libomxil-bellagio-0.9.3/0000755000175000017500000000000011565425032012122 500000000000000libomxil-bellagio-0.9.3/config.sub0000755000175000017500000010242511565413753014040 00000000000000#! /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 # Free Software Foundation, Inc. timestamp='2009-06-11' # 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. It does not imply ALL GNU software can. # # 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 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. # # 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. # Please send patches to . Submit a context # diff and a properly formatted ChangeLog entry. # # 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. # 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 (C) 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008 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 $maybe_os in nto-qnx* | linux-gnu* | linux-dietlibc | linux-newlib* | linux-uclibc* | \ uclinux-uclibc* | uclinux-gnu* | kfreebsd*-gnu* | knetbsd*-gnu* | netbsd*-gnu* | \ kopensolaris*-gnu* | \ storm-chaos* | os2-emx* | rtmk-nova*) os=-$maybe_os basic_machine=`echo $1 | sed 's/^\(.*\)-\([^-]*-[^-]*\)$/\1/'` ;; *) 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) 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 $basic_machine in # Recognize the basic CPU types without company name. # Some are omitted here because they have special meanings below. 1750a | 580 \ | a29k \ | alpha | alphaev[4-8] | alphaev56 | alphaev6[78] | alphapca5[67] \ | alpha64 | alpha64ev[4-8] | alpha64ev56 | alpha64ev6[78] | alpha64pca5[67] \ | am33_2.0 \ | arc | arm | arm[bl]e | arme[lb] | armv[2345] | armv[345][lb] | avr | avr32 \ | bfin \ | c4x | clipper \ | d10v | d30v | dlx | dsp16xx \ | fido | fr30 | frv \ | h8300 | h8500 | hppa | hppa1.[01] | hppa2.0 | hppa2.0[nw] | hppa64 \ | i370 | i860 | i960 | ia64 \ | ip2k | iq2000 \ | lm32 \ | m32c | m32r | m32rle | m68000 | m68k | m88k \ | maxq | mb | microblaze | mcore | mep | metag \ | mips | mipsbe | mipseb | mipsel | mipsle \ | mips16 \ | mips64 | mips64el \ | mips64octeon | mips64octeonel \ | mips64orion | mips64orionel \ | mips64r5900 | mips64r5900el \ | mips64vr | mips64vrel \ | mips64vr4100 | mips64vr4100el \ | mips64vr4300 | mips64vr4300el \ | mips64vr5000 | mips64vr5000el \ | mips64vr5900 | mips64vr5900el \ | mipsisa32 | mipsisa32el \ | mipsisa32r2 | mipsisa32r2el \ | mipsisa64 | mipsisa64el \ | mipsisa64r2 | mipsisa64r2el \ | mipsisa64sb1 | mipsisa64sb1el \ | mipsisa64sr71k | mipsisa64sr71kel \ | mipstx39 | mipstx39el \ | mn10200 | mn10300 \ | moxie \ | mt \ | msp430 \ | nios | nios2 \ | ns16k | ns32k \ | or32 \ | pdp10 | pdp11 | pj | pjl \ | powerpc | powerpc64 | powerpc64le | powerpcle | ppcbe \ | pyramid \ | score \ | sh | sh[1234] | sh[24]a | sh[24]aeb | sh[23]e | sh[34]eb | sheb | shbe | shle | sh[1234]le | sh3ele \ | sh64 | sh64le \ | sparc | sparc64 | sparc64b | sparc64v | sparc86x | sparclet | sparclite \ | sparcv8 | sparcv9 | sparcv9b | sparcv9v \ | spu | strongarm \ | tahoe | thumb | tic4x | tic80 | tron \ | v850 | v850e \ | we32k \ | x86 | xc16x | xscale | xscalee[bl] | xstormy16 | xtensa \ | z8k | z80) basic_machine=$basic_machine-unknown ;; m6811 | m68hc11 | m6812 | m68hc12) # Motorola 68HC11/12. basic_machine=$basic_machine-unknown os=-none ;; m88110 | m680[12346]0 | m683?2 | m68360 | m5200 | v70 | w65 | z8k) ;; ms1) basic_machine=mt-unknown ;; # We use `pc' rather than `unknown' # because (1) that's what they normally are, and # (2) the word "unknown" tends to confuse beginning users. i*86 | x86_64) basic_machine=$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-* \ | 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-* \ | bfin-* | bs2000-* \ | c[123]* | c30-* | [cjt]90-* | c4x-* | c54x-* | c55x-* | c6x-* \ | 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-* \ | i*86-* | i860-* | i960-* | ia64-* \ | ip2k-* | iq2000-* \ | lm32-* \ | m32c-* | m32r-* | m32rle-* \ | m68000-* | m680[012346]0-* | m68360-* | m683?2-* | m68k-* \ | m88110-* | m88k-* | maxq-* | mcore-* | 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-* \ | mmix-* \ | mt-* \ | msp430-* \ | nios-* | nios2-* \ | none-* | np1-* | ns16k-* | ns32k-* \ | orion-* \ | pdp10-* | pdp11-* | pj-* | pjl-* | pn-* | power-* \ | powerpc-* | powerpc64-* | powerpc64le-* | powerpcle-* | ppcbe-* \ | pyramid-* \ | romp-* | rs6000-* \ | 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-* | strongarm-* | sv1-* | sx?-* \ | tahoe-* | thumb-* \ | tic30-* | tic4x-* | tic54x-* | tic55x-* | tic6x-* | tic80-* | tile-* \ | tron-* \ | v850-* | v850e-* | vax-* \ | we32k-* \ | x86-* | x86_64-* | xc16x-* | xps100-* | xscale-* | xscalee[bl]-* \ | 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 ;; 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) 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'm not sure what "Sysv32" means. Should this be sysv3.2? 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 ;; 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-/'` ;; mvs) basic_machine=i370-ibm os=-mvs ;; 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 ;; 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 ;; 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SourceForge.net Logo libomxil-bellagio-0.9.3/doc/omxregister-bellagio.1.in0000644000175000017500000000261111513256766017433 00000000000000.\" Process this file with .\" groff -man -Tascii omxregister-bellagio.1 .\" .TH OMXREGISTER-BELLAGIO 1 "Sept 2009" Bellagio "OpenMAX Bellagio" .SH NAME omxregister-bellagio \- register .SM OpenMAX/Bellagio components .SH SYNOPSIS .B omxregister-bellagio [-v] [-h] [ .I componentspath .B ]... .SH DESCRIPTION Before using any .SM OpenMAX component, they .B must be registered with the .B omxregister-bellagio command\. By default, this will create a file named .I ".omxregister" under the home .B XDG data directory with all the components found in .I @plugindir@\. .SH OPTIONS .IP -v Display a verbose output, listing all the components registered. .IP -h Display help. .IP componentspath Location of the .SM OpenMAX/Bellagio components (by default .I @plugindir@)\. .SM Multiple locations should be separated by colons .SH FILES .I $XDG_DATA_HOME/@PACKAGE@/registry or .I $OMX_BELLAGIO_REGISTRY. .RS The .SM OpenMAX/Bellagio component registry file. .RE .SH ENVIRONMENT .IP BELLAGIO_SEARCH_PATH .SM This variable can be set to indicate the location(s) of the components .IP OMX_BELLAGIO_REGISTRY .RS Location of the registry. .RE .IP XDG_DATA_HOME .RS Location of the home data directory where registry is saved (if .I $OMX_BELLAGIO_REGISTRY is unset). .RE .SH AUTHORS Bhattacharyya Sourya, Melpignano Diego, Niemimuukko Ukri, Sen Pankaj, Siorpaes David and Urlini Giulio. 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BUILTIN_STL_SUPPORT = NO # If you use Microsoft's C++/CLI language, you should set this option to YES to # enable parsing support. CPP_CLI_SUPPORT = NO # If member grouping is used in the documentation and the DISTRIBUTE_GROUP_DOC # tag is set to YES, then doxygen will reuse the documentation of the first # member in the group (if any) for the other members of the group. By default # all members of a group must be documented explicitly. DISTRIBUTE_GROUP_DOC = NO # Set the SUBGROUPING tag to YES (the default) to allow class member groups of # the same type (for instance a group of public functions) to be put as a # subgroup of that type (e.g. under the Public Functions section). Set it to # NO to prevent subgrouping. Alternatively, this can be done per class using # the \nosubgrouping command. SUBGROUPING = YES #--------------------------------------------------------------------------- # Build related configuration options #--------------------------------------------------------------------------- # If the EXTRACT_ALL tag is set to YES doxygen will assume all entities in # documentation are documented, even if no documentation was available. # Private class members and static file members will be hidden unless # the EXTRACT_PRIVATE and EXTRACT_STATIC tags are set to YES EXTRACT_ALL = YES # If the EXTRACT_PRIVATE tag is set to YES all private members of a class # will be included in the documentation. EXTRACT_PRIVATE = NO # If the EXTRACT_STATIC tag is set to YES all static members of a file # will be included in the documentation. EXTRACT_STATIC = NO # If the EXTRACT_LOCAL_CLASSES tag is set to YES classes (and structs) # defined locally in source files will be included in the documentation. # If set to NO only classes defined in header files are included. EXTRACT_LOCAL_CLASSES = YES # This flag is only useful for Objective-C code. When set to YES local # methods, which are defined in the implementation section but not in # the interface are included in the documentation. # If set to NO (the default) only methods in the interface are included. EXTRACT_LOCAL_METHODS = NO # If this flag is set to YES, the members of anonymous namespaces will be extracted # and appear in the documentation as a namespace called 'anonymous_namespace{file}', # where file will be replaced with the base name of the file that contains the anonymous # namespace. By default anonymous namespace are hidden. EXTRACT_ANON_NSPACES = NO # If the HIDE_UNDOC_MEMBERS tag is set to YES, Doxygen will hide all # undocumented members of documented classes, files or namespaces. # If set to NO (the default) these members will be included in the # various overviews, but no documentation section is generated. # This option has no effect if EXTRACT_ALL is enabled. HIDE_UNDOC_MEMBERS = NO # If the HIDE_UNDOC_CLASSES tag is set to YES, Doxygen will hide all # undocumented classes that are normally visible in the class hierarchy. # If set to NO (the default) these classes will be included in the various # overviews. This option has no effect if EXTRACT_ALL is enabled. HIDE_UNDOC_CLASSES = NO # If the HIDE_FRIEND_COMPOUNDS tag is set to YES, Doxygen will hide all # friend (class|struct|union) declarations. # If set to NO (the default) these declarations will be included in the # documentation. HIDE_FRIEND_COMPOUNDS = NO # If the HIDE_IN_BODY_DOCS tag is set to YES, Doxygen will hide any # documentation blocks found inside the body of a function. # If set to NO (the default) these blocks will be appended to the # function's detailed documentation block. HIDE_IN_BODY_DOCS = NO # The INTERNAL_DOCS tag determines if documentation # that is typed after a \internal command is included. If the tag is set # to NO (the default) then the documentation will be excluded. # Set it to YES to include the internal documentation. INTERNAL_DOCS = NO # If the CASE_SENSE_NAMES tag is set to NO then Doxygen will only generate # file names in lower-case letters. If set to YES upper-case letters are also # allowed. This is useful if you have classes or files whose names only differ # in case and if your file system supports case sensitive file names. Windows # and Mac users are advised to set this option to NO. CASE_SENSE_NAMES = NO # If the HIDE_SCOPE_NAMES tag is set to NO (the default) then Doxygen # will show members with their full class and namespace scopes in the # documentation. If set to YES the scope will be hidden. HIDE_SCOPE_NAMES = NO # If the SHOW_INCLUDE_FILES tag is set to YES (the default) then Doxygen # will put a list of the files that are included by a file in the documentation # of that file. SHOW_INCLUDE_FILES = YES # If the INLINE_INFO tag is set to YES (the default) then a tag [inline] # is inserted in the documentation for inline members. INLINE_INFO = YES # If the SORT_MEMBER_DOCS tag is set to YES (the default) then doxygen # will sort the (detailed) documentation of file and class members # alphabetically by member name. If set to NO the members will appear in # declaration order. SORT_MEMBER_DOCS = YES # If the SORT_BRIEF_DOCS tag is set to YES then doxygen will sort the # brief documentation of file, namespace and class members alphabetically # by member name. If set to NO (the default) the members will appear in # declaration order. SORT_BRIEF_DOCS = NO # If the SORT_BY_SCOPE_NAME tag is set to YES, the class list will be # sorted by fully-qualified names, including namespaces. If set to # NO (the default), the class list will be sorted only by class name, # not including the namespace part. # Note: This option is not very useful if HIDE_SCOPE_NAMES is set to YES. # Note: This option applies only to the class list, not to the # alphabetical list. SORT_BY_SCOPE_NAME = NO # The GENERATE_TODOLIST tag can be used to enable (YES) or # disable (NO) the todo list. This list is created by putting \todo # commands in the documentation. GENERATE_TODOLIST = YES # The GENERATE_TESTLIST tag can be used to enable (YES) or # disable (NO) the test list. This list is created by putting \test # commands in the documentation. GENERATE_TESTLIST = YES # The GENERATE_BUGLIST tag can be used to enable (YES) or # disable (NO) the bug list. This list is created by putting \bug # commands in the documentation. GENERATE_BUGLIST = YES # The GENERATE_DEPRECATEDLIST tag can be used to enable (YES) or # disable (NO) the deprecated list. This list is created by putting # \deprecated commands in the documentation. GENERATE_DEPRECATEDLIST= YES # The ENABLED_SECTIONS tag can be used to enable conditional # documentation sections, marked by \if sectionname ... \endif. ENABLED_SECTIONS = # The MAX_INITIALIZER_LINES tag determines the maximum number of lines # the initial value of a variable or define consists of for it to appear in # the documentation. If the initializer consists of more lines than specified # here it will be hidden. Use a value of 0 to hide initializers completely. # The appearance of the initializer of individual variables and defines in the # documentation can be controlled using \showinitializer or \hideinitializer # command in the documentation regardless of this setting. MAX_INITIALIZER_LINES = 30 # Set the SHOW_USED_FILES tag to NO to disable the list of files generated # at the bottom of the documentation of classes and structs. If set to YES the # list will mention the files that were used to generate the