1536_MODULUS = NULL; static gcry_mpi_t DH1536_MODULUS_MINUS_2 = NULL; static gcry_mpi_t DH1536_GENERATOR = NULL; static void test_otrl_dh_keypair_init(void) { DH_keypair kp; otrl_dh_keypair_init(&kp); ok(kp.groupid == 0 && kp.priv == NULL && kp.pub == NULL, "Keypair initialized"); } static void test_otrl_dh_keypair_copy(void) { DH_keypair k1, k2; unsigned char *buf; k1.groupid = rand(); buf = gcry_random_bytes(32, GCRY_WEAK_RANDOM); gcry_mpi_scan(&(k1.priv), GCRYMPI_FMT_USG, buf, 32, NULL); gcry_free(buf); buf = gcry_random_bytes(32, GCRY_WEAK_RANDOM); gcry_mpi_scan(&(k1.pub), GCRYMPI_FMT_USG, buf, 32, NULL); gcry_free(buf); otrl_dh_keypair_copy(&k2, &k1); ok(k1.groupid == k2.groupid && gcry_mpi_cmp(k1.priv, k2.priv) == 0 && gcry_mpi_cmp(k1.pub, k2.pub) == 0, "Keypair copied"); gcry_mpi_release(k1.priv); gcry_mpi_release(k1.pub); gcry_mpi_release(k2.priv); gcry_mpi_release(k2.pub); } static void test_otrl_dh_session_free() { DH_sesskeys sess; DH_keypair kp1, kp2; otrl_dh_gen_keypair(DH1536_GROUP_ID, &(kp1)); otrl_dh_gen_keypair(DH1536_GROUP_ID, &(kp2)); otrl_dh_session(&sess, &kp1, kp2.pub); otrl_dh_session_free(&sess); ok(sess.sendenc == NULL && sess.sendmac == NULL && sess.rcvenc == NULL && sess.rcvmac == NULL && utils_is_zeroed(sess.sendctr, 16) && utils_is_zeroed(sess.rcvctr, 16) && utils_is_zeroed(sess.sendmackey, 16) && utils_is_zeroed(sess.rcvmackey, 16) && sess.sendmacused == 0 && sess.rcvmacused == 0 && utils_is_zeroed(sess.extrakey, OTRL_EXTRAKEY_BYTES), "Session freed"); } static void test_otrl_dh_session_blank() { DH_sesskeys sess; DH_keypair kp1, kp2; otrl_dh_gen_keypair(DH1536_GROUP_ID, &(kp1)); otrl_dh_gen_keypair(DH1536_GROUP_ID, &(kp2)); otrl_dh_session(&sess, &kp1, kp2.pub); otrl_dh_session_blank(&sess); ok(sess.sendenc == NULL && sess.sendmac == NULL && sess.rcvenc == NULL && sess.rcvmac == NULL && utils_is_zeroed(sess.sendctr, 16) && utils_is_zeroed(sess.rcvctr, 16) && utils_is_zeroed(sess.sendmackey, 16) && utils_is_zeroed(sess.rcvmackey, 16) && sess.sendmacused == 0 && sess.rcvmacused == 0 && utils_is_zeroed(sess.extrakey, OTRL_EXTRAKEY_BYTES), "Session blanked"); } static void test_otrl_dh_gen_keypair(void) { DH_keypair kp; gcry_mpi_t pubkey = NULL; otrl_dh_keypair_init(&kp); ok(otrl_dh_gen_keypair(DH1536_GROUP_ID+1, &kp) == gcry_error(GPG_ERR_INV_VALUE), "Invalid group detected"); ok(otrl_dh_gen_keypair(DH1536_GROUP_ID, &kp) == gcry_error(GPG_ERR_NO_ERROR), "Valid group set"); ok(kp.groupid == DH1536_GROUP_ID, "Group set"); pubkey = gcry_mpi_new(DH1536_MOD_LEN_BITS); gcry_mpi_powm(pubkey, DH1536_GENERATOR, kp.priv, DH1536_MODULUS); ok(gcry_mpi_cmp(pubkey, kp.pub) == 0, "Matching pubkey"); otrl_dh_keypair_free(&kp); } static void test_otrl_dh_keypair_free(void) { DH_keypair kp; otrl_dh_gen_keypair(DH1536_GROUP_ID, &kp); otrl_dh_keypair_free(&kp); ok(kp.pub == NULL && kp.priv == NULL && kp.groupid == DH1536_GROUP_ID, "DH_keypair free'd with success"); } static void invert_DH_keypair(DH_keypair* kp1, DH_keypair* kp2) { DH_keypair tmp; otrl_dh_keypair_copy(&tmp, kp1); otrl_dh_keypair_copy(kp1, kp2); otrl_dh_keypair_copy(kp2, &tmp); otrl_dh_keypair_free(&tmp); } /* * This is an helper function. See the next one. */ static void _test_ortl_dh_session(const DH_keypair *kp, gcry_mpi_t y) { unsigned char *gabdata; unsigned char *hashdata; unsigned char encrypt[32] = {0}; unsigned char expected_encrypt[32] = {0}; unsigned char sendbyte, rcvbyte; const char test_vector[] = "This is a test vector"; DH_sesskeys sess; DH_sesskeys sess_expected; gcry_mpi_t gab; size_t gablen; otrl_dh_session_blank(&sess); otrl_dh_session(&sess, kp, y); gab = gcry_mpi_snew(DH1536_MOD_LEN_BITS); gcry_mpi_powm(gab, y, kp->priv, DH1536_MODULUS); gcry_mpi_print(GCRYMPI_FMT_USG, NULL, 0, &gablen, gab); gabdata = gcry_malloc_secure(gablen + 5); gabdata[1] = (gablen >> 24) & 0xff; gabdata[2] = (gablen >> 16) & 0xff; gabdata[3] = (gablen >> 8) & 0xff; gabdata[4] = gablen & 0xff; gcry_mpi_print(GCRYMPI_FMT_USG, gabdata + 5, gablen, NULL, gab); gcry_mpi_release(gab); hashdata = gcry_malloc_secure(20); if (gcry_mpi_cmp(kp->pub, y) > 0 ) { sendbyte = 0x01; rcvbyte = 0x02; } else { sendbyte = 0x02; rcvbyte = 0x01; } gabdata[0] = sendbyte; gcry_md_hash_buffer(GCRY_MD_SHA1, hashdata, gabdata, gablen + 5); gcry_cipher_open(&(sess_expected.sendenc), GCRY_CIPHER_AES, GCRY_CIPHER_MODE_CTR, GCRY_CIPHER_SECURE); gcry_cipher_setkey(sess_expected.sendenc, hashdata, 16); gcry_cipher_encrypt(sess_expected.sendenc, expected_encrypt, sizeof(expected_encrypt), test_vector, strlen(test_vector)); gcry_cipher_encrypt(sess.sendenc, encrypt, sizeof(encrypt), test_vector, strlen(test_vector)); ok(memcmp(encrypt, expected_encrypt, sizeof(encrypt)) == 0, "sendenc ok"); gcry_md_hash_buffer(GCRY_MD_SHA1, sess_expected.sendmackey, hashdata, 16); gcry_md_open(&(sess_expected.sendmac), GCRY_MD_SHA1, GCRY_MD_FLAG_HMAC); gcry_md_setkey(sess_expected.sendmac, sess_expected.sendmackey, 20); gcry_md_write(sess_expected.sendmac, test_vector, sizeof(test_vector)); gcry_md_write(sess.sendmac, test_vector, sizeof(test_vector)); ok(memcmp(gcry_md_read(sess_expected.sendmac, 0), gcry_md_read(sess.sendmac, 0), 32) == 0, "Sendmac ok"); gabdata[0] = rcvbyte; gcry_md_hash_buffer(GCRY_MD_SHA1, hashdata, gabdata, gablen + 5); gcry_cipher_open(&(sess_expected.rcvenc), GCRY_CIPHER_AES, GCRY_CIPHER_MODE_CTR, GCRY_CIPHER_SECURE); gcry_cipher_setkey(sess_expected.rcvenc, hashdata, 16); gcry_cipher_encrypt(sess_expected.rcvenc, expected_encrypt, sizeof(expected_encrypt), test_vector, strlen(test_vector)); gcry_cipher_encrypt(sess.rcvenc, encrypt, sizeof(encrypt), test_vector, strlen(test_vector)); ok(memcmp(encrypt, expected_encrypt, sizeof(encrypt)) == 0, "Sendenc ok"); gcry_md_hash_buffer(GCRY_MD_SHA1, sess_expected.rcvmackey, hashdata, 16); gcry_md_open(&(sess_expected.rcvmac), GCRY_MD_SHA1, GCRY_MD_FLAG_HMAC); gcry_md_setkey(sess_expected.rcvmac, sess_expected.rcvmackey, 20); gcry_md_write(sess_expected.rcvmac, test_vector, sizeof(test_vector)); gcry_md_write(sess.rcvmac, test_vector, sizeof(test_vector)); ok(memcmp(gcry_md_read(sess_expected.sendmac, 0), gcry_md_read(sess.sendmac, 0), 32) == 0, "rcvmac ok"); gabdata[0] = 0xff; gcry_md_hash_buffer(GCRY_MD_SHA256, sess_expected.extrakey, gabdata, gablen + 5); ok(memcmp(sess_expected.extrakey, sess.extrakey, 32) == 0, "extrakey set"); gcry_free(gabdata); gcry_free(hashdata); } /* * This function is a little bit tricky, since it uses an array of 3 * DH_keypair. The first one has a smaller pubkey than the second, which has a * smaller pubkey than the third one. * * The second key is used as "main" key. The two other ones are used to test * the otrl_dh_session, with a biggest and a smallest key than the "main" one. */ static void test_otrl_dh_session(void) { int i; DH_keypair kp[3]; /* kp[0] < kp[1] < kp[2] */ DH_sesskeys sess; for (i = 0; i < 3; i++) { otrl_dh_gen_keypair(DH1536_GROUP_ID, &(kp[i])); } /* Sort the array. */ for (i = 0; i < 2; i++) { if (gcry_mpi_cmp(kp[i].pub, kp[i + 1].pub) > 0) { invert_DH_keypair(kp + i, kp + i + 1); } } if (gcry_mpi_cmp(kp[0].pub, kp[1].pub) > 0) { invert_DH_keypair(kp, kp + 1); } kp[1].groupid++; ok(otrl_dh_session(&sess, &(kp[1]), kp[0].pub) == gcry_error(GPG_ERR_INV_VALUE), "Invalid group detected"); kp[1].groupid--; _test_ortl_dh_session(&(kp[1]), kp[0].pub); _test_ortl_dh_session(&(kp[1]), kp[2].pub); } static void test_otrl_dh_compute_v2_auth_keys(void) { const char test_vector[] = "This is a test vector"; size_t slen = 0; size_t sessionidlenp = 0; unsigned char *sdata = NULL; unsigned char *hashdata = NULL; gcry_mpi_t s = NULL; unsigned char ctr[16] = {0}; DH_keypair our_dh, their_dh; gcry_mpi_t public_key = NULL; unsigned char sessionid[8]; gcry_md_hd_t mac_m1 = NULL, mac_m1p = NULL, mac_m2 = NULL, mac_m2p = NULL; gcry_cipher_hd_t enc_c = NULL, enc_cp = NULL; unsigned char encrypt[32] = {0}; unsigned char sessionid_expected[8]; gcry_md_hd_t mac_m1_expected = NULL, mac_m1p_expected = NULL; gcry_md_hd_t mac_m2_expected = NULL, mac_m2p_expected = NULL; gcry_cipher_hd_t enc_c_expected = NULL, enc_cp_expected = NULL; unsigned char expected_encrypt[32] = {0}; otrl_dh_gen_keypair(DH1536_GROUP_ID, &our_dh); otrl_dh_gen_keypair(DH1536_GROUP_ID, &their_dh); our_dh.groupid++; ok(otrl_dh_compute_v2_auth_keys(&our_dh, their_dh.pub, sessionid, &sessionidlenp, &enc_c, &enc_cp, &mac_m1, &mac_m1p, &mac_m2, &mac_m2p) == gcry_error(GPG_ERR_INV_VALUE), "Invalid group detected"); our_dh.groupid--; gcry_mpi_scan(&public_key, GCRYMPI_FMT_USG, "1", 0, NULL); ok(otrl_dh_compute_v2_auth_keys(&our_dh, public_key, sessionid, &sessionidlenp, &enc_c, &enc_cp, &mac_m1, &mac_m1p, &mac_m2, &mac_m2p) == gcry_error(GPG_ERR_INV_VALUE), "Public key too small"); gcry_mpi_scan(&public_key, GCRYMPI_FMT_HEX, (const unsigned char *) DH1536_MODULUS_S, 0, NULL); gcry_mpi_add_ui(public_key, DH1536_MODULUS, 1); ok(otrl_dh_compute_v2_auth_keys(&our_dh, DH1536_MODULUS, sessionid, &sessionidlenp, &enc_c, &enc_cp, &mac_m1, &mac_m1p, &mac_m2, &mac_m2p) == gcry_error(GPG_ERR_INV_VALUE), "Public key too big"); ok(otrl_dh_compute_v2_auth_keys(&our_dh, their_dh.pub, sessionid, &sessionidlenp, &enc_c, &enc_cp, &mac_m1, &mac_m1p, &mac_m2, &mac_m2p) == gcry_error(GPG_ERR_NO_ERROR), "Auth keys generated"); ok(sessionidlenp == 8, "Session id len p set to correct value"); s = gcry_mpi_snew(DH1536_MOD_LEN_BITS); gcry_mpi_powm(s, their_dh.pub, our_dh.priv, DH1536_MODULUS); gcry_mpi_print(GCRYMPI_FMT_USG, NULL, 0, &slen, s); sdata = gcry_malloc_secure(slen + 5); sdata[1] = (slen >> 24) & 0xff; sdata[2] = (slen >> 16) & 0xff; sdata[3] = (slen >> 8) & 0xff; sdata[4] = slen & 0xff; gcry_mpi_print(GCRYMPI_FMT_USG, sdata+5, slen, NULL, s); gcry_mpi_release(s); hashdata = gcry_malloc_secure(32); sdata[0] = 0x00; gcry_md_hash_buffer(GCRY_MD_SHA256, hashdata, sdata, slen+5); memmove(sessionid_expected, hashdata, 8); ok(memcmp(sessionid_expected, sessionid, 8) == 0, "Session id is correct"); sdata[0] = 0x01; gcry_md_hash_buffer(GCRY_MD_SHA256, hashdata, sdata, slen+5); gcry_cipher_open(&enc_c_expected, GCRY_CIPHER_AES, GCRY_CIPHER_MODE_CTR, GCRY_CIPHER_SECURE); gcry_cipher_setkey(enc_c_expected, hashdata, 16); gcry_cipher_setctr(enc_c_expected, ctr, 16); gcry_cipher_encrypt(enc_c_expected, expected_encrypt, sizeof(expected_encrypt), test_vector, strlen(test_vector)); gcry_cipher_encrypt(enc_c, encrypt, sizeof(encrypt), test_vector, strlen(test_vector)); ok(memcmp(encrypt, expected_encrypt, sizeof(encrypt)) == 0, "Enc ok"); gcry_cipher_open(&(enc_cp_expected), GCRY_CIPHER_AES, GCRY_CIPHER_MODE_CTR, GCRY_CIPHER_SECURE); gcry_cipher_setkey(enc_cp_expected, hashdata+16, 16); gcry_cipher_setctr(enc_cp_expected, ctr, 16); gcry_cipher_encrypt(enc_cp_expected, expected_encrypt, sizeof(expected_encrypt), test_vector, strlen(test_vector)); gcry_cipher_encrypt(enc_cp, encrypt, sizeof(encrypt), test_vector, strlen(test_vector)); ok(memcmp(encrypt, expected_encrypt, sizeof(encrypt)) == 0, "Encp ok"); sdata[0] = 0x02; gcry_md_hash_buffer(GCRY_MD_SHA256, hashdata, sdata, slen+5); gcry_md_open(&mac_m1_expected, GCRY_MD_SHA256, GCRY_MD_FLAG_HMAC); gcry_md_setkey(mac_m1_expected, hashdata, 32); gcry_md_write(mac_m1_expected, test_vector, sizeof(test_vector)); gcry_md_write(mac_m1, test_vector, sizeof(test_vector)); ok(memcmp(gcry_md_read(mac_m1_expected, 0), gcry_md_read(mac_m1, 0), 32) == 0, "mac_m1 set"); sdata[0] = 0x03; gcry_md_hash_buffer(GCRY_MD_SHA256, hashdata, sdata, slen+5); gcry_md_open(&mac_m2_expected, GCRY_MD_SHA256, GCRY_MD_FLAG_HMAC); gcry_md_setkey(mac_m2_expected, hashdata, 32); gcry_md_write(mac_m2_expected, test_vector, sizeof(test_vector)); gcry_md_write(mac_m2, test_vector, sizeof(test_vector)); ok(memcmp(gcry_md_read(mac_m2_expected, 0), gcry_md_read(mac_m2, 0), 32) == 0, "mac_m2 set"); sdata[0] = 0x04; gcry_md_hash_buffer(GCRY_MD_SHA256, hashdata, sdata, slen+5); gcry_md_open(&mac_m1p_expected, GCRY_MD_SHA256, GCRY_MD_FLAG_HMAC); gcry_md_setkey(mac_m1p_expected, hashdata, 32); gcry_md_write(mac_m1p_expected, test_vector, sizeof(test_vector)); gcry_md_write(mac_m1p, test_vector, sizeof(test_vector)); ok(memcmp(gcry_md_read(mac_m1p_expected, 0), gcry_md_read(mac_m1p, 0), 32) == 0, "mac_m1p set"); sdata[0] = 0x05; gcry_md_hash_buffer(GCRY_MD_SHA256, hashdata, sdata, slen+5); gcry_md_open(&mac_m2p_expected, GCRY_MD_SHA256, GCRY_MD_FLAG_HMAC); gcry_md_setkey(mac_m2p_expected, hashdata, 32); gcry_md_write(mac_m2p_expected, test_vector, sizeof(test_vector)); gcry_md_write(mac_m2p, test_vector, sizeof(test_vector)); ok(memcmp(gcry_md_read(mac_m2p_expected, 0), gcry_md_read(mac_m2p, 0), 32) == 0, "mac_m2p set"); gcry_free(sdata); gcry_free(hashdata); } static void test_otrl_dh_incctr() { unsigned char ctr[8] = {0}; otrl_dh_incctr(ctr); ok(ctr[7] == 1 && utils_is_zeroed(ctr, 7), "Counter set"); ctr[7] = 255; otrl_dh_incctr(ctr); ok(ctr[7] == 0 && ctr[6] == 1 && utils_is_zeroed(ctr, 5), "Counter set"); memset(ctr, 255, sizeof(ctr)); otrl_dh_incctr(ctr); ok(utils_is_zeroed(ctr, sizeof(ctr)), "Counter set"); } static void test_otrl_dh_cmpctr() { unsigned char ctr1[8] = {0}, ctr2[8] = {0}; ok(otrl_dh_cmpctr(ctr1, ctr2) == 0, "Null counters are equals"); ctr1[1]++; ok(otrl_dh_cmpctr(ctr1, ctr2) > 0, "Ctr1 is bigger than ctr2"); ctr2[0]++; ok(otrl_dh_cmpctr(ctr1, ctr2) < 0, "Ctr2 is bigger than ctr1"); } int main(int argc, char **argv) { plan_tests(NUM_TESTS); gcry_control(GCRYCTL_SET_THREAD_CBS, &gcry_threads_pthread); OTRL_INIT; otrl_dh_init(); gcry_mpi_scan(&DH1536_MODULUS, GCRYMPI_FMT_HEX, (const unsigned char *)DH1536_MODULUS_S, 0, NULL); gcry_mpi_scan(&DH1536_GENERATOR, GCRYMPI_FMT_HEX, (const unsigned char *)DH1536_GENERATOR_S, 0, NULL); DH1536_MODULUS_MINUS_2 = gcry_mpi_new(DH1536_MOD_LEN_BITS); gcry_mpi_sub_ui(DH1536_MODULUS_MINUS_2, DH1536_MODULUS, 2); test_otrl_dh_gen_keypair(); test_otrl_dh_keypair_free(); test_otrl_dh_keypair_init(); test_otrl_dh_compute_v2_auth_keys(); test_otrl_dh_session(); test_otrl_dh_keypair_copy(); test_otrl_dh_session_blank(); test_otrl_dh_session_free(); test_otrl_dh_incctr(); test_otrl_dh_cmpctr(); return 0; } �������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/unit/test_mem.c������������������������������������������������������������������0000664�0001750�0001750�00000003237�12637277541�014060� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Copyright (C) 2014 - Julien Voisin <julien.voisin@dustri.org> * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License, version 2 only, as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along with * this program; if not, write to the Free Software Foundation, Inc., 51 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ #include <gcrypt.h> #include <pthread.h> #include <mem.h> #include <proto.h> #include <tap/tap.h> GCRY_THREAD_OPTION_PTHREAD_IMPL; #define NUM_TESTS 5 static void test_otrl_mem_differ(void) { const unsigned char buf1[] = "\x00" "12" "\x00" "34"; const unsigned char buf2[] = "\x00" "13" "\x00" "34"; const unsigned char buf3[] = "\x00" "13" "\x00" "345"; ok(otrl_mem_differ(buf1, buf1, sizeof(buf1)) == 0, "Identical buf are identical"); ok(otrl_mem_differ(buf1, buf2, sizeof(buf1)) == 1, "buf1 and buf2 are not identical"); ok(otrl_mem_differ(buf2, buf3, sizeof(buf1)) == 1, "buf1 and buf2 are not identical"); ok(otrl_mem_differ(buf1, NULL, 0) == 0, "buf1 and NULL are identical"); ok(otrl_mem_differ(NULL, NULL, 0) == 0, "NULL and NULL are identical"); } int main(int argc, char **argv) { plan_tests(NUM_TESTS); gcry_control(GCRYCTL_SET_THREAD_CBS, &gcry_threads_pthread); OTRL_INIT; test_otrl_mem_differ(); return 0; } �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/unit/Makefile.in�����������������������������������������������������������������0000664�0001750�0001750�00000055410�12667305560�014140� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������# Makefile.in generated by automake 1.14.1 from Makefile.am. # @configure_input@ # Copyright (C) 1994-2013 Free Software Foundation, Inc. # This Makefile.in is free software; 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you can redistribute it and/or modify it * under the terms of the GNU General Public License, version 2 only, as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along with * this program; if not, write to the Free Software Foundation, Inc., 51 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ #include <gcrypt.h> #include <pthread.h> #include <proto.h> #include <tlv.h> #include <tap/tap.h> GCRY_THREAD_OPTION_PTHREAD_IMPL; #define NUM_TESTS 11 static void test_otrl_tlv_new() { const unsigned short type = OTRL_TLV_SMP1Q; const char *data = "This is some test data"; const unsigned short len = strlen(data); OtrlTLV* tlv = otrl_tlv_new(type, len, (unsigned char*)data); ok(tlv->type == type && tlv->len == len && memcmp(tlv->data, data, len) == 0 && tlv->data[len] == '\0' && tlv->next == NULL, "TLV created with success"); otrl_tlv_free(tlv); } static void test_otrl_tlv_parse() { const unsigned char serialized1[] = {'\x01', '\x02', '\x00', '\x03', '1', '2', '3'}; const unsigned char serialized2[] = {'\x02', '\x04', '\x00', '\x00'}; const unsigned char serialized3[] = {'\x04', '\x02', '\x00', '\x03', '1', '2', '3', '\x02', '\x02', '\xff', '\xff', '1', '3', '3', '7'}; const unsigned char serialized4[] = {'\x04', '\x02', '\x00', '\x03', '1', '2', '3', '\x02', '\x02', '\x00', '\x04', '1', '3', '3', '7'}; OtrlTLV *tlv1 = otrl_tlv_parse(serialized1, sizeof(serialized1)); OtrlTLV *tlv2 = otrl_tlv_parse(serialized2, sizeof(serialized2)); OtrlTLV *tlv3 = otrl_tlv_parse(serialized3, sizeof(serialized3)); OtrlTLV *tlv4 = otrl_tlv_parse(serialized4, sizeof(serialized4)); ok(tlv1->type == 258 && tlv1->len == 3 && tlv1->next == NULL && memcmp(tlv1->data, "123", tlv1->len) == 0 && tlv1->data[tlv1->len] == 0, "Single-TLV chain constructed with success"); otrl_tlv_free(tlv1); ok(tlv2->type == 516 && tlv2->len == 0 && tlv2->next == NULL, "tlv2 chain with no data constructed with success"); otrl_tlv_free(tlv2); ok(tlv3->type == 1026 && tlv3->len == 3 && memcmp(tlv3->data, "123", tlv3->len) == 0 && tlv3->data[tlv3->len] == 0 && tlv3->next == NULL, "tlv3 chain with overflow constructed with success"); otrl_tlv_free(tlv3); ok(tlv4->type == 1026 && tlv4->len == 3 && memcmp(tlv4->data, "123", tlv4->len) == 0 && tlv4->data[tlv4->len] == 0 && tlv4->next != NULL, "First part of the 2-part tlv chain build"); ok(tlv4->next != NULL && tlv4->next->type == 514 && tlv4->next->len == 4 && memcmp(tlv4->next->data, "1337", tlv4->next->len) == 0 && tlv4->next->data[tlv4->next->len] == 0 && tlv4->next->next == NULL, "Second part of the 2-part tlv chain build"); otrl_tlv_free(tlv4); } static void test_otrl_tlv_seriallen() { const unsigned char serialized[] = {'\x04', '\x02', '\x00', '\x03', '1', '2', '3', '\x02', '\x02', '\x00', '\x04', '1', '3', '3', '7'}; OtrlTLV* tlv = otrl_tlv_parse(serialized, sizeof(serialized)); ok(otrl_tlv_seriallen(tlv) == 4 + 3 + 4 + 4, "Size correctly guessed"); otrl_tlv_free(tlv); } static void test_otrl_tlv_serialize() { const unsigned char serialized[] = {'\x04', '\x02', '\x00', '\x03', '1', '2', '3', '\x02', '\x02', '\x00', '\x04', '1', '3', '3', '7'}; OtrlTLV *tlv = otrl_tlv_parse(serialized, sizeof(serialized)); unsigned char *buf = malloc(otrl_tlv_seriallen(tlv)); otrl_tlv_serialize(buf, tlv); ok(memcmp(serialized, buf, sizeof(serialized)) == 0, "tlv correctly serialized"); free(tlv); tlv = otrl_tlv_parse(buf, sizeof(serialized)); otrl_tlv_serialize(buf, tlv); ok(memcmp(serialized, buf, sizeof(serialized)) == 0, "tlv correctly unserialized and serialized again"); otrl_tlv_free(tlv); } static void test_otrl_tlv_find() { const unsigned char serialized[] = {'\x04', '\x02', '\x00', '\x03', '1', '2', '3', '\x02', '\x02', '\x00', '\x04', '1', '3', '3', '7', '\x01', '\x03', '\x0', '\x01', 'A', '\x01', '\x02', '\x0', '\x01', 'B'}; OtrlTLV *tlv = otrl_tlv_parse(serialized, sizeof(serialized)); OtrlTLV *result = otrl_tlv_find(tlv, (1<<8) + 3); ok(result == tlv->next->next, "TLV found"); result = otrl_tlv_find(tlv, 7); ok(result == NULL, "Unexistent TLV not found"); otrl_tlv_free(tlv); } int main(int argc, char **argv) { plan_tests(NUM_TESTS); gcry_control(GCRYCTL_SET_THREAD_CBS, &gcry_threads_pthread); OTRL_INIT; test_otrl_tlv_new(); test_otrl_tlv_parse(); test_otrl_tlv_seriallen(); test_otrl_tlv_serialize(); test_otrl_tlv_find(); return 0; } ��������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/unit/instag.txt������������������������������������������������������������������0000664�0001750�0001750�00000000133�12637277541�014115� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������alice_xmpp XMPP 01234567 alice_irc IRC 9abcdef0 alice_inv IRC WRONG alice_icq ICQ 98765432 �������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/unit/Makefile.am�����������������������������������������������������������������0000664�0001750�0001750�00000002576�12667303336�014133� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������AM_CFLAGS = -I$(top_srcdir)/include \ -I$(top_srcdir)/src \ -I$(top_srcdir)/tests/utils/ \ -I$(srcdir) \ @LIBGCRYPT_CFLAGS@ LIBTAP=$(top_builddir)/tests/utils/tap/libtap.la LIBOTR=$(top_builddir)/src/libotr.la noinst_PROGRAMS = test_auth test_proto test_dh \ test_b64 test_context \ test_userstate test_tlv \ test_mem test_sm test_instag \ test_privkey test_auth_SOURCES = test_auth.c test_auth_LDADD = $(LIBTAP) $(LIBOTR) @LIBGCRYPT_LIBS@ test_proto_SOURCES = test_proto.c test_proto_LDADD = $(LIBTAP) $(LIBOTR) @LIBGCRYPT_LIBS@ test_dh_SOURCES = test_dh.c test_dh_LDADD = $(LIBTAP) $(LIBOTR) @LIBGCRYPT_LIBS@ test_b64_SOURCES = test_b64.c test_b64_LDADD = $(LIBTAP) $(LIBOTR) @LIBGCRYPT_LIBS@ test_context_SOURCES = test_context.c test_context_LDADD = $(LIBTAP) $(LIBOTR) @LIBGCRYPT_LIBS@ test_userstate_SOURCES = test_userstate.c test_userstate_LDADD = $(LIBTAP) $(LIBOTR) @LIBGCRYPT_LIBS@ test_tlv_SOURCES = test_tlv.c test_tlv_LDADD = $(LIBTAP) $(LIBOTR) @LIBGCRYPT_LIBS@ test_mem_SOURCES = test_mem.c test_mem_LDADD = $(LIBTAP) $(LIBOTR) @LIBGCRYPT_LIBS@ test_sm_SOURCES = test_sm.c test_sm_LDADD = $(LIBTAP) $(LIBOTR) @LIBGCRYPT_LIBS@ test_instag_SOURCES = test_instag.c test_instag_LDADD = $(LIBTAP) $(LIBOTR) @LIBGCRYPT_LIBS@ test_privkey_SOURCES = test_privkey.c test_privkey_LDADD = $(LIBTAP) $(LIBOTR) @LIBGCRYPT_LIBS@ EXTRA_DIST = instag.txt ����������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/unit/test_sm.c�������������������������������������������������������������������0000664�0001750�0001750�00000021377�12637277541�013726� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Copyright (C) 2014 - David Goulet <dgoulet@ev0ke.net> * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License, version 2 only, as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along with * this program; if not, write to the Free Software Foundation, Inc., 51 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ #include <gcrypt.h> #include <pthread.h> #include <proto.h> #include <sm.h> #include <tap/tap.h> #include <utils.h> GCRY_THREAD_OPTION_PTHREAD_IMPL; #define NUM_TESTS 23 /* Copied from sm.c */ static const int SM_MOD_LEN_BITS = 1536; static const char *SM_GENERATOR_S = "0x02"; static gcry_mpi_t SM_GENERATOR = NULL; static const int SM_MSG1_LEN = 6; static const int SM_MSG2_LEN = 11; static const int SM_MSG3_LEN = 8; static const int SM_MSG4_LEN = 3; /* Alice and Bob SM state for the SMP tests. */ static OtrlSMState *astate; static OtrlSMState *bstate; static const char *secret = "truie"; static unsigned char *alice_output; static int alice_output_len; static unsigned char *bob_output; static int bob_output_len; /* Stub. */ void otrl_sm_msg1_init(gcry_mpi_t **msg1); void otrl_sm_msg2_init(gcry_mpi_t **msg2); void otrl_sm_msg3_init(gcry_mpi_t **msg3); void otrl_sm_msg4_init(gcry_mpi_t **msg4); void otrl_sm_msg_free(gcry_mpi_t **message, int msglen); static OtrlSMState *alloc_sm_state(void) { OtrlSMState *smst = malloc(sizeof(*smst)); ok(smst, "SM State allocated"); return smst; } static void test_sm_state_new(void) { OtrlSMState *smst; smst = alloc_sm_state(); otrl_sm_state_new(smst); ok(!smst->secret && !smst->x2 && !smst->x3 && !smst->g1 && !smst->g2 && !smst->g3 && !smst->g3o && !smst->p && !smst->q && !smst->pab && !smst->qab && smst->nextExpected == OTRL_SMP_EXPECT1 && smst->received_question == 0 && smst->sm_prog_state == OTRL_SMP_PROG_OK, "SM state new"); otrl_sm_state_free(smst); free(smst); } static void test_sm_state_init(void) { OtrlSMState *smst; smst = alloc_sm_state(); otrl_sm_state_new(smst); otrl_sm_state_init(smst); ok(!gcry_mpi_cmp(smst->secret, gcry_mpi_snew(SM_MOD_LEN_BITS)) && !smst->x2 && !smst->x3 && !gcry_mpi_cmp(smst->g1, gcry_mpi_copy(SM_GENERATOR)) && !gcry_mpi_cmp(smst->g2, gcry_mpi_new(SM_MOD_LEN_BITS)) && !gcry_mpi_cmp(smst->g3, gcry_mpi_new(SM_MOD_LEN_BITS)) && !gcry_mpi_cmp(smst->g3o, gcry_mpi_new(SM_MOD_LEN_BITS)) && !gcry_mpi_cmp(smst->p, gcry_mpi_new(SM_MOD_LEN_BITS)) && !gcry_mpi_cmp(smst->q, gcry_mpi_new(SM_MOD_LEN_BITS)) && !gcry_mpi_cmp(smst->pab, gcry_mpi_new(SM_MOD_LEN_BITS)) && !gcry_mpi_cmp(smst->qab, gcry_mpi_new(SM_MOD_LEN_BITS)) && smst->nextExpected == OTRL_SMP_EXPECT1 && smst->received_question == 0 && smst->sm_prog_state == OTRL_SMP_PROG_OK, "SM state init"); otrl_sm_state_free(smst); free(smst); } static void test_sm_msg1_init(void) { gcry_mpi_t *msg; otrl_sm_msg1_init(&msg); ok(msg && !gcry_mpi_cmp(msg[0], gcry_mpi_new(SM_MOD_LEN_BITS)) && !msg[1] && !gcry_mpi_cmp(msg[2], gcry_mpi_new(SM_MOD_LEN_BITS)) && !gcry_mpi_cmp(msg[3], gcry_mpi_new(SM_MOD_LEN_BITS)) && !msg[4] && !gcry_mpi_cmp(msg[5], gcry_mpi_new(SM_MOD_LEN_BITS)), "SM msg1 initialized"); otrl_sm_msg_free(&msg, SM_MSG1_LEN); /* Test once here. */ ok(!msg, "SM msg1 freed"); } static void test_sm_msg2_init(void) { gcry_mpi_t *msg; otrl_sm_msg2_init(&msg); ok(msg && !gcry_mpi_cmp(msg[0], gcry_mpi_new(SM_MOD_LEN_BITS)) && !msg[1] && !gcry_mpi_cmp(msg[2], gcry_mpi_new(SM_MOD_LEN_BITS)) && !gcry_mpi_cmp(msg[3], gcry_mpi_new(SM_MOD_LEN_BITS)) && !msg[4] && !gcry_mpi_cmp(msg[5], gcry_mpi_new(SM_MOD_LEN_BITS)) && !gcry_mpi_cmp(msg[6], gcry_mpi_new(SM_MOD_LEN_BITS)) && !gcry_mpi_cmp(msg[7], gcry_mpi_new(SM_MOD_LEN_BITS)) && !msg[8] && !gcry_mpi_cmp(msg[9], gcry_mpi_new(SM_MOD_LEN_BITS)) && !gcry_mpi_cmp(msg[10], gcry_mpi_new(SM_MOD_LEN_BITS)), "SM msg2 initialized"); otrl_sm_msg_free(&msg, SM_MSG2_LEN); } static void test_sm_msg3_init(void) { gcry_mpi_t *msg; otrl_sm_msg3_init(&msg); ok(msg && !gcry_mpi_cmp(msg[0], gcry_mpi_new(SM_MOD_LEN_BITS)) && !gcry_mpi_cmp(msg[1], gcry_mpi_new(SM_MOD_LEN_BITS)) && !msg[2] && !gcry_mpi_cmp(msg[3], gcry_mpi_new(SM_MOD_LEN_BITS)) && !gcry_mpi_cmp(msg[4], gcry_mpi_new(SM_MOD_LEN_BITS)) && !gcry_mpi_cmp(msg[5], gcry_mpi_new(SM_MOD_LEN_BITS)) && !msg[6] && !gcry_mpi_cmp(msg[7], gcry_mpi_new(SM_MOD_LEN_BITS)), "SM msg3 initialized"); otrl_sm_msg_free(&msg, SM_MSG3_LEN); } static void test_sm_msg4_init(void) { gcry_mpi_t *msg; otrl_sm_msg4_init(&msg); ok(msg && !gcry_mpi_cmp(msg[0], gcry_mpi_new(SM_MOD_LEN_BITS)) && !msg[1] && !gcry_mpi_cmp(msg[2], gcry_mpi_new(SM_MOD_LEN_BITS)), "SM msg4 initialized"); otrl_sm_msg_free(&msg, SM_MSG4_LEN); } static void test_sm_step1(void) { gcry_error_t err; unsigned char hash_secret[SM_DIGEST_SIZE]; astate = alloc_sm_state(); otrl_sm_state_new(astate); otrl_sm_state_init(astate); gcry_md_hash_buffer(SM_HASH_ALGORITHM, hash_secret, secret, strlen(secret)); err = otrl_sm_step1(astate, hash_secret, sizeof(hash_secret), &alice_output, &alice_output_len); ok(err == GPG_ERR_NO_ERROR, "SMP step1 success"); gcry_mpi_t secret_mpi; gcry_mpi_scan(&secret_mpi, GCRYMPI_FMT_USG, hash_secret, sizeof(hash_secret), NULL); ok(!gcry_mpi_cmp(astate->secret, secret_mpi) && astate->received_question == 0 && astate->x2 && astate->x3 && astate->sm_prog_state == OTRL_SMP_PROG_OK && alice_output && alice_output_len > 0, "SMP step 1 validated"); gcry_mpi_release(secret_mpi); } static void test_sm_step2a(void) { gcry_error_t err; bstate = alloc_sm_state(); otrl_sm_state_new(bstate); otrl_sm_state_init(bstate); err = otrl_sm_step2a(bstate, alice_output, alice_output_len, 1); ok(err == GPG_ERR_NO_ERROR, "SMP step2a success"); ok(bstate->received_question == 1 && bstate->sm_prog_state == OTRL_SMP_PROG_OK && bstate->g3o && bstate->x2 && bstate->x3, "SMP step2a validate"); } static void test_sm_step2b(void) { gcry_error_t err; unsigned char hash_secret[SM_DIGEST_SIZE]; gcry_md_hash_buffer(SM_HASH_ALGORITHM, hash_secret, secret, strlen(secret)); err = otrl_sm_step2b(bstate, hash_secret, sizeof(hash_secret), &bob_output, &bob_output_len); ok(err == GPG_ERR_NO_ERROR, "SMP step2b success"); /* Generate expected data. */ gcry_mpi_t secret_mpi; gcry_mpi_scan(&secret_mpi, GCRYMPI_FMT_USG, hash_secret, sizeof(hash_secret), NULL); ok(bob_output && bob_output_len > 0 && !gcry_mpi_cmp(bstate->secret, secret_mpi) && bstate->p && bstate->q, "SMP step2b validate"); gcry_mpi_release(secret_mpi); } static void test_sm_step3(void) { gcry_error_t err; free(alice_output); err = otrl_sm_step3(astate, bob_output, bob_output_len, &alice_output, &alice_output_len); ok(err == GPG_ERR_NO_ERROR, "SMP step3 success"); ok(alice_output && alice_output_len > 0 && astate->sm_prog_state == OTRL_SMP_PROG_OK && astate->g3o && astate->g2 && astate->g3 && astate->p && astate->q && astate->qab && astate->pab, "SMP step3 validate"); } static void test_sm_step4(void) { gcry_error_t err; free(bob_output); err = otrl_sm_step4(bstate, alice_output, alice_output_len, &bob_output, &bob_output_len); ok(err == gcry_error(GPG_ERR_NO_ERROR), "SMP step4 success"); ok(bob_output && bob_output_len > 0 && bstate->sm_prog_state == OTRL_SMP_PROG_SUCCEEDED && bstate->pab && bstate->qab, "SMP step4 validate"); } static void test_sm_step5(void) { gcry_error_t err; err = otrl_sm_step5(astate, bob_output, bob_output_len); ok(err == gcry_error(GPG_ERR_NO_ERROR), "SMP step5 success"); ok(astate && astate->sm_prog_state == OTRL_SMP_PROG_SUCCEEDED, "SMP step5 validate"); } int main(int argc, char **argv) { /* Libtap call for the number of tests planned. */ plan_tests(NUM_TESTS); gcry_control(GCRYCTL_SET_THREAD_CBS, &gcry_threads_pthread); OTRL_INIT; /* Initialize sm subsystem. We can't really unit test that because every * value that is being initialized is static to sm.c. */ otrl_sm_init(); /* Init variables we need for testing. */ gcry_mpi_scan(&SM_GENERATOR, GCRYMPI_FMT_HEX, (const unsigned char *)SM_GENERATOR_S, 0, NULL); test_sm_state_new(); test_sm_state_init(); test_sm_msg1_init(); test_sm_msg2_init(); test_sm_msg3_init(); test_sm_msg4_init(); test_sm_step1(); test_sm_step2a(); test_sm_step2b(); test_sm_step3(); test_sm_step4(); test_sm_step5(); return 0; } �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/unit/test_context.c��������������������������������������������������������������0000664�0001750�0001750�00000015115�12637277541�014764� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Copyright (C) 2014 - Julien Voisin <julien.voisin@dustri.org> * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License, version 2 only, as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along with * this program; if not, write to the Free Software Foundation, Inc., 51 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ #include <limits.h> #include <pthread.h> #include <context.h> #include <tap/tap.h> #define NUM_TESTS 22 static void test_otrl_context_find_fingerprint(void) { unsigned char fingerprint[20] = {0}; int add_if_missing = 0, addedp = 0; ok(otrl_context_find_fingerprint(NULL, fingerprint, add_if_missing, &addedp) == NULL, "NULL context detected"); } static ConnContext *new_context(const char *user, const char *account, const char *protocol) { ConnContext *context; context = calloc(1, sizeof(ConnContext)); context->username = strdup(user); context->accountname = strdup(account); context->protocol = strdup(protocol); context->m_context = context; context->active_fingerprint = calloc(1, sizeof(Fingerprint)); context->context_priv = calloc(1, sizeof(ConnContextPriv)); return context; } static void free_context(ConnContext *context) { free(context->username); free(context->accountname); free(context->protocol); free(context); } static void test_otrl_context_find_recent_instance() { ConnContext *context = new_context("main", "main", "main"); ConnContext *context_child = new_context("child", "child", "child"); ConnContext *context_rcvd = new_context("rcvd", "rcvd", "rcvd"); ConnContext *context_sent = new_context("sent", "sent", "sent"); ConnContext *tmp; context->recent_child = context_child; context->recent_rcvd_child = context_rcvd; context->recent_sent_child = context_sent; ok(otrl_context_find_recent_instance(NULL, OTRL_INSTAG_RECENT) == NULL, "NULL context detected"); tmp = otrl_context_find_recent_instance(context, OTRL_INSTAG_RECENT); ok(strcmp(tmp->username, "child") == 0, "OTRL_INSTAG_RECENT ok"); tmp = otrl_context_find_recent_instance(context, OTRL_INSTAG_RECENT_RECEIVED); ok(strcmp(tmp->username, "rcvd") == 0, "OTRL_INSTAG_RECENT_RECEIVED ok"); tmp = otrl_context_find_recent_instance(context, OTRL_INSTAG_RECENT_SENT); ok(strcmp(tmp->username, "sent") == 0, "OTRL_INSTAG_RECENT_SENT ok"); tmp = otrl_context_find_recent_instance(context, INT_MAX); ok(!tmp, "Invalid instag detected"); free_context(context); free_context(context_child); free_context(context_rcvd); free_context(context_sent); } static void test_otrl_context_find_recent_secure_instance(void) { ConnContext *context1 = new_context("1", "1", "1"); ConnContext *context2 = new_context("2", "2", "2"); ConnContext *tmp; ok(otrl_context_find_recent_secure_instance(NULL) == NULL, "NULL detected"); context1->next = context2; context2->next = NULL; context2->m_context = context1; context1->msgstate = OTRL_MSGSTATE_PLAINTEXT; context2->msgstate = OTRL_MSGSTATE_PLAINTEXT; tmp = otrl_context_find_recent_secure_instance(context1); ok(tmp == context2, "Same msgstate"); context1->msgstate = OTRL_MSGSTATE_PLAINTEXT; context2->msgstate = OTRL_MSGSTATE_FINISHED; tmp = otrl_context_find_recent_secure_instance(context1); ok(tmp == context2, "plaintext then finished"); context1->msgstate = OTRL_MSGSTATE_PLAINTEXT; context2->msgstate = OTRL_MSGSTATE_ENCRYPTED; tmp = otrl_context_find_recent_secure_instance(context1); ok(tmp == context2, "Most secure context found"); context1->msgstate = OTRL_MSGSTATE_ENCRYPTED; context2->msgstate = OTRL_MSGSTATE_ENCRYPTED; tmp = otrl_context_find_recent_secure_instance(context1); ok(tmp == context2, "Most secure context found"); context1->msgstate = OTRL_MSGSTATE_PLAINTEXT; context2->msgstate = OTRL_MSGSTATE_PLAINTEXT; context2->active_fingerprint->trust = strdup("hello"); tmp = otrl_context_find_recent_secure_instance(context1); ok(tmp == context2, "Most secure context found"); free(context2->active_fingerprint); context2->active_fingerprint = NULL; context1->msgstate = OTRL_MSGSTATE_PLAINTEXT; context2->msgstate = OTRL_MSGSTATE_PLAINTEXT; context2->context_priv->lastrecv = 1; tmp = otrl_context_find_recent_secure_instance(context1); ok(tmp == context2, "Most secure context found"); context1->msgstate = OTRL_MSGSTATE_PLAINTEXT; context1->context_priv->lastrecv = 2; context2->msgstate = OTRL_MSGSTATE_PLAINTEXT; tmp = otrl_context_find_recent_secure_instance(context1); ok(tmp == context1, "Most secure context found"); free_context(context1); free_context(context2); } static void test_otrl_context_is_fingerprint_trusted() { Fingerprint fprint; fprint.trust = NULL; ok(otrl_context_is_fingerprint_trusted(NULL) == 0, "NULL fingerprint detected"); ok(otrl_context_is_fingerprint_trusted(&fprint) == 0, "NULL trust detected"); fprint.trust = "1234"; ok(otrl_context_is_fingerprint_trusted(&fprint) != 0, "Trusted fingerprint detected"); } static void test_otrl_context_update_recent_child() { ConnContext context1, context2; context1.m_context = &context1; context2.m_context = &context1; otrl_context_update_recent_child(&context1, 0); ok(context1.recent_rcvd_child == &context1 && context1.recent_child == &context1, "Recent self rcvd set"); otrl_context_update_recent_child(&context1, 1); ok(context1.recent_sent_child == &context1 && context1.recent_child == &context1, "Recent self sent set"); otrl_context_update_recent_child(&context2, 0); ok(context1.recent_rcvd_child == &context2 && context1.recent_child == &context2, "Recent rcvd set"); otrl_context_update_recent_child(&context2, 1); ok(context1.recent_sent_child == &context2 && context1.recent_child == &context2, "Recent sent set"); } static void test_otrl_context_set_trust(void) { Fingerprint fprint; const char *trust = "I don't trust anyone."; fprint.trust = NULL; otrl_context_set_trust(&fprint, trust); ok(strcmp(fprint.trust, trust) == 0, "Fingerprint set with success"); } int main(int argc, char **argv) { plan_tests(NUM_TESTS); test_otrl_context_set_trust(); test_otrl_context_find_recent_instance(); test_otrl_context_find_fingerprint(); test_otrl_context_find_recent_secure_instance(); test_otrl_context_is_fingerprint_trusted(); test_otrl_context_update_recent_child(); return 0; } ���������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/Makefile.in����������������������������������������������������������������������0000664�0001750�0001750�00000044175�12667305560�013167� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������# Makefile.in generated by automake 1.14.1 from Makefile.am. # @configure_input@ # Copyright (C) 1994-2013 Free Software Foundation, Inc. # This Makefile.in is free software; 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.NOEXPORT: ���������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/Makefile.am����������������������������������������������������������������������0000664�0001750�0001750�00000000431�12637277541�013145� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������SUBDIRS = utils unit regression AM_CFLAGS = -I$(top_srcdir)/include -I$(top_srcdir)/src -I$(top_srcdir)/tests/utils/ -I$(srcdir) LIBTAP=$(top_builddir)/tests/utils/tap/libtap.la check-am: ./run.sh test_list dist_noinst_SCRIPTS = test_list run.sh EXTRA_DIST = run.sh test_list ���������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/regression/����������������������������������������������������������������������0000775�0001750�0001750�00000000000�12667401053�013341� 5����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/regression/random-msg-disconnect.sh����������������������������������������������0000775�0001750�0001750�00000000530�12637277541�020023� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������#!/bin/bash CURDIR=$(dirname $0)/ TESTDIR=$CURDIR/.. CLIENT=$CURDIR/client/client KEYFILE=$CURDIR/client/otr.key MAX_MSG=50 MAX_INTERVAL=500 # msec source $TESTDIR/utils/tap/tap.sh diag "Messaging with random interval of max $MAX_INTERVAL with disconnect" $CLIENT --disconnect --load-key $KEYFILE --timeout $MAX_INTERVAL --max-msg $MAX_MSG ������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/regression/random-msg-disconnect-frag.sh�����������������������������������������0000775�0001750�0001750�00000000561�12637277541�020744� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������#!/bin/bash CURDIR=$(dirname $0)/ TESTDIR=$CURDIR/.. CLIENT=$CURDIR/client/client KEYFILE=$CURDIR/client/otr.key MAX_MSG=20 MAX_INTERVAL=500 # msec source $TESTDIR/utils/tap/tap.sh diag "Messaging with random interval of max $MAX_INTERVAL, disconnect and fragmentation" $CLIENT --load-key $KEYFILE --timeout $MAX_INTERVAL --max-msg $MAX_MSG --fragment --disconnect �����������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/regression/random-msg-disconnect-auth.sh�����������������������������������������0000775�0001750�0001750�00000000562�12637277541�020767� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������#!/bin/bash CURDIR=$(dirname $0)/ TESTDIR=$CURDIR/.. CLIENT=$CURDIR/client/client KEYFILE=$CURDIR/client/otr.key MAX_MSG=50 MAX_INTERVAL=100 # msec source $TESTDIR/utils/tap/tap.sh diag "Messaging with random interval of max $MAX_INTERVAL with disconnect and authentication" $CLIENT --disconnect --load-key $KEYFILE --timeout $MAX_INTERVAL --max-msg $MAX_MSG --auth ����������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/regression/random-msg-fast.sh����������������������������������������������������0000775�0001750�0001750�00000000535�12637277541�016634� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������#!/bin/bash CURDIR=$(dirname $0)/ TESTDIR=$CURDIR/.. CLIENT=$CURDIR/client/client KEYFILE=$CURDIR/client/otr.key MAX_MSG=250 MAX_INTERVAL=10 # msec source $TESTDIR/utils/tap/tap.sh diag "Messaging with random interval of max $MAX_INTERVAL and number of message to $MAX_MSG" $CLIENT --load-key $KEYFILE --timeout $MAX_INTERVAL --max-msg $MAX_MSG �������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/regression/random-msg-frag.sh����������������������������������������������������0000775�0001750�0001750�00000000530�12637277541�016611� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������#!/bin/bash CURDIR=$(dirname $0)/ TESTDIR=$CURDIR/.. CLIENT=$CURDIR/client/client KEYFILE=$CURDIR/client/otr.key MAX_MSG=20 MAX_INTERVAL=500 # msec source $TESTDIR/utils/tap/tap.sh diag "Messaging with random interval of max $MAX_INTERVAL and fragmentation" $CLIENT --load-key $KEYFILE --timeout $MAX_INTERVAL --max-msg $MAX_MSG --fragment ������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/regression/client/���������������������������������������������������������������0000775�0001750�0001750�00000000000�12667401053�014617� 5����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/regression/client/client.c�������������������������������������������������������0000664�0001750�0001750�00000062752�12637277541�016207� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Copyright (C) 2014 - David Goulet <dgoulet@ev0ke.net> * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License, version 2 only, as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along with * this program; if not, write to the Free Software Foundation, Inc., 51 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ #define _GNU_SOURCE #include <assert.h> #include <ctype.h> #include <gcrypt.h> #include <getopt.h> #include <inttypes.h> #include <pthread.h> #include <signal.h> #include <stdlib.h> #include <syscall.h> #include <sys/epoll.h> #include <sys/types.h> #include <sys/un.h> #include <unistd.h> #include <context.h> #include <privkey.h> #include <proto.h> #include <message.h> #include <tap/tap.h> #define zmalloc(x) calloc(1, x) GCRY_THREAD_OPTION_PTHREAD_IMPL; /* Global OTR user state. */ static OtrlUserState user_state; /* Getopt options. */ static struct option long_opts[] = { { "load-instag", 1, NULL, 'i' }, { "load-key", 1, NULL, 'k' }, { "load-fp", 1, NULL, 'f' }, { "timeout", 1, NULL, 't' }, { "max-msg", 1, NULL, 'm' }, { "disconnect", 0, NULL, 'd' }, { "auth", 0, NULL, 'a' }, { "fragment", 0, NULL, 'F' }, /* Closure. */ { NULL, 0, NULL, 0 } }; static char *opt_instag_path; static char *opt_key_path; static char *opt_key_fp_path; static unsigned int opt_max_num_msg; static int opt_disconnect; static int opt_auth; static int opt_fragment; /* Currently, the message size sent is between 1 and 600 len so 100 is a good * middle ground. */ static const int fragment_size = 100; /* By default, don't send frag. */ static OtrlFragmentPolicy fragPolicy = OTRL_FRAGMENT_SEND_SKIP; static const char *protocol = "otr-test"; static const char *alice_name = "alice"; static const char *bob_name = "bob"; static const char *unix_sock_bob_path = "/tmp/otr-test-bob.sock"; static const char *unix_sock_alice_path = "/tmp/otr-test-alice.sock"; static const char *auth_question = "What is NSA?"; static const char *auth_secret = "No Sugar Added"; /* Alice and Bob thread's socket. */ static int alice_sock; static int bob_sock; /* Declare it global because we use it multiple times. */ static struct sockaddr_un alice_sun; static struct sockaddr_un bob_sun; static int timeout_max = 1000; static unsigned int num_recv_msg; static unsigned int session_disconnected; static int quit_pipe[2] = { -1, -1 }; /* * For now not really do much more but if we want to use the OK condition at * some point to do something else, that will ease our life :). */ #define OK(cond, fmt, args...) \ do { \ ok(cond, fmt, ## args); \ } while (0) /* * Used to pass OTR message between threads. This contains the cipher and * plaintext so we are able to validate what's expected in both threads. */ struct otr_msg { size_t plaintext_len; size_t ciphertext_len; char *plaintext; char *ciphertext; }; struct otr_info { const char *user; int sock; unsigned int gone_secure; unsigned int auth_done; }; /* Stub */ static int send_otr_msg(int sock, const char *to, const char *from, struct otr_info *oinfo, const char *message); static OtrlPolicy ops_policy(void *opdata, ConnContext *context) { return OTRL_POLICY_DEFAULT; } static void ops_inject_msg(void *opdata, const char *accountname, const char *protocol, const char *recipient, const char *message) { ssize_t ret; struct otr_info *oinfo = opdata; struct otr_msg *msg; msg = zmalloc(sizeof(*msg)); if (!msg) { perror("zmalloc inject"); return; } msg->ciphertext = strdup(message); msg->ciphertext_len = strlen(message); ret = send(oinfo->sock, &msg, sizeof(msg), 0); if (ret < 0) { perror("send msg"); } } static void ops_gone_secure(void *opdata, ConnContext *context) { struct otr_info *oinfo = opdata; session_disconnected = 0; oinfo->gone_secure = 1; /* XXX: gone_insecure is never called ref bug #40 so this will always be * true. */ OK(oinfo->gone_secure, "Gone secure for %s", oinfo->user); } static void ops_gone_insecure(void *opdata, ConnContext *context) { struct otr_info *oinfo = opdata; OK(oinfo->gone_secure, "Gone insecure for %s", oinfo->user); oinfo->gone_secure = 0; } static int ops_max_message_size(void *opdata, ConnContext *context) { if (opt_fragment) { return fragment_size; } return 0; } static const char *ops_otr_error_message(void *opdata, ConnContext *context, OtrlErrorCode code) { char *msg = NULL; switch (code) { case OTRL_ERRCODE_NONE: break; case OTRL_ERRCODE_ENCRYPTION_ERROR: msg = strdup("OTRL_ERRCODE_ENCRYPTION_ERROR"); break; case OTRL_ERRCODE_MSG_NOT_IN_PRIVATE: msg = strdup("OTRL_ERRCODE_MSG_NOT_IN_PRIVATE"); break; case OTRL_ERRCODE_MSG_UNREADABLE: msg = strdup("OTRL_ERRCODE_MSG_UNREADABLE"); break; case OTRL_ERRCODE_MSG_MALFORMED: msg = strdup("OTRL_ERRCODE_MSG_MALFORMED"); break; } return msg; } static void ops_otr_error_message_free(void *opdata, const char *err_msg) { free((char *) err_msg); } static void ops_handle_msg_event(void *opdata, OtrlMessageEvent msg_event, ConnContext *context, const char *message, gcry_error_t err) { //char* msg = ""; struct otr_info *oinfo = opdata; switch(msg_event) { case OTRL_MSGEVENT_NONE: //msg = "OTRL_MSGEVENT_NONE"; break; case OTRL_MSGEVENT_ENCRYPTION_REQUIRED: //msg = "OTRL_MSGEVENT_ENCRYPTION_REQUIRED"; break; case OTRL_MSGEVENT_ENCRYPTION_ERROR: //msg = "OTRL_MSGEVENT_ENCRYPTION_ERROR"; break; case OTRL_MSGEVENT_CONNECTION_ENDED: //msg = "OTRL_MSGEVENT_CONNECTION_ENDED"; oinfo->gone_secure = 0; break; case OTRL_MSGEVENT_SETUP_ERROR: //msg = "OTRL_MSGEVENT_SETUP_ERROR"; break; case OTRL_MSGEVENT_MSG_REFLECTED: //msg = "OTRL_MSGEVENT_MSG_REFLECTED"; break; case OTRL_MSGEVENT_MSG_RESENT: //msg = "OTRL_MSGEVENT_MSG_RESENT"; break; case OTRL_MSGEVENT_RCVDMSG_NOT_IN_PRIVATE: //msg = "OTRL_MSGEVENT_RCVDMSG_NOT_IN_PRIVATE"; break; case OTRL_MSGEVENT_RCVDMSG_UNREADABLE: //msg = "OTRL_MSGEVENT_RCVDMSG_UNREADABLE"; break; case OTRL_MSGEVENT_RCVDMSG_MALFORMED: //msg = "OTRL_MSGEVENT_RCVDMSG_MALFORMED"; break; case OTRL_MSGEVENT_LOG_HEARTBEAT_RCVD: //msg = "OTRL_MSGEVENT_LOG_HEARTBEAT_RCVD"; break; case OTRL_MSGEVENT_LOG_HEARTBEAT_SENT: //msg = "OTRL_MSGEVENT_LOG_HEARTBEAT_SENT"; break; case OTRL_MSGEVENT_RCVDMSG_GENERAL_ERR: //msg = "OTRL_MSGEVENT_RCVDMSG_GENERAL_ERR"; break; case OTRL_MSGEVENT_RCVDMSG_UNENCRYPTED: //msg = "OTRL_MSGEVENT_RCVDMSG_UNENCRYPTED"; break; case OTRL_MSGEVENT_RCVDMSG_UNRECOGNIZED: //msg = "OTRL_MSGEVENT_RCVDMSG_UNRECOGNIZED"; break; case OTRL_MSGEVENT_RCVDMSG_FOR_OTHER_INSTANCE: //msg = "OTRL_MSGEVENT_RCVDMSG_FOR_OTHER_INSTANCE"; break; default: //msg = "Unknown OTRL message event"; break; } } static void ops_create_instag(void *opdata, const char *accountname, const char *protocol) { otrl_instag_generate(user_state, "/dev/null", accountname, protocol); } static int ops_is_logged_in(void *opdata, const char *accountname, const char *protocol, const char *recipient) { /* Always logged in or else we don't receive a disconnected TLV. */ return 1; } static void ops_create_privkey(void *opdata, const char *accountname, const char *protocol) { /* XXX: We should gen. our own key each time at some point? */ return; } static void ops_update_context_list(void *opdata) { return; } static void ops_new_fingerprint(void *opdata, OtrlUserState us, const char *accountname, const char *protocol, const char *username, unsigned char fingerprint[20]) { return; } static void ops_write_fingerprints(void *opdata) { return; } static void ops_still_secure(void *opdata, ConnContext *context, int is_reply) { struct otr_info *oinfo = opdata; OK(oinfo->gone_secure, "OP still secure"); } static void ops_received_symkey(void *opdata, ConnContext *context, unsigned int use, const unsigned char *usedata, size_t usedatalen, const unsigned char *symkey) { return; } static const char *ops_resent_msg_prefix(void *opdata, ConnContext *context) { /* Just so we can test resent_msg_prefix_free */ char *prefix = zmalloc(32); strncpy(prefix, "[such resent]", 32); return prefix; } static void ops_resent_msg_prefix_free(void *opdata, const char *prefix) { free((char *) prefix); } static void ops_convert_msg(void *opdata, ConnContext *context, OtrlConvertType convert_type, char ** dest, const char *src) { switch (convert_type) { case OTRL_CONVERT_SENDING: case OTRL_CONVERT_RECEIVING: break; default: OK(0, "OP convert_msg, got a unknown type %d", convert_type); break; } *dest = NULL; } static void ops_convert_free(void *opdata, ConnContext *context, char *dest) { return; } /* Stub */ static void ops_handle_smp_event(void *opdata, OtrlSMPEvent smp_event, ConnContext *context, unsigned short progress_percent, char *question); static void ops_timer_control(void *opdata, unsigned int interval); /* OTR message operations. */ static OtrlMessageAppOps ops = { ops_policy, ops_create_privkey, ops_is_logged_in, ops_inject_msg, ops_update_context_list, ops_new_fingerprint, ops_write_fingerprints, ops_gone_secure, ops_gone_insecure, ops_still_secure, ops_max_message_size, NULL, /* account_name - NOT USED */ NULL, /* account_name_free - NOT USED */ ops_received_symkey, ops_otr_error_message, ops_otr_error_message_free, ops_resent_msg_prefix, ops_resent_msg_prefix_free, ops_handle_smp_event, ops_handle_msg_event, ops_create_instag, ops_convert_msg, ops_convert_free, ops_timer_control, }; static void ops_timer_control(void *opdata, unsigned int interval) { otrl_message_poll(user_state, &ops, NULL); } static void ops_handle_smp_event(void *opdata, OtrlSMPEvent smp_event, ConnContext *context, unsigned short progress_percent, char *question) { struct otr_info *oinfo = opdata; switch (smp_event) { case OTRL_SMPEVENT_ASK_FOR_SECRET: OK(!oinfo->auth_done && !strncmp(oinfo->user, alice_name, strlen(alice_name)), "SMP Event, %s asking for secret", alice_name); break; case OTRL_SMPEVENT_ASK_FOR_ANSWER: OK(!oinfo->auth_done && !strncmp(oinfo->user, bob_name, strlen(bob_name)) && !strncmp(auth_question, question, strlen(auth_question)), "SMP Event, %s asking for answer", bob_name); /* * Directly respond to the SMP auth here. Much more easy instead of in * bob's thread. */ otrl_message_respond_smp(user_state, &ops, opdata, context, (unsigned char *) auth_secret, strlen(auth_secret)); break; case OTRL_SMPEVENT_IN_PROGRESS: OK(!oinfo->auth_done && !strncmp(oinfo->user, alice_name, strlen(alice_name)), "SMP Event, %s asking for secret", alice_name); break; case OTRL_SMPEVENT_SUCCESS: oinfo->auth_done = 1; OK(oinfo->auth_done, "SMP authentication success for %s", oinfo->user); break; case OTRL_SMPEVENT_ABORT: case OTRL_SMPEVENT_FAILURE: case OTRL_SMPEVENT_CHEATED: case OTRL_SMPEVENT_ERROR: default: OK(0, "SMP auth failed with event %d", smp_event); break; } } static void cleanup(void) { ssize_t ret; /* Wake up threads. */ ret = write(quit_pipe[1], "42", 2); if (ret < 0) { perror("write quit pipe"); } /* Cleanup residual Unix socket path. */ unlink(alice_sun.sun_path); unlink(bob_sun.sun_path); } static void update_msg_counter(void) { num_recv_msg++; if (num_recv_msg == opt_max_num_msg) { cleanup(); } } /* * Generate random string and stores it in out of size len. */ static void gen_random_string(char *out, size_t len) { size_t i; static const char alphanum[] = "0123456789" "ABCDEFGHIJKLMNOPQRSTUVWXYZ" "abcdefghijklmnopqrstuvwxyz"; for (i = 0; i < len; i++) { out[i] = alphanum[rand() % (sizeof(alphanum) - 1)]; } out[len - 1] = '\0'; } static int send_otr_msg(int sock, const char *to, const char *from, struct otr_info *oinfo, const char *message) { char *new_msg = NULL; ssize_t ret; gcry_error_t err; struct otr_msg *omsg; omsg = zmalloc(sizeof(*omsg)); if (!omsg) { perror("zmalloc send otr msg"); goto error; } if (!message) { size_t len = rand() % 600; char *msg = zmalloc(len); if (!msg) { perror("random msg"); goto error; } gen_random_string(msg, len); omsg->plaintext = msg; omsg->plaintext_len = strlen(msg); } else { omsg->plaintext = strdup(message); omsg->plaintext_len = strlen(message); } err = otrl_message_sending(user_state, &ops, oinfo, from, protocol, to, OTRL_INSTAG_BEST, omsg->plaintext, NULL, &new_msg, fragPolicy, NULL, NULL, NULL); if (err) { goto error; } if (new_msg) { free(omsg->ciphertext); omsg->ciphertext = strdup(new_msg); omsg->ciphertext_len = strlen(omsg->ciphertext); otrl_message_free(new_msg); } ret = send(sock, &omsg, sizeof(omsg), 0); if (ret < 0) { perror("send OTR msg"); goto error; } return 0; error: if(omsg){ free(omsg->plaintext); free(omsg->ciphertext); free(omsg); } return -1; } static int recv_otr_msg(int sock, const char *to, const char *from, struct otr_info *oinfo) { int err; ssize_t ret; char *new_msg = NULL; struct otr_msg *omsg; OtrlTLV *tlvs = NULL; ret = recv(sock, &omsg, sizeof(omsg), 0); if (ret < 0) { goto error; } err = otrl_message_receiving(user_state, &ops, oinfo, to, protocol, from, omsg->ciphertext, &new_msg, &tlvs, NULL, NULL, NULL); if (!err) { if (new_msg) { OK(strncmp(omsg->plaintext, new_msg, omsg->plaintext_len) == 0, "Message exchanged is valid"); update_msg_counter(); } } else { OK(err == 1, "Internal OTR message valid"); } free(omsg->plaintext); free(omsg->ciphertext); free(omsg); OtrlTLV *tlv = otrl_tlv_find(tlvs, OTRL_TLV_DISCONNECTED); /* * XXX: Somehow you can end up with a disconnected TLV in a gone secure * session (see #54). This is probably a bug but since the gone_insecure is * never called (see bug #48) we have no reliable way of knowing the state * of the session at this point. */ if (tlv && !oinfo->gone_secure) { OK(session_disconnected, "Disconnected TLV confirmed"); } otrl_tlv_free(tlvs); return 0; error: return -1; } static int add_sock_to_pollset(int epfd, int sock, uint32_t req_ev) { int ret; struct epoll_event ev; memset(&ev, 0, sizeof(ev)); ev.events = req_ev; ev.data.fd = sock; ret = epoll_ctl(epfd, EPOLL_CTL_ADD, sock, &ev); if (ret < 0) { perror("epoll_ctl add"); } return ret; } static void *alice_thread(void *data) { int sock_to_bob, sock_from_bob = 0, epfd, ret; unsigned int auth_started = 0; struct otr_info oinfo; memset(&oinfo, 0, sizeof(oinfo)); /* Poll size is ignored since 2.6.8 */ epfd = epoll_create(42); if (epfd < 0) { perror("epoll_create Bob"); goto error; } sock_to_bob = socket(PF_UNIX, SOCK_STREAM, 0); if (sock_to_bob < 0) { perror("Bob socket to Alice"); goto sock_error; } oinfo.sock = sock_to_bob; oinfo.user = alice_name; if (!opt_auth) { /* We are not going to SMP auth for this session so indicate it's * completed so we can go forward with random disconnect. */ oinfo.auth_done = 1; } ret = connect(sock_to_bob, (struct sockaddr *) &bob_sun, sizeof(bob_sun)); if (ret < 0) { perror("connect to Alice"); goto end; } /* Add quit pipe to pollset trigger by a cleanup. */ ret = add_sock_to_pollset(epfd, quit_pipe[0], EPOLLIN); if (ret < 0) { goto end; } /* Add our socket to epoll set. */ ret = add_sock_to_pollset(epfd, alice_sock, EPOLLIN | EPOLLRDHUP); if (ret < 0) { goto end; } while (1) { int i, nb_fd, timeout; struct epoll_event ev[3]; memset(ev, 0, sizeof(ev)); /* * Set random timeout and when we do timeout, use that to send message * to Alice. */ timeout = (rand() % (timeout_max - 1)); ret = epoll_wait(epfd, ev, sizeof(ev), timeout); if (ret < 0) { perror("epoll_wait Alice"); goto end; } nb_fd = ret; /* Each timeout to 10 finishes the OTR session. */ if (!