documentation. SHOW_USED_FILES = YES # If the sources in your project are distributed over multiple directories # then setting the SHOW_DIRECTORIES tag to YES will show the directory hierarchy # in the documentation. The default is NO. SHOW_DIRECTORIES = NO # The FILE_VERSION_FILTER tag can be used to specify a program or script that # doxygen should invoke to get the current version for each file (typically from the # version control system). Doxygen will invoke the program by executing (via # popen()) the command , where is the value of # the FILE_VERSION_FILTER tag, and is the name of an input file # provided by doxygen. Whatever the program writes to standard output # is used as the file version. See the manual for examples. FILE_VERSION_FILTER = #--------------------------------------------------------------------------- # configuration options related to warning and progress messages #--------------------------------------------------------------------------- # The QUIET tag can be used to turn on/off the messages that are generated # by doxygen. Possible values are YES and NO. If left blank NO is used. QUIET = NO # The WARNINGS tag can be used to turn on/off the warning messages that are # generated by doxygen. Possible values are YES and NO. If left blank # NO is used. WARNINGS = YES # If WARN_IF_UNDOCUMENTED is set to YES, then doxygen will generate warnings # for undocumented members. If EXTRACT_ALL is set to YES then this flag will # automatically be disabled. WARN_IF_UNDOCUMENTED = YES # If WARN_IF_DOC_ERROR is set to YES, doxygen will generate warnings for # potential errors in the documentation, such as not documenting some # parameters in a documented function, or documenting parameters that # don't exist or using markup commands wrongly. WARN_IF_DOC_ERROR = YES # This WARN_NO_PARAMDOC option can be abled to get warnings for # functions that are documented, but have no documentation for their parameters # or return value. If set to NO (the default) doxygen will only warn about # wrong or incomplete parameter documentation, but not about the absence of # documentation. WARN_NO_PARAMDOC = NO # The WARN_FORMAT tag determines the format of the warning messages that # doxygen can produce. The string should contain the $file, $line, and $text # tags, which will be replaced by the file and line number from which the # warning originated and the warning text. Optionally the format may contain # $version, which will be replaced by the version of the file (if it could # be obtained via FILE_VERSION_FILTER) WARN_FORMAT = "$file:$line: $text " # The WARN_LOGFILE tag can be used to specify a file to which warning # and error messages should be written. If left blank the output is written # to stderr. WARN_LOGFILE = #--------------------------------------------------------------------------- # configuration options related to the input files #--------------------------------------------------------------------------- # The INPUT tag can be used to specify the files and/or directories that contain # documented source files. You may enter file names like "myfile.cpp" or # directories like "/usr/src/myproject". Separate the files or directories # with spaces. INPUT = @top_srcdir@ # This tag can be used to specify the character encoding of the source files that # doxygen parses. Internally doxygen uses the UTF-8 encoding, which is also the default # input encoding. Doxygen uses libiconv (or the iconv built into libc) for the transcoding. # See http://www.gnu.org/software/libiconv for the list of possible encodings. INPUT_ENCODING = UTF-8 # If the value of the INPUT tag contains directories, you can use the # FILE_PATTERNS tag to specify one or more wildcard pattern (like *.cpp # and *.h) to filter out the source-files in the directories. If left # blank the following patterns are tested: # *.c *.cc *.cxx *.cpp *.c++ *.java *.ii *.ixx *.ipp *.i++ *.inl *.h *.hh *.hxx # *.hpp *.h++ *.idl *.odl *.cs *.php *.php3 *.inc *.m *.mm *.py FILE_PATTERNS = *.c \ *.h # The RECURSIVE tag can be used to turn specify whether or not subdirectories # should be searched for input files as well. Possible values are YES and NO. # If left blank NO is used. RECURSIVE = YES # The EXCLUDE tag can be used to specify files and/or directories that should # excluded from the INPUT source files. This way you can easily exclude a # subdirectory from a directory tree whose root is specified with the INPUT tag. EXCLUDE = # The EXCLUDE_SYMLINKS tag can be used select whether or not files or # directories that are symbolic links (a Unix filesystem feature) are excluded # from the input. EXCLUDE_SYMLINKS = NO # If the value of the INPUT tag contains directories, you can use the # EXCLUDE_PATTERNS tag to specify one or more wildcard patterns to exclude # certain files from those directories. Note that the wildcards are matched # against the file with absolute path, so to exclude all test directories # for example use the pattern */test/* EXCLUDE_PATTERNS = .* # The EXCLUDE_SYMBOLS tag can be used to specify one or more symbol names # (namespaces, classes, functions, etc.) that should be excluded from the output. # The symbol name can be a fully qualified name, a word, or if the wildcard * is used, # a substring. Examples: ANamespace, AClass, AClass::ANamespace, ANamespace::*Test EXCLUDE_SYMBOLS = # The EXAMPLE_PATH tag can be used to specify one or more files or # directories that contain example code fragments that are included (see # the \include command). EXAMPLE_PATH = # If the value of the EXAMPLE_PATH tag contains directories, you can use the # EXAMPLE_PATTERNS tag to specify one or more wildcard pattern (like *.cpp # and *.h) to filter out the source-files in the directories. If left # blank all files are included. EXAMPLE_PATTERNS = * # If the EXAMPLE_RECURSIVE tag is set to YES then subdirectories will be # searched for input files to be used with the \include or \dontinclude # commands irrespective of the value of the RECURSIVE tag. # Possible values are YES and NO. If left blank NO is used. EXAMPLE_RECURSIVE = NO # The IMAGE_PATH tag can be used to specify one or more files or # directories that contain image that are included in the documentation (see # the \image command). IMAGE_PATH = # The INPUT_FILTER tag can be used to specify a program that doxygen should # invoke to filter for each input file. Doxygen will invoke the filter program # by executing (via popen()) the command , where # is the value of the INPUT_FILTER tag, and is the name of an # input file. Doxygen will then use the output that the filter program writes # to standard output. If FILTER_PATTERNS is specified, this tag will be # ignored. INPUT_FILTER = # The FILTER_PATTERNS tag can be used to specify filters on a per file pattern # basis. Doxygen will compare the file name with each pattern and apply the # filter if there is a match. The filters are a list of the form: # pattern=filter (like *.cpp=my_cpp_filter). See INPUT_FILTER for further # info on how filters are used. If FILTER_PATTERNS is empty, INPUT_FILTER # is applied to all files. FILTER_PATTERNS = # If the FILTER_SOURCE_FILES tag is set to YES, the input filter (if set using # INPUT_FILTER) will be used to filter the input files when producing source # files to browse (i.e. when SOURCE_BROWSER is set to YES). FILTER_SOURCE_FILES = NO #--------------------------------------------------------------------------- # configuration options related to source browsing #--------------------------------------------------------------------------- # If the SOURCE_BROWSER tag is set to YES then a list of source files will # be generated. Documented entities will be cross-referenced with these sources. # Note: To get rid of all source code in the generated output, make sure also # VERBATIM_HEADERS is set to NO. If you have enabled CALL_GRAPH or CALLER_GRAPH # then you must also enable this option. If you don't then doxygen will produce # a warning and turn it on anyway SOURCE_BROWSER = YES # Setting the INLINE_SOURCES tag to YES will include the body # of functions and classes directly in the documentation. INLINE_SOURCES = NO # Setting the STRIP_CODE_COMMENTS tag to YES (the default) will instruct # doxygen to hide any special comment blocks from generated source code # fragments. Normal C and C++ comments will always remain visible. STRIP_CODE_COMMENTS = YES # If the REFERENCED_BY_RELATION tag is set to YES (the default) # then for each documented function all documented # functions referencing it will be listed. REFERENCED_BY_RELATION = YES # If the REFERENCES_RELATION tag is set to YES (the default) # then for each documented function all documented entities # called/used by that function will be listed. REFERENCES_RELATION = YES # If the REFERENCES_LINK_SOURCE tag is set to YES (the default) # and SOURCE_BROWSER tag is set to YES, then the hyperlinks from # functions in REFERENCES_RELATION and REFERENCED_BY_RELATION lists will # link to the source code. Otherwise they will link to the documentstion. REFERENCES_LINK_SOURCE = YES # If the USE_HTAGS tag is set to YES then the references to source code # will point to the HTML generated by the htags(1) tool instead of doxygen # built-in source browser. The htags tool is part of GNU's global source # tagging system (see http://www.gnu.org/software/global/global.html). You # will need version 4.8.6 or higher. USE_HTAGS = NO # If the VERBATIM_HEADERS tag is set to YES (the default) then Doxygen # will generate a verbatim copy of the header file for each class for # which an include is specified. Set to NO to disable this. VERBATIM_HEADERS = YES #--------------------------------------------------------------------------- # configuration options related to the alphabetical class index #--------------------------------------------------------------------------- # If the ALPHABETICAL_INDEX tag is set to YES, an alphabetical index # of all compounds will be generated. Enable this if the project # contains a lot of classes, structs, unions or interfaces. ALPHABETICAL_INDEX = NO # If the alphabetical index is enabled (see ALPHABETICAL_INDEX) then # the COLS_IN_ALPHA_INDEX tag can be used to specify the number of columns # in which this list will be split (can be a number in the range [1..20]) COLS_IN_ALPHA_INDEX = 5 # In case all classes in a project start with a common prefix, all # classes will be put under the same header in the alphabetical index. # The IGNORE_PREFIX tag can be used to specify one or more prefixes that # should be ignored while generating the index headers. IGNORE_PREFIX = #--------------------------------------------------------------------------- # configuration options related to the HTML output #--------------------------------------------------------------------------- # If the GENERATE_HTML tag is set to YES (the default) Doxygen will # generate HTML output. GENERATE_HTML = YES # The HTML_OUTPUT tag is used to specify where the HTML docs will be put. # If a relative path is entered the value of OUTPUT_DIRECTORY will be # put in front of it. If left blank `html' will be used as the default path. HTML_OUTPUT = html # The HTML_FILE_EXTENSION tag can be used to specify the file extension for # each generated HTML page (for example: .htm,.php,.asp). If it is left blank # doxygen will generate files with .html extension. HTML_FILE_EXTENSION = .html # The HTML_HEADER tag can be used to specify a personal HTML header for # each generated HTML page. If it is left blank doxygen will generate a # standard header. HTML_HEADER = # The HTML_FOOTER tag can be used to specify a personal HTML footer for # each generated HTML page. If it is left blank doxygen will generate a # standard footer. HTML_FOOTER = footer_SF.html # The HTML_STYLESHEET tag can be used to specify a user-defined cascading # style sheet that is used by each HTML page. It can be used to # fine-tune the look of the HTML output. If the tag is left blank doxygen # will generate a default style sheet. Note that doxygen will try to copy # the style sheet file to the HTML output directory, so don't put your own # stylesheet in the HTML output directory as well, or it will be erased! HTML_STYLESHEET = # If the HTML_ALIGN_MEMBERS tag is set to YES, the members of classes, # files or namespaces will be aligned in HTML using tables. If set to # NO a bullet list will be used. HTML_ALIGN_MEMBERS = YES # If the GENERATE_HTMLHELP tag is set to YES, additional index files # will be generated that can be used as input for tools like the # Microsoft HTML help workshop to generate a compressed HTML help file (.chm) # of the generated HTML documentation. GENERATE_HTMLHELP = NO # If the HTML_DYNAMIC_SECTIONS tag is set to YES then the generated HTML # documentation will contain sections that can be hidden and shown after the # page has loaded. For this to work a browser that supports # JavaScript and DHTML is required (for instance Mozilla 1.0+, Firefox # Netscape 6.0+, Internet explorer 5.0+, Konqueror, or Safari). HTML_DYNAMIC_SECTIONS = NO # If the GENERATE_HTMLHELP tag is set to YES, the CHM_FILE tag can # be used to specify the file name of the resulting .chm file. You # can add a path in front of the file if the result should not be # written to the html output directory. CHM_FILE = # If the GENERATE_HTMLHELP tag is set to YES, the HHC_LOCATION tag can # be used to specify the location (absolute path including file name) of # the HTML help compiler (hhc.exe). If non-empty doxygen will try to run # the HTML help compiler on the generated index.hhp. HHC_LOCATION = # If the GENERATE_HTMLHELP tag is set to YES, the GENERATE_CHI flag # controls if a separate .chi index file is generated (YES) or that # it should be included in the master .chm file (NO). GENERATE_CHI = NO # If the GENERATE_HTMLHELP tag is set to YES, the BINARY_TOC flag # controls whether a binary table of contents is generated (YES) or a # normal table of contents (NO) in the .chm file. BINARY_TOC = NO # The TOC_EXPAND flag can be set to YES to add extra items for group members # to the contents of the HTML help documentation and to the tree view. TOC_EXPAND = NO # The DISABLE_INDEX tag can be used to turn on/off the condensed index at # top of each HTML page. The value NO (the default) enables the index and # the value YES disables it. DISABLE_INDEX = NO # This tag can be used to set the number of enum values (range [1..20]) # that doxygen will group on one line in the generated HTML documentation. ENUM_VALUES_PER_LINE = 4 # If the GENERATE_TREEVIEW tag is set to YES, a side panel will be # generated containing a tree-like index structure (just like the one that # is generated for HTML Help). For this to work a browser that supports # JavaScript, DHTML, CSS and frames is required (for instance Mozilla 1.0+, # Netscape 6.0+, Internet explorer 5.0+, or Konqueror). Windows users are # probably better off using the HTML help feature. GENERATE_TREEVIEW = YES # If the treeview is enabled (see GENERATE_TREEVIEW) then this tag can be # used to set the initial width (in pixels) of the frame in which the tree # is shown. TREEVIEW_WIDTH = 250 #--------------------------------------------------------------------------- # configuration options related to the LaTeX output #--------------------------------------------------------------------------- # If the GENERATE_LATEX tag is set to YES (the default) Doxygen will # generate Latex output. GENERATE_LATEX = NO # The LATEX_OUTPUT tag is used to specify where the LaTeX docs will be put. # If a relative path is entered the value of OUTPUT_DIRECTORY will be # put in front of it. If left blank `latex' will be used as the default path. LATEX_OUTPUT = latex # The LATEX_CMD_NAME tag can be used to specify the LaTeX command name to be # invoked. If left blank `latex' will be used as the default command name. LATEX_CMD_NAME = latex # The MAKEINDEX_CMD_NAME tag can be used to specify the command name to # generate index for LaTeX. If left blank `makeindex' will be used as the # default command name. MAKEINDEX_CMD_NAME = makeindex # If the COMPACT_LATEX tag is set to YES Doxygen generates more compact # LaTeX documents. This may be useful for small projects and may help to # save some trees in general. COMPACT_LATEX = NO # The PAPER_TYPE tag can be used to set the paper type that is used # by the printer. Possible values are: a4, a4wide, letter, legal and # executive. If left blank a4wide will be used. PAPER_TYPE = a4wide # The EXTRA_PACKAGES tag can be to specify one or more names of LaTeX # packages that should be included in the LaTeX output. EXTRA_PACKAGES = # The LATEX_HEADER tag can be used to specify a personal LaTeX header for # the generated latex document. The header should contain everything until # the first chapter. If it is left blank doxygen will generate a # standard header. Notice: only use this tag if you know what you are doing! LATEX_HEADER = # If the PDF_HYPERLINKS tag is set to YES, the LaTeX that is generated # is prepared for conversion to pdf (using ps2pdf). The pdf file will # contain links (just like the HTML output) instead of page references # This makes the output suitable for online browsing using a pdf viewer. PDF_HYPERLINKS = YES # If the USE_PDFLATEX tag is set to YES, pdflatex will be used instead of # plain latex in the generated Makefile. Set this option to YES to get a # higher quality PDF documentation. USE_PDFLATEX = YES # If the LATEX_BATCHMODE tag is set to YES, doxygen will add the \\batchmode. # command to the generated LaTeX files. This will instruct LaTeX to keep # running if errors occur, instead of asking the user for help. # This option is also used when generating formulas in HTML. LATEX_BATCHMODE = NO # If LATEX_HIDE_INDICES is set to YES then doxygen will not # include the index chapters (such as File Index, Compound Index, etc.) # in the output. LATEX_HIDE_INDICES = NO #--------------------------------------------------------------------------- # configuration options related to the RTF output #--------------------------------------------------------------------------- # If the GENERATE_RTF tag is set to YES Doxygen will generate RTF output # The RTF output is optimized for Word 97 and may not look very pretty with # other RTF readers or editors. GENERATE_RTF = NO # The RTF_OUTPUT tag is used to specify where the RTF docs will be put. # If a relative path is entered the value of OUTPUT_DIRECTORY will be # put in front of it. If left blank `rtf' will be used as the default path. RTF_OUTPUT = rtf # If the COMPACT_RTF tag is set to YES Doxygen generates more compact # RTF documents. This may be useful for small projects and may help to # save some trees in general. COMPACT_RTF = NO # If the RTF_HYPERLINKS tag is set to YES, the RTF that is generated # will contain hyperlink fields. The RTF file will # contain links (just like the HTML output) instead of page references. # This makes the output suitable for online browsing using WORD or other # programs which support those fields. # Note: wordpad (write) and others do not support links. RTF_HYPERLINKS = NO # Load stylesheet definitions from file. Syntax is similar to doxygen's # config file, i.e. a series of assignments. You only have to provide # replacements, missing definitions are set to their default value. RTF_STYLESHEET_FILE = # Set optional variables used in the generation of an rtf document. # Syntax is similar to doxygen's config file. RTF_EXTENSIONS_FILE = #--------------------------------------------------------------------------- # configuration options related to the man page output #--------------------------------------------------------------------------- # If the GENERATE_MAN tag is set to YES (the default) Doxygen will # generate man pages GENERATE_MAN = NO # The MAN_OUTPUT tag is used to specify where the man pages will be put. # If a relative path is entered the value of OUTPUT_DIRECTORY will be # put in front of it. If left blank `man' will be used as the default path. MAN_OUTPUT = man # The MAN_EXTENSION tag determines the extension that is added to # the generated man pages (default is the subroutine's section .3) MAN_EXTENSION = .3 # If the MAN_LINKS tag is set to YES and Doxygen generates man output, # then it will generate one additional man file for each entity # documented in the real man page(s). These additional files # only source the real man page, but without them the man command # would be unable to find the correct page. The default is NO. MAN_LINKS = NO #--------------------------------------------------------------------------- # configuration options related to the XML output #--------------------------------------------------------------------------- # If the GENERATE_XML tag is set to YES Doxygen will # generate an XML file that captures the structure of # the code including all documentation. GENERATE_XML = NO # The XML_OUTPUT tag is used to specify where the XML pages will be put. # If a relative path is entered the value of OUTPUT_DIRECTORY will be # put in front of it. If left blank `xml' will be used as the default path. XML_OUTPUT = xml # The XML_SCHEMA tag can be used to specify an XML schema, # which can be used by a validating XML parser to check the # syntax of the XML files. XML_SCHEMA = # The XML_DTD tag can be used to specify an XML DTD, # which can be used by a validating XML parser to check the # syntax of the XML files. XML_DTD = # If the XML_PROGRAMLISTING tag is set to YES Doxygen will # dump the program listings (including syntax highlighting # and cross-referencing information) to the XML output. Note that # enabling this will significantly increase the size of the XML output. XML_PROGRAMLISTING = YES #--------------------------------------------------------------------------- # configuration options for the AutoGen Definitions output #--------------------------------------------------------------------------- # If the GENERATE_AUTOGEN_DEF tag is set to YES Doxygen will # generate an AutoGen Definitions (see autogen.sf.net) file # that captures the structure of the code including all # documentation. Note that this feature is still experimental # and incomplete at the moment. GENERATE_AUTOGEN_DEF = NO #--------------------------------------------------------------------------- # configuration options related to the Perl module output #--------------------------------------------------------------------------- # If the GENERATE_PERLMOD tag is set to YES Doxygen will # generate a Perl module file that captures the structure of # the code including all documentation. Note that this # feature is still experimental and incomplete at the # moment. GENERATE_PERLMOD = NO # If the PERLMOD_LATEX tag is set to YES Doxygen will generate # the necessary Makefile rules, Perl scripts and LaTeX code to be able # to generate PDF and DVI output from the Perl module output. PERLMOD_LATEX = NO # If the PERLMOD_PRETTY tag is set to YES the Perl module output will be # nicely formatted so it can be parsed by a human reader. This is useful # if you want to understand what is going on. On the other hand, if this # tag is set to NO the size of the Perl module output will be much smaller # and Perl will parse it just the same. PERLMOD_PRETTY = YES # The names of the make variables in the generated doxyrules.make file # are prefixed with the string contained in PERLMOD_MAKEVAR_PREFIX. # This is useful so different doxyrules.make files included by the same # Makefile don't overwrite each other's variables. PERLMOD_MAKEVAR_PREFIX = #--------------------------------------------------------------------------- # Configuration options related to the preprocessor #--------------------------------------------------------------------------- # If the ENABLE_PREPROCESSING tag is set to YES (the default) Doxygen will # evaluate all C-preprocessor directives found in the sources and include # files. ENABLE_PREPROCESSING = YES # If the MACRO_EXPANSION tag is set to YES Doxygen will expand all macro # names in the source code. If set to NO (the default) only conditional # compilation will be performed. Macro expansion can be done in a controlled # way by setting EXPAND_ONLY_PREDEF to YES. MACRO_EXPANSION = YES # If the EXPAND_ONLY_PREDEF and MACRO_EXPANSION tags are both set to YES # then the macro expansion is limited to the macros specified with the # PREDEFINED and EXPAND_AS_DEFINED tags. EXPAND_ONLY_PREDEF = NO # If the SEARCH_INCLUDES tag is set to YES (the default) the includes files # in the INCLUDE_PATH (see below) will be search if a #include is found. SEARCH_INCLUDES = YES # The INCLUDE_PATH tag can be used to specify one or more directories that # contain include files that are not input files but should be processed by # the preprocessor. INCLUDE_PATH = # You can use the INCLUDE_FILE_PATTERNS tag to specify one or more wildcard # patterns (like *.h and *.hpp) to filter out the header-files in the # directories. If left blank, the patterns specified with FILE_PATTERNS will # be used. INCLUDE_FILE_PATTERNS = # The PREDEFINED tag can be used to specify one or more macro names that # are defined before the preprocessor is started (similar to the -D option of # gcc). The argument of the tag is a list of macros of the form: name # or name=definition (no spaces). If the definition and the = are # omitted =1 is assumed. To prevent a macro definition from being # undefined via #undef or recursively expanded use the := operator # instead of the = operator. PREDEFINED = # If the MACRO_EXPANSION and EXPAND_ONLY_PREDEF tags are set to YES then # this tag can be used to specify a list of macro names that should be expanded. # The macro definition that is found in the sources will be used. # Use the PREDEFINED tag if you want to use a different macro definition. 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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 . # 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 file is maintained in Automake, please report # bugs to or send patches to # . case $1 in '') echo "$0: No command. Try \`$0 --help' for more information." 1>&2 exit 1; ;; -h | --h*) cat <<\EOF Usage: compile [--help] [--version] PROGRAM [ARGS] Wrapper for compilers which do not understand `-c -o'. Remove `-o dest.o' from ARGS, run PROGRAM with the remaining arguments, and rename the output as expected. If you are trying to build a whole package this is not the right script to run: please start by reading the file `INSTALL'. Report bugs to . EOF exit $? ;; -v | --v*) echo "compile $scriptversion" exit $? ;; esac ofile= cfile= eat= for arg do if test -n "$eat"; then eat= else case $1 in -o) # configure might choose to run compile as `compile cc -o foo foo.c'. # So we strip `-o arg' only if arg is an object. eat=1 case $2 in *.o | *.obj) ofile=$2 ;; *) set x "$@" -o "$2" shift ;; esac ;; *.c) cfile=$1 set x "$@" "$1" shift ;; *) set x "$@" "$1" shift ;; esac fi shift done if test -z "$ofile" || test -z "$cfile"; then # If no `-o' option was seen then we might have been invoked from a # pattern rule where we don't need one. That is ok -- this is a # normal compilation that the losing compiler can handle. If no # `.c' file was seen then we are probably linking. That is also # ok. exec "$@" fi # Name of file we expect compiler to create. cofile=`echo "$cfile" | sed 's|^.*[\\/]||; s|^[a-zA-Z]:||; s/\.c$/.o/'` # Create the lock directory. # Note: use `[/\\:.-]' here to ensure that we don't use the same name # that we are using for the .o file. Also, base the name on the expected # object file name, since that is what matters with a parallel build. lockdir=`echo "$cofile" | sed -e 's|[/\\:.-]|_|g'`.d while true; do if mkdir "$lockdir" >/dev/null 2>&1; then break fi sleep 1 done # FIXME: race condition here if user kills between mkdir and trap. trap "rmdir '$lockdir'; exit 1" 1 2 15 # Run the compile. "$@" ret=$? if test -f "$cofile"; then test "$cofile" = "$ofile" || mv "$cofile" "$ofile" elif test -f "${cofile}bj"; then test "${cofile}bj" = "$ofile" || mv "${cofile}bj" "$ofile" fi rmdir "$lockdir" exit $ret # Local Variables: # mode: shell-script # sh-indentation: 2 # 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: libomxil-bellagio-0.9.3/COPYING0000644000175000017500000005672511513256766013125 00000000000000GNU LESSER GENERAL PUBLIC LICENSE Version 2.1, February 1999 Copyright (C) 1991, 1999 Free Software Foundation, Inc. 51 Franklin St, 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. [This is the first released version of the Lesser GPL. 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END OF TERMS AND CONDITIONS libomxil-bellagio-0.9.3/include/0000755000175000017500000000000011565425034013547 500000000000000libomxil-bellagio-0.9.3/include/OMX_Other.h0000644000175000017500000004301411513256766015455 00000000000000/* * Copyright (c) 2008 The Khronos Group 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. * */ /** @file OMX_Other.h - OpenMax IL version 1.1.2 * The structures needed by Other components to exchange * parameters and configuration data with the components. */ #ifndef OMX_Other_h #define OMX_Other_h #ifdef __cplusplus extern "C" { #endif /* __cplusplus */ /* Each OMX header must include all required header files to allow the * header to compile without errors. The includes below are required * for this header file to compile successfully */ #include /** * Enumeration of possible data types which match to multiple domains or no * domain at all. For types which are vendor specific, a value above * OMX_OTHER_VENDORTSTART should be used. */ typedef enum OMX_OTHER_FORMATTYPE { OMX_OTHER_FormatTime = 0, /**< Transmission of various timestamps, elapsed time, time deltas, etc */ OMX_OTHER_FormatPower, /**< Perhaps used for enabling/disabling power management, setting clocks? */ OMX_OTHER_FormatStats, /**< Could be things such as frame rate, frames dropped, etc */ OMX_OTHER_FormatBinary, /**< Arbitrary binary data */ OMX_OTHER_FormatVendorReserved = 1000, /**< Starting value for vendor specific formats */ OMX_OTHER_FormatKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_OTHER_FormatVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_OTHER_FormatMax = 0x7FFFFFFF } OMX_OTHER_FORMATTYPE; /** * Enumeration of seek modes. */ typedef enum OMX_TIME_SEEKMODETYPE { OMX_TIME_SeekModeFast = 0, /**< Prefer seeking to an approximation * of the requested seek position over * the actual seek position if it * results in a faster seek. */ OMX_TIME_SeekModeAccurate, /**< Prefer seeking to the actual seek * position over an approximation * of the requested seek position even * if it results in a slower seek. */ OMX_TIME_SeekModeKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_TIME_SeekModeVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_TIME_SeekModeMax = 0x7FFFFFFF } OMX_TIME_SEEKMODETYPE; /* Structure representing the seekmode of the component */ typedef struct OMX_TIME_CONFIG_SEEKMODETYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_TIME_SEEKMODETYPE eType; /**< The seek mode */ } OMX_TIME_CONFIG_SEEKMODETYPE; /** Structure representing a time stamp used with the following configs * on the Clock Component (CC): * * OMX_IndexConfigTimeCurrentWallTime: query of the CC’s current wall * time * OMX_IndexConfigTimeCurrentMediaTime: query of the CC’s current media * time * OMX_IndexConfigTimeCurrentAudioReference and * OMX_IndexConfigTimeCurrentVideoReference: audio/video reference * clock sending SC its reference time * OMX_IndexConfigTimeClientStartTime: a Clock Component client sends * this structure to the Clock Component via a SetConfig on its * client port when it receives a buffer with * OMX_BUFFERFLAG_STARTTIME set. It must use the timestamp * specified by that buffer for nStartTimestamp. * * It’s also used with the following config on components in general: * * OMX_IndexConfigTimePosition: IL client querying component position * (GetConfig) or commanding a component to seek to the given location * (SetConfig) */ typedef struct OMX_TIME_CONFIG_TIMESTAMPTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version * information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_TICKS nTimestamp; /**< timestamp .*/ } OMX_TIME_CONFIG_TIMESTAMPTYPE; /** Enumeration of possible reference clocks to the media time. */ typedef enum OMX_TIME_UPDATETYPE { OMX_TIME_UpdateRequestFulfillment, /**< Update is the fulfillment of a media time request. */ OMX_TIME_UpdateScaleChanged, /**< Update was generated because the scale chagned. */ OMX_TIME_UpdateClockStateChanged, /**< Update was generated because the clock state changed. */ OMX_TIME_UpdateKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_TIME_UpdateVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_TIME_UpdateMax = 0x7FFFFFFF } OMX_TIME_UPDATETYPE; /** Enumeration of possible reference clocks to the media time. */ typedef enum OMX_TIME_REFCLOCKTYPE { OMX_TIME_RefClockNone, /**< Use no references. */ OMX_TIME_RefClockAudio, /**< Use references sent through OMX_IndexConfigTimeCurrentAudioReference */ OMX_TIME_RefClockVideo, /**< Use references sent through OMX_IndexConfigTimeCurrentVideoReference */ OMX_TIME_RefClockKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_TIME_RefClockVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_TIME_RefClockMax = 0x7FFFFFFF } OMX_TIME_REFCLOCKTYPE; /** Enumeration of clock states. */ typedef enum OMX_TIME_CLOCKSTATE { OMX_TIME_ClockStateRunning, /**< Clock running. */ OMX_TIME_ClockStateWaitingForStartTime, /**< Clock waiting until the * prescribed clients emit their * start time. */ OMX_TIME_ClockStateStopped, /**< Clock stopped. */ OMX_TIME_ClockStateKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_TIME_ClockStateVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_TIME_ClockStateMax = 0x7FFFFFFF } OMX_TIME_CLOCKSTATE; /** Structure representing a media time request to the clock component. * * A client component sends this structure to the Clock Component via a SetConfig * on its client port to specify a media timestamp the Clock Component * should emit. The Clock Component should fulfill the request by sending a * OMX_TIME_MEDIATIMETYPE when its media clock matches the requested * timestamp. * * The client may require a media time request be fulfilled slightly * earlier than the media time specified. In this case the client specifies * an offset which is equal to the difference between wall time corresponding * to the requested media time and the wall time when it will be * fulfilled. * * A client component may uses these requests and the OMX_TIME_MEDIATIMETYPE to * time events according to timestamps. If a client must perform an operation O at * a time T (e.g. deliver a video frame at its corresponding timestamp), it makes a * media time request at T (perhaps specifying an offset to ensure the request fulfillment * is a little early). When the clock component passes the resulting OMX_TIME_MEDIATIMETYPE * structure back to the client component, the client may perform operation O (perhaps having * to wait a slight amount more time itself as specified by the return values). */ typedef struct OMX_TIME_CONFIG_MEDIATIMEREQUESTTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_PTR pClientPrivate; /**< Client private data to disabiguate this media time * from others (e.g. the number of the frame to deliver). * Duplicated in the media time structure that fulfills * this request. A value of zero is reserved for time scale * updates. */ OMX_TICKS nMediaTimestamp; /**< Media timestamp requested.*/ OMX_TICKS nOffset; /**< Amount of wall clock time by which this * request should be fulfilled early */ } OMX_TIME_CONFIG_MEDIATIMEREQUESTTYPE; /**< Structure sent from the clock component client either when fulfilling * a media time request or when the time scale has changed. * * In the former case the Clock Component fills this structure and times its emission * to a client component (via the client port) according to the corresponding media * time request sent by the client. The Clock Component should time the emission to occur * when the requested timestamp matches the Clock Component's media time but also the * prescribed offset early. * * Upon scale changes the clock component clears the nClientPrivate data, sends the current * media time and sets the nScale to the new scale via the client port. It emits a * OMX_TIME_MEDIATIMETYPE to all clients independent of any requests. This allows clients to * alter processing to accomodate scaling. For instance a video component might skip inter-frames * in the case of extreme fastforward. Likewise an audio component might add or remove samples * from an audio frame to scale audio data. * * It is expected that some clock components may not be able to fulfill requests * at exactly the prescribed time. This is acceptable so long as the request is * fulfilled at least as early as described and not later. This structure provides * fields the client may use to wait for the remaining time. * * The client may use either the nOffset or nWallTimeAtMedia fields to determine the * wall time until the nMediaTimestamp actually occurs. In the latter case the * client can get a more accurate value for offset by getting the current wall * from the cloc component and subtracting it from nWallTimeAtMedia. */ typedef struct OMX_TIME_MEDIATIMETYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nClientPrivate; /**< Client private data to disabiguate this media time * from others. Copied from the media time request. * A value of zero is reserved for time scale updates. */ OMX_TIME_UPDATETYPE eUpdateType; /**< Reason for the update */ OMX_TICKS nMediaTimestamp; /**< Media time requested. If no media time was * requested then this is the current media time. */ OMX_TICKS nOffset; /**< Amount of wall clock time by which this * request was actually fulfilled early */ OMX_TICKS nWallTimeAtMediaTime; /**< Wall time corresponding to nMediaTimeStamp. * A client may compare this value to current * media time obtained from the Clock Component to determine * the wall time until the media timestamp is really * current. */ OMX_S32 xScale; /**< Current media time scale in Q16 format. */ OMX_TIME_CLOCKSTATE eState; /* Seeking Change. Added 7/12.*/ /**< State of the media time. */ } OMX_TIME_MEDIATIMETYPE; /** Structure representing the current media time scale factor. Applicable only to clock * component, other components see scale changes via OMX_TIME_MEDIATIMETYPE buffers sent via * the clock component client ports. Upon recieving this config the clock component changes * the rate by which the media time increases or decreases effectively implementing trick modes. */ typedef struct OMX_TIME_CONFIG_SCALETYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_S32 xScale; /**< This is a value in Q16 format which is used for * scaling the media time */ } OMX_TIME_CONFIG_SCALETYPE; /** Bits used to identify a clock port. Used in OMX_TIME_CONFIG_CLOCKSTATETYPE’s nWaitMask field */ #define OMX_CLOCKPORT0 0x00000001 #define OMX_CLOCKPORT1 0x00000002 #define OMX_CLOCKPORT2 0x00000004 #define OMX_CLOCKPORT3 0x00000008 #define OMX_CLOCKPORT4 0x00000010 #define OMX_CLOCKPORT5 0x00000020 #define OMX_CLOCKPORT6 0x00000040 #define OMX_CLOCKPORT7 0x00000080 /** Structure representing the current mode of the media clock. * IL Client uses this config to change or query the mode of the * media clock of the clock component. Applicable only to clock * component. * * On a SetConfig if eState is OMX_TIME_ClockStateRunning media time * starts immediately at the prescribed start time. If * OMX_TIME_ClockStateWaitingForStartTime the Clock Component ignores * the given nStartTime and waits for all clients specified in the * nWaitMask to send starttimes (via * OMX_IndexConfigTimeClientStartTime). The Clock Component then starts * the media clock using the earliest start time supplied. */ typedef struct OMX_TIME_CONFIG_CLOCKSTATETYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version * information */ OMX_TIME_CLOCKSTATE eState; /**< State of the media time. */ OMX_TICKS nStartTime; /**< Start time of the media time. */ OMX_TICKS nOffset; /**< Time to offset the media time by * (e.g. preroll). Media time will be * reported to be nOffset ticks earlier. */ OMX_U32 nWaitMask; /**< Mask of OMX_CLOCKPORT values. */ } OMX_TIME_CONFIG_CLOCKSTATETYPE; /** Structure representing the reference clock currently being used to * compute media time. IL client uses this config to change or query the * clock component's active reference clock */ typedef struct OMX_TIME_CONFIG_ACTIVEREFCLOCKTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_TIME_REFCLOCKTYPE eClock; /**< Reference clock used to compute media time */ } OMX_TIME_CONFIG_ACTIVEREFCLOCKTYPE; /** Descriptor for setting specifics of power type. * Note: this structure is listed for backwards compatibility. */ typedef struct OMX_OTHER_CONFIG_POWERTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_BOOL bEnablePM; /**< Flag to enable Power Management */ } OMX_OTHER_CONFIG_POWERTYPE; /** Descriptor for setting specifics of stats type. * Note: this structure is listed for backwards compatibility. */ typedef struct OMX_OTHER_CONFIG_STATSTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ /* what goes here */ } OMX_OTHER_CONFIG_STATSTYPE; /** * The PortDefinition structure is used to define all of the parameters * necessary for the compliant component to setup an input or an output other * path. */ typedef struct OMX_OTHER_PORTDEFINITIONTYPE { OMX_OTHER_FORMATTYPE eFormat; /**< Type of data expected for this channel */ } OMX_OTHER_PORTDEFINITIONTYPE; /** Port format parameter. This structure is used to enumerate * the various data input/output format supported by the port. */ typedef struct OMX_OTHER_PARAM_PORTFORMATTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< Indicates which port to set */ OMX_U32 nIndex; /**< Indicates the enumeration index for the format from 0x0 to N-1 */ OMX_OTHER_FORMATTYPE eFormat; /**< Type of data expected for this channel */ } OMX_OTHER_PARAM_PORTFORMATTYPE; #ifdef __cplusplus } #endif /* __cplusplus */ #endif /* File EOF */ libomxil-bellagio-0.9.3/include/OMX_Component.h0000644000175000017500000005647511513256766016355 00000000000000/* * Copyright (c) 2008 The Khronos Group 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. * */ /** OMX_Component.h - OpenMax IL version 1.1.2 * The OMX_Component header file contains the definitions used to define * the public interface of a component. This header file is intended to * be used by both the application and the