(timeout % 3) && opt_disconnect && oinfo.auth_done) { session_disconnected = 1; oinfo.gone_secure = 0; otrl_message_disconnect(user_state, &ops, &oinfo, alice_name, protocol, bob_name, OTRL_INSTAG_BEST); OK(!oinfo.gone_secure, "OTR message disconnect"); } /* Start authentication with Bob. */ if (opt_auth && !auth_started && oinfo.gone_secure) { ConnContext *ctx; /* We have to find our context before auth. */ ctx = otrl_context_find(user_state, bob_name, alice_name, protocol, OTRL_INSTAG_BEST, 0, NULL, NULL, &oinfo); OK(ctx, "Alice context found for SMP auth"); otrl_message_initiate_smp_q(user_state, &ops, &oinfo, ctx, auth_question, (unsigned char *) auth_secret, strlen(auth_secret)); auth_started = 1; } /* No event thus timeout, send message to Alice. */ if (nb_fd == 0) { (void) send_otr_msg(sock_to_bob, bob_name, alice_name, &oinfo, NULL); continue; } for (i = 0; i < nb_fd; i++) { int fd; uint32_t event; fd = ev[i].data.fd; event = ev[i].events; if (fd == quit_pipe[0]) { /* Time to leave. */ goto end; } else if (fd == alice_sock) { if (event & (EPOLLERR | EPOLLHUP | EPOLLRDHUP)) { goto end; } else if (event & EPOLLIN) { socklen_t len; struct sockaddr_un sun; /* Connection from Bob, accept it so we can handle it. */ sock_from_bob = accept(fd, (struct sockaddr *) &sun, &len); ret = add_sock_to_pollset(epfd, sock_from_bob, EPOLLIN | EPOLLERR | EPOLLHUP); if (ret < 0) { goto end; } } continue; } else if (fd == sock_from_bob) { if (event & (EPOLLERR | EPOLLHUP)) { /* Stop since Bob's thread just shut us down. */ goto end; } else if (event & EPOLLIN) { (void) recv_otr_msg(sock_from_bob, alice_name, bob_name, &oinfo); } continue; } else { goto end; } } } end: if (sock_from_bob) { (void) close(sock_from_bob); } (void) close(sock_to_bob); sock_error: (void) close(epfd); error: (void) close(alice_sock); return NULL; } static void *bob_thread(void *data) { int sock_to_alice, sock_from_alice = 0, epfd, ret; struct otr_info oinfo; memset(&oinfo, 0, sizeof(oinfo)); /* Poll size is ignored since 2.6.8 */ epfd = epoll_create(42); if (epfd < 0) { perror("epoll_create Bob"); goto error; } sock_to_alice = socket(PF_UNIX, SOCK_STREAM, 0); if (sock_to_alice < 0) { perror("Bob socket to Alice"); goto sock_error; } oinfo.sock = sock_to_alice; oinfo.user = bob_name; ret = connect(sock_to_alice, (struct sockaddr *) &alice_sun, sizeof(alice_sun)); if (ret < 0) { perror("connect to Alice"); goto end; } /* Add quit pipe to pollset trigger by a cleanup. */ ret = add_sock_to_pollset(epfd, quit_pipe[0], EPOLLIN); if (ret < 0) { goto end; } /* Add our socket to epoll set. */ ret = add_sock_to_pollset(epfd, bob_sock, EPOLLIN | EPOLLERR | EPOLLHUP | EPOLLRDHUP); if (ret < 0) { goto end; } while (1) { int i, timeout = 500, nb_fd; struct epoll_event ev[3]; memset(ev, 0, sizeof(ev)); /* * Set random timeout and when we do timeout, use that to send message * to Alice. */ timeout = (rand() % (timeout_max - 1)); ret = epoll_wait(epfd, ev, sizeof(ev), timeout); if (ret < 0) { perror("epoll_wait Bob"); goto end; } nb_fd = ret; /* No event thus timeout, send message to Alice. */ if (nb_fd == 0) { (void) send_otr_msg(sock_to_alice, alice_name, bob_name, &oinfo, NULL); continue; } for (i = 0; i < nb_fd; i++) { int fd; uint32_t event; fd = ev[i].data.fd; event = ev[i].events; if (fd == quit_pipe[0]) { /* Time to leave. */ goto end; } else if (fd == bob_sock) { if (event & (EPOLLERR | EPOLLHUP | EPOLLRDHUP)) { goto end; } else if (event & (EPOLLIN | EPOLLHUP)) { socklen_t len; struct sockaddr_un sun; /* Connection from Alice, accept it so we can handle it. */ sock_from_alice = accept(fd, (struct sockaddr *) &sun, &len); ret = add_sock_to_pollset(epfd, sock_from_alice, EPOLLIN | EPOLLERR | EPOLLHUP); if (ret < 0) { goto end; } } continue; } else if (fd == sock_from_alice) { if (event & (EPOLLERR | EPOLLHUP)) { goto end; } else if (event & EPOLLIN) { (void) recv_otr_msg(sock_from_alice, bob_name, alice_name, &oinfo); } continue; } else { goto end; } } } end: if (sock_from_alice) { (void) close(sock_from_alice); } (void) close(sock_to_alice); sock_error: (void) close(epfd); error: (void) close(bob_sock); return NULL; } static void run(void) { int ret; void *status; pthread_t alice_th, bob_th; /* Init quit pipe. */ ret = pipe(quit_pipe); if (ret < 0) { perror("pipe quit pipe"); goto end; } ret = pthread_create(&alice_th, NULL, alice_thread, NULL); if (ret) { fail("pthread_create sender thread failed (errno: %d)", errno); goto end; } ret = pthread_create(&bob_th, NULL, bob_thread, NULL); if (ret) { fail("pthread_create receiver thread failed (errno: %d)", errno); goto exit_receiver; } (void) pthread_join(bob_th, &status); exit_receiver: (void) pthread_join(alice_th, &status); end: /* Get rid of the quit pipe. */ close(quit_pipe[0]); close(quit_pipe[1]); return; } /* * Load OTR instag using the given opt argument. */ static void load_instag(void) { int ret; gcry_error_t err; ret = access(opt_instag_path, R_OK); if (ret < 0) { fail("Instag file %s is not readable", opt_instag_path); return; } err = otrl_instag_read(user_state, opt_instag_path); OK(err == GPG_ERR_NO_ERROR, "Loading instag from given file"); } /* * Load private key file using the given opt argument. */ static void load_key(void) { int ret; gcry_error_t err; ret = access(opt_key_path, R_OK); if (ret < 0) { fail("Key file %s is not readable", opt_key_path); return; } err = otrl_privkey_read(user_state, opt_key_path); OK(err == GPG_ERR_NO_ERROR, "Loading key from given file"); } /* * Load private key fingerprint file using the given opt argument. */ static void load_key_fp(void) { int ret; gcry_error_t err; ret = access(opt_key_fp_path, R_OK); if (ret < 0) { fail("Key fingerprints file %s is not readable", opt_key_fp_path); return; } err = otrl_privkey_read_fingerprints(user_state, opt_key_fp_path, NULL, NULL); OK(err == GPG_ERR_NO_ERROR, "Loading key fingerprints from given file"); } static int create_unix_socket(const char *pathname, struct sockaddr_un *sun) { int sock, ret; /* Create both Unix socket. */ if ((sock = socket(PF_UNIX, SOCK_STREAM, 0)) < 0) { ret = -errno; perror("Unix socket"); goto error; } memset(sun, 0, sizeof(struct sockaddr_un)); sun->sun_family = AF_UNIX; strncpy(sun->sun_path, pathname, sizeof(sun->sun_path)); sun->sun_path[sizeof(sun->sun_path) - 1] = '\0'; ret = bind(sock, (struct sockaddr *) sun, sizeof(struct sockaddr_un)); if (ret < 0) { perror("bind unix sock"); goto error; } ret = listen(sock, 10); if (ret < 0) { perror("listen unix sock"); goto error; } return sock; error: return ret; } /* * Bootstrap client by initializing the OTR library and creating an OTR user * state. * * Return 0 on success else a negative value on error. */ static int init_client(void) { int ret; /* Init libgcrypt threading system. */ gcry_control(GCRYCTL_SET_THREAD_CBS, &gcry_threads_pthread); /* Init OTR library. */ OTRL_INIT; OK(1, "OTR library initialization done."); user_state = otrl_userstate_create(); OK(user_state, "OTR userstate creation done."); if (!user_state) { fail("Out of memory on userstate create"); ret = -ENOMEM; goto error; } /* Seed the prng. */ srand(time(NULL)); /* Cleanup Unix socket file before creating them. */ unlink(unix_sock_alice_path); unlink(unix_sock_bob_path); alice_sock = create_unix_socket(unix_sock_alice_path, &alice_sun); bob_sock = create_unix_socket(unix_sock_bob_path, &bob_sun); if (alice_sock < 0 || bob_sock < 0) { ret = -EINVAL; goto error; } if (opt_fragment) { fragPolicy = OTRL_FRAGMENT_SEND_ALL; } return 0; error: return ret; } static void sighandler(int sig) { switch (sig) { case SIGPIPE: case SIGINT: case SIGTERM: cleanup(); break; default: break; } } /* * main entry point. */ int main(int argc, char **argv) { int ret, opt; struct sigaction sa; sigset_t sigset; plan_no_plan(); if ((ret = sigemptyset(&sigset)) < 0) { perror("sigemptyset"); goto error; } sa.sa_handler = sighandler; sa.sa_mask = sigset; sa.sa_flags = 0; if ((ret = sigaction(SIGTERM, &sa, NULL)) < 0) { perror("sigaction"); goto error; } if ((ret = sigaction(SIGINT, &sa, NULL)) < 0) { perror("sigaction"); goto error; } if ((ret = sigaction(SIGPIPE, &sa, NULL)) < 0) { perror("sigaction"); goto error; } while ((opt = getopt_long(argc, argv, "+i:k:f:t:m:daF", long_opts, NULL)) != -1) { switch (opt) { case 'i': opt_instag_path = strdup(optarg); 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CLIENT=$CURDIR/client/client KEYFILE=$CURDIR/client/otr.key MAX_MSG=20 MAX_INTERVAL=500 # msec source $TESTDIR/utils/tap/tap.sh diag "Messaging with random interval of max $MAX_INTERVAL with disconnect, framgents and authentication" $CLIENT --load-key $KEYFILE --timeout $MAX_INTERVAL --max-msg $MAX_MSG --fragment --disconnect --auth ������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/regression/random-msg-auth.sh����������������������������������������������������0000775�0001750�0001750�00000000525�12637277541�016637� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������#!/bin/bash CURDIR=$(dirname $0)/ TESTDIR=$CURDIR/.. CLIENT=$CURDIR/client/client KEYFILE=$CURDIR/client/otr.key MAX_MSG=50 MAX_INTERVAL=500 # msec source $TESTDIR/utils/tap/tap.sh diag "Messaging with random interval of max $MAX_INTERVAL and authentication" $CLIENT --load-key $KEYFILE --timeout $MAX_INTERVAL --max-msg $MAX_MSG --auth ���������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/regression/Makefile.am�����������������������������������������������������������0000664�0001750�0001750�00000000374�12637277541�015333� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������SUBDIRS = client EXTRA_DIST = random-msg.sh random-msg-disconnect.sh random-msg-disconnect-auth.sh \ random-msg-disconnect-frag-auth.sh random-msg-fast.sh random-msg-auth.sh \ random-msg-disconnect-frag.sh random-msg-frag.sh ��������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/tests/regression/random-msg.sh���������������������������������������������������������0000775�0001750�0001750�00000000473�12637277541�015702� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������#!/bin/bash CURDIR=$(dirname $0)/ TESTDIR=$CURDIR/.. CLIENT=$CURDIR/client/client KEYFILE=$CURDIR/client/otr.key MAX_MSG=50 MAX_INTERVAL=500 # msec source $TESTDIR/utils/tap/tap.sh diag "Messaging with random interval of max $MAX_INTERVAL" $CLIENT --load-key $KEYFILE --timeout $MAX_INTERVAL --max-msg $MAX_MSG �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/COPYING��������������������������������������������������������������������������������0000664�0001750�0001750�00000043136�12637277541�011013� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������ GNU GENERAL PUBLIC LICENSE Version 2, June 1991 Copyright (C) 1989, 1991 Free Software Foundation, Inc. 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA Everyone is permitted to copy and distribute verbatim copies of this license document, but changing it is not allowed. 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IN NO EVENT UNLESS REQUIRED BY APPLICABLE LAW OR AGREED TO IN WRITING WILL ANY COPYRIGHT HOLDER, OR ANY OTHER PARTY WHO MAY MODIFY AND/OR REDISTRIBUTE THE PROGRAM AS PERMITTED ABOVE, BE LIABLE TO YOU FOR DAMAGES, INCLUDING ANY GENERAL, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF THE USE OR INABILITY TO USE THE PROGRAM (INCLUDING BUT NOT LIMITED TO LOSS OF DATA OR DATA BEING RENDERED INACCURATE OR LOSSES SUSTAINED BY YOU OR THIRD PARTIES OR A FAILURE OF THE PROGRAM TO OPERATE WITH ANY OTHER PROGRAMS), EVEN IF SUCH HOLDER OR OTHER PARTY HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES. END OF TERMS AND CONDITIONS How to Apply These Terms to Your New Programs If you develop a new program, and you want it to be of the greatest possible use to the public, the best way to achieve this is to make it free software which everyone can redistribute and change under these terms. To do so, attach the following notices to the program. It is safest to attach them to the start of each source file to most effectively convey the exclusion of warranty; and each file should have at least the "copyright" line and a pointer to where the full notice is found. <one line to give the program's name and a brief idea of what it does.> Copyright (C) <year> <name of author> This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program; if not, write to the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA Also add information on how to contact you by electronic and paper mail. If the program is interactive, make it output a short notice like this when it starts in an interactive mode: Gnomovision version 69, Copyright (C) year name of author Gnomovision comes with ABSOLUTELY NO WARRANTY; for details type `show w'. This is free software, and you are welcome to redistribute it under certain conditions; type `show c' for details. The hypothetical commands `show w' and `show c' should show the appropriate parts of the General Public License. Of course, the commands you use may be called something other than `show w' and `show c'; they could even be mouse-clicks or menu items--whatever suits your program. You should also get your employer (if you work as a programmer) or your school, if any, to sign a "copyright disclaimer" for the program, if necessary. Here is a sample; alter the names: Yoyodyne, Inc., hereby disclaims all copyright interest in the program `Gnomovision' (which makes passes at compilers) written by James Hacker. <signature of Ty Coon>, 1 April 1989 Ty Coon, President of Vice This General Public License does not permit incorporating your program into proprietary programs. If your program is a subroutine library, you may consider it more useful to permit linking proprietary applications with the library. If this is what you want to do, use the GNU Library General Public License instead of this License. ����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/�������������������������������������������������������������������������������0000775�0001750�0001750�00000000000�12667401053�011504� 5����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/otr_modify.c�������������������������������������������������������������������0000664�0001750�0001750�00000006736�12637277541�013771� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdio.h> #include <stdlib.h> /* libotr headers */ #include "proto.h" /* toolkit headers */ #include "readotr.h" #include "parse.h" #include "sha1hmac.h" static void usage(const char *progname) { fprintf(stderr, "Usage: %s mackey old_text new_text offset\n" "Read an OTR Data Message from stdin. Even if we can't read the\n" "data because we don't know either the AES key or the DH privkey,\n" "but we can make a good guess that the substring \"old_text\"\n" "appears at the given offset in the message, replace the old_text\n" "with the new_text (which must be of the same length), recalculate\n" "the MAC with the given mackey, and output the resulting Data message.\n", progname); exit(1); } int main(int argc, char **argv) { unsigned char *mackey; size_t mackeylen; unsigned char macval[20]; char *otrmsg = NULL; DataMsg datamsg; size_t textlen; unsigned int offset; const unsigned char *old_text, *new_text; char *newdatamsg; size_t i; if (argc != 5) { usage(argv[0]); } argv_to_buf(&mackey, &mackeylen, argv[1]); if (!mackey) { usage(argv[0]); } if (mackeylen != 20) { fprintf(stderr, "The MAC key must be 40 hex chars long.\n"); usage(argv[0]); } textlen = strlen(argv[2]); if (textlen != strlen(argv[3])) { fprintf(stderr, "The old_text and new_text must be of the same " "length.\n"); usage(argv[0]); } old_text = (const unsigned char *)argv[2]; new_text = (const unsigned char *)argv[3]; if (sscanf(argv[4], "%u", &offset) != 1) { fprintf(stderr, "Unparseable offset given.\n"); usage(argv[0]); } otrmsg = readotr(stdin); if (otrmsg == NULL) { fprintf(stderr, "No OTR Data Message found on stdin.\n"); exit(1); } if (otrl_proto_message_type(otrmsg) != OTRL_MSGTYPE_DATA) { fprintf(stderr, "OTR Non-Data Message found on stdin.\n"); exit(1); } datamsg = parse_datamsg(otrmsg); free(otrmsg); if (datamsg == NULL) { fprintf(stderr, "Invalid OTR Data Message found on stdin.\n"); exit(1); } /* Check the MAC */ sha1hmac(macval, mackey, datamsg->macstart, datamsg->macend - datamsg->macstart); if (memcmp(macval, datamsg->mac, 20)) { fprintf(stderr, "MAC does not verify: wrong MAC key?\n"); exit(1); } /* Modify the ciphertext */ for(i=0; i<textlen && offset+i < datamsg->encmsglen; ++i) { datamsg->encmsg[offset+i] ^= (old_text[i] ^ new_text[i]); } /* Recalculate the MAC */ newdatamsg = remac_datamsg(datamsg, mackey); printf("%s\n", newdatamsg); free(newdatamsg); free_datamsg(datamsg); free(mackey); fflush(stdout); return 0; } ����������������������������������libotr-4.1.1/toolkit/otr_parse.c��������������������������������������������������������������������0000664�0001750�0001750�00000014601�12637277541�013602� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2012 Ian Goldberg, Rob Smits, Chris Alexander, * Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdio.h> #include <stdlib.h> /* libotr headers */ #include "proto.h" /* toolkit headers */ #include "readotr.h" #include "parse.h" static void parse(const char *msg) { OtrlMessageType mtype = otrl_proto_message_type(msg); CommitMsg cmsg; KeyMsg kmsg; RevealSigMsg rmsg; SignatureMsg smsg; KeyExchMsg keyexch; DataMsg datamsg; switch(mtype) { case OTRL_MSGTYPE_QUERY: printf("OTR Query:\n\t%s\n\n", msg); break; case OTRL_MSGTYPE_DH_COMMIT: cmsg = parse_commit(msg); if (!cmsg) { printf("Invalid D-H Commit Message\n\n"); break; } printf("D-H Commit Message:\n"); dump_data(stdout, "\tVersion", &(cmsg->version), 1); if (cmsg->version == 3) { dump_int(stdout, "\tSender instance", cmsg->sender_instance); dump_int(stdout, "\tReceiver instance", cmsg->receiver_instance); } dump_data(stdout, "\tEncrypted Key", cmsg->enckey, cmsg->enckeylen); dump_data(stdout, "\tHashed Key", cmsg->hashkey, cmsg->hashkeylen); printf("\n"); free_commit(cmsg); break; case OTRL_MSGTYPE_DH_KEY: kmsg = parse_key(msg); if (!kmsg) { printf("Invalid D-H Key Message\n\n"); break; } printf("D-H Key Message:\n"); dump_data(stdout, "\tVersion", &(kmsg->version), 1); if (kmsg->version == 3) { dump_int(stdout, "\tSender instance", kmsg->sender_instance); dump_int(stdout, "\tReceiver instance", kmsg->receiver_instance); } dump_mpi(stdout, "\tD-H Key", kmsg->y); printf("\n"); free_key(kmsg); break; case OTRL_MSGTYPE_REVEALSIG: rmsg = parse_revealsig(msg); if (!rmsg) { printf("Invalid Reveal Signature Message\n\n"); break; } printf("Reveal Signature Message:\n"); dump_data(stdout, "\tVersion", &(rmsg->version), 1); if (rmsg->version == 3) { dump_int(stdout, "\tSender instance", rmsg->sender_instance); dump_int(stdout, "\tReceiver instance", rmsg->receiver_instance); } dump_data(stdout, "\tKey", rmsg->key, rmsg->keylen); dump_data(stdout, "\tEncrypted Signature", rmsg->encsig, rmsg->encsiglen); dump_data(stdout, "\tMAC", rmsg->mac, 20); printf("\n"); free_revealsig(rmsg); break; case OTRL_MSGTYPE_SIGNATURE: smsg = parse_signature(msg); if (!smsg) { printf("Invalid Signature Message\n\n"); break; } printf("Signature Message:\n"); dump_data(stdout, "\tVersion", &(smsg->version), 1); if (smsg->version == 3) { dump_int(stdout, "\tSender instance", smsg->sender_instance); dump_int(stdout, "\tReceiver instance", smsg->receiver_instance); } dump_data(stdout, "\tEncrypted Signature", smsg->encsig, smsg->encsiglen); dump_data(stdout, "\tMAC", smsg->mac, 20); printf("\n"); free_signature(smsg); break; case OTRL_MSGTYPE_V1_KEYEXCH: keyexch = parse_keyexch(msg); if (!keyexch) { printf("Invalid Key Exchange Message\n\n"); break; } printf("Key Exchange Message:\n"); dump_int(stdout, "\tReply", keyexch->reply); dump_mpi(stdout, "\tDSA p", keyexch->p); dump_mpi(stdout, "\tDSA q", keyexch->q); dump_mpi(stdout, "\tDSA g", keyexch->g); dump_mpi(stdout, "\tDSA e", keyexch->e); dump_int(stdout, "\tKeyID", keyexch->keyid); dump_mpi(stdout, "\tDH y", keyexch->y); dump_mpi(stdout, "\tSIG r", keyexch->r); dump_mpi(stdout, "\tSIG s", keyexch->s); printf("\n"); free_keyexch(keyexch); break; case OTRL_MSGTYPE_DATA: datamsg = parse_datamsg(msg); if (!datamsg) { printf("Invalid Data Message\n\n"); break; } printf("Data Message:\n"); dump_data(stdout, "\tVersion", &(datamsg->version), 1); if (datamsg->flags >= 0) { dump_int(stdout, "\tFlags", datamsg->flags); } if (datamsg->version == 3) { dump_int(stdout, "\tSender instance", datamsg->sender_instance); dump_int(stdout, "\tReceiver instance", datamsg->receiver_instance); } dump_int(stdout, "\tSender keyid", datamsg->sender_keyid); dump_int(stdout, "\tRcpt keyid", datamsg->rcpt_keyid); dump_mpi(stdout, "\tDH y", datamsg->y); dump_data(stdout, "\tCounter", datamsg->ctr, 8); dump_data(stdout, "\tEncrypted message", datamsg->encmsg, datamsg->encmsglen); dump_data(stdout, "\tMAC", datamsg->mac, 20); if (datamsg->mackeyslen > 0) { size_t len = datamsg->mackeyslen; unsigned char *mks = datamsg->mackeys; unsigned int i = 0; printf("\tRevealed MAC keys:\n"); while(len > 19) { char title[20]; sprintf(title, "\t\tKey %u", ++i); dump_data(stdout, title, mks, 20); mks += 20; len -= 20; } } printf("\n"); free_datamsg(datamsg); break; case OTRL_MSGTYPE_ERROR: printf("OTR Error:\n\t%s\n\n", msg); break; case OTRL_MSGTYPE_TAGGEDPLAINTEXT: printf("Tagged plaintext message:\n\t%s\n\n", msg); break; case OTRL_MSGTYPE_NOTOTR: printf("Not an OTR message:\n\t%s\n\n", msg); break; case OTRL_MSGTYPE_UNKNOWN: printf("Unrecognized OTR message:\n\t%s\n\n", msg); break; } fflush(stdout); } static void usage(const char *progname) { fprintf(stderr, "Usage: %s\n" "Read Off-the-Record (OTR) Key Exchange and/or Data messages from stdin\n" "and display their contents in a more readable format.\n", progname); exit(1); } int main(int argc, char **argv) { char *otrmsg = NULL; if (argc != 1) { usage(argv[0]); } while ((otrmsg = readotr(stdin)) != NULL) { parse(otrmsg); free(otrmsg); } return 0; } �������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/otr_readforge.c����������������������������������������������������������������0000664�0001750�0001750�00000007065�12637277541�014434� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdio.h> #include <stdlib.h> /* libotr headers */ #include "proto.h" /* toolkit headers */ #include "readotr.h" #include "parse.h" #include "sesskeys.h" #include "sha1hmac.h" #include "ctrmode.h" static void usage(const char *progname) { fprintf(stderr, "Usage: %s aeskey [new_message]\n" "Read an OTR Data Message from stdin. Use the given AES key to\n" "verify its MAC and decrypt the message to stdout. If new_message\n" "is given, output a new OTR Data Message with the same fields as the\n" "original, but with the message replaced by new_message\n", progname); exit(1); } int main(int argc, char **argv) { unsigned char *aeskey; unsigned char mackey[20]; unsigned char macval[20]; size_t aeskeylen; unsigned char *plaintext, *ciphertext; char *otrmsg = NULL; DataMsg datamsg; if (argc != 2 && argc != 3) { usage(argv[0]); } argv_to_buf(&aeskey, &aeskeylen, argv[1]); if (!aeskey) { usage(argv[0]); } if (aeskeylen != 16) { fprintf(stderr, "The AES key must be 32 hex chars long.\n"); usage(argv[0]); } otrmsg = readotr(stdin); if (otrmsg == NULL) { fprintf(stderr, "No OTR Data Message found on stdin.\n"); exit(1); } if (otrl_proto_message_type(otrmsg) != OTRL_MSGTYPE_DATA) { fprintf(stderr, "OTR Non-Data Message found on stdin.\n"); exit(1); } datamsg = parse_datamsg(otrmsg); free(otrmsg); if (datamsg == NULL) { fprintf(stderr, "Invalid OTR Data Message found on stdin.\n"); exit(1); } /* Create the MAC key */ sesskeys_make_mac(mackey, aeskey); /* Check the MAC */ sha1hmac(macval, mackey, datamsg->macstart, datamsg->macend - datamsg->macstart); if (memcmp(macval, datamsg->mac, 20)) { fprintf(stderr, "MAC does not verify: wrong AES key?\n"); } else { /* Decrypt the message */ plaintext = malloc(datamsg->encmsglen+1); if (!plaintext) { fprintf(stderr, "Out of memory!\n"); exit(1); } aes_ctr_crypt(plaintext, datamsg->encmsg, datamsg->encmsglen, aeskey, datamsg->ctr); plaintext[datamsg->encmsglen] = '\0'; printf("Plaintext: ``%s''\n", plaintext); free(plaintext); } /* Do we want to forge a message? */ if (argv[2] != NULL) { char *newdatamsg; size_t newlen = strlen(argv[2]); ciphertext = malloc(newlen); if (!ciphertext && newlen > 0) { fprintf(stderr, "Out of memory!\n"); exit(1); } aes_ctr_crypt(ciphertext, (const unsigned char *)argv[2], newlen, aeskey, datamsg->ctr); free(datamsg->encmsg); datamsg->encmsg = ciphertext; datamsg->encmsglen = newlen; newdatamsg = remac_datamsg(datamsg, mackey); printf("%s\n", newdatamsg); free(newdatamsg); } free_datamsg(datamsg); free(aeskey); fflush(stdout); return 0; } ���������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/sesskeys.c���������������������������������������������������������������������0000664�0001750�0001750�00000007243�12637277541�013461� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2014 Ian Goldberg, David Goulet, Chris Alexander, * Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdlib.h> /* libgcrypt headers */ #include <gcrypt.h> static const char* DH1536_MODULUS_S = "0x" "FFFFFFFFFFFFFFFFC90FDAA22168C234C4C6628B80DC1CD1" "29024E088A67CC74020BBEA63B139B22514A08798E3404DD" "EF9519B3CD3A431B302B0A6DF25F14374FE1356D6D51C245" "E485B576625E7EC6F44C42E9A637ED6B0BFF5CB6F406B7ED" "EE386BFB5A899FA5AE9F24117C4B1FE649286651ECE45B3D" "C2007CB8A163BF0598DA48361C55D39A69163FA8FD24CF5F" "83655D23DCA3AD961C62F356208552BB9ED529077096966D" "670C354E4ABC9804F1746C08CA237327FFFFFFFFFFFFFFFF"; static const int DH1536_MOD_LEN_BITS = 1536; static const char *DH1536_GENERATOR_S = "0x02"; /* Generate the session id and the two encryption keys from our private * DH key and their public DH key. Also indicate in *high_endp if we * are the "high" end of the key exchange (set to 1) or the "low" end * (set to 0) */ void sesskeys_gen(unsigned char sessionid[20], unsigned char sendenc[16], unsigned char rcvenc[16], int *high_endp, gcry_mpi_t *our_yp, gcry_mpi_t our_x, gcry_mpi_t their_y) { gcry_mpi_t modulus, generator, secretv; unsigned char *secret; size_t secretlen; unsigned char hash[20]; int is_high; gcry_mpi_scan(&modulus, GCRYMPI_FMT_HEX, (const unsigned char *)DH1536_MODULUS_S, 0, NULL); gcry_mpi_scan(&generator, GCRYMPI_FMT_HEX, (const unsigned char *)DH1536_GENERATOR_S, 0, NULL); *our_yp = gcry_mpi_snew(DH1536_MOD_LEN_BITS); gcry_mpi_powm(*our_yp, generator, our_x, modulus); secretv = gcry_mpi_snew(DH1536_MOD_LEN_BITS); gcry_mpi_powm(secretv, their_y, our_x, modulus); gcry_mpi_release(generator); gcry_mpi_release(modulus); gcry_mpi_print(GCRYMPI_FMT_USG, NULL, 0, &secretlen, secretv); secret = malloc(secretlen + 5); secret[1] = (secretlen >> 24) & 0xff; secret[2] = (secretlen >> 16) & 0xff; secret[3] = (secretlen >> 8) & 0xff; secret[4] = (secretlen) & 0xff; gcry_mpi_print(GCRYMPI_FMT_USG, secret+5, secretlen, NULL, secretv); gcry_mpi_release(secretv); is_high = (gcry_mpi_cmp(*our_yp, their_y) > 0); /* Calculate the session id */ secret[0] = 0x00; gcry_md_hash_buffer(GCRY_MD_SHA1, hash, secret, secretlen+5); memmove(sessionid, hash, 20); /* Calculate the sending enc key */ secret[0] = is_high ? 0x01 : 0x02; gcry_md_hash_buffer(GCRY_MD_SHA1, hash, secret, secretlen+5); memmove(sendenc, hash, 16); /* Calculate the receiving enc key */ secret[0] = is_high ? 0x02 : 0x01; gcry_md_hash_buffer(GCRY_MD_SHA1, hash, secret, secretlen+5); memmove(rcvenc, hash, 16); *high_endp = is_high; free(secret); } /* Generate a MAC key from the corresponding encryption key */ void sesskeys_make_mac(unsigned char mackey[20], unsigned char enckey[16]) { gcry_md_hash_buffer(GCRY_MD_SHA1, mackey, enckey, 16); } �������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/otr_toolkit.1������������������������������������������������������������������0000664�0001750�0001750�00000010602�12637277541�014070� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������.\" Hey, EMACS: -*- nroff -*- .\" First parameter, NAME, should be all caps .\" Second parameter, SECTION, should be 1-8, maybe w/ subsection .\" other parameters are allowed: see man(7), man(1) .TH OTR_PARSE 1 "March 14, 2012" .\" Please adjust this date whenever revising the manpage. .\" .\" Some roff macros, for reference: .\" .nh disable hyphenation .\" .hy enable hyphenation .\" .ad l left justify .\" .ad b justify to both left and right margins .\" .nf disable filling .\" .fi enable filling .\" .br insert line break .\" .sp <n> insert n+1 empty lines .\" for manpage-specific macros, see man(7) .SH NAME otr_parse, otr_sesskeys, otr_mackey, otr_readforge, otr_modify, otr_remac \- Process Off-the-Record Messaging transcripts .SH SYNOPSIS .B otr_parse .br .B otr_sesskeys .I our_privkey their_pubkey .br .B otr_mackey .I aes_enc_key .br .B otr_readforge .I aes_enc_key [newmsg] .br .B otr_modify .I mackey old_text new_text offset .br .B otr_remac .I mackey sender_instance receiver_instance flags snd_keyid rcv_keyid pubkey counter encdata revealed_mackeys .SH DESCRIPTION Off-the-Record (OTR) Messaging allows you to have private conversations over IM by providing: - Encryption - No one else can read your instant messages. - Authentication - You are assured the correspondent is who you think it is. - Deniability - The messages you send do \fInot\fP have digital signatures that are checkable by a third party. Anyone can forge messages after a conversation to make them look like they came from you. However, \fIduring\fP a conversation, your correspondent is assured the messages he sees are authentic and unmodified. - Perfect forward secrecy - If you lose control of your private keys, no previous conversation is compromised. .PP The OTR Toolkit is useful for analyzing and/or forging OTR messages. Why do we offer this? Primarily, to make absolutely sure that transcripts of OTR conversations are really easy to forge after the fact. [Note that \fIduring\fP an OTR conversation, messages can't be forged without real-time access to the secret keys on the participants' computers, and in that case, all security has already been lost.] Easily-forgeable transcripts help us provide the "Deniability" property: if someone claims you said something over OTR, they'll have no proof, as anyone at all can modify a transcript to make it say whatever they like, and still have all the verification come out correctly. Here are the six programs in the toolkit: - otr_parse - Parse OTR messages given on stdin, showing the values of all the fields in OTR protocol messages. - otr_sesskeys our_privkey their_pubkey - Shows our public key, the session id, two AES and two MAC keys derived from the given Diffie-Hellman keys (one private, one public). - otr_mackey aes_enc_key - Shows the MAC key derived from the given AES key. - otr_readforge aes_enc_key [newmsg] - Decrypts an OTR Data message using the given AES key, and displays the message. - If newmsg is given, replace the message with that one, encrypt and MAC it properly, and output the resulting OTR Data Message. This works even if the given key was not correct for the original message, so as to enable complete forgeries. - otr_modify mackey old_text new_text offset - Even if you can't read the data because you don't know either the AES key or the Diffie-Hellman private key, but you can make a good guess that the substring "old_text" appears at the given offset in the message, replace the old_text with the new_text (which must be of the same length), recalculate the MAC with the given mackey, and output the resulting Data message. - Note that, even if you don't know any text in an existing message, you can still forge messages of your choice using the otr_readforge command, above. - otr_remac mackey sender_instance receiver_instance flags snd_keyid rcv_keyid pubkey counter encdata revealed_mackeys - Make a new OTR protocol version 3 Data Message, with the given pieces (note that the data part is already encrypted). MAC it with the given mackey. .SH SEE ALSO .BR "Off-the-Record Messaging" , at .UR https://www.cypherpunks.ca/otr/ https://www.cypherpunks.ca/otr/ .UE .SH AUTHOR otr_toolkit was written by the OTR Dev Team <otr@cypherpunks.ca>. ������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/ctrmode.h����������������������������������������������������������������������0000664�0001750�0001750�00000002274�12637277541�013251� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __CTRMODE_H__ #define __CTRMODE_H__ /* Encrypt or decrypt data in AES-CTR mode. (The operations are the * same.) We roll our own here just to double-check that the calls * libotr makes to libgcrypt are doing the right thing. */ void aes_ctr_crypt(unsigned char *out, const unsigned char *in, size_t len, unsigned char key[16], unsigned char ctrtop[8]); #endif ������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/sha1hmac.c���������������������������������������������������������������������0000664�0001750�0001750�00000003611�12637277541�013270� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdio.h> #include <stdlib.h> /* libgcrypt headers */ #include <gcrypt.h> /* Implementation of SHA1-HMAC. We're rolling our own just to * double-check that the calls libotr makes to libgcrypt are in fact * doing the right thing. */ void sha1hmac(unsigned char digest[20], unsigned char key[20], unsigned char *data, size_t datalen) { unsigned char ipad[64], opad[64]; size_t i; gcry_md_hd_t sha1; gcry_error_t err; unsigned char hash[20]; memset(ipad, 0, 64); memset(opad, 0, 64); memmove(ipad, key, 20); memmove(opad, key, 20); for(i=0;i<64;++i) { ipad[i] ^= 0x36; opad[i] ^= 0x5c; } err = gcry_md_open(&sha1, GCRY_MD_SHA1, 0); if (err) { fprintf(stderr, "Error: %s\n", gcry_strerror(err)); exit(1); } gcry_md_write(sha1, ipad, 64); gcry_md_write(sha1, data, datalen); memmove(hash, gcry_md_read(sha1, 0), 20); gcry_md_reset(sha1); gcry_md_write(sha1, opad, 64); gcry_md_write(sha1, hash, 20); memmove(digest, gcry_md_read(sha1, 0), 20); gcry_md_close(sha1); } �����������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/readotr.c����������������������������������������������������������������������0000664�0001750�0001750�00000004616�12637277541�013251� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdio.h> #include <stdlib.h> #include <string.h> typedef struct { char *data; size_t len; size_t alloclen; } Buffer; static void buf_new(Buffer *bufp) { bufp->data = NULL; bufp->len = 0; bufp->alloclen = 0; } static void buf_put(Buffer *bufp, const char *str, size_t len) { while (bufp->len + len + 1 > bufp->alloclen) { char *newdata = realloc(bufp->data, bufp->alloclen + 1024); if (!newdata) { fprintf(stderr, "Out of memory!\n"); exit(1); } bufp->data = newdata; bufp->alloclen += 1024; } memmove(bufp->data + bufp->len, str, len); bufp->len += len; bufp->data[bufp->len] = '\0'; } static void buf_putc(Buffer *bufp, char c) { buf_put(bufp, &c, 1); } /* Read from the given stream until we see a complete OTR Key Exchange * or OTR Data message. Return a newly-allocated pointer to a copy of * this message, which the caller should free(). Returns NULL if no * such message could be found. */ char *readotr(FILE *stream) { int seen = 0; const char header[] = "?OTR:"; /* There are no '?' chars other than the leading one */ int headerlen = strlen(header); Buffer buf; while(seen < headerlen) { int c = fgetc(stream); if (c == EOF) return NULL; else if (c == header[seen]) seen++; else if (c == header[0]) seen = 1; else seen = 0; } buf_new(&buf); buf_put(&buf, header, headerlen); /* Look for the trailing '.' */ while(1) { int c = fgetc(stream); if (c == EOF) break; buf_putc(&buf, c); if (c == '.') break; } return buf.data; } ������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/sha1hmac.h���������������������������������������������������������������������0000664�0001750�0001750�00000002203�12637277541�013271� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __SHA1HMAC_H__ #define __SHA1HMAC_H__ /* Implementation of SHA1-HMAC. We're rolling our own just to * double-check that the calls libotr makes to libgcrypt are in fact * doing the right thing. */ void sha1hmac(unsigned char digest[20], unsigned char key[20], unsigned char *data, size_t datalen); #endif ���������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/aes.c��������������������������������������������������������������������������0000664�0001750�0001750�00000070022�12637277541�012353� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* Retrieved from http://www.cr0.net:8040/code/crypto/aes/aes.c */ /* * FIPS-197 compliant AES implementation * * Copyright (C) 2001-2004 Christophe Devine * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 2 of the License, or * (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #include "aes.h" /* uncomment the following line to run the test suite */ /* #define TEST */ /* uncomment the following line to use pre-computed tables */ /* otherwise the tables will be generated at the first run */ /* #define FIXED_TABLES */ #ifndef FIXED_TABLES /* forward S-box & tables */ uint32 FSb[256]; uint32 FT0[256]; uint32 FT1[256]; uint32 FT2[256]; uint32 FT3[256]; /* reverse S-box & tables */ uint32 RSb[256]; uint32 RT0[256]; uint32 RT1[256]; uint32 RT2[256]; uint32 RT3[256]; /* round constants */ uint32 RCON[10]; /* tables generation flag */ int do_init = 1; /* tables generation routine */ #define ROTR8(x) ( ( ( x << 24 ) & 0xFFFFFFFF ) | \ ( ( x & 0xFFFFFFFF ) >> 8 ) ) #define XTIME(x) ( ( x << 1 ) ^ ( ( x & 0x80 ) ? 0x1B : 0x00 ) ) #define MUL(x,y) ( ( x && y ) ? pow[(log[x] + log[y]) % 255] : 0 ) void aes_gen_tables( void ) { int i; uint8 x, y; uint8 pow[256]; uint8 log[256]; /* compute pow and log tables over GF(2^8) */ for( i = 0, x = 1; i < 256; i++, x ^= XTIME( x ) ) { pow[i] = x; log[x] = i; } /* calculate the round constants */ for( i = 0, x = 1; i < 10; i++, x = XTIME( x ) ) { RCON[i] = (uint32) x << 24; } /* generate the forward and reverse S-boxes */ FSb[0x00] = 0x63; RSb[0x63] = 0x00; for( i = 1; i < 256; i++ ) { x = pow[255 - log[i]]; y = x; y = ( y << 1 ) | ( y >> 7 ); x ^= y; y = ( y << 1 ) | ( y >> 7 ); x ^= y; y = ( y << 1 ) | ( y >> 7 ); x ^= y; y = ( y << 1 ) | ( y >> 7 ); x ^= y ^ 0x63; FSb[i] = x; RSb[x] = i; } /* generate the forward and reverse tables */ for( i = 0; i < 256; i++ ) { x = (unsigned char) FSb[i]; y = XTIME( x ); FT0[i] = (uint32) ( x ^ y ) ^ ( (uint32) x << 8 ) ^ ( (uint32) x << 16 ) ^ ( (uint32) y << 24 ); FT0[i] &= 0xFFFFFFFF; FT1[i] = ROTR8( FT0[i] ); FT2[i] = ROTR8( FT1[i] ); FT3[i] = ROTR8( FT2[i] ); y = (unsigned char) RSb[i]; RT0[i] = ( (uint32) MUL( 0x0B, y ) ) ^ ( (uint32) MUL( 0x0D, y ) << 8 ) ^ ( (uint32) MUL( 0x09, y ) << 16 ) ^ ( (uint32) MUL( 0x0E, y ) << 24 ); RT0[i] &= 0xFFFFFFFF; RT1[i] = ROTR8( RT0[i] ); RT2[i] = ROTR8( RT1[i] ); RT3[i] = ROTR8( RT2[i] ); } } #else /* forward S-box */ static const uint32 FSb[256] = { 0x63, 0x7C, 0x77, 0x7B, 0xF2, 0x6B, 0x6F, 0xC5, 0x30, 0x01, 0x67, 0x2B, 0xFE, 0xD7, 0xAB, 0x76, 0xCA, 0x82, 0xC9, 0x7D, 0xFA, 0x59, 0x47, 0xF0, 0xAD, 0xD4, 0xA2, 0xAF, 0x9C, 0xA4, 0x72, 0xC0, 0xB7, 0xFD, 0x93, 0x26, 0x36, 0x3F, 0xF7, 0xCC, 0x34, 0xA5, 0xE5, 0xF1, 0x71, 0xD8, 0x31, 0x15, 0x04, 0xC7, 0x23, 0xC3, 0x18, 0x96, 0x05, 0x9A, 0x07, 0x12, 0x80, 0xE2, 0xEB, 0x27, 0xB2, 0x75, 0x09, 0x83, 0x2C, 0x1A, 0x1B, 0x6E, 0x5A, 0xA0, 0x52, 0x3B, 0xD6, 0xB3, 0x29, 0xE3, 0x2F, 0x84, 0x53, 0xD1, 0x00, 0xED, 0x20, 0xFC, 0xB1, 0x5B, 0x6A, 0xCB, 0xBE, 0x39, 0x4A, 0x4C, 0x58, 0xCF, 0xD0, 0xEF, 0xAA, 0xFB, 0x43, 0x4D, 0x33, 0x85, 0x45, 0xF9, 0x02, 0x7F, 0x50, 0x3C, 0x9F, 0xA8, 0x51, 0xA3, 0x40, 0x8F, 0x92, 0x9D, 0x38, 0xF5, 0xBC, 0xB6, 0xDA, 0x21, 0x10, 0xFF, 0xF3, 0xD2, 0xCD, 0x0C, 0x13, 0xEC, 0x5F, 0x97, 0x44, 0x17, 0xC4, 0xA7, 0x7E, 0x3D, 0x64, 0x5D, 0x19, 0x73, 0x60, 0x81, 0x4F, 0xDC, 0x22, 0x2A, 0x90, 0x88, 0x46, 0xEE, 0xB8, 0x14, 0xDE, 0x5E, 0x0B, 0xDB, 0xE0, 0x32, 0x3A, 0x0A, 0x49, 0x06, 0x24, 0x5C, 0xC2, 0xD3, 0xAC, 0x62, 0x91, 0x95, 0xE4, 0x79, 0xE7, 0xC8, 0x37, 0x6D, 0x8D, 0xD5, 0x4E, 0xA9, 0x6C, 0x56, 0xF4, 0xEA, 0x65, 0x7A, 0xAE, 0x08, 0xBA, 0x78, 0x25, 0x2E, 0x1C, 0xA6, 0xB4, 0xC6, 0xE8, 0xDD, 0x74, 0x1F, 0x4B, 0xBD, 0x8B, 0x8A, 0x70, 0x3E, 0xB5, 0x66, 0x48, 0x03, 0xF6, 0x0E, 0x61, 0x35, 0x57, 0xB9, 0x86, 0xC1, 0x1D, 0x9E, 0xE1, 0xF8, 0x98, 0x11, 0x69, 0xD9, 0x8E, 0x94, 0x9B, 0x1E, 0x87, 0xE9, 0xCE, 0x55, 0x28, 0xDF, 0x8C, 0xA1, 0x89, 0x0D, 0xBF, 0xE6, 0x42, 0x68, 0x41, 0x99, 0x2D, 0x0F, 0xB0, 0x54, 0xBB, 0x16 }; /* forward tables */ #define FT \ \ V(C6,63,63,A5), V(F8,7C,7C,84), V(EE,77,77,99), V(F6,7B,7B,8D), \ V(FF,F2,F2,0D), V(D6,6B,6B,BD), V(DE,6F,6F,B1), V(91,C5,C5,54), \ V(60,30,30,50), V(02,01,01,03), V(CE,67,67,A9), V(56,2B,2B,7D), \ V(E7,FE,FE,19), V(B5,D7,D7,62), V(4D,AB,AB,E6), V(EC,76,76,9A), \ V(8F,CA,CA,45), V(1F,82,82,9D), V(89,C9,C9,40), V(FA,7D,7D,87), \ V(EF,FA,FA,15), V(B2,59,59,EB), V(8E,47,47,C9), V(FB,F0,F0,0B), \ V(41,AD,AD,EC), V(B3,D4,D4,67), V(5F,A2,A2,FD), V(45,AF,AF,EA), \ V(23,9C,9C,BF), V(53,A4,A4,F7), V(E4,72,72,96), V(9B,C0,C0,5B), \ V(75,B7,B7,C2), V(E1,FD,FD,1C), V(3D,93,93,AE), V(4C,26,26,6A), \ V(6C,36,36,5A), V(7E,3F,3F,41), V(F5,F7,F7,02), V(83,CC,CC,4F), \ V(68,34,34,5C), V(51,A5,A5,F4), V(D1,E5,E5,34), V(F9,F1,F1,08), \ V(E2,71,71,93), V(AB,D8,D8,73), V(62,31,31,53), V(2A,15,15,3F), \ V(08,04,04,0C), V(95,C7,C7,52), V(46,23,23,65), V(9D,C3,C3,5E), \ V(30,18,18,28), V(37,96,96,A1), V(0A,05,05,0F), V(2F,9A,9A,B5), \ V(0E,07,07,09), V(24,12,12,36), V(1B,80,80,9B), V(DF,E2,E2,3D), \ V(CD,EB,EB,26), V(4E,27,27,69), V(7F,B2,B2,CD), V(EA,75,75,9F), \ V(12,09,09,1B), V(1D,83,83,9E), V(58,2C,2C,74), V(34,1A,1A,2E), \ V(36,1B,1B,2D), V(DC,6E,6E,B2), V(B4,5A,5A,EE), V(5B,A0,A0,FB), \ V(A4,52,52,F6), V(76,3B,3B,4D), V(B7,D6,D6,61), V(7D,B3,B3,CE), \ V(52,29,29,7B), V(DD,E3,E3,3E), V(5E,2F,2F,71), V(13,84,84,97), \ V(A6,53,53,F5), V(B9,D1,D1,68), V(00,00,00,00), V(C1,ED,ED,2C), \ V(40,20,20,60), V(E3,FC,FC,1F), V(79,B1,B1,C8), V(B6,5B,5B,ED), \ V(D4,6A,6A,BE), V(8D,CB,CB,46), V(67,BE,BE,D9), V(72,39,39,4B), \ V(94,4A,4A,DE), V(98,4C,4C,D4), V(B0,58,58,E8), V(85,CF,CF,4A), \ V(BB,D0,D0,6B), V(C5,EF,EF,2A), V(4F,AA,AA,E5), V(ED,FB,FB,16), \ V(86,43,43,C5), V(9A,4D,4D,D7), V(66,33,33,55), V(11,85,85,94), \ V(8A,45,45,CF), V(E9,F9,F9,10), V(04,02,02,06), V(FE,7F,7F,81), \ V(A0,50,50,F0), V(78,3C,3C,44), V(25,9F,9F,BA), V(4B,A8,A8,E3), \ V(A2,51,51,F3), V(5D,A3,A3,FE), V(80,40,40,C0), V(05,8F,8F,8A), \ V(3F,92,92,AD), V(21,9D,9D,BC), V(70,38,38,48), V(F1,F5,F5,04), \ V(63,BC,BC,DF), V(77,B6,B6,C1), V(AF,DA,DA,75), V(42,21,21,63), \ V(20,10,10,30), V(E5,FF,FF,1A), V(FD,F3,F3,0E), V(BF,D2,D2,6D), \ V(81,CD,CD,4C), V(18,0C,0C,14), V(26,13,13,35), V(C3,EC,EC,2F), \ V(BE,5F,5F,E1), V(35,97,97,A2), V(88,44,44,CC), V(2E,17,17,39), \ V(93,C4,C4,57), V(55,A7,A7,F2), V(FC,7E,7E,82), V(7A,3D,3D,47), \ V(C8,64,64,AC), V(BA,5D,5D,E7), V(32,19,19,2B), V(E6,73,73,95), \ V(C0,60,60,A0), V(19,81,81,98), V(9E,4F,4F,D1), V(A3,DC,DC,7F), \ V(44,22,22,66), V(54,2A,2A,7E), V(3B,90,90,AB), V(0B,88,88,83), \ V(8C,46,46,CA), V(C7,EE,EE,29), V(6B,B8,B8,D3), V(28,14,14,3C), \ V(A7,DE,DE,79), V(BC,5E,5E,E2), V(16,0B,0B,1D), V(AD,DB,DB,76), \ V(DB,E0,E0,3B), V(64,32,32,56), V(74,3A,3A,4E), V(14,0A,0A,1E), \ V(92,49,49,DB), V(0C,06,06,0A), V(48,24,24,6C), V(B8,5C,5C,E4), \ V(9F,C2,C2,5D), V(BD,D3,D3,6E), V(43,AC,AC,EF), V(C4,62,62,A6), \ V(39,91,91,A8), V(31,95,95,A4), V(D3,E4,E4,37), V(F2,79,79,8B), \ V(D5,E7,E7,32), V(8B,C8,C8,43), V(6E,37,37,59), V(DA,6D,6D,B7), \ V(01,8D,8D,8C), V(B1,D5,D5,64), V(9C,4E,4E,D2), V(49,A9,A9,E0), \ V(D8,6C,6C,B4), V(AC,56,56,FA), V(F3,F4,F4,07), V(CF,EA,EA,25), \ V(CA,65,65,AF), V(F4,7A,7A,8E), V(47,AE,AE,E9), V(10,08,08,18), \ V(6F,BA,BA,D5), V(F0,78,78,88), V(4A,25,25,6F), V(5C,2E,2E,72), \ V(38,1C,1C,24), V(57,A6,A6,F1), V(73,B4,B4,C7), V(97,C6,C6,51), \ V(CB,E8,E8,23), V(A1,DD,DD,7C), V(E8,74,74,9C), V(3E,1F,1F,21), \ V(96,4B,4B,DD), V(61,BD,BD,DC), V(0D,8B,8B,86), V(0F,8A,8A,85), \ V(E0,70,70,90), V(7C,3E,3E,42), V(71,B5,B5,C4), V(CC,66,66,AA), \ V(90,48,48,D8), V(06,03,03,05), V(F7,F6,F6,01), V(1C,0E,0E,12), \ V(C2,61,61,A3), V(6A,35,35,5F), V(AE,57,57,F9), V(69,B9,B9,D0), \ V(17,86,86,91), V(99,C1,C1,58), V(3A,1D,1D,27), V(27,9E,9E,B9), \ V(D9,E1,E1,38), V(EB,F8,F8,13), V(2B,98,98,B3), V(22,11,11,33), \ V(D2,69,69,BB), V(A9,D9,D9,70), V(07,8E,8E,89), V(33,94,94,A7), \ V(2D,9B,9B,B6), V(3C,1E,1E,22), V(15,87,87,92), V(C9,E9,E9,20), \ V(87,CE,CE,49), V(AA,55,55,FF), V(50,28,28,78), V(A5,DF,DF,7A), \ V(03,8C,8C,8F), V(59,A1,A1,F8), V(09,89,89,80), V(1A,0D,0D,17), \ V(65,BF,BF,DA), V(D7,E6,E6,31), V(84,42,42,C6), V(D0,68,68,B8), \ V(82,41,41,C3), V(29,99,99,B0), V(5A,2D,2D,77), V(1E,0F,0F,11), \ V(7B,B0,B0,CB), V(A8,54,54,FC), V(6D,BB,BB,D6), V(2C,16,16,3A) #define V(a,b,c,d) 0x##a##b##c##d static const uint32 FT0[256] = { FT }; #undef V #define V(a,b,c,d) 0x##d##a##b##c static const uint32 FT1[256] = { FT }; #undef V #define V(a,b,c,d) 0x##c##d##a##b static const uint32 FT2[256] = { FT }; #undef V #define V(a,b,c,d) 0x##b##c##d##a static const uint32 FT3[256] = { FT }; #undef V #undef FT /* reverse S-box */ static const uint32 RSb[256] = { 0x52, 0x09, 0x6A, 0xD5, 0x30, 0x36, 0xA5, 0x38, 0xBF, 0x40, 0xA3, 0x9E, 0x81, 0xF3, 0xD7, 0xFB, 0x7C, 0xE3, 0x39, 0x82, 0x9B, 0x2F, 0xFF, 0x87, 0x34, 0x8E, 0x43, 0x44, 0xC4, 0xDE, 0xE9, 0xCB, 0x54, 0x7B, 0x94, 0x32, 0xA6, 0xC2, 0x23, 0x3D, 0xEE, 0x4C, 0x95, 0x0B, 0x42, 0xFA, 0xC3, 0x4E, 0x08, 0x2E, 0xA1, 0x66, 0x28, 0xD9, 0x24, 0xB2, 0x76, 0x5B, 0xA2, 0x49, 0x6D, 0x8B, 0xD1, 0x25, 0x72, 0xF8, 0xF6, 0x64, 0x86, 0x68, 0x98, 0x16, 0xD4, 0xA4, 0x5C, 0xCC, 0x5D, 0x65, 0xB6, 0x92, 0x6C, 0x70, 0x48, 0x50, 0xFD, 0xED, 0xB9, 0xDA, 0x5E, 0x15, 0x46, 0x57, 0xA7, 0x8D, 0x9D, 0x84, 0x90, 0xD8, 0xAB, 0x00, 0x8C, 0xBC, 0xD3, 0x0A, 0xF7, 0xE4, 0x58, 0x05, 0xB8, 0xB3, 0x45, 0x06, 0xD0, 0x2C, 0x1E, 0x8F, 0xCA, 0x3F, 0x0F, 0x02, 0xC1, 0xAF, 0xBD, 0x03, 0x01, 0x13, 0x8A, 0x6B, 0x3A, 0x91, 0x11, 0x41, 0x4F, 0x67, 0xDC, 0xEA, 0x97, 0xF2, 0xCF, 0xCE, 0xF0, 0xB4, 0xE6, 0x73, 0x96, 0xAC, 0x74, 0x22, 0xE7, 0xAD, 0x35, 0x85, 0xE2, 0xF9, 0x37, 0xE8, 0x1C, 0x75, 0xDF, 0x6E, 0x47, 0xF1, 0x1A, 0x71, 0x1D, 0x29, 0xC5, 0x89, 0x6F, 0xB7, 0x62, 0x0E, 0xAA, 0x18, 0xBE, 0x1B, 0xFC, 0x56, 0x3E, 0x4B, 0xC6, 0xD2, 0x79, 0x20, 0x9A, 0xDB, 0xC0, 0xFE, 0x78, 0xCD, 0x5A, 0xF4, 0x1F, 0xDD, 0xA8, 0x33, 0x88, 0x07, 0xC7, 0x31, 0xB1, 0x12, 0x10, 0x59, 0x27, 0x80, 0xEC, 0x5F, 0x60, 0x51, 0x7F, 0xA9, 0x19, 0xB5, 0x4A, 0x0D, 0x2D, 0xE5, 0x7A, 0x9F, 0x93, 0xC9, 0x9C, 0xEF, 0xA0, 0xE0, 0x3B, 0x4D, 0xAE, 0x2A, 0xF5, 0xB0, 0xC8, 0xEB, 0xBB, 0x3C, 0x83, 0x53, 0x99, 0x61, 0x17, 0x2B, 0x04, 0x7E, 0xBA, 0x77, 0xD6, 0x26, 0xE1, 0x69, 0x14, 0x63, 0x55, 0x21, 0x0C, 0x7D }; /* reverse tables */ #define RT \ \ V(51,F4,A7,50), V(7E,41,65,53), V(1A,17,A4,C3), V(3A,27,5E,96), \ V(3B,AB,6B,CB), V(1F,9D,45,F1), V(AC,FA,58,AB), V(4B,E3,03,93), \ V(20,30,FA,55), V(AD,76,6D,F6), V(88,CC,76,91), V(F5,02,4C,25), \ V(4F,E5,D7,FC), V(C5,2A,CB,D7), V(26,35,44,80), V(B5,62,A3,8F), \ V(DE,B1,5A,49), V(25,BA,1B,67), V(45,EA,0E,98), V(5D,FE,C0,E1), \ V(C3,2F,75,02), V(81,4C,F0,12), V(8D,46,97,A3), V(6B,D3,F9,C6), \ V(03,8F,5F,E7), V(15,92,9C,95), V(BF,6D,7A,EB), V(95,52,59,DA), \ V(D4,BE,83,2D), V(58,74,21,D3), V(49,E0,69,29), V(8E,C9,C8,44), \ V(75,C2,89,6A), V(F4,8E,79,78), V(99,58,3E,6B), V(27,B9,71,DD), \ V(BE,E1,4F,B6), V(F0,88,AD,17), V(C9,20,AC,66), V(7D,CE,3A,B4), \ V(63,DF,4A,18), V(E5,1A,31,82), V(97,51,33,60), V(62,53,7F,45), \ V(B1,64,77,E0), V(BB,6B,AE,84), V(FE,81,A0,1C), V(F9,08,2B,94), \ V(70,48,68,58), V(8F,45,FD,19), V(94,DE,6C,87), V(52,7B,F8,B7), \ V(AB,73,D3,23), V(72,4B,02,E2), V(E3,1F,8F,57), V(66,55,AB,2A), \ V(B2,EB,28,07), V(2F,B5,C2,03), V(86,C5,7B,9A), V(D3,37,08,A5), \ V(30,28,87,F2), V(23,BF,A5,B2), V(02,03,6A,BA), V(ED,16,82,5C), \ V(8A,CF,1C,2B), V(A7,79,B4,92), V(F3,07,F2,F0), V(4E,69,E2,A1), \ V(65,DA,F4,CD), V(06,05,BE,D5), V(D1,34,62,1F), V(C4,A6,FE,8A), \ V(34,2E,53,9D), V(A2,F3,55,A0), V(05,8A,E1,32), V(A4,F6,EB,75), \ V(0B,83,EC,39), V(40,60,EF,AA), V(5E,71,9F,06), V(BD,6E,10,51), \ V(3E,21,8A,F9), V(96,DD,06,3D), V(DD,3E,05,AE), V(4D,E6,BD,46), \ V(91,54,8D,B5), V(71,C4,5D,05), V(04,06,D4,6F), V(60,50,15,FF), \ V(19,98,FB,24), V(D6,BD,E9,97), V(89,40,43,CC), V(67,D9,9E,77), \ V(B0,E8,42,BD), V(07,89,8B,88), V(E7,19,5B,38), V(79,C8,EE,DB), \ V(A1,7C,0A,47), V(7C,42,0F,E9), V(F8,84,1E,C9), V(00,00,00,00), \ V(09,80,86,83), V(32,2B,ED,48), V(1E,11,70,AC), V(6C,5A,72,4E), \ V(FD,0E,FF,FB), V(0F,85,38,56), V(3D,AE,D5,1E), V(36,2D,39,27), \ V(0A,0F,D9,64), V(68,5C,A6,21), V(9B,5B,54,D1), V(24,36,2E,3A), \ V(0C,0A,67,B1), V(93,57,E7,0F), V(B4,EE,96,D2), V(1B,9B,91,9E), \ V(80,C0,C5,4F), V(61,DC,20,A2), V(5A,77,4B,69), V(1C,12,1A,16), \ V(E2,93,BA,0A), V(C0,A0,2A,E5), V(3C,22,E0,43), V(12,1B,17,1D), \ V(0E,09,0D,0B), V(F2,8B,C7,AD), V(2D,B6,A8,B9), V(14,1E,A9,C8), \ V(57,F1,19,85), V(AF,75,07,4C), V(EE,99,DD,BB), V(A3,7F,60,FD), \ V(F7,01,26,9F), V(5C,72,F5,BC), V(44,66,3B,C5), V(5B,FB,7E,34), \ V(8B,43,29,76), V(CB,23,C6,DC), V(B6,ED,FC,68), V(B8,E4,F1,63), \ V(D7,31,DC,CA), V(42,63,85,10), V(13,97,22,40), V(84,C6,11,20), \ V(85,4A,24,7D), V(D2,BB,3D,F8), V(AE,F9,32,11), V(C7,29,A1,6D), \ V(1D,9E,2F,4B), V(DC,B2,30,F3), V(0D,86,52,EC), V(77,C1,E3,D0), \ V(2B,B3,16,6C), V(A9,70,B9,99), V(11,94,48,FA), V(47,E9,64,22), \ V(A8,FC,8C,C4), V(A0,F0,3F,1A), V(56,7D,2C,D8), V(22,33,90,EF), \ V(87,49,4E,C7), V(D9,38,D1,C1), V(8C,CA,A2,FE), V(98,D4,0B,36), \ V(A6,F5,81,CF), V(A5,7A,DE,28), V(DA,B7,8E,26), V(3F,AD,BF,A4), \ V(2C,3A,9D,E4), V(50,78,92,0D), V(6A,5F,CC,9B), V(54,7E,46,62), \ V(F6,8D,13,C2), V(90,D8,B8,E8), V(2E,39,F7,5E), V(82,C3,AF,F5), \ V(9F,5D,80,BE), V(69,D0,93,7C), V(6F,D5,2D,A9), V(CF,25,12,B3), \ V(C8,AC,99,3B), V(10,18,7D,A7), V(E8,9C,63,6E), V(DB,3B,BB,7B), \ V(CD,26,78,09), V(6E,59,18,F4), V(EC,9A,B7,01), V(83,4F,9A,A8), \ V(E6,95,6E,65), V(AA,FF,E6,7E), V(21,BC,CF,08), V(EF,15,E8,E6), \ V(BA,E7,9B,D9), V(4A,6F,36,CE), V(EA,9F,09,D4), V(29,B0,7C,D6), \ V(31,A4,B2,AF), V(2A,3F,23,31), V(C6,A5,94,30), V(35,A2,66,C0), \ V(74,4E,BC,37), V(FC,82,CA,A6), V(E0,90,D0,B0), V(33,A7,D8,15), \ V(F1,04,98,4A), V(41,EC,DA,F7), V(7F,CD,50,0E), V(17,91,F6,2F), \ V(76,4D,D6,8D), V(43,EF,B0,4D), V(CC,AA,4D,54), V(E4,96,04,DF), \ V(9E,D1,B5,E3), V(4C,6A,88,1B), V(C1,2C,1F,B8), V(46,65,51,7F), \ V(9D,5E,EA,04), V(01,8C,35,5D), V(FA,87,74,73), V(FB,0B,41,2E), \ V(B3,67,1D,5A), V(92,DB,D2,52), V(E9,10,56,33), V(6D,D6,47,13), \ V(9A,D7,61,8C), V(37,A1,0C,7A), V(59,F8,14,8E), V(EB,13,3C,89), \ V(CE,A9,27,EE), V(B7,61,C9,35), V(E1,1C,E5,ED), V(7A,47,B1,3C), \ V(9C,D2,DF,59), V(55,F2,73,3F), V(18,14,CE,79), V(73,C7,37,BF), \ V(53,F7,CD,EA), V(5F,FD,AA,5B), V(DF,3D,6F,14), V(78,44,DB,86), \ V(CA,AF,F3,81), V(B9,68,C4,3E), V(38,24,34,2C), V(C2,A3,40,5F), \ V(16,1D,C3,72), V(BC,E2,25,0C), V(28,3C,49,8B), V(FF,0D,95,41), \ V(39,A8,01,71), V(08,0C,B3,DE), V(D8,B4,E4,9C), V(64,56,C1,90), \ V(7B,CB,84,61), V(D5,32,B6,70), V(48,6C,5C,74), V(D0,B8,57,42) #define V(a,b,c,d) 0x##a##b##c##d static const uint32 RT0[256] = { RT }; #undef V #define V(a,b,c,d) 0x##d##a##b##c static const uint32 RT1[256] = { RT }; #undef V #define V(a,b,c,d) 0x##c##d##a##b static const uint32 RT2[256] = { RT }; #undef V #define V(a,b,c,d) 0x##b##c##d##a static const uint32 RT3[256] = { RT }; #undef V #undef RT /* round constants */ static const uint32 RCON[10] = { 0x01000000, 0x02000000, 0x04000000, 0x08000000, 0x10000000, 0x20000000, 0x40000000, 0x80000000, 0x1B000000, 0x36000000 }; int do_init = 0; void aes_gen_tables( void ) { } #endif /* platform-independant 32-bit integer manipulation macros */ #define GET_UINT32(n,b,i) \ { \ (n) = ( (uint32) (b)[(i) ] << 24 ) \ | ( (uint32) (b)[(i) + 1] << 16 ) \ | ( (uint32) (b)[(i) + 2] << 8 ) \ | ( (uint32) (b)[(i) + 3] ); \ } #define PUT_UINT32(n,b,i) \ { \ (b)[(i) ] = (uint8) ( (n) >> 24 ); \ (b)[(i) + 1] = (uint8) ( (n) >> 16 ); \ (b)[(i) + 2] = (uint8) ( (n) >> 8 ); \ (b)[(i) + 3] = (uint8) ( (n) ); \ } /* decryption key schedule tables */ int KT_init = 1; uint32 KT0[256]; uint32 KT1[256]; uint32 KT2[256]; uint32 KT3[256]; /* AES key scheduling routine */ int aes_set_key( aes_context *ctx, uint8 *key, int nbits ) { int i; uint32 *RK, *SK; if( do_init ) { aes_gen_tables(); do_init = 0; } switch( nbits ) { case 128: ctx->nr = 10; break; case 192: ctx->nr = 12; break; case 256: ctx->nr = 14; break; default : return( 1 ); } RK = ctx->erk; for( i = 0; i < (nbits >> 5); i++ ) { GET_UINT32( RK[i], key, i * 4 ); } /* setup encryption round keys */ switch( nbits ) { case 128: for( i = 0; i < 10; i++, RK += 4 ) { RK[4] = RK[0] ^ RCON[i] ^ ( FSb[ (uint8) ( RK[3] >> 16 ) ] << 24 ) ^ ( FSb[ (uint8) ( RK[3] >> 8 ) ] << 16 ) ^ ( FSb[ (uint8) ( RK[3] ) ] << 8 ) ^ ( FSb[ (uint8) ( RK[3] >> 24 ) ] ); RK[5] = RK[1] ^ RK[4]; RK[6] = RK[2] ^ RK[5]; RK[7] = RK[3] ^ RK[6]; } break; case 192: for( i = 0; i < 8; i++, RK += 6 ) { RK[6] = RK[0] ^ RCON[i] ^ ( FSb[ (uint8) ( RK[5] >> 16 ) ] << 24 ) ^ ( FSb[ (uint8) ( RK[5] >> 8 ) ] << 16 ) ^ ( FSb[ (uint8) ( RK[5] ) ] << 8 ) ^ ( FSb[ (uint8) ( RK[5] >> 24 ) ] ); RK[7] = RK[1] ^ RK[6]; RK[8] = RK[2] ^ RK[7]; RK[9] = RK[3] ^ RK[8]; RK[10] = RK[4] ^ RK[9]; RK[11] = RK[5] ^ RK[10]; } break; case 256: for( i = 0; i < 7; i++, RK += 8 ) { RK[8] = RK[0] ^ RCON[i] ^ ( FSb[ (uint8) ( RK[7] >> 16 ) ] << 24 ) ^ ( FSb[ (uint8) ( RK[7] >> 8 ) ] << 16 ) ^ ( FSb[ (uint8) ( RK[7] ) ] << 8 ) ^ ( FSb[ (uint8) ( RK[7] >> 24 ) ] ); RK[9] = RK[1] ^ RK[8]; RK[10] = RK[2] ^ RK[9]; RK[11] = RK[3] ^ RK[10]; RK[12] = RK[4] ^ ( FSb[ (uint8) ( RK[11] >> 24 ) ] << 24 ) ^ ( FSb[ (uint8) ( RK[11] >> 16 ) ] << 16 ) ^ ( FSb[ (uint8) ( RK[11] >> 8 ) ] << 8 ) ^ ( FSb[ (uint8) ( RK[11] ) ] ); RK[13] = RK[5] ^ RK[12]; RK[14] = RK[6] ^ RK[13]; RK[15] = RK[7] ^ RK[14]; } break; } /* setup decryption round keys */ if( KT_init ) { for( i = 0; i < 256; i++ ) { KT0[i] = RT0[ FSb[i] ]; KT1[i] = RT1[ FSb[i] ]; KT2[i] = RT2[ FSb[i] ]; KT3[i] = RT3[ FSb[i] ]; } KT_init = 0; } SK = ctx->drk; *SK++ = *RK++; *SK++ = *RK++; *SK++ = *RK++; *SK++ = *RK++; for( i = 1; i < ctx->nr; i++ ) { RK -= 8; *SK++ = KT0[ (uint8) ( *RK >> 24 ) ] ^ KT1[ (uint8) ( *RK >> 16 ) ] ^ KT2[ (uint8) ( *RK >> 8 ) ] ^ KT3[ (uint8) ( *RK ) ]; RK++; *SK++ = KT0[ (uint8) ( *RK >> 24 ) ] ^ KT1[ (uint8) ( *RK >> 16 ) ] ^ KT2[ (uint8) ( *RK >> 8 ) ] ^ KT3[ (uint8) ( *RK ) ]; RK++; *SK++ = KT0[ (uint8) ( *RK >> 24 ) ] ^ KT1[ (uint8) ( *RK >> 16 ) ] ^ KT2[ (uint8) ( *RK >> 8 ) ] ^ KT3[ (uint8) ( *RK ) ]; RK++; *SK++ = KT0[ (uint8) ( *RK >> 24 ) ] ^ KT1[ (uint8) ( *RK >> 16 ) ] ^ KT2[ (uint8) ( *RK >> 8 ) ] ^ KT3[ (uint8) ( *RK ) ]; RK++; } RK -= 8; *SK++ = *RK++; *SK++ = *RK++; *SK++ = *RK++; *SK++ = *RK++; return( 0 ); } /* AES 128-bit block encryption routine */ void aes_encrypt( aes_context *ctx, uint8 input[16], uint8 output[16] ) { uint32 *RK, X0, X1, X2, X3, Y0, Y1, Y2, Y3; RK = ctx->erk; GET_UINT32( X0, input, 0 ); X0 ^= RK[0]; GET_UINT32( X1, input, 4 ); X1 ^= RK[1]; GET_UINT32( X2, input, 8 ); X2 ^= RK[2]; GET_UINT32( X3, input, 12 ); X3 ^= RK[3]; #define AES_FROUND(X0,X1,X2,X3,Y0,Y1,Y2,Y3) \ { \ RK += 4; \ \ X0 = RK[0] ^ FT0[ (uint8) ( Y0 >> 24 ) ] ^ \ FT1[ (uint8) ( Y1 >> 16 ) ] ^ \ FT2[ (uint8) ( Y2 >> 8 ) ] ^ \ FT3[ (uint8) ( Y3 ) ]; \ \ X1 = RK[1] ^ FT0[ (uint8) ( Y1 >> 24 ) ] ^ \ FT1[ (uint8) ( Y2 >> 16 ) ] ^ \ FT2[ (uint8) ( Y3 >> 8 ) ] ^ \ FT3[ (uint8) ( Y0 ) ]; \ \ X2 = RK[2] ^ FT0[ (uint8) ( Y2 >> 24 ) ] ^ \ FT1[ (uint8) ( Y3 >> 16 ) ] ^ \ FT2[ (uint8) ( Y0 >> 8 ) ] ^ \ FT3[ (uint8) ( Y1 ) ]; \ \ X3 = RK[3] ^ FT0[ (uint8) ( Y3 >> 24 ) ] ^ \ FT1[ (uint8) ( Y0 >> 16 ) ] ^ \ FT2[ (uint8) ( Y1 >> 8 ) ] ^ \ FT3[ (uint8) ( Y2 ) ]; \ } AES_FROUND( Y0, Y1, Y2, Y3, X0, X1, X2, X3 ); /* round 1 */ AES_FROUND( X0, X1, X2, X3, Y0, Y1, Y2, Y3 ); /* round 2 */ AES_FROUND( Y0, Y1, Y2, Y3, X0, X1, X2, X3 ); /* round 3 */ AES_FROUND( X0, X1, X2, X3, Y0, Y1, Y2, Y3 ); /* round 4 */ AES_FROUND( Y0, Y1, Y2, Y3, X0, X1, X2, X3 ); /* round 5 */ AES_FROUND( X0, X1, X2, X3, Y0, Y1, Y2, Y3 ); /* round 6 */ AES_FROUND( Y0, Y1, Y2, Y3, X0, X1, X2, X3 ); /* round 7 */ AES_FROUND( X0, X1, X2, X3, Y0, Y1, Y2, Y3 ); /* round 8 */ AES_FROUND( Y0, Y1, Y2, Y3, X0, X1, X2, X3 ); /* round 9 */ if( ctx->nr > 10 ) { AES_FROUND( X0, X1, X2, X3, Y0, Y1, Y2, Y3 ); /* round 10 */ AES_FROUND( Y0, Y1, Y2, Y3, X0, X1, X2, X3 ); /* round 11 */ } if( ctx->nr > 12 ) { AES_FROUND( X0, X1, X2, X3, Y0, Y1, Y2, Y3 ); /* round 12 */ AES_FROUND( Y0, Y1, Y2, Y3, X0, X1, X2, X3 ); /* round 13 */ } /* last round */ RK += 4; X0 = RK[0] ^ ( FSb[ (uint8) ( Y0 >> 24 ) ] << 24 ) ^ ( FSb[ (uint8) ( Y1 >> 16 ) ] << 16 ) ^ ( FSb[ (uint8) ( Y2 >> 8 ) ] << 8 ) ^ ( FSb[ (uint8) ( Y3 ) ] ); X1 = RK[1] ^ ( FSb[ (uint8) ( Y1 >> 24 ) ] << 24 ) ^ ( FSb[ (uint8) ( Y2 >> 16 ) ] << 16 ) ^ ( FSb[ (uint8) ( Y3 >> 8 ) ] << 8 ) ^ ( FSb[ (uint8) ( Y0 ) ] ); X2 = RK[2] ^ ( FSb[ (uint8) ( Y2 >> 24 ) ] << 24 ) ^ ( FSb[ (uint8) ( Y3 >> 16 ) ] << 16 ) ^ ( FSb[ (uint8) ( Y0 >> 8 ) ] << 8 ) ^ ( FSb[ (uint8) ( Y1 ) ] ); X3 = RK[3] ^ ( FSb[ (uint8) ( Y3 >> 24 ) ] << 24 ) ^ ( FSb[ (uint8) ( Y0 >> 16 ) ] << 16 ) ^ ( FSb[ (uint8) ( Y1 >> 8 ) ] << 8 ) ^ ( FSb[ (uint8) ( Y2 ) ] ); PUT_UINT32( X0, output, 0 ); PUT_UINT32( X1, output, 4 ); PUT_UINT32( X2, output, 8 ); PUT_UINT32( X3, output, 12 ); } /* AES 128-bit block decryption routine */ void aes_decrypt( aes_context *ctx, uint8 input[16], uint8 output[16] ) { uint32 *RK, X0, X1, X2, X3, Y0, Y1, Y2, Y3; RK = ctx->drk; GET_UINT32( X0, input, 0 ); X0 ^= RK[0]; GET_UINT32( X1, input, 4 ); X1 ^= RK[1]; GET_UINT32( X2, input, 8 ); X2 ^= RK[2]; GET_UINT32( X3, input, 12 ); X3 ^= RK[3]; #define AES_RROUND(X0,X1,X2,X3,Y0,Y1,Y2,Y3) \ { \ RK += 4; \ \ X0 = RK[0] ^ RT0[ (uint8) ( Y0 >> 24 ) ] ^ \ RT1[ (uint8) ( Y3 >> 16 ) ] ^ \ RT2[ (uint8) ( Y2 >> 8 ) ] ^ \ RT3[ (uint8) ( Y1 ) ]; \ \ X1 = RK[1] ^ RT0[ (uint8) ( Y1 >> 24 ) ] ^ \ RT1[ (uint8) ( Y0 >> 16 ) ] ^ \ RT2[ (uint8) ( Y3 >> 8 ) ] ^ \ RT3[ (uint8) ( Y2 ) ]; \ \ X2 = RK[2] ^ RT0[ (uint8) ( Y2 >> 24 ) ] ^ \ RT1[ (uint8) ( Y1 >> 16 ) ] ^ \ RT2[ (uint8) ( Y0 >> 8 ) ] ^ \ RT3[ (uint8) ( Y3 ) ]; \ \ X3 = RK[3] ^ RT0[ (uint8) ( Y3 >> 24 ) ] ^ \ RT1[ (uint8) ( Y2 >> 16 ) ] ^ \ RT2[ (uint8) ( Y1 >> 8 ) ] ^ \ RT3[ (uint8) ( Y0 ) ]; \ } AES_RROUND( Y0, Y1, Y2, Y3, X0, X1, X2, X3 ); /* round 1 */ AES_RROUND( X0, X1, X2, X3, Y0, Y1, Y2, Y3 ); /* round 2 */ AES_RROUND( Y0, Y1, Y2, Y3, X0, X1, X2, X3 ); /* round 3 */ AES_RROUND( X0, X1, X2, X3, Y0, Y1, Y2, Y3 ); /* round 4 */ AES_RROUND( Y0, Y1, Y2, Y3, X0, X1, X2, X3 ); /* round 5 */ AES_RROUND( X0, X1, X2, X3, Y0, Y1, Y2, Y3 ); /* round 6 */ AES_RROUND( Y0, Y1, Y2, Y3, X0, X1, X2, X3 ); /* round 7 */ AES_RROUND( X0, X1, X2, X3, Y0, Y1, Y2, Y3 ); /* round 8 */ AES_RROUND( Y0, Y1, Y2, Y3, X0, X1, X2, X3 ); /* round 9 */ if( ctx->nr > 10 ) { AES_RROUND( X0, X1, X2, X3, Y0, Y1, Y2, Y3 ); /* round 10 */ AES_RROUND( Y0, Y1, Y2, Y3, X0, X1, X2, X3 ); /* round 11 */ } if( ctx->nr > 12 ) { AES_RROUND( X0, X1, X2, X3, Y0, Y1, Y2, Y3 ); /* round 12 */ AES_RROUND( Y0, Y1, Y2, Y3, X0, X1, X2, X3 ); /* round 13 */ } /* last round */ RK += 4; X0 = RK[0] ^ ( RSb[ (uint8) ( Y0 >> 24 ) ] << 24 ) ^ ( RSb[ (uint8) ( Y3 >> 16 ) ] << 16 ) ^ ( RSb[ (uint8) ( Y2 >> 8 ) ] << 8 ) ^ ( RSb[ (uint8) ( Y1 ) ] ); X1 = RK[1] ^ ( RSb[ (uint8) ( Y1 >> 24 ) ] << 24 ) ^ ( RSb[ (uint8) ( Y0 >> 16 ) ] << 16 ) ^ ( RSb[ (uint8) ( Y3 >> 8 ) ] << 8 ) ^ ( RSb[ (uint8) ( Y2 ) ] ); X2 = RK[2] ^ ( RSb[ (uint8) ( Y2 >> 24 ) ] << 24 ) ^ ( RSb[ (uint8) ( Y1 >> 16 ) ] << 16 ) ^ ( RSb[ (uint8) ( Y0 >> 8 ) ] << 8 ) ^ ( RSb[ (uint8) ( Y3 ) ] ); X3 = RK[3] ^ ( RSb[ (uint8) ( Y3 >> 24 ) ] << 24 ) ^ ( RSb[ (uint8) ( Y2 >> 16 ) ] << 16 ) ^ ( RSb[ (uint8) ( Y1 >> 8 ) ] << 8 ) ^ ( RSb[ (uint8) ( Y0 ) ] ); PUT_UINT32( X0, output, 0 ); PUT_UINT32( X1, output, 4 ); PUT_UINT32( X2, output, 8 ); PUT_UINT32( X3, output, 12 ); } #ifdef TEST #include <string.h> #include <stdio.h> /* * Rijndael Monte Carlo Test: ECB mode * source: NIST - rijndael-vals.zip */ static unsigned char AES_enc_test[3][16] = { { 0xA0, 0x43, 0x77, 0xAB, 0xE2, 0x59, 0xB0, 0xD0, 0xB5, 0xBA, 0x2D, 0x40, 0xA5, 0x01, 0x97, 0x1B }, { 0x4E, 0x46, 0xF8, 0xC5, 0x09, 0x2B, 0x29, 0xE2, 0x9A, 0x97, 0x1A, 0x0C, 0xD1, 0xF6, 0x10, 0xFB }, { 0x1F, 0x67, 0x63, 0xDF, 0x80, 0x7A, 0x7E, 0x70, 0x96, 0x0D, 0x4C, 0xD3, 0x11, 0x8E, 0x60, 0x1A } }; static unsigned char AES_dec_test[3][16] = { { 0xF5, 0xBF, 0x8B, 0x37, 0x13, 0x6F, 0x2E, 0x1F, 0x6B, 0xEC, 0x6F, 0x57, 0x20, 0x21, 0xE3, 0xBA }, { 0xF1, 0xA8, 0x1B, 0x68, 0xF6, 0xE5, 0xA6, 0x27, 0x1A, 0x8C, 0xB2, 0x4E, 0x7D, 0x94, 0x91, 0xEF }, { 0x4D, 0xE0, 0xC6, 0xDF, 0x7C, 0xB1, 0x69, 0x72, 0x84, 0x60, 0x4D, 0x60, 0x27, 0x1B, 0xC5, 0x9A } }; int main( void ) { int m, n, i, j; aes_context ctx; unsigned char buf[16]; unsigned char key[32]; for( m = 0; m < 2; m++ ) { printf( "\n Rijndael Monte Carlo Test (ECB mode) - " ); if( m == 0 ) printf( "encryption\n\n" ); if( m == 1 ) printf( "decryption\n\n" ); for( n = 0; n < 3; n++ ) { printf( " Test %d, key size = %3d bits: ", n + 1, 128 + n * 64 ); fflush( stdout ); memset( buf, 0, 16 ); memset( key, 0, 16 + n * 8 ); for( i = 0; i < 400; i++ ) { aes_set_key( &ctx, key, 128 + n * 64 ); for( j = 0; j < 9999; j++ ) { if( m == 0 ) aes_encrypt( &ctx, buf, buf ); if( m == 1 ) aes_decrypt( &ctx, buf, buf ); } if( n > 0 ) { for( j = 0; j < (n << 3); j++ ) { key[j] ^= buf[j + 16 - (n << 3)]; } } if( m == 0 ) aes_encrypt( &ctx, buf, buf ); if( m == 1 ) aes_decrypt( &ctx, buf, buf ); for( j = 0; j < 16; j++ ) { key[j + (n << 3)] ^= buf[j]; } } if( ( m == 0 && memcmp( buf, AES_enc_test[n], 16 ) != 0 ) || ( m == 1 && memcmp( buf, AES_dec_test[n], 16 ) != 0 ) ) { printf( "failed!