component. */ #ifndef OMX_Component_h #define OMX_Component_h #ifdef __cplusplus extern "C" { #endif /* __cplusplus */ /* Each OMX header must include all required header files to allow the * header to compile without errors. The includes below are required * for this header file to compile successfully */ #include #include #include #include /** @ingroup comp */ typedef enum OMX_PORTDOMAINTYPE { OMX_PortDomainAudio, OMX_PortDomainVideo, OMX_PortDomainImage, OMX_PortDomainOther, OMX_PortDomainKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_PortDomainVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_PortDomainMax = 0x7ffffff } OMX_PORTDOMAINTYPE; /** @ingroup comp */ typedef struct OMX_PARAM_PORTDEFINITIONTYPE { OMX_U32 nSize; /**< Size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< Port number the structure applies to */ OMX_DIRTYPE eDir; /**< Direction (input or output) of this port */ OMX_U32 nBufferCountActual; /**< The actual number of buffers allocated on this port */ OMX_U32 nBufferCountMin; /**< The minimum number of buffers this port requires */ OMX_U32 nBufferSize; /**< Size, in bytes, for buffers to be used for this channel */ OMX_BOOL bEnabled; /**< Ports default to enabled and are enabled/disabled by OMX_CommandPortEnable/OMX_CommandPortDisable. When disabled a port is unpopulated. A disabled port is not populated with buffers on a transition to IDLE. */ OMX_BOOL bPopulated; /**< Port is populated with all of its buffers as indicated by nBufferCountActual. A disabled port is always unpopulated. An enabled port is populated on a transition to OMX_StateIdle and unpopulated on a transition to loaded. */ OMX_PORTDOMAINTYPE eDomain; /**< Domain of the port. Determines the contents of metadata below. */ union { OMX_AUDIO_PORTDEFINITIONTYPE audio; OMX_VIDEO_PORTDEFINITIONTYPE video; OMX_IMAGE_PORTDEFINITIONTYPE image; OMX_OTHER_PORTDEFINITIONTYPE other; } format; OMX_BOOL bBuffersContiguous; OMX_U32 nBufferAlignment; } OMX_PARAM_PORTDEFINITIONTYPE; /** @ingroup comp */ typedef struct OMX_PARAM_U32TYPE { OMX_U32 nSize; /**< Size of this structure, in Bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nU32; /**< U32 value */ } OMX_PARAM_U32TYPE; /** @ingroup rpm */ typedef enum OMX_SUSPENSIONPOLICYTYPE { OMX_SuspensionDisabled, /**< No suspension; v1.0 behavior */ OMX_SuspensionEnabled, /**< Suspension allowed */ OMX_SuspensionPolicyKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_SuspensionPolicyStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_SuspensionPolicyMax = 0x7fffffff } OMX_SUSPENSIONPOLICYTYPE; /** @ingroup rpm */ typedef struct OMX_PARAM_SUSPENSIONPOLICYTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_SUSPENSIONPOLICYTYPE ePolicy; } OMX_PARAM_SUSPENSIONPOLICYTYPE; /** @ingroup rpm */ typedef enum OMX_SUSPENSIONTYPE { OMX_NotSuspended, /**< component is not suspended */ OMX_Suspended, /**< component is suspended */ OMX_SuspensionKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_SuspensionVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_SuspendMax = 0x7FFFFFFF } OMX_SUSPENSIONTYPE; /** @ingroup rpm */ typedef struct OMX_PARAM_SUSPENSIONTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_SUSPENSIONTYPE eType; } OMX_PARAM_SUSPENSIONTYPE ; typedef struct OMX_CONFIG_BOOLEANTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_BOOL bEnabled; } OMX_CONFIG_BOOLEANTYPE; /* Parameter specifying the content uri to use. */ /** @ingroup cp */ typedef struct OMX_PARAM_CONTENTURITYPE { OMX_U32 nSize; /**< size of the structure in bytes, including actual URI name */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U8 contentURI[1]; /**< The URI name */ } OMX_PARAM_CONTENTURITYPE; /* Parameter specifying the pipe to use. */ /** @ingroup cp */ typedef struct OMX_PARAM_CONTENTPIPETYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_HANDLETYPE hPipe; /**< The pipe handle*/ } OMX_PARAM_CONTENTPIPETYPE; /** @ingroup rpm */ typedef struct OMX_RESOURCECONCEALMENTTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_BOOL bResourceConcealmentForbidden; /**< disallow the use of resource concealment methods (like degrading algorithm quality to lower resource consumption or functional bypass) on a component as a resolution to resource conflicts. */ } OMX_RESOURCECONCEALMENTTYPE; /** @ingroup metadata */ typedef enum OMX_METADATACHARSETTYPE { OMX_MetadataCharsetUnknown = 0, OMX_MetadataCharsetASCII, OMX_MetadataCharsetBinary, OMX_MetadataCharsetCodePage1252, OMX_MetadataCharsetUTF8, OMX_MetadataCharsetJavaConformantUTF8, OMX_MetadataCharsetUTF7, OMX_MetadataCharsetImapUTF7, OMX_MetadataCharsetUTF16LE, OMX_MetadataCharsetUTF16BE, OMX_MetadataCharsetGB12345, OMX_MetadataCharsetHZGB2312, OMX_MetadataCharsetGB2312, OMX_MetadataCharsetGB18030, OMX_MetadataCharsetGBK, OMX_MetadataCharsetBig5, OMX_MetadataCharsetISO88591, OMX_MetadataCharsetISO88592, OMX_MetadataCharsetISO88593, OMX_MetadataCharsetISO88594, OMX_MetadataCharsetISO88595, OMX_MetadataCharsetISO88596, OMX_MetadataCharsetISO88597, OMX_MetadataCharsetISO88598, OMX_MetadataCharsetISO88599, OMX_MetadataCharsetISO885910, OMX_MetadataCharsetISO885913, OMX_MetadataCharsetISO885914, OMX_MetadataCharsetISO885915, OMX_MetadataCharsetShiftJIS, OMX_MetadataCharsetISO2022JP, OMX_MetadataCharsetISO2022JP1, OMX_MetadataCharsetISOEUCJP, OMX_MetadataCharsetSMS7Bit, OMX_MetadataCharsetKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_MetadataCharsetVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_MetadataCharsetTypeMax= 0x7FFFFFFF } OMX_METADATACHARSETTYPE; /** @ingroup metadata */ typedef enum OMX_METADATASCOPETYPE { OMX_MetadataScopeAllLevels, OMX_MetadataScopeTopLevel, OMX_MetadataScopePortLevel, OMX_MetadataScopeNodeLevel, OMX_MetadataScopeKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_MetadataScopeVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_MetadataScopeTypeMax = 0x7fffffff } OMX_METADATASCOPETYPE; /** @ingroup metadata */ typedef enum OMX_METADATASEARCHMODETYPE { OMX_MetadataSearchValueSizeByIndex, OMX_MetadataSearchItemByIndex, OMX_MetadataSearchNextItemByKey, OMX_MetadataSearchKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_MetadataSearchVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_MetadataSearchTypeMax = 0x7fffffff } OMX_METADATASEARCHMODETYPE; /** @ingroup metadata */ typedef struct OMX_CONFIG_METADATAITEMCOUNTTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_METADATASCOPETYPE eScopeMode; OMX_U32 nScopeSpecifier; OMX_U32 nMetadataItemCount; } OMX_CONFIG_METADATAITEMCOUNTTYPE; /** @ingroup metadata */ typedef struct OMX_CONFIG_METADATAITEMTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_METADATASCOPETYPE eScopeMode; OMX_U32 nScopeSpecifier; OMX_U32 nMetadataItemIndex; OMX_METADATASEARCHMODETYPE eSearchMode; OMX_METADATACHARSETTYPE eKeyCharset; OMX_U8 nKeySizeUsed; OMX_U8 nKey[128]; OMX_METADATACHARSETTYPE eValueCharset; OMX_STRING sLanguageCountry; OMX_U32 nValueMaxSize; OMX_U32 nValueSizeUsed; OMX_U8 nValue[1]; } OMX_CONFIG_METADATAITEMTYPE; /* @ingroup metadata */ typedef struct OMX_CONFIG_CONTAINERNODECOUNTTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_BOOL bAllKeys; OMX_U32 nParentNodeID; OMX_U32 nNumNodes; } OMX_CONFIG_CONTAINERNODECOUNTTYPE; /** @ingroup metadata */ typedef struct OMX_CONFIG_CONTAINERNODEIDTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_BOOL bAllKeys; OMX_U32 nParentNodeID; OMX_U32 nNodeIndex; OMX_U32 nNodeID; OMX_STRING cNodeName; OMX_BOOL bIsLeafType; } OMX_CONFIG_CONTAINERNODEIDTYPE; /** @ingroup metadata */ typedef struct OMX_PARAM_METADATAFILTERTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_BOOL bAllKeys; /* if true then this structure refers to all keys and * the three key fields below are ignored */ OMX_METADATACHARSETTYPE eKeyCharset; OMX_U32 nKeySizeUsed; OMX_U8 nKey [128]; OMX_U32 nLanguageCountrySizeUsed; OMX_U8 nLanguageCountry[128]; OMX_BOOL bEnabled; /* if true then key is part of filter (e.g. * retained for query later). If false then * key is not part of filter */ } OMX_PARAM_METADATAFILTERTYPE; /** The OMX_HANDLETYPE structure defines the component handle. The component * handle is used to access all of the component's public methods and also * contains pointers to the component's private data area. The component * handle is initialized by the OMX core (with help from the component) * during the process of loading the component. After the component is * successfully loaded, the application can safely access any of the * component's public functions (although some may return an error because * the state is inappropriate for the access). * * @ingroup comp */ typedef struct OMX_COMPONENTTYPE { /** The size of this structure, in bytes. It is the responsibility of the allocator of this structure to fill in this value. Since this structure is allocated by the GetHandle function, this function will fill in this value. */ OMX_U32 nSize; /** nVersion is the version of the OMX specification that the structure is built against. It is the responsibility of the creator of this structure to initialize this value and every user of this structure should verify that it knows how to use the exact version of this structure found herein. */ OMX_VERSIONTYPE nVersion; /** pComponentPrivate is a pointer to the component private data area. This member is allocated and initialized by the component when the component is first loaded. The application should not access this data area. */ OMX_PTR pComponentPrivate; /** pApplicationPrivate is a pointer that is a parameter to the OMX_GetHandle method, and contains an application private value provided by the IL client. This application private data is returned to the IL Client by OMX in all callbacks */ OMX_PTR pApplicationPrivate; /** refer to OMX_GetComponentVersion in OMX_core.h or the OMX IL specification for details on the GetComponentVersion method. */ OMX_ERRORTYPE (*GetComponentVersion)( OMX_IN OMX_HANDLETYPE hComponent, OMX_OUT OMX_STRING pComponentName, OMX_OUT OMX_VERSIONTYPE* pComponentVersion, OMX_OUT OMX_VERSIONTYPE* pSpecVersion, OMX_OUT OMX_UUIDTYPE* pComponentUUID); /** refer to OMX_SendCommand in OMX_core.h or the OMX IL specification for details on the SendCommand method. */ OMX_ERRORTYPE (*SendCommand)( OMX_IN OMX_HANDLETYPE hComponent, OMX_IN OMX_COMMANDTYPE Cmd, OMX_IN OMX_U32 nParam1, OMX_IN OMX_PTR pCmdData); /** refer to OMX_GetParameter in OMX_core.h or the OMX IL specification for details on the GetParameter method. */ OMX_ERRORTYPE (*GetParameter)( OMX_IN OMX_HANDLETYPE hComponent, OMX_IN OMX_INDEXTYPE nParamIndex, OMX_INOUT OMX_PTR pComponentParameterStructure); /** refer to OMX_SetParameter in OMX_core.h or the OMX IL specification for details on the SetParameter method. */ OMX_ERRORTYPE (*SetParameter)( OMX_IN OMX_HANDLETYPE hComponent, OMX_IN OMX_INDEXTYPE nIndex, OMX_IN OMX_PTR pComponentParameterStructure); /** refer to OMX_GetConfig in OMX_core.h or the OMX IL specification for details on the GetConfig method. */ OMX_ERRORTYPE (*GetConfig)( OMX_IN OMX_HANDLETYPE hComponent, OMX_IN OMX_INDEXTYPE nIndex, OMX_INOUT OMX_PTR pComponentConfigStructure); /** refer to OMX_SetConfig in OMX_core.h or the OMX IL specification for details on the SetConfig method. */ OMX_ERRORTYPE (*SetConfig)( OMX_IN OMX_HANDLETYPE hComponent, OMX_IN OMX_INDEXTYPE nIndex, OMX_IN OMX_PTR pComponentConfigStructure); /** refer to OMX_GetExtensionIndex in OMX_core.h or the OMX IL specification for details on the GetExtensionIndex method. */ OMX_ERRORTYPE (*GetExtensionIndex)( OMX_IN OMX_HANDLETYPE hComponent, OMX_IN OMX_STRING cParameterName, OMX_OUT OMX_INDEXTYPE* pIndexType); /** refer to OMX_GetState in OMX_core.h or the OMX IL specification for details on the GetState method. */ OMX_ERRORTYPE (*GetState)( OMX_IN OMX_HANDLETYPE hComponent, OMX_OUT OMX_STATETYPE* pState); /** The ComponentTunnelRequest method will interact with another OMX component to determine if tunneling is possible and to setup the tunneling. The return codes for this method can be used to determine if tunneling is not possible, or if tunneling is not supported. Base profile components (i.e. non-interop) do not support this method and should return OMX_ErrorNotImplemented The interop profile component MUST support tunneling to another interop profile component with a compatible port parameters. A component may also support proprietary communication. If proprietary communication is supported the negotiation of proprietary communication is done outside of OMX in a vendor specific way. It is only required that the proper result be returned and the details of how the setup is done is left to the component implementation. When this method is invoked when nPort in an output port, the component will: 1. Populate the pTunnelSetup structure with the output port's requirements and constraints for the tunnel. When this method is invoked when nPort in an input port, the component will: 1. Query the necessary parameters from the output port to determine if the ports are compatible for tunneling 2. If the ports are compatible, the component should store the tunnel step provided by the output port 3. Determine which port (either input or output) is the buffer supplier, and call OMX_SetParameter on the output port to indicate this selection. The component will return from this call within 5 msec. @param [in] hComp Handle of the component to be accessed. This is the component handle returned by the call to the OMX_GetHandle method. @param [in] nPort nPort is used to select the port on the component to be used for tunneling. @param [in] hTunneledComp Handle of the component to tunnel with. This is the component handle returned by the call to the OMX_GetHandle method. When this parameter is 0x0 the component should setup the port for communication with the application / IL Client. @param [in] nPortOutput nPortOutput is used indicate the port the component should tunnel with. @param [in] pTunnelSetup Pointer to the tunnel setup structure. When nPort is an output port the component should populate the fields of this structure. When When nPort is an input port the component should review the setup provided by the component with the output port. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup tun */ OMX_ERRORTYPE (*ComponentTunnelRequest)( OMX_IN OMX_HANDLETYPE hComp, OMX_IN OMX_U32 nPort, OMX_IN OMX_HANDLETYPE hTunneledComp, OMX_IN OMX_U32 nTunneledPort, OMX_INOUT OMX_TUNNELSETUPTYPE* pTunnelSetup); /** refer to OMX_UseBuffer in OMX_core.h or the OMX IL specification for details on the UseBuffer method. @ingroup buf */ OMX_ERRORTYPE (*UseBuffer)( OMX_IN OMX_HANDLETYPE hComponent, OMX_INOUT OMX_BUFFERHEADERTYPE** ppBufferHdr, OMX_IN OMX_U32 nPortIndex, OMX_IN OMX_PTR pAppPrivate, OMX_IN OMX_U32 nSizeBytes, OMX_IN OMX_U8* pBuffer); /** refer to OMX_AllocateBuffer in OMX_core.h or the OMX IL specification for details on the AllocateBuffer method. @ingroup buf */ OMX_ERRORTYPE (*AllocateBuffer)( OMX_IN OMX_HANDLETYPE hComponent, OMX_INOUT OMX_BUFFERHEADERTYPE** ppBuffer, OMX_IN OMX_U32 nPortIndex, OMX_IN OMX_PTR pAppPrivate, OMX_IN OMX_U32 nSizeBytes); /** refer to OMX_FreeBuffer in OMX_core.h or the OMX IL specification for details on the FreeBuffer method. @ingroup buf */ OMX_ERRORTYPE (*FreeBuffer)( OMX_IN OMX_HANDLETYPE hComponent, OMX_IN OMX_U32 nPortIndex, OMX_IN OMX_BUFFERHEADERTYPE* pBuffer); /** refer to OMX_EmptyThisBuffer in OMX_core.h or the OMX IL specification for details on the EmptyThisBuffer method. @ingroup buf */ OMX_ERRORTYPE (*EmptyThisBuffer)( OMX_IN OMX_HANDLETYPE hComponent, OMX_IN OMX_BUFFERHEADERTYPE* pBuffer); /** refer to OMX_FillThisBuffer in OMX_core.h or the OMX IL specification for details on the FillThisBuffer method. @ingroup buf */ OMX_ERRORTYPE (*FillThisBuffer)( OMX_IN OMX_HANDLETYPE hComponent, OMX_IN OMX_BUFFERHEADERTYPE* pBuffer); /** The SetCallbacks method is used by the core to specify the callback structure from the application to the component. This is a blocking call. The component will return from this call within 5 msec. @param [in] hComponent Handle of the component to be accessed. This is the component handle returned by the call to the GetHandle function. @param [in] pCallbacks pointer to an OMX_CALLBACKTYPE structure used to provide the callback information to the component @param [in] pAppData pointer to an application defined value. It is anticipated that the application will pass a pointer to a data structure or a "this pointer" in this area to allow the callback (in the application) to determine the context of the call @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. */ OMX_ERRORTYPE (*SetCallbacks)( OMX_IN OMX_HANDLETYPE hComponent, OMX_IN OMX_CALLBACKTYPE* pCallbacks, OMX_IN OMX_PTR pAppData); /** ComponentDeInit method is used to deinitialize the component providing a means to free any resources allocated at component initialization. NOTE: After this call the component handle is not valid for further use. @param [in] hComponent Handle of the component to be accessed. This is the component handle returned by the call to the GetHandle function. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. */ OMX_ERRORTYPE (*ComponentDeInit)( OMX_IN OMX_HANDLETYPE hComponent); /** @ingroup buf */ OMX_ERRORTYPE (*UseEGLImage)( OMX_IN OMX_HANDLETYPE hComponent, OMX_INOUT OMX_BUFFERHEADERTYPE** ppBufferHdr, OMX_IN OMX_U32 nPortIndex, OMX_IN OMX_PTR pAppPrivate, OMX_IN void* eglImage); OMX_ERRORTYPE (*ComponentRoleEnum)( OMX_IN OMX_HANDLETYPE hComponent, OMX_OUT OMX_U8 *cRole, OMX_IN OMX_U32 nIndex); } OMX_COMPONENTTYPE; #ifdef __cplusplus } #endif /* __cplusplus */ #endif /* File EOF */ libomxil-bellagio-0.9.3/include/OMX_Image.h0000644000175000017500000003172311513256766015422 00000000000000/** * Copyright (c) 2008 The Khronos Group 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. */ /** * @file OMX_Image.h - OpenMax IL version 1.1.2 * The structures needed by Image components to exchange parameters and * configuration data with the components. */ #ifndef OMX_Image_h #define OMX_Image_h #ifdef __cplusplus extern "C" { #endif /* __cplusplus */ /** * Each OMX header must include all required header files to allow the * header to compile without errors. The includes below are required * for this header file to compile successfully */ #include /** @defgroup imaging OpenMAX IL Imaging Domain * @ingroup iv * Structures for OpenMAX IL Imaging domain * @{ */ /** * Enumeration used to define the possible image compression coding. */ typedef enum OMX_IMAGE_CODINGTYPE { OMX_IMAGE_CodingUnused, /**< Value when format is N/A */ OMX_IMAGE_CodingAutoDetect, /**< Auto detection of image format */ OMX_IMAGE_CodingJPEG, /**< JPEG/JFIF image format */ OMX_IMAGE_CodingJPEG2K, /**< JPEG 2000 image format */ OMX_IMAGE_CodingEXIF, /**< EXIF image format */ OMX_IMAGE_CodingTIFF, /**< TIFF image format */ OMX_IMAGE_CodingGIF, /**< Graphics image format */ OMX_IMAGE_CodingPNG, /**< PNG image format */ OMX_IMAGE_CodingLZW, /**< LZW image format */ OMX_IMAGE_CodingBMP, /**< Windows Bitmap format */ OMX_IMAGE_CodingKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_IMAGE_CodingVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_IMAGE_CodingMax = 0x7FFFFFFF } OMX_IMAGE_CODINGTYPE; /** * Data structure used to define an image path. The number of image paths * for input and output will vary by type of the image component. * * Input (aka Source) : Zero Inputs, one Output, * Splitter : One Input, 2 or more Outputs, * Processing Element : One Input, one output, * Mixer : 2 or more inputs, one output, * Output (aka Sink) : One Input, zero outputs. * * The PortDefinition structure is used to define all of the parameters * necessary for the compliant component to setup an input or an output * image path. If additional vendor specific data is required, it should * be transmitted to the component using the CustomCommand function. * Compliant components will prepopulate this structure with optimal * values during the OMX_GetParameter() command. * * STRUCT MEMBERS: * cMIMEType : MIME type of data for the port * pNativeRender : Platform specific reference for a display if a * sync, otherwise this field is 0 * nFrameWidth : Width of frame to be used on port if * uncompressed format is used. Use 0 for * unknown, don't care or variable * nFrameHeight : Height of frame to be used on port if * uncompressed format is used. Use 0 for * unknown, don't care or variable * nStride : Number of bytes per span of an image (i.e. * indicates the number of bytes to get from * span N to span N+1, where negative stride * indicates the image is bottom up * nSliceHeight : Height used when encoding in slices * bFlagErrorConcealment : Turns on error concealment if it is supported by * the OMX component * eCompressionFormat : Compression format used in this instance of * the component. When OMX_IMAGE_CodingUnused is * specified, eColorFormat is valid * eColorFormat : Decompressed format used by this component * pNativeWindow : Platform specific reference for a window object if a * display sink , otherwise this field is 0x0. */ typedef struct OMX_IMAGE_PORTDEFINITIONTYPE { OMX_STRING cMIMEType; OMX_NATIVE_DEVICETYPE pNativeRender; OMX_U32 nFrameWidth; OMX_U32 nFrameHeight; OMX_S32 nStride; OMX_U32 nSliceHeight; OMX_BOOL bFlagErrorConcealment; OMX_IMAGE_CODINGTYPE eCompressionFormat; OMX_COLOR_FORMATTYPE eColorFormat; OMX_NATIVE_WINDOWTYPE pNativeWindow; } OMX_IMAGE_PORTDEFINITIONTYPE; /** * Port format parameter. This structure is used to enumerate the various * data input/output format supported by the port. * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Indicates which port to set * nIndex : Indicates the enumeration index for the format from * 0x0 to N-1 * eCompressionFormat : Compression format used in this instance of the * component. When OMX_IMAGE_CodingUnused is specified, * eColorFormat is valid * eColorFormat : Decompressed format used by this component */ typedef struct OMX_IMAGE_PARAM_PORTFORMATTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nIndex; OMX_IMAGE_CODINGTYPE eCompressionFormat; OMX_COLOR_FORMATTYPE eColorFormat; } OMX_IMAGE_PARAM_PORTFORMATTYPE; /** * Flash control type * * ENUMS * Torch : Flash forced constantly on */ typedef enum OMX_IMAGE_FLASHCONTROLTYPE { OMX_IMAGE_FlashControlOn = 0, OMX_IMAGE_FlashControlOff, OMX_IMAGE_FlashControlAuto, OMX_IMAGE_FlashControlRedEyeReduction, OMX_IMAGE_FlashControlFillin, OMX_IMAGE_FlashControlTorch, OMX_IMAGE_FlashControlKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_IMAGE_FlashControlVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_IMAGE_FlashControlMax = 0x7FFFFFFF } OMX_IMAGE_FLASHCONTROLTYPE; /** * Flash control configuration * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * eFlashControl : Flash control type */ typedef struct OMX_IMAGE_PARAM_FLASHCONTROLTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_IMAGE_FLASHCONTROLTYPE eFlashControl; } OMX_IMAGE_PARAM_FLASHCONTROLTYPE; /** * Focus control type */ typedef enum OMX_IMAGE_FOCUSCONTROLTYPE { OMX_IMAGE_FocusControlOn = 0, OMX_IMAGE_FocusControlOff, OMX_IMAGE_FocusControlAuto, OMX_IMAGE_FocusControlAutoLock, OMX_IMAGE_FocusControlKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_IMAGE_FocusControlVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_IMAGE_FocusControlMax = 0x7FFFFFFF } OMX_IMAGE_FOCUSCONTROLTYPE; /** * Focus control configuration * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * eFocusControl : Focus control * nFocusSteps : Focus can take on values from 0 mm to infinity. * Interest is only in number of steps over this range. * nFocusStepIndex : Current focus step index */ typedef struct OMX_IMAGE_CONFIG_FOCUSCONTROLTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_IMAGE_FOCUSCONTROLTYPE eFocusControl; OMX_U32 nFocusSteps; OMX_U32 nFocusStepIndex; } OMX_IMAGE_CONFIG_FOCUSCONTROLTYPE; /** * Q Factor for JPEG compression, which controls the tradeoff between image * quality and size. Q Factor provides a more simple means of controlling * JPEG compression quality, without directly programming Quantization * tables for chroma and luma * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nQFactor : JPEG Q factor value in the range of 1-100. A factor of 1 * produces the smallest, worst quality images, and a factor * of 100 produces the largest, best quality images. A * typical default is 75 for small good quality images */ typedef struct OMX_IMAGE_PARAM_QFACTORTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nQFactor; } OMX_IMAGE_PARAM_QFACTORTYPE; /** * Quantization table type */ typedef enum OMX_IMAGE_QUANTIZATIONTABLETYPE { OMX_IMAGE_QuantizationTableLuma = 0, OMX_IMAGE_QuantizationTableChroma, OMX_IMAGE_QuantizationTableChromaCb, OMX_IMAGE_QuantizationTableChromaCr, OMX_IMAGE_QuantizationTableKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_IMAGE_QuantizationTableVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_IMAGE_QuantizationTableMax = 0x7FFFFFFF } OMX_IMAGE_QUANTIZATIONTABLETYPE; /** * JPEG quantization tables are used to determine DCT compression for * YUV data, as an alternative to specifying Q factor, providing exact * control of compression * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * eQuantizationTable : Quantization table type * nQuantizationMatrix[64] : JPEG quantization table of coefficients stored * in increasing columns then by rows of data (i.e. * row 1, ... row 8). Quantization values are in * the range 0-255 and stored in linear order * (i.e. the component will zig-zag the * quantization table data if required internally) */ typedef struct OMX_IMAGE_PARAM_QUANTIZATIONTABLETYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_IMAGE_QUANTIZATIONTABLETYPE eQuantizationTable; OMX_U8 nQuantizationMatrix[64]; } OMX_IMAGE_PARAM_QUANTIZATIONTABLETYPE; /** * Huffman table type, the same Huffman table is applied for chroma and * luma component */ typedef enum OMX_IMAGE_HUFFMANTABLETYPE { OMX_IMAGE_HuffmanTableAC = 0, OMX_IMAGE_HuffmanTableDC, OMX_IMAGE_HuffmanTableACLuma, OMX_IMAGE_HuffmanTableACChroma, OMX_IMAGE_HuffmanTableDCLuma, OMX_IMAGE_HuffmanTableDCChroma, OMX_IMAGE_HuffmanTableKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_IMAGE_HuffmanTableVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_IMAGE_HuffmanTableMax = 0x7FFFFFFF } OMX_IMAGE_HUFFMANTABLETYPE; /** * JPEG Huffman table * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * eHuffmanTable : Huffman table type * nNumberOfHuffmanCodeOfLength[16] : 0-16, number of Huffman codes of each * possible length * nHuffmanTable[256] : 0-255, the size used for AC and DC * HuffmanTable are 16 and 162 */ typedef struct OMX_IMAGE_PARAM_HUFFMANTTABLETYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_IMAGE_HUFFMANTABLETYPE eHuffmanTable; OMX_U8 nNumberOfHuffmanCodeOfLength[16]; OMX_U8 nHuffmanTable[256]; }OMX_IMAGE_PARAM_HUFFMANTTABLETYPE; /** @} */ #ifdef __cplusplus } #endif /* __cplusplus */ #endif /* File EOF */ libomxil-bellagio-0.9.3/include/OMX_ContentPipe.h0000644000175000017500000002200711513256766016623 00000000000000/* * Copyright (c) 2008 The Khronos Group 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. * */ /** OMX_ContentPipe.h - OpenMax IL version 1.1.2 * The OMX_ContentPipe header file contains the definitions used to define * the public interface for content piples. This header file is intended to * be used by the component. */ #ifndef OMX_CONTENTPIPE_H #define OMX_CONTENTPIPE_H #ifndef KD_EACCES /* OpenKODE error codes. CPResult values may be zero (indicating success or one of the following values) */ #define KD_EACCES (1) #define KD_EADDRINUSE (2) #define KD_EAGAIN (5) #define KD_EBADF (7) #define KD_EBUSY (8) #define KD_ECONNREFUSED (9) #define KD_ECONNRESET (10) #define KD_EDEADLK (11) #define KD_EDESTADDRREQ (12) #define KD_ERANGE (35) #define KD_EEXIST (13) #define KD_EFBIG (14) #define KD_EHOSTUNREACH (15) #define KD_EINVAL (17) #define KD_EIO (18) #define KD_EISCONN (20) #define KD_EISDIR (21) #define KD_EMFILE (22) #define KD_ENAMETOOLONG (23) #define KD_ENOENT (24) #define KD_ENOMEM (25) #define KD_ENOSPC (26) #define KD_ENOSYS (27) #define KD_ENOTCONN (28) #define KD_EPERM (33) #define KD_ETIMEDOUT (36) #define KD_EILSEQ (19) #endif /** Map types from OMX standard types only here so interface is as generic as possible. */ typedef OMX_U32 CPresult; typedef char * CPstring; typedef void * CPhandle; typedef OMX_U32 CPuint; typedef OMX_S32 CPint; typedef char CPbyte; typedef OMX_BOOL CPbool; /** enumeration of origin types used in the CP_PIPETYPE's Seek function * @ingroup cp */ typedef enum CP_ORIGINTYPE { CP_OriginBegin, CP_OriginCur, CP_OriginEnd, CP_OriginKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ CP_OriginVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ CP_OriginMax = 0X7FFFFFFF } CP_ORIGINTYPE; /** enumeration of contact access types used in the CP_PIPETYPE's Open function * @ingroup cp */ typedef enum CP_ACCESSTYPE { CP_AccessRead, CP_AccessWrite, CP_AccessReadWrite , CP_AccessKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ CP_AccessVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ CP_AccessMax = 0X7FFFFFFF } CP_ACCESSTYPE; /** enumeration of results returned by the CP_PIPETYPE's CheckAvailableBytes function * @ingroup cp */ typedef enum CP_CHECKBYTESRESULTTYPE { CP_CheckBytesOk, /**< There are at least the request number of bytes available */ CP_CheckBytesNotReady, /**< The pipe is still retrieving bytes and presently lacks sufficient bytes. Client will be called when they are sufficient bytes are available. */ CP_CheckBytesInsufficientBytes , /**< The pipe has retrieved all bytes but those available are less than those requested */ CP_CheckBytesAtEndOfStream, /**< The pipe has reached the end of stream and no more bytes are available. */ CP_CheckBytesOutOfBuffers, /**< All read/write buffers are currently in use. */ CP_CheckBytesKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ CP_CheckBytesVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ CP_CheckBytesMax = 0X7FFFFFFF } CP_CHECKBYTESRESULTTYPE; /** enumeration of content pipe events sent to the client callback. * @ingroup cp */ typedef enum CP_EVENTTYPE{ CP_BytesAvailable, /** bytes requested in a CheckAvailableBytes call are now available*/ CP_Overflow, /** enumeration of content pipe events sent to the client callback*/ CP_PipeDisconnected , /** enumeration of content pipe events sent to the client callback*/ CP_EventKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ CP_EventVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ CP_EventMax = 0X7FFFFFFF } CP_EVENTTYPE; /** content pipe definition * @ingroup cp */ typedef struct CP_PIPETYPE { /** Open a content stream for reading or writing. */ CPresult (*Open)( CPhandle* hContent, CPstring szURI, CP_ACCESSTYPE eAccess ); /** Close a content stream. */ CPresult (*Close)( CPhandle hContent ); /** Create a content source and open it for writing. */ CPresult (*Create)( CPhandle *hContent, CPstring szURI ); /** Check the that specified number of bytes are available for reading or writing (depending on access type).*/ CPresult (*CheckAvailableBytes)( CPhandle hContent, CPuint nBytesRequested, CP_CHECKBYTESRESULTTYPE *eResult ); /** Seek to certain position in the content relative to the specified origin. */ CPresult (*SetPosition)( CPhandle hContent, CPint nOffset, CP_ORIGINTYPE eOrigin); /** Retrieve the current position relative to the start of the content. */ CPresult (*GetPosition)( CPhandle hContent, CPuint *pPosition); /** Retrieve data of the specified size from the content stream (advance content pointer by size of data). Note: pipe client provides pointer. This function is appropriate for small high frequency reads. */ CPresult (*Read)( CPhandle hContent, CPbyte *pData, CPuint nSize); /** Retrieve a buffer allocated by the pipe that contains the requested number of bytes. Buffer contains the next block of bytes, as specified by nSize, of the content. nSize also returns the size of the block actually read. Content pointer advances the by the returned size. Note: pipe provides pointer. This function is appropriate for large reads. The client must call ReleaseReadBuffer when done with buffer. In some cases the requested block may not reside in contiguous memory within the pipe implementation. For instance if the pipe leverages a circular buffer then the requested block may straddle the boundary of the circular buffer. By default a pipe implementation performs a copy in this case to provide the block to the pipe client in one contiguous buffer. If, however, the client sets bForbidCopy, then the pipe returns only those bytes preceding the memory boundary. Here the client may retrieve the data in segments over successive calls. */ CPresult (*ReadBuffer)( CPhandle hContent, CPbyte **ppBuffer, CPuint *nSize, CPbool bForbidCopy); /** Release a buffer obtained by ReadBuffer back to the pipe. */ CPresult (*ReleaseReadBuffer)(CPhandle hContent, CPbyte *pBuffer); /** Write data of the specified size to the content (advance content pointer by size of data). Note: pipe client provides pointer. This function is appropriate for small high frequency writes. */ CPresult (*Write)( CPhandle hContent, CPbyte *data, CPuint nSize); /** Retrieve a buffer allocated by the pipe used to write data to the content. Client will fill buffer with output data. Note: pipe provides pointer. This function is appropriate for large writes. The client must call WriteBuffer when done it has filled the buffer with data.*/ CPresult (*GetWriteBuffer)( CPhandle hContent, CPbyte **ppBuffer, CPuint nSize); /** Deliver a buffer obtained via GetWriteBuffer to the pipe. Pipe will write the the contents of the buffer to content and advance content pointer by the size of the buffer */ CPresult (*WriteBuffer)( CPhandle hContent, CPbyte *pBuffer, CPuint nFilledSize); /** Register a per-handle client callback with the content pipe. */ CPresult (*RegisterCallback)( CPhandle hContent, CPresult (*ClientCallback)(CP_EVENTTYPE eEvent, CPuint iParam)); } CP_PIPETYPE; #endif libomxil-bellagio-0.9.3/include/OMX_IVCommon.h0000644000175000017500000007731211513256766016073 00000000000000/** * Copyright (c) 2008 The Khronos Group 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. * */ /** * @file OMX_IVCommon.h - OpenMax IL version 1.1.2 * The structures needed by Video and Image components to exchange * parameters and configuration data with the components. */ #ifndef OMX_IVCommon_h #define OMX_IVCommon_h #ifdef __cplusplus extern "C" { #endif /* __cplusplus */ /** * Each OMX header must include all required header files to allow the header * to compile without errors. The includes below are required for this header * file to compile successfully */ #include /** @defgroup iv OpenMAX IL Imaging and Video Domain * Common structures for OpenMAX IL Imaging and Video domains * @{ */ /** * Enumeration defining possible uncompressed image/video formats. * * ENUMS: * Unused : Placeholder value when format is N/A * Monochrome : black and white * 8bitRGB332 : Red 7:5, Green 4:2, Blue 1:0 * 12bitRGB444 : Red 11:8, Green 7:4, Blue 3:0 * 16bitARGB4444 : Alpha 15:12, Red 11:8, Green 7:4, Blue 3:0 * 16bitARGB1555 : Alpha 15, Red 14:10, Green 9:5, Blue 4:0 * 16bitRGB565 : Red 15:11, Green 10:5, Blue 4:0 * 16bitBGR565 : Blue 15:11, Green 10:5, Red 4:0 * 18bitRGB666 : Red 17:12, Green 11:6, Blue 5:0 * 18bitARGB1665 : Alpha 17, Red 16:11, Green 10:5, Blue 4:0 * 19bitARGB1666 : Alpha 18, Red 17:12, Green 11:6, Blue 5:0 * 24bitRGB888 : Red 24:16, Green 15:8, Blue 7:0 * 24bitBGR888 : Blue 24:16, Green 15:8, Red 7:0 * 24bitARGB1887 : Alpha 23, Red 22:15, Green 14:7, Blue 6:0 * 25bitARGB1888 : Alpha 24, Red 23:16, Green 15:8, Blue 7:0 * 32bitBGRA8888 : Blue 31:24, Green 23:16, Red 15:8, Alpha 7:0 * 32bitARGB8888 : Alpha 31:24, Red 23:16, Green 15:8, Blue 7:0 * YUV411Planar : U,Y are subsampled by a factor of 4 horizontally * YUV411PackedPlanar : packed per payload in planar slices * YUV420Planar : Three arrays Y,U,V. * YUV420PackedPlanar : packed per payload in planar slices * YUV420SemiPlanar : Two arrays, one is all Y, the other is U and V * YUV422Planar : Three arrays Y,U,V. * YUV422PackedPlanar : packed per payload in planar slices * YUV422SemiPlanar : Two arrays, one is all Y, the other is U and V * YCbYCr : Organized as 16bit YUYV (i.e. YCbYCr) * YCrYCb : Organized as 16bit YVYU (i.e. YCrYCb) * CbYCrY : Organized as 16bit UYVY (i.e. CbYCrY) * CrYCbY : Organized as 16bit VYUY (i.e. CrYCbY) * YUV444Interleaved : Each pixel contains equal parts YUV * RawBayer8bit : SMIA camera output format * RawBayer10bit : SMIA camera output format * RawBayer8bitcompressed : SMIA camera output format */ typedef enum OMX_COLOR_FORMATTYPE { OMX_COLOR_FormatUnused, OMX_COLOR_FormatMonochrome, OMX_COLOR_Format8bitRGB332, OMX_COLOR_Format12bitRGB444, OMX_COLOR_Format16bitARGB4444, OMX_COLOR_Format16bitARGB1555, OMX_COLOR_Format16bitRGB565, OMX_COLOR_Format16bitBGR565, OMX_COLOR_Format18bitRGB666, OMX_COLOR_Format18bitARGB1665, OMX_COLOR_Format19bitARGB1666, OMX_COLOR_Format24bitRGB888, OMX_COLOR_Format24bitBGR888, OMX_COLOR_Format24bitARGB1887, OMX_COLOR_Format25bitARGB1888, OMX_COLOR_Format32bitBGRA8888, OMX_COLOR_Format32bitARGB8888, OMX_COLOR_FormatYUV411Planar, OMX_COLOR_FormatYUV411PackedPlanar, OMX_COLOR_FormatYUV420Planar, OMX_COLOR_FormatYUV420PackedPlanar, OMX_COLOR_FormatYUV420SemiPlanar, OMX_COLOR_FormatYUV422Planar, OMX_COLOR_FormatYUV422PackedPlanar, OMX_COLOR_FormatYUV422SemiPlanar, OMX_COLOR_FormatYCbYCr, OMX_COLOR_FormatYCrYCb, OMX_COLOR_FormatCbYCrY, OMX_COLOR_FormatCrYCbY, OMX_COLOR_FormatYUV444Interleaved, OMX_COLOR_FormatRawBayer8bit, OMX_COLOR_FormatRawBayer10bit, OMX_COLOR_FormatRawBayer8bitcompressed, OMX_COLOR_FormatL2, OMX_COLOR_FormatL4, OMX_COLOR_FormatL8, OMX_COLOR_FormatL16, OMX_COLOR_FormatL24, OMX_COLOR_FormatL32, OMX_COLOR_FormatYUV420PackedSemiPlanar, OMX_COLOR_FormatYUV422PackedSemiPlanar, OMX_COLOR_Format18BitBGR666, OMX_COLOR_Format24BitARGB6666, OMX_COLOR_Format24BitABGR6666, OMX_COLOR_FormatKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_COLOR_FormatVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_COLOR_FormatMax = 0x7FFFFFFF } OMX_COLOR_FORMATTYPE; /** * Defines the matrix for conversion from RGB to YUV or vice versa. * iColorMatrix should be initialized with the fixed point values * used in converting between formats. */ typedef struct OMX_CONFIG_COLORCONVERSIONTYPE { OMX_U32 nSize; /**< Size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version info */ OMX_U32 nPortIndex; /**< Port that this struct applies to */ OMX_S32 xColorMatrix[3][3]; /**< Stored in signed Q16 format */ OMX_S32 xColorOffset[4]; /**< Stored in signed Q16 format */ }OMX_CONFIG_COLORCONVERSIONTYPE; /** * Structure defining percent to scale each frame dimension. For example: * To make the width 50% larger, use fWidth = 1.5 and to make the width * 1/2 the original size, use fWidth = 0.5 */ typedef struct OMX_CONFIG_SCALEFACTORTYPE { OMX_U32 nSize; /**< Size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version info */ OMX_U32 nPortIndex; /**< Port that this struct applies to */ OMX_S32 xWidth; /**< Fixed point value stored as Q16 */ OMX_S32 xHeight; /**< Fixed point value stored as Q16 */ }OMX_CONFIG_SCALEFACTORTYPE; /** * Enumeration of possible image filter types */ typedef enum OMX_IMAGEFILTERTYPE { OMX_ImageFilterNone, OMX_ImageFilterNoise, OMX_ImageFilterEmboss, OMX_ImageFilterNegative, OMX_ImageFilterSketch, OMX_ImageFilterOilPaint, OMX_ImageFilterHatch, OMX_ImageFilterGpen, OMX_ImageFilterAntialias, OMX_ImageFilterDeRing, OMX_ImageFilterSolarize, OMX_ImageFilterKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_ImageFilterVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_ImageFilterMax = 0x7FFFFFFF } OMX_IMAGEFILTERTYPE; /** * Image filter configuration * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * eImageFilter : Image filter type enumeration */ typedef struct OMX_CONFIG_IMAGEFILTERTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_IMAGEFILTERTYPE eImageFilter; } OMX_CONFIG_IMAGEFILTERTYPE; /** * Customized U and V for color enhancement * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * bColorEnhancement : Enable/disable color enhancement * nCustomizedU : Practical values: 16-240, range: 0-255, value set for * U component * nCustomizedV : Practical values: 16-240, range: 0-255, value set for * V component */ typedef struct OMX_CONFIG_COLORENHANCEMENTTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_BOOL bColorEnhancement; OMX_U8 nCustomizedU; OMX_U8 nCustomizedV; } OMX_CONFIG_COLORENHANCEMENTTYPE; /** * Define color key and color key mask * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nARGBColor : 32bit Alpha, Red, Green, Blue Color * nARGBMask : 32bit Mask for Alpha, Red, Green, Blue channels */ typedef struct OMX_CONFIG_COLORKEYTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nARGBColor; OMX_U32 nARGBMask; } OMX_CONFIG_COLORKEYTYPE; /** * List of color blend types for pre/post processing * * ENUMS: * None : No color blending present * AlphaConstant : Function is (alpha_constant * src) + * (1 - alpha_constant) * dst) * AlphaPerPixel : Function is (alpha * src) + (1 - alpha) * dst) * Alternate : Function is alternating pixels from src and dst * And : Function is (src & dst) * Or : Function is (src | dst) * Invert : Function is ~src */ typedef enum OMX_COLORBLENDTYPE { OMX_ColorBlendNone, OMX_ColorBlendAlphaConstant, OMX_ColorBlendAlphaPerPixel, OMX_ColorBlendAlternate, OMX_ColorBlendAnd, OMX_ColorBlendOr, OMX_ColorBlendInvert, OMX_ColorBlendKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_ColorBlendVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_ColorBlendMax = 0x7FFFFFFF } OMX_COLORBLENDTYPE; /** * Color blend configuration * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nRGBAlphaConstant : Constant global alpha values when global alpha is used * eColorBlend : Color blend type enumeration */ typedef struct OMX_CONFIG_COLORBLENDTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nRGBAlphaConstant; OMX_COLORBLENDTYPE eColorBlend; } OMX_CONFIG_COLORBLENDTYPE; /** * Hold frame dimension * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nWidth : Frame width in pixels * nHeight : Frame height in pixels */ typedef struct OMX_FRAMESIZETYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nWidth; OMX_U32 nHeight; } OMX_FRAMESIZETYPE; /** * Rotation configuration * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nRotation : +/- integer rotation value */ typedef struct OMX_CONFIG_ROTATIONTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_S32 nRotation; } OMX_CONFIG_ROTATIONTYPE; /** * Possible mirroring directions for pre/post processing * * ENUMS: * None : No mirroring * Vertical : Vertical mirroring, flip on X axis * Horizontal : Horizontal mirroring, flip on Y axis * Both : Both vertical and horizontal mirroring */ typedef enum OMX_MIRRORTYPE { OMX_MirrorNone = 0, OMX_MirrorVertical, OMX_MirrorHorizontal, OMX_MirrorBoth, OMX_MirrorKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_MirrorVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_MirrorMax = 0x7FFFFFFF } OMX_MIRRORTYPE; /** * Mirroring configuration * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * eMirror : Mirror type enumeration */ typedef struct OMX_CONFIG_MIRRORTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_MIRRORTYPE eMirror; } OMX_CONFIG_MIRRORTYPE; /** * Position information only * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nX : X coordinate for the point * nY : Y coordinate for the point */ typedef struct OMX_CONFIG_POINTTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_S32 nX; OMX_S32 nY; } OMX_CONFIG_POINTTYPE; /** * Frame size plus position * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nLeft : X Coordinate of the top left corner of the rectangle * nTop : Y Coordinate of the top left corner of the rectangle * nWidth : Width of the rectangle * nHeight : Height of the rectangle */ typedef struct OMX_CONFIG_RECTTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_S32 nLeft; OMX_S32 nTop; OMX_U32 nWidth; OMX_U32 nHeight; } OMX_CONFIG_RECTTYPE; /** * Deblocking state; it is required to be set up before starting the codec * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * bDeblocking : Enable/disable deblocking mode */ typedef struct OMX_PARAM_DEBLOCKINGTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_BOOL bDeblocking; } OMX_PARAM_DEBLOCKINGTYPE; /** * Stabilization state * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * bStab : Enable/disable frame stabilization state */ typedef struct OMX_CONFIG_FRAMESTABTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_BOOL bStab; } OMX_CONFIG_FRAMESTABTYPE; /** * White Balance control type * * STRUCT MEMBERS: * SunLight : Referenced in JSR-234 * Flash : Optimal for device's integrated flash */ typedef enum OMX_WHITEBALCONTROLTYPE { OMX_WhiteBalControlOff = 0, OMX_WhiteBalControlAuto, OMX_WhiteBalControlSunLight, OMX_WhiteBalControlCloudy, OMX_WhiteBalControlShade, OMX_WhiteBalControlTungsten, OMX_WhiteBalControlFluorescent, OMX_WhiteBalControlIncandescent, OMX_WhiteBalControlFlash, OMX_WhiteBalControlHorizon, OMX_WhiteBalControlKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_WhiteBalControlVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_WhiteBalControlMax = 0x7FFFFFFF } OMX_WHITEBALCONTROLTYPE; /** * White Balance control configuration * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * eWhiteBalControl : White balance enumeration */ typedef struct OMX_CONFIG_WHITEBALCONTROLTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_WHITEBALCONTROLTYPE eWhiteBalControl; } OMX_CONFIG_WHITEBALCONTROLTYPE; /** * Exposure control type */ typedef enum OMX_EXPOSURECONTROLTYPE { OMX_ExposureControlOff = 0, OMX_ExposureControlAuto, OMX_ExposureControlNight, OMX_ExposureControlBackLight, OMX_ExposureControlSpotLight, OMX_ExposureControlSports, OMX_ExposureControlSnow, OMX_ExposureControlBeach, OMX_ExposureControlLargeAperture, OMX_ExposureControlSmallApperture, OMX_ExposureControlKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_ExposureControlVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_ExposureControlMax = 0x7FFFFFFF } OMX_EXPOSURECONTROLTYPE; /** * White Balance control configuration * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * eExposureControl : Exposure control enumeration */ typedef struct OMX_CONFIG_EXPOSURECONTROLTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_EXPOSURECONTROLTYPE eExposureControl; } OMX_CONFIG_EXPOSURECONTROLTYPE; /** * Defines sensor supported mode. * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nFrameRate : Single shot mode is indicated by a 0 * bOneShot : Enable for single shot, disable for streaming * sFrameSize : Framesize */ typedef struct OMX_PARAM_SENSORMODETYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nFrameRate; OMX_BOOL bOneShot; OMX_FRAMESIZETYPE sFrameSize; } OMX_PARAM_SENSORMODETYPE; /** * Defines contrast level * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nContrast : Values allowed for contrast -100 to 100, zero means no change */ typedef struct OMX_CONFIG_CONTRASTTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_S32 nContrast; } OMX_CONFIG_CONTRASTTYPE; /** * Defines brightness level * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nBrightness : 0-100% */ typedef struct OMX_CONFIG_BRIGHTNESSTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nBrightness; } OMX_CONFIG_BRIGHTNESSTYPE; /** * Defines backlight level configuration for a video sink, e.g. LCD panel * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nBacklight : Values allowed for backlight 0-100% * nTimeout : Number of milliseconds before backlight automatically turns * off. A value of 0x0 disables backight timeout */ typedef struct OMX_CONFIG_BACKLIGHTTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nBacklight; OMX_U32 nTimeout; } OMX_CONFIG_BACKLIGHTTYPE; /** * Defines setting for Gamma * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nGamma : Values allowed for gamma -100 to 100, zero means no change */ typedef struct OMX_CONFIG_GAMMATYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_S32 nGamma; } OMX_CONFIG_GAMMATYPE; /** * Define for setting saturation * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nSaturation : Values allowed for saturation -100 to 100, zero means * no change */ typedef struct OMX_CONFIG_SATURATIONTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_S32 nSaturation; } OMX_CONFIG_SATURATIONTYPE; /** * Define for setting Lightness * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nLightness : Values allowed for lightness -100 to 100, zero means no * change */ typedef struct OMX_CONFIG_LIGHTNESSTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_S32 nLightness; } OMX_CONFIG_LIGHTNESSTYPE; /** * Plane blend configuration * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Index of input port associated with the plane. * nDepth : Depth of the plane in relation to the screen. Higher * numbered depths are "behind" lower number depths. * This number defaults to the Port Index number. * nAlpha : Transparency blending component for the entire plane. * See blending modes for more detail. */ typedef struct OMX_CONFIG_PLANEBLENDTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nDepth; OMX_U32 nAlpha; } OMX_CONFIG_PLANEBLENDTYPE; /** * Define interlace type * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * bEnable : Enable control variable for this functionality * (see below) * nInterleavePortIndex : Index of input or output port associated with * the interleaved plane. * pPlanarPortIndexes[4] : Index of input or output planar ports. */ typedef struct OMX_PARAM_INTERLEAVETYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_BOOL bEnable; OMX_U32 nInterleavePortIndex; } OMX_PARAM_INTERLEAVETYPE; /** * Defines the picture effect used for an input picture */ typedef enum OMX_TRANSITIONEFFECTTYPE { OMX_EffectNone, OMX_EffectFadeFromBlack, OMX_EffectFadeToBlack, OMX_EffectUnspecifiedThroughConstantColor, OMX_EffectDissolve, OMX_EffectWipe, OMX_EffectUnspecifiedMixOfTwoScenes, OMX_EffectKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_EffectVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_EffectMax = 0x7FFFFFFF } OMX_TRANSITIONEFFECTTYPE; /** * Structure used to configure current transition effect * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * eEffect : Effect to enable */ typedef struct OMX_CONFIG_TRANSITIONEFFECTTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_TRANSITIONEFFECTTYPE eEffect; } OMX_CONFIG_TRANSITIONEFFECTTYPE; /** * Defines possible data unit types for encoded video data. The data unit * types are used both for encoded video input for playback as well as * encoded video output from recording. */ typedef enum OMX_DATAUNITTYPE { OMX_DataUnitCodedPicture, OMX_DataUnitVideoSegment, OMX_DataUnitSeveralSegments, OMX_DataUnitArbitraryStreamSection, OMX_DataUnitKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_DataUnitVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_DataUnitMax = 0x7FFFFFFF } OMX_DATAUNITTYPE; /** * Defines possible encapsulation types for coded video data unit. The * encapsulation information is used both for encoded video input for * playback as well as encoded video output from recording. */ typedef enum OMX_DATAUNITENCAPSULATIONTYPE { OMX_DataEncapsulationElementaryStream, OMX_DataEncapsulationGenericPayload, OMX_DataEncapsulationRtpPayload, OMX_DataEncapsulationKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_DataEncapsulationVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_DataEncapsulationMax = 0x7FFFFFFF } OMX_DATAUNITENCAPSULATIONTYPE; /** * Structure used to configure the type of being decoded/encoded */ typedef struct OMX_PARAM_DATAUNITTYPE { OMX_U32 nSize; /**< Size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< Port that this structure applies to */ OMX_DATAUNITTYPE eUnitType; OMX_DATAUNITENCAPSULATIONTYPE eEncapsulationType; } OMX_PARAM_DATAUNITTYPE; /** * Defines dither types */ typedef enum OMX_DITHERTYPE { OMX_DitherNone, OMX_DitherOrdered, OMX_DitherErrorDiffusion, OMX_DitherOther, OMX_DitherKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_DitherVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_DitherMax = 0x7FFFFFFF } OMX_DITHERTYPE; /** * Structure used to configure current type of dithering */ typedef struct OMX_CONFIG_DITHERTYPE { OMX_U32 nSize; /**< Size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< Port that this structure applies to */ OMX_DITHERTYPE eDither; /**< Type of dithering to use */ } OMX_CONFIG_DITHERTYPE; typedef struct OMX_CONFIG_CAPTUREMODETYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; /**< Port that this structure applies to */ OMX_BOOL bContinuous; /**< If true then ignore frame rate and emit capture * data as fast as possible (otherwise obey port's frame rate). */ OMX_BOOL bFrameLimited; /**< If true then terminate capture after the port emits the * specified number of frames (otherwise the port does not * terminate the capture until instructed to do so by the client). * Even if set, the client may manually terminate the capture prior * to reaching the limit. */ OMX_U32 nFrameLimit; /**< Limit on number of frames emitted during a capture (only * valid if bFrameLimited is set). */ } OMX_CONFIG_CAPTUREMODETYPE; typedef enum OMX_METERINGTYPE { OMX_MeteringModeAverage, /**< Center-weighted average metering. */ OMX_MeteringModeSpot, /**< Spot (partial) metering. */ OMX_MeteringModeMatrix, /**< Matrix or evaluative metering. */ OMX_MeteringKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_MeteringVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_EVModeMax = 0x7fffffff } OMX_METERINGTYPE; typedef struct OMX_CONFIG_EXPOSUREVALUETYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_METERINGTYPE eMetering; OMX_S32 xEVCompensation; /**< Fixed point value stored as Q16 */ OMX_U32 nApertureFNumber; /**< e.g. nApertureFNumber = 2 implies "f/2" - Q16 format */ OMX_BOOL bAutoAperture; /**< Whether aperture number is defined automatically */ OMX_U32 nShutterSpeedMsec; /**< Shutterspeed in milliseconds */ OMX_BOOL bAutoShutterSpeed; /**< Whether shutter speed is defined automatically */ OMX_U32 nSensitivity; /**< e.g. nSensitivity = 100 implies "ISO 100" */ OMX_BOOL bAutoSensitivity; /**< Whether sensitivity is defined automatically */ } OMX_CONFIG_EXPOSUREVALUETYPE; /** * Focus region configuration * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * bCenter : Use center region as focus region of interest * bLeft : Use left region as focus region of interest * bRight : Use right region as focus region of interest * bTop : Use top region as focus region of interest * bBottom : Use bottom region as focus region of interest * bTopLeft : Use top left region as focus region of interest * bTopRight : Use top right region as focus region of interest * bBottomLeft : Use bottom left region as focus region of interest * bBottomRight : Use bottom right region as focus region of interest */ typedef struct OMX_CONFIG_FOCUSREGIONTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_BOOL bCenter; OMX_BOOL bLeft; OMX_BOOL bRight; OMX_BOOL bTop; OMX_BOOL bBottom; OMX_BOOL bTopLeft; OMX_BOOL bTopRight; OMX_BOOL bBottomLeft; OMX_BOOL bBottomRight; } OMX_CONFIG_FOCUSREGIONTYPE; /** * Focus Status type */ typedef enum OMX_FOCUSSTATUSTYPE { OMX_FocusStatusOff = 0, OMX_FocusStatusRequest, OMX_FocusStatusReached, OMX_FocusStatusUnableToReach, OMX_FocusStatusLost, OMX_FocusStatusKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_FocusStatusVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_FocusStatusMax = 0x7FFFFFFF } OMX_FOCUSSTATUSTYPE; /** * Focus status configuration * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * eFocusStatus : Specifies the focus status * bCenterStatus : Use center region as focus region of interest * bLeftStatus : Use left region as focus region of interest * bRightStatus : Use right region as focus region of interest * bTopStatus : Use top region as focus region of interest * bBottomStatus : Use bottom region as focus region of interest * bTopLeftStatus : Use top left region as focus region of interest * bTopRightStatus : Use top right region as focus region of interest * bBottomLeftStatus : Use bottom left region as focus region of interest * bBottomRightStatus : Use bottom right region as focus region of interest */ typedef struct OMX_PARAM_FOCUSSTATUSTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_FOCUSSTATUSTYPE eFocusStatus; OMX_BOOL bCenterStatus; OMX_BOOL bLeftStatus; OMX_BOOL bRightStatus; OMX_BOOL bTopStatus; OMX_BOOL bBottomStatus; OMX_BOOL bTopLeftStatus; OMX