\n" ); return( 1 ); } printf( "passed.\n" ); } } printf( "\n" ); return( 0 ); } #endif ��������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/otr_sesskeys.c�����������������������������������������������������������������0000664�0001750�0001750�00000005717�12637277541�014351� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdio.h> #include <stdlib.h> /* toolkit headers */ #include "parse.h" #include "sesskeys.h" static void usage(const char *progname) { fprintf(stderr, "Usage: %s our_privkey their_pubkey\n" "Calculate and display our public key, the session id, two AES keys,\n" "and two MAC keys generated by the given DH private key and public key.\n", progname); exit(1); } int main(int argc, char **argv) { unsigned char *argbuf; size_t argbuflen; gcry_mpi_t our_x, our_y, their_y; unsigned char *pubbuf; size_t publen; unsigned char sessionid[20], sendenc[16], rcvenc[16]; unsigned char sendmac[20], rcvmac[20]; int is_high; if (argc != 3) { usage(argv[0]); } argv_to_buf(&argbuf, &argbuflen, argv[1]); /* Private keys are only 320 bits long, so check for that to make * sure they didn't get the args the wrong way around */ if (!argbuf || argbuflen > 40) usage(argv[0]); gcry_mpi_scan(&our_x, GCRYMPI_FMT_USG, argbuf, argbuflen, NULL); free(argbuf); argv_to_buf(&argbuf, &argbuflen, argv[2]); if (!argbuf) usage(argv[0]); gcry_mpi_scan(&their_y, GCRYMPI_FMT_USG, argbuf, argbuflen, NULL); free(argbuf); sesskeys_gen(sessionid, sendenc, rcvenc, &is_high, &our_y, our_x, their_y); sesskeys_make_mac(sendmac, sendenc); sesskeys_make_mac(rcvmac, rcvenc); /* Print our public key into a buffer */ gcry_mpi_print(GCRYMPI_FMT_USG, NULL, 0, &publen, our_y); pubbuf = malloc(publen); if (!pubbuf) { fprintf(stderr, "Out of memory!\n"); exit(1); } gcry_mpi_print(GCRYMPI_FMT_USG, pubbuf, publen, NULL, our_y); puts(""); printf("We are the %s end of this key exchange.\n", is_high ? 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do ln -sf otr_toolkit.1 $$f; done) uninstall-local: (cd $(DESTDIR)$(man1dir) && \ for f in $(MANLINKS); do rm -f $$f; done) # Tell versions [3.59,3.63) of GNU make to not export all variables. # Otherwise a system limit (for SysV at least) may be exceeded. .NOEXPORT: ����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/otr_mackey.c�������������������������������������������������������������������0000664�0001750�0001750�00000003323�12637277541�013740� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdio.h> #include <stdlib.h> /* toolkit headers */ #include "parse.h" #include "sesskeys.h" static void usage(const char *progname) { fprintf(stderr, "Usage: %s aeskey\n" "Calculate and display the MAC key derived from a given AES key.\n", progname); exit(1); } int main(int argc, char **argv) { unsigned char *argbuf; size_t argbuflen; unsigned char mackey[20]; if (argc != 2) { usage(argv[0]); } argv_to_buf(&argbuf, &argbuflen, argv[1]); /* AES keys are 128 bits long, so check for that */ if (!argbuf) { usage(argv[0]); } if (argbuflen != 16) { fprintf(stderr, "The AES key must be 32 hex chars long.\n"); usage(argv[0]); } sesskeys_make_mac(mackey, argbuf); dump_data(stdout, "AES key", argbuf, 16); dump_data(stdout, "MAC key", mackey, 20); free(argbuf); fflush(stdout); return 0; } �������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/sesskeys.h���������������������������������������������������������������������0000664�0001750�0001750�00000002636�12637277541�013467� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __SESSKEYS_H__ #define __SESSKEYS_H__ /* Generate the session id and the two encryption keys from our private * DH key and their public DH key. Also indicate in *high_endp if we * are the "high" end of the key exchange (set to 1) or the "low" end * (set to 0) */ void sesskeys_gen(unsigned char sessionid[20], unsigned char sendenc[16], unsigned char rcvenc[16], int *high_endp, gcry_mpi_t *our_yp, gcry_mpi_t our_x, gcry_mpi_t their_y); /* Generate a MAC key from the corresponding encryption key */ void sesskeys_make_mac(unsigned char mackey[20], unsigned char enckey[16]); #endif ��������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/parse.h������������������������������������������������������������������������0000664�0001750�0001750�00000013121�12637277541�012717� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2012 Ian Goldberg, Rob Smits, Chris Alexander, * Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __PARSE_H__ #define __PARSE_H__ #include <gcrypt.h> typedef struct s_KeyExchMsg { unsigned char *raw; /* The base64-decoded data; must be free()d */ unsigned char reply; gcry_mpi_t p, q, g, e; unsigned int keyid; gcry_mpi_t y; gcry_mpi_t r, s; unsigned char *sigstart; /* Pointers into the "raw" array. Don't */ unsigned char *sigend; /* free() these. */ } * KeyExchMsg; typedef struct s_DataMsg { unsigned char *raw; /* The base64-decoded data; must be free()d */ size_t rawlen; int flags; unsigned char version; unsigned int sender_instance; unsigned int receiver_instance; unsigned int sender_keyid; unsigned int rcpt_keyid; gcry_mpi_t y; unsigned char ctr[8]; unsigned char *encmsg; /* A copy; must be free()d */ size_t encmsglen; unsigned char mac[20]; unsigned char *mackeys; /* A copy; must be free()d */ size_t mackeyslen; unsigned char *macstart; /* Pointers into the "raw" array. Don't */ unsigned char *macend; /* free() these. */ } * DataMsg; typedef struct s_CommitMsg { unsigned char *raw; /* The base64-decoded data; must be free()d */ unsigned char version; unsigned int sender_instance; unsigned int receiver_instance; unsigned char *enckey; size_t enckeylen; unsigned char *hashkey; size_t hashkeylen; } * CommitMsg; typedef struct s_KeyMsg { unsigned char *raw; /* The base64-decoded data; must be free()d */ unsigned char version; unsigned int sender_instance; unsigned int receiver_instance; gcry_mpi_t y; } * KeyMsg; typedef struct s_RevealSigMsg { unsigned char *raw; /* The base64-decoded data; must be free()d */ unsigned char version; unsigned int sender_instance; unsigned int receiver_instance; unsigned char *key; size_t keylen; unsigned char *encsig; size_t encsiglen; unsigned char mac[20]; } * RevealSigMsg; typedef struct s_SignatureMsg { unsigned char *raw; /* The base64-decoded data; must be free()d */ unsigned char version; unsigned int sender_instance; unsigned int receiver_instance; unsigned char *encsig; size_t encsiglen; unsigned char mac[20]; } * SignatureMsg; /* Dump an unsigned int to a FILE * */ void dump_int(FILE *stream, const char *title, unsigned int val); /* Dump an mpi to a FILE * */ void dump_mpi(FILE *stream, const char *title, gcry_mpi_t val); /* Dump data to a FILE * */ void dump_data(FILE *stream, const char *title, const unsigned char *data, size_t datalen); /* Parse a Key Exchange Message into a newly-allocated KeyExchMsg structure */ KeyExchMsg parse_keyexch(const char *msg); /* Deallocate a KeyExchMsg and all of the data it points to */ void free_keyexch(KeyExchMsg keyexch); /* Parse a D-H Commit Message into a newly-allocated CommitMsg structure */ CommitMsg parse_commit(const char *msg); /* Parse a Data Message into a newly-allocated DataMsg structure */ DataMsg parse_datamsg(const char *msg); /* Deallocate a CommitMsg and all of the data it points to */ void free_commit(CommitMsg cmsg); /* Parse a Reveal Signature Message into a newly-allocated RevealSigMsg * structure */ RevealSigMsg parse_revealsig(const char *msg); /* Deallocate a RevealSigMsg and all of the data it points to */ void free_revealsig(RevealSigMsg rmsg); /* Parse a Signature Message into a newly-allocated SignatureMsg structure */ SignatureMsg parse_signature(const char *msg); /* Deallocate a SignatureMsg and all of the data it points to */ void free_signature(SignatureMsg smsg); /* Parse a D-H Key Message into a newly-allocated KeyMsg structure */ KeyMsg parse_key(const char *msg); /* Deallocate a KeyMsg and all of the data it points to */ void free_key(KeyMsg cmsg); /* Recalculate the MAC on the message, base64-encode the resulting MAC'd * message, and put on the appropriate header and footer. Return a * newly-allocated pointer to the result, which the caller will have to * free(). */ char *remac_datamsg(DataMsg datamsg, unsigned char mackey[20]); /* Assemble a new Data Message from its pieces. Return a * newly-allocated string containing the base64 representation. */ char *assemble_datamsg(unsigned char mackey[20], unsigned char version, unsigned int sender_instance, unsigned int receiver_instance, int flags, unsigned int sender_keyid, unsigned int rcpt_keyid, gcry_mpi_t y, unsigned char ctr[8], unsigned char *encmsg, size_t encmsglen, unsigned char *mackeys, size_t mackeyslen); /* Deallocate a DataMsg and all of the data it points to */ void free_datamsg(DataMsg datamsg); /* Convert a string of hex chars to a buffer of unsigned chars. */ void argv_to_buf(unsigned char **bufp, size_t *lenp, char *arg); #endif �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/readotr.h����������������������������������������������������������������������0000664�0001750�0001750�00000002215�12637277541�013247� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __READOTR_H__ #define __READOTR_H__ /* Read from the given stream until we see a complete OTR Key Exchange * or OTR Data message. Return a newly-allocated pointer to a copy of * this message, which the caller should free(). Returns NULL if no * such message could be found. */ char *readotr(FILE *stream); #endif �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/ctrmode.c����������������������������������������������������������������������0000664�0001750�0001750�00000003326�12637277541�013243� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdlib.h> #include <string.h> /* toolkit headers */ #include "aes.h" /* Encrypt or decrypt data in AES-CTR mode. (The operations are the * same.) We roll our own here just to double-check that the calls * libotr makes to libgcrypt are doing the right thing. */ void aes_ctr_crypt(unsigned char *out, const unsigned char *in, size_t len, unsigned char key[16], unsigned char ctrtop[8]) { unsigned char ctr[16], encctr[16]; aes_context aesc; aes_set_key(&aesc, key, 128); memmove(ctr, ctrtop, 8); memset(ctr+8, 0, 8); while(len > 0) { /* How much to do at a time? */ size_t i; size_t amt = len; if (amt > 16) amt = 16; aes_encrypt(&aesc, ctr, encctr); for(i=0;i<amt;++i) { out[i] = in[i] ^ encctr[i]; } /* Increment the counter */ for (i=16;i>0;--i) { if (++ctr[i-1] != 0) break; } out += amt; in += amt; len -= amt; } } ����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/parse.c������������������������������������������������������������������������0000664�0001750�0001750�00000040230�12637277541�012713� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2012 Ian Goldberg, Rob Smits, Chris Alexander, * Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdio.h> #include <stdlib.h> /* libotr headers */ #include "b64.h" /* toolkit headers */ #include "sha1hmac.h" #include "parse.h" /* Dump an unsigned int to a FILE * */ void dump_int(FILE *stream, const char *title, unsigned int val) { fprintf(stream, "%s: %u\n", title, val); } /* Dump an mpi to a FILE * */ void dump_mpi(FILE *stream, const char *title, gcry_mpi_t val) { size_t plen; unsigned char *d; gcry_mpi_print(GCRYMPI_FMT_USG, NULL, 0, &plen, val); d = malloc(plen); gcry_mpi_print(GCRYMPI_FMT_USG, d, plen, NULL, val); dump_data(stream, title, d, plen); free(d); } /* Dump data to a FILE * */ void dump_data(FILE *stream, const char *title, const unsigned char *data, size_t datalen) { size_t i; fprintf(stream, "%s: ", title); for(i=0;i<datalen;++i) { fprintf(stream, "%02x", data[i]); } fprintf(stream, "\n"); } /* base64 decode the message, and put the resulting size into *lenp */ static unsigned char *decode(const char *msg, size_t *lenp) { const char *header, *footer; unsigned char *raw; size_t rawlen; /* Find the header */ header = strstr(msg, "?OTR:"); if (!header) return NULL; /* Skip the header */ header += 5; /* Find the trailing '.' */ footer = strchr(header, '.'); if (!footer) footer = header + strlen(header); rawlen = OTRL_B64_MAX_DECODED_SIZE(footer-header); raw = malloc(rawlen); if (raw == NULL && rawlen > 0) return NULL; *lenp = otrl_base64_decode(raw, header, footer-header); return raw; } #define require_len(l) do { if (lenp < (l)) goto inv; } while(0) #define read_int(x) do { \ require_len(4); \ (x) = (((unsigned int)bufp[0]) << 24) | (bufp[1] << 16) | (bufp[2] << 8 ) | bufp[3]; \ bufp += 4; lenp -= 4; \ } while(0) #define read_mpi(x) do { \ size_t mpilen; \ read_int(mpilen); \ require_len(mpilen); \ gcry_mpi_scan(&(x), GCRYMPI_FMT_USG, bufp, mpilen, NULL); \ bufp += mpilen; lenp -= mpilen; \ } while(0) #define read_raw(b, l) do { \ if (l) { \ require_len(l); \ memmove((b), bufp, (l)); \ bufp += (l); lenp -= (l); \ } \ } while(0) #define write_int(x) do { \ bufp[0] = ((x) >> 24) & 0xff; \ bufp[1] = ((x) >> 16) & 0xff; \ bufp[2] = ((x) >> 8) & 0xff; \ bufp[3] = (x) & 0xff; \ bufp += 4; lenp -= 4; \ } while(0) #define write_mpi(x,l) do { \ write_int(l); \ gcry_mpi_print(GCRYMPI_FMT_USG, bufp, lenp, NULL, (x)); \ bufp += (l); lenp -= (l); \ } while(0) #define write_raw(x,l) do { \ memmove(bufp, (x), (l)); \ bufp += (l); lenp -= (l); \ } while(0) /* Parse a Key Exchange Message into a newly-allocated KeyExchMsg structure */ KeyExchMsg parse_keyexch(const char *msg) { KeyExchMsg kem = NULL; size_t lenp; unsigned char *raw = decode(msg, &lenp); unsigned char *bufp = raw; if (!raw) goto inv; kem = calloc(1, sizeof(struct s_KeyExchMsg)); if (!kem) { free(raw); goto inv; } kem->raw = raw; kem->sigstart = bufp; require_len(3); if (memcmp(bufp, "\x00\x01\x0a", 3)) goto inv; bufp += 3; lenp -= 3; require_len(1); kem->reply = *bufp; bufp += 1; lenp -= 1; read_mpi(kem->p); read_mpi(kem->q); read_mpi(kem->g); read_mpi(kem->e); read_int(kem->keyid); read_mpi(kem->y); kem->sigend = bufp; require_len(40); gcry_mpi_scan(&kem->r, GCRYMPI_FMT_USG, bufp, 20, NULL); gcry_mpi_scan(&kem->s, GCRYMPI_FMT_USG, bufp+20, 20, NULL); bufp += 40; lenp -= 40; if (lenp != 0) goto inv; return kem; inv: free_keyexch(kem); return NULL; } /* Deallocate a KeyExchMsg and all of the data it points to */ void free_keyexch(KeyExchMsg keyexch) { if (!keyexch) return; free(keyexch->raw); gcry_mpi_release(keyexch->p); gcry_mpi_release(keyexch->q); gcry_mpi_release(keyexch->g); gcry_mpi_release(keyexch->e); gcry_mpi_release(keyexch->y); gcry_mpi_release(keyexch->r); gcry_mpi_release(keyexch->s); free(keyexch); } /* Parse a D-H Commit Message into a newly-allocated CommitMsg structure */ CommitMsg parse_commit(const char *msg) { CommitMsg cmsg = NULL; size_t lenp; unsigned char *raw = decode(msg, &lenp); unsigned char *bufp = raw; if (!raw) goto inv; cmsg = calloc(1, sizeof(struct s_CommitMsg)); if (!cmsg) { free(raw); goto inv; } cmsg->raw = raw; require_len(3); cmsg->version = bufp[1]; if (!memcmp(bufp, "\x00\x03\x02", 3)) { bufp += 3; lenp -= 3; read_int(cmsg->sender_instance); read_int(cmsg->receiver_instance); } else if (!memcmp(bufp, "\x00\x02\x02", 3)) { bufp += 3; lenp -= 3; cmsg->sender_instance = 0; cmsg->receiver_instance = 0; } else goto inv; read_int(cmsg->enckeylen); cmsg->enckey = malloc(cmsg->enckeylen); if (!cmsg->enckey && cmsg->enckeylen > 0) goto inv; read_raw(cmsg->enckey, cmsg->enckeylen); read_int(cmsg->hashkeylen); cmsg->hashkey = malloc(cmsg->hashkeylen); if (!cmsg->hashkey && cmsg->hashkeylen > 0) goto inv; read_raw(cmsg->hashkey, cmsg->hashkeylen); if (lenp != 0) goto inv; return cmsg; inv: free_commit(cmsg); return NULL; } /* Deallocate a CommitMsg and all of the data it points to */ void free_commit(CommitMsg cmsg) { if (!cmsg) return; free(cmsg->raw); free(cmsg->enckey); free(cmsg->hashkey); free(cmsg); } /* Parse a D-H Key Message into a newly-allocated KeyMsg structure */ KeyMsg parse_key(const char *msg) { KeyMsg kmsg = NULL; size_t lenp; unsigned char *raw = decode(msg, &lenp); unsigned char *bufp = raw; if (!raw) goto inv; kmsg = calloc(1, sizeof(struct s_KeyMsg)); if (!kmsg) { free(raw); goto inv; } kmsg->raw = raw; require_len(3); kmsg->version = bufp[1]; if (!memcmp(bufp, "\x00\x03\x0a", 3)) { bufp += 3; lenp -= 3; read_int(kmsg->sender_instance); read_int(kmsg->receiver_instance); } else if (!memcmp(bufp, "\x00\x02\x0a", 3)) { bufp += 3; lenp -= 3; kmsg->sender_instance = 0; kmsg->receiver_instance = 0; } else goto inv; read_mpi(kmsg->y); if (lenp != 0) goto inv; return kmsg; inv: free_key(kmsg); return NULL; } /* Deallocate a KeyMsg and all of the data it points to */ void free_key(KeyMsg kmsg) { if (!kmsg) return; free(kmsg->raw); gcry_mpi_release(kmsg->y); free(kmsg); } /* Parse a Reveal Signature Message into a newly-allocated RevealSigMsg * structure */ RevealSigMsg parse_revealsig(const char *msg) { RevealSigMsg rmsg = NULL; size_t lenp; unsigned char *raw = decode(msg, &lenp); unsigned char *bufp = raw; if (!raw) goto inv; rmsg = calloc(1, sizeof(struct s_RevealSigMsg)); if (!rmsg) { free(raw); goto inv; } rmsg->raw = raw; require_len(3); rmsg->version = bufp[1]; if (!memcmp(bufp, "\x00\x03\x11", 3)) { bufp += 3; lenp -= 3; read_int(rmsg->sender_instance); read_int(rmsg->receiver_instance); } else if (!memcmp(bufp, "\x00\x02\x11", 3)) { bufp += 3; lenp -= 3; rmsg->sender_instance = 0; rmsg->receiver_instance = 0; } else goto inv; read_int(rmsg->keylen); rmsg->key = malloc(rmsg->keylen); if (!rmsg->key && rmsg->keylen > 0) goto inv; read_raw(rmsg->key, rmsg->keylen); read_int(rmsg->encsiglen); rmsg->encsig = malloc(rmsg->encsiglen); if (!rmsg->encsig && rmsg->encsiglen > 0) goto inv; read_raw(rmsg->encsig, rmsg->encsiglen); read_raw(rmsg->mac, 20); if (lenp != 0) goto inv; return rmsg; inv: free_revealsig(rmsg); return NULL; } /* Deallocate a RevealSigMsg and all of the data it points to */ void free_revealsig(RevealSigMsg rmsg) { if (!rmsg) return; free(rmsg->raw); free(rmsg->key); free(rmsg->encsig); free(rmsg); } /* Parse a Signature Message into a newly-allocated SignatureMsg structure */ SignatureMsg parse_signature(const char *msg) { SignatureMsg smsg = NULL; size_t lenp; unsigned char *raw = decode(msg, &lenp); unsigned char *bufp = raw; if (!raw) goto inv; smsg = calloc(1, sizeof(struct s_SignatureMsg)); if (!smsg) { free(raw); goto inv; } smsg->raw = raw; require_len(3); smsg->version = bufp[1]; if (!memcmp(bufp, "\x00\x03\x12", 3)) { bufp += 3; lenp -= 3; read_int(smsg->sender_instance); read_int(smsg->receiver_instance); } else if (!memcmp(bufp, "\x00\x02\x12", 3)) { bufp += 3; lenp -= 3; smsg->sender_instance = 0; smsg->receiver_instance = 0; } else goto inv; read_int(smsg->encsiglen); smsg->encsig = malloc(smsg->encsiglen); if (!smsg->encsig && smsg->encsiglen > 0) goto inv; read_raw(smsg->encsig, smsg->encsiglen); read_raw(smsg->mac, 20); if (lenp != 0) goto inv; return smsg; inv: free_signature(smsg); return NULL; } /* Deallocate a SignatureMsg and all of the data it points to */ void free_signature(SignatureMsg smsg) { if (!smsg) return; free(smsg->raw); free(smsg->encsig); free(smsg); } /* Parse a Data Message into a newly-allocated DataMsg structure */ DataMsg parse_datamsg(const char *msg) { DataMsg datam = NULL; size_t lenp; unsigned char *raw = decode(msg, &lenp); unsigned char *bufp = raw; unsigned char version; if (!raw) goto inv; datam = calloc(1, sizeof(struct s_DataMsg)); if (!datam) { free(raw); goto inv; } datam->raw = raw; datam->rawlen = lenp; datam->macstart = bufp; require_len(3); if (memcmp(bufp, "\x00\x01\x03", 3) && memcmp(bufp, "\x00\x03\x03", 3) && memcmp(bufp, "\x00\x02\x03", 3)) goto inv; version = bufp[1]; datam->sender_instance = 0; datam->receiver_instance = 0; datam->version = version; datam->flags = -1; bufp += 3; lenp -= 3; if (version == 3) { read_int(datam->sender_instance); read_int(datam->receiver_instance); } if (version == 2 || version == 3) { require_len(1); datam->flags = bufp[0]; bufp += 1; lenp -= 1; } read_int(datam->sender_keyid); read_int(datam->rcpt_keyid); read_mpi(datam->y); read_raw(datam->ctr, 8); read_int(datam->encmsglen); datam->encmsg = malloc(datam->encmsglen); if (!datam->encmsg && datam->encmsglen > 0) goto inv; read_raw(datam->encmsg, datam->encmsglen); datam->macend = bufp; read_raw(datam->mac, 20); read_int(datam->mackeyslen); datam->mackeys = malloc(datam->mackeyslen); if (!datam->mackeys && datam->mackeyslen > 0) goto inv; read_raw(datam->mackeys, datam->mackeyslen); if (lenp != 0) goto inv; return datam; inv: free_datamsg(datam); return NULL; } /* Recalculate the MAC on the message, base64-encode the resulting MAC'd * message, and put on the appropriate header and footer. Return a * newly-allocated pointer to the result, which the caller will have to * free(). */ char *remac_datamsg(DataMsg datamsg, unsigned char mackey[20]) { size_t rawlen, lenp; size_t ylen; size_t base64len; char *outmsg; unsigned char *raw, *bufp; unsigned char version = datamsg->version; /* Calculate the size of the message that will result */ gcry_mpi_print(GCRYMPI_FMT_USG, NULL, 0, &ylen, datamsg->y); rawlen = 3 + (version == 3 ? 8 : 0) + (version == 2 || version == 3 ? 1 : 0) + 4 + 4 + 4 + ylen + 8 + 4 + datamsg->encmsglen + 20 + 4 + datamsg->mackeyslen; /* Construct the new raw message (note that some of the pieces may * have been altered, so we construct it from scratch). */ raw = malloc(rawlen); if (!raw) { fprintf(stderr, "Out of memory!\n"); exit(1); } bufp = raw; lenp = rawlen; datamsg->macstart = raw; datamsg->macend = NULL; free(datamsg->raw); datamsg->raw = raw; datamsg->rawlen = rawlen; memmove(bufp, "\x00", 1); memmove(bufp+1, &version, 1); memmove(bufp+2, "\x03", 1); bufp += 3; lenp -= 3; if (version == 3) { write_int(datamsg->sender_instance); write_int(datamsg->receiver_instance); } if (version == 2 || version == 3) { bufp[0] = datamsg->flags; bufp += 1; lenp -= 1; } write_int(datamsg->sender_keyid); write_int(datamsg->rcpt_keyid); write_mpi(datamsg->y, ylen); write_raw(datamsg->ctr, 8); write_int(datamsg->encmsglen); write_raw(datamsg->encmsg, datamsg->encmsglen); datamsg->macend = bufp; /* Recalculate the MAC */ sha1hmac(datamsg->mac, mackey, datamsg->macstart, datamsg->macend - datamsg->macstart); write_raw(datamsg->mac, 20); write_int(datamsg->mackeyslen); write_raw(datamsg->mackeys, datamsg->mackeyslen); if (lenp != 0) { fprintf(stderr, "Error creating OTR Data Message.\n"); exit(1); } base64len = 5 + ((datamsg->rawlen + 2) / 3) * 4 + 1 + 1; outmsg = malloc(base64len); if (!outmsg) return NULL; memmove(outmsg, "?OTR:", 5); otrl_base64_encode(outmsg + 5, datamsg->raw, datamsg->rawlen); strcpy(outmsg + base64len - 2, "."); return outmsg; } /* Assemble a new Data Message from its pieces. Return a * newly-allocated string containing the base64 representation. */ char *assemble_datamsg(unsigned char mackey[20], unsigned char version, unsigned int sender_instance, unsigned int receiver_instance, int flags, unsigned int sender_keyid, unsigned int rcpt_keyid, gcry_mpi_t y, unsigned char ctr[8], unsigned char *encmsg, size_t encmsglen, unsigned char *mackeys, size_t mackeyslen) { DataMsg datam = calloc(1, sizeof(struct s_DataMsg)); char *newmsg = NULL; if (!datam) goto inv; datam->version = version; datam->flags = flags; datam->sender_instance = sender_instance; datam->receiver_instance = receiver_instance; datam->sender_keyid = sender_keyid; datam->rcpt_keyid = rcpt_keyid; datam->y = gcry_mpi_copy(y); memmove(datam->ctr, ctr, 8); datam->encmsg = malloc(encmsglen); if (!datam->encmsg && encmsglen > 0) goto inv; memmove(datam->encmsg, encmsg, encmsglen); datam->encmsglen = encmsglen; datam->mackeys = malloc(mackeyslen); if (!datam->mackeys && mackeyslen > 0) goto inv; memmove(datam->mackeys, mackeys, mackeyslen); datam->mackeyslen = mackeyslen; /* Recalculate the MAC and base64-encode the result */ newmsg = remac_datamsg(datam, mackey); free_datamsg(datam); return newmsg; inv: free_datamsg(datam); return NULL; } /* Deallocate a DataMsg and all of the data it points to */ void free_datamsg(DataMsg datamsg) { if (!datamsg) return; free(datamsg->raw); gcry_mpi_release(datamsg->y); free(datamsg->encmsg); free(datamsg->mackeys); free(datamsg); } static int ctoh(char c) { if (c >= '0' && c <= '9') return (c-'0'); if (c >= 'a' && c <= 'f') return (c-'a'+10); if (c >= 'A' && c <= 'F') return (c-'A'+10); return -1; } /* Convert a string of hex chars to a buffer of unsigned chars. */ void argv_to_buf(unsigned char **bufp, size_t *lenp, char *arg) { unsigned char *buf; size_t len, i; *bufp = NULL; *lenp = 0; len = strlen(arg); if (len % 2) { fprintf(stderr, "Argument ``%s'' must have even length.\n", arg); return; } buf = malloc(len/2); if (buf == NULL && len > 0) { fprintf(stderr, "Out of memory!\n"); return; } for(i=0;i<len/2;++i) { int hi = ctoh(arg[2*i]); int lo = ctoh(arg[2*i+1]); if (hi < 0 || lo < 0) { free(buf); fprintf(stderr, "Illegal hex char in argument ``%s''.\n", arg); return; } buf[i] = (hi << 4) + lo; } *bufp = buf; *lenp = len/2; } ������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/Makefile.am��������������������������������������������������������������������0000664�0001750�0001750�00000002356�12637277541�013500� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������AM_CPPFLAGS = -I$(includedir) -I../src @LIBGCRYPT_CFLAGS@ noinst_HEADERS = aes.h ctrmode.h parse.h sesskeys.h readotr.h sha1hmac.h bin_PROGRAMS = otr_parse otr_sesskeys otr_mackey otr_readforge \ otr_modify otr_remac COMMON_S = parse.c sha1hmac.c COMMON_LD = ../src/libotr.la @LIBS@ @LIBGCRYPT_LIBS@ otr_parse_SOURCES = otr_parse.c readotr.c $(COMMON_S) otr_parse_LDADD = $(COMMON_LD) otr_sesskeys_SOURCES = otr_sesskeys.c sesskeys.c $(COMMON_S) otr_sesskeys_LDADD = $(COMMON_LD) otr_mackey_SOURCES = otr_mackey.c sesskeys.c $(COMMON_S) otr_mackey_LDADD = $(COMMON_LD) otr_readforge_SOURCES = otr_readforge.c readotr.c sesskeys.c \ aes.c ctrmode.c $(COMMON_S) otr_readforge_LDADD = $(COMMON_LD) otr_modify_SOURCES = otr_modify.c readotr.c $(COMMON_S) otr_modify_LDADD = $(COMMON_LD) otr_remac_SOURCES = otr_remac.c $(COMMON_S) otr_remac_LDADD = $(COMMON_LD) man_MANS = otr_toolkit.1 EXTRA_DIST = otr_toolkit.1 MANLINKS = otr_parse.1 otr_sesskeys.1 otr_mackey.1 otr_readforge.1 \ otr_modify.1 otr_remac.1 install-data-local: -mkdir -p $(DESTDIR)$(man1dir) (cd $(DESTDIR)$(man1dir) && \ for f in $(MANLINKS); do ln -sf otr_toolkit.1 $$f; done) uninstall-local: (cd $(DESTDIR)$(man1dir) && \ for f in $(MANLINKS); do rm -f $$f; done) ����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/otr_remac.c��������������������������������������������������������������������0000664�0001750�0001750�00000007400�12637277541�013556� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging Toolkit * Copyright (C) 2004-2012 Ian Goldberg, Rob Smits, Chris Alexander, * Nikita Borisov * <otr@cypherpunks.ca> * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdio.h> #include <stdlib.h> /* libgcrypt headers */ #include <gcrypt.h> /* toolkit headers */ #include "parse.h" #include "sha1hmac.h" static void usage(const char *progname) { fprintf(stderr, "Usage: %s mackey sender_instance receiver_instance " "flags snd_keyid rcp_keyid pubkey counter encdata revealed_mackeys\n" "Make a new Data message, with the given pieces (note that the\n" "data part is already encrypted). MAC it with the given mackey.\n" "mackey, pubkey, counter, encdata, and revealed_mackeys are given\n" "as strings of hex chars. snd_keyid and rcp_keyid are decimal integers.\n", progname); exit(1); } int main(int argc, char **argv) { unsigned char *mackey; size_t mackeylen; unsigned int snd_keyid, rcp_keyid; int flags; unsigned char version = 3; unsigned int sender_instance; unsigned int receiver_instance; unsigned char *pubkey; size_t pubkeylen; gcry_mpi_t pubv; unsigned char *ctr; size_t ctrlen; unsigned char *encdata; size_t encdatalen; unsigned char *mackeys; size_t mackeyslen; char *newdatamsg; if (argc != 11) { usage(argv[0]); } argv_to_buf(&mackey, &mackeylen, argv[1]); if (!mackey) { usage(argv[0]); } if (mackeylen != 20) { fprintf(stderr, "The MAC key must be 40 hex chars long.\n"); usage(argv[0]); } if (sscanf(argv[2], "%u", &sender_instance) != 1) { fprintf(stderr, "Unparseable sender_instance given.\n"); usage(argv[0]); } if (sscanf(argv[3], "%u", &receiver_instance) != 1) { fprintf(stderr, "Unparseable receiver_instance given.\n"); usage(argv[0]); } if (sscanf(argv[4], "%d", &flags) != 1) { fprintf(stderr, "Unparseable flags given.\n"); usage(argv[0]); } if (sscanf(argv[5], "%u", &snd_keyid) != 1) { fprintf(stderr, "Unparseable snd_keyid given.\n"); usage(argv[0]); } if (sscanf(argv[6], "%u", &rcp_keyid) != 1) { fprintf(stderr, "Unparseable rcp_keyid given.\n"); usage(argv[0]); } argv_to_buf(&pubkey, &pubkeylen, argv[7]); if (!pubkey) { usage(argv[0]); } gcry_mpi_scan(&pubv, GCRYMPI_FMT_USG, pubkey, pubkeylen, NULL); free(pubkey); argv_to_buf(&ctr, &ctrlen, argv[8]); if (!ctr) { usage(argv[0]); } if (ctrlen != 8) { fprintf(stderr, "The counter must be 16 hex chars long.\n"); usage(argv[0]); } argv_to_buf(&encdata, &encdatalen, argv[9]); if (!encdata) { usage(argv[0]); } argv_to_buf(&mackeys, &mackeyslen, argv[10]); if (!mackeys) { usage(argv[0]); } newdatamsg = assemble_datamsg(mackey, version, sender_instance, receiver_instance, flags, snd_keyid, rcp_keyid, pubv, ctr, encdata, encdatalen, mackeys, mackeyslen); printf("%s\n", newdatamsg); free(newdatamsg); free(mackey); gcry_mpi_release(pubv); free(ctr); free(encdata); free(mackeys); fflush(stdout); return 0; } ����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/toolkit/aes.h��������������������������������������������������������������������������0000664�0001750�0001750�00000001151�12637277541�012355� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* Retrieved from http://www.cr0.net:8040/code/crypto/aes/aes.h */ #ifndef _AES_H #define _AES_H #ifndef uint8 #define uint8 unsigned char #endif #ifndef uint32 #define uint32 unsigned long int #endif typedef struct { uint32 erk[64]; /* encryption round keys */ uint32 drk[64]; /* decryption round keys */ int nr; /* number of rounds */ } aes_context; int aes_set_key( aes_context *ctx, uint8 *key, int nbits ); void aes_encrypt( aes_context *ctx, uint8 input[16], uint8 output[16] ); void aes_decrypt( aes_context *ctx, uint8 input[16], uint8 output[16] ); #endif /* aes.h */ �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/AUTHORS��������������������������������������������������������������������������������0000664�0001750�0001750�00000000346�12637277541�011024� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������Off-the-Record Messaging Library and Toolkit Authors: Ian Goldberg, David Goulet, Rob Smits, Chris Alexander, Willy Lew, Lisa Du, Nikita Borisov <otr@cypherpunks.ca> See the README file for mailing list information ������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/aclocal.m4�����������������������������������������������������������������������������0000664�0001750�0001750�00000135330�12667305557�011620� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������# generated automatically by aclocal 1.14.1 -*- Autoconf -*- # Copyright (C) 1996-2013 Free Software Foundation, Inc. # This file is free software; the Free Software Foundation # gives unlimited permission to copy and/or distribute it, # with or without modifications, as long as this notice is preserved. # This program is distributed in the hope that it will be useful, # but WITHOUT ANY WARRANTY, to the extent permitted by law; without # even the implied warranty of MERCHANTABILITY or FITNESS FOR A # PARTICULAR PURPOSE. m4_ifndef([AC_CONFIG_MACRO_DIRS], [m4_defun([_AM_CONFIG_MACRO_DIRS], [])m4_defun([AC_CONFIG_MACRO_DIRS], [_AM_CONFIG_MACRO_DIRS($@)])]) m4_ifndef([AC_AUTOCONF_VERSION], [m4_copy([m4_PACKAGE_VERSION], [AC_AUTOCONF_VERSION])])dnl m4_if(m4_defn([AC_AUTOCONF_VERSION]), [2.69],, [m4_warning([this file was generated for autoconf 2.69. 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See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdlib.h> #include <string.h> #include <assert.h> /* libotr headers */ #include "b64.h" #include "privkey.h" #include "auth.h" #include "serial.h" #include "proto.h" #include "context.h" #include "mem.h" #if OTRL_DEBUGGING #include <stdio.h> /* Dump the contents of an OtrlAuthInfo to the FILE *f. */ void otrl_auth_dump(FILE *f, const OtrlAuthInfo *auth) { int i; fprintf(f, " Auth info %p:\n", auth); fprintf(f, " State: %d (%s)\n", auth->authstate, auth->authstate == OTRL_AUTHSTATE_NONE ? "NONE" : auth->authstate == OTRL_AUTHSTATE_AWAITING_DHKEY ? "AWAITING_DHKEY" : auth->authstate == OTRL_AUTHSTATE_AWAITING_REVEALSIG ? "AWAITING_REVEALSIG" : auth->authstate == OTRL_AUTHSTATE_AWAITING_SIG ? "AWAITING_SIG" : auth->authstate == OTRL_AUTHSTATE_V1_SETUP ? "V1_SETUP" : "INVALID"); fprintf(f, " Context: %p\n", auth->context); fprintf(f, " Our keyid: %u\n", auth->our_keyid); fprintf(f, " Their keyid: %u\n", auth->their_keyid); fprintf(f, " Their fingerprint: "); for (i=0;i<20;++i) { fprintf(f, "%02x", auth->their_fingerprint[i]); } fprintf(f, "\n Initiated = %d\n", auth->initiated); fprintf(f, "\n Proto version = %d\n", auth->protocol_version); fprintf(f, "\n Lastauthmsg = %s\n", auth->lastauthmsg ? auth->lastauthmsg : "(nil)"); fprintf(f, "\n Commit sent time = %ld\n", (long) auth->commit_sent_time); } #endif /* * Initialize the fields of an OtrlAuthInfo (already allocated). */ void otrl_auth_new(struct context *context) { OtrlAuthInfo *auth = &(context->auth); auth->authstate = OTRL_AUTHSTATE_NONE; otrl_dh_keypair_init(&(auth->our_dh)); auth->our_keyid = 0; auth->encgx = NULL; auth->encgx_len = 0; memset(auth->r, 0, 16); memset(auth->hashgx, 0, 32); auth->their_pub = NULL; auth->their_keyid = 0; auth->enc_c = NULL; auth->enc_cp = NULL; auth->mac_m1 = NULL; auth->mac_m1p = NULL; auth->mac_m2 = NULL; auth->mac_m2p = NULL; memset(auth->their_fingerprint, 0, 20); auth->initiated = 0; auth->protocol_version = 0; memset(auth->secure_session_id, 0, 20); auth->secure_session_id_len = 0; auth->lastauthmsg = NULL; auth->commit_sent_time = 0; auth->context = context; } /* * Clear the fields of an OtrlAuthInfo (but leave it allocated). */ void otrl_auth_clear(OtrlAuthInfo *auth) { auth->authstate = OTRL_AUTHSTATE_NONE; otrl_dh_keypair_free(&(auth->our_dh)); auth->our_keyid = 0; free(auth->encgx); auth->encgx = NULL; auth->encgx_len = 0; memset(auth->r, 0, 16); memset(auth->hashgx, 0, 32); gcry_mpi_release(auth->their_pub); auth->their_pub = NULL; auth->their_keyid = 0; gcry_cipher_close(auth->enc_c); gcry_cipher_close(auth->enc_cp); gcry_md_close(auth->mac_m1); gcry_md_close(auth->mac_m1p); gcry_md_close(auth->mac_m2); gcry_md_close(auth->mac_m2p); auth->enc_c = NULL; auth->enc_cp = NULL; auth->mac_m1 = NULL; auth->mac_m1p = NULL; auth->mac_m2 = NULL; auth->mac_m2p = NULL; memset(auth->their_fingerprint, 0, 20); auth->initiated = 0; auth->protocol_version = 0; memset(auth->secure_session_id, 0, 20); auth->secure_session_id_len = 0; free(auth->lastauthmsg); auth->lastauthmsg = NULL; auth->commit_sent_time = 0; } /* * Start a fresh AKE (version 2 or 3) using the given OtrlAuthInfo. Generate * a fresh DH keypair to use. If no error is returned, the message to * transmit will be contained in auth->lastauthmsg. */ gcry_error_t otrl_auth_start_v23(OtrlAuthInfo *auth, int version) { gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); const enum gcry_mpi_format format = GCRYMPI_FMT_USG; size_t npub; gcry_cipher_hd_t enc = NULL; unsigned char ctr[16]; unsigned char *buf, *bufp; size_t buflen, lenp; /* Clear out this OtrlAuthInfo and start over */ otrl_auth_clear(auth); auth->initiated = 1; auth->protocol_version = version; auth->context->protocol_version = version; otrl_dh_gen_keypair(DH1536_GROUP_ID, &(auth->our_dh)); auth->our_keyid = 1; /* Pick an encryption key */ gcry_randomize(auth->r, 16, GCRY_STRONG_RANDOM); /* Allocate space for the encrypted g^x */ gcry_mpi_print(format, NULL, 0, &npub, auth->our_dh.pub); auth->encgx = malloc(4+npub); if (auth->encgx == NULL) goto memerr; auth->encgx_len = 4+npub; bufp = auth->encgx; lenp = auth->encgx_len; write_mpi(auth->our_dh.pub, npub, "g^x"); assert(lenp == 0); /* Hash g^x */ gcry_md_hash_buffer(GCRY_MD_SHA256, auth->hashgx, auth->encgx, auth->encgx_len); /* Encrypt g^x using the key r */ err = gcry_cipher_open(&enc, GCRY_CIPHER_AES, GCRY_CIPHER_MODE_CTR, GCRY_CIPHER_SECURE); if (err) goto err; err = gcry_cipher_setkey(enc, auth->r, 16); if (err) goto err; memset(ctr, 0, 16); err = gcry_cipher_setctr(enc, ctr, 16); if (err) goto err; err = gcry_cipher_encrypt(enc, auth->encgx, auth->encgx_len, NULL, 0); if (err) goto err; gcry_cipher_close(enc); enc = NULL; /* Now serialize the message */ lenp = OTRL_HEADER_LEN + (auth->protocol_version == 3 ? 8 : 0) + 4 + auth->encgx_len + 4 + 32; bufp = malloc(lenp); if (bufp == NULL) goto memerr; buf = bufp; buflen = lenp; /* Header */ write_header(auth->protocol_version, '\x02'); if (auth->protocol_version == 3) { /* instance tags */ write_int(auth->context->our_instance); debug_int("Sender instag", bufp-4); write_int(auth->context->their_instance); debug_int("Recipient instag", bufp-4); } /* Encrypted g^x */ write_int(auth->encgx_len); debug_int("Enc gx len", bufp-4); memmove(bufp, auth->encgx, auth->encgx_len); debug_data("Enc gx", bufp, auth->encgx_len); bufp += auth->encgx_len; lenp -= auth->encgx_len; /* Hashed g^x */ write_int(32); debug_int("hashgx len", bufp-4); memmove(bufp, auth->hashgx, 32); debug_data("hashgx", bufp, 32); bufp += 32; lenp -= 32; assert(lenp == 0); auth->lastauthmsg = otrl_base64_otr_encode(buf, buflen); free(buf); if (auth->lastauthmsg == NULL) goto memerr; auth->authstate = OTRL_AUTHSTATE_AWAITING_DHKEY; return err; memerr: err = gcry_error(GPG_ERR_ENOMEM); err: otrl_auth_clear(auth); gcry_cipher_close(enc); return err; } /* * Create a D-H Key Message using the our_dh value in the given auth, * and store it in auth->lastauthmsg. */ static gcry_error_t create_key_message(OtrlAuthInfo *auth) { gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); const enum gcry_mpi_format format = GCRYMPI_FMT_USG; unsigned char *buf, *bufp; size_t buflen, lenp; size_t npub; gcry_mpi_print(format, NULL, 0, &npub, auth->our_dh.pub); buflen = OTRL_HEADER_LEN + (auth->protocol_version == 3 ? 8 : 0) + 4 + npub; buf = malloc(buflen); if (buf == NULL) goto memerr; bufp = buf; lenp = buflen; /* header */ write_header(auth->protocol_version, '\x0a'); if (auth->protocol_version == 3) { /* instance tags */ write_int(auth->context->our_instance); debug_int("Sender instag", bufp-4); write_int(auth->context->their_instance); debug_int("Recipient instag", bufp-4); } /* g^y */ write_mpi(auth->our_dh.pub, npub, "g^y"); assert(lenp == 0); free(auth->lastauthmsg); auth->lastauthmsg = otrl_base64_otr_encode(buf, buflen); free(buf); if (auth->lastauthmsg == NULL) goto memerr; return err; memerr: err = gcry_error(GPG_ERR_ENOMEM); return err; } /* * Handle an incoming D-H Commit Message. If no error is returned, the * message to send will be left in auth->lastauthmsg. Generate a fresh * keypair to use. */ gcry_error_t otrl_auth_handle_commit(OtrlAuthInfo *auth, const char *commitmsg, int version) { gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); unsigned char *buf = NULL, *bufp = NULL, *encbuf = NULL; unsigned char hashbuf[32]; size_t buflen, lenp, enclen, hashlen; int res; /* Are we the auth for the master context? */ int is_master = (auth->context->m_context == auth->context); res = otrl_base64_otr_decode(commitmsg, &buf, &buflen); if (res == -1) goto memerr; if (res == -2) goto invval; bufp = buf; lenp = buflen; /* Header */ auth->protocol_version = version; auth->context->protocol_version = version; skip_header('\x02'); if (version == 3) { require_len(8); bufp += 8; lenp -= 8; } /* Encrypted g^x */ read_int(enclen); require_len(enclen); encbuf = malloc(enclen); if (encbuf == NULL && enclen > 0) goto memerr; memmove(encbuf, bufp, enclen); bufp += enclen; lenp -= enclen; /* Hashed g^x */ read_int(hashlen); if (hashlen != 32) goto invval; require_len(32); memmove(hashbuf, bufp, 32); bufp += 32; lenp -= 32; if (lenp != 0) goto invval; free(buf); buf = NULL; switch(auth->authstate) { case OTRL_AUTHSTATE_NONE: case OTRL_AUTHSTATE_AWAITING_SIG: case OTRL_AUTHSTATE_V1_SETUP: /* Store the incoming information */ otrl_auth_clear(auth); auth->protocol_version = version; otrl_dh_gen_keypair(DH1536_GROUP_ID, &(auth->our_dh)); auth->our_keyid = 1; auth->encgx = encbuf; encbuf = NULL; auth->encgx_len = enclen; memmove(auth->hashgx, hashbuf, 32); /* Create a D-H Key Message */ err = create_key_message(auth); if (err) goto err; auth->authstate = OTRL_AUTHSTATE_AWAITING_REVEALSIG; break; case OTRL_AUTHSTATE_AWAITING_DHKEY: /* We sent a D-H Commit Message, and we also received one * back. If we're the master context, then the keypair in here * is probably stale; we just kept it around for a little * while in case some other logged in instance of our buddy * replied with a DHKEY message. In that case, use the * incoming parameters. Otherwise, compare the hashgx * values to see which one wins. * * This does NOT use constant time comparison because these * are two public values thus don't need it. Also, this checks * which pubkey is larger and not if they are the same. */ if (!is_master && memcmp(auth->hashgx, hashbuf, 32) > 0) { /* Ours wins. Ignore the message we received, and just * resend the same D-H Commit message again. */ free(encbuf); encbuf = NULL; } else { /* Ours loses. Use the incoming parameters instead. */ otrl_auth_clear(auth); auth->protocol_version = version; otrl_dh_gen_keypair(DH1536_GROUP_ID, &(auth->our_dh)); auth->our_keyid = 1; auth->encgx = encbuf; encbuf = NULL; auth->encgx_len = enclen; memmove(auth->hashgx, hashbuf, 32); /* Create a D-H Key Message */ err = create_key_message(auth); if (err) goto err; auth->authstate = OTRL_AUTHSTATE_AWAITING_REVEALSIG; } break; case OTRL_AUTHSTATE_AWAITING_REVEALSIG: /* Use the incoming parameters, but just retransmit the old * D-H Key Message. */ free(auth->encgx); auth->encgx = encbuf; encbuf = NULL; auth->encgx_len = enclen; memmove(auth->hashgx, hashbuf, 32); break; } return err; invval: err = gcry_error(GPG_ERR_INV_VALUE); goto err; memerr: err = gcry_error(GPG_ERR_ENOMEM); err: free(buf); free(encbuf); return err; } /* * Calculate the encrypted part of the Reveal Signature and Signature * Messages, given a MAC key, an encryption key, two DH public keys, an * authentication public key (contained in an OtrlPrivKey structure), * and a keyid. If no error is returned, *authbufp will point to the * result, and *authlenp will point to its length. */ static gcry_error_t calculate_pubkey_auth(unsigned char **authbufp, size_t *authlenp, gcry_md_hd_t mackey, gcry_cipher_hd_t enckey, gcry_mpi_t our_dh_pub, gcry_mpi_t their_dh_pub, OtrlPrivKey *privkey, unsigned int keyid) { gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); const enum gcry_mpi_format format = GCRYMPI_FMT_USG; size_t ourpublen, theirpublen, totallen, lenp; unsigned char *buf = NULL, *bufp = NULL; unsigned char macbuf[32]; unsigned char *sigbuf = NULL; size_t siglen; /* How big are the DH public keys? */ gcry_mpi_print(format, NULL, 0, &ourpublen, our_dh_pub); gcry_mpi_print(format, NULL, 0, &theirpublen, their_dh_pub); /* How big is the total structure to be MAC'd? */ totallen = 4 + ourpublen + 4 + theirpublen + 2 + privkey->pubkey_datalen + 4; buf = malloc(totallen); if (buf == NULL) goto memerr; bufp = buf; lenp = totallen; /* Write the data to be MAC'd */ write_mpi(our_dh_pub, ourpublen, "Our DH pubkey"); write_mpi(their_dh_pub, theirpublen, "Their DH pubkey"); bufp[0] = ((privkey->pubkey_type) >> 8) & 0xff; bufp[1] = (privkey->pubkey_type) & 0xff; bufp += 2; lenp -= 2; memmove(bufp, privkey->pubkey_data, privkey->pubkey_datalen); debug_data("Pubkey", bufp, privkey->pubkey_datalen); bufp += privkey->pubkey_datalen; lenp -= privkey->pubkey_datalen; write_int(keyid); debug_int("Keyid", bufp-4); assert(lenp == 0); /* Do the MAC */ gcry_md_reset(mackey); gcry_md_write(mackey, buf, totallen); memmove(macbuf, gcry_md_read(mackey, GCRY_MD_SHA256), 32); free(buf); buf = NULL; /* Sign the MAC */ err = otrl_privkey_sign(&sigbuf, &siglen, privkey, macbuf, 32); if (err) goto err; /* Calculate the total size of the structure to be encrypted */ totallen = 2 + privkey->pubkey_datalen + 4 + siglen; buf = malloc(totallen); if (buf == NULL) goto memerr; bufp = buf; lenp = totallen; /* Write the data to be encrypted */ bufp[0] = ((privkey->pubkey_type) >> 8) & 0xff; bufp[1] = (privkey->pubkey_type) & 0xff; bufp += 2; lenp -= 2; memmove(bufp, privkey->pubkey_data, privkey->pubkey_datalen); debug_data("Pubkey", bufp, privkey->pubkey_datalen); bufp += privkey->pubkey_datalen; lenp -= privkey->pubkey_datalen; write_int(keyid); debug_int("Keyid", bufp-4); memmove(bufp, sigbuf, siglen); debug_data("Signature", bufp, siglen); bufp += siglen; lenp -= siglen; free(sigbuf); sigbuf = NULL; assert(lenp == 0); /* Now do the encryption */ err = gcry_cipher_encrypt(enckey, buf, totallen, NULL, 0); if (err) goto err; *authbufp = buf; buf = NULL; *authlenp = totallen; return err; memerr: err = gcry_error(GPG_ERR_ENOMEM); err: free(buf); free(sigbuf); return err; } /* * Decrypt the authenticator in the Reveal Signature and Signature * Messages, given a MAC key, and encryption key, and two DH public * keys. The fingerprint of the received public key will get put into * fingerprintbufp, and the received keyid will get put in *keyidp. * The encrypted data pointed to by authbuf will be decrypted in place. */ static gcry_error_t check_pubkey_auth(unsigned char fingerprintbufp[20], unsigned int *keyidp, unsigned char *authbuf, size_t authlen, gcry_md_hd_t mackey, gcry_cipher_hd_t enckey, gcry_mpi_t our_dh_pub, gcry_mpi_t their_dh_pub) { gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); const enum gcry_mpi_format format = GCRYMPI_FMT_USG; size_t ourpublen, theirpublen, totallen, lenp; unsigned char *buf = NULL, *bufp = NULL; unsigned char macbuf[32]; unsigned short pubkey_type; gcry_mpi_t p,q,g,y; gcry_sexp_t pubs = NULL; unsigned int received_keyid; unsigned char *fingerprintstart, *fingerprintend, *sigbuf; size_t siglen; /* Start by decrypting it */ err = gcry_cipher_decrypt(enckey, authbuf, authlen, NULL, 0); if (err) goto err; bufp = authbuf; lenp = authlen; /* Get the public key and calculate its fingerprint */ require_len(2); pubkey_type = (bufp[0] << 8) + bufp[1]; bufp += 2; lenp -= 2; if (pubkey_type != OTRL_PUBKEY_TYPE_DSA) goto invval; fingerprintstart = bufp; read_mpi(p); read_mpi(q); read_mpi(g); read_mpi(y); fingerprintend = bufp; gcry_md_hash_buffer(GCRY_MD_SHA1, fingerprintbufp, fingerprintstart, fingerprintend-fingerprintstart); gcry_sexp_build(&pubs, NULL, "(public-key (dsa (p %m)(q %m)(g %m)(y %m)))", p, q, g, y); gcry_mpi_release(p); gcry_mpi_release(q); gcry_mpi_release(g); gcry_mpi_release(y); /* Get the keyid */ read_int(received_keyid); if (received_keyid == 0) goto invval; /* Get the signature */ sigbuf = bufp; siglen = lenp; /* How big are the DH public keys? */ gcry_mpi_print(format, NULL, 0, &ourpublen, our_dh_pub); gcry_mpi_print(format, NULL, 0, &theirpublen, their_dh_pub); /* Now calculate the message to be MAC'd. */ totallen = 4 + ourpublen + 4 + theirpublen + 2 + (fingerprintend - fingerprintstart) + 4; buf = malloc(totallen); if (buf == NULL) goto memerr; bufp = buf; lenp = totallen; write_mpi(their_dh_pub, theirpublen, "Their DH pubkey"); write_mpi(our_dh_pub, ourpublen, "Our DH pubkey"); bufp[0] = (pubkey_type >> 8) & 0xff; bufp[1] = pubkey_type & 0xff; bufp += 2; lenp -= 2; memmove(bufp, fingerprintstart, fingerprintend - fingerprintstart); debug_data("Pubkey", bufp, fingerprintend - fingerprintstart); bufp += fingerprintend - fingerprintstart; lenp -= fingerprintend - fingerprintstart; write_int(received_keyid); debug_int("Keyid", bufp-4); assert(lenp == 0); /* Do the MAC */ gcry_md_reset(mackey); gcry_md_write(mackey, buf, totallen); memmove(macbuf, gcry_md_read(mackey, GCRY_MD_SHA256), 32); free(buf); buf = NULL; /* Verify the signature on the MAC */ err = otrl_privkey_verify(sigbuf, siglen, pubkey_type, pubs, macbuf, 32); if (err) goto err; gcry_sexp_release(pubs); pubs = NULL; /* Everything checked out */ *keyidp = received_keyid; return err; invval: err = gcry_error(GPG_ERR_INV_VALUE); goto err; memerr: err = gcry_error(GPG_ERR_ENOMEM); err: free(buf); gcry_sexp_release(pubs); return err; } /* * Create a Reveal Signature Message using the values in the given auth, * and store it in auth->lastauthmsg. Use the given privkey to sign the * message. */ static gcry_error_t create_revealsig_message(OtrlAuthInfo *auth, OtrlPrivKey *privkey) { gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); unsigned char *buf = NULL, *bufp, *startmac; size_t buflen, lenp; unsigned char *authbuf = NULL; size_t authlen; /* Get the encrypted authenticator */ err = calculate_pubkey_auth(&authbuf, &authlen, auth->mac_m1, auth->enc_c, auth->our_dh.pub, auth->their_pub, privkey, auth->our_keyid); if (err) goto err; buflen = OTRL_HEADER_LEN + (auth->protocol_version == 3 ? 8 : 0) + 4 + 16 + 4 + authlen + 20; buf = malloc(buflen); if (buf == NULL) goto memerr; bufp = buf; lenp = buflen; /* header */ write_header(auth->protocol_version, '\x11'); if (auth->protocol_version == 3) { /* instance tags */ write_int(auth->context->our_instance); debug_int("Sender instag", bufp-4); write_int(auth->context->their_instance); debug_int("Recipient instag", bufp-4); } /* r */ write_int(16); memmove(bufp, auth->r, 16); debug_data("r", bufp, 16); bufp += 16; lenp -= 16; /* Encrypted authenticator */ startmac = bufp; write_int(authlen); memmove(bufp, authbuf, authlen); debug_data("auth", bufp, authlen); bufp += authlen; lenp -= authlen; free(authbuf); authbuf = NULL; /* MAC it, but only take the first 20 bytes */ gcry_md_reset(auth->mac_m2); gcry_md_write(auth->mac_m2, startmac, bufp - startmac); memmove(bufp, gcry_md_read(auth->mac_m2, GCRY_MD_SHA256), 20); debug_data("MAC", bufp, 20); bufp += 20; lenp -= 20; assert(lenp == 0); free(auth->lastauthmsg); auth->lastauthmsg = otrl_base64_otr_encode(buf, buflen); if (auth->lastauthmsg == NULL) goto memerr; free(buf); buf = NULL; return err; memerr: err = gcry_error(GPG_ERR_ENOMEM); err: free(buf); free(authbuf); return err; } /* * Create a Signature Message using the values in the given auth, and * store it in auth->lastauthmsg. Use the given privkey to sign the * message. */ static gcry_error_t create_signature_message(OtrlAuthInfo *auth, OtrlPrivKey *privkey) { gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); unsigned char *buf = NULL, *bufp, *startmac; size_t buflen, lenp; unsigned char *authbuf = NULL; size_t authlen; /* Get the encrypted authenticator */ err = calculate_pubkey_auth(&authbuf, &authlen, auth->mac_m1p, auth->enc_cp, auth->our_dh.pub, auth->their_pub, privkey, auth->our_keyid); if (err) goto err; buflen = OTRL_HEADER_LEN + (auth->protocol_version == 3 ? 8 : 0) + 4 + authlen + 20; buf = malloc(buflen); if (buf == NULL) goto memerr; bufp = buf; lenp = buflen; /* header */ write_header(auth->protocol_version, '\x12'); if (auth->protocol_version == 3) { /* instance tags */ write_int(auth->context->our_instance); debug_int("Sender instag", bufp-4); write_int(auth->context->their_instance); debug_int("Recipient instag", bufp-4); } /* Encrypted authenticator */ startmac = bufp; write_int(authlen); memmove(bufp, authbuf, authlen); debug_data("auth", bufp, authlen); bufp += authlen; lenp -= authlen; free(authbuf); authbuf = NULL; /* MAC it, but only take the first 20 bytes */ gcry_md_reset(auth->mac_m2p); gcry_md_write(auth->mac_m2p, startmac, bufp - startmac); memmove(bufp, gcry_md_read(auth->mac_m2p, GCRY_MD_SHA256), 20); debug_data("MAC", bufp, 20); bufp += 20; lenp -= 20; assert(lenp == 0); free(auth->lastauthmsg); auth->lastauthmsg = otrl_base64_otr_encode(buf, buflen); if (auth->lastauthmsg == NULL) goto memerr; free(buf); buf = NULL; return err; memerr: err = gcry_error(GPG_ERR_ENOMEM); err: free(buf); free(authbuf); return err; } /* * Handle an incoming D-H Key Message. If no error is returned, and * *havemsgp is 1, the message to sent will be left in auth->lastauthmsg. * Use the given private authentication key to sign messages. */ gcry_error_t otrl_auth_handle_key(OtrlAuthInfo *auth, const char *keymsg, int *havemsgp, OtrlPrivKey *privkey) { gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); unsigned char *buf = NULL, *bufp = NULL; size_t buflen, lenp; gcry_mpi_t incoming_pub = NULL; int res; unsigned int msg_version; *havemsgp = 0; msg_version = otrl_proto_message_version(keymsg); res = otrl_base64_otr_decode(keymsg, &buf, &buflen); if (res == -1) goto memerr; if (res == -2) goto invval; bufp = buf; lenp = buflen; /* Header */ skip_header('\x0a'); if (msg_version == 3) { require_len(8); bufp += 8; lenp -= 8; } /* g^y */ read_mpi(incoming_pub); if (lenp != 0) goto invval; free(buf); buf = NULL; switch(auth->authstate) { case OTRL_AUTHSTATE_AWAITING_DHKEY: /* The other party may also be establishing a session with another instance running a different version. Ignore any DHKEY messages we aren't expecting. */ if (msg_version != auth->protocol_version) { goto err; } /* Store the incoming public key */ gcry_mpi_release(auth->their_pub); auth->their_pub = incoming_pub; incoming_pub = NULL; /* Compute the encryption and MAC keys */ err = otrl_dh_compute_v2_auth_keys(&(auth->our_dh), auth->their_pub, auth->secure_session_id, &(auth->secure_session_id_len), &(auth->enc_c), &(auth->enc_cp), &(auth->mac_m1), &(auth->mac_m1p), &(auth->mac_m2), &(auth->mac_m2p)); if (err) goto err; /* Create the Reveal Signature Message */ err = create_revealsig_message(auth, privkey); if (err) goto err; *havemsgp = 1; auth->authstate = OTRL_AUTHSTATE_AWAITING_SIG; break; case OTRL_AUTHSTATE_AWAITING_SIG: if (gcry_mpi_cmp(incoming_pub, auth->their_pub) == 0) { /* Retransmit the Reveal Signature Message */ *havemsgp = 1; } else { /* Ignore this message */ *havemsgp = 0; } break; case OTRL_AUTHSTATE_NONE: case OTRL_AUTHSTATE_AWAITING_REVEALSIG: case OTRL_AUTHSTATE_V1_SETUP: /* Ignore this message */ *havemsgp = 0; break; } gcry_mpi_release(incoming_pub); return err; invval: err = gcry_error(GPG_ERR_INV_VALUE); goto err; memerr: err = gcry_error(GPG_ERR_ENOMEM); err: free(buf); gcry_mpi_release(incoming_pub); return err; } /* * Handle an incoming Reveal Signature Message. If no error is * returned, and *havemsgp is 1, the message to be sent will be left in * auth->lastauthmsg. Use the given private authentication key to sign * messages. Call the auth_succeeded callback if authentication is * successful. */ gcry_error_t otrl_auth_handle_revealsig(OtrlAuthInfo *auth, const char *revealmsg, int *havemsgp, OtrlPrivKey *privkey, gcry_error_t (*auth_succeeded)(const OtrlAuthInfo *auth, void *asdata), void *asdata) { gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); unsigned char *buf = NULL, *bufp = NULL, *gxbuf = NULL; unsigned char *authstart, *authend, *macstart; size_t buflen, lenp, rlen, authlen; gcry_cipher_hd_t enc = NULL; gcry_mpi_t incoming_pub = NULL; unsigned char ctr[16], hashbuf[32]; int res; unsigned char version; *havemsgp = 0; res = otrl_base64_otr_decode(revealmsg, &buf, &buflen); if (res == -1) goto memerr; if (res == -2) goto invval; bufp = buf; lenp = buflen; require_len(3); version = bufp[1]; /* Header */ skip_header('\x11'); if (version == 3) { require_len(8); bufp += 8; lenp -= 8; } /* r */ read_int(rlen); if (rlen != 16) goto invval; require_len(rlen); memmove(auth->r, bufp, rlen); bufp += rlen; lenp -= rlen; /* auth */ authstart = bufp; read_int(authlen); require_len(authlen); bufp += authlen; lenp -= authlen; authend = bufp; /* MAC */ require_len(20); macstart = bufp; bufp += 20; lenp -= 20; if (lenp != 0) goto invval; switch(auth->authstate) { case OTRL_AUTHSTATE_AWAITING_REVEALSIG: gxbuf = malloc(auth->encgx_len); if (auth->encgx_len && gxbuf == NULL) goto memerr; /* Use r to decrypt the value of g^x we received earlier */ err = gcry_cipher_open(&enc, GCRY_CIPHER_AES, GCRY_CIPHER_MODE_CTR, GCRY_CIPHER_SECURE); if (err) goto err; err = gcry_cipher_setkey(enc, auth->r, 16); if (err) goto err; memset(ctr, 0, 16); err = gcry_cipher_setctr(enc, ctr, 16); if (err) goto err; err = gcry_cipher_decrypt(enc, gxbuf, auth->encgx_len, auth->encgx, auth->encgx_len); if (err) goto err; gcry_cipher_close(enc); enc = NULL; /* Check the hash */ gcry_md_hash_buffer(GCRY_MD_SHA256, hashbuf, gxbuf, auth->encgx_len); /* This isn't comparing secret data, but may as well use the * constant-time version. */ if (otrl_mem_differ(hashbuf, auth->hashgx, 32)) goto decfail; /* Extract g^x */ bufp = gxbuf; lenp = auth->encgx_len; read_mpi(incoming_pub); free(gxbuf); gxbuf = NULL; if (lenp != 0) goto invval; gcry_mpi_release(auth->their_pub); auth->their_pub = incoming_pub; incoming_pub = NULL; /* Compute the encryption and MAC keys */ err = otrl_dh_compute_v2_auth_keys(&(auth->our_dh), auth->their_pub, auth->secure_session_id, &(auth->secure_session_id_len), &(auth->enc_c), &(auth->enc_cp), &(auth->mac_m1), &(auth->mac_m1p), &(auth->mac_m2), &(auth->mac_m2p)); if (err) goto err; /* Check the MAC */ gcry_md_reset(auth->mac_m2); gcry_md_write(auth->mac_m2, authstart, authend - authstart); if (otrl_mem_differ(macstart, gcry_md_read(auth->mac_m2, GCRY_MD_SHA256), 20)) goto invval; /* Check the auth */ err = check_pubkey_auth(auth->their_fingerprint, &(auth->their_keyid), authstart + 4, authend - authstart - 4, auth->mac_m1, auth->enc_c, auth->our_dh.pub, auth->their_pub); if (err) goto err; authstart = NULL; authend = NULL; macstart = NULL; free(buf); buf = NULL; /* Create the Signature Message */ err = create_signature_message(auth, privkey); if (err) goto err; /* No error? Then we've completed our end of the * authentication. */ auth->session_id_half = OTRL_SESSIONID_SECOND_HALF_BOLD; if (auth_succeeded) err = auth_succeeded(auth, asdata); *havemsgp = 1; auth->our_keyid = 0; auth->authstate = OTRL_AUTHSTATE_NONE; break; case OTRL_AUTHSTATE_NONE: case OTRL_AUTHSTATE_AWAITING_DHKEY: case OTRL_AUTHSTATE_AWAITING_SIG: case OTRL_AUTHSTATE_V1_SETUP: /* Ignore this message */ *havemsgp = 0; free(buf); buf = NULL; break; } return err; decfail: err = gcry_error(GPG_ERR_NO_ERROR); goto err; invval: err = gcry_error(GPG_ERR_INV_VALUE); goto err; memerr: err = gcry_error(GPG_ERR_ENOMEM); err: free(buf); free(gxbuf); gcry_cipher_close(enc); gcry_mpi_release(incoming_pub); return err; } /* * Handle an incoming Signature Message. If no error is returned, and * *havemsgp is 1, the message to be sent will be left in * auth->lastauthmsg. Call the auth_succeeded callback if * authentication is successful. */ gcry_error_t otrl_auth_handle_signature(OtrlAuthInfo *auth, const char *sigmsg, int *havemsgp, gcry_error_t (*auth_succeeded)(const OtrlAuthInfo *auth, void *asdata), void *asdata) { gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); unsigned char *buf = NULL, *bufp = NULL; unsigned char *authstart, *authend, *macstart; size_t buflen, lenp, authlen; int res; unsigned char version; *havemsgp = 0; res = otrl_base64_otr_decode(sigmsg, &buf, &buflen); if (res == -1) goto memerr; if (res == -2) goto invval; bufp = buf; lenp = buflen; require_len(3); version = bufp[1]; /* Header */ skip_header('\x12'); if (version == 3) { require_len(8); bufp += 8; lenp -= 8; } /* auth */ authstart = bufp; read_int(authlen); require_len(authlen); bufp += authlen; lenp -= authlen; authend = bufp; /* MAC */ require_len(20); macstart = bufp; bufp += 20; lenp -= 20; if (lenp != 0) goto invval; switch(auth->authstate) { case OTRL_AUTHSTATE_AWAITING_SIG: /* Check the MAC */ gcry_md_reset(auth->mac_m2p); gcry_md_write(auth->mac_m2p, authstart, authend - authstart); if (otrl_mem_differ(macstart, gcry_md_read(auth->mac_m2p, GCRY_MD_SHA256), 20)) goto invval; /* Check the auth */ err = check_pubkey_auth(auth->their_fingerprint, &(auth->their_keyid), authstart + 4, authend - authstart - 4, auth->mac_m1p, auth->enc_cp, auth->our_dh.pub, auth->their_pub); if (err) goto err; authstart = NULL; authend = NULL; macstart = NULL; free(buf); buf = NULL; /* No error? Then we've completed our end of the * authentication. */ auth->session_id_half = OTRL_SESSIONID_FIRST_HALF_BOLD; if (auth_succeeded) err = auth_succeeded(auth, asdata); free(auth->lastauthmsg); auth->lastauthmsg = NULL; *havemsgp = 0; auth->our_keyid = 0; auth->authstate = OTRL_AUTHSTATE_NONE; break; case OTRL_AUTHSTATE_NONE: case OTRL_AUTHSTATE_AWAITING_DHKEY: case OTRL_AUTHSTATE_AWAITING_REVEALSIG: case OTRL_AUTHSTATE_V1_SETUP: /* Ignore this message */ *havemsgp = 0; free(buf); buf = NULL; break; } return err; invval: err = gcry_error(GPG_ERR_INV_VALUE); goto err; memerr: err = gcry_error(GPG_ERR_ENOMEM); err: free(buf); return err; } /* Version 1 routines, for compatibility */ /* * Create a verion 1 Key Exchange Message using the values in the given * auth, and store it in auth->lastauthmsg. Set the Reply field to the * given value, and use the given privkey to sign the message. */ static gcry_error_t create_v1_key_exchange_message(OtrlAuthInfo *auth, unsigned char reply, OtrlPrivKey *privkey) { gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); const enum gcry_mpi_format format = GCRYMPI_FMT_USG; unsigned char *buf = NULL, *bufp = NULL, *sigbuf = NULL; size_t lenp, ourpublen, totallen, siglen; unsigned char hashbuf[20]; if (privkey->pubkey_type != OTRL_PUBKEY_TYPE_DSA) { return gpg_error(GPG_ERR_INV_VALUE); } /* How big is the DH public key? */ gcry_mpi_print(format, NULL, 0, &ourpublen, auth->our_dh.pub); totallen = 3 + 1 + privkey->pubkey_datalen + 4 + 4 + ourpublen + 40; buf = malloc(totallen); if (buf == NULL) goto memerr; bufp = buf; lenp = totallen; memmove(bufp, "\x00\x01\x0a", 3); /* header */ debug_data("Header", bufp, 3); bufp += 3; lenp -= 3; bufp[0] = reply; debug_data("Reply", bufp, 1); bufp += 1; lenp -= 1; memmove(bufp, privkey->pubkey_data, privkey->pubkey_datalen); debug_data("Pubkey", bufp, privkey->pubkey_datalen); bufp += privkey->pubkey_datalen; lenp -= privkey->pubkey_datalen; write_int(auth->our_keyid); debug_int("Keyid", bufp-4); write_mpi(auth->our_dh.pub, ourpublen, "D-H y"); /* Hash all the data written so far, and sign the hash */ gcry_md_hash_buffer(GCRY_MD_SHA1, hashbuf, buf, bufp - buf); err = otrl_privkey_sign(&sigbuf, &siglen, privkey, hashbuf, 20); if (err) goto err; if (siglen != 40) goto invval; memmove(bufp, sigbuf, 40); debug_data("Signature", bufp, 40); bufp += 40; lenp -= 40; free(sigbuf); sigbuf = NULL; assert(lenp == 0); free(auth->lastauthmsg); auth->lastauthmsg = otrl_base64_otr_encode(buf, totallen); if (auth->lastauthmsg == NULL) goto memerr; free(buf); buf = NULL; return err; invval: err = gcry_error(GPG_ERR_INV_VALUE); goto err; memerr: err = gcry_error(GPG_ERR_ENOMEM); err: free(buf); free(sigbuf); return err; } /* * Start a fresh AKE (version 1) using the given OtrlAuthInfo. If * our_dh is NULL, generate a fresh DH keypair to use. Otherwise, use a * copy of the one passed (with the given keyid). Use the given private * key to sign the message. If no error is returned, the message to * transmit will be contained in auth->lastauthmsg. */ gcry_error_t otrl_auth_start_v1(OtrlAuthInfo *auth, DH_keypair *our_dh, unsigned int our_keyid, OtrlPrivKey *privkey) { gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); /* Clear out this OtrlAuthInfo and start over */ otrl_auth_clear(auth); auth->initiated = 1; auth->protocol_version = 1; /* Import the given DH keypair, or else create a fresh one */ if (our_dh) { otrl_dh_keypair_copy(&(auth->our_dh), our_dh); auth->our_keyid = our_keyid; } else { otrl_dh_gen_keypair(DH1536_GROUP_ID, &(auth->our_dh)); auth->our_keyid = 1; } err = create_v1_key_exchange_message(auth, 0, privkey); if (!err) { auth->authstate = OTRL_AUTHSTATE_V1_SETUP; } return err; } /* * Handle an incoming v1 Key Exchange Message. If no error is returned, * and *havemsgp is 1, the message to be sent will be left in * auth->lastauthmsg. Use the given private authentication key to sign * messages. Call the auth_secceeded callback if authentication is * successful. If non-NULL, use a copy of the given D-H keypair, with * the given keyid. */ gcry_error_t otrl_auth_handle_v1_key_exchange(OtrlAuthInfo *auth, const char *keyexchmsg, int *havemsgp, OtrlPrivKey *privkey, DH_keypair *our_dh, unsigned int our_keyid, gcry_error_t (*auth_succeeded)(const OtrlAuthInfo *auth, void *asdata), void *asdata) { gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); unsigned char *buf = NULL, *bufp = NULL; unsigned char *fingerprintstart, *fingerprintend; unsigned char fingerprintbuf[20], hashbuf[20]; gcry_mpi_t p, q, g, y, received_pub = NULL; gcry_sexp_t pubs = NULL; size_t buflen, lenp; unsigned char received_reply; unsigned int received_keyid; int res; *havemsgp = 0; res = otrl_base64_otr_decode(keyexchmsg, &buf, &buflen); if (res == -1) goto memerr; if (res == -2) goto invval; bufp = buf; lenp = buflen; /* Header */ require_len(3); if (memcmp(bufp, "\x00\x01\x0a", 3)) goto invval; bufp += 3; lenp -= 3; /* Reply */ require_len(1); received_reply = bufp[0]; bufp += 1; lenp -= 1; /* Public Key */ fingerprintstart = bufp; read_mpi(p); read_mpi(q); read_mpi(g); read_mpi(y); fingerprintend = bufp; gcry_md_hash_buffer(GCRY_MD_SHA1, fingerprintbuf, fingerprintstart, fingerprintend-fingerprintstart); gcry_sexp_build(&pubs, NULL, "(public-key (dsa (p %m)(q %m)(g %m)(y %m)))", p, q, g, y); gcry_mpi_release(p); gcry_mpi_release(q); gcry_mpi_release(g); gcry_mpi_release(y); /* keyid */ read_int(received_keyid); if (received_keyid == 0) goto invval; /* D-H pubkey */ read_mpi(received_pub); /* Verify the signature */ if (lenp != 40) goto invval; gcry_md_hash_buffer(GCRY_MD_SHA1, hashbuf, buf, bufp - buf); err = otrl_privkey_verify(bufp, lenp, OTRL_PUBKEY_TYPE_DSA, pubs, hashbuf, 20); if (err) goto err; gcry_sexp_release(pubs); pubs = NULL; free(buf); buf = NULL; if (auth->authstate != OTRL_AUTHSTATE_V1_SETUP && received_reply == 0x01) { /* They're replying to something we never sent. We must be * logged in more than once; ignore the message. */ err = gpg_error(GPG_ERR_NO_ERROR); goto err; } if (auth->authstate != OTRL_AUTHSTATE_V1_SETUP) { /* Clear the auth and start over */ otrl_auth_clear(auth); } /* Everything checked out */ auth->their_keyid = received_keyid; gcry_mpi_release(auth->their_pub); auth->their_pub = received_pub; received_pub = NULL; memmove(auth->their_fingerprint, fingerprintbuf, 20); if (received_reply == 0x01) { /* Don't send a reply to this. */ *havemsgp = 0; } else { /* Import the given DH keypair, or else create a fresh one */ if (our_dh) { otrl_dh_keypair_copy(&(auth->our_dh), our_dh); auth->our_keyid = our_keyid; } else if (auth->our_keyid == 0) { otrl_dh_gen_keypair(DH1536_GROUP_ID, &(auth->our_dh)); auth->our_keyid = 1; } /* Reply with our own Key Exchange Message */ err = create_v1_key_exchange_message(auth, 1, privkey); if (err) goto err; *havemsgp = 1; } /* Compute the session id */ err = otrl_dh_compute_v1_session_id(&(auth->our_dh), auth->their_pub, auth->secure_session_id, &(auth->secure_session_id_len), &(auth->session_id_half)); if (err) goto err; /* We've completed our end of the authentication */ auth->protocol_version = 1; if (auth_succeeded) err = auth_succeeded(auth, asdata); auth->our_keyid = 0; auth->authstate = OTRL_AUTHSTATE_NONE; return err; invval: err = gcry_error(GPG_ERR_INV_VALUE); goto err; memerr: err = gcry_error(GPG_ERR_ENOMEM); err: free(buf); gcry_sexp_release(pubs); gcry_mpi_release(received_pub); return err; } /* * Copy relevant information from the master OtrlAuthInfo to an * instance OtrlAuthInfo in response to a D-H Key with a new * instance. The fields copied will depend on the state of the * master auth. */ void otrl_auth_copy_on_key(OtrlAuthInfo *m_auth, OtrlAuthInfo *auth) { switch(m_auth->authstate) { case OTRL_AUTHSTATE_AWAITING_DHKEY: case OTRL_AUTHSTATE_AWAITING_SIG: /* Copy our D-H Commit information to the new instance */ otrl_dh_keypair_free(&(auth->our_dh)); auth->initiated = m_auth->initiated; otrl_dh_keypair_copy(&(auth->our_dh), &(m_auth->our_dh)); auth->our_keyid = m_auth->our_keyid; memmove(auth->r, m_auth->r, 16); if (auth->encgx) free(auth->encgx); auth->encgx = malloc(m_auth->encgx_len); memmove(auth->encgx, m_auth->encgx, m_auth->encgx_len); memmove(auth->hashgx, m_auth->hashgx, 32); auth->authstate = OTRL_AUTHSTATE_AWAITING_DHKEY; break; default: /* This bad state will be detected and handled later */ break; } } #ifdef OTRL_TESTING_AUTH #include "mem.h" #include "privkey.h" #define CHECK_ERR if (err) { printf("Error: %s\n", gcry_strerror(err)); \ return 1; } static gcry_error_t starting(const OtrlAuthInfo *auth, void *asdata) { char *name = asdata; fprintf(stderr, "\nStarting ENCRYPTED mode for %s (v%d).\n", name, auth->protocol_version); fprintf(stderr, "\nour_dh (%d):", auth->our_keyid); gcry_mpi_dump(auth->our_dh.pub); fprintf(stderr, "\ntheir_pub (%d):", auth->their_keyid); gcry_mpi_dump(auth->their_pub); debug_data("\nTheir fingerprint", auth->their_fingerprint, 20); debug_data("\nSecure session id", auth->secure_session_id, auth->secure_session_id_len); fprintf(stderr, "Sessionid half: %d\n\n", auth->session_id_half); return gpg_error(GPG_ERR_NO_ERROR); } int main(int argc, char **argv) { OtrlAuthInfo alice, bob; gcry_error_t err; int havemsg; OtrlUserState us; OtrlPrivKey *alicepriv, *bobpriv; otrl_mem_init(); otrl_dh_init(); otrl_auth_new(&alice); otrl_auth_new(&bob); us = otrl_userstate_create(); otrl_privkey_read(us, "/home/iang/.gaim/otr.private_key"); alicepriv = otrl_privkey_find(us, "oneeyedian", "prpl-oscar"); bobpriv = otrl_privkey_find(us, "otr4ian", "prpl-oscar"); printf("\n\n ***** V2 *****\n\n"); err = otrl_auth_start_v23(&bob, NULL, 0); CHECK_ERR printf("\nBob: %d\n%s\n\n", strlen(bob.lastauthmsg), bob.lastauthmsg); err = otrl_auth_handle_commit(&alice, bob.lastauthmsg, NULL, 0); CHECK_ERR printf("\nAlice: %d\n%s\n\n", strlen(alice.lastauthmsg), alice.lastauthmsg); err = otrl_auth_handle_key(&bob, alice.lastauthmsg, &havemsg, bobpriv); CHECK_ERR if (havemsg) { printf("\nBob: %d\n%s\n\n", strlen(bob.lastauthmsg), bob.lastauthmsg); } else { printf("\nIGNORE\n\n"); } err = otrl_auth_handle_revealsig(&alice, bob.lastauthmsg, &havemsg, alicepriv, starting, "Alice"); CHECK_ERR if (havemsg) { printf("\nAlice: %d\n%s\n\n", strlen(alice.lastauthmsg), alice.lastauthmsg); } else { printf("\nIGNORE\n\n"); } err = otrl_auth_handle_signature(&bob, alice.lastauthmsg, &havemsg, starting, "Bob"); CHECK_ERR printf("\n\n ***** V1 *****\n\n"); err = otrl_auth_start_v1(&bob, NULL, 0, bobpriv); CHECK_ERR printf("\nBob: %d\n%s\n\n", strlen(bob.lastauthmsg), bob.lastauthmsg); err = otrl_auth_handle_v1_key_exchange(&alice, bob.lastauthmsg, &havemsg, alicepriv, NULL, 0, starting, "Alice"); CHECK_ERR if (havemsg) { printf("\nAlice: %d\n%s\n\n", strlen(alice.lastauthmsg), alice.lastauthmsg); } else { printf("\nIGNORE\n\n"); } err = otrl_auth_handle_v1_key_exchange(&bob, alice.lastauthmsg, &havemsg, bobpriv, NULL, 0, starting, "Bob"); CHECK_ERR if (havemsg) { printf("\nBob: %d\n%s\n\n", strlen(bob.lastauthmsg), bob.lastauthmsg); } else { printf("\nIGNORE\n\n"); } otrl_userstate_free(us); otrl_auth_clear(&alice); otrl_auth_clear(&bob); return 0; } #endif ����������������������������������������libotr-4.1.1/src/proto.h����������������������������������������������������������������������������0000664�0001750�0001750�00000014155�12637277541�012062� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2012 Ian Goldberg, Rob Smits, Chris Alexander, * Willy Lew, Lisa Du, Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __PROTO_H__ #define __PROTO_H__ #include "context.h" #include "version.h" #include "tlv.h" /* If we ever see this sequence in a plaintext message, we'll assume the * other side speaks OTR, and try to establish a connection. */ #define OTRL_MESSAGE_TAG_BASE " \t \t\t\t\t \t \t \t " /* The following must each be of length 8 */ #define OTRL_MESSAGE_TAG_V1 " \t \t \t " #define OTRL_MESSAGE_TAG_V2 " \t\t \t " #define OTRL_MESSAGE_TAG_V3 " \t\t \t\t" /* The possible flags contained in a Data Message */ #define OTRL_MSGFLAGS_IGNORE_UNREADABLE 0x01 typedef unsigned int OtrlPolicy; #define OTRL_POLICY_ALLOW_V1 0x01 #define OTRL_POLICY_ALLOW_V2 0x02 #define OTRL_POLICY_ALLOW_V3 0x04 #define OTRL_POLICY_REQUIRE_ENCRYPTION 0x08 #define OTRL_POLICY_SEND_WHITESPACE_TAG 0x10 #define OTRL_POLICY_WHITESPACE_START_AKE 0x20 #define OTRL_POLICY_ERROR_START_AKE 0x40 #define OTRL_POLICY_VERSION_MASK (OTRL_POLICY_ALLOW_V1 | OTRL_POLICY_ALLOW_V2 |\ OTRL_POLICY_ALLOW_V3) /* Length of OTR message headers */ #define OTRL_HEADER_LEN 3 #define OTRL_B64_HEADER_LEN 4 /* Analogous to v1 policies */ #define OTRL_POLICY_NEVER 0x00 #define OTRL_POLICY_OPPORTUNISTIC \ ( OTRL_POLICY_ALLOW_V2 | \ OTRL_POLICY_ALLOW_V3 | \ OTRL_POLICY_SEND_WHITESPACE_TAG | \ OTRL_POLICY_WHITESPACE_START_AKE | \ OTRL_POLICY_ERROR_START_AKE ) #define OTRL_POLICY_MANUAL \ ( OTRL_POLICY_ALLOW_V2 | \ OTRL_POLICY_ALLOW_V3) #define OTRL_POLICY_ALWAYS \ ( OTRL_POLICY_ALLOW_V2 | \ OTRL_POLICY_ALLOW_V3 | \ OTRL_POLICY_REQUIRE_ENCRYPTION | \ OTRL_POLICY_WHITESPACE_START_AKE | \ OTRL_POLICY_ERROR_START_AKE ) #define OTRL_POLICY_DEFAULT OTRL_POLICY_OPPORTUNISTIC typedef enum { OTRL_MSGTYPE_NOTOTR, OTRL_MSGTYPE_TAGGEDPLAINTEXT, OTRL_MSGTYPE_QUERY, OTRL_MSGTYPE_DH_COMMIT, OTRL_MSGTYPE_DH_KEY, OTRL_MSGTYPE_REVEALSIG, OTRL_MSGTYPE_SIGNATURE, OTRL_MSGTYPE_V1_KEYEXCH, OTRL_MSGTYPE_DATA, OTRL_MSGTYPE_ERROR, OTRL_MSGTYPE_UNKNOWN } OtrlMessageType; typedef enum { OTRL_FRAGMENT_UNFRAGMENTED, OTRL_FRAGMENT_INCOMPLETE, OTRL_FRAGMENT_COMPLETE } OtrlFragmentResult; typedef enum { OTRL_FRAGMENT_SEND_SKIP, /* Return new message back to caller, * but don't inject. */ OTRL_FRAGMENT_SEND_ALL, OTRL_FRAGMENT_SEND_ALL_BUT_FIRST, OTRL_FRAGMENT_SEND_ALL_BUT_LAST } OtrlFragmentPolicy; /* Initialize the OTR library. Pass the version of the API you are * using. */ gcry_error_t otrl_init(unsigned int ver_major, unsigned int ver_minor, unsigned int ver_sub); /* Shortcut */ #define OTRL_INIT do { \ if (otrl_init(OTRL_VERSION_MAJOR, OTRL_VERSION_MINOR, \ OTRL_VERSION_SUB)) { \ exit(1); \ } \ } while(0) /* Return a pointer to a static string containing the version number of * the OTR library. */ const char *otrl_version(void); /* Return a pointer to a newly-allocated OTR query message, customized * with our name. The caller should free() the result when he's done * with it. */ char *otrl_proto_default_query_msg(const char *ourname, OtrlPolicy policy); /* Return the best version of OTR support by both sides, given an OTR * Query Message and the local policy. */ unsigned int otrl_proto_query_bestversion(const char *querymsg, OtrlPolicy policy); /* Locate any whitespace tag in this message, and return the best * version of OTR support on both sides. Set *starttagp and *endtagp to * the start and end of the located tag, so that it can be snipped out. */ unsigned int otrl_proto_whitespace_bestversion(const char *msg, const char **starttagp, const char **endtagp, OtrlPolicy policy); /* Find the message type. */ OtrlMessageType otrl_proto_message_type(const char *message); /* Find the message version. */ int otrl_proto_message_version(const char *message); /* Find the instance tags in this message. */ gcry_error_t otrl_proto_instance(const char *otrmsg, unsigned int *instance_from, unsigned int *instance_to); /* Create an OTR Data message. Pass the plaintext as msg, and an * optional chain of TLVs. A newly-allocated string will be returned in * *encmessagep. Put the current extra symmetric key into extrakey * (if non-NULL). */ gcry_error_t otrl_proto_create_data(char **encmessagep, ConnContext *context, const char *msg, const OtrlTLV *tlvs, unsigned char flags, unsigned char *extrakey); /* Extract the flags from an otherwise unreadable Data Message. */ gcry_error_t otrl_proto_data_read_flags(const char *datamsg, unsigned char *flagsp); /* Accept an OTR Data Message in datamsg. Decrypt it and put the * plaintext into *plaintextp, and any TLVs into tlvsp. Put any * received flags into *flagsp (if non-NULL). Put the current extra * symmetric key into extrakey (if non-NULL). */ gcry_error_t otrl_proto_accept_data(char **plaintextp, OtrlTLV **tlvsp, ConnContext *context, const char *datamsg, unsigned char *flagsp, unsigned char *extrakey); /* Accumulate a potential fragment into the current context. */ OtrlFragmentResult otrl_proto_fragment_accumulate(char **unfragmessagep, ConnContext *context, const char *msg); gcry_error_t otrl_proto_fragment_create(int mms, int fragment_count, char ***fragments, ConnContext *context, const char *message); void otrl_proto_fragment_free(char ***fragments, unsigned short arraylen); #endif �������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/mem.h������������������������������������������������������������������������������0000664�0001750�0001750�00000002433�12637277541�011471� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2014 Ian Goldberg, David Goulet, Rob Smits, * Chris Alexander, Willy Lew, Lisa Du, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __MEM_H__ #define __MEM_H__ #include <stdlib.h> void otrl_mem_init(void); /* Compare two memory blocks in time dependent on the length of the * blocks, but not their contents. Returns 1 if they differ, 0 if they * are the same. */ int otrl_mem_differ(const unsigned char *buf1, const unsigned char *buf2, size_t len); #endif �������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/userstate.c������������������������������������������������������������������������0000664�0001750�0001750�00000004044�12637277541�012725� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2012 Ian Goldberg, Rob Smits, Chris Alexander, * Willy Lew, Lisa Du, Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdlib.h> /* libotr headers */ #include "context.h" #include "privkey.h" #include "userstate.h" /* Create a new OtrlUserState. Most clients will only need one of * these. A OtrlUserState encapsulates the list of known fingerprints * and the list of private keys; if you have separate files for these * things for (say) different users, use different OtrlUserStates. If * you've got only one user, with multiple accounts all stored together * in the same fingerprint store and privkey store files, use just one * OtrlUserState. */ OtrlUserState otrl_userstate_create(void) { OtrlUserState us = malloc(sizeof(struct s_OtrlUserState)); if (!us) return NULL; us->context_root = NULL; us->privkey_root = NULL; us->instag_root = NULL; us->pending_root = NULL; us->timer_running = 0; return us; } /* Free a OtrlUserState. If you have a timer running for this userstate, stop it before freeing the userstate. */ void otrl_userstate_free(OtrlUserState us) { otrl_context_forget_all(us); otrl_privkey_forget_all(us); otrl_privkey_pending_forget_all(us); otrl_instag_forget_all(us); free(us); } ��������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/serial.h���������������������������������������������������������������������������0000664�0001750�0001750�00000005776�12637277541�012207� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2012 Ian Goldberg, Rob Smits, Chris Alexander, * Willy Lew, Lisa Du, Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __SERIAL_H__ #define __SERIAL_H__ #undef DEBUG #ifdef DEBUG #include <stdio.h> #define debug_data(t,b,l) do { const unsigned char *data = (b); size_t i; \ fprintf(stderr, "%s: ", (t)); \ for(i=0;i<(l);++i) { \ fprintf(stderr, "%02x", data[i]); \ } \ fprintf(stderr, "\n"); \ } while(0) #define debug_int(t,b) do { const unsigned char *data = (b); \ unsigned int v = \ (((unsigned int)data[0]) << 24) | (data[1] << 16) | (data[2] << 8) | data[3]; \ fprintf(stderr, "%s: %u (0x%x)\n", (t), v, v); \ } while(0) #else #define debug_data(t,b,l) #define debug_int(t,b) #endif #define write_int(x) do { \ bufp[0] = ((x) >> 24) & 0xff; \ bufp[1] = ((x) >> 16) & 0xff; \ bufp[2] = ((x) >> 8) & 0xff; \ bufp[3] = (x) & 0xff; \ bufp += 4; lenp -= 4; \ } while(0) #define write_mpi(x,nx,dx) do { \ write_int(nx); \ gcry_mpi_print(format, bufp, lenp, NULL, (x)); \ debug_data((dx), bufp, (nx)); \ bufp += (nx); lenp -= (nx); \ } while(0) #define require_len(l) do { \ if (lenp < (l)) goto invval; \ } while(0) #define read_int(x) do { \ require_len(4); \ (x) = (((unsigned int)bufp[0]) << 24) | (bufp[1] << 16) | (bufp[2] << 8) | bufp[3]; \ bufp += 4; lenp -= 4; \ } while(0) #define read_mpi(x) do { \ size_t mpilen; \ read_int(mpilen); \ if (mpilen) { \ require_len(mpilen); \ gcry_mpi_scan(&(x), GCRYMPI_FMT_USG, bufp, mpilen, NULL); \ } else { \ (x) = gcry_mpi_set_ui(NULL, 0); \ } \ bufp += mpilen; lenp -= mpilen; \ } while(0) /* Write version and msg type into bufp*/ #define write_header(version, msgtype) do { \ bufp[0] = 0x00; \ bufp[1] = version & 0xff; \ bufp[2] = msgtype; \ debug_data("Header", bufp, 3); \ bufp += 3; lenp -= 3; \ } while(0) /* Verify msg header is v1, v2 or v3 and has type x, * increment bufp past msg header */ #define skip_header(x) do { \ require_len(3); \ if ((bufp[0] != 0x00) || (bufp[2] != x)) \ goto invval; \ if ((bufp[1] == 0x01) || (bufp[1] == 0x02) || \ (bufp[1] == 0x03)) { \ bufp += 3; lenp -= 3; \ } else goto invval; \ } while(0) #endif ��libotr-4.1.1/src/dh.h�������������������������������������������������������������������������������0000664�0001750�0001750�00000006772�12637277541�011320� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Willy Lew, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __DH_H__ #define __DH_H__ #define DH1536_GROUP_ID 5 typedef struct { unsigned int groupid; gcry_mpi_t priv, pub; } DH_keypair; /* Which half of the secure session id should be shown in bold? */ typedef enum { OTRL_SESSIONID_FIRST_HALF_BOLD, OTRL_SESSIONID_SECOND_HALF_BOLD } OtrlSessionIdHalf; #define OTRL_EXTRAKEY_BYTES 32 typedef struct { unsigned char sendctr[16]; unsigned char rcvctr[16]; gcry_cipher_hd_t sendenc; gcry_cipher_hd_t rcvenc; gcry_md_hd_t sendmac; unsigned char sendmackey[20]; int sendmacused; gcry_md_hd_t rcvmac; unsigned char rcvmackey[20]; int rcvmacused; unsigned char extrakey[OTRL_EXTRAKEY_BYTES]; } DH_sesskeys; /* * Call this once, at plugin load time. It sets up the modulus and * generator MPIs. */ void otrl_dh_init(void); /* * Initialize the fields of a DH keypair. */ void otrl_dh_keypair_init(DH_keypair *kp); /* * Copy a DH_keypair. */ void otrl_dh_keypair_copy(DH_keypair *dst, const DH_keypair *src); /* * Deallocate the contents of a DH_keypair (but not the DH_keypair * itself) */ void otrl_dh_keypair_free(DH_keypair *kp); /* * Generate a DH keypair for a specified group. */ gcry_error_t otrl_dh_gen_keypair(unsigned int groupid, DH_keypair *kp); /* * Construct session keys from a DH keypair and someone else's public * key. */ gcry_error_t otrl_dh_session(DH_sesskeys *sess, const DH_keypair *kp, gcry_mpi_t y); /* * Compute the secure session id, two encryption keys, and four MAC keys * given our DH key and their DH public key. */ gcry_error_t otrl_dh_compute_v2_auth_keys(const DH_keypair *our_dh, gcry_mpi_t their_pub, unsigned char *sessionid, size_t *sessionidlenp, gcry_cipher_hd_t *enc_c, gcry_cipher_hd_t *enc_cp, gcry_md_hd_t *mac_m1, gcry_md_hd_t *mac_m1p, gcry_md_hd_t *mac_m2, gcry_md_hd_t *mac_m2p); /* * Compute the secure session id, given our DH key and their DH public * key. */ gcry_error_t otrl_dh_compute_v1_session_id(const DH_keypair *our_dh, gcry_mpi_t their_pub, unsigned char *sessionid, size_t *sessionidlenp, OtrlSessionIdHalf *halfp); /* * Deallocate the contents of a DH_sesskeys (but not the DH_sesskeys * itself) */ void otrl_dh_session_free(DH_sesskeys *sess); /* * Blank out the contents of a DH_sesskeys (without releasing it) */ void otrl_dh_session_blank(DH_sesskeys *sess); /* Increment the top half of a counter block */ void otrl_dh_incctr(unsigned char *ctr); /* Compare two counter values (8 bytes each). Return 0 if ctr1 == ctr2, * < 0 if ctr1 < ctr2 (as unsigned 64-bit values), > 0 if ctr1 > ctr2. */ int otrl_dh_cmpctr(const unsigned char *ctr1, const unsigned char *ctr2); #endif ������libotr-4.1.1/src/proto.c����������������������������������������������������������������������������0000664�0001750�0001750�00000077036�12667026423�012056� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2016 Ian Goldberg, David Goulet, Rob Smits, * Chris Alexander, Willy Lew, Lisa Du, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* OTR Protocol implementation. This file should be independent of * gaim, so that it can be used to make other clients. */ /* system headers */ #include <stdio.h> #include <stdlib.h> #include <assert.h> /* libgcrypt headers */ #include <gcrypt.h> /* libotr headers */ #include "b64.h" #include "privkey.h" #include "proto.h" #include "mem.h" #include "version.h" #include "tlv.h" #include "serial.h" #if OTRL_DEBUGGING extern const char *OTRL_DEBUGGING_DEBUGSTR; #endif /* For now, we need to know the API version the client is using so that * we don't use any UI callbacks it hasn't set. */ unsigned int otrl_api_version = 0; /* Initialize the OTR library. Pass the version of the API you are * using. */ gcry_error_t otrl_init(unsigned int ver_major, unsigned int ver_minor, unsigned int ver_sub) { unsigned int api_version; /* The major versions have to match, and you can't be using a newer * minor version than we expect. */ if (ver_major != OTRL_VERSION_MAJOR || ver_minor > OTRL_VERSION_MINOR) { fprintf(stderr, "Expected libotr API version %u.%u.%u incompatible " "with actual version %u.%u.%u. Aborting.\n", ver_major, ver_minor, ver_sub, OTRL_VERSION_MAJOR, OTRL_VERSION_MINOR, OTRL_VERSION_SUB); return gcry_error(GPG_ERR_INV_VALUE); } /* Set the API version. If we get called multiple times for some * reason, take the smallest value. */ api_version = (ver_major << 16) | (ver_minor << 8) | (ver_sub); if (otrl_api_version == 0 || otrl_api_version > api_version) { otrl_api_version = api_version; } /* Initialize the memory module */ otrl_mem_init(); /* Initialize the DH module */ otrl_dh_init(); /* Initialize the SM module */ otrl_sm_init(); #if OTRL_DEBUGGING /* Inform the user that debugging is available */ fprintf(stderr, "\nlibotr debugging is available. Type %s in a message\n" " to see debug info.\n\n", OTRL_DEBUGGING_DEBUGSTR); #endif return gcry_error(GPG_ERR_NO_ERROR); } /* Return a pointer to a static string containing the version number of * the OTR library. */ const char *otrl_version(void) { return OTRL_VERSION; } /* Store some MAC keys to be revealed later */ static gcry_error_t reveal_macs(ConnContext *context, DH_sesskeys *sess1, DH_sesskeys *sess2) { unsigned int numnew = sess1->rcvmacused + sess1->sendmacused + sess2->rcvmacused + sess2->sendmacused; unsigned int newnumsaved; unsigned char *newmacs; /* Is there anything to do? */ if (numnew == 0) return gcry_error(GPG_ERR_NO_ERROR); newnumsaved = context->context_priv->numsavedkeys + numnew; newmacs = realloc(context->context_priv->saved_mac_keys, newnumsaved * 20); if (!newmacs) { return gcry_error(GPG_ERR_ENOMEM); } if (sess1->rcvmacused) { memmove(newmacs + context->context_priv->numsavedkeys * 20, sess1->rcvmackey, 20); context->context_priv->numsavedkeys++; } if (sess1->sendmacused) { memmove(newmacs + context->context_priv->numsavedkeys * 20, sess1->sendmackey, 20); context->context_priv->numsavedkeys++; } if (sess2->rcvmacused) { memmove(newmacs + context->context_priv->numsavedkeys * 20, sess2->rcvmackey, 20); context->context_priv->numsavedkeys++; } if (sess2->sendmacused) { memmove(newmacs + context->context_priv->numsavedkeys * 20, sess2->sendmackey, 20); context->context_priv->numsavedkeys++; } context->context_priv->saved_mac_keys = newmacs; return gcry_error(GPG_ERR_NO_ERROR); } /* Make a new DH key for us, and rotate old old ones. Be sure to keep * the sesskeys array in sync. */ static gcry_error_t rotate_dh_keys(ConnContext *context) { gcry_error_t err; /* Rotate the keypair */ otrl_dh_keypair_free(&(context->context_priv->our_old_dh_key)); memmove(&(context->context_priv->our_old_dh_key), &(context->context_priv->our_dh_key), sizeof(DH_keypair)); /* Rotate the session keys */ err = reveal_macs(context, &(context->context_priv->sesskeys[1][0]), &(context->context_priv->sesskeys[1][1])); if (err) return err; otrl_dh_session_free(&(context->context_priv->sesskeys[1][0])); otrl_dh_session_free(&(context->context_priv->sesskeys[1][1])); memmove(&(context->context_priv->sesskeys[1][0]), &(context->context_priv->sesskeys[0][0]), sizeof(DH_sesskeys)); memmove(&(context->context_priv->sesskeys[1][1]), &(context->context_priv->sesskeys[0][1]), sizeof(DH_sesskeys)); /* Create a new DH key */ otrl_dh_gen_keypair(DH1536_GROUP_ID, &(context->context_priv->our_dh_key)); context->context_priv->our_keyid++; /* Make the session keys */ if (context->context_priv->their_y) { err = otrl_dh_session(&(context->context_priv->sesskeys[0][0]), &(context->context_priv->our_dh_key), context->context_priv->their_y); if (err) return err; } else { otrl_dh_session_blank(&(context->context_priv->sesskeys[0][0])); } if (context->context_priv->their_old_y) { err = otrl_dh_session(&(context->context_priv->sesskeys[0][1]), &(context->context_priv->our_dh_key), context->context_priv->their_old_y); if (err) return err; } else { otrl_dh_session_blank(&(context->context_priv->sesskeys[0][1])); } return gcry_error(GPG_ERR_NO_ERROR); } /* Rotate in a new DH public key for our correspondent. Be sure to keep * the sesskeys array in sync. */ static gcry_error_t rotate_y_keys(ConnContext *context, gcry_mpi_t new_y) { gcry_error_t err; /* Rotate the public key */ gcry_mpi_release(context->context_priv->their_old_y); context->context_priv->their_old_y = context->context_priv->their_y; /* Rotate the session keys */ err = reveal_macs(context, &(context->context_priv->sesskeys[0][1]), &(context->context_priv->sesskeys[1][1])); if (err) return err; otrl_dh_session_free(&(context->context_priv->sesskeys[0][1])); otrl_dh_session_free(&(context->context_priv->sesskeys[1][1])); memmove(&(context->context_priv->sesskeys[0][1]), &(context->context_priv->sesskeys[0][0]), sizeof(DH_sesskeys)); memmove(&(context->context_priv->sesskeys[1][1]), &(context->context_priv->sesskeys[1][0]), sizeof(DH_sesskeys)); /* Copy in the new public key */ context->context_priv->their_y = gcry_mpi_copy(new_y); context->context_priv->their_keyid++; /* Make the session keys */ err = otrl_dh_session(&(context->context_priv->sesskeys[0][0]), &(context->context_priv->our_dh_key), context->context_priv->their_y); if (err) return err; err = otrl_dh_session(&(context->context_priv->sesskeys[1][0]), &(context->context_priv->our_old_dh_key), context->context_priv->their_y); if (err) return err; return gcry_error(GPG_ERR_NO_ERROR); } /* Return a pointer to a newly-allocated OTR query message, customized * with our name. The caller should free() the result when he's done * with it. */ char *otrl_proto_default_query_msg(const char *ourname, OtrlPolicy policy) { char *msg; int v1_supported, v2_supported, v3_supported; char *version_tag; char *bufp; /* Don't use g_strdup_printf here, because someone (not us) is going * to free() the *message pointer, not g_free() it. We can't * require that they g_free() it, because this pointer will probably * get passed to the main IM application for processing (and * free()ing). */ const char *format = "?OTR%s\n<b>%s</b> has requested an " "<a href=\"https://otr.cypherpunks.ca/\">Off-the-Record " "private conversation</a>. However, you do not have a plugin " "to support that.\nSee <a href=\"https://otr.cypherpunks.ca/\">" "https://otr.cypherpunks.ca/</a> for more information."; /* Figure out the version tag */ v1_supported = (policy & OTRL_POLICY_ALLOW_V1); v2_supported = (policy & OTRL_POLICY_ALLOW_V2); v3_supported = (policy & OTRL_POLICY_ALLOW_V3); version_tag = malloc(8); bufp = version_tag; if (v1_supported) { *bufp = '?'; bufp++; } if (v2_supported || v3_supported) { *bufp = 'v'; bufp++; if (v2_supported) { *bufp = '2'; bufp++; } if (v3_supported) { *bufp = '3'; bufp++; } *bufp = '?'; bufp++; } *bufp = '\0'; /* Remove two "%s", add '\0' */ msg = malloc(strlen(format) + strlen(version_tag) + strlen(ourname) - 3); if (!msg) { free(version_tag); return NULL; } sprintf(msg, format, version_tag, ourname); free(version_tag); return msg; } /* Return the best version of OTR support by both sides, given an OTR * Query Message and the local policy. */ unsigned int otrl_proto_query_bestversion(const char *otrquerymsg, OtrlPolicy policy) { char *otrtag; unsigned int query_versions = 0; otrtag = strstr(otrquerymsg, "?OTR"); if (!otrtag) { return 0; } otrtag += 4; if (*otrtag == '?') { query_versions = (1<<0); ++otrtag; } if (*otrtag == 'v') { for(++otrtag; *otrtag && *otrtag != '?'; ++otrtag) { switch(*otrtag) { case '2': query_versions |= (1<<1); break; case '3': query_versions |= (1<<2); break; } } } if ((policy & OTRL_POLICY_ALLOW_V3) && (query_versions & (1<<2))) { return 3; } if ((policy & OTRL_POLICY_ALLOW_V2) && (query_versions & (1<<1))) { return 2; } if ((policy & OTRL_POLICY_ALLOW_V1) && (query_versions & (1<<0))) { return 1; } return 0; } /* Locate any whitespace tag in this message, and return the best * version of OTR support on both sides. Set *starttagp and *endtagp to * the start and end of the located tag, so that it can be snipped out. */ unsigned int otrl_proto_whitespace_bestversion(const char *msg, const char **starttagp, const char **endtagp, OtrlPolicy policy) { const char *starttag, *endtag; unsigned int query_versions = 0; *starttagp = NULL; *endtagp = NULL; starttag = strstr(msg, OTRL_MESSAGE_TAG_BASE); if (!starttag) return 0; endtag = starttag + strlen(OTRL_MESSAGE_TAG_BASE); /* Look for groups of 8 spaces and/or tabs */ while(1) { int i; int allwhite = 1; for(i=0;i<8;++i) { if (endtag[i] != ' ' && endtag[i] != '\t') { allwhite = 0; break; } } if (allwhite) { if (!strncmp(endtag, OTRL_MESSAGE_TAG_V1, 8)) { query_versions |= (1<<0); } if (!strncmp(endtag, OTRL_MESSAGE_TAG_V2, 8)) { query_versions |= (1<<1); } if (!strncmp(endtag, OTRL_MESSAGE_TAG_V3, 8)) { query_versions |= (1<<2); } endtag += 8; } else { break; } } *starttagp = starttag; *endtagp = endtag; if ((policy & OTRL_POLICY_ALLOW_V3) && (query_versions & (1<<2))) { return 3; } if ((policy & OTRL_POLICY_ALLOW_V2) && (query_versions & (1<<1))) { return 2; } if ((policy & OTRL_POLICY_ALLOW_V1) && (query_versions & (1<<0))) { return 1; } return 0; } /* Find the message type. */ OtrlMessageType otrl_proto_message_type(const char *message) { char *otrtag; otrtag = strstr(message, "?OTR"); if (!otrtag) { if (strstr(message, OTRL_MESSAGE_TAG_BASE)) { return OTRL_MSGTYPE_TAGGEDPLAINTEXT; } else { return OTRL_MSGTYPE_NOTOTR; } } if (!strncmp(otrtag, "?OTR:AAM", 8) || !strncmp(otrtag, "?OTR:AAI", 8)) { switch(*(otrtag + 8)) { case 'C': return OTRL_MSGTYPE_DH_COMMIT; case 'K': return OTRL_MSGTYPE_DH_KEY; case 'R': return OTRL_MSGTYPE_REVEALSIG; case 'S': return OTRL_MSGTYPE_SIGNATURE; case 'D': return OTRL_MSGTYPE_DATA; } } else { if (!strncmp(otrtag, "?OTR?", 5)) return OTRL_MSGTYPE_QUERY; if (!strncmp(otrtag, "?OTRv", 5)) return OTRL_MSGTYPE_QUERY; if (!strncmp(otrtag, "?OTR:AAEK", 9)) return OTRL_MSGTYPE_V1_KEYEXCH; if (!strncmp(otrtag, "?OTR:AAED", 9)) return OTRL_MSGTYPE_DATA; if (!strncmp(otrtag, "?OTR Error:", 11)) return OTRL_MSGTYPE_ERROR; } return OTRL_MSGTYPE_UNKNOWN; } /* Find the message version. */ int otrl_proto_message_version(const char *message) { char *otrtag; otrtag = strstr(message, "?OTR"); if (!otrtag) { return 0; } if (!strncmp(otrtag, "?OTR:AAM", 8)) return 3; if (!strncmp(otrtag, "?OTR:AAI", 8)) return 2; if (!strncmp(otrtag, "?OTR:AAE", 8)) return 1; return 0; } /* Find the instance tags in this message */ gcry_error_t otrl_proto_instance(const char *otrmsg, unsigned int *instance_from, unsigned int *instance_to) { gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); const char *otrtag = otrmsg; unsigned char *bufp = NULL; unsigned char *bufp_head = NULL; size_t lenp; if (!otrtag || strncmp(otrtag, "?OTR:AAM", 8)) { goto invval; } if (strlen(otrtag) < 21 ) goto invval; /* Decode and extract instance tag */ bufp = malloc(OTRL_B64_MAX_DECODED_SIZE(12)); bufp_head = bufp; lenp = otrl_base64_decode(bufp, otrtag+9, 12); read_int(*instance_from); read_int(*instance_to); free(bufp_head); return gcry_error(GPG_ERR_NO_ERROR); invval: free(bufp_head); err = gcry_error(GPG_ERR_INV_VALUE); return err; } /* Create an OTR Data message. Pass the plaintext as msg, and an * optional chain of TLVs. A newly-allocated string will be returned in * *encmessagep. Put the current extra symmetric key into extrakey * (if non-NULL). */ gcry_error_t otrl_proto_create_data(char **encmessagep, ConnContext *context, const char *msg, const OtrlTLV *tlvs, unsigned char flags, unsigned char *extrakey) { size_t justmsglen = strlen(msg); size_t msglen = justmsglen + 1 + otrl_tlv_seriallen(tlvs); size_t buflen; size_t pubkeylen; unsigned char *buf = NULL; unsigned char *bufp; size_t lenp; DH_sesskeys *sess = &(context->context_priv->sesskeys[1][0]); gcry_error_t err; size_t reveallen = 20 * context->context_priv->numsavedkeys; char *base64buf = NULL; unsigned char *msgbuf = NULL; enum gcry_mpi_format format = GCRYMPI_FMT_USG; char *msgdup; int version = context->protocol_version; *encmessagep = NULL; /* Make sure we're actually supposed to be able to encrypt */ if (context->msgstate != OTRL_MSGSTATE_ENCRYPTED || context->context_priv->their_keyid == 0) { return gcry_error(GPG_ERR_CONFLICT); } /* We need to copy the incoming msg, since it might be an alias for * context->lastmessage, which we'll be freeing soon. */ msgdup = gcry_malloc_secure(justmsglen + 1); if (msgdup == NULL) { return gcry_error(GPG_ERR_ENOMEM); } strcpy(msgdup, msg); /* Header, msg flags, send keyid, recv keyid, counter, msg len, msg * len of revealed mac keys, revealed mac keys, MAC */ buflen = OTRL_HEADER_LEN + (version == 3 ? 8 : 0) + (version == 2 || version == 3 ? 1 : 0) + 4 + 4 + 8 + 4 + msglen + 4 + reveallen + 20; gcry_mpi_print(format, NULL, 0, &pubkeylen, context->context_priv->our_dh_key.pub); buflen += pubkeylen + 4; buf = malloc(buflen); msgbuf = gcry_malloc_secure(msglen); if (buf == NULL || msgbuf == NULL) { free(buf); gcry_free(msgbuf); gcry_free(msgdup); return gcry_error(GPG_ERR_ENOMEM); } memmove(msgbuf, msgdup, justmsglen); msgbuf[justmsglen] = '\0'; otrl_tlv_serialize(msgbuf + justmsglen + 1, tlvs); bufp = buf; lenp = buflen; if (version == 1) { memmove(bufp, "\x00\x01\x03", 3); /* header */ } else if (version == 2) { memmove(bufp, "\x00\x02\x03", 3); /* header */ } else { memmove(bufp, "\x00\x03\x03", 3); /* header */ } debug_data("Header", bufp, 3); bufp += 3; lenp -= 3; if (version == 3) { /* v3 instance tags */ write_int(context->our_instance); debug_int("Sender instag", bufp-4); write_int(context->their_instance); debug_int("Recipient instag", bufp-4); } if (version == 2 || version == 3) { bufp[0] = flags; bufp += 1; lenp -= 1; } write_int(context->context_priv->our_keyid-1); /* sender keyid */ debug_int("Sender keyid", bufp-4); write_int(context->context_priv->their_keyid); /* recipient keyid */ debug_int("Recipient keyid", bufp-4); write_mpi(context->context_priv->our_dh_key.pub, pubkeylen, "Y"); /* Y */ otrl_dh_incctr(sess->sendctr); memmove(bufp, sess->sendctr, 8); /* Counter (top 8 bytes only) */ debug_data("Counter", bufp, 8); bufp += 8; lenp -= 8; write_int(msglen); /* length of encrypted data */ debug_int("Msg len", bufp-4); err = gcry_cipher_reset(sess->sendenc); if (err) goto err; err = gcry_cipher_setctr(sess->sendenc, sess->sendctr, 16); if (err) goto err; err = gcry_cipher_encrypt(sess->sendenc, bufp, msglen, msgbuf, msglen); if (err) goto err; /* encrypted data */ debug_data("Enc data", bufp, msglen); bufp += msglen; lenp -= msglen; gcry_md_reset(sess->sendmac); gcry_md_write(sess->sendmac, buf, bufp-buf); memmove(bufp, gcry_md_read(sess->sendmac, GCRY_MD_SHA1), 20); debug_data("MAC", bufp, 20); bufp += 20; /* MAC */ lenp -= 20; write_int(reveallen); /* length of revealed MAC keys */ debug_int("Revealed MAC length", bufp-4); if (reveallen > 0) { memmove(bufp, context->context_priv->saved_mac_keys, reveallen); debug_data("Revealed MAC data", bufp, reveallen); bufp += reveallen; lenp -= reveallen; free(context->context_priv->saved_mac_keys); context->context_priv->saved_mac_keys = NULL; context->context_priv->numsavedkeys = 0; } assert(lenp == 0); /* Make the base64-encoding. */ base64buf = otrl_base64_otr_encode(buf, buflen); if (base64buf == NULL) { err = gcry_error(GPG_ERR_ENOMEM); goto err; } free(buf); gcry_free(msgbuf); *encmessagep = base64buf; gcry_free(context->context_priv->lastmessage); context->context_priv->lastmessage = NULL; context->context_priv->may_retransmit = 0; if (msglen > 0) { context->context_priv->lastmessage = gcry_malloc_secure(justmsglen + 1); if (context->context_priv->lastmessage) { strcpy(context->context_priv->lastmessage, msgdup); } } gcry_free(msgdup); /* Save a copy of the current extra key */ if (extrakey) { memmove(extrakey, sess->extrakey, OTRL_EXTRAKEY_BYTES); } return gcry_error(GPG_ERR_NO_ERROR); err: free(buf); gcry_free(msgbuf); gcry_free(msgdup); *encmessagep = NULL; return err; } /* Extract the flags from an otherwise unreadable Data Message. */ gcry_error_t otrl_proto_data_read_flags(const char *datamsg, unsigned char *flagsp) { char *otrtag, *endtag; unsigned char *rawmsg = NULL; unsigned char *bufp; size_t msglen, rawlen, lenp; unsigned char version; if (flagsp) *flagsp = 0; otrtag = strstr(datamsg, "?OTR:"); if (!otrtag) { goto invval; } endtag = strchr(otrtag, '.'); if (endtag) { msglen = endtag-otrtag; } else { msglen = strlen(otrtag); } /* Skip over the "?OTR:" */ otrtag += 5; msglen -= 5; /* Base64-decode the message */ rawlen = OTRL_B64_MAX_DECODED_SIZE(msglen); /* maximum possible */ rawmsg = malloc(rawlen); if (!rawmsg && rawlen > 0) { return gcry_error(GPG_ERR_ENOMEM); } rawlen = otrl_base64_decode(rawmsg, otrtag, msglen); /* actual size */ bufp = rawmsg; lenp = rawlen; require_len(3); version = bufp[1]; skip_header('\x03'); if (version == 3) { require_len(8); bufp += 8; lenp -= 8; } if (version == 2 || version == 3) { require_len(1); if (flagsp) *flagsp = bufp[0]; bufp += 1; lenp -= 1; } free(rawmsg); return gcry_error(GPG_ERR_NO_ERROR); invval: free(rawmsg); return gcry_error(GPG_ERR_INV_VALUE); } /* Accept an OTR Data Message in datamsg. Decrypt it and put the * plaintext into *plaintextp, and any TLVs into tlvsp. Put any * received flags into *flagsp (if non-NULL). Put the current extra * symmetric key into extrakey (if non-NULL). */ gcry_error_t otrl_proto_accept_data(char **plaintextp, OtrlTLV **tlvsp, ConnContext *context, const char *datamsg, unsigned char *flagsp, unsigned char *extrakey) { char *otrtag, *endtag; gcry_error_t err; unsigned char *rawmsg = NULL; size_t msglen, rawlen, lenp; unsigned char *macstart, *macend; unsigned char *bufp; unsigned int sender_keyid, recipient_keyid; gcry_mpi_t sender_next_y = NULL; unsigned char ctr[8]; size_t datalen, reveallen; unsigned char *data = NULL; unsigned char *nul = NULL; unsigned char givenmac[20]; DH_sesskeys *sess; unsigned char version; *plaintextp = NULL; *tlvsp = NULL; if (flagsp) *flagsp = 0; otrtag = strstr(datamsg, "?OTR:"); if (!otrtag) { goto invval; } endtag = strchr(otrtag, '.'); if (endtag) { msglen = endtag-otrtag; } else { msglen = strlen(otrtag); } /* Skip over the "?OTR:" */ otrtag += 5; msglen -= 5; /* Base64-decode the message */ rawlen = OTRL_B64_MAX_DECODED_SIZE(msglen); /* maximum possible */ rawmsg = malloc(rawlen); if (!rawmsg && rawlen > 0) { err = gcry_error(GPG_ERR_ENOMEM); goto err; } rawlen = otrl_base64_decode(rawmsg, otrtag, msglen); /* actual size */ bufp = rawmsg; lenp = rawlen; macstart = bufp; require_len(3); version = bufp[1]; skip_header('\x03'); if (version == 3) { require_len(8); bufp += 8; lenp -= 8; } if (version == 2 || version == 3) { require_len(1); if (flagsp) *flagsp = bufp[0]; bufp += 1; lenp -= 1; } read_int(sender_keyid); read_int(recipient_keyid); read_mpi(sender_next_y); require_len(8); memmove(ctr, bufp, 8); bufp += 8; lenp -= 8; read_int(datalen); require_len(datalen); data = malloc(datalen+1); if (!data) { err = gcry_error(GPG_ERR_ENOMEM); goto err; } memmove(data, bufp, datalen); data[datalen] = '\0'; bufp += datalen; lenp -= datalen; macend = bufp; require_len(20); memmove(givenmac, bufp, 20); bufp += 20; lenp -= 20; read_int(reveallen); require_len(reveallen); /* Just skip over the revealed MAC keys, which we don't need. They * were published for deniability of transcripts. */ bufp += reveallen; lenp -= reveallen; /* That should be everything */ if (lenp != 0) goto invval; /* We don't take any action on this message (especially rotating * keys) until we've verified the MAC on this message. To that end, * we need to know which keys this message is claiming to use. */ if (context->context_priv->their_keyid == 0 || (sender_keyid != context->context_priv->their_keyid && sender_keyid != context->context_priv->their_keyid - 1) || (recipient_keyid != context->context_priv->our_keyid && recipient_keyid != context->context_priv->our_keyid - 1) || sender_keyid == 0 || recipient_keyid == 0) { goto conflict; } if (sender_keyid == context->context_priv->their_keyid - 1 && context->context_priv->their_old_y == NULL) { goto conflict; } /* These are the session keys this message is claiming to use. */ sess = &(context->context_priv->sesskeys [context->context_priv->our_keyid - recipient_keyid] [context->context_priv->their_keyid - sender_keyid]); gcry_md_reset(sess->rcvmac); gcry_md_write(sess->rcvmac, macstart, macend-macstart); if (otrl_mem_differ(givenmac, gcry_md_read(sess->rcvmac, GCRY_MD_SHA1), 20)) { /* The MACs didn't match! */ goto conflict; } sess->rcvmacused = 1; /* Check to see that the counter is increasing; i.e. that this isn't * a replay. */ if (otrl_dh_cmpctr(ctr, sess->rcvctr) <= 0) { goto conflict; } /* Decrypt the message */ memmove(sess->rcvctr, ctr, 8); err = gcry_cipher_reset(sess->rcvenc); if (err) goto err; err = gcry_cipher_setctr(sess->rcvenc, sess->rcvctr, 16); if (err) goto err; err = gcry_cipher_decrypt(sess->rcvenc, data, datalen, NULL, 0); if (err) goto err; /* Save a copy of the current extra key */ if (extrakey) { memmove(extrakey, sess->extrakey, OTRL_EXTRAKEY_BYTES); } /* See if either set of keys needs rotating */ if (recipient_keyid == context->context_priv->our_keyid) { /* They're using our most recent key, so generate a new one */ err = rotate_dh_keys(context); if (err) goto err; } if (sender_keyid == context->context_priv->their_keyid) { /* They've sent us a new public key */ err = rotate_y_keys(context, sender_next_y); if (err) goto err; } gcry_mpi_release(sender_next_y); *plaintextp = (char *)data; /* See if there are TLVs */ nul = data; while (nul < data+datalen && *nul) ++nul; /* If we stopped before the end, skip the NUL we stopped at */ if (nul < data+datalen) ++nul; *tlvsp = otrl_tlv_parse(nul, (data+datalen)-nul); free(rawmsg); return gcry_error(GPG_ERR_NO_ERROR); invval: err = gcry_error(GPG_ERR_INV_VALUE); goto err; conflict: err = gcry_error(GPG_ERR_CONFLICT); goto err; err: gcry_mpi_release(sender_next_y); free(data); free(rawmsg); return err; } /* Accumulate a potential fragment into the current context. */ OtrlFragmentResult otrl_proto_fragment_accumulate(char **unfragmessagep, ConnContext *context, const char *msg) { OtrlFragmentResult res = OTRL_FRAGMENT_INCOMPLETE; const char *tag; unsigned short n = 0, k = 0; int start = 0, end = 0; tag = strstr(msg, "?OTR|"); if (tag) { sscanf(tag, "?OTR|%*x|%*x,%hu,%hu,%n%*[^,],%n", &k, &n, &start, &end); } else if ((tag = strstr(msg, "?OTR,")) != NULL) { sscanf(tag, "?OTR,%hu,%hu,%n%*[^,],%n", &k, &n, &start, &end); } else { /* Unfragmented message, so discard any fragment we may have */ free(context->context_priv->fragment); context->context_priv->fragment = NULL; context->context_priv->fragment_len = 0; context->context_priv->fragment_n = 0; context->context_priv->fragment_k = 0; res = OTRL_FRAGMENT_UNFRAGMENTED; return res; } if (k > 0 && n > 0 && k <= n && start > 0 && end > 0 && start < end) { if (k == 1) { size_t fraglen = end - start - 1; size_t newsize = fraglen + 1; free(context->context_priv->fragment); context->context_priv->fragment = NULL; if (newsize >= 1) { /* Check for overflow */ context->context_priv->fragment = malloc(newsize); } if (context->context_priv->fragment) { memmove(context->context_priv->fragment, tag + start, fraglen); context->context_priv->fragment_len = fraglen; context->context_priv->fragment[ context->context_priv->fragment_len] = '\0'; context->context_priv->fragment_n = n; context->context_priv->fragment_k = k; } else { context->context_priv->fragment_len = 0; context->context_priv->fragment_n = 0; context->context_priv->fragment_k = 0; } } else if (n == context->context_priv->fragment_n && k == context->context_priv->fragment_k + 1) { size_t fraglen = end - start - 1; char *newfrag = NULL; size_t newsize = context->context_priv->fragment_len + fraglen + 1; /* Check for overflow */ if (newsize > context->context_priv->fragment_len) { newfrag = realloc(context->context_priv->fragment, newsize); } if (newfrag) { context->context_priv->fragment = newfrag; memmove(context->context_priv->fragment + context->context_priv->fragment_len, tag + start, fraglen); context->context_priv->fragment_len += fraglen; context->context_priv->fragment[ context->context_priv->fragment_len] = '\0'; context->context_priv->fragment_k = k; } else { free(context->context_priv->fragment); context->context_priv->fragment = NULL; context->context_priv->fragment_len = 0; context->context_priv->fragment_n = 0; context->context_priv->fragment_k = 0; } } else { free(context->context_priv->fragment); context->context_priv->fragment = NULL; context->context_priv->fragment_len = 0; context->context_priv->fragment_n = 0; context->context_priv->fragment_k = 0; } } if (context->context_priv->fragment_n > 0 && context->context_priv->fragment_n == context->context_priv->fragment_k) { /* We've got a complete message */ *unfragmessagep = context->context_priv->fragment; context->context_priv->fragment = NULL; context->context_priv->fragment_len = 0; context->context_priv->fragment_n = 0; context->context_priv->fragment_k = 0; res = OTRL_FRAGMENT_COMPLETE; } return res; } /* Create a fragmented message. */ gcry_error_t otrl_proto_fragment_create(int mms, int fragment_count, char ***fragments, ConnContext *context, const char *message) { char *fragdata; size_t fragdatalen = 0; int curfrag = 0; size_t index = 0; size_t msglen = strlen(message); /* Should vary by number of msgs */ int headerlen = context->protocol_version == 3 ? 37 : 19; char **fragmentarray; if (fragment_count < 1 || fragment_count > 65535) { return gcry_error(GPG_ERR_INV_VALUE); } fragmentarray = malloc(fragment_count * sizeof(char*)); if(!fragmentarray) return gcry_error(GPG_ERR_ENOMEM); /* * Find the next message fragment and store it in the array. */ for(curfrag = 1; curfrag <= fragment_count; curfrag++) { int i; char *fragmentmsg; if (msglen - index < (size_t)(mms - headerlen)) { fragdatalen = msglen - index; } else { fragdatalen = mms - headerlen; } fragdata = malloc(fragdatalen + 1); if(!fragdata) { for (i=0; i<curfrag-1; free(fragmentarray[i++])) {} free(fragmentarray); return gcry_error(GPG_ERR_ENOMEM); } strncpy(fragdata, message, fragdatalen); fragdata[fragdatalen] = 0; fragmentmsg = malloc(fragdatalen+headerlen+1); if(!fragmentmsg) { for (i=0; i<curfrag-1; free(fragmentarray[i++])) {} free(fragmentarray); free(fragdata); return gcry_error(GPG_ERR_ENOMEM); } /* * Create the actual fragment and store it in the array */ if (context->auth.protocol_version != 3) { snprintf(fragmentmsg, fragdatalen + headerlen, "?OTR,%05hu,%05hu,%s,", (unsigned short)curfrag, (unsigned short)fragment_count, fragdata); } else { /* V3 messages require instance tags in the header */ snprintf(fragmentmsg, fragdatalen + headerlen, "?OTR|%08x|%08x,%05hu,%05hu,%s,", context->our_instance, context->their_instance, (unsigned short)curfrag, (unsigned short)fragment_count, fragdata); } fragmentmsg[fragdatalen + headerlen] = 0; fragmentarray[curfrag-1] = fragmentmsg; free(fragdata); index += fragdatalen; message += fragdatalen; } *fragments = fragmentarray; return gcry_error(GPG_ERR_NO_ERROR); } /* Free a string array containing fragment messages. */ void otrl_proto_fragment_free(char ***fragments, unsigned short arraylen) { int i; char **fragmentarray = *fragments; if(fragmentarray) { for(i = 0; i < arraylen; i++) { if(fragmentarray[i]) { free(fragmentarray[i]); } } free(fragmentarray); } } ��������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/instag.c���������������������������������������������������������������������������0000664�0001750�0001750�00000015363�12667026423�012173� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2015 Ian Goldberg, Rob Smits, Chris Alexander, * Willy Lew, Lisa Du, Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdio.h> #include <stdlib.h> /* libgcrypt headers */ #include <gcrypt.h> /* libotr headers */ #include "instag.h" #include "userstate.h" /* Forget the given instag. */ void otrl_instag_forget(OtrlInsTag* instag) { if (!instag) return; if (instag->accountname) free(instag->accountname); if (instag->protocol) free(instag->protocol); /* Re-link the list */ *(instag->tous) = instag->next; if (instag->next) { instag->next->tous = instag->tous; } free(instag); } /* Forget all instags in a given OtrlUserState. */ void otrl_instag_forget_all(OtrlUserState us) { while(us->instag_root) { otrl_instag_forget(us->instag_root); } } /* Fetch the instance tag from the given OtrlUserState associated with * the given account */ OtrlInsTag * otrl_instag_find(OtrlUserState us, const char *accountname, const char *protocol) { OtrlInsTag *p; for(p=us->instag_root; p; p=p->next) { if (!strcmp(p->accountname, accountname) && !strcmp(p->protocol, protocol)) { return p; } } return NULL; } /* Read our instance tag from a file on disk into the given * OtrlUserState. */ gcry_error_t otrl_instag_read(OtrlUserState us, const char *filename) { gcry_error_t err; FILE *instf; /* Open the instance tag file. */ instf = fopen(filename, "rb"); if (!instf) { return gcry_error_from_errno(errno); } err = otrl_instag_read_FILEp(us, instf); fclose(instf); return err; } /* Read our instance tag from a file on disk into the given * OtrlUserState. The FILE* must be open for reading. */ gcry_error_t otrl_instag_read_FILEp(OtrlUserState us, FILE *instf) { if (!instf) return gcry_error(GPG_ERR_NO_ERROR); OtrlInsTag *p; char storeline[1000]; size_t maxsize = sizeof(storeline); while(fgets(storeline, maxsize, instf)) { char *prevpos; char *pos; unsigned int instag = 0; p = malloc(sizeof(*p)); if (!p) { return gcry_error(GPG_ERR_ENOMEM); } /* Parse the line, which should be of the form: * accountname\tprotocol\t40_hex_nybbles\n */ prevpos = storeline; pos = strchr(prevpos, '\t'); if (!pos) { free(p); continue; } *pos = '\0'; pos++; p->accountname = malloc(pos - prevpos); if (!(p->accountname)) { free(p); return gcry_error(GPG_ERR_ENOMEM); } memmove(p->accountname, prevpos, pos - prevpos); prevpos = pos; pos = strchr(prevpos, '\t'); if (!pos) { free(p->accountname); free(p); continue; } *pos = '\0'; pos++; p->protocol = malloc(pos - prevpos); if (!(p->protocol)) { free(p->accountname); free(p); return gcry_error(GPG_ERR_ENOMEM); } memmove(p->protocol, prevpos, pos - prevpos); prevpos = pos; pos = strchr(prevpos, '\r'); if (!pos) pos = strchr(prevpos, '\n'); if (!pos) { free(p->accountname); free(p->protocol); free(p); continue; } *pos = '\0'; pos++; /* hex str of length 8 */ if (strlen(prevpos) != 8) { free(p->accountname); free(p->protocol); free(p); continue; } sscanf(prevpos, "%08x", &instag); if (instag < OTRL_MIN_VALID_INSTAG) { free(p->accountname); free(p->protocol); free(p); continue; } p->instag = instag; /* Link it up */ p->next = us->instag_root; if (p->next) { p->next->tous = &(p->next); } p->tous = &(us->instag_root); us->instag_root = p; } return gcry_error(GPG_ERR_NO_ERROR); } /* Generate a new instance tag for the given account and write to file */ gcry_error_t otrl_instag_generate(OtrlUserState us, const char *filename, const char *accountname, const char *protocol) { gcry_error_t err; FILE *instf; /* Open the instance tag file. */ instf = fopen(filename, "wb"); if (!instf) { return gcry_error_from_errno(errno); } err = otrl_instag_generate_FILEp(us, instf, accountname, protocol); fclose(instf); return err; } /* Return a new valid instance tag */ otrl_instag_t otrl_instag_get_new() { otrl_instag_t result = 0; while(result < OTRL_MIN_VALID_INSTAG) { otrl_instag_t * instag = (otrl_instag_t *)gcry_random_bytes( sizeof(otrl_instag_t), GCRY_STRONG_RANDOM); result = *instag; gcry_free(instag); } return result; } /* Generate a new instance tag for the given account and write to file * The FILE* must be open for writing. */ gcry_error_t otrl_instag_generate_FILEp(OtrlUserState us, FILE *instf, const char *accountname, const char *protocol) { OtrlInsTag *p; if (!accountname || !protocol) return gcry_error(GPG_ERR_NO_ERROR); p = (OtrlInsTag *)malloc(sizeof(OtrlInsTag)); p->accountname = strdup(accountname); p->protocol = strdup(protocol); p->instag = otrl_instag_get_new(); /* Add to our list in OtrlUserState */ p->next = us->instag_root; if (p->next) { p->next->tous = &(p->next); } p->tous = &(us->instag_root); us->instag_root = p; otrl_instag_write_FILEp(us, instf); return gcry_error(GPG_ERR_NO_ERROR); } /* Write our instance tags to a file on disk. */ gcry_error_t otrl_instag_write(OtrlUserState us, const char *filename) { gcry_error_t err; FILE *instf; /* Open the instance tag file. */ instf = fopen(filename, "wb"); if (!instf) { return gcry_error_from_errno(errno); } err = otrl_instag_write_FILEp(us, instf); fclose(instf); return err; } /* Write our instance tags to a file on disk. * The FILE* must be open for writing. */ gcry_error_t otrl_instag_write_FILEp(OtrlUserState us, FILE *instf) { OtrlInsTag *p; /* This line should be ignored when read back in, since there are no tabs. */ fprintf(instf, "# WARNING! You shouldn't copy this file to another" " computer. It is unnecessary and can cause problems.\n"); for(p=us->instag_root; p; p=p->next) { fprintf(instf, "%s\t%s\t%08x\n", p->accountname, p->protocol, p->instag); } return gcry_error(GPG_ERR_NO_ERROR); } �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/tlv.c������������������������������������������������������������������������������0000664�0001750�0001750�00000005715�12637277541�011521� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Willy Lew, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #include <stdlib.h> #include <string.h> #include <assert.h> #include "tlv.h" /* Make a single TLV, copying the supplied data */ OtrlTLV *otrl_tlv_new(unsigned short type, unsigned short len, const unsigned char *data) { OtrlTLV *tlv = malloc(sizeof(OtrlTLV)); assert(tlv != NULL); tlv->type = type; tlv->len = len; tlv->data = malloc(len + 1); assert(tlv->data != NULL); memmove(tlv->data, data, len); tlv->data[tlv->len] = '\0'; tlv->next = NULL; return tlv; } /* Construct a chain of TLVs from the given data */ OtrlTLV *otrl_tlv_parse(const unsigned char *serialized, size_t seriallen) { OtrlTLV *tlv = NULL; OtrlTLV **tlvp = &tlv; while (seriallen >= 4) { unsigned short type = (serialized[0] << 8) + serialized[1]; unsigned short len = (serialized[2] << 8) + serialized[3]; serialized += 4; seriallen -=4; if (seriallen < len) break; *tlvp = otrl_tlv_new(type, len, serialized); serialized += len; seriallen -= len; tlvp = &((*tlvp)->next); } return tlv; } /* Deallocate a chain of TLVs */ void otrl_tlv_free(OtrlTLV *tlv) { while (tlv) { OtrlTLV *next = tlv->next; free(tlv->data); free(tlv); tlv = next; } } /* Find the serialized length of a chain of TLVs */ size_t otrl_tlv_seriallen(const OtrlTLV *tlv) { size_t totlen = 0; while (tlv) { totlen += tlv->len + 4; tlv = tlv->next; } return totlen; } /* Serialize a chain of TLVs. The supplied buffer must already be large * enough. */ void otrl_tlv_serialize(unsigned char *buf, const OtrlTLV *tlv) { while (tlv) { buf[0] = (tlv->type >> 8) & 0xff; buf[1] = tlv->type & 0xff; buf[2] = (tlv->len >> 8) & 0xff; buf[3] = tlv->len & 0xff; buf += 4; memmove(buf, tlv->data, tlv->len); buf += tlv->len; tlv = tlv->next; } } /* Return the first TLV with the given type in the chain, or NULL if one * isn't found. (The tlvs argument isn't const because the return type * needs to be non-const.) */ OtrlTLV *otrl_tlv_find(OtrlTLV *tlvs, unsigned short type) { while (tlvs) { if (tlvs->type == type) return tlvs; tlvs = tlvs->next; } return NULL; } ���������������������������������������������������libotr-4.1.1/src/sm.h�������������������������������������������������������������������������������0000664�0001750�0001750�00000005776�12637277541�011347� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Willy Lew, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __SM_H__ #define __SM_H__ #include <gcrypt.h> #define SM_HASH_ALGORITHM GCRY_MD_SHA256 #define SM_DIGEST_SIZE 32 typedef enum { OTRL_SMP_EXPECT1, OTRL_SMP_EXPECT2, OTRL_SMP_EXPECT3, OTRL_SMP_EXPECT4, OTRL_SMP_EXPECT5 } NextExpectedSMP; typedef enum { OTRL_SMP_PROG_OK = 0, /* All is going fine so far */ OTRL_SMP_PROG_CHEATED = -2, /* Some verification failed */ OTRL_SMP_PROG_FAILED = -1, /* The secrets didn't match */ OTRL_SMP_PROG_SUCCEEDED = 1 /* The SMP completed successfully */ } OtrlSMProgState; typedef struct { gcry_mpi_t secret, x2, x3, g1, g2, g3, g3o, p, q, pab, qab; NextExpectedSMP nextExpected; int received_question; /* 1 if we received a question in an SMP1Q TLV */ OtrlSMProgState sm_prog_state; } OtrlSMState; typedef OtrlSMState OtrlSMAliceState; typedef OtrlSMState OtrlSMBobState; /* * Call this once, at plugin load time. It sets up the modulus and * generator MPIs. */ void otrl_sm_init(void); /* * Initialize the fields of a SM state. */ void otrl_sm_state_new(OtrlSMState *smst); /* * Initialize the fields of a SM state. Called the first time that * a user begins an SMP session. */ void otrl_sm_state_init(OtrlSMState *smst); /* * Deallocate the contents of a OtrlSMState (but not the OtrlSMState * itself) */ void otrl_sm_state_free(OtrlSMState *smst); gcry_error_t otrl_sm_step1(OtrlSMAliceState *astate, const unsigned char* secret, int secretlen, unsigned char** output, int* outputlen); gcry_error_t otrl_sm_step2a(OtrlSMBobState *bstate, const unsigned char* input, const int inputlen, int received_question); gcry_error_t otrl_sm_step2b(OtrlSMBobState *bstate, const unsigned char* secret, int secretlen, unsigned char **output, int* outputlen); gcry_error_t otrl_sm_step3(OtrlSMAliceState *astate, const unsigned char* input, const int inputlen, unsigned char **output, int* outputlen); gcry_error_t otrl_sm_step4(OtrlSMBobState *bstate, const unsigned char* input, const int inputlen, unsigned char **output, int* outputlen); gcry_error_t otrl_sm_step5(OtrlSMAliceState *astate, const unsigned char* input, const int inputlen); #endif ��libotr-4.1.1/src/instag.h���������������������������������������������������������������������������0000664�0001750�0001750�00000006114�12637277541�012200� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2012 Ian Goldberg, Rob Smits, Chris Alexander, * Willy Lew, Lisa Du, Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __INSTAG_H__ #define __INSTAG_H__ #include <stdio.h> #include <errno.h> #define OTRL_INSTAG_MASTER 0 #define OTRL_INSTAG_BEST 1 /* Most secure, based on: conv status, * then fingerprint status, then most recent. */ #define OTRL_INSTAG_RECENT 2 #define OTRL_INSTAG_RECENT_RECEIVED 3 #define OTRL_INSTAG_RECENT_SENT 4 #define OTRL_MIN_VALID_INSTAG 0x100 /* Instag values below this are reserved * for meta instags, defined above, */ typedef unsigned int otrl_instag_t; /* The list of instance tags used for our accounts */ typedef struct s_OtrlInsTag { struct s_OtrlInsTag *next; struct s_OtrlInsTag **tous; char *accountname; char *protocol; otrl_instag_t instag; } OtrlInsTag; #include "userstate.h" /* Forget the given instag. */ void otrl_instag_forget(OtrlInsTag* instag); /* Forget all instags in a given OtrlUserState. */ void otrl_instag_forget_all(OtrlUserState us); /* Fetch the instance tag from the given OtrlUserState associated with * the given account */ OtrlInsTag * otrl_instag_find(OtrlUserState us, const char *accountname, const char *protocol); /* Read our instance tag from a file on disk into the given * OtrlUserState. */ gcry_error_t otrl_instag_read(OtrlUserState us, const char *filename); /* Read our instance tag from a file on disk into the given * OtrlUserState. The FILE* must be open for reading. */ gcry_error_t otrl_instag_read_FILEp(OtrlUserState us, FILE *instf); /* Return a new valid instance tag */ otrl_instag_t otrl_instag_get_new(); /* Get a new instance tag for the given account and write to file*/ gcry_error_t otrl_instag_generate(OtrlUserState us, const char *filename, const char *accountname, const char *protocol); /* Get a new instance tag for the given account and write to file * The FILE* must be open for writing. */ gcry_error_t otrl_instag_generate_FILEp(OtrlUserState us, FILE *instf, const char *accountname, const char *protocol); /* Write our instance tags to a file on disk. */ gcry_error_t otrl_instag_write(OtrlUserState us, const char *filename); /* Write our instance tags to a file on disk. * The FILE* must be open for writing. */ gcry_error_t otrl_instag_write_FILEp(OtrlUserState us, FILE *instf); #endif ����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/Makefile.in������������������������������������������������������������������������0000664�0001750�0001750�00000053376�12667305560�012617� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������# Makefile.in generated by automake 1.14.1 from Makefile.am. # @configure_input@ # Copyright (C) 1994-2013 Free Software Foundation, Inc. # This Makefile.in is free software; the Free Software Foundation # gives unlimited permission to copy and/or distribute it, # with or without modifications, as long as this notice is preserved. # This program is distributed in the hope that it will be useful, # but WITHOUT ANY WARRANTY, to the extent permitted by law; without # even the implied warranty of MERCHANTABILITY or FITNESS FOR A # PARTICULAR PURPOSE. @SET_MAKE@ VPATH = @srcdir@ am__is_gnu_make = test -n '$(MAKEFILE_LIST)' && test -n '$(MAKELEVEL)' am__make_running_with_option = \ case $${target_option-} in \ ?) ;; \ *) echo "am__make_running_with_option: internal error: invalid" \ "target option '$${target_option-}' specified" >&2; \ exit 1;; \ esac; \ has_opt=no; \ sane_makeflags=$$MAKEFLAGS; \ if $(am__is_gnu_make); then \ sane_makeflags=$$MFLAGS; \ else \ case $$MAKEFLAGS in \ *\\[\ \ ]*) \ bs=\\; \ sane_makeflags=`printf '%s\n' "$$MAKEFLAGS" \ | sed "s/$$bs$$bs[$$bs $$bs ]*//g"`;; \ esac; \ fi; \ skip_next=no; \ strip_trailopt () \ { \ flg=`printf '%s\n' "$$flg" | sed "s/$$1.*$$//"`; 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you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __B64_H__ #define __B64_H__ #include <stdlib.h> /* Base64 encodes blocks of this many bytes: */ #define OTRL_B64_DECODED_LEN 3 /* into blocks of this many bytes: */ #define OTRL_B64_ENCODED_LEN 4 /* An encoded block of length encoded_len can turn into a maximum of * this many decoded bytes: */ #define OTRL_B64_MAX_DECODED_SIZE(encoded_len) \ (((encoded_len + OTRL_B64_ENCODED_LEN - 1) / OTRL_B64_ENCODED_LEN) \ * OTRL_B64_DECODED_LEN) /* * base64 encode data. Insert no linebreaks or whitespace. * * The buffer base64data must contain at least ((datalen+2)/3)*4 bytes of * space. This function will return the number of bytes actually used. */ size_t otrl_base64_encode(char *base64data, const unsigned char *data, size_t datalen); /* * base64 decode data. Skip non-base64 chars, and terminate at the * first '=', or the end of the buffer. * * The buffer data must contain at least ((base64len+3) / 4) * 3 bytes * of space. This function will return the number of bytes actually * used. */ size_t otrl_base64_decode(unsigned char *data, const char *base64data, size_t base64len); /* * Base64-encode a block of data, stick "?OTR:" and "." around it, and * return the result, or NULL in the event of a memory error. */ char *otrl_base64_otr_encode(const unsigned char *buf, size_t buflen); /* * Base64-decode the portion of the given message between "?OTR:" and * ".". Set *bufp to the decoded data, and set *lenp to its length. * The caller must free() the result. Return 0 on success, -1 on a * memory error, or -2 on invalid input. */ int otrl_base64_otr_decode(const char *msg, unsigned char **bufp, size_t *lenp); #endif libotr-4.1.1/src/context.c��������������������������������������������������������������������������0000664�0001750�0001750�00000041015�12637277541�012371� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2014 Ian Goldberg, David Goulet, Rob Smits, * Chris Alexander, Willy Lew, Lisa Du, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdlib.h> #include <assert.h> /* libgcrypt headers */ #include <gcrypt.h> /* libotr headers */ #include "context.h" #include "instag.h" #if OTRL_DEBUGGING #include <stdio.h> void otrl_auth_dump(FILE *f, const OtrlAuthInfo *auth); void otrl_sm_dump(FILE *f, const OtrlSMState *sm); /* Dump the contents of a context to the FILE *f. */ void otrl_context_dump(FILE *f, const ConnContext *context) { const Fingerprint *fing; fprintf(f, "Context %p:\n\n", context); fprintf(f, " Username: %s\n", context->username); fprintf(f, " Accountname: %s\n", context->accountname); fprintf(f, " Protocol: %s\n\n", context->protocol); fprintf(f, " Master context: %p%s\n", context->m_context, context->m_context == context ? " IS MASTER" : ""); fprintf(f, " Recent recv child: %p\n", context->recent_rcvd_child); fprintf(f, " Recent sent child: %p\n", context->recent_sent_child); fprintf(f, " Recent child: %p\n\n", context->recent_child); fprintf(f, " Our instance: %08x\n", context->our_instance); fprintf(f, " Their instance: %08x\n\n", context->their_instance); fprintf(f, " Msgstate: %d (%s)\n\n", context->msgstate, context->msgstate == OTRL_MSGSTATE_PLAINTEXT ? "PLAINTEXT" : context->msgstate == OTRL_MSGSTATE_ENCRYPTED ? "ENCRYPTED" : context->msgstate == OTRL_MSGSTATE_FINISHED ? "FINISHED" : "INVALID"); otrl_auth_dump(f, &context->auth); fprintf(f, "\n Fingerprints:\n"); for (fing = context->fingerprint_root.next; fing; fing = fing->next) { fprintf(f, " %p ", fing); if (fing->fingerprint == NULL) { fprintf(f, "(null)"); } else { int i; for (i=0;i<20;++i) { fprintf(f, "%02x", fing->fingerprint[i]); } } fprintf(f, " %p", fing->context); if (fing->trust && fing->trust[0]) { fprintf(f, " %s", fing->trust); } fprintf(f, "\n"); } fprintf(f, "\n Active fingerprint: %p\n\n", context->active_fingerprint); fprintf(f, " Protocol version: %d\n", context->protocol_version); fprintf(f, " OTR offer: %d (%s)\n\n", context->otr_offer, context->otr_offer == OFFER_NOT ? "NOT" : context->otr_offer == OFFER_SENT ? "SENT" : context->otr_offer == OFFER_REJECTED ? "REJECTED" : context->otr_offer == OFFER_ACCEPTED ? "ACCEPTED" : "INVALID"); fprintf(f, " Application data: %p\n", context->app_data); if (context->smstate == NULL) { fprintf(f, " SM state: NULL\n"); } else { otrl_sm_dump(f, context->smstate); } fprintf(f, "\n"); } /* Dump the master context of this context, and all of its children. */ void otrl_context_siblings_dump(FILE *f, const ConnContext *context) { const ConnContext *citer; for (citer = context->m_context; citer && citer->m_context == context->m_context; citer = citer->next) { if (citer == context) { fprintf(f, "*** "); } otrl_context_dump(f, citer); } } /* Dump all contexts. */ void otrl_context_all_dump(FILE *f, OtrlUserState us) { const ConnContext *citer; unsigned int ctxnum = 1; for (citer = us->context_root; citer; citer = citer->next, ++ctxnum) { fprintf(f, "%u. ", ctxnum); otrl_context_dump(f, citer); } } #endif /* Create a new connection context. */ static ConnContext * new_context(const char * user, const char * accountname, const char * protocol) { ConnContext * context; OtrlSMState *smstate; context = malloc(sizeof(ConnContext)); assert(context != NULL); context->username = strdup(user); context->accountname = strdup(accountname); context->protocol = strdup(protocol); context->msgstate = OTRL_MSGSTATE_PLAINTEXT; otrl_auth_new(context); smstate = malloc(sizeof(OtrlSMState)); assert(smstate != NULL); otrl_sm_state_new(smstate); context->smstate = smstate; context->our_instance = 0; context->their_instance = OTRL_INSTAG_MASTER; context->fingerprint_root.fingerprint = NULL; context->fingerprint_root.context = context; context->fingerprint_root.next = NULL; context->fingerprint_root.tous = NULL; context->active_fingerprint = NULL; memset(context->sessionid, 0, 20); context->sessionid_len = 0; context->protocol_version = 0; context->otr_offer = OFFER_NOT; context->app_data = NULL; context->app_data_free = NULL; context->context_priv = otrl_context_priv_new(); assert(context->context_priv != NULL); context->next = NULL; context->m_context = context; context->recent_rcvd_child = NULL; context->recent_sent_child = NULL; context->recent_child = NULL; return context; } ConnContext * otrl_context_find_recent_instance(ConnContext * context, otrl_instag_t recent_instag) { ConnContext * m_context; if (!context) return NULL; m_context = context->m_context; if (!m_context) return NULL; switch(recent_instag) { case OTRL_INSTAG_RECENT: return m_context->recent_child; case OTRL_INSTAG_RECENT_RECEIVED: return m_context->recent_rcvd_child; case OTRL_INSTAG_RECENT_SENT: return m_context->recent_sent_child; default: return NULL; } } /* Find the instance of this context that has the best security level, and for which we have most recently received a message from. Note that most recent in this case is limited to a one-second resolution. */ ConnContext * otrl_context_find_recent_secure_instance(ConnContext * context) { ConnContext *curp; /* for iteration */ ConnContext *m_context; /* master */ ConnContext *cresult = context; /* best so far */ if (!context) { return cresult; } m_context = context->m_context; for (curp = m_context; curp && curp->m_context == m_context; curp = curp->next) { int msgstate_improved = 0; /* 0 == same, 1 == improved */ int trust_improved = 0; /* (will immediately 'continue' if worse * than) */ if (cresult->msgstate == curp->msgstate) { msgstate_improved = 0; } else if (curp->msgstate == OTRL_MSGSTATE_ENCRYPTED || (cresult->msgstate == OTRL_MSGSTATE_PLAINTEXT && curp->msgstate == OTRL_MSGSTATE_FINISHED)) { msgstate_improved = 1; } else { continue; } if (otrl_context_is_fingerprint_trusted(cresult->active_fingerprint) == otrl_context_is_fingerprint_trusted(curp->active_fingerprint)) { trust_improved = 0; } else if (otrl_context_is_fingerprint_trusted(curp->active_fingerprint)){ trust_improved = 1; } else { continue; } if (msgstate_improved || trust_improved || (!msgstate_improved && !trust_improved && curp->context_priv->lastrecv >= cresult->context_priv->lastrecv)) { cresult = curp; } } return cresult; } /* Look up a connection context by name/account/protocol/instag from the given * OtrlUserState. If add_if_missing is true, allocate and return a new * context if one does not currently exist. In that event, call * add_app_data(data, context) so that app_data and app_data_free can be * filled in by the application, and set *addedp to 1. * In the 'their_instance' field note that you can also specify a 'meta- * instance' value such as OTRL_INSTAG_MASTER, OTRL_INSTAG_RECENT, * OTRL_INSTAG_RECENT_RECEIVED and OTRL_INSTAG_RECENT_SENT. */ ConnContext * otrl_context_find(OtrlUserState us, const char *user, const char *accountname, const char *protocol, otrl_instag_t their_instance, int add_if_missing, int *addedp, void (*add_app_data)(void *data, ConnContext *context), void *data) { ConnContext ** curp; int usercmp = 1, acctcmp = 1, protocmp = 1; if (addedp) *addedp = 0; if (!user || !accountname || !protocol) return NULL; for (curp = &(us->context_root); *curp; curp = &((*curp)->next)) { if ((usercmp = strcmp((*curp)->username, user)) > 0 || (usercmp == 0 && (acctcmp = strcmp((*curp)->accountname, accountname)) > 0) || (usercmp == 0 && acctcmp == 0 && (protocmp = strcmp((*curp)->protocol, protocol)) > 0) || (usercmp == 0 && acctcmp == 0 && protocmp == 0 && (their_instance < OTRL_MIN_VALID_INSTAG || ((*curp)->their_instance >= their_instance)))) /* We're at the right place in the list. We've either found * it, or gone too far. */ break; } if (usercmp == 0 && acctcmp == 0 && protocmp == 0 && *curp && (their_instance < OTRL_MIN_VALID_INSTAG || (their_instance == (*curp)->their_instance))) { /* Found one! */ if (their_instance >= OTRL_MIN_VALID_INSTAG || their_instance == OTRL_INSTAG_MASTER) { return *curp; } /* We need to go back and check more values in the context */ switch(their_instance) { case OTRL_INSTAG_BEST: return otrl_context_find_recent_secure_instance(*curp); case OTRL_INSTAG_RECENT: case OTRL_INSTAG_RECENT_RECEIVED: case OTRL_INSTAG_RECENT_SENT: return otrl_context_find_recent_instance(*curp, their_instance); default: return NULL; } } if (add_if_missing) { ConnContext *newctx; OtrlInsTag *our_instag = (OtrlInsTag *)otrl_instag_find(us, accountname, protocol); if (addedp) *addedp = 1; newctx = new_context(user, accountname, protocol); newctx->next = *curp; if (*curp) { (*curp)->tous = &(newctx->next); } *curp = newctx; newctx->tous = curp; if (add_app_data) { add_app_data(data, *curp); } /* Initialize specified instance tags */ if (our_instag) { newctx->our_instance = our_instag->instag; } if (their_instance >= OTRL_MIN_VALID_INSTAG || their_instance == OTRL_INSTAG_MASTER) { newctx->their_instance = their_instance; } if (their_instance >= OTRL_MIN_VALID_INSTAG) { newctx->m_context = otrl_context_find(us, user, accountname, protocol, OTRL_INSTAG_MASTER, 1, NULL, add_app_data, data); } if (their_instance == OTRL_INSTAG_MASTER) { /* if we're adding a master, there are no children, so the most * recent context is the one we add. */ newctx->recent_child = newctx; newctx->recent_rcvd_child = newctx; newctx->recent_sent_child = newctx; } return *curp; } return NULL; } /* Return true iff the given fingerprint is marked as trusted. */ int otrl_context_is_fingerprint_trusted(Fingerprint *fprint) { return fprint && fprint->trust && fprint->trust[0] != '\0'; } /* This method gets called after sending or receiving a message, to * update the master context's "recent context" pointers. */ void otrl_context_update_recent_child(ConnContext *context, unsigned int sent_msg) { ConnContext *m_context = context->m_context; if (sent_msg) { m_context->recent_sent_child = context; } else { m_context->recent_rcvd_child = context; } m_context->recent_child = context; } /* Find a fingerprint in a given context, perhaps adding it if not * present. */ Fingerprint *otrl_context_find_fingerprint(ConnContext *context, unsigned char fingerprint[20], int add_if_missing, int *addedp) { Fingerprint *f; if (addedp) *addedp = 0; if (!context || !context->m_context) return NULL; context = context->m_context; f = context->fingerprint_root.next; while(f) { if (!memcmp(f->fingerprint, fingerprint, 20)) return f; f = f->next; } /* Didn't find it. */ if (add_if_missing) { if (addedp) *addedp = 1; f = malloc(sizeof(*f)); assert(f != NULL); f->fingerprint = malloc(20); assert(f->fingerprint != NULL); memmove(f->fingerprint, fingerprint, 20); f->context = context; f->trust = NULL; f->next = context->fingerprint_root.next; if (f->next) { f->next->tous = &(f->next); } context->fingerprint_root.next = f; f->tous = &(context->fingerprint_root.next); return f; } return NULL; } /* Set the trust level for a given fingerprint */ void otrl_context_set_trust(Fingerprint *fprint, const char *trust) { if (fprint == NULL) return; free(fprint->trust); fprint->trust = trust ? strdup(trust) : NULL; } /* Force a context into the OTRL_MSGSTATE_FINISHED state. */ void otrl_context_force_finished(ConnContext *context) { context->msgstate = OTRL_MSGSTATE_FINISHED; otrl_auth_clear(&(context->auth)); context->active_fingerprint = NULL; memset(context->sessionid, 0, 20); context->sessionid_len = 0; context->protocol_version = 0; otrl_sm_state_free(context->smstate); otrl_context_priv_force_finished(context->context_priv); } /* Force a context into the OTRL_MSGSTATE_PLAINTEXT state. */ void otrl_context_force_plaintext(ConnContext *context) { /* First clean up everything we'd need to do for the FINISHED state */ otrl_context_force_finished(context); /* And just set the state properly */ context->msgstate = OTRL_MSGSTATE_PLAINTEXT; } /* Forget a fingerprint (so long as it's not the active one. If it's a * fingerprint_root, forget the whole context (as long as * and_maybe_context is set, and it's PLAINTEXT). Also, if it's not * the fingerprint_root, but it's the only fingerprint, and we're * PLAINTEXT, forget the whole context if and_maybe_context is set. */ void otrl_context_forget_fingerprint(Fingerprint *fprint, int and_maybe_context) { ConnContext *context = fprint->context; if (fprint == &(context->fingerprint_root)) { if (context->msgstate == OTRL_MSGSTATE_PLAINTEXT && and_maybe_context) { otrl_context_forget(context); } } else { if (context->msgstate != OTRL_MSGSTATE_PLAINTEXT || context->active_fingerprint != fprint) { free(fprint->fingerprint); free(fprint->trust); *(fprint->tous) = fprint->next; if (fprint->next) { fprint->next->tous = fprint->tous; } free(fprint); if (context->msgstate == OTRL_MSGSTATE_PLAINTEXT && context->fingerprint_root.next == NULL && and_maybe_context) { /* We just deleted the only fingerprint. Forget the * whole thing. */ otrl_context_forget(context); } } } } /* Forget a whole context, so long as it's PLAINTEXT. If a context has child * instances, don't remove this instance unless children are also all in * PLAINTEXT state. In this case, the children will also be removed. * Returns 0 on success, 1 on failure. */ int otrl_context_forget(ConnContext *context) { if (context->msgstate != OTRL_MSGSTATE_PLAINTEXT) return 1; if (context->their_instance == OTRL_INSTAG_MASTER) { ConnContext *c_iter; for (c_iter = context; c_iter && c_iter->m_context == context->m_context; c_iter = c_iter->next) { if (c_iter->msgstate != OTRL_MSGSTATE_PLAINTEXT) return 1; } c_iter = context->next; while (c_iter && c_iter->m_context == context->m_context) { if (!otrl_context_forget(c_iter)) { c_iter = context->next; } else { return 1; } } } /* Just to be safe, force to plaintext. This also frees any * extraneous data lying around. */ otrl_context_force_plaintext(context); /* First free all the Fingerprints */ while(context->fingerprint_root.next) { otrl_context_forget_fingerprint(context->fingerprint_root.next, 0); } /* Now free all the dynamic info here */ free(context->username); free(context->accountname); free(context->protocol); free(context->smstate); context->username = NULL; context->accountname = NULL; context->protocol = NULL; context->smstate = NULL; /* Free the application data, if it exists */ if (context->app_data && context->app_data_free) { (context->app_data_free)(context->app_data); context->app_data = NULL; } /* Fix the list linkages */ *(context->tous) = context->next; if (context->next) { context->next->tous = context->tous; } free(context); return 0; } /* Forget all the contexts in a given OtrlUserState. */ void otrl_context_forget_all(OtrlUserState us) { ConnContext *c_iter; for (c_iter = us->context_root; c_iter; c_iter = c_iter->next) { otrl_context_force_plaintext(c_iter); } while (us->context_root) { otrl_context_forget(us->context_root); } } �������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/sm.c�������������������������������������������������������������������������������0000664�0001750�0001750�00000077412�12637277541�011336� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2014 Ian Goldberg, David Goulet, Rob Smits, * Chris Alexander, Willy Lew, Lisa Du, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdlib.h> #include <stdio.h> #include <sys/types.h> /* libgcrypt headers */ #include <gcrypt.h> /* libotr headers */ #include "sm.h" #include "serial.h" #if OTRL_DEBUGGING /* Dump the contents of an SMState to the FILE *f. */ void otrl_sm_dump(FILE *f, const OtrlSMState *sm) { fprintf(f, " SM state:\n"); fprintf(f, " Next expected: %d (%s)\n", sm->nextExpected, sm->nextExpected == OTRL_SMP_EXPECT1 ? "EXPECT1" : sm->nextExpected == OTRL_SMP_EXPECT2 ? "EXPECT2" : sm->nextExpected == OTRL_SMP_EXPECT3 ? "EXPECT3" : sm->nextExpected == OTRL_SMP_EXPECT4 ? "EXPECT4" : sm->nextExpected == OTRL_SMP_EXPECT5 ? "EXPECT5" : "INVALID"); fprintf(f, " Received_Q: %d\n", sm->received_question); fprintf(f, " Progress state: %d (%s)\n", sm->sm_prog_state, sm->sm_prog_state == OTRL_SMP_PROG_OK ? "OK" : sm->sm_prog_state == OTRL_SMP_PROG_CHEATED ? "CHEATED" : sm->sm_prog_state == OTRL_SMP_PROG_FAILED ? "FAILED" : sm->sm_prog_state == OTRL_SMP_PROG_SUCCEEDED ? "SUCCEEDED" : "INVALID"); } #endif static const int SM_MSG1_LEN = 6; static const int SM_MSG2_LEN = 11; static const int SM_MSG3_LEN = 8; static const int SM_MSG4_LEN = 3; /* The modulus p */ static const char* SM_MODULUS_S = "0x" "FFFFFFFFFFFFFFFFC90FDAA22168C234C4C6628B80DC1CD1" "29024E088A67CC74020BBEA63B139B22514A08798E3404DD" "EF9519B3CD3A431B302B0A6DF25F14374FE1356D6D51C245" "E485B576625E7EC6F44C42E9A637ED6B0BFF5CB6F406B7ED" "EE386BFB5A899FA5AE9F24117C4B1FE649286651ECE45B3D" "C2007CB8A163BF0598DA48361C55D39A69163FA8FD24CF5F" "83655D23DCA3AD961C62F356208552BB9ED529077096966D" "670C354E4ABC9804F1746C08CA237327FFFFFFFFFFFFFFFF"; /* The order of the group q = (p-1)/2 */ static const char* SM_ORDER_S = "0x" "7FFFFFFFFFFFFFFFE487ED5110B4611A62633145C06E0E68" "948127044533E63A0105DF531D89CD9128A5043CC71A026E" "F7CA8CD9E69D218D98158536F92F8A1BA7F09AB6B6A8E122" "F242DABB312F3F637A262174D31BF6B585FFAE5B7A035BF6" "F71C35FDAD44CFD2D74F9208BE258FF324943328F6722D9E" "E1003E5C50B1DF82CC6D241B0E2AE9CD348B1FD47E9267AF" "C1B2AE91EE51D6CB0E3179AB1042A95DCF6A9483B84B4B36" "B3861AA7255E4C0278BA36046511B993FFFFFFFFFFFFFFFF"; static const char *SM_GENERATOR_S = "0x02"; static const int SM_MOD_LEN_BITS = 1536; static const int SM_MOD_LEN_BYTES = 192; static gcry_mpi_t SM_MODULUS = NULL; static gcry_mpi_t SM_GENERATOR = NULL; static gcry_mpi_t SM_ORDER = NULL; static gcry_mpi_t SM_MODULUS_MINUS_2 = NULL; /* * Call this once, at plugin load time. It sets up the modulus and * generator MPIs. */ void otrl_sm_init(void) { gcry_check_version(NULL); gcry_mpi_scan(&SM_MODULUS, GCRYMPI_FMT_HEX, (const unsigned char *)SM_MODULUS_S, 0, NULL); gcry_mpi_scan(&SM_ORDER, GCRYMPI_FMT_HEX, (const unsigned char *)SM_ORDER_S, 0, NULL); gcry_mpi_scan(&SM_GENERATOR, GCRYMPI_FMT_HEX, (const unsigned char *)SM_GENERATOR_S, 0, NULL); SM_MODULUS_MINUS_2 = gcry_mpi_new(SM_MOD_LEN_BITS); gcry_mpi_sub_ui(SM_MODULUS_MINUS_2, SM_MODULUS, 2); } /* * Initialize the fields of a SM state. */ void otrl_sm_state_new(OtrlSMState *smst) { smst->secret = NULL; smst->x2 = NULL; smst->x3 = NULL; smst->g1 = NULL; smst->g2 = NULL; smst->g3 = NULL; smst->g3o = NULL; smst->p = NULL; smst->q = NULL; smst->pab = NULL; smst->qab = NULL; smst->nextExpected = OTRL_SMP_EXPECT1; smst->received_question = 0; smst->sm_prog_state = OTRL_SMP_PROG_OK; } /* * Initialize the fields of a SM state. Called the first time that * a user begins an SMP session. */ void otrl_sm_state_init(OtrlSMState *smst) { otrl_sm_state_free(smst); smst->secret = gcry_mpi_snew(SM_MOD_LEN_BITS); smst->x2 = NULL; smst->x3 = NULL; smst->g1 = gcry_mpi_copy(SM_GENERATOR); smst->g2 = gcry_mpi_new(SM_MOD_LEN_BITS); smst->g3 = gcry_mpi_new(SM_MOD_LEN_BITS); smst->g3o = gcry_mpi_new(SM_MOD_LEN_BITS); smst->p = gcry_mpi_new(SM_MOD_LEN_BITS); smst->q = gcry_mpi_new(SM_MOD_LEN_BITS); smst->pab = gcry_mpi_new(SM_MOD_LEN_BITS); smst->qab = gcry_mpi_new(SM_MOD_LEN_BITS); smst->received_question = 0; smst->sm_prog_state = OTRL_SMP_PROG_OK; } /* * Initialize the fields of a SM message1. * [0] = g2a, [1] = c2, [2] = d2, [3] = g3a, [4] = c3, [5] = d3 */ void otrl_sm_msg1_init(gcry_mpi_t **msg1) { gcry_mpi_t *msg = malloc(SM_MSG1_LEN * sizeof(gcry_mpi_t)); msg[0] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[1] = NULL; msg[2] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[3] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[4] = NULL; msg[5] = gcry_mpi_new(SM_MOD_LEN_BITS); *msg1 = msg; } /* * Initialize the fields of a SM message2. * [0] = g2b, [1] = c2, [2] = d2, [3] = g3b, [4] = c3, [5] = d3 * [6] = pb, [7] = qb, [8] = cp, [9] = d5, [10] = d6 */ void otrl_sm_msg2_init(gcry_mpi_t **msg2) { gcry_mpi_t *msg = malloc(SM_MSG2_LEN * sizeof(gcry_mpi_t)); msg[0] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[1] = NULL; msg[2] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[3] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[4] = NULL; msg[5] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[6] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[7] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[8] = NULL; msg[9] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[10] = gcry_mpi_new(SM_MOD_LEN_BITS); *msg2 = msg; } /* * Initialize the fields of a SM message3. * [0] = pa, [1] = qa, [2] = cp, [3] = d5, [4] = d6, [5] = ra, * [6] = cr, [7] = d7 */ void otrl_sm_msg3_init(gcry_mpi_t **msg3) { gcry_mpi_t *msg = malloc(SM_MSG3_LEN * sizeof(gcry_mpi_t)); msg[0] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[1] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[2] = NULL; msg[3] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[4] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[5] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[6] = NULL; msg[7] = gcry_mpi_new(SM_MOD_LEN_BITS); *msg3 = msg; } /* * Initialize the fields of a SM message4. * [0] = rb, [1] = cr, [2] = d7 */ void otrl_sm_msg4_init(gcry_mpi_t **msg4) { gcry_mpi_t *msg = malloc(SM_MSG4_LEN * sizeof(gcry_mpi_t)); msg[0] = gcry_mpi_new(SM_MOD_LEN_BITS); msg[1] = NULL; msg[2] = gcry_mpi_new(SM_MOD_LEN_BITS); *msg4 = msg; } /* * Deallocate the contents of a OtrlSMState (but not the OtrlSMState * itself) */ void otrl_sm_state_free(OtrlSMState *smst) { gcry_mpi_release(smst->secret); gcry_mpi_release(smst->x2); gcry_mpi_release(smst->x3); gcry_mpi_release(smst->g1); gcry_mpi_release(smst->g2); gcry_mpi_release(smst->g3); gcry_mpi_release(smst->g3o); gcry_mpi_release(smst->p); gcry_mpi_release(smst->q); gcry_mpi_release(smst->pab); gcry_mpi_release(smst->qab); otrl_sm_state_new(smst); } /* * Deallocate the contents of a message */ void otrl_sm_msg_free(gcry_mpi_t **message, int msglen) { gcry_mpi_t *msg = *message; int i; for (i=0; i<msglen; i++) { gcry_mpi_release(msg[i]); } free(msg); *message = NULL; } static gcry_mpi_t randomExponent(void) { unsigned char *secbuf = NULL; gcry_mpi_t randexpon = NULL; /* Generate a random exponent */ secbuf = gcry_random_bytes_secure(SM_MOD_LEN_BYTES, GCRY_STRONG_RANDOM); gcry_mpi_scan(&randexpon, GCRYMPI_FMT_USG, secbuf, SM_MOD_LEN_BYTES, NULL); gcry_free(secbuf); return randexpon; } /* * Hash one or two mpis. To hash only one mpi, b may be set to NULL. */ static gcry_error_t otrl_sm_hash(gcry_mpi_t* hash, int version, const gcry_mpi_t a, const gcry_mpi_t b) { unsigned char* input; unsigned char output[SM_DIGEST_SIZE]; size_t sizea; size_t sizeb; size_t totalsize; unsigned char* dataa; unsigned char* datab; gcry_mpi_aprint(GCRYMPI_FMT_USG, &dataa, &sizea, a); totalsize = 1 + 4 + sizea; if (b) { gcry_mpi_aprint(GCRYMPI_FMT_USG, &datab, &sizeb, b); totalsize += 4 + sizeb; } else { sizeb = 0; } input = malloc(totalsize); input[0] = (unsigned char)version; input[1] = (unsigned char)((sizea >> 24) & 0xFF); input[2] = (unsigned char)((sizea >> 16) & 0xFF); input[3] = (unsigned char)((sizea >> 8) & 0xFF); input[4] = (unsigned char)(sizea & 0xFF); memmove(input + 5, dataa, sizea); if (b) { input[5 + sizea] = (unsigned char)((sizeb >> 24) & 0xFF); input[6 + sizea] = (unsigned char)((sizeb >> 16) & 0xFF); input[7 + sizea] = (unsigned char)((sizeb >> 8) & 0xFF); input[8 + sizea] = (unsigned char)(sizeb & 0xFF); memmove(input + 9 + sizea, datab, sizeb); } gcry_md_hash_buffer(SM_HASH_ALGORITHM, output, input, totalsize); gcry_mpi_scan(hash, GCRYMPI_FMT_USG, output, SM_DIGEST_SIZE, NULL); free(input); input = NULL; /* free memory */ gcry_free(dataa); if (b) gcry_free(datab); return gcry_error(GPG_ERR_NO_ERROR); } /* This method should be passed a pointer to an uninitialized buffer, * and a list of mpis with a list length. When returns, the buffer will * point to newly-allocated memory (using malloc) containing a * reversible serialization. */ static gcry_error_t serialize_mpi_array(unsigned char **buffer, int *buflen, unsigned int count, gcry_mpi_t *mpis) { size_t totalsize = 0, lenp, nextsize; unsigned int i, j; size_t *list_sizes = malloc(count * sizeof(size_t)); unsigned char **tempbuffer = malloc(count * sizeof(unsigned char *)); unsigned char *bufp; for (i=0; i<count; i++) { gcry_mpi_aprint(GCRYMPI_FMT_USG, &(tempbuffer[i]), &(list_sizes[i]), mpis[i]); totalsize += list_sizes[i]; } *buflen = (count+1)*4 + totalsize; *buffer = malloc(*buflen * sizeof(char)); bufp = *buffer; lenp = totalsize; write_int(count); for(i=0; i<count; i++) { nextsize = list_sizes[i]; write_int(nextsize); for(j=0; j<nextsize; j++) bufp[j] = tempbuffer[i][j]; bufp += nextsize; lenp -= nextsize; gcry_free(tempbuffer[i]); } free(tempbuffer); free(list_sizes); return gcry_error(GPG_ERR_NO_ERROR); } /* Takes a buffer containing serialized and concatenated mpis * and converts it to an array of gcry_mpi_t structs. * The buffer is assumed to consist of a 4-byte int containing the * number of mpis in the array, followed by {size, data} pairs for * each mpi. If malformed, method returns GCRY_ERROR_INV_VALUE */ static gcry_error_t unserialize_mpi_array(gcry_mpi_t **mpis, unsigned int expcount, const unsigned char *buffer, const int buflen) { unsigned int i; size_t lenp = buflen; unsigned int thecount = 0; const unsigned char* bufp = buffer; *mpis = NULL; read_int(thecount); if (thecount != expcount) goto invval; *mpis = malloc(thecount * sizeof(gcry_mpi_t)); for (i=0; i<thecount; i++) { (*mpis)[i] = NULL; } for (i=0; i<thecount; i++) { read_mpi((*mpis)[i]); } return gcry_error(GPG_ERR_NO_ERROR); invval: if (*mpis) { for (i=0; i<thecount; i++) { gcry_mpi_release((*mpis)[i]); } free(*mpis); *mpis = NULL; } return gcry_error(GPG_ERR_INV_VALUE); } /* Check that an MPI is in the right range to be a (non-unit) group * element */ static int check_group_elem(gcry_mpi_t g) { if (gcry_mpi_cmp_ui(g, 2) < 0 || gcry_mpi_cmp(g, SM_MODULUS_MINUS_2) > 0) { return 1; } return 0; } /* Check that an MPI is in the right range to be a (non-zero) exponent */ static int check_expon(gcry_mpi_t x) { if (gcry_mpi_cmp_ui(x, 1) < 0 || gcry_mpi_cmp(x, SM_ORDER) >= 0) { return 1; } return 0; } /* * Proof of knowledge of a discrete logarithm */ static gcry_error_t otrl_sm_proof_know_log(gcry_mpi_t *c, gcry_mpi_t *d, const gcry_mpi_t g, const gcry_mpi_t x, int version) { gcry_mpi_t r = randomExponent(); gcry_mpi_t temp = gcry_mpi_snew(SM_MOD_LEN_BITS); gcry_mpi_powm(temp, g, r, SM_MODULUS); otrl_sm_hash(c, version, temp, NULL); gcry_mpi_mulm(temp, x, *c, SM_ORDER); gcry_mpi_subm(*d, r, temp, SM_ORDER); gcry_mpi_release(temp); gcry_mpi_release(r); return gcry_error(GPG_ERR_NO_ERROR); } /* * Verify a proof of knowledge of a discrete logarithm. * Checks that c = h(g^d x^c) */ static int otrl_sm_check_know_log(const gcry_mpi_t c, const gcry_mpi_t d, const gcry_mpi_t g, const gcry_mpi_t x, int version) { int comp; gcry_mpi_t gd = gcry_mpi_new(SM_MOD_LEN_BITS); /* g^d */ gcry_mpi_t xc = gcry_mpi_new(SM_MOD_LEN_BITS); /* x^c */ gcry_mpi_t gdxc = gcry_mpi_new(SM_MOD_LEN_BITS); /* (g^d x^c) */ gcry_mpi_t hgdxc = NULL; /* h(g^d x^c) */ gcry_mpi_powm(gd, g, d, SM_MODULUS); gcry_mpi_powm(xc, x, c, SM_MODULUS); gcry_mpi_mulm(gdxc, gd, xc, SM_MODULUS); otrl_sm_hash(&hgdxc, version, gdxc, NULL); comp = gcry_mpi_cmp(hgdxc, c); gcry_mpi_release(gd); gcry_mpi_release(xc); gcry_mpi_release(gdxc); gcry_mpi_release(hgdxc); return comp; } /* * Proof of knowledge of coordinates with first components being equal */ static gcry_error_t otrl_sm_proof_equal_coords(gcry_mpi_t *c, gcry_mpi_t *d1, gcry_mpi_t *d2, const OtrlSMState *state, const gcry_mpi_t r, int version) { gcry_mpi_t r1 = randomExponent(); gcry_mpi_t r2 = randomExponent(); gcry_mpi_t temp1 = gcry_mpi_new(SM_MOD_LEN_BITS); gcry_mpi_t temp2 = gcry_mpi_new(SM_MOD_LEN_BITS); /* Compute the value of c, as c = h(g3^r1, g1^r1 g2^r2) */ gcry_mpi_powm(temp1, state->g1, r1, SM_MODULUS); gcry_mpi_powm(temp2, state->g2, r2, SM_MODULUS); gcry_mpi_mulm(temp2, temp1, temp2, SM_MODULUS); gcry_mpi_powm(temp1, state->g3, r1, SM_MODULUS); otrl_sm_hash(c, version, temp1, temp2); /* Compute the d values, as d1 = r1 - r c, d2 = r2 - secret c */ gcry_mpi_mulm(temp1, r, *c, SM_ORDER); gcry_mpi_subm(*d1, r1, temp1, SM_ORDER); gcry_mpi_mulm(temp1, state->secret, *c, SM_ORDER); gcry_mpi_subm(*d2, r2, temp1, SM_ORDER); /* All clear */ gcry_mpi_release(r1); gcry_mpi_release(r2); gcry_mpi_release(temp1); gcry_mpi_release(temp2); return gcry_error(GPG_ERR_NO_ERROR); } /* * Verify a proof of knowledge of coordinates with first components being equal */ static gcry_error_t otrl_sm_check_equal_coords(const gcry_mpi_t c, const gcry_mpi_t d1, const gcry_mpi_t d2, const gcry_mpi_t p, const gcry_mpi_t q, const OtrlSMState *state, int version) { int comp; gcry_mpi_t temp1 = gcry_mpi_new(SM_MOD_LEN_BITS); gcry_mpi_t temp2 = gcry_mpi_new(SM_MOD_LEN_BITS); gcry_mpi_t temp3 = gcry_mpi_new(SM_MOD_LEN_BITS); gcry_mpi_t cprime = NULL; /* To verify, we test that hash(g3^d1 * p^c, g1^d1 * g2^d2 * q^c) = c * If indeed c = hash(g3^r1, g1^r1 g2^r2), d1 = r1 - r*c, * d2 = r2 - secret*c. And if indeed p = g3^r, q = g1^r * g2^secret * Then we should have that: * hash(g3^d1 * p^c, g1^d1 * g2^d2 * q^c) * = hash(g3^(r1 - r*c + r*c), g1^(r1 - r*c + q*c) * * g2^(r2 - secret*c + secret*c)) * = hash(g3^r1, g1^r1 g2^r2) * = c */ gcry_mpi_powm(temp2, state->g3, d1, SM_MODULUS); gcry_mpi_powm(temp3, p, c, SM_MODULUS); gcry_mpi_mulm(temp1, temp2, temp3, SM_MODULUS); gcry_mpi_powm(temp2, state->g1, d1, SM_MODULUS); gcry_mpi_powm(temp3, state->g2, d2, SM_MODULUS); gcry_mpi_mulm(temp2, temp2, temp3, SM_MODULUS); gcry_mpi_powm(temp3, q, c, SM_MODULUS); gcry_mpi_mulm(temp2, temp3, temp2, SM_MODULUS); otrl_sm_hash(&cprime, version, temp1, temp2); comp = gcry_mpi_cmp(c, cprime); gcry_mpi_release(temp1); gcry_mpi_release(temp2); gcry_mpi_release(temp3); gcry_mpi_release(cprime); return comp; } /* * Proof of knowledge of logs with exponents being equal */ static gcry_error_t otrl_sm_proof_equal_logs(gcry_mpi_t *c, gcry_mpi_t *d, OtrlSMState *state, int version) { gcry_mpi_t r = randomExponent(); gcry_mpi_t temp1 = gcry_mpi_new(SM_MOD_LEN_BITS); gcry_mpi_t temp2 = gcry_mpi_new(SM_MOD_LEN_BITS); /* Compute the value of c, as c = h(g1^r, (Qa/Qb)^r) */ gcry_mpi_powm(temp1, state->g1, r, SM_MODULUS); gcry_mpi_powm(temp2, state->qab, r, SM_MODULUS); otrl_sm_hash(c, version, temp1, temp2); /* Compute the d values, as d = r - x3 c */ gcry_mpi_mulm(temp1, state->x3, *c, SM_ORDER); gcry_mpi_subm(*d, r, temp1, SM_ORDER); /* All clear */ gcry_mpi_release(r); gcry_mpi_release(temp1); gcry_mpi_release(temp2); return gcry_error(GPG_ERR_NO_ERROR); } /* * Verify a proof of knowledge of logs with exponents being equal */ static gcry_error_t otrl_sm_check_equal_logs(const gcry_mpi_t c, const gcry_mpi_t d, const gcry_mpi_t r, const OtrlSMState *state, int version) { int comp; gcry_mpi_t temp1 = gcry_mpi_new(SM_MOD_LEN_BITS); gcry_mpi_t temp2 = gcry_mpi_new(SM_MOD_LEN_BITS); gcry_mpi_t temp3 = gcry_mpi_new(SM_MOD_LEN_BITS); gcry_mpi_t cprime = NULL; /* Here, we recall the exponents used to create g3. * If we have previously seen g3o = g1^x where x is unknown * during the DH exchange to produce g3, then we may proceed with: * * To verify, we test that hash(g1^d * g3o^c, qab^d * r^c) = c * If indeed c = hash(g1^r1, qab^r1), d = r1- x * c * And if indeed r = qab^x * Then we should have that: * hash(g1^d * g3o^c, qab^d r^c) * = hash(g1^(r1 - x*c + x*c), qab^(r1 - x*c + x*c)) * = hash(g1^r1, qab^r1) * = c */ gcry_mpi_powm(temp2, state->g1, d, SM_MODULUS); gcry_mpi_powm(temp3, state->g3o, c, SM_MODULUS); gcry_mpi_mulm(temp1, temp2, temp3, SM_MODULUS); gcry_mpi_powm(temp3, state->qab, d, SM_MODULUS); gcry_mpi_powm(temp2, r, c, SM_MODULUS); gcry_mpi_mulm(temp2, temp3, temp2, SM_MODULUS); otrl_sm_hash(&cprime, version, temp1, temp2); comp = gcry_mpi_cmp(c, cprime); gcry_mpi_release(temp1); gcry_mpi_release(temp2); gcry_mpi_release(temp3); gcry_mpi_release(cprime); return comp; } /* Create first message in SMP exchange. Input is Alice's secret value * which this protocol aims to compare to Bob's. Output is a serialized * mpi array whose elements correspond to the following: * [0] = g2a, Alice's half of DH exchange to determine g2 * [1] = c2, [2] = d2, Alice's ZK proof of knowledge of g2a exponent * [3] = g3a, Alice's half of DH exchange to determine g3 * [4] = c3, [5] = d3, Alice's ZK proof of knowledge of g3a exponent */ gcry_error_t otrl_sm_step1(OtrlSMAliceState *astate, const unsigned char* secret, int secretlen, unsigned char** output, int* outputlen) { /* Initialize the sm state or update the secret */ gcry_mpi_t secret_mpi = NULL; gcry_mpi_t *msg1; *output = NULL; *outputlen = 0; gcry_mpi_scan(&secret_mpi, GCRYMPI_FMT_USG, secret, secretlen, NULL); if (! astate->g1) { otrl_sm_state_init(astate); } gcry_mpi_set(astate->secret, secret_mpi); gcry_mpi_release(secret_mpi); astate->received_question = 0; otrl_sm_msg1_init(&msg1); astate->x2 = randomExponent(); astate->x3 = randomExponent(); gcry_mpi_powm(msg1[0], astate->g1, astate->x2, SM_MODULUS); otrl_sm_proof_know_log(&(msg1[1]), &(msg1[2]), astate->g1, astate->x2, 1); gcry_mpi_powm(msg1[3], astate->g1, astate->x3, SM_MODULUS); otrl_sm_proof_know_log(&(msg1[4]), &(msg1[5]), astate->g1, astate->x3, 2); serialize_mpi_array(output, outputlen, SM_MSG1_LEN, msg1); otrl_sm_msg_free(&msg1, SM_MSG1_LEN); astate->sm_prog_state = OTRL_SMP_PROG_OK; return gcry_error(GPG_ERR_NO_ERROR); } /* Receive the first message in SMP exchange, which was generated by * otrl_sm_step1. Input is saved until the user inputs their secret * information. No output. */ gcry_error_t otrl_sm_step2a(OtrlSMBobState *bstate, const unsigned char* input, const int inputlen, int received_question) { gcry_mpi_t *msg1; gcry_error_t err; /* Initialize the sm state if needed */ if (! bstate->g1) { otrl_sm_state_init(bstate); } bstate->received_question = received_question; bstate->sm_prog_state = OTRL_SMP_PROG_CHEATED; /* Read from input to find the mpis */ err = unserialize_mpi_array(&msg1, SM_MSG1_LEN, input, inputlen); if (err != gcry_error(GPG_ERR_NO_ERROR)) return err; if (check_group_elem(msg1[0]) || check_expon(msg1[2]) || check_group_elem(msg1[3]) || check_expon(msg1[5])) { otrl_sm_msg_free(&msg1, SM_MSG1_LEN); return gcry_error(GPG_ERR_INV_VALUE); } /* Store Alice's g3a value for later in the protocol */ gcry_mpi_set(bstate->g3o, msg1[3]); /* Verify Alice's proofs */ if (otrl_sm_check_know_log(msg1[1], msg1[2], bstate->g1, msg1[0], 1) || otrl_sm_check_know_log(msg1[4], msg1[5], bstate->g1, msg1[3], 2)) { otrl_sm_msg_free(&msg1, SM_MSG1_LEN); return gcry_error(GPG_ERR_INV_VALUE); } /* Create Bob's half of the generators g2 and g3 */ bstate->x2 = randomExponent(); bstate->x3 = randomExponent(); /* Combine the two halves from Bob and Alice and determine g2 and g3 */ gcry_mpi_powm(bstate->g2, msg1[0], bstate->x2, SM_MODULUS); gcry_mpi_powm(bstate->g3, msg1[3], bstate->x3, SM_MODULUS); bstate->sm_prog_state = OTRL_SMP_PROG_OK; otrl_sm_msg_free(&msg1, SM_MSG1_LEN); return gcry_error(GPG_ERR_NO_ERROR); } /* Create second message in SMP exchange. Input is Bob's secret value. * Information from earlier steps in the exchange is taken from Bob's * state. Output is a serialized mpi array whose elements correspond * to the following: * [0] = g2b, Bob's half of DH exchange to determine g2 * [1] = c2, [2] = d2, Bob's ZK proof of knowledge of g2b exponent * [3] = g3b, Bob's half of DH exchange to determine g3 * [4] = c3, [5] = d3, Bob's ZK proof of knowledge of g3b exponent * [6] = pb, [7] = qb, Bob's halves of the (Pa/Pb) and (Qa/Qb) values * [8] = cp, [9] = d5, [10] = d6, Bob's ZK proof that pb, qb formed correctly */ gcry_error_t otrl_sm_step2b(OtrlSMBobState *bstate, const unsigned char* secret, int secretlen, unsigned char **output, int* outputlen) { /* Convert the given secret to the proper form and store it */ gcry_mpi_t r, qb1, qb2; gcry_mpi_t *msg2; gcry_mpi_t secret_mpi = NULL; *output = NULL; *outputlen = 0; gcry_mpi_scan(&secret_mpi, GCRYMPI_FMT_USG, secret, secretlen, NULL); gcry_mpi_set(bstate->secret, secret_mpi); gcry_mpi_release(secret_mpi); otrl_sm_msg2_init(&msg2); gcry_mpi_powm(msg2[0], bstate->g1, bstate->x2, SM_MODULUS); otrl_sm_proof_know_log(&(msg2[1]), &(msg2[2]), bstate->g1, bstate->x2, 3); gcry_mpi_powm(msg2[3], bstate->g1, bstate->x3, SM_MODULUS); otrl_sm_proof_know_log(&(msg2[4]), &(msg2[5]), bstate->g1, bstate->x3, 4); /* Calculate P and Q values for Bob */ r = randomExponent(); qb1 = gcry_mpi_new(SM_MOD_LEN_BITS); qb2 = gcry_mpi_new(SM_MOD_LEN_BITS); gcry_mpi_powm(bstate->p, bstate->g3, r, SM_MODULUS); gcry_mpi_set(msg2[6], bstate->p); gcry_mpi_powm(qb1, bstate->g1, r, SM_MODULUS); gcry_mpi_powm(qb2, bstate->g2, bstate->secret, SM_MODULUS); gcry_mpi_mulm(bstate->q, qb1, qb2, SM_MODULUS); gcry_mpi_set(msg2[7], bstate->q); otrl_sm_proof_equal_coords(&(msg2[8]), &(msg2[9]), &(msg2[10]), bstate, r, 5); /* Convert to serialized form */ serialize_mpi_array(output, outputlen, SM_MSG2_LEN, msg2); /* Free up memory for unserialized and intermediate values */ gcry_mpi_release(r); gcry_mpi_release(qb1); gcry_mpi_release(qb2); otrl_sm_msg_free(&msg2, SM_MSG2_LEN); return gcry_error(GPG_ERR_NO_ERROR); } /* Create third message in SMP exchange. Input is a message generated * by otrl_sm_step2b. Output is a serialized mpi array whose elements * correspond to the following: * [0] = pa, [1] = qa, Alice's halves of the (Pa/Pb) and (Qa/Qb) values * [2] = cp, [3] = d5, [4] = d6, Alice's ZK proof that pa, qa formed correctly * [5] = ra, calculated as (Qa/Qb)^x3 where x3 is the exponent used in g3a * [6] = cr, [7] = d7, Alice's ZK proof that ra is formed correctly */ gcry_error_t otrl_sm_step3(OtrlSMAliceState *astate, const unsigned char* input, const int inputlen, unsigned char **output, int* outputlen) { /* Read from input to find the mpis */ gcry_mpi_t r, qa1, qa2, inv; gcry_mpi_t *msg2; gcry_mpi_t *msg3; gcry_error_t err; *output = NULL; *outputlen = 0; astate->sm_prog_state = OTRL_SMP_PROG_CHEATED; err = unserialize_mpi_array(&msg2, SM_MSG2_LEN, input, inputlen); if (err != gcry_error(GPG_ERR_NO_ERROR)) return err; if (check_group_elem(msg2[0]) || check_group_elem(msg2[3]) || check_group_elem(msg2[6]) || check_group_elem(msg2[7]) || check_expon(msg2[2]) || check_expon(msg2[5]) || check_expon(msg2[9]) || check_expon(msg2[10])) { otrl_sm_msg_free(&msg2, SM_MSG2_LEN); return gcry_error(GPG_ERR_INV_VALUE); } otrl_sm_msg3_init(&msg3); /* Store Bob's g3a value for later in the protocol */ gcry_mpi_set(astate->g3o, msg2[3]); /* Verify Bob's knowledge of discrete log proofs */ if (otrl_sm_check_know_log(msg2[1], msg2[2], astate->g1, msg2[0], 3) || otrl_sm_check_know_log(msg2[4], msg2[5], astate->g1, msg2[3], 4)) { otrl_sm_msg_free(&msg2, SM_MSG2_LEN); otrl_sm_msg_free(&msg3, SM_MSG3_LEN); return gcry_error(GPG_ERR_INV_VALUE); } /* Combine the two halves from Bob and Alice and determine g2 and g3 */ gcry_mpi_powm(astate->g2, msg2[0], astate->x2, SM_MODULUS); gcry_mpi_powm(astate->g3, msg2[3], astate->x3, SM_MODULUS); /* Verify Bob's coordinate equality proof */ if (otrl_sm_check_equal_coords(msg2[8], msg2[9], msg2[10], msg2[6], msg2[7], astate, 5)) { otrl_sm_msg_free(&msg2, SM_MSG2_LEN); otrl_sm_msg_free(&msg3, SM_MSG3_LEN); return gcry_error(GPG_ERR_INV_VALUE); } /* Calculate P and Q values for Alice */ r = randomExponent(); qa1 = gcry_mpi_new(SM_MOD_LEN_BITS); qa2 = gcry_mpi_new(SM_MOD_LEN_BITS); gcry_mpi_powm(astate->p, astate->g3, r, SM_MODULUS); gcry_mpi_set(msg3[0], astate->p); gcry_mpi_powm(qa1, astate->g1, r, SM_MODULUS); gcry_mpi_powm(qa2, astate->g2, astate->secret, SM_MODULUS); gcry_mpi_mulm(astate->q, qa1, qa2, SM_MODULUS); gcry_mpi_set(msg3[1], astate->q); otrl_sm_proof_equal_coords(&(msg3[2]), &(msg3[3]), &(msg3[4]), astate, r, 6); /* Calculate Ra and proof */ inv = gcry_mpi_new(SM_MOD_LEN_BITS); gcry_mpi_invm(inv, msg2[6], SM_MODULUS); gcry_mpi_mulm(astate->pab, astate->p, inv, SM_MODULUS); gcry_mpi_invm(inv, msg2[7], SM_MODULUS); gcry_mpi_mulm(astate->qab, astate->q, inv, SM_MODULUS); gcry_mpi_powm(msg3[5], astate->qab, astate->x3, SM_MODULUS); otrl_sm_proof_equal_logs(&(msg3[6]), &(msg3[7]), astate, 7); serialize_mpi_array(output, outputlen, SM_MSG3_LEN, msg3); otrl_sm_msg_free(&msg2, SM_MSG2_LEN); otrl_sm_msg_free(&msg3, SM_MSG3_LEN); gcry_mpi_release(r); gcry_mpi_release(qa1); gcry_mpi_release(qa2); gcry_mpi_release(inv); astate->sm_prog_state = OTRL_SMP_PROG_OK; return gcry_error(GPG_ERR_NO_ERROR); } /* Create final message in SMP exchange. Input is a message generated * by otrl_sm_step3. Output is a serialized mpi array whose elements * correspond to the following: * [0] = rb, calculated as (Qa/Qb)^x3 where x3 is the exponent used in g3b * [1] = cr, [2] = d7, Bob's ZK proof that rb is formed correctly * This method also checks if Alice and Bob's secrets were the same. If * so, it returns NO_ERROR. If the secrets differ, an INV_VALUE error is * returned instead. */ gcry_error_t otrl_sm_step4(OtrlSMBobState *bstate, const unsigned char* input, const int inputlen, unsigned char **output, int* outputlen) { /* Read from input to find the mpis */ int comp; gcry_mpi_t inv, rab; gcry_mpi_t *msg3; gcry_mpi_t *msg4; gcry_error_t err; err = unserialize_mpi_array(&msg3, SM_MSG3_LEN, input, inputlen); *output = NULL; *outputlen = 0; bstate->sm_prog_state = OTRL_SMP_PROG_CHEATED; if (err != gcry_error(GPG_ERR_NO_ERROR)) return err; otrl_sm_msg4_init(&msg4); if (check_group_elem(msg3[0]) || check_group_elem(msg3[1]) || check_group_elem(msg3[5]) || check_expon(msg3[3]) || check_expon(msg3[4]) || check_expon(msg3[7])) { otrl_sm_msg_free(&msg3, SM_MSG3_LEN); otrl_sm_msg_free(&msg4, SM_MSG4_LEN); return gcry_error(GPG_ERR_INV_VALUE); } /* Verify Alice's coordinate equality proof */ if (otrl_sm_check_equal_coords(msg3[2], msg3[3], msg3[4], msg3[0], msg3[1], bstate, 6)) { otrl_sm_msg_free(&msg3, SM_MSG3_LEN); otrl_sm_msg_free(&msg4, SM_MSG4_LEN); return gcry_error(GPG_ERR_INV_VALUE); } /* Find Pa/Pb and Qa/Qb */ inv = gcry_mpi_new(SM_MOD_LEN_BITS); gcry_mpi_invm(inv, bstate->p, SM_MODULUS); gcry_mpi_mulm(bstate->pab, msg3[0], inv, SM_MODULUS); gcry_mpi_invm(inv, bstate->q, SM_MODULUS); gcry_mpi_mulm(bstate->qab, msg3[1], inv, SM_MODULUS); /* Verify Alice's log equality proof */ if (otrl_sm_check_equal_logs(msg3[6], msg3[7], msg3[5], bstate, 7)) { otrl_sm_msg_free(&msg3, SM_MSG3_LEN); otrl_sm_msg_free(&msg4, SM_MSG4_LEN); gcry_mpi_release(inv); return gcry_error(GPG_ERR_INV_VALUE); } /* Calculate Rb and proof */ gcry_mpi_powm(msg4[0], bstate->qab, bstate->x3, SM_MODULUS); otrl_sm_proof_equal_logs(&(msg4[1]), &(msg4[2]), bstate, 8); serialize_mpi_array(output, outputlen, SM_MSG4_LEN, msg4); /* Calculate Rab and verify that secrets match */ rab = gcry_mpi_new(SM_MOD_LEN_BITS); gcry_mpi_powm(rab, msg3[5], bstate->x3, SM_MODULUS); comp = gcry_mpi_cmp(rab, bstate->pab); /* Clean up everything allocated in this step */ otrl_sm_msg_free(&msg3, SM_MSG3_LEN); otrl_sm_msg_free(&msg4, SM_MSG4_LEN); gcry_mpi_release(rab); gcry_mpi_release(inv); bstate->sm_prog_state = comp ? OTRL_SMP_PROG_FAILED : OTRL_SMP_PROG_SUCCEEDED; if (comp) return gcry_error(GPG_ERR_INV_VALUE); else return gcry_error(GPG_ERR_NO_ERROR); } /* Receives the final SMP message, which was generated in otrl_sm_step. * This method checks if Alice and Bob's secrets were the same. If * so, it returns NO_ERROR. If the secrets differ, an INV_VALUE error is * returned instead. */ gcry_error_t otrl_sm_step5(OtrlSMAliceState *astate, const unsigned char* input, const int inputlen) { /* Read from input to find the mpis */ int comp; gcry_mpi_t rab; gcry_mpi_t *msg4; gcry_error_t err; err = unserialize_mpi_array(&msg4, SM_MSG4_LEN, input, inputlen); astate->sm_prog_state = OTRL_SMP_PROG_CHEATED; if (err != gcry_error(GPG_ERR_NO_ERROR)) return err; if (check_group_elem(msg4[0]) || check_expon(msg4[2])) { otrl_sm_msg_free(&msg4, SM_MSG4_LEN); return gcry_error(GPG_ERR_INV_VALUE); } /* Verify Bob's log equality proof */ if (otrl_sm_check_equal_logs(msg4[1], msg4[2], msg4[0], astate, 8)) { otrl_sm_msg_free(&msg4, SM_MSG4_LEN); return gcry_error(GPG_ERR_INV_VALUE); } /* Calculate Rab and verify that secrets match */ rab = gcry_mpi_new(SM_MOD_LEN_BITS); gcry_mpi_powm(rab, msg4[0], astate->x3, SM_MODULUS); comp = gcry_mpi_cmp(rab, astate->pab); gcry_mpi_release(rab); otrl_sm_msg_free(&msg4, SM_MSG4_LEN); astate->sm_prog_state = comp ? OTRL_SMP_PROG_FAILED : OTRL_SMP_PROG_SUCCEEDED; if (comp) return gcry_error(GPG_ERR_INV_VALUE); else return gcry_error(GPG_ERR_NO_ERROR); } ������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/auth.h�����������������������������������������������������������������������������0000664�0001750�0001750�00000014645�12637277541�011664� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2012 Ian Goldberg, Rob Smits, Chris Alexander, * Willy Lew, Lisa Du, Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __AUTH_H__ #define __AUTH_H__ #include <gcrypt.h> #include <time.h> #include "dh.h" typedef enum { OTRL_AUTHSTATE_NONE, OTRL_AUTHSTATE_AWAITING_DHKEY, OTRL_AUTHSTATE_AWAITING_REVEALSIG, OTRL_AUTHSTATE_AWAITING_SIG, OTRL_AUTHSTATE_V1_SETUP } OtrlAuthState; typedef struct { OtrlAuthState authstate; /* Our state */ struct context *context; /* The context which points to us */ DH_keypair our_dh; /* Our D-H key */ unsigned int our_keyid; /* ...and its keyid */ unsigned char *encgx; /* The encrypted value of g^x */ size_t encgx_len; /* ...and its length */ unsigned char r[16]; /* The encryption key */ unsigned char hashgx[32]; /* SHA256(g^x) */ gcry_mpi_t their_pub; /* Their D-H public key */ unsigned int their_keyid; /* ...and its keyid */ gcry_cipher_hd_t enc_c, enc_cp; /* c and c' encryption keys */ gcry_md_hd_t mac_m1, mac_m1p; /* m1 and m1' MAC keys */ gcry_md_hd_t mac_m2, mac_m2p; /* m2 and m2' MAC keys */ unsigned char their_fingerprint[20]; /* The fingerprint of their long-term signing key */ int initiated; /* Did we initiate this authentication? */ unsigned int protocol_version; /* The protocol version number used to authenticate. */ unsigned char secure_session_id[20]; /* The secure session id */ size_t secure_session_id_len; /* And its actual length, which may be either 20 (for v1) or 8 (for v2) */ OtrlSessionIdHalf session_id_half; /* Which half of the session id gets shown in bold */ char *lastauthmsg; /* The last auth message (base-64 encoded) we sent, in case we need to retransmit it. */ time_t commit_sent_time; /* The time we last sent the lastauthmsg, if it was a COMMIT message, and this is a master context. 0 otherwise. */ } OtrlAuthInfo; #include "privkey-t.h" /* * Initialize the fields of an OtrlAuthInfo (already allocated). */ void otrl_auth_new(struct context *context); /* * Clear the fields of an OtrlAuthInfo (but leave it allocated). */ void otrl_auth_clear(OtrlAuthInfo *auth); /* * Start a fresh AKE (version 2 or 3) using the given OtrlAuthInfo. Generate * a fresh DH keypair to use. If no error is returned, the message to * transmit will be contained in auth->lastauthmsg. */ gcry_error_t otrl_auth_start_v23(OtrlAuthInfo *auth, int version); /* * Handle an incoming D-H Commit Message. If no error is returned, the * message to send will be left in auth->lastauthmsg. Generate a fresh * keypair to use. */ gcry_error_t otrl_auth_handle_commit(OtrlAuthInfo *auth, const char *commitmsg, int version); /* * Handle an incoming D-H Key Message. If no error is returned, and * *havemsgp is 1, the message to sent will be left in auth->lastauthmsg. * Use the given private authentication key to sign messages. */ gcry_error_t otrl_auth_handle_key(OtrlAuthInfo *auth, const char *keymsg, int *havemsgp, OtrlPrivKey *privkey); /* * Handle an incoming Reveal Signature Message. If no error is * returned, and *havemsgp is 1, the message to be sent will be left in * auth->lastauthmsg. Use the given private authentication key to sign * messages. Call the auth_succeeded callback if authentication is * successful. */ gcry_error_t otrl_auth_handle_revealsig(OtrlAuthInfo *auth, const char *revealmsg, int *havemsgp, OtrlPrivKey *privkey, gcry_error_t (*auth_succeeded)(const OtrlAuthInfo *auth, void *asdata), void *asdata); /* * Handle an incoming Signature Message. If no error is returned, and * *havemsgp is 1, the message to be sent will be left in * auth->lastauthmsg. Call the auth_succeeded callback if * authentication is successful. */ gcry_error_t otrl_auth_handle_signature(OtrlAuthInfo *auth, const char *sigmsg, int *havemsgp, gcry_error_t (*auth_succeeded)(const OtrlAuthInfo *auth, void *asdata), void *asdata); /* * Start a fresh AKE (version 1) using the given OtrlAuthInfo. If * our_dh is NULL, generate a fresh DH keypair to use. Otherwise, use a * copy of the one passed (with the given keyid). Use the given private * key to sign the message. If no error is returned, the message to * transmit will be contained in auth->lastauthmsg. */ gcry_error_t otrl_auth_start_v1(OtrlAuthInfo *auth, DH_keypair *our_dh, unsigned int our_keyid, OtrlPrivKey *privkey); /* * Handle an incoming v1 Key Exchange Message. If no error is returned, * and *havemsgp is 1, the message to be sent will be left in * auth->lastauthmsg. Use the given private authentication key to sign * messages. Call the auth_secceeded callback if authentication is * successful. If non-NULL, use a copy of the given D-H keypair, with * the given keyid. */ gcry_error_t otrl_auth_handle_v1_key_exchange(OtrlAuthInfo *auth, const char *keyexchmsg, int *havemsgp, OtrlPrivKey *privkey, DH_keypair *our_dh, unsigned int our_keyid, gcry_error_t (*auth_succeeded)(const OtrlAuthInfo *auth, void *asdata), void *asdata); /* * Copy relevant information from the master OtrlAuthInfo to an * instance OtrlAuthInfo in response to a D-H Key with a new * instance. The fields copied will depend on the state of the * master auth. */ void otrl_auth_copy_on_key(OtrlAuthInfo *m_auth, OtrlAuthInfo *auth); #endif �������������������������������������������������������������������������������������������libotr-4.1.1/src/context_priv.c���������������������������������������������������������������������0000664�0001750�0001750�00000006341�12637277541�013434� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Willy Lew, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdlib.h> #include <assert.h> /* libgcrypt headers */ #include <gcrypt.h> /* libotr headers */ #include "context_priv.h" /* Create a new private connection context */ ConnContextPriv *otrl_context_priv_new() { ConnContextPriv *context_priv; context_priv = malloc(sizeof(*context_priv)); assert(context_priv != NULL); context_priv->fragment = NULL; context_priv->fragment_len = 0; context_priv->fragment_n = 0; context_priv->fragment_k = 0; context_priv->numsavedkeys = 0; context_priv->saved_mac_keys = NULL; context_priv->generation = 0; context_priv->lastsent = 0; context_priv->lastmessage = NULL; context_priv->lastrecv = 0; context_priv->may_retransmit = 0; context_priv->their_keyid = 0; context_priv->their_y = NULL; context_priv->their_old_y = NULL; context_priv->our_keyid = 0; context_priv->our_dh_key.groupid = 0; context_priv->our_dh_key.priv = NULL; context_priv->our_dh_key.pub = NULL; context_priv->our_old_dh_key.groupid = 0; context_priv->our_old_dh_key.priv = NULL; context_priv->our_old_dh_key.pub = NULL; otrl_dh_session_blank(&(context_priv->sesskeys[0][0])); otrl_dh_session_blank(&(context_priv->sesskeys[0][1])); otrl_dh_session_blank(&(context_priv->sesskeys[1][0])); otrl_dh_session_blank(&(context_priv->sesskeys[1][1])); return context_priv; } /* Resets the appropriate variables when a context * is being force finished */ void otrl_context_priv_force_finished(ConnContextPriv *context_priv) { free(context_priv->fragment); context_priv->fragment = NULL; context_priv->fragment_len = 0; context_priv->fragment_n = 0; context_priv->fragment_k = 0; context_priv->numsavedkeys = 0; free(context_priv->saved_mac_keys); context_priv->saved_mac_keys = NULL; gcry_free(context_priv->lastmessage); context_priv->lastmessage = NULL; context_priv->may_retransmit = 0; context_priv->their_keyid = 0; gcry_mpi_release(context_priv->their_y); context_priv->their_y = NULL; gcry_mpi_release(context_priv->their_old_y); context_priv->their_old_y = NULL; context_priv->our_keyid = 0; otrl_dh_keypair_free(&(context_priv->our_dh_key)); otrl_dh_keypair_free(&(context_priv->our_old_dh_key)); otrl_dh_session_free(&(context_priv->sesskeys[0][0])); otrl_dh_session_free(&(context_priv->sesskeys[0][1])); otrl_dh_session_free(&(context_priv->sesskeys[1][0])); otrl_dh_session_free(&(context_priv->sesskeys[1][1])); } �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/dh.c�������������������������������������������������������������������������������0000664�0001750�0001750�00000033506�12637277541�011306� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2014 Ian Goldberg, David Goulet, Rob Smits, * Chris Alexander, Willy Lew, Lisa Du, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdlib.h> /* libgcrypt headers */ #include <gcrypt.h> /* libotr headers */ #include "dh.h" static const char* DH1536_MODULUS_S = "0x" "FFFFFFFFFFFFFFFFC90FDAA22168C234C4C6628B80DC1CD1" "29024E088A67CC74020BBEA63B139B22514A08798E3404DD" "EF9519B3CD3A431B302B0A6DF25F14374FE1356D6D51C245" "E485B576625E7EC6F44C42E9A637ED6B0BFF5CB6F406B7ED" "EE386BFB5A899FA5AE9F24117C4B1FE649286651ECE45B3D" "C2007CB8A163BF0598DA48361C55D39A69163FA8FD24CF5F" "83655D23DCA3AD961C62F356208552BB9ED529077096966D" "670C354E4ABC9804F1746C08CA237327FFFFFFFFFFFFFFFF"; static const char *DH1536_GENERATOR_S = "0x02"; static const int DH1536_MOD_LEN_BITS = 1536; static const int DH1536_MOD_LEN_BYTES = 192; static gcry_mpi_t DH1536_MODULUS = NULL; static gcry_mpi_t DH1536_MODULUS_MINUS_2 = NULL; static gcry_mpi_t DH1536_GENERATOR = NULL; /* * Call this once, at plugin load time. It sets up the modulus and * generator MPIs. */ void otrl_dh_init(void) { gcry_mpi_scan(&DH1536_MODULUS, GCRYMPI_FMT_HEX, (const unsigned char *)DH1536_MODULUS_S, 0, NULL); gcry_mpi_scan(&DH1536_GENERATOR, GCRYMPI_FMT_HEX, (const unsigned char *)DH1536_GENERATOR_S, 0, NULL); DH1536_MODULUS_MINUS_2 = gcry_mpi_new(DH1536_MOD_LEN_BITS); gcry_mpi_sub_ui(DH1536_MODULUS_MINUS_2, DH1536_MODULUS, 2); } /* * Initialize the fields of a DH keypair. */ void otrl_dh_keypair_init(DH_keypair *kp) { kp->groupid = 0; kp->priv = NULL; kp->pub = NULL; } /* * Copy a DH_keypair. */ void otrl_dh_keypair_copy(DH_keypair *dst, const DH_keypair *src) { dst->groupid = src->groupid; dst->priv = gcry_mpi_copy(src->priv); dst->pub = gcry_mpi_copy(src->pub); } /* * Deallocate the contents of a DH_keypair (but not the DH_keypair * itself) */ void otrl_dh_keypair_free(DH_keypair *kp) { gcry_mpi_release(kp->priv); gcry_mpi_release(kp->pub); kp->priv = NULL; kp->pub = NULL; } /* * Generate a DH keypair for a specified group. */ gcry_error_t otrl_dh_gen_keypair(unsigned int groupid, DH_keypair *kp) { unsigned char *secbuf = NULL; gcry_mpi_t privkey = NULL; if (groupid != DH1536_GROUP_ID) { /* Invalid group id */ return gcry_error(GPG_ERR_INV_VALUE); } /* Generate the secret key: a random 320-bit value */ secbuf = gcry_random_bytes_secure(40, GCRY_STRONG_RANDOM); gcry_mpi_scan(&privkey, GCRYMPI_FMT_USG, secbuf, 40, NULL); gcry_free(secbuf); kp->groupid = groupid; kp->priv = privkey; kp->pub = gcry_mpi_new(DH1536_MOD_LEN_BITS); gcry_mpi_powm(kp->pub, DH1536_GENERATOR, privkey, DH1536_MODULUS); return gcry_error(GPG_ERR_NO_ERROR); } /* * Construct session keys from a DH keypair and someone else's public * key. */ gcry_error_t otrl_dh_session(DH_sesskeys *sess, const DH_keypair *kp, gcry_mpi_t y) { gcry_mpi_t gab; size_t gablen; unsigned char *gabdata; unsigned char *hashdata; unsigned char sendbyte, rcvbyte; gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); otrl_dh_session_blank(sess); if (kp->groupid != DH1536_GROUP_ID) { /* Invalid group id */ return gcry_error(GPG_ERR_INV_VALUE); } /* Calculate the shared secret MPI */ gab = gcry_mpi_snew(DH1536_MOD_LEN_BITS); gcry_mpi_powm(gab, y, kp->priv, DH1536_MODULUS); /* Output it in the right format */ gcry_mpi_print(GCRYMPI_FMT_USG, NULL, 0, &gablen, gab); gabdata = gcry_malloc_secure(gablen + 5); if (!gabdata) { gcry_mpi_release(gab); return gcry_error(GPG_ERR_ENOMEM); } gabdata[1] = (gablen >> 24) & 0xff; gabdata[2] = (gablen >> 16) & 0xff; gabdata[3] = (gablen >> 8) & 0xff; gabdata[4] = gablen & 0xff; gcry_mpi_print(GCRYMPI_FMT_USG, gabdata+5, gablen, NULL, gab); gcry_mpi_release(gab); hashdata = gcry_malloc_secure(20); if (!hashdata) { gcry_free(gabdata); return gcry_error(GPG_ERR_ENOMEM); } /* Are we the "high" or "low" end of the connection? */ if ( gcry_mpi_cmp(kp->pub, y) > 0 ) { sendbyte = 0x01; rcvbyte = 0x02; } else { sendbyte = 0x02; rcvbyte = 0x01; } /* Calculate the sending encryption key */ gabdata[0] = sendbyte; gcry_md_hash_buffer(GCRY_MD_SHA1, hashdata, gabdata, gablen+5); err = gcry_cipher_open(&(sess->sendenc), GCRY_CIPHER_AES, GCRY_CIPHER_MODE_CTR, GCRY_CIPHER_SECURE); if (err) goto err; err = gcry_cipher_setkey(sess->sendenc, hashdata, 16); if (err) goto err; /* Calculate the sending MAC key */ gcry_md_hash_buffer(GCRY_MD_SHA1, sess->sendmackey, hashdata, 16); err = gcry_md_open(&(sess->sendmac), GCRY_MD_SHA1, GCRY_MD_FLAG_HMAC); if (err) goto err; err = gcry_md_setkey(sess->sendmac, sess->sendmackey, 20); if (err) goto err; /* Calculate the receiving encryption key */ gabdata[0] = rcvbyte; gcry_md_hash_buffer(GCRY_MD_SHA1, hashdata, gabdata, gablen+5); err = gcry_cipher_open(&(sess->rcvenc), GCRY_CIPHER_AES, GCRY_CIPHER_MODE_CTR, GCRY_CIPHER_SECURE); if (err) goto err; err = gcry_cipher_setkey(sess->rcvenc, hashdata, 16); if (err) goto err; /* Calculate the receiving MAC key (and save it in the DH_sesskeys * struct, so we can reveal it later) */ gcry_md_hash_buffer(GCRY_MD_SHA1, sess->rcvmackey, hashdata, 16); err = gcry_md_open(&(sess->rcvmac), GCRY_MD_SHA1, GCRY_MD_FLAG_HMAC); if (err) goto err; err = gcry_md_setkey(sess->rcvmac, sess->rcvmackey, 20); if (err) goto err; /* Calculate the extra key (used if applications wish to extract a * symmetric key for transferring files, or something like that) */ gabdata[0] = 0xff; gcry_md_hash_buffer(GCRY_MD_SHA256, sess->extrakey, gabdata, gablen+5); gcry_free(gabdata); gcry_free(hashdata); return gcry_error(GPG_ERR_NO_ERROR); err: otrl_dh_session_free(sess); gcry_free(gabdata); gcry_free(hashdata); return err; } /* * Compute the secure session id, two encryption keys, and four MAC keys * given our DH key and their DH public key. */ gcry_error_t otrl_dh_compute_v2_auth_keys(const DH_keypair *our_dh, gcry_mpi_t their_pub, unsigned char *sessionid, size_t *sessionidlenp, gcry_cipher_hd_t *enc_c, gcry_cipher_hd_t *enc_cp, gcry_md_hd_t *mac_m1, gcry_md_hd_t *mac_m1p, gcry_md_hd_t *mac_m2, gcry_md_hd_t *mac_m2p) { gcry_mpi_t s; size_t slen; unsigned char *sdata; unsigned char *hashdata; unsigned char ctr[16]; gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); *enc_c = NULL; *enc_cp = NULL; *mac_m1 = NULL; *mac_m1p = NULL; *mac_m2 = NULL; *mac_m2p = NULL; memset(ctr, 0, 16); if (our_dh->groupid != DH1536_GROUP_ID) { /* Invalid group id */ return gcry_error(GPG_ERR_INV_VALUE); } /* Check that their_pub is in range */ if (gcry_mpi_cmp_ui(their_pub, 2) < 0 || gcry_mpi_cmp(their_pub, DH1536_MODULUS_MINUS_2) > 0) { /* Invalid pubkey */ return gcry_error(GPG_ERR_INV_VALUE); } /* Calculate the shared secret MPI */ s = gcry_mpi_snew(DH1536_MOD_LEN_BITS); gcry_mpi_powm(s, their_pub, our_dh->priv, DH1536_MODULUS); /* Output it in the right format */ gcry_mpi_print(GCRYMPI_FMT_USG, NULL, 0, &slen, s); sdata = gcry_malloc_secure(slen + 5); if (!sdata) { gcry_mpi_release(s); return gcry_error(GPG_ERR_ENOMEM); } sdata[1] = (slen >> 24) & 0xff; sdata[2] = (slen >> 16) & 0xff; sdata[3] = (slen >> 8) & 0xff; sdata[4] = slen & 0xff; gcry_mpi_print(GCRYMPI_FMT_USG, sdata+5, slen, NULL, s); gcry_mpi_release(s); /* Calculate the session id */ hashdata = gcry_malloc_secure(32); if (!hashdata) { gcry_free(sdata); return gcry_error(GPG_ERR_ENOMEM); } sdata[0] = 0x00; gcry_md_hash_buffer(GCRY_MD_SHA256, hashdata, sdata, slen+5); memmove(sessionid, hashdata, 8); *sessionidlenp = 8; /* Calculate the encryption keys */ sdata[0] = 0x01; gcry_md_hash_buffer(GCRY_MD_SHA256, hashdata, sdata, slen+5); err = gcry_cipher_open(enc_c, GCRY_CIPHER_AES, GCRY_CIPHER_MODE_CTR, GCRY_CIPHER_SECURE); if (err) goto err; err = gcry_cipher_setkey(*enc_c, hashdata, 16); if (err) goto err; err = gcry_cipher_setctr(*enc_c, ctr, 16); if (err) goto err; err = gcry_cipher_open(enc_cp, GCRY_CIPHER_AES, GCRY_CIPHER_MODE_CTR, GCRY_CIPHER_SECURE); if (err) goto err; err = gcry_cipher_setkey(*enc_cp, hashdata+16, 16); if (err) goto err; err = gcry_cipher_setctr(*enc_cp, ctr, 16); if (err) goto err; /* Calculate the MAC keys */ sdata[0] = 0x02; gcry_md_hash_buffer(GCRY_MD_SHA256, hashdata, sdata, slen+5); err = gcry_md_open(mac_m1, GCRY_MD_SHA256, GCRY_MD_FLAG_HMAC); if (err) goto err; err = gcry_md_setkey(*mac_m1, hashdata, 32); if (err) goto err; sdata[0] = 0x03; gcry_md_hash_buffer(GCRY_MD_SHA256, hashdata, sdata, slen+5); err = gcry_md_open(mac_m2, GCRY_MD_SHA256, GCRY_MD_FLAG_HMAC); if (err) goto err; err = gcry_md_setkey(*mac_m2, hashdata, 32); if (err) goto err; sdata[0] = 0x04; gcry_md_hash_buffer(GCRY_MD_SHA256, hashdata, sdata, slen+5); err = gcry_md_open(mac_m1p, GCRY_MD_SHA256, GCRY_MD_FLAG_HMAC); if (err) goto err; err = gcry_md_setkey(*mac_m1p, hashdata, 32); if (err) goto err; sdata[0] = 0x05; gcry_md_hash_buffer(GCRY_MD_SHA256, hashdata, sdata, slen+5); err = gcry_md_open(mac_m2p, GCRY_MD_SHA256, GCRY_MD_FLAG_HMAC); if (err) goto err; err = gcry_md_setkey(*mac_m2p, hashdata, 32); if (err) goto err; gcry_free(sdata); gcry_free(hashdata); return gcry_error(GPG_ERR_NO_ERROR); err: gcry_cipher_close(*enc_c); gcry_cipher_close(*enc_cp); gcry_md_close(*mac_m1); gcry_md_close(*mac_m1p); gcry_md_close(*mac_m2); gcry_md_close(*mac_m2p); *enc_c = NULL; *enc_cp = NULL; *mac_m1 = NULL; *mac_m1p = NULL; *mac_m2 = NULL; *mac_m2p = NULL; gcry_free(sdata); gcry_free(hashdata); return err; } /* * Compute the secure session id, given our DH key and their DH public * key. */ gcry_error_t otrl_dh_compute_v1_session_id(const DH_keypair *our_dh, gcry_mpi_t their_pub, unsigned char *sessionid, size_t *sessionidlenp, OtrlSessionIdHalf *halfp) { gcry_mpi_t s; size_t slen; unsigned char *sdata; unsigned char *hashdata; if (our_dh->groupid != DH1536_GROUP_ID) { /* Invalid group id */ return gcry_error(GPG_ERR_INV_VALUE); } /* Check that their_pub is in range */ if (gcry_mpi_cmp_ui(their_pub, 2) < 0 || gcry_mpi_cmp(their_pub, DH1536_MODULUS_MINUS_2) > 0) { /* Invalid pubkey */ return gcry_error(GPG_ERR_INV_VALUE); } /* Calculate the shared secret MPI */ s = gcry_mpi_snew(DH1536_MOD_LEN_BITS); gcry_mpi_powm(s, their_pub, our_dh->priv, DH1536_MODULUS); /* Output it in the right format */ gcry_mpi_print(GCRYMPI_FMT_USG, NULL, 0, &slen, s); sdata = gcry_malloc_secure(slen + 5); if (!sdata) { gcry_mpi_release(s); return gcry_error(GPG_ERR_ENOMEM); } sdata[1] = (slen >> 24) & 0xff; sdata[2] = (slen >> 16) & 0xff; sdata[3] = (slen >> 8) & 0xff; sdata[4] = slen & 0xff; gcry_mpi_print(GCRYMPI_FMT_USG, sdata+5, slen, NULL, s); gcry_mpi_release(s); /* Calculate the session id */ hashdata = gcry_malloc_secure(20); if (!hashdata) { gcry_free(sdata); return gcry_error(GPG_ERR_ENOMEM); } sdata[0] = 0x00; gcry_md_hash_buffer(GCRY_MD_SHA1, hashdata, sdata, slen+5); memmove(sessionid, hashdata, 20); *sessionidlenp = 20; /* Which half should be bold? */ if (gcry_mpi_cmp(our_dh->pub, their_pub) > 0) { *halfp = OTRL_SESSIONID_SECOND_HALF_BOLD; } else { *halfp = OTRL_SESSIONID_FIRST_HALF_BOLD; } gcry_free(hashdata); gcry_free(sdata); return gcry_error(GPG_ERR_NO_ERROR); } /* * Deallocate the contents of a DH_sesskeys (but not the DH_sesskeys * itself) */ void otrl_dh_session_free(DH_sesskeys *sess) { gcry_cipher_close(sess->sendenc); gcry_cipher_close(sess->rcvenc); gcry_md_close(sess->sendmac); gcry_md_close(sess->rcvmac); otrl_dh_session_blank(sess); } /* * Blank out the contents of a DH_sesskeys (without releasing it) */ void otrl_dh_session_blank(DH_sesskeys *sess) { sess->sendenc = NULL; sess->sendmac = NULL; sess->rcvenc = NULL; sess->rcvmac = NULL; memset(sess->sendctr, 0, 16); memset(sess->rcvctr, 0, 16); memset(sess->sendmackey, 0, 20); memset(sess->rcvmackey, 0, 20); sess->sendmacused = 0; sess->rcvmacused = 0; memset(sess->extrakey, 0, OTRL_EXTRAKEY_BYTES); } /* Increment the top half of a counter block */ void otrl_dh_incctr(unsigned char *ctr) { int i; for (i=8;i;--i) { if (++ctr[i-1]) break; } } /* Compare two counter values (8 bytes each). Return 0 if ctr1 == ctr2, * < 0 if ctr1 < ctr2 (as unsigned 64-bit values), > 0 if ctr1 > ctr2. */ int otrl_dh_cmpctr(const unsigned char *ctr1, const unsigned char *ctr2) { int i; for (i=0;i<8;++i) { int c = ctr1[i] - ctr2[i]; if (c) return c; } return 0; } ������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/userstate.h������������������������������������������������������������������������0000664�0001750�0001750�00000003555�12637277541�012740� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2012 Ian Goldberg, Rob Smits, Chris Alexander, * Willy Lew, Lisa Du, Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __USERSTATE_H__ #define __USERSTATE_H__ typedef struct s_OtrlUserState* OtrlUserState; #include "instag.h" #include "context.h" #include "privkey-t.h" struct s_OtrlUserState { ConnContext *context_root; OtrlPrivKey *privkey_root; OtrlInsTag *instag_root; OtrlPendingPrivKey *pending_root; int timer_running; }; /* Create a new OtrlUserState. Most clients will only need one of * these. A OtrlUserState encapsulates the list of known fingerprints * and the list of private keys; if you have separate files for these * things for (say) different users, use different OtrlUserStates. If * you've got only one user, with multiple accounts all stored together * in the same fingerprint store and privkey store files, use just one * OtrlUserState. */ OtrlUserState otrl_userstate_create(void); /* Free a OtrlUserState. If you have a timer running for this userstate, stop it before freeing the userstate. */ void otrl_userstate_free(OtrlUserState us); #endif ���������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/message.h��������������������������������������������������������������������������0000664�0001750�0001750�00000046746�12637277541�012356� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2014 Ian Goldberg, David Goulet, Rob Smits, * Chris Alexander, Willy Lew, Lisa Du, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __MESSAGE_H__ #define __MESSAGE_H__ #define OTR_ERROR_PREFIX "?OTR Error: " typedef enum { OTRL_ERRCODE_NONE, OTRL_ERRCODE_ENCRYPTION_ERROR, OTRL_ERRCODE_MSG_NOT_IN_PRIVATE, OTRL_ERRCODE_MSG_UNREADABLE, OTRL_ERRCODE_MSG_MALFORMED, } OtrlErrorCode; /* These define the events used to indicate status of SMP to the UI */ typedef enum { OTRL_SMPEVENT_NONE, OTRL_SMPEVENT_ERROR, OTRL_SMPEVENT_ABORT, OTRL_SMPEVENT_CHEATED, OTRL_SMPEVENT_ASK_FOR_ANSWER, OTRL_SMPEVENT_ASK_FOR_SECRET, OTRL_SMPEVENT_IN_PROGRESS, OTRL_SMPEVENT_SUCCESS, OTRL_SMPEVENT_FAILURE } OtrlSMPEvent; /* These define the events used to indicate the messages that need * to be sent */ typedef enum { OTRL_MSGEVENT_NONE, OTRL_MSGEVENT_ENCRYPTION_REQUIRED, OTRL_MSGEVENT_ENCRYPTION_ERROR, OTRL_MSGEVENT_CONNECTION_ENDED, OTRL_MSGEVENT_SETUP_ERROR, OTRL_MSGEVENT_MSG_REFLECTED, OTRL_MSGEVENT_MSG_RESENT, OTRL_MSGEVENT_RCVDMSG_NOT_IN_PRIVATE, OTRL_MSGEVENT_RCVDMSG_UNREADABLE, OTRL_MSGEVENT_RCVDMSG_MALFORMED, OTRL_MSGEVENT_LOG_HEARTBEAT_RCVD, OTRL_MSGEVENT_LOG_HEARTBEAT_SENT, OTRL_MSGEVENT_RCVDMSG_GENERAL_ERR, OTRL_MSGEVENT_RCVDMSG_UNENCRYPTED, OTRL_MSGEVENT_RCVDMSG_UNRECOGNIZED, OTRL_MSGEVENT_RCVDMSG_FOR_OTHER_INSTANCE } OtrlMessageEvent; typedef enum { OTRL_NOTIFY_ERROR, OTRL_NOTIFY_WARNING, OTRL_NOTIFY_INFO } OtrlNotifyLevel; typedef enum { OTRL_CONVERT_SENDING, OTRL_CONVERT_RECEIVING } OtrlConvertType; typedef struct s_OtrlMessageAppOps { /* Return the OTR policy for the given context. */ OtrlPolicy (*policy)(void *opdata, ConnContext *context); /* Create a private key for the given accountname/protocol if * desired. */ void (*create_privkey)(void *opdata, const char *accountname, const char *protocol); /* Report whether you think the given user is online. Return 1 if * you think he is, 0 if you think he isn't, -1 if you're not sure. * * If you return 1, messages such as heartbeats or other * notifications may be sent to the user, which could result in "not * logged in" errors if you're wrong. */ int (*is_logged_in)(void *opdata, const char *accountname, const char *protocol, const char *recipient); /* Send the given IM to the given recipient from the given * accountname/protocol. */ void (*inject_message)(void *opdata, const char *accountname, const char *protocol, const char *recipient, const char *message); /* When the list of ConnContexts changes (including a change in * state), this is called so the UI can be updated. */ void (*update_context_list)(void *opdata); /* A new fingerprint for the given user has been received. */ void (*new_fingerprint)(void *opdata, OtrlUserState us, const char *accountname, const char *protocol, const char *username, unsigned char fingerprint[20]); /* The list of known fingerprints has changed. Write them to disk. */ void (*write_fingerprints)(void *opdata); /* A ConnContext has entered a secure state. */ void (*gone_secure)(void *opdata, ConnContext *context); /* A ConnContext has left a secure state. */ void (*gone_insecure)(void *opdata, ConnContext *context); /* We have completed an authentication, using the D-H keys we * already knew. is_reply indicates whether we initiated the AKE. */ void (*still_secure)(void *opdata, ConnContext *context, int is_reply); /* Find the maximum message size supported by this protocol. */ int (*max_message_size)(void *opdata, ConnContext *context); /* Return a newly allocated string containing a human-friendly * representation for the given account */ const char *(*account_name)(void *opdata, const char *account, const char *protocol); /* Deallocate a string returned by account_name */ void (*account_name_free)(void *opdata, const char *account_name); /* We received a request from the buddy to use the current "extra" * symmetric key. The key will be passed in symkey, of length * OTRL_EXTRAKEY_BYTES. The requested use, as well as use-specific * data will be passed so that the applications can communicate other * information (some id for the data transfer, for example). */ void (*received_symkey)(void *opdata, ConnContext *context, unsigned int use, const unsigned char *usedata, size_t usedatalen, const unsigned char *symkey); /* Return a string according to the error event. This string will then * be concatenated to an OTR header to produce an OTR protocol error * message. The following are the possible error events: * - OTRL_ERRCODE_ENCRYPTION_ERROR * occured while encrypting a message * - OTRL_ERRCODE_MSG_NOT_IN_PRIVATE * sent encrypted message to somebody who is not in * a mutual OTR session * - OTRL_ERRCODE_MSG_UNREADABLE * sent an unreadable encrypted message * - OTRL_ERRCODE_MSG_MALFORMED * message sent is malformed */ const char *(*otr_error_message)(void *opdata, ConnContext *context, OtrlErrorCode err_code); /* Deallocate a string returned by otr_error_message */ void (*otr_error_message_free)(void *opdata, const char *err_msg); /* Return a string that will be prefixed to any resent message. If this * function is not provided by the application then the default prefix, * "[resent]", will be used. * */ const char *(*resent_msg_prefix)(void *opdata, ConnContext *context); /* Deallocate a string returned by resent_msg_prefix */ void (*resent_msg_prefix_free)(void *opdata, const char *prefix); /* Update the authentication UI with respect to SMP events * These are the possible events: * - OTRL_SMPEVENT_ASK_FOR_SECRET * prompt the user to enter a shared secret. The sender application * should call otrl_message_initiate_smp, passing NULL as the question. * When the receiver application resumes the SM protocol by calling * otrl_message_respond_smp with the secret answer. * - OTRL_SMPEVENT_ASK_FOR_ANSWER * (same as OTRL_SMPEVENT_ASK_FOR_SECRET but sender calls * otrl_message_initiate_smp_q instead) * - OTRL_SMPEVENT_CHEATED * abort the current auth and update the auth progress dialog * with progress_percent. otrl_message_abort_smp should be called to * stop the SM protocol. * - OTRL_SMPEVENT_INPROGRESS and * OTRL_SMPEVENT_SUCCESS and * OTRL_SMPEVENT_FAILURE and * OTRL_SMPEVENT_ABORT * update the auth progress dialog with progress_percent * - OTRL_SMPEVENT_ERROR * (same as OTRL_SMPEVENT_CHEATED) * */ void (*handle_smp_event)(void *opdata, OtrlSMPEvent smp_event, ConnContext *context, unsigned short progress_percent, char *question); /* Handle and send the appropriate message(s) to the sender/recipient * depending on the message events. All the events only require an opdata, * the event, and the context. The message and err will be NULL except for * some events (see below). The possible events are: * - OTRL_MSGEVENT_ENCRYPTION_REQUIRED * Our policy requires encryption but we are trying to send * an unencrypted message out. * - OTRL_MSGEVENT_ENCRYPTION_ERROR * An error occured while encrypting a message and the message * was not sent. * - OTRL_MSGEVENT_CONNECTION_ENDED * Message has not been sent because our buddy has ended the * private conversation. We should either close the connection, * or refresh it. * - OTRL_MSGEVENT_SETUP_ERROR * A private conversation could not be set up. A gcry_error_t * will be passed. * - OTRL_MSGEVENT_MSG_REFLECTED * Received our own OTR messages. * - OTRL_MSGEVENT_MSG_RESENT * The previous message was resent. * - OTRL_MSGEVENT_RCVDMSG_NOT_IN_PRIVATE * Received an encrypted message but cannot read * it because no private connection is established yet. * - OTRL_MSGEVENT_RCVDMSG_UNREADABLE * Cannot read the received message. * - OTRL_MSGEVENT_RCVDMSG_MALFORMED * The message received contains malformed data. * - OTRL_MSGEVENT_LOG_HEARTBEAT_RCVD * Received a heartbeat. * - OTRL_MSGEVENT_LOG_HEARTBEAT_SENT * Sent a heartbeat. * - OTRL_MSGEVENT_RCVDMSG_GENERAL_ERR * Received a general OTR error. The argument 'message' will * also be passed and it will contain the OTR error message. * - OTRL_MSGEVENT_RCVDMSG_UNENCRYPTED * Received an unencrypted message. The argument 'message' will * also be passed and it will contain the plaintext message. * - OTRL_MSGEVENT_RCVDMSG_UNRECOGNIZED * Cannot recognize the type of OTR message received. * - OTRL_MSGEVENT_RCVDMSG_FOR_OTHER_INSTANCE * Received and discarded a message intended for another instance. */ void (*handle_msg_event)(void *opdata, OtrlMessageEvent msg_event, ConnContext *context, const char *message, gcry_error_t err); /* Create a instance tag for the given accountname/protocol if * desired. */ void (*create_instag)(void *opdata, const char *accountname, const char *protocol); /* Called immediately before a data message is encrypted, and after a data * message is decrypted. The OtrlConvertType parameter has the value * OTRL_CONVERT_SENDING or OTRL_CONVERT_RECEIVING to differentiate these * cases. */ void (*convert_msg)(void *opdata, ConnContext *context, OtrlConvertType convert_type, char ** dest, const char *src); /* Deallocate a string returned by convert_msg. */ void (*convert_free)(void *opdata, ConnContext *context, char *dest); /* When timer_control is called, turn off any existing periodic * timer. * * Additionally, if interval > 0, set a new periodic timer * to go off every interval seconds. When that timer fires, you * must call otrl_message_poll(userstate, uiops, uiopdata); from the * main libotr thread. * * The timing does not have to be exact; this timer is used to * provide forward secrecy by cleaning up stale private state that * may otherwise stick around in memory. Note that the * timer_control callback may be invoked from otrl_message_poll * itself, possibly to indicate that interval == 0 (that is, that * there's no more periodic work to be done at this time). * * If you set this callback to NULL, then you must ensure that your * application calls otrl_message_poll(userstate, uiops, uiopdata); * from the main libotr thread every definterval seconds (where * definterval can be obtained by calling * definterval = otrl_message_poll_get_default_interval(userstate); * right after creating the userstate). The advantage of * implementing the timer_control callback is that the timer can be * turned on by libotr only when it's needed. * * It is not a problem (except for a minor performance hit) to call * otrl_message_poll more often than requested, whether * timer_control is implemented or not. * * If you fail to implement the timer_control callback, and also * fail to periodically call otrl_message_poll, then you open your * users to a possible forward secrecy violation: an attacker that * compromises the user's computer may be able to decrypt a handful * of long-past messages (the first messages of an OTR * conversation). */ void (*timer_control)(void *opdata, unsigned int interval); } OtrlMessageAppOps; /* Deallocate a message allocated by other otrl_message_* routines. */ void otrl_message_free(char *message); /* Handle a message about to be sent to the network. It is safe to pass * all messages about to be sent to this routine. add_appdata is a * function that will be called in the event that a new ConnContext is * created. It will be passed the data that you supplied, as well as a * pointer to the new ConnContext. You can use this to add * application-specific information to the ConnContext using the * "context->app" field, for example. If you don't need to do this, you * can pass NULL for the last two arguments of otrl_message_sending. * * tlvs is a chain of OtrlTLVs to append to the private message. It is * usually correct to just pass NULL here. * * If non-NULL, ops->convert_msg will be called just before encrypting a * message. * * "instag" specifies the instance tag of the buddy (protocol version 3 only). * Meta-instances may also be specified (e.g., OTRL_INSTAG_MOST_SECURE). * If "contextp" is not NULL, it will be set to the ConnContext used for * sending the message. * * If no fragmentation or msg injection is wanted, use OTRL_FRAGMENT_SEND_SKIP * as the OtrlFragmentPolicy. In this case, this function will assign *messagep * with the encrypted msg. If the routine returns non-zero, then the library * tried to encrypt the message, but for some reason failed. DO NOT send the * message in the clear in that case. If *messagep gets set by the call to * something non-NULL, then you should replace your message with the contents * of *messagep, and send that instead. * * Other fragmentation policies are OTRL_FRAGMENT_SEND_ALL, * OTRL_FRAGMENT_SEND_ALL_BUT_LAST, or OTRL_FRAGMENT_SEND_ALL_BUT_FIRST. In * these cases, the appropriate fragments will be automatically sent. For the * last two policies, the remaining fragment will be passed in *original_msg. * * Call otrl_message_free(*messagep) if you don't need *messagep or when you're * done with it. */ gcry_error_t otrl_message_sending(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, const char *accountname, const char *protocol, const char *recipient, otrl_instag_t instag, const char *original_msg, OtrlTLV *tlvs, char **messagep, OtrlFragmentPolicy fragPolicy, ConnContext **contextp, void (*add_appdata)(void *data, ConnContext *context), void *data); /* Handle a message just received from the network. It is safe to pass * all received messages to this routine. add_appdata is a function * that will be called in the event that a new ConnContext is created. * It will be passed the data that you supplied, as well as * a pointer to the new ConnContext. You can use this to add * application-specific information to the ConnContext using the * "context->app" field, for example. If you don't need to do this, you * can pass NULL for the last two arguments of otrl_message_receiving. * * If non-NULL, ops->convert_msg will be called after a data message is * decrypted. * * If "contextp" is not NULL, it will be set to the ConnContext used for * receiving the message. * * If otrl_message_receiving returns 1, then the message you received * was an internal protocol message, and no message should be delivered * to the user. * * If it returns 0, then check if *messagep was set to non-NULL. If * so, replace the received message with the contents of *messagep, and * deliver that to the user instead. You must call * otrl_message_free(*messagep) when you're done with it. If tlvsp is * non-NULL, *tlvsp will be set to a chain of any TLVs that were * transmitted along with this message. You must call * otrl_tlv_free(*tlvsp) when you're done with those. * * If otrl_message_receiving returns 0 and *messagep is NULL, then this * was an ordinary, non-OTR message, which should just be delivered to * the user without modification. */ int otrl_message_receiving(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, const char *accountname, const char *protocol, const char *sender, const char *message, char **newmessagep, OtrlTLV **tlvsp, ConnContext **contextp, void (*add_appdata)(void *data, ConnContext *context), void *data); /* Put a connection into the PLAINTEXT state, first sending the * other side a notice that we're doing so if we're currently ENCRYPTED, * and we think he's logged in. Affects only the specified instance. */ void otrl_message_disconnect(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, const char *accountname, const char *protocol, const char *username, otrl_instag_t instance); /* Put a connection into the PLAINTEXT state, first sending the * other side a notice that we're doing so if we're currently ENCRYPTED, * and we think he's logged in. Affects all matching instances. */ void otrl_message_disconnect_all_instances(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, const char *accountname, const char *protocol, const char *username); /* Initiate the Socialist Millionaires' Protocol */ void otrl_message_initiate_smp(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, ConnContext *context, const unsigned char *secret, size_t secretlen); /* Initiate the Socialist Millionaires' Protocol and send a prompt * question to the buddy */ void otrl_message_initiate_smp_q(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, ConnContext *context, const char *question, const unsigned char *secret, size_t secretlen); /* Respond to a buddy initiating the Socialist Millionaires' Protocol */ void otrl_message_respond_smp(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, ConnContext *context, const unsigned char *secret, size_t secretlen); /* Abort the SMP. Called when an unexpected SMP message breaks the * normal flow. */ void otrl_message_abort_smp(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, ConnContext *context); /* Get the current extra symmetric key (of size OTRL_EXTRAKEY_BYTES * bytes) and let the other side know what we're going to use it for. * The key is stored in symkey, which must already be allocated * and OTRL_EXTRAKEY_BYTES bytes long. */ gcry_error_t otrl_message_symkey(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, ConnContext *context, unsigned int use, const unsigned char *usedata, size_t usedatalen, unsigned char *symkey); /* If you do _not_ define a timer_control callback function, set a timer * to go off every definterval = * otrl_message_poll_get_default_interval(userstate) seconds, and call * otrl_message_poll every time the timer goes off. */ unsigned int otrl_message_poll_get_default_interval(OtrlUserState us); /* Call this function every so often, either as directed by the * timer_control callback, or every definterval = * otrl_message_poll_get_default_interval(userstate) seconds if you have * no timer_control callback. This function must be called from the * main libotr thread.*/ void otrl_message_poll(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata); #endif ��������������������������libotr-4.1.1/src/mem.c������������������������������������������������������������������������������0000664�0001750�0001750�00000011321�12637277541�011460� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2014 Ian Goldberg, David Goulet, Rob Smits, * Chris Alexander, Willy Lew, Lisa Du, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* Memory allocation routines for libgcrypt. All of the session key * information gets allocated through here, so we can wipe it out when * it's free()d. We don't use the built-in secmem functions of * libgcrypt because you need to declare a fixed amount of it when you * start up. * * Because "secure" and "insecure" allocations from libgcrypt will get * handled the same way (since we're not going to be running as root, * and so won't actually have pinned memory), pretend all allocated * memory (but just from libgcrypt) is requested secure, and wipe it on * free(). */ /* Uncomment the following to add a check that our free() and realloc() only * get called on things returned from our malloc(). */ /* #define OTRL_MEM_MAGIC 0x31415926 */ /* system headers */ #ifdef OTRL_MEM_MAGIC #include <stdio.h> #endif #include <stdlib.h> /* libgcrypt headers */ #include <gcrypt.h> /* libotr headers */ #include "mem.h" static size_t header_size; static void *otrl_mem_malloc(size_t n) { void *p; size_t new_n = n; new_n += header_size; /* Check for overflow attack */ if (new_n < n) return NULL; p = malloc(new_n); if (p == NULL) return NULL; ((size_t *)p)[0] = new_n; /* Includes header size */ #ifdef OTRL_MEM_MAGIC ((size_t *)p)[1] = OTRL_MEM_MAGIC; #endif return (void *)((char *)p + header_size); } static int otrl_mem_is_secure(const void *p) { return 1; } static void otrl_mem_free(void *p) { void *real_p = (void *)((char *)p - header_size); size_t n = ((size_t *)real_p)[0]; #ifdef OTRL_MEM_MAGIC if (((size_t *)real_p)[1] != OTRL_MEM_MAGIC) { fprintf(stderr, "Illegal free!\n"); return; } #endif /* Wipe the memory (in the same way the built-in deallocator in * libgcrypt would) */ memset(real_p, 0xff, n); memset(real_p, 0xaa, n); memset(real_p, 0x55, n); memset(real_p, 0x00, n); free(real_p); } static void *otrl_mem_realloc(void *p, size_t n) { if (p == NULL) { return otrl_mem_malloc(n); } else if (n == 0) { otrl_mem_free(p); return NULL; } else { void *real_p = (void *)((char *)p - header_size); void *new_p; size_t old_n = ((size_t *)real_p)[0]; #ifdef OTRL_MEM_MAGIC size_t magic = ((size_t *)real_p)[1]; #endif size_t new_n = n; new_n += header_size; /* Check for overflow attack */ if (new_n < n) return NULL; #ifdef OTRL_MEM_MAGIC if (magic != OTRL_MEM_MAGIC) { fprintf(stderr, "Illegal realloc!\n"); return NULL; } #endif if (new_n < old_n) { /* Overwrite the space we're about to stop using */ void *p = (void *)((char *)real_p + new_n); size_t excess = old_n - new_n; memset(p, 0xff, excess); memset(p, 0xaa, excess); memset(p, 0x55, excess); memset(p, 0x00, excess); /* We don't actually need to realloc() */ new_p = real_p; } else { new_p = realloc(real_p, new_n); if (new_p == NULL) return NULL; } ((size_t *)new_p)[0] = new_n; /* Includes header size */ return (void *)((char *)new_p + header_size); } } void otrl_mem_init(void) { header_size = 8; #ifdef OTRL_MEM_MAGIC if (header_size < 2*sizeof(size_t)) { header_size = 2*sizeof(size_t); } #else if (header_size < sizeof(size_t)) { header_size = sizeof(size_t); } #endif gcry_set_allocation_handler( otrl_mem_malloc, otrl_mem_malloc, otrl_mem_is_secure, otrl_mem_realloc, otrl_mem_free ); } /* Compare two memory blocks in time dependent on the length of the * blocks, but not their contents. Returns 1 if they differ, 0 if they * are the same. */ int otrl_mem_differ(const unsigned char *buf1, const unsigned char *buf2, size_t len) { volatile unsigned char diff = 0; size_t i; for (i = 0; i < len; ++i) { diff |= (buf1[i] ^ buf2[i]); } return (diff != 0); } ���������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/b64.c������������������������������������������������������������������������������0000664�0001750�0001750�00000016416�12637277541�011307� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Willy Lew, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* Modified from: */ /*********************************************************************\ MODULE NAME: b64.c AUTHOR: Bob Trower 08/04/01 LICENCE: Copyright (c) 2001 Bob Trower, Trantor Standard Systems Inc. Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. VERSION HISTORY: Bob Trower 08/04/01 -- Create Version 0.00.00B \******************************************************************* */ /* system headers */ #include <stdio.h> #include <string.h> /* libotr headers */ #include "b64.h" /* ** Translation Table as described in RFC1113 */ static const char cb64[]="ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/"; /* ** Translation Table to decode (created by author) */ static const char cd64[]="|$$$}rstuvwxyz{$$$$$$$>?@ABCDEFGHIJKLMNOPQRSTUVW$$$$$$XYZ[\\]^_`abcdefghijklmnopq"; /* ** encodeblock ** ** encode up to 3 8-bit binary bytes as 4 '6-bit' characters. ** len must be 1, 2, or 3. */ static void encodeblock( char *out, const unsigned char *in, size_t len ) { unsigned char in0, in1, in2; in0 = in[0]; in1 = len > 1 ? in[1] : 0; in2 = len > 2 ? in[2] : 0; out[0] = cb64[ in0 >> 2 ]; out[1] = cb64[ ((in0 & 0x03) << 4) | ((in1 & 0xf0) >> 4) ]; out[2] = len > 1 ? cb64[ ((in1 & 0x0f) << 2) | ((in2 & 0xc0) >> 6) ] : '='; out[3] = len > 2 ? cb64[ in2 & 0x3f ] : '='; } /* * base64 encode data. Insert no linebreaks or whitespace. * * The buffer base64data must contain at least ((datalen+2)/3)*4 bytes of * space. This function will return the number of bytes actually used. */ size_t otrl_base64_encode(char *base64data, const unsigned char *data, size_t datalen) { size_t base64len = 0; while(datalen > 2) { encodeblock(base64data, data, 3); base64data += 4; base64len += 4; data += 3; datalen -= 3; } if (datalen > 0) { encodeblock(base64data, data, datalen); base64len += 4; } return base64len; } static size_t decode(unsigned char *out, const char *in, size_t b64len) { size_t written = 0; unsigned char c = 0; if (b64len > 0) { c = in[0] << 2; } if (b64len > 1) { out[0] = c | in[1] >> 4; written = 1; c = in[1] << 4; } if (b64len > 2) { out[1] = c | in[2] >> 2; written = 2; c = in[2] << 6; } if (b64len > 3) { out[2] = c | in[3]; written = 3; } return written; } /* * base64 decode data. Skip non-base64 chars, and terminate at the * first '=', or the end of the buffer. * * The buffer data must contain at least ((base64len+3) / 4) * 3 bytes * of space. This function will return the number of bytes actually * used. */ size_t otrl_base64_decode(unsigned char *data, const char *base64data, size_t base64len) { size_t datalen = 0; char b64[4]; size_t b64accum = 0; while(base64len > 0) { char b = *base64data; unsigned char bdecode; ++base64data; --base64len; if (b < '+' || b > 'z') continue; /* Skip non-base64 chars */ if (b == '=') { /* Force termination */ datalen += decode(data, b64, b64accum); base64len = 0; } else { bdecode = cd64[b-'+']; if (bdecode == '$') continue; /* Skip non-base64 chars */ b64[b64accum++] = bdecode-'>'; if (b64accum == 4) { /* We have a complete block; decode it. */ size_t written = decode(data, b64, b64accum); data += written; datalen += written; b64accum = 0; } } } /* Just discard any short block at the end. */ return datalen; } /* * Base64-encode a block of data, stick "?OTR:" and "." around it, and * return the result, or NULL in the event of a memory error. The * caller must free() the return value. */ char *otrl_base64_otr_encode(const unsigned char *buf, size_t buflen) { char *base64buf; size_t base64len; const size_t HALF_MAX_SIZE_T = ((size_t)-1) >> 1; if (buflen > HALF_MAX_SIZE_T) { /* You somehow have a buffer that's of size more than half of * all addressable memory, and you now want a base64 version in * a new buffer 33% larger? Not going to happen. Exit now, * rather in the malloc below, to avoid integer overflowing the * computation of base64len. */ return NULL; } /* Make the base64-encoding. */ base64len = ((buflen + 2) / 3) * 4; base64buf = malloc(5 + base64len + 1 + 1); if (base64buf == NULL) { return NULL; } memmove(base64buf, "?OTR:", 5); otrl_base64_encode(base64buf+5, buf, buflen); base64buf[5 + base64len] = '.'; base64buf[5 + base64len + 1] = '\0'; return base64buf; } /* * Base64-decode the portion of the given message between "?OTR:" and * ".". Set *bufp to the decoded data, and set *lenp to its length. * The caller must free() the result. Return 0 on success, -1 on a * memory error, or -2 on invalid input. */ int otrl_base64_otr_decode(const char *msg, unsigned char **bufp, size_t *lenp) { char *otrtag, *endtag; size_t msglen, rawlen; unsigned char *rawmsg; otrtag = strstr(msg, "?OTR:"); if (!otrtag) { return -2; } endtag = strchr(otrtag, '.'); if (endtag) { msglen = endtag-otrtag; } else { return -2; } /* Skip over the "?OTR:" */ otrtag += 5; msglen -= 5; /* Base64-decode the message */ rawlen = OTRL_B64_MAX_DECODED_SIZE(msglen); /* maximum possible */ rawmsg = malloc(rawlen); if (!rawmsg && rawlen > 0) { return -1; } rawlen = otrl_base64_decode(rawmsg, otrtag, msglen); /* actual size */ *bufp = rawmsg; *lenp = rawlen; return 0; } ��������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/tlv.h������������������������������������������������������������������������������0000664�0001750�0001750�00000005571�12637277541�011526� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Willy Lew, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __TLV_H__ #define __TLV_H__ typedef struct s_OtrlTLV { unsigned short type; unsigned short len; unsigned char *data; struct s_OtrlTLV *next; } OtrlTLV; /* TLV types */ /* This is just padding for the encrypted message, and should be ignored. */ #define OTRL_TLV_PADDING 0x0000 /* The sender has thrown away his OTR session keys with you */ #define OTRL_TLV_DISCONNECTED 0x0001 /* The message contains a step in the Socialist Millionaires' Protocol. */ #define OTRL_TLV_SMP1 0x0002 #define OTRL_TLV_SMP2 0x0003 #define OTRL_TLV_SMP3 0x0004 #define OTRL_TLV_SMP4 0x0005 #define OTRL_TLV_SMP_ABORT 0x0006 /* Like OTRL_TLV_SMP1, but there's a question for the buddy at the * beginning */ #define OTRL_TLV_SMP1Q 0x0007 /* Tell the application the current "extra" symmetric key */ /* XXX: Document this in the protocol spec: * The body of the TLV will begin with a 4-byte indication of what this * symmetric key will be used for (file transfer, voice encryption, * etc.). After that, the contents are use-specific (which file, etc.). * There are no currently defined uses. */ #define OTRL_TLV_SYMKEY 0x0008 /* Make a single TLV, copying the supplied data */ OtrlTLV *otrl_tlv_new(unsigned short type, unsigned short len, const unsigned char *data); /* Construct a chain of TLVs from the given data */ OtrlTLV *otrl_tlv_parse(const unsigned char *serialized, size_t seriallen); /* Deallocate a chain of TLVs */ void otrl_tlv_free(OtrlTLV *tlv); /* Find the serialized length of a chain of TLVs */ size_t otrl_tlv_seriallen(const OtrlTLV *tlv); /* Serialize a chain of TLVs. The supplied buffer must already be large * enough. */ void otrl_tlv_serialize(unsigned char *buf, const OtrlTLV *tlv); /* Return the first TLV with the given type in the chain, or NULL if one * isn't found. (The tlvs argument isn't const because the return type * needs to be non-const.) */ OtrlTLV *otrl_tlv_find(OtrlTLV *tlvs, unsigned short type); #endif ���������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/message.c��������������������������������������������������������������������������0000664�0001750�0001750�00000177716�12667026423�012345� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2015 Ian Goldberg, David Goulet, Rob Smits, * Chris Alexander, Willy Lew, Lisa Du, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdio.h> #include <stdlib.h> #include <time.h> /* libgcrypt headers */ #include <gcrypt.h> /* libotr headers */ #include "privkey.h" #include "userstate.h" #include "proto.h" #include "auth.h" #include "message.h" #include "sm.h" #include "instag.h" #if OTRL_DEBUGGING #include <stdio.h> /* If OTRL_DEBUGGING is on, and the user types this string, the current * context and its siblings will be dumped to stderr. */ const char *OTRL_DEBUGGING_DEBUGSTR = "?OTR!"; void otrl_context_all_dump(FILE *f, OtrlUserState us); void otrl_context_siblings_dump(FILE *f, const ConnContext *context); #endif /* The API version */ extern unsigned int otrl_api_version; /* How long after sending a packet should we wait to send a heartbeat? */ #define HEARTBEAT_INTERVAL 60 /* How old are messages allowed to be in order to be candidates for * resending in response to a rekey? */ #define RESEND_INTERVAL 60 /* How long should we wait for the last of the logged-in instances of * our buddy to respond before marking our private key as a candidate * for wiping (in seconds)? */ #define MAX_AKE_WAIT_TIME 60 /* How frequently should we check our ConnContexts for wipeable private * keys (and wipe them) (in seconds)? */ #define POLL_DEFAULT_INTERVAL 70 /* Send a message to the network, fragmenting first if necessary. * All messages to be sent to the network should go through this * method immediately before they are sent, ie after encryption. */ static gcry_error_t fragment_and_send(const OtrlMessageAppOps *ops, void *opdata, ConnContext *context, const char *message, OtrlFragmentPolicy fragPolicy, char **returnFragment) { int mms = 0; if (message && ops->inject_message) { int msglen; if (ops->max_message_size) { mms = ops->max_message_size(opdata, context); } msglen = strlen(message); /* Don't incur overhead of fragmentation unless necessary */ if(mms != 0 && msglen > mms) { char **fragments; gcry_error_t err; int i; int headerlen = context->protocol_version == 3 ? 37 : 19; /* Like ceil(msglen/(mms - headerlen)) */ int fragment_count = ((msglen - 1) / (mms - headerlen)) + 1; err = otrl_proto_fragment_create(mms, fragment_count, &fragments, context, message); if (err) { return err; } /* Determine which fragments to send and which to return * based on given Fragment Policy. If the first fragment * should be returned instead of sent, store it. */ if (fragPolicy == OTRL_FRAGMENT_SEND_ALL_BUT_FIRST) { *returnFragment = strdup(fragments[0]); } else { ops->inject_message(opdata, context->accountname, context->protocol, context->username, fragments[0]); } for (i=1; i<fragment_count-1; i++) { ops->inject_message(opdata, context->accountname, context->protocol, context->username, fragments[i]); } /* If the last fragment should be stored instead of sent, * store it */ if (fragPolicy == OTRL_FRAGMENT_SEND_ALL_BUT_LAST) { *returnFragment = strdup(fragments[fragment_count-1]); } else { ops->inject_message(opdata, context->accountname, context->protocol, context->username, fragments[fragment_count-1]); } /* Now free all fragment memory */ otrl_proto_fragment_free(&fragments, fragment_count); } else { /* No fragmentation necessary */ if (fragPolicy == OTRL_FRAGMENT_SEND_ALL) { ops->inject_message(opdata, context->accountname, context->protocol, context->username, message); } else { /* Copy and return the entire given message. */ *returnFragment = strdup(message); } } } return gcry_error(GPG_ERR_NO_ERROR); } static void populate_context_instag(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, const char *accountname, const char *protocol, ConnContext *context) { OtrlInsTag *p_instag; p_instag = otrl_instag_find(us, accountname, protocol); if ((!p_instag) && ops->create_instag) { ops->create_instag(opdata, accountname, protocol); p_instag = otrl_instag_find(us, accountname, protocol); } if (p_instag && p_instag->instag >= OTRL_MIN_VALID_INSTAG) { context->our_instance = p_instag->instag; } else { context->our_instance = otrl_instag_get_new(); } } /* Deallocate a message allocated by other otrl_message_* routines. */ void otrl_message_free(char *message) { free(message); } /* Handle a message about to be sent to the network. It is safe to pass * all messages about to be sent to this routine. add_appdata is a * function that will be called in the event that a new ConnContext is * created. It will be passed the data that you supplied, as well as a * pointer to the new ConnContext. You can use this to add * application-specific information to the ConnContext using the * "context->app" field, for example. If you don't need to do this, you * can pass NULL for the last two arguments of otrl_message_sending. * * tlvs is a chain of OtrlTLVs to append to the private message. It is * usually correct to just pass NULL here. * * If non-NULL, ops->convert_msg will be called just before encrypting a * message. * * "instag" specifies the instance tag of the buddy (protocol version 3 only). * Meta-instances may also be specified (e.g., OTRL_INSTAG_MOST_SECURE). * If "contextp" is not NULL, it will be set to the ConnContext used for * sending the message. * * If no fragmentation or msg injection is wanted, use OTRL_FRAGMENT_SEND_SKIP * as the OtrlFragmentPolicy. In this case, this function will assign *messagep * with the encrypted msg. If the routine returns non-zero, then the library * tried to encrypt the message, but for some reason failed. DO NOT send the * message in the clear in that case. If *messagep gets set by the call to * something non-NULL, then you should replace your message with the contents * of *messagep, and send that instead. * * Other fragmentation policies are OTRL_FRAGMENT_SEND_ALL, * OTRL_FRAGMENT_SEND_ALL_BUT_LAST, or OTRL_FRAGMENT_SEND_ALL_BUT_FIRST. In * these cases, the appropriate fragments will be automatically sent. For the * last two policies, the remaining fragment will be passed in *original_msg. * * Call otrl_message_free(*messagep) if you don't need *messagep or when you're * done with it. */ gcry_error_t otrl_message_sending(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, const char *accountname, const char *protocol, const char *recipient, otrl_instag_t their_instag, const char *original_msg, OtrlTLV *tlvs, char **messagep, OtrlFragmentPolicy fragPolicy, ConnContext **contextp, void (*add_appdata)(void *data, ConnContext *context), void *data) { ConnContext * context = NULL; char * msgtosend; const char * err_msg; gcry_error_t err_code, err; OtrlPolicy policy = OTRL_POLICY_DEFAULT; int context_added = 0; int convert_called = 0; char *converted_msg = NULL; if (messagep) { *messagep = NULL; } err = gcry_error(GPG_ERR_NO_ERROR); /* Default to no error */ if (contextp) { *contextp = NULL; } if (!accountname || !protocol || !recipient || !original_msg || !messagep) { err = gcry_error(GPG_ERR_INV_VALUE); goto fragment; } /* See if we have a fingerprint for this user */ context = otrl_context_find(us, recipient, accountname, protocol, their_instag, 1, &context_added, add_appdata, data); /* Update the context list if we added one */ if (context_added && ops->update_context_list) { ops->update_context_list(opdata); } /* Find or generate the instance tag if needed */ if (!context->our_instance) { populate_context_instag(us, ops, opdata, accountname, protocol, context); } if (contextp) { *contextp = context; } /* Check the policy */ if (ops->policy) { policy = ops->policy(opdata, context); } /* Should we go on at all? */ if ((policy & OTRL_POLICY_VERSION_MASK) == 0) { err = gcry_error(GPG_ERR_NO_ERROR); goto fragment; } #if OTRL_DEBUGGING /* If the user typed the magic debug string, dump this context and * its siblings. */ { const char *debugtag = strstr(original_msg, OTRL_DEBUGGING_DEBUGSTR); if (debugtag) { const char *debugargs = debugtag + strlen(OTRL_DEBUGGING_DEBUGSTR); if (debugargs[0] == '!') { /* typed ?OTR!! */ otrl_context_all_dump(stderr, us); } else { /* typed ?OTR! without extra command chars */ otrl_context_siblings_dump(stderr, context); } /* Don't actually send the message */ *messagep = strdup(""); if (!(*messagep)) { err = gcry_error(GPG_ERR_ENOMEM); } goto fragment; } } #endif /* If this is an OTR Query message, don't encrypt it. */ if (otrl_proto_message_type(original_msg) == OTRL_MSGTYPE_QUERY) { /* Replace the "?OTR?" with a custom message */ char *bettermsg = otrl_proto_default_query_msg(accountname, policy); if (bettermsg) { *messagep = bettermsg; } context->otr_offer = OFFER_SENT; err = gcry_error(GPG_ERR_NO_ERROR); goto fragment; } /* What is the current message disposition? */ switch(context->msgstate) { case OTRL_MSGSTATE_PLAINTEXT: if ((policy & OTRL_POLICY_REQUIRE_ENCRYPTION)) { /* We're trying to send an unencrypted message with a policy * that disallows that. Don't do that, but try to start * up OTR instead. */ if (ops->handle_msg_event) { ops->handle_msg_event(opdata, OTRL_MSGEVENT_ENCRYPTION_REQUIRED, context, NULL, gcry_error(GPG_ERR_NO_ERROR)); } context->context_priv->lastmessage = gcry_malloc_secure(strlen(original_msg) + 1); if (context->context_priv->lastmessage) { char *bettermsg = otrl_proto_default_query_msg(accountname, policy); strcpy(context->context_priv->lastmessage, original_msg); context->context_priv->lastsent = time(NULL); otrl_context_update_recent_child(context, 1); context->context_priv->may_retransmit = 2; if (bettermsg) { *messagep = bettermsg; context->otr_offer = OFFER_SENT; } else { err = gcry_error(GPG_ERR_ENOMEM); goto fragment; } } } else { if ((policy & OTRL_POLICY_SEND_WHITESPACE_TAG) && context->otr_offer != OFFER_REJECTED) { /* See if this user can speak OTR. Append the * OTR_MESSAGE_TAG to the plaintext message, and see * if he responds. */ size_t msglen = strlen(original_msg); size_t basetaglen = strlen(OTRL_MESSAGE_TAG_BASE); size_t v1taglen = (policy & OTRL_POLICY_ALLOW_V1) ? strlen(OTRL_MESSAGE_TAG_V1) : 0; size_t v2taglen = (policy & OTRL_POLICY_ALLOW_V2) ? strlen(OTRL_MESSAGE_TAG_V2) : 0; size_t v3taglen = (policy & OTRL_POLICY_ALLOW_V3) ? strlen(OTRL_MESSAGE_TAG_V3) : 0; char *taggedmsg = malloc(msglen + basetaglen + v1taglen + v2taglen + v3taglen + 1); if (taggedmsg) { strcpy(taggedmsg, original_msg); strcpy(taggedmsg + msglen, OTRL_MESSAGE_TAG_BASE); if (v1taglen) { strcpy(taggedmsg + msglen + basetaglen, OTRL_MESSAGE_TAG_V1); } if (v2taglen) { strcpy(taggedmsg + msglen + basetaglen + v1taglen, OTRL_MESSAGE_TAG_V2); } if (v3taglen) { strcpy(taggedmsg + msglen + basetaglen + v1taglen + v2taglen, OTRL_MESSAGE_TAG_V3); } *messagep = taggedmsg; context->otr_offer = OFFER_SENT; } } } break; case OTRL_MSGSTATE_ENCRYPTED: /* convert the original message if necessary */ if (ops->convert_msg) { ops->convert_msg(opdata, context, OTRL_CONVERT_SENDING, &converted_msg, original_msg); if (converted_msg) { convert_called = 1; } } /* Create the new, encrypted message */ if (convert_called) { err_code = otrl_proto_create_data(&msgtosend, context, converted_msg, tlvs, 0, NULL); if (ops->convert_free) { ops->convert_free(opdata, context, converted_msg); converted_msg = NULL; } } else { err_code = otrl_proto_create_data(&msgtosend, context, original_msg, tlvs, 0, NULL); } if (!err_code) { context->context_priv->lastsent = time(NULL); otrl_context_update_recent_child(context, 1); *messagep = msgtosend; } else { /* Uh, oh. Whatever we do, *don't* send the message in the * clear. */ if (ops->handle_msg_event) { ops->handle_msg_event(opdata, OTRL_MSGEVENT_ENCRYPTION_ERROR, context, NULL, gcry_error(GPG_ERR_NO_ERROR)); } if (ops->otr_error_message) { err_msg = ops->otr_error_message(opdata, context, OTRL_ERRCODE_ENCRYPTION_ERROR); *messagep = malloc(strlen(OTR_ERROR_PREFIX) + strlen(err_msg) + 1); if (*messagep) { strcpy(*messagep, OTR_ERROR_PREFIX); strcat(*messagep, err_msg); } if (ops->otr_error_message_free) { ops->otr_error_message_free(opdata, err_msg); } if (!(*messagep)) { err = gcry_error(GPG_ERR_ENOMEM); goto fragment; } } } break; case OTRL_MSGSTATE_FINISHED: if (ops->handle_msg_event) { ops->handle_msg_event(opdata, OTRL_MSGEVENT_CONNECTION_ENDED, context, NULL, gcry_error(GPG_ERR_NO_ERROR)); } *messagep = strdup(""); if (!(*messagep)) { err = gcry_error(GPG_ERR_ENOMEM); goto fragment; } break; } fragment: if (fragPolicy == OTRL_FRAGMENT_SEND_SKIP ) { /* Do not fragment/inject. Default behaviour of libotr3.2.0 */ return err; } else { /* Fragment and send according to policy */ if (!err && messagep && *messagep) { if (context) { char *rmessagep = NULL; err = fragment_and_send(ops, opdata, context, *messagep, fragPolicy, &rmessagep); if (rmessagep) { /* Free the current message pointer and return back the * returned fragmented one. */ free(*messagep); *messagep = rmessagep; } } } return err; } } /* If err == 0, send the last auth message for the given context to the * appropriate user. Otherwise, display an appripriate error dialog. * Return the value of err that was passed. */ static gcry_error_t send_or_error_auth(const OtrlMessageAppOps *ops, void *opdata, gcry_error_t err, ConnContext *context, OtrlUserState us) { if (!err) { const char *msg = context->auth.lastauthmsg; if (msg && *msg) { fragment_and_send(ops, opdata, context, msg, OTRL_FRAGMENT_SEND_ALL, NULL); time_t now = time(NULL); /* Update the "last sent" fields, unless this is a version 3 * message typing to update the master context (as happens * when sending a v3 COMMIT message, for example). */ if (context != context->m_context || context->auth.protocol_version != 3) { context->context_priv->lastsent = now; otrl_context_update_recent_child(context, 1); } /* If this is a master context, and we're sending a v3 COMMIT * message, update the commit_sent_time timestamp, so we can * expire it. */ if (context == context->m_context && context->auth.authstate == OTRL_AUTHSTATE_AWAITING_DHKEY && context->auth.protocol_version == 3) { context->auth.commit_sent_time = now; /* If there's not already a timer running to clean up * this private key, try to start one. */ if (us->timer_running == 0 && ops && ops->timer_control) { ops->timer_control(opdata, POLL_DEFAULT_INTERVAL); us->timer_running = 1; } } } } else { if (ops->handle_msg_event) { ops->handle_msg_event(opdata, OTRL_MSGEVENT_SETUP_ERROR, context, NULL, err); } } return err; } typedef struct { int gone_encrypted; OtrlUserState us; const OtrlMessageAppOps *ops; void *opdata; ConnContext *context; int ignore_message; char **messagep; } EncrData; static gcry_error_t go_encrypted(const OtrlAuthInfo *auth, void *asdata) { EncrData *edata = asdata; gcry_error_t err = gcry_error(GPG_ERR_NO_ERROR); Fingerprint *found_print = NULL; int fprint_added = 0; OtrlMessageState oldstate = edata->context->msgstate; Fingerprint *oldprint = edata->context->active_fingerprint; /* See if we're talking to ourselves */ if (!gcry_mpi_cmp(auth->their_pub, auth->our_dh.pub)) { /* Yes, we are. */ if (edata->ops->handle_msg_event) { edata->ops->handle_msg_event(edata->opdata, OTRL_MSGEVENT_MSG_REFLECTED, edata->context, NULL, gcry_error(GPG_ERR_NO_ERROR)); } edata->ignore_message = 1; return gcry_error(GPG_ERR_NO_ERROR); } found_print = otrl_context_find_fingerprint(edata->context, edata->context->auth.their_fingerprint, 1, &fprint_added); if (fprint_added) { /* Inform the user of the new fingerprint */ if (edata->ops->new_fingerprint) { edata->ops->new_fingerprint(edata->opdata, edata->us, edata->context->accountname, edata->context->protocol, edata->context->username, edata->context->auth.their_fingerprint); } /* Arrange that the new fingerprint be written to disk */ if (edata->ops->write_fingerprints) { edata->ops->write_fingerprints(edata->opdata); } } /* Is this a new session or just a refresh of an existing one? */ if (edata->context->msgstate == OTRL_MSGSTATE_ENCRYPTED && oldprint == found_print && edata->context->context_priv->our_keyid - 1 == edata->context->auth.our_keyid && !gcry_mpi_cmp(edata->context->context_priv->our_old_dh_key.pub, edata->context->auth.our_dh.pub) && ((edata->context->context_priv->their_keyid > 0 && edata->context->context_priv->their_keyid == edata->context->auth.their_keyid && !gcry_mpi_cmp(edata->context->context_priv->their_y, edata->context->auth.their_pub)) || (edata->context->context_priv->their_keyid > 1 && edata->context->context_priv->their_keyid - 1 == edata->context->auth.their_keyid && edata->context->context_priv->their_old_y != NULL && !gcry_mpi_cmp(edata->context->context_priv->their_old_y, edata->context->auth.their_pub)))) { /* This is just a refresh of the existing session. */ if (edata->ops->still_secure) { edata->ops->still_secure(edata->opdata, edata->context, edata->context->auth.initiated); } edata->ignore_message = 1; return gcry_error(GPG_ERR_NO_ERROR); } /* Copy the information from the auth into the context */ memmove(edata->context->sessionid, edata->context->auth.secure_session_id, 20); edata->context->sessionid_len = edata->context->auth.secure_session_id_len; edata->context->sessionid_half = edata->context->auth.session_id_half; edata->context->protocol_version = edata->context->auth.protocol_version; edata->context->context_priv->their_keyid = edata->context->auth.their_keyid; gcry_mpi_release(edata->context->context_priv->their_y); gcry_mpi_release(edata->context->context_priv->their_old_y); edata->context->context_priv->their_y = gcry_mpi_copy(edata->context->auth.their_pub); edata->context->context_priv->their_old_y = NULL; if (edata->context->context_priv->our_keyid - 1 != edata->context->auth.our_keyid || gcry_mpi_cmp(edata->context->context_priv->our_old_dh_key.pub, edata->context->auth.our_dh.pub)) { otrl_dh_keypair_free(&(edata->context->context_priv->our_dh_key)); otrl_dh_keypair_free(&(edata->context->context_priv->our_old_dh_key)); otrl_dh_keypair_copy(&(edata->context->context_priv->our_old_dh_key), &(edata->context->auth.our_dh)); otrl_dh_gen_keypair( edata->context->context_priv->our_old_dh_key.groupid, &(edata->context->context_priv->our_dh_key)); edata->context->context_priv->our_keyid = edata->context->auth.our_keyid + 1; } /* Create the session keys from the DH keys */ otrl_dh_session_free(&(edata->context->context_priv->sesskeys[0][0])); err = otrl_dh_session(&(edata->context->context_priv->sesskeys[0][0]), &(edata->context->context_priv->our_dh_key), edata->context->context_priv->their_y); if (err) return err; otrl_dh_session_free(&(edata->context->context_priv->sesskeys[1][0])); err = otrl_dh_session(&(edata->context->context_priv->sesskeys[1][0]), &(edata->context->context_priv->our_old_dh_key), edata->context->context_priv->their_y); if (err) return err; edata->context->context_priv->generation++; edata->context->active_fingerprint = found_print; edata->context->msgstate = OTRL_MSGSTATE_ENCRYPTED; if (edata->ops->update_context_list) { edata->ops->update_context_list(edata->opdata); } if (oldstate == OTRL_MSGSTATE_ENCRYPTED && oldprint == found_print) { if (edata->ops->still_secure) { edata->ops->still_secure(edata->opdata, edata->context, edata->context->auth.initiated); } } else { if (edata->ops->gone_secure) { edata->ops->gone_secure(edata->opdata, edata->context); } } edata->gone_encrypted = 1; return gpg_error(GPG_ERR_NO_ERROR); } static void maybe_resend(EncrData *edata) { gcry_error_t err; time_t now; if (!edata->gone_encrypted) return; /* See if there's a message we sent recently that should be resent. */ now = time(NULL); if (edata->context->context_priv->lastmessage != NULL && edata->context->context_priv->may_retransmit && edata->context->context_priv->lastsent >= (now - RESEND_INTERVAL)) { char *resendmsg; char *msg_to_send; int resending = (edata->context->context_priv->may_retransmit == 1); /* Initialize msg_to_send */ if (resending) { const char *resent_prefix; int used_ops_resentmp = 1; resent_prefix = edata->ops->resent_msg_prefix ? edata->ops->resent_msg_prefix(edata->opdata, edata->context) : NULL; if (!resent_prefix) { resent_prefix = "[resent]"; /* Assign default prefix */ used_ops_resentmp = 0; } msg_to_send = malloc( strlen(edata->context->context_priv->lastmessage) + strlen(resent_prefix) + 2); if (msg_to_send) { strcpy(msg_to_send, resent_prefix); strcat(msg_to_send, " "); strcat(msg_to_send, edata->context->context_priv->lastmessage); } else { return; /* Out of memory; don't try to resend */ } if (used_ops_resentmp) { edata->ops->resent_msg_prefix_free(edata->opdata, resent_prefix); } } else { msg_to_send = edata->context->context_priv->lastmessage; } /* Re-encrypt the message with the new keys */ err = otrl_proto_create_data(&resendmsg, edata->context, msg_to_send, NULL, 0, NULL); if (resending) { free(msg_to_send); } if (!err) { /* Resend the message */ fragment_and_send(edata->ops, edata->opdata, edata->context, resendmsg, OTRL_FRAGMENT_SEND_ALL, NULL); free(resendmsg); edata->context->context_priv->lastsent = now; otrl_context_update_recent_child(edata->context, 1); if (resending) { /* We're not sending it for the first time; let the user * know we resent it */ if (edata->ops->handle_msg_event) { edata->ops->handle_msg_event(edata->opdata, OTRL_MSGEVENT_MSG_RESENT, edata->context, NULL, gcry_error(GPG_ERR_NO_ERROR)); } } edata->ignore_message = 1; } } } /* Set the trust level based on the result of the SMP */ static void set_smp_trust(const OtrlMessageAppOps *ops, void *opdata, ConnContext *context, int trusted) { otrl_context_set_trust(context->active_fingerprint, trusted ? "smp" : ""); /* Write the new info to disk, redraw the ui, and redraw the * OTR buttons. */ if (ops->write_fingerprints) { ops->write_fingerprints(opdata); } } static void init_respond_smp(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, ConnContext *context, const char *question, const unsigned char *secret, size_t secretlen, int initiating) { unsigned char *smpmsg = NULL; int smpmsglen; unsigned char combined_secret[SM_DIGEST_SIZE]; gcry_error_t err; unsigned char our_fp[20]; unsigned char *combined_buf; size_t combined_buf_len; OtrlTLV *sendtlv; char *sendsmp = NULL; if (!context || context->msgstate != OTRL_MSGSTATE_ENCRYPTED) return; /* * Construct the combined secret as a SHA256 hash of: * Version byte (0x01), Initiator fingerprint (20 bytes), * responder fingerprint (20 bytes), secure session id, input secret */ otrl_privkey_fingerprint_raw(us, our_fp, context->accountname, context->protocol); combined_buf_len = 41 + context->sessionid_len + secretlen; combined_buf = malloc(combined_buf_len); combined_buf[0] = 0x01; if (initiating) { memmove(combined_buf + 1, our_fp, 20); memmove(combined_buf + 21, context->active_fingerprint->fingerprint, 20); } else { memmove(combined_buf + 1, context->active_fingerprint->fingerprint, 20); memmove(combined_buf + 21, our_fp, 20); } memmove(combined_buf + 41, context->sessionid, context->sessionid_len); memmove(combined_buf + 41 + context->sessionid_len, secret, secretlen); gcry_md_hash_buffer(SM_HASH_ALGORITHM, combined_secret, combined_buf, combined_buf_len); free(combined_buf); if (initiating) { otrl_sm_step1(context->smstate, combined_secret, SM_DIGEST_SIZE, &smpmsg, &smpmsglen); } else { otrl_sm_step2b(context->smstate, combined_secret, SM_DIGEST_SIZE, &smpmsg, &smpmsglen); } /* If we've got a question, attach it to the smpmsg */ if (question != NULL) { size_t qlen = strlen(question); unsigned char *qsmpmsg = malloc(qlen + 1 + smpmsglen); if (!qsmpmsg) { free(smpmsg); return; } strcpy((char *)qsmpmsg, question); memmove(qsmpmsg + qlen + 1, smpmsg, smpmsglen); free(smpmsg); smpmsg = qsmpmsg; smpmsglen += qlen + 1; } /* Send msg with next smp msg content */ sendtlv = otrl_tlv_new(initiating ? (question != NULL ? OTRL_TLV_SMP1Q : OTRL_TLV_SMP1) : OTRL_TLV_SMP2, smpmsglen, smpmsg); err = otrl_proto_create_data(&sendsmp, context, "", sendtlv, OTRL_MSGFLAGS_IGNORE_UNREADABLE, NULL); if (!err) { /* Send it, and set the next expected message to the * logical response */ err = fragment_and_send(ops, opdata, context, sendsmp, OTRL_FRAGMENT_SEND_ALL, NULL); context->smstate->nextExpected = initiating ? OTRL_SMP_EXPECT2 : OTRL_SMP_EXPECT3; } free(sendsmp); otrl_tlv_free(sendtlv); free(smpmsg); } /* Initiate the Socialist Millionaires' Protocol */ void otrl_message_initiate_smp(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, ConnContext *context, const unsigned char *secret, size_t secretlen) { init_respond_smp(us, ops, opdata, context, NULL, secret, secretlen, 1); } /* Initiate the Socialist Millionaires' Protocol and send a prompt * question to the buddy */ void otrl_message_initiate_smp_q(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, ConnContext *context, const char *question, const unsigned char *secret, size_t secretlen) { init_respond_smp(us, ops, opdata, context, question, secret, secretlen, 1); } /* Respond to a buddy initiating the Socialist Millionaires' Protocol */ void otrl_message_respond_smp(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, ConnContext *context, const unsigned char *secret, size_t secretlen) { init_respond_smp(us, ops, opdata, context, NULL, secret, secretlen, 0); } /* Abort the SMP. Called when an unexpected SMP message breaks the * normal flow. */ void otrl_message_abort_smp(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, ConnContext *context) { OtrlTLV *sendtlv = otrl_tlv_new(OTRL_TLV_SMP_ABORT, 0, (const unsigned char *)""); char *sendsmp = NULL; gcry_error_t err; context->smstate->nextExpected = OTRL_SMP_EXPECT1; err = otrl_proto_create_data(&sendsmp, context, "", sendtlv, OTRL_MSGFLAGS_IGNORE_UNREADABLE, NULL); if (!err) { /* Send the abort signal so our buddy knows we've stopped */ err = fragment_and_send(ops, opdata, context, sendsmp, OTRL_FRAGMENT_SEND_ALL, NULL); } free(sendsmp); otrl_tlv_free(sendtlv); } static void message_malformed(const OtrlMessageAppOps *ops, void *opdata, ConnContext *context) { if (ops->handle_msg_event) { ops->handle_msg_event(opdata, OTRL_MSGEVENT_RCVDMSG_MALFORMED, context, NULL, gcry_error(GPG_ERR_NO_ERROR)); } if (ops->inject_message && ops->otr_error_message) { const char *err_msg = ops->otr_error_message(opdata, context, OTRL_ERRCODE_MSG_MALFORMED); if (err_msg) { char *buf = malloc(strlen(OTR_ERROR_PREFIX) + strlen(err_msg) + 1); if (buf) { strcpy(buf, OTR_ERROR_PREFIX); strcat(buf, err_msg); ops->inject_message(opdata, context->accountname, context->protocol, context->username, buf); free(buf); } if (ops->otr_error_message_free) { ops->otr_error_message_free(opdata, err_msg); } } } } /* Handle a message just received from the network. It is safe to pass * all received messages to this routine. add_appdata is a function * that will be called in the event that a new ConnContext is created. * It will be passed the data that you supplied, as well as * a pointer to the new ConnContext. You can use this to add * application-specific information to the ConnContext using the * "context->app" field, for example. If you don't need to do this, you * can pass NULL for the last two arguments of otrl_message_receiving. * * If non-NULL, ops->convert_msg will be called after a data message is * decrypted. * * If "contextp" is not NULL, it will be set to the ConnContext used for * receiving the message. * * If otrl_message_receiving returns 1, then the message you received * was an internal protocol message, and no message should be delivered * to the user. * * If it returns 0, then check if *messagep was set to non-NULL. If * so, replace the received message with the contents of *messagep, and * deliver that to the user instead. You must call * otrl_message_free(*messagep) when you're done with it. If tlvsp is * non-NULL, *tlvsp will be set to a chain of any TLVs that were * transmitted along with this message. You must call * otrl_tlv_free(*tlvsp) when you're done with those. * * If otrl_message_receiving returns 0 and *messagep is NULL, then this * was an ordinary, non-OTR message, which should just be delivered to * the user without modification. */ int otrl_message_receiving(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, const char *accountname, const char *protocol, const char *sender, const char *message, char **newmessagep, OtrlTLV **tlvsp, ConnContext **contextp, void (*add_appdata)(void *data, ConnContext *context), void *data) { ConnContext *context, *m_context, *best_context; OtrlMessageType msgtype; int context_added = 0; OtrlPolicy policy = OTRL_POLICY_DEFAULT; char *unfragmessage = NULL, *otrtag = NULL; EncrData edata; otrl_instag_t our_instance = 0, their_instance = 0; int version; gcry_error_t err; if (!accountname || !protocol || !sender || !message || !newmessagep) return 0; *newmessagep = NULL; if (tlvsp) *tlvsp = NULL; if (contextp) { *contextp = NULL; } /* Find the master context and state with this correspondent */ m_context = otrl_context_find(us, sender, accountname, protocol, OTRL_INSTAG_MASTER, 1, &context_added, add_appdata, data); context = m_context; /* Update the context list if we added one */ if (context_added && ops->update_context_list) { ops->update_context_list(opdata); } best_context = otrl_context_find(us, sender, accountname, protocol, OTRL_INSTAG_BEST, 0, NULL, add_appdata, data); /* Find or generate the instance tag if needed */ if (!context->our_instance) { populate_context_instag(us, ops, opdata, accountname, protocol, context); } /* Check the policy */ if (ops->policy) { policy = ops->policy(opdata, context); } /* Should we go on at all? */ if ((policy & OTRL_POLICY_VERSION_MASK) == 0) { return 0; } otrtag = strstr(message, "?OTR"); if (otrtag) { /* See if we have a V3 fragment. The '4' in the next line is * strlen("?OTR"). otrtag[4] is the character immediately after * the "?OTR", and is guaranteed to exist, because in the worst * case, it is the NUL terminating 'message'. */ if (otrtag[4] == '|') { /* Get the instance tag from fragment header*/ sscanf(otrtag, "?OTR|%x|%x,", &their_instance, &our_instance); /* Ignore message if it is intended for a different instance */ if (our_instance && context->our_instance != our_instance) { if (ops->handle_msg_event) { ops->handle_msg_event(opdata, OTRL_MSGEVENT_RCVDMSG_FOR_OTHER_INSTANCE, m_context, NULL, gcry_error(GPG_ERR_NO_ERROR)); } return 1; } /* Get the context for this instance */ if (their_instance >= OTRL_MIN_VALID_INSTAG) { context = otrl_context_find(us, sender, accountname, protocol, their_instance, 1, &context_added, add_appdata, data); } else { message_malformed(ops, opdata, context); return 1; } } switch(otrl_proto_fragment_accumulate(&unfragmessage, context, message)) { case OTRL_FRAGMENT_UNFRAGMENTED: /* Do nothing */ break; case OTRL_FRAGMENT_INCOMPLETE: /* We've accumulated this fragment, but we don't have a * complete message yet */ return 1; case OTRL_FRAGMENT_COMPLETE: /* We've got a new complete message, in unfragmessage. */ message = unfragmessage; otrtag = strstr(message, "?OTR"); break; } } /* What type of message is it? Note that this just checks the * header; it's not necessarily a _valid_ message of this type. */ msgtype = otrl_proto_message_type(message); version = otrl_proto_message_version(message); /* See if they responded to our OTR offer */ if ((policy & OTRL_POLICY_SEND_WHITESPACE_TAG)) { if (msgtype != OTRL_MSGTYPE_NOTOTR) { context->otr_offer = OFFER_ACCEPTED; } else if (context->otr_offer == OFFER_SENT) { context->otr_offer = OFFER_REJECTED; } } /* Check that this version is allowed by the policy */ if (((version == 3) && !(policy & OTRL_POLICY_ALLOW_V3)) || ((version == 2) && !(policy & OTRL_POLICY_ALLOW_V2)) || ((version == 1) && !(policy & OTRL_POLICY_ALLOW_V1))) { edata.ignore_message = 1; goto end; } /* Check the to and from instance tags */ if (version == 3) { err = gcry_error(GPG_ERR_INV_VALUE); if (otrtag) { err = otrl_proto_instance(otrtag, &their_instance, &our_instance); } if (!err) { if ((msgtype == OTRL_MSGTYPE_DH_COMMIT && our_instance && context->our_instance != our_instance) || (msgtype != OTRL_MSGTYPE_DH_COMMIT && context->our_instance != our_instance)) { if (ops->handle_msg_event) { ops->handle_msg_event(opdata, OTRL_MSGEVENT_RCVDMSG_FOR_OTHER_INSTANCE, m_context, NULL, gcry_error(GPG_ERR_NO_ERROR)); } /* ignore message intended for a different instance */ edata.ignore_message = 1; goto end; } if (their_instance >= OTRL_MIN_VALID_INSTAG) { context = otrl_context_find(us, sender, accountname, protocol, their_instance, 1, &context_added, add_appdata, data); } } if (err || their_instance < OTRL_MIN_VALID_INSTAG) { message_malformed(ops, opdata, context); edata.ignore_message = 1; goto end; } if (context_added) { /* Context added because of new instance (either here or when * accumulating fragments */ /* Copy information from m_context to the new instance context */ context->auth.protocol_version = 3; context->protocol_version = 3; context->msgstate = m_context->msgstate; if (m_context->context_priv->may_retransmit) { gcry_free(context->context_priv->lastmessage); context->context_priv->lastmessage = m_context->context_priv->lastmessage; m_context->context_priv->lastmessage = NULL; context->context_priv->may_retransmit = m_context->context_priv->may_retransmit; m_context->context_priv->may_retransmit = 0; } if (msgtype == OTRL_MSGTYPE_DH_KEY) { otrl_auth_copy_on_key(&(m_context->auth), &(context->auth)); } else if (msgtype != OTRL_MSGTYPE_DH_COMMIT) { edata.ignore_message = 1; goto end; } /* Update the context list */ if (ops->update_context_list) { ops->update_context_list(opdata); } } else if (m_context != context) { /* Switching from m_context to existing instance context */ if (msgtype == OTRL_MSGTYPE_DH_KEY && m_context->auth.authstate == OTRL_AUTHSTATE_AWAITING_DHKEY && !(context->auth.authstate == OTRL_AUTHSTATE_AWAITING_DHKEY)) { context->msgstate = m_context->msgstate; context->auth.protocol_version = 3; context->protocol_version = 3; otrl_auth_copy_on_key(&(m_context->auth), &(context->auth)); } } } if (contextp) { *contextp = context; } /* update time of last received message */ context->context_priv->lastrecv = time(NULL); otrl_context_update_recent_child(context, 0); edata.gone_encrypted = 0; edata.us = us; edata.context = context; edata.ops = ops; edata.opdata = opdata; edata.ignore_message = -1; edata.messagep = newmessagep; switch(msgtype) { unsigned int bestversion; const char *startwhite, *endwhite; DH_keypair *our_dh; unsigned int our_keyid; OtrlPrivKey *privkey; int haveauthmsg; case OTRL_MSGTYPE_QUERY: /* See if we should use an existing DH keypair, or generate * a fresh one. */ if (context->msgstate == OTRL_MSGSTATE_ENCRYPTED) { our_dh = &(context->context_priv->our_old_dh_key); our_keyid = context->context_priv->our_keyid - 1; } else { our_dh = NULL; our_keyid = 0; } /* Find the best version of OTR that we both speak */ switch(otrl_proto_query_bestversion(message, policy)) { case 3: err = otrl_auth_start_v23(&(context->auth), 3); send_or_error_auth(ops, opdata, err, context, us); break; case 2: err = otrl_auth_start_v23(&(context->auth), 2); send_or_error_auth(ops, opdata, err, context, us); break; case 1: /* Get our private key */ privkey = otrl_privkey_find(us, context->accountname, context->protocol); if (privkey == NULL) { /* We've got no private key! */ if (ops->create_privkey) { ops->create_privkey(opdata, context->accountname, context->protocol); privkey = otrl_privkey_find(us, context->accountname, context->protocol); } } if (privkey) { err = otrl_auth_start_v1(&(context->auth), our_dh, our_keyid, privkey); send_or_error_auth(ops, opdata, err, context, us); } break; default: /* Just ignore this message */ break; } /* Don't display the Query message to the user. */ if (edata.ignore_message == -1) edata.ignore_message = 1; break; case OTRL_MSGTYPE_DH_COMMIT: err = otrl_auth_handle_commit(&(context->auth), otrtag, version); send_or_error_auth(ops, opdata, err, context, us); if (edata.ignore_message == -1) edata.ignore_message = 1; break; case OTRL_MSGTYPE_DH_KEY: /* Get our private key */ privkey = otrl_privkey_find(us, context->accountname, context->protocol); if (privkey == NULL) { /* We've got no private key! */ if (ops->create_privkey) { ops->create_privkey(opdata, context->accountname, context->protocol); privkey = otrl_privkey_find(us, context->accountname, context->protocol); } } if (privkey) { err = otrl_auth_handle_key(&(context->auth), otrtag, &haveauthmsg, privkey); if (err || haveauthmsg) { send_or_error_auth(ops, opdata, err, context, us); } } if (edata.ignore_message == -1) edata.ignore_message = 1; break; case OTRL_MSGTYPE_REVEALSIG: /* Get our private key */ privkey = otrl_privkey_find(us, context->accountname, context->protocol); if (privkey == NULL) { /* We've got no private key! */ if (ops->create_privkey) { ops->create_privkey(opdata, context->accountname, context->protocol); privkey = otrl_privkey_find(us, context->accountname, context->protocol); } } if (privkey) { err = otrl_auth_handle_revealsig(&(context->auth), otrtag, &haveauthmsg, privkey, go_encrypted, &edata); if (err || haveauthmsg) { send_or_error_auth(ops, opdata, err, context, us); maybe_resend(&edata); } } if (edata.ignore_message == -1) edata.ignore_message = 1; break; case OTRL_MSGTYPE_SIGNATURE: err = otrl_auth_handle_signature(&(context->auth), otrtag, &haveauthmsg, go_encrypted, &edata); if (err || haveauthmsg) { send_or_error_auth(ops, opdata, err, context, us); maybe_resend(&edata); } if (edata.ignore_message == -1) edata.ignore_message = 1; break; case OTRL_MSGTYPE_V1_KEYEXCH: /* See if we should use an existing DH keypair, or generate * a fresh one. */ if (context->msgstate == OTRL_MSGSTATE_ENCRYPTED) { our_dh = &(context->context_priv->our_old_dh_key); our_keyid = context->context_priv->our_keyid - 1; } else { our_dh = NULL; our_keyid = 0; } /* Get our private key */ privkey = otrl_privkey_find(us, context->accountname, context->protocol); if (privkey == NULL) { /* We've got no private key! */ if (ops->create_privkey) { ops->create_privkey(opdata, context->accountname, context->protocol); privkey = otrl_privkey_find(us, context->accountname, context->protocol); } } if (privkey) { err = otrl_auth_handle_v1_key_exchange(&(context->auth), message, &haveauthmsg, privkey, our_dh, our_keyid, go_encrypted, &edata); if (err || haveauthmsg) { send_or_error_auth(ops, opdata, err, context, us); maybe_resend(&edata); } } if (edata.ignore_message == -1) edata.ignore_message = 1; break; case OTRL_MSGTYPE_DATA: switch(context->msgstate) { gcry_error_t err; OtrlTLV *tlvs, *tlv; char *plaintext; char *buf; const char *err_msg; unsigned char *extrakey; unsigned char flags; NextExpectedSMP nextMsg; case OTRL_MSGSTATE_PLAINTEXT: case OTRL_MSGSTATE_FINISHED: /* See if we're supposed to ignore this message in * the event it's unreadable. */ err = otrl_proto_data_read_flags(message, &flags); if ((flags & OTRL_MSGFLAGS_IGNORE_UNREADABLE)) { edata.ignore_message = 1; break; } if(best_context && best_context != context && best_context->msgstate == OTRL_MSGSTATE_ENCRYPTED) { if (ops->handle_msg_event) { ops->handle_msg_event(opdata, OTRL_MSGEVENT_RCVDMSG_FOR_OTHER_INSTANCE, m_context, NULL, gcry_error(GPG_ERR_NO_ERROR)); } } else if (ops->handle_msg_event) { ops->handle_msg_event(opdata, OTRL_MSGEVENT_RCVDMSG_NOT_IN_PRIVATE, context, NULL, gcry_error(GPG_ERR_NO_ERROR)); } edata.ignore_message = 1; /* We don't actually want to send anything in this case, since this could just be a message intended for another v2 instance. We still notify the local user though */ break; case OTRL_MSGSTATE_ENCRYPTED: extrakey = gcry_malloc_secure(OTRL_EXTRAKEY_BYTES); err = otrl_proto_accept_data(&plaintext, &tlvs, context, message, &flags, extrakey); if (err) { int is_conflict = (gpg_err_code(err) == GPG_ERR_CONFLICT); if ((flags & OTRL_MSGFLAGS_IGNORE_UNREADABLE)) { edata.ignore_message = 1; break; } if (is_conflict) { if (ops->handle_msg_event) { ops->handle_msg_event(opdata, OTRL_MSGEVENT_RCVDMSG_UNREADABLE, context, NULL, gcry_error(GPG_ERR_NO_ERROR)); } } else { if (ops->handle_msg_event) { ops->handle_msg_event(opdata, OTRL_MSGEVENT_RCVDMSG_MALFORMED, context, NULL, gcry_error(GPG_ERR_NO_ERROR)); } } if (ops->inject_message && ops->otr_error_message) { err_msg = ops->otr_error_message(opdata, context, is_conflict ? OTRL_ERRCODE_MSG_UNREADABLE : OTRL_ERRCODE_MSG_MALFORMED); if (err_msg) { buf = malloc(strlen(OTR_ERROR_PREFIX) + strlen(err_msg) + 1); if (buf) { strcpy(buf, OTR_ERROR_PREFIX); strcat(buf, err_msg); ops->inject_message(opdata, accountname, protocol, sender, buf); free(buf); } } if (ops->otr_error_message_free) { ops->otr_error_message_free(opdata, err_msg); } } edata.ignore_message = 1; break; } /* If the other side told us he's disconnected his * private connection, make a note of that so we * don't try sending anything else to him. */ if (otrl_tlv_find(tlvs, OTRL_TLV_DISCONNECTED)) { otrl_context_force_finished(context); } /* If the other side told us to use the current * extra symmetric key, let the application know. */ tlv = otrl_tlv_find(tlvs, OTRL_TLV_SYMKEY); if (tlv && otrl_api_version >= 0x040000) { if (ops->received_symkey && tlv->len >= 4) { unsigned char *bufp = tlv->data; unsigned int use = (bufp[0] << 24) | (bufp[1] << 16) | (bufp[2] << 8) | bufp[3]; ops->received_symkey(opdata, context, use, bufp+4, tlv->len - 4, extrakey); } } gcry_free(extrakey); extrakey = NULL; /* If TLVs contain SMP data, process it */ nextMsg = context->smstate->nextExpected; tlv = otrl_tlv_find(tlvs, OTRL_TLV_SMP1Q); if (tlv) { if (nextMsg == OTRL_SMP_EXPECT1 && tlv->len > 0) { /* We can only do the verification half now. * We must wait for the secret to be entered * to continue. */ char *question = (char *)tlv->data; char *qend = memchr(question, '\0', tlv->len - 1); size_t qlen = qend ? (qend - question + 1) : tlv->len; otrl_sm_step2a(context->smstate, tlv->data + qlen, tlv->len - qlen, 1); if (context->smstate->sm_prog_state != OTRL_SMP_PROG_CHEATED) { if (ops->handle_smp_event) { ops->handle_smp_event(opdata, OTRL_SMPEVENT_ASK_FOR_ANSWER, context, 25, question); } } else { if (ops->handle_smp_event) { ops->handle_smp_event(opdata, OTRL_SMPEVENT_CHEATED, context, 0, NULL); } context->smstate->nextExpected = OTRL_SMP_EXPECT1; context->smstate->sm_prog_state = OTRL_SMP_PROG_OK; } } else { if (ops->handle_smp_event) { ops->handle_smp_event(opdata, OTRL_SMPEVENT_ERROR, context, 0, NULL); } } } tlv = otrl_tlv_find(tlvs, OTRL_TLV_SMP1); if (tlv) { if (nextMsg == OTRL_SMP_EXPECT1) { /* We can only do the verification half now. * We must wait for the secret to be entered * to continue. */ otrl_sm_step2a(context->smstate, tlv->data, tlv->len, 0); if (context->smstate->sm_prog_state != OTRL_SMP_PROG_CHEATED) { if (ops->handle_smp_event) { ops->handle_smp_event(opdata, OTRL_SMPEVENT_ASK_FOR_SECRET, context, 25, NULL); } } else { if (ops->handle_smp_event) { ops->handle_smp_event(opdata, OTRL_SMPEVENT_CHEATED, context, 0, NULL); } context->smstate->nextExpected = OTRL_SMP_EXPECT1; context->smstate->sm_prog_state = OTRL_SMP_PROG_OK; } } else { if (ops->handle_smp_event) { ops->handle_smp_event(opdata, OTRL_SMPEVENT_ERROR, context, 0, NULL); } } } tlv = otrl_tlv_find(tlvs, OTRL_TLV_SMP2); if (tlv) { if (nextMsg == OTRL_SMP_EXPECT2) { unsigned char* nextmsg; int nextmsglen; OtrlTLV *sendtlv; char *sendsmp = NULL; otrl_sm_step3(context->smstate, tlv->data, tlv->len, &nextmsg, &nextmsglen); if (context->smstate->sm_prog_state != OTRL_SMP_PROG_CHEATED) { /* Send msg with next smp msg content */ sendtlv = otrl_tlv_new(OTRL_TLV_SMP3, nextmsglen, nextmsg); err = otrl_proto_create_data(&sendsmp, context, "", sendtlv, OTRL_MSGFLAGS_IGNORE_UNREADABLE, NULL); if (!err) { err = fragment_and_send(ops, opdata, context, sendsmp, OTRL_FRAGMENT_SEND_ALL, NULL); } free(sendsmp); otrl_tlv_free(sendtlv); if (ops->handle_smp_event) { ops->handle_smp_event(opdata, OTRL_SMPEVENT_IN_PROGRESS, context, 60, NULL); } context->smstate->nextExpected = OTRL_SMP_EXPECT4; } else { if (ops->handle_smp_event) { ops->handle_smp_event(opdata, OTRL_SMPEVENT_CHEATED, context, 0, NULL); } context->smstate->nextExpected = OTRL_SMP_EXPECT1; context->smstate->sm_prog_state = OTRL_SMP_PROG_OK; } free(nextmsg); } else { if (ops->handle_smp_event) { ops->handle_smp_event(opdata, OTRL_SMPEVENT_ERROR, context, 0, NULL); } } } tlv = otrl_tlv_find(tlvs, OTRL_TLV_SMP3); if (tlv) { if (nextMsg == OTRL_SMP_EXPECT3) { unsigned char* nextmsg; int nextmsglen; OtrlTLV *sendtlv; char *sendsmp = NULL; err = otrl_sm_step4(context->smstate, tlv->data, tlv->len, &nextmsg, &nextmsglen); /* Set trust level based on result */ if (context->smstate->received_question == 0) { set_smp_trust(ops, opdata, context, (err == gcry_error(GPG_ERR_NO_ERROR))); } if (context->smstate->sm_prog_state != OTRL_SMP_PROG_CHEATED) { /* Send msg with next smp msg content */ sendtlv = otrl_tlv_new(OTRL_TLV_SMP4, nextmsglen, nextmsg); err = otrl_proto_create_data(&sendsmp, context, "", sendtlv, OTRL_MSGFLAGS_IGNORE_UNREADABLE, NULL); if (!err) { err = fragment_and_send(ops, opdata, context, sendsmp, OTRL_FRAGMENT_SEND_ALL, NULL); } free(sendsmp); otrl_tlv_free(sendtlv); if (ops->handle_smp_event) { OtrlSMPEvent succorfail = context->smstate->sm_prog_state == OTRL_SMP_PROG_SUCCEEDED ? OTRL_SMPEVENT_SUCCESS : OTRL_SMPEVENT_FAILURE; ops->handle_smp_event(opdata, succorfail, context, 100, NULL); } context->smstate->nextExpected = OTRL_SMP_EXPECT1; } else { if (ops->handle_smp_event) { ops->handle_smp_event(opdata, OTRL_SMPEVENT_CHEATED, context, 0, NULL); } context->smstate->nextExpected = OTRL_SMP_EXPECT1; context->smstate->sm_prog_state = OTRL_SMP_PROG_OK; } free(nextmsg); } else { if (ops->handle_smp_event) { ops->handle_smp_event(opdata, OTRL_SMPEVENT_ERROR, context, 0, NULL); } } } tlv = otrl_tlv_find(tlvs, OTRL_TLV_SMP4); if (tlv) { if (nextMsg == OTRL_SMP_EXPECT4) { err = otrl_sm_step5(context->smstate, tlv->data, tlv->len); /* Set trust level based on result */ set_smp_trust(ops, opdata, context, (err == gcry_error(GPG_ERR_NO_ERROR))); if (context->smstate->sm_prog_state != OTRL_SMP_PROG_CHEATED) { if (ops->handle_smp_event) { OtrlSMPEvent succorfail = context->smstate->sm_prog_state == OTRL_SMP_PROG_SUCCEEDED ? OTRL_SMPEVENT_SUCCESS : OTRL_SMPEVENT_FAILURE; ops->handle_smp_event(opdata, succorfail, context, 100, NULL); } context->smstate->nextExpected = OTRL_SMP_EXPECT1; } else { if (ops->handle_smp_event) { ops->handle_smp_event(opdata, OTRL_SMPEVENT_CHEATED, context, 0, NULL); } context->smstate->nextExpected = OTRL_SMP_EXPECT1; context->smstate->sm_prog_state = OTRL_SMP_PROG_OK; } } else { if (ops->handle_smp_event) { ops->handle_smp_event(opdata, OTRL_SMPEVENT_ERROR, context, 0, NULL); } } } tlv = otrl_tlv_find(tlvs, OTRL_TLV_SMP_ABORT); if (tlv) { context->smstate->nextExpected = OTRL_SMP_EXPECT1; if (ops->handle_smp_event) { ops->handle_smp_event(opdata, OTRL_SMPEVENT_ABORT, context, 0, NULL); } } if (plaintext[0] == '\0') { /* If it's a heartbeat (an empty message), don't * display it to the user, but signal an event. */ if (ops->handle_msg_event) { ops->handle_msg_event(opdata, OTRL_MSGEVENT_LOG_HEARTBEAT_RCVD, context, NULL, gcry_error(GPG_ERR_NO_ERROR)); } edata.ignore_message = 1; } else if (edata.ignore_message != 1 && context->context_priv->their_keyid > 0) { /* If it's *not* a heartbeat, and we haven't * sent anything in a while, also send a * heartbeat. */ time_t now = time(NULL); if (context->context_priv->lastsent < (now - HEARTBEAT_INTERVAL)) { char *heartbeat; /* Create the heartbeat message */ err = otrl_proto_create_data(&heartbeat, context, "", NULL, OTRL_MSGFLAGS_IGNORE_UNREADABLE, NULL); if (!err) { /* Send it, and inject a debug message */ if (ops->inject_message) { ops->inject_message(opdata, accountname, protocol, sender, heartbeat); } free(heartbeat); context->context_priv->lastsent = now; otrl_context_update_recent_child(context, 1); /* Signal an event for the heartbeat message */ if (ops->handle_msg_event) { ops->handle_msg_event(opdata, OTRL_MSGEVENT_LOG_HEARTBEAT_SENT, context, NULL, gcry_error(GPG_ERR_NO_ERROR)); } } } } /* Return the TLVs even if ignore_message == 1 so * that we can attach TLVs to heartbeats. */ if (tlvsp) { *tlvsp = tlvs; } else { otrl_tlv_free(tlvs); } if (edata.ignore_message != 1) { char *converted_msg = NULL; *newmessagep = plaintext; edata.ignore_message = 0; /* convert the plaintext message if necessary */ if (ops->convert_msg) { ops->convert_msg(opdata, context, OTRL_CONVERT_RECEIVING, &converted_msg, plaintext); if (converted_msg) { free(plaintext); plaintext = NULL; *newmessagep = strdup(converted_msg); if (ops->convert_free) { ops->convert_free(opdata, context, converted_msg); } } } } else { free(plaintext); } break; } break; case OTRL_MSGTYPE_ERROR: if ((policy & OTRL_POLICY_ERROR_START_AKE)) { char *msgtosend = otrl_proto_default_query_msg( context->accountname, policy); if (msgtosend && ops->inject_message) { ops->inject_message(opdata, context->accountname, context->protocol, context->username, msgtosend); } free(msgtosend); } if (context->msgstate == OTRL_MSGSTATE_ENCRYPTED) { /* Mark the last message we sent as eligible for * retransmission */ context->context_priv->may_retransmit = 1; } /* In any event, display the error message, with the * display_otr_message callback, if possible */ if (ops->handle_msg_event) { /* Remove the OTR error prefix and pass the msg */ const char *just_err_msg = strstr(message, OTR_ERROR_PREFIX); if (!just_err_msg) { just_err_msg = message; } else { just_err_msg += (strlen(OTR_ERROR_PREFIX)); if (*just_err_msg == ' ') { /* Advance pointer to skip the space character */ just_err_msg++; } ops->handle_msg_event(opdata, OTRL_MSGEVENT_RCVDMSG_GENERAL_ERR, context, just_err_msg, gcry_error(GPG_ERR_NO_ERROR)); edata.ignore_message = 1; } } break; case OTRL_MSGTYPE_TAGGEDPLAINTEXT: /* Strip the tag from the message */ bestversion = otrl_proto_whitespace_bestversion(message, &startwhite, &endwhite, policy); if (startwhite && endwhite) { size_t restlen = strlen(endwhite); char *strippedmsg = strdup(message); if (strippedmsg) { memmove(strippedmsg + (startwhite - message), strippedmsg + (endwhite - message), restlen+1); *newmessagep = strippedmsg; edata.ignore_message = 0; } } if (bestversion && context->msgstate != OTRL_MSGSTATE_ENCRYPTED && (policy & OTRL_POLICY_WHITESPACE_START_AKE)) { switch(bestversion) { case 3: err = otrl_auth_start_v23(&(context->auth), 3); send_or_error_auth(ops, opdata, err, context, us); break; case 2: err = otrl_auth_start_v23(&(context->auth), 2); send_or_error_auth(ops, opdata, err, context, us); break; case 1: /* Get our private key */ privkey = otrl_privkey_find(us, context->accountname, context->protocol); if (privkey == NULL) { /* We've got no private key! */ if (ops->create_privkey) { ops->create_privkey(opdata, context->accountname, context->protocol); privkey = otrl_privkey_find(us, context->accountname, context->protocol); } } if (privkey) { err = otrl_auth_start_v1(&(context->auth), NULL, 0, privkey); send_or_error_auth(ops, opdata, err, context, us); } break; default: /* Don't start the AKE */ break; } } /* FALLTHROUGH */ case OTRL_MSGTYPE_NOTOTR: if (best_context->msgstate != OTRL_MSGSTATE_PLAINTEXT || (policy & OTRL_POLICY_REQUIRE_ENCRYPTION)) { /* Not fine. Let the user know. */ const char *plainmsg = (*newmessagep) ? *newmessagep : message; if (ops->handle_msg_event) { ops->handle_msg_event(opdata, OTRL_MSGEVENT_RCVDMSG_UNENCRYPTED, context, plainmsg, gcry_error(GPG_ERR_NO_ERROR)); free(*newmessagep); *newmessagep = NULL; edata.ignore_message = 1; } } break; case OTRL_MSGTYPE_UNKNOWN: /* We received an OTR message we didn't recognize. Ignore * it, and signal an event. */ if (ops->handle_msg_event) { ops->handle_msg_event(opdata, OTRL_MSGEVENT_RCVDMSG_UNRECOGNIZED, context, NULL, gcry_error(GPG_ERR_NO_ERROR)); } if (edata.ignore_message == -1) edata.ignore_message = 1; break; } end: /* If we reassembled a fragmented message, we need to free the * allocated memory now. */ free(unfragmessage); if (edata.ignore_message == -1) edata.ignore_message = 0; return edata.ignore_message; } /* Put a connection into the PLAINTEXT state, first sending the * other side a notice that we're doing so if we're currently ENCRYPTED, * and we think he's logged in. Affects only the specified context. */ static void disconnect_context(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, ConnContext *context) { if (!context) return; if (context->msgstate == OTRL_MSGSTATE_ENCRYPTED && context->context_priv->their_keyid > 0 && ops->is_logged_in && ops->is_logged_in(opdata, context->accountname, context->protocol, context->username) == 1) { if (ops->inject_message) { char *encmsg = NULL; gcry_error_t err; OtrlTLV *tlv = otrl_tlv_new(OTRL_TLV_DISCONNECTED, 0, NULL); err = otrl_proto_create_data(&encmsg, context, "", tlv, OTRL_MSGFLAGS_IGNORE_UNREADABLE, NULL); if (!err) { ops->inject_message(opdata, context->accountname, context->protocol, context->username, encmsg); } free(encmsg); otrl_tlv_free(tlv); } } otrl_context_force_plaintext(context); if (ops->update_context_list) { ops->update_context_list(opdata); } } /* Put a connection into the PLAINTEXT state, first sending the * other side a notice that we're doing so if we're currently ENCRYPTED, * and we think he's logged in. Affects only the specified instance. */ void otrl_message_disconnect(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, const char *accountname, const char *protocol, const char *username, otrl_instag_t instance) { ConnContext *context = otrl_context_find(us, username, accountname, protocol, instance, 0, NULL, NULL, NULL); if (!context) return; disconnect_context(us, ops, opdata, context); } /* Put a connection into the PLAINTEXT state, first sending the * other side a notice that we're doing so if we're currently ENCRYPTED, * and we think he's logged in. Affects all matching instances. */ void otrl_message_disconnect_all_instances(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, const char *accountname, const char *protocol, const char *username) { ConnContext * c_iter; ConnContext *context; if (!username || !accountname || !protocol) return; context = otrl_context_find(us, username, accountname, protocol, OTRL_INSTAG_MASTER, 0, NULL, NULL, NULL); if (!context) return; for (c_iter = context; c_iter && c_iter->m_context == context->m_context; c_iter = c_iter->next) { disconnect_context(us, ops, opdata, c_iter); } } /* Get the current extra symmetric key (of size OTRL_EXTRAKEY_BYTES * bytes) and let the other side know what we're going to use it for. * The key is stored in symkey, which must already be allocated * and OTRL_EXTRAKEY_BYTES bytes long. */ gcry_error_t otrl_message_symkey(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata, ConnContext *context, unsigned int use, const unsigned char *usedata, size_t usedatalen, unsigned char *symkey) { if (!context || (usedatalen > 0 && !usedata)) { return gcry_error(GPG_ERR_INV_VALUE); } if (context->msgstate == OTRL_MSGSTATE_ENCRYPTED && context->context_priv->their_keyid > 0) { unsigned char *tlvdata = malloc(usedatalen+4); char *encmsg = NULL; gcry_error_t err; OtrlTLV *tlv; tlvdata[0] = (use >> 24) & 0xff; tlvdata[1] = (use >> 16) & 0xff; tlvdata[2] = (use >> 8) & 0xff; tlvdata[3] = (use) & 0xff; if (usedatalen > 0) { memmove(tlvdata+4, usedata, usedatalen); } tlv = otrl_tlv_new(OTRL_TLV_SYMKEY, usedatalen+4, tlvdata); free(tlvdata); err = otrl_proto_create_data(&encmsg, context, "", tlv, OTRL_MSGFLAGS_IGNORE_UNREADABLE, symkey); if (!err && ops->inject_message) { ops->inject_message(opdata, context->accountname, context->protocol, context->username, encmsg); } free(encmsg); otrl_tlv_free(tlv); return err; } /* We weren't in an encrypted session. */ return gcry_error(GPG_ERR_INV_VALUE); } /* If you do _not_ define a timer_control callback function, set a timer * to go off every definterval = * otrl_message_poll_get_default_interval(userstate) seconds, and call * otrl_message_poll every time the timer goes off. */ unsigned int otrl_message_poll_get_default_interval(OtrlUserState us) { return POLL_DEFAULT_INTERVAL; } /* Call this function every so often, either as directed by the * timer_control callback, or every definterval = * otrl_message_poll_get_default_interval(userstate) seconds if you have * no timer_control callback. This function must be called from the * main libotr thread.*/ void otrl_message_poll(OtrlUserState us, const OtrlMessageAppOps *ops, void *opdata) { /* Wipe private keys last sent before this time */ time_t expire_before = time(NULL) - MAX_AKE_WAIT_TIME; ConnContext *contextp; /* Is there a context still waiting for a DHKEY message, even after * we wipe the stale ones? */ int still_waiting = 0; if (us == NULL) return; for (contextp = us->context_root; contextp; contextp = contextp->next) { /* If this is a master context, and it's still waiting for a * v3 DHKEY message, see if it's waited long enough. */ if (contextp->m_context == contextp && contextp->auth.authstate == OTRL_AUTHSTATE_AWAITING_DHKEY && contextp->auth.protocol_version == 3 && contextp->auth.commit_sent_time > 0) { if (contextp->auth.commit_sent_time < expire_before) { otrl_auth_clear(&contextp->auth); } else { /* Not yet expired */ still_waiting = 1; } } } /* If there's nothing more to wait for, stop the timer, if possible. */ if (still_waiting == 0 && ops && ops->timer_control) { ops->timer_control(opdata, 0); us->timer_running = 0; } } ��������������������������������������������������libotr-4.1.1/src/Makefile.am������������������������������������������������������������������������0000664�0001750�0001750�00000000746�12637277541�012603� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������AM_CPPFLAGS = @LIBGCRYPT_CFLAGS@ lib_LTLIBRARIES = libotr.la libotr_la_SOURCES = privkey.c context.c proto.c b64.c dh.c mem.c message.c \ userstate.c tlv.c auth.c sm.c context_priv.c instag.c libotr_la_LDFLAGS = -version-info @LIBOTR_LIBTOOL_VERSION@ @LIBS@ @LIBGCRYPT_LIBS@ otrincdir = $(includedir)/libotr otrinc_HEADERS = b64.h context.h dh.h mem.h message.h privkey.h proto.h \ version.h userstate.h tlv.h serial.h auth.h sm.h privkey-t.h \ context_priv.h instag.h ��������������������������libotr-4.1.1/src/context_priv.h���������������������������������������������������������������������0000664�0001750�0001750�00000005245�12637277541�013443� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Willy Lew, * Lisa Du, Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __CONTEXT_PRIV_H__ #define __CONTEXT_PRIV_H__ #include <gcrypt.h> #include "dh.h" #include "auth.h" #include "sm.h" typedef struct context_priv { /* The part of the fragmented message we've seen so far */ char *fragment; /* The length of fragment */ size_t fragment_len; /* The total number of fragments in this message */ unsigned short fragment_n; /* The highest fragment number we've seen so far for this message */ unsigned short fragment_k; /* current keyid used by other side; this is set to 0 if we get * a OTRL_TLV_DISCONNECTED message from them. */ unsigned int their_keyid; /* Y[their_keyid] (their DH pubkey) */ gcry_mpi_t their_y; /* Y[their_keyid-1] (their prev DH pubkey) */ gcry_mpi_t their_old_y; /* current keyid used by us */ unsigned int our_keyid; /* DH key[our_keyid] */ DH_keypair our_dh_key; /* DH key[our_keyid-1] */ DH_keypair our_old_dh_key; /* sesskeys[i][j] are the session keys derived from DH * key[our_keyid-i] and mpi Y[their_keyid-j] */ DH_sesskeys sesskeys[2][2]; /* saved mac keys to be revealed later */ unsigned int numsavedkeys; unsigned char *saved_mac_keys; /* generation number: increment every time we go private, and never * reset to 0 (unless we remove the context entirely) */ unsigned int generation; /* The last time a Data Message was sent */ time_t lastsent; /* The last time a Data Message was received */ time_t lastrecv; /* The plaintext of the last Data Message sent */ char *lastmessage; /* Is the last message eligible for retransmission? */ int may_retransmit; } ConnContextPriv; /* Create a new private connection context. */ ConnContextPriv *otrl_context_priv_new(); /* Frees up memory that was used in otrl_context_priv_new */ void otrl_context_priv_force_finished(ConnContextPriv *context_priv); #endif �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/version.h��������������������������������������������������������������������������0000664�0001750�0001750�00000002153�12667026423�012371� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2016 Ian Goldberg, David Goulet, Rob Smits, * Chris Alexander, Willy Lew, Lisa Du, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __VERSION_H__ #define __VERSION_H__ #define OTRL_VERSION "4.1.1" #define OTRL_VERSION_MAJOR 4 #define OTRL_VERSION_MINOR 1 #define OTRL_VERSION_SUB 1 #endif ���������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/privkey-t.h������������������������������������������������������������������������0000664�0001750�0001750�00000003010�12637277541�012635� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2009 Ian Goldberg, Chris Alexander, Willy Lew, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __PRIVKEY_T_H__ #define __PRIVKEY_T_H__ #include <gcrypt.h> typedef struct s_OtrlPrivKey { struct s_OtrlPrivKey *next; struct s_OtrlPrivKey **tous; char *accountname; char *protocol; unsigned short pubkey_type; gcry_sexp_t privkey; unsigned char *pubkey_data; size_t pubkey_datalen; } OtrlPrivKey; #define OTRL_PUBKEY_TYPE_DSA 0x0000 /* The list of privkeys currently being constructed, possibly in a * background thread */ typedef struct s_OtrlPendingPrivKey { struct s_OtrlPendingPrivKey *next; struct s_OtrlPendingPrivKey **tous; char *accountname; char *protocol; } OtrlPendingPrivKey; #endif ������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/context.h��������������������������������������������������������������������������0000664�0001750�0001750�00000017266�12637277541�012411� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2014 Ian Goldberg, David Goulet, Rob Smits, * Chris Alexander, Willy Lew, Lisa Du, * Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __CONTEXT_H__ #define __CONTEXT_H__ #include "context_priv.h" #include <gcrypt.h> #include "dh.h" #include "auth.h" #include "sm.h" typedef struct context ConnContext; /* Forward declare */ #include "instag.h" typedef enum { OTRL_MSGSTATE_PLAINTEXT, /* Not yet started an encrypted conversation */ OTRL_MSGSTATE_ENCRYPTED, /* Currently in an encrypted conversation */ OTRL_MSGSTATE_FINISHED /* The remote side has sent us a notification that he has ended his end of the encrypted conversation; prevent any further messages from being sent to him. */ } OtrlMessageState; typedef struct s_fingerprint { struct s_fingerprint *next; /* The next fingerprint in the list */ struct s_fingerprint **tous; /* A pointer to the pointer to us */ unsigned char *fingerprint; /* The fingerprint, or NULL */ struct context *context; /* The context to which we belong */ char *trust; /* The trust level of the fingerprint */ } Fingerprint; struct context { struct context * next; /* Linked list pointer */ struct context ** tous; /* A pointer to the pointer to us */ /* Context information that is meant for internal use */ ConnContextPriv *context_priv; /* Context information that is meant for application use */ char * username; /* The user this context is for */ char * accountname; /* The username is relative to this account... */ char * protocol; /* ... and this protocol */ struct context *m_context; /* If this is a child context, this field will point to the master context. Otherwise it will point to itself. */ struct context *recent_rcvd_child; /* If this is a master context, this points to the child context that has received a message most recently. By default, it will point to the master context. In child contexts this field is NULL. */ struct context *recent_sent_child; /* Similar to above, but it points to the child who has sent most recently. */ struct context *recent_child; /* Similar to above, but will point to the most recent of recent_rcvd_child and recent_sent_child */ otrl_instag_t our_instance; /* Our instance tag for this computer*/ otrl_instag_t their_instance; /* The user's instance tag */ OtrlMessageState msgstate; /* The state of message disposition with this user */ OtrlAuthInfo auth; /* The state of ongoing authentication with this user */ Fingerprint fingerprint_root; /* The root of a linked list of Fingerprints entries. This list will only be populated in master contexts. For child contexts, fingerprint_root.next will always point to NULL. */ Fingerprint *active_fingerprint; /* Which fingerprint is in use now? A pointer into the above list */ unsigned char sessionid[20]; /* The sessionid and bold half */ size_t sessionid_len; /* determined when this private */ OtrlSessionIdHalf sessionid_half; /* connection was established. */ unsigned int protocol_version; /* The version of OTR in use */ enum { OFFER_NOT, OFFER_SENT, OFFER_REJECTED, OFFER_ACCEPTED } otr_offer; /* Has this correspondent repsponded to our OTR offers? */ /* Application data to be associated with this context */ void *app_data; /* A function to free the above data when we forget this context */ void (*app_data_free)(void *); OtrlSMState *smstate; /* The state of the current socialist millionaires exchange */ }; #include "userstate.h" /* Look up a connection context by name/account/protocol/instance from the * given OtrlUserState. If add_if_missing is true, allocate and return a * new context if one does not currently exist. In that event, call * add_app_data(data, context) so that app_data and app_data_free can be * filled in by the application, and set *addedp to 1. * In the 'their_instance' field note that you can also specify a 'meta- * instance' value such as OTRL_INSTAG_MASTER, OTRL_INSTAL_RECENT, * OTRL_INSTAG_RECENT_RECEIVED and OTRL_INSTAG_RECENT_SENT. */ ConnContext * otrl_context_find(OtrlUserState us, const char *user, const char *accountname, const char *protocol, otrl_instag_t their_instance, int add_if_missing, int *addedp, void (*add_app_data)(void *data, ConnContext *context), void *data); /* Return true iff the given fingerprint is marked as trusted. */ int otrl_context_is_fingerprint_trusted(Fingerprint *fprint); /* This method gets called after sending or receiving a message, to * update the master context's "recent context" pointers. */ void otrl_context_update_recent_child(ConnContext *context, unsigned int sent_msg); /* Find a fingerprint in a given context, perhaps adding it if not * present. */ Fingerprint *otrl_context_find_fingerprint(ConnContext *context, unsigned char fingerprint[20], int add_if_missing, int *addedp); /* Set the trust level for a given fingerprint */ void otrl_context_set_trust(Fingerprint *fprint, const char *trust); /* Force a context into the OTRL_MSGSTATE_FINISHED state. */ void otrl_context_force_finished(ConnContext *context); /* Force a context into the OTRL_MSGSTATE_PLAINTEXT state. */ void otrl_context_force_plaintext(ConnContext *context); /* Forget a fingerprint (so long as it's not the active one. If it's a * fingerprint_root, forget the whole context (as long as * and_maybe_context is set, and it's PLAINTEXT). Also, if it's not * the fingerprint_root, but it's the only fingerprint, and we're * PLAINTEXT, forget the whole context if and_maybe_context is set. */ void otrl_context_forget_fingerprint(Fingerprint *fprint, int and_maybe_context); /* Forget a whole context, so long as it's PLAINTEXT. If a context has child * instances, don't remove this instance unless children are also all in * PLAINTEXT state. In this case, the children will also be removed. * Returns 0 on success, 1 on failure. */ int otrl_context_forget(ConnContext *context); /* Forget all the contexts in a given OtrlUserState. */ void otrl_context_forget_all(OtrlUserState us); /* Find requested recent instance */ ConnContext * otrl_context_find_recent_instance(ConnContext * context, otrl_instag_t recent_instag); /* Find the instance of this context that has the best security level, and for * which we have most recently received a message from. Note that most recent * in this case is limited to a one-second resolution. */ ConnContext * otrl_context_find_recent_secure_instance(ConnContext * context); #endif ������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/privkey.h��������������������������������������������������������������������������0000664�0001750�0001750�00000015271�12637277541�012410� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2012 Ian Goldberg, Chris Alexander, Willy Lew, * Lisa Du, Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __PRIVKEY_H__ #define __PRIVKEY_H__ #include <stdio.h> #include "privkey-t.h" #include "userstate.h" /* The length of a string representing a human-readable version of a * fingerprint (including the trailing NUL) */ #define OTRL_PRIVKEY_FPRINT_HUMAN_LEN 45 /* Convert a 20-byte hash value to a 45-byte human-readable value */ void otrl_privkey_hash_to_human( char human[OTRL_PRIVKEY_FPRINT_HUMAN_LEN], const unsigned char hash[20]); /* Calculate a human-readable hash of our DSA public key. Return it in * the passed fingerprint buffer. Return NULL on error, or a pointer to * the given buffer on success. */ char *otrl_privkey_fingerprint(OtrlUserState us, char fingerprint[OTRL_PRIVKEY_FPRINT_HUMAN_LEN], const char *accountname, const char *protocol); /* Calculate a raw hash of our DSA public key. Return it in the passed * fingerprint buffer. Return NULL on error, or a pointer to the given * buffer on success. */ unsigned char *otrl_privkey_fingerprint_raw(OtrlUserState us, unsigned char hash[20], const char *accountname, const char *protocol); /* Read a sets of private DSA keys from a file on disk into the given * OtrlUserState. */ gcry_error_t otrl_privkey_read(OtrlUserState us, const char *filename); /* Read a sets of private DSA keys from a FILE* into the given * OtrlUserState. The FILE* must be open for reading. */ gcry_error_t otrl_privkey_read_FILEp(OtrlUserState us, FILE *privf); /* Free the memory associated with the pending privkey list */ void otrl_privkey_pending_forget_all(OtrlUserState us); /* Begin a private key generation that will potentially take place in * a background thread. This routine must be called from the main * thread. It will set *newkeyp, which you can pass to * otrl_privkey_generate_calculate in a background thread. If it * returns gcry_error(GPG_ERR_EEXIST), then a privkey creation for * this accountname/protocol is already in progress, and *newkeyp will * be set to NULL. */ gcry_error_t otrl_privkey_generate_start(OtrlUserState us, const char *accountname, const char *protocol, void **newkeyp); /* Do the private key generation calculation. You may call this from a * background thread. When it completes, call * otrl_privkey_generate_finish from the _main_ thread. */ gcry_error_t otrl_privkey_generate_calculate(void *newkey); /* Call this from the main thread only. It will write the newly created * private key into the given file and store it in the OtrlUserState. */ gcry_error_t otrl_privkey_generate_finish(OtrlUserState us, void *newkey, const char *filename); /* Call this from the main thread only. It will write the newly created * private key into the given FILE* (which must be open for reading and * writing) and store it in the OtrlUserState. */ gcry_error_t otrl_privkey_generate_finish_FILEp(OtrlUserState us, void *newkey, FILE *privf); /* Call this from the main thread only, in the event that the background * thread generating the key is cancelled. The newkey is deallocated, * and must not be used further. */ void otrl_privkey_generate_cancelled(OtrlUserState us, void *newkey); /* Generate a private DSA key for a given account, storing it into a * file on disk, and loading it into the given OtrlUserState. Overwrite any * previously generated keys for that account in that OtrlUserState. */ gcry_error_t otrl_privkey_generate(OtrlUserState us, const char *filename, const char *accountname, const char *protocol); /* Generate a private DSA key for a given account, storing it into a * FILE*, and loading it into the given OtrlUserState. Overwrite any * previously generated keys for that account in that OtrlUserState. * The FILE* must be open for reading and writing. */ gcry_error_t otrl_privkey_generate_FILEp(OtrlUserState us, FILE *privf, const char *accountname, const char *protocol); /* Read the fingerprint store from a file on disk into the given * OtrlUserState. Use add_app_data to add application data to each * ConnContext so created. */ gcry_error_t otrl_privkey_read_fingerprints(OtrlUserState us, const char *filename, void (*add_app_data)(void *data, ConnContext *context), void *data); /* Read the fingerprint store from a FILE* into the given * OtrlUserState. Use add_app_data to add application data to each * ConnContext so created. The FILE* must be open for reading. */ gcry_error_t otrl_privkey_read_fingerprints_FILEp(OtrlUserState us, FILE *storef, void (*add_app_data)(void *data, ConnContext *context), void *data); /* Write the fingerprint store from a given OtrlUserState to a file on disk. */ gcry_error_t otrl_privkey_write_fingerprints(OtrlUserState us, const char *filename); /* Write the fingerprint store from a given OtrlUserState to a FILE*. * The FILE* must be open for writing. */ gcry_error_t otrl_privkey_write_fingerprints_FILEp(OtrlUserState us, FILE *storef); /* Fetch the private key from the given OtrlUserState associated with * the given account */ OtrlPrivKey *otrl_privkey_find(OtrlUserState us, const char *accountname, const char *protocol); /* Forget a private key */ void otrl_privkey_forget(OtrlPrivKey *privkey); /* Forget all private keys in a given OtrlUserState. */ void otrl_privkey_forget_all(OtrlUserState us); /* Sign data using a private key. The data must be small enough to be * signed (i.e. already hashed, if necessary). The signature will be * returned in *sigp, which the caller must free(). Its length will be * returned in *siglenp. */ gcry_error_t otrl_privkey_sign(unsigned char **sigp, size_t *siglenp, OtrlPrivKey *privkey, const unsigned char *data, size_t len); /* Verify a signature on data using a public key. The data must be * small enough to be signed (i.e. already hashed, if necessary). */ gcry_error_t otrl_privkey_verify(const unsigned char *sigbuf, size_t siglen, unsigned short pubkey_type, gcry_sexp_t pubs, const unsigned char *data, size_t len); #endif ���������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������������libotr-4.1.1/src/privkey.c��������������������������������������������������������������������������0000664�0001750�0001750�00000062613�12637277541�012405� �����������������������������������������������������������������������������������������������������������������������������������������������������������������������������0000000�0000000������������������������������������������������������������������������������������������������������������������������������������������������������������������������/* * Off-the-Record Messaging library * Copyright (C) 2004-2012 Ian Goldberg, Rob Smits, Chris Alexander, * Willy Lew, Lisa Du, Nikita Borisov * <otr@cypherpunks.ca> * * This library is free software; you can redistribute it and/or * modify it under the terms of version 2.1 of the GNU Lesser General * Public License as published by the Free Software Foundation. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA */ /* system headers */ #include <stdio.h> #include <stdlib.h> #include <errno.h> #include <sys/stat.h> /* libgcrypt headers */ #include <gcrypt.h> /* libotr headers */ #include "privkey.h" #include "serial.h" /* Convert a 20-byte hash value to a 45-byte human-readable value */ void otrl_privkey_hash_to_human( char human[OTRL_PRIVKEY_FPRINT_HUMAN_LEN], const unsigned char hash[20]) { int word, byte; char *p = human; for(word=0; word<5; ++word) { for(byte=0; byte<4; ++byte) { sprintf(p, "%02X", hash[word*4+byte]); p += 2; } *(p++) = ' '; } /* Change that last ' ' to a '\0' */ --p; *p = '\0'; } /* Calculate a human-readable hash of our DSA public key. Return it in * the passed fingerprint buffer. Return NULL on error, or a pointer to * the given buffer on success. */ char *otrl_privkey_fingerprint(OtrlUserState us, char fingerprint[OTRL_PRIVKEY_FPRINT_HUMAN_LEN], const char *accountname, const char *protocol) { unsigned char hash[20]; OtrlPrivKey *p = otrl_privkey_find(us, accountname, protocol); if (p) { /* Calculate the hash */ gcry_md_hash_buffer(GCRY_MD_SHA1, hash, p->pubkey_data, p->pubkey_datalen); /* Now convert it to a human-readable format */ otrl_privkey_hash_to_human(fingerprint, hash); } else { return NULL; } return fingerprint; } /* Calculate a raw hash of our DSA public key. Return it in the passed * fingerprint buffer. Return NULL on error, or a pointer to the given * buffer on success. */ unsigned char *otrl_privkey_fingerprint_raw(OtrlUserState us, unsigned char hash[20], const char *accountname, const char *protocol) { OtrlPrivKey *p = otrl_privkey_find(us, accountname, protocol); if (p) { /* Calculate the hash */ gcry_md_hash_buffer(GCRY_MD_SHA1, hash, p->pubkey_data, p->pubkey_datalen); } else { return NULL; } return hash; } /* Create a public key block from a private key */ static gcry_error_t make_pubkey(unsigned char **pubbufp, size_t *publenp, gcry_sexp_t privkey) { gcry_mpi_t p,q,g,y; gcry_sexp_t dsas,ps,qs,gs,ys; size_t np,nq,ng,ny; enum gcry_mpi_format format = GCRYMPI_FMT_USG; unsigned char *bufp; size_t lenp; *pubbufp = NULL; *publenp = 0; /* Extract the public parameters */ dsas = gcry_sexp_find_token(privkey, "dsa", 0); if (dsas == NULL) { return gcry_error(GPG_ERR_UNUSABLE_SECKEY); } ps = gcry_sexp_find_token(dsas, "p", 0); qs = gcry_sexp_find_token(dsas, "q", 0); gs = gcry_sexp_find_token(dsas, "g", 0); ys = gcry_sexp_find_token(dsas, "y", 0); gcry_sexp_release(dsas); if (!ps || !qs || !gs || !ys) { gcry_sexp_release(ps); gcry_sexp_release(qs); gcry_sexp_release(gs); gcry_sexp_release(ys); return gcry_error(GPG_ERR_UNUSABLE_SECKEY); } p = gcry_sexp_nth_mpi(ps, 1, GCRYMPI_FMT_USG); gcry_sexp_release(ps); q = gcry_sexp_nth_mpi(qs, 1, GCRYMPI_FMT_USG); gcry_sexp_release(qs); g = gcry_sexp_nth_mpi(gs, 1, GCRYMPI_FMT_USG); gcry_sexp_release(gs); y = gcry_sexp_nth_mpi(ys, 1, GCRYMPI_FMT_USG); gcry_sexp_release(ys); if (!p || !q || !g || !y) { gcry_mpi_release(p); gcry_mpi_release(q); gcry_mpi_release(g); gcry_mpi_release(y); return gcry_error(GPG_ERR_UNUSABLE_SECKEY); } *publenp = 0; gcry_mpi_print(format, NULL, 0, &np, p); *publenp += np + 4; gcry_mpi_print(format, NULL, 0, &nq, q); *publenp += nq + 4; gcry_mpi_print(format, NULL, 0, &ng, g); *publenp += ng + 4; gcry_mpi_print(format, NULL, 0, &ny, y); *publenp += ny + 4; *pubbufp = malloc(*publenp); if (*pubbufp == NULL) { gcry_mpi_release(p); gcry_mpi_release(q); gcry_mpi_release(g); gcry_mpi_release(y); return gcry_error(GPG_ERR_ENOMEM); } bufp = *pubbufp; lenp = *publenp; write_mpi(p,np,"P"); write_mpi(q,nq,"Q"); write_mpi(g,ng,"G"); write_mpi(y,ny,"Y"); gcry_mpi_release(p); gcry_mpi_release(q); gcry_mpi_release(g); gcry_mpi_release(y); return gcry_error(GPG_ERR_NO_ERROR); } /* Read a sets of private DSA keys from a file on disk into the given * OtrlUserState. */ gcry_error_t otrl_privkey_read(OtrlUserState us, const char *filename) { FILE *privf; gcry_error_t err; /* Open the privkey file. We use rb mode so that on WIN32, fread() * reads the same number of bytes that fstat() indicates are in the * file. */ privf = fopen(filename, "rb"); if (!privf) { err = gcry_error_from_errno(errno); return err; } err = otrl_privkey_read_FILEp(us, privf); fclose(privf); return err; } /* Read a sets of private DSA keys from a FILE* into the given * OtrlUserState. The FILE* must be open for reading. */ gcry_error_t otrl_privkey_read_FILEp(OtrlUserState us, FILE *privf) { int privfd; struct stat st; char *buf; const char *token; size_t tokenlen; gcry_error_t err; gcry_sexp_t allkeys; int i; if (!privf) return gcry_error(GPG_ERR_NO_ERROR); /* Release any old ideas we had about our keys */ otrl_privkey_forget_all(us); /* Load the data into a buffer */ privfd = fileno(privf); if (fstat(privfd, &st)) { err = gcry_error_from_errno(errno); return err; } buf = malloc(st.st_size); if (!buf && st.st_size > 0) { return gcry_error(GPG_ERR_ENOMEM); } if (fread(buf, st.st_size, 1, privf) != 1) { err = gcry_error_from_errno(errno); free(buf); return err; } err = gcry_sexp_new(&allkeys, buf, st.st_size, 0); free(buf); if (err) { return err; } token = gcry_sexp_nth_data(allkeys, 0, &tokenlen); if (tokenlen != 8 || strncmp(token, "privkeys", 8)) { gcry_sexp_release(allkeys); return gcry_error(GPG_ERR_UNUSABLE_SECKEY); } /* Get each account */ for(i=1; i<gcry_sexp_length(allkeys); ++i) { gcry_sexp_t names, protos, privs; char *name, *proto; gcry_sexp_t accounts; OtrlPrivKey *p; /* Get the ith "account" S-exp */ accounts = gcry_sexp_nth(allkeys, i); /* It's really an "account" S-exp? */ token = gcry_sexp_nth_data(accounts, 0, &tokenlen); if (tokenlen != 7 || strncmp(token, "account", 7)) { gcry_sexp_release(accounts); gcry_sexp_release(allkeys); return gcry_error(GPG_ERR_UNUSABLE_SECKEY); } /* Extract the name, protocol, and privkey S-exps */ names = gcry_sexp_find_token(accounts, "name", 0); protos = gcry_sexp_find_token(accounts, "protocol", 0); privs = gcry_sexp_find_token(accounts, "private-key", 0); gcry_sexp_release(accounts); if (!names || !protos || !privs) { gcry_sexp_release(names); gcry_sexp_release(protos); gcry_sexp_release(privs); gcry_sexp_release(allkeys); return gcry_error(GPG_ERR_UNUSABLE_SECKEY); } /* Extract the actual name and protocol */ token = gcry_sexp_nth_data(names, 1, &tokenlen); if (!token) { gcry_sexp_release(names); gcry_sexp_release(protos); gcry_sexp_release(privs); gcry_sexp_release(allkeys); return gcry_error(GPG_ERR_UNUSABLE_SECKEY); } name = malloc(tokenlen + 1); if (!name) { gcry_sexp_release(names); gcry_sexp_release(protos); gcry_sexp_release(privs); gcry_sexp_release(allkeys); return gcry_error(GPG_ERR_ENOMEM); } memmove(name, token, tokenlen); name[tokenlen] = '\0'; gcry_sexp_release(names); token = gcry_sexp_nth_data(protos, 1, &tokenlen); if (!token) { free(name); gcry_sexp_release(protos); gcry_sexp_release(privs); gcry_sexp_release(allkeys); return gcry_error(GPG_ERR_UNUSABLE_SECKEY); } proto = malloc(tokenlen + 1); if (!proto) { free(name); gcry_sexp_release(protos); gcry_sexp_release(privs); gcry_sexp_release(allkeys); return gcry_error(GPG_ERR_ENOMEM); } memmove(proto, token, tokenlen); proto[tokenlen] = '\0'; gcry_sexp_release(protos); /* Make a new OtrlPrivKey entry */ p = malloc(sizeof(*p)); if (!p) { free(name); free(proto); gcry_sexp_release(privs); gcry_sexp_release(allkeys); return gcry_error(GPG_ERR_ENOMEM); } /* Fill it in and link it up */ p->accountname = name; p->protocol = proto; p->pubkey_type = OTRL_PUBKEY_TYPE_DSA; p->privkey = privs; p->next = us->privkey_root; if (p->next) { p->next->tous = &(p->next); } p->tous = &(us->privkey_root); us->privkey_root = p; err = make_pubkey(&(p->pubkey_data), &(p->pubkey_datalen), p->privkey); if (err) { gcry_sexp_release(allkeys); otrl_privkey_forget(p); return gcry_error(GPG_ERR_UNUSABLE_SECKEY); } } gcry_sexp_release(allkeys); return gcry_error(GPG_ERR_NO_ERROR); } static OtrlPendingPrivKey *pending_find(OtrlUserState us, const char *accountname, const char *protocol) { OtrlPendingPrivKey *search = us->pending_root; while (search) { if (!strcmp(search->accountname, accountname) && !strcmp(search->protocol, protocol)) { /* Found it */ return search; } search = search->next; } return NULL; } /* Insert an account/protocol pair into the pending privkey list of the * given OtrlUserState and return a pointer to the new * OtrlPendingPrivKey, or return NULL if it's already there. */ static OtrlPendingPrivKey *pending_insert(OtrlUserState us, const char *accountname, const char *protocol) { /* See if it's already there */ OtrlPendingPrivKey *search = pending_find(us, accountname, protocol); if (search) { /* It is */ return NULL; } /* We'll insert it at the beginning of the list */ search = malloc(sizeof(*search)); if (!search) return NULL; search->accountname = strdup(accountname); search->protocol = strdup(protocol); search->next = us->pending_root; us->pending_root = search; if (search->next) { search->next->tous = &(search->next); } search->tous = &(us->pending_root); return search; } static void pending_forget(OtrlPendingPrivKey *ppk) { if (ppk) { free(ppk->accountname); free(ppk->protocol); /* Re-link the list */ *(ppk->tous) = ppk->next; if (ppk->next) { ppk->next->tous = ppk->tous; } free(ppk); } } /* Free the memory associated with the pending privkey list */ void otrl_privkey_pending_forget_all(OtrlUserState us) { while(us->pending_root) { pending_forget(us->pending_root); } } static gcry_error_t sexp_write(FILE *privf, gcry_sexp_t sexp) { size_t buflen; char *buf; buflen = gcry_sexp_sprint(sexp, GCRYSEXP_FMT_ADVANCED, NULL, 0); buf = malloc(buflen); if (buf == NULL && buflen > 0) { return gcry_error(GPG_ERR_ENOMEM); } gcry_sexp_sprint(sexp, GCRYSEXP_FMT_ADVANCED, buf, buflen); fprintf(privf, "%s", buf); free(buf); return gcry_error(GPG_ERR_NO_ERROR); } static gcry_error_t account_write(FILE *privf, const char *accountname, const char *protocol, gcry_sexp_t privkey) { gcry_error_t err; gcry_sexp_t names, protos; fprintf(privf, " (account\n"); err = gcry_sexp_build(&names, NULL, "(name %s)", accountname); if (!err) { err = sexp_write(privf, names); gcry_sexp_release(names); } if (!err) err = gcry_sexp_build(&protos, NULL, "(protocol %s)", protocol); if (!err) { err = sexp_write(privf, protos); gcry_sexp_release(protos); } if (!err) err = sexp_write(privf, privkey); fprintf(privf, " )\n"); return err; } struct s_pending_privkey_calc { char *accountname; char *protocol; gcry_sexp_t privkey; }; /* Begin a private key generation that will potentially take place in * a background thread. This routine must be called from the main * thread. It will set *newkeyp, which you can pass to * otrl_privkey_generate_calculate in a background thread. If it * returns gcry_error(GPG_ERR_EEXIST), then a privkey creation for * this accountname/protocol is already in progress, and *newkeyp will * be set to NULL. */ gcry_error_t otrl_privkey_generate_start(OtrlUserState us, const char *accountname, const char *protocol, void **newkeyp) { OtrlPendingPrivKey *found = pending_find(us, accountname, protocol); struct s_pending_privkey_calc *ppc; if (found) { if (newkeyp) *newkeyp = NULL; return gcry_error(GPG_ERR_EEXIST); } /* We're not already creating this key. Mark it as in progress. */ pending_insert(us, accountname, protocol); /* Allocate the working structure */ ppc = malloc(sizeof(*ppc)); ppc->accountname = strdup(accountname); ppc->protocol = strdup(protocol); ppc->privkey = NULL; *newkeyp = ppc; return gcry_error(GPG_ERR_NO_ERROR); } /* Do the private key generation calculation. You may call this from a * background thread. When it completes, call * otrl_privkey_generate_finish from the _main_ thread. */ gcry_error_t otrl_privkey_generate_calculate(void *newkey) { struct s_pending_privkey_calc *ppc = (struct s_pending_privkey_calc *)newkey; gcry_error_t err; gcry_sexp_t key, parms; static const char *parmstr = "(genkey (dsa (nbits 4:1024)))"; /* Create a DSA key */ err = gcry_sexp_new(&parms, parmstr, strlen(parmstr), 0); if (err) { return err; } err = gcry_pk_genkey(&key, parms); gcry_sexp_release(parms); if (err) { return err; } /* Extract the privkey */ ppc->privkey = gcry_sexp_find_token(key, "private-key", 0); gcry_sexp_release(key); return gcry_error(GPG_ERR_NO_ERROR); } static FILE* privkey_fopen(const char *filename, gcry_error_t *errp) { FILE *privf; #ifndef WIN32 mode_t oldmask; #endif #ifndef WIN32 oldmask = umask(077); #endif privf = fopen(filename, "w+b"); if (!privf && errp) { *errp = gcry_error_from_errno(errno); } #ifndef WIN32 umask(oldmask); #endif return privf; } /* Call this from the main thread only, in the event that the background * thread generating the key is cancelled. The newkey is deallocated, * and must not be used further. */ void otrl_privkey_generate_cancelled(OtrlUserState us, void *newkey) { struct s_pending_privkey_calc *ppc = (struct s_pending_privkey_calc *)newkey; if (us) { pending_forget(pending_find(us, ppc->accountname, ppc->protocol)); } /* Deallocate ppc */ free(ppc->accountname); free(ppc->protocol); gcry_sexp_release(ppc->privkey); free(ppc); } /* Call this from the main thread only. It will write the newly created * private key into the given file and store it in the OtrlUserState. */ gcry_error_t otrl_privkey_generate_finish(OtrlUserState us, void *newkey, const char *filename) { gcry_error_t err; FILE *privf = privkey_fopen(filename, &err); if (!privf) { return err; } err = otrl_privkey_generate_finish_FILEp(us, newkey, privf); fclose(privf); return err; } /* Call this from the main thread only. It will write the newly created * private key into the given FILE* (which must be open for reading and * writing) and store it in the OtrlUserState. */ gcry_error_t otrl_privkey_generate_finish_FILEp(OtrlUserState us, void *newkey, FILE *privf) { struct s_pending_privkey_calc *ppc = (struct s_pending_privkey_calc *)newkey; gcry_error_t ret = gcry_error(GPG_ERR_INV_VALUE); if (ppc && us && privf) { OtrlPrivKey *p; /* Output the other keys we know */ fprintf(privf, "(privkeys\n"); for (p=us->privkey_root; p; p=p->next) { /* Skip this one if our new key replaces it */ if (!strcmp(p->accountname, ppc->accountname) && !strcmp(p->protocol, ppc->protocol)) { continue; } account_write(privf, p->accountname, p->protocol, p->privkey); } account_write(privf, ppc->accountname, ppc->protocol, ppc->privkey); fprintf(privf, ")\n"); fseek(privf, 0, SEEK_SET); ret = otrl_privkey_read_FILEp(us, privf); } otrl_privkey_generate_cancelled(us, newkey); return ret; } /* Generate a private DSA key for a given account, storing it into a * file on disk, and loading it into the given OtrlUserState. Overwrite any * previously generated keys for that account in that OtrlUserState. */ gcry_error_t otrl_privkey_generate(OtrlUserState us, const char *filename, const char *accountname, const char *protocol) { gcry_error_t err; FILE *privf = privkey_fopen(filename, &err); if (!privf) { return err; } err = otrl_privkey_generate_FILEp(us, privf, accountname, protocol); fclose(privf); return err; } /* Generate a private DSA key for a given account, storing it into a * FILE*, and loading it into the given OtrlUserState. Overwrite any * previously generated keys for that account in that OtrlUserState. * The FILE* must be open for reading and writing. */ gcry_error_t otrl_privkey_generate_FILEp(OtrlUserState us, FILE *privf, const char *accountname, const char *protocol) { void *newkey = NULL; gcry_error_t err; err = otrl_privkey_generate_start(us, accountname, protocol, &newkey); if (newkey) { otrl_privkey_generate_calculate(newkey); err = otrl_privkey_generate_finish_FILEp(us, newkey, privf); } return err; } /* Convert a hex character to a value */ static unsigned int ctoh(char c) { if (c >= '0' && c <= '9') return c-'0'; if (c >= 'a' && c <= 'f') return c-'a'+10; if (c >= 'A' && c <= 'F') return c-'A'+10; return 0; /* Unknown hex char */ } /* Read the fingerprint store from a file on disk into the given * OtrlUserState. Use add_app_data to add application data to each * ConnContext so created. */ gcry_error_t otrl_privkey_read_fingerprints(OtrlUserState us, const char *filename, void (*add_app_data)(void *data, ConnContext *context), void *data) { gcry_error_t err; FILE *storef; storef = fopen(filename, "rb"); if (!storef) { err = gcry_error_from_errno(errno); return err; } err = otrl_privkey_read_fingerprints_FILEp(us, storef, add_app_data, data); fclose(storef); return err; } /* Read the fingerprint store from a FILE* into the given * OtrlUserState. Use add_app_data to add application data to each * ConnContext so created. The FILE* must be open for reading. */ gcry_error_t otrl_privkey_read_fingerprints_FILEp(OtrlUserState us, FILE *storef, void (*add_app_data)(void *data, ConnContext *context), void *data) { ConnContext *context; char storeline[1000]; unsigned char fingerprint[20]; size_t maxsize = sizeof(storeline); if (!storef) return gcry_error(GPG_ERR_NO_ERROR); while(fgets(storeline, maxsize, storef)) { char *username; char *accountname; char *protocol; char *hex; char *trust; char *tab; char *eol; Fingerprint *fng; int i, j; /* Parse the line, which should be of the form: * username\taccountname\tprotocol\t40_hex_nybbles\n */ username = storeline; tab = strchr(username, '\t'); if (!tab) continue; *tab = '\0'; accountname = tab + 1; tab = strchr(accountname, '\t'); if (!tab) continue; *tab = '\0'; protocol = tab + 1; tab = strchr(protocol, '\t'); if (!tab) continue; *tab = '\0'; hex = tab + 1; tab = strchr(hex, '\t'); if (!tab) { eol = strchr(hex, '\r'); if (!eol) eol = strchr(hex, '\n'); if (!eol) continue; *eol = '\0'; trust = NULL; } else { *tab = '\0'; trust = tab + 1; eol = strchr(trust, '\r'); if (!eol) eol = strchr(trust, '\n'); if (!eol) continue; *eol = '\0'; } if (strlen(hex) != 40) continue; for(j=0, i=0; i<40; i+=2) { fingerprint[j++] = (ctoh(hex[i]) << 4) + (ctoh(hex[i+1])); } /* Get the context for this user, adding if not yet present */ context = otrl_context_find(us, username, accountname, protocol, OTRL_INSTAG_MASTER, 1, NULL, add_app_data, data); /* Add the fingerprint if not already there */ fng = otrl_context_find_fingerprint(context, fingerprint, 1, NULL); otrl_context_set_trust(fng, trust); } return gcry_error(GPG_ERR_NO_ERROR); } /* Write the fingerprint store from a given OtrlUserState to a file on disk. */ gcry_error_t otrl_privkey_write_fingerprints(OtrlUserState us, const char *filename) { gcry_error_t err; FILE *storef; storef = fopen(filename, "wb"); if (!storef) { err = gcry_error_from_errno(errno); return err; } err = otrl_privkey_write_fingerprints_FILEp(us, storef); fclose(storef); return err; } /* Write the fingerprint store from a given OtrlUserState to a FILE*. * The FILE* must be open for writing. */ gcry_error_t otrl_privkey_write_fingerprints_FILEp(OtrlUserState us, FILE *storef) { ConnContext *context; Fingerprint *fprint; if (!storef) return gcry_error(GPG_ERR_NO_ERROR); for(context = us->context_root; context; context = context->next) { /* Fingerprints are only stored in the master contexts */ if (context->their_instance != OTRL_INSTAG_MASTER) continue; /* Don't bother with the first (fingerprintless) entry. */ for (fprint = context->fingerprint_root.next; fprint; fprint = fprint->next) { int i; fprintf(storef, "%s\t%s\t%s\t", context->username, context->accountname, context->protocol); for(i=0;i<20;++i) { fprintf(storef, "%02x", fprint->fingerprint[i]); } fprintf(storef, "\t%s\n", fprint->trust ? fprint->trust : ""); } } return gcry_error(GPG_ERR_NO_ERROR); } /* Fetch the private key from the given OtrlUserState associated with * the given account */ OtrlPrivKey *otrl_privkey_find(OtrlUserState us, const char *accountname, const char *protocol) { OtrlPrivKey *p; if (!accountname || !protocol) return NULL; for(p=us->privkey_root; p; p=p->next) { if (!strcmp(p->accountname, accountname) && !strcmp(p->protocol, protocol)) { return p; } } return NULL; } /* Forget a private key */ void otrl_privkey_forget(OtrlPrivKey *privkey) { free(privkey->accountname); free(privkey->protocol); gcry_sexp_release(privkey->privkey); free(privkey->pubkey_data); /* Re-link the list */ *(privkey->tous) = privkey->next; if (privkey->next) { privkey->next->tous = privkey->tous; } /* Free the privkey struct */ free(privkey); } /* Forget all private keys in a given OtrlUserState. */ void otrl_privkey_forget_all(OtrlUserState us) { while (us->privkey_root) { otrl_privkey_forget(us->privkey_root); } } /* Sign data using a private key. The data must be small enough to be * signed (i.e. already hashed, if necessary). The signature will be * returned in *sigp, which the caller must free(). Its length will be * returned in *siglenp. */ gcry_error_t otrl_privkey_sign(unsigned char **sigp, size_t *siglenp, OtrlPrivKey *privkey, const unsigned char *data, size_t len) { gcry_mpi_t r,s, datampi; gcry_sexp_t dsas, rs, ss, sigs, datas; size_t nr, ns; const enum gcry_mpi_format format = GCRYMPI_FMT_USG; if (privkey->pubkey_type != OTRL_PUBKEY_TYPE_DSA) return gcry_error(GPG_ERR_INV_VALUE); *sigp = malloc(40); if (*sigp == NULL) return gcry_error(GPG_ERR_ENOMEM); *siglenp = 40; if (len) { gcry_mpi_scan(&datampi, GCRYMPI_FMT_USG, data, len, NULL); } else { datampi = gcry_mpi_set_ui(NULL, 0); } gcry_sexp_build(&datas, NULL, "(%m)", datampi); gcry_mpi_release(datampi); gcry_pk_sign(&sigs, datas, privkey->privkey); gcry_sexp_release(datas); dsas = gcry_sexp_find_token(sigs, "dsa", 0); gcry_sexp_release(sigs); rs = gcry_sexp_find_token(dsas, "r", 0); ss = gcry_sexp_find_token(dsas, "s", 0); gcry_sexp_release(dsas); r = gcry_sexp_nth_mpi(rs, 1, GCRYMPI_FMT_USG); gcry_sexp_release(rs); s = gcry_sexp_nth_mpi(ss, 1, GCRYMPI_FMT_USG); gcry_sexp_release(ss); gcry_mpi_print(format, NULL, 0, &nr, r); gcry_mpi_print(format, NULL, 0, &ns, s); memset(*sigp, 0, 40); gcry_mpi_print(format, (*sigp)+(20-nr), nr, NULL, r); gcry_mpi_print(format, (*sigp)+20+(20-ns), ns, NULL, s); gcry_mpi_release(r); gcry_mpi_release(s); return gcry_error(GPG_ERR_NO_ERROR); } /* Verify a signature on data using a public key. The data must be * small enough to be signed (i.e. already hashed, if necessary). */ gcry_error_t otrl_privkey_verify(const unsigned char *sigbuf, size_t siglen, unsigned short pubkey_type, gcry_sexp_t pubs, const unsigned char *data, size_t len) { gcry_error_t err; gcry_mpi_t datampi,r,s; gcry_sexp_t datas, sigs; if (pubkey_type != OTRL_PUBKEY_TYPE_DSA || siglen != 40) return gcry_error(GPG_ERR_INV_VALUE); if (len) { gcry_mpi_scan(&datampi, GCRYMPI_FMT_USG, data, len, NULL); } else { datampi = gcry_mpi_set_ui(NULL, 0); } gcry_sexp_build(&datas, NULL, "(%m)", datampi); gcry_mpi_release(datampi); gcry_mpi_scan(&r, GCRYMPI_FMT_USG, sigbuf, 20, NULL); gcry_mpi_scan(&s, GCRYMPI_FMT_USG, sigbuf+20, 20, NULL); gcry_sexp_build(&sigs, NULL, "(sig-val (dsa (r %m)(s %m)))", r, s); gcry_mpi_release(r); gcry_mpi_release(s); err = gcry_pk_verify(sigs, datas, pubs); gcry_sexp_release(datas); gcry_sexp_release(sigs); return err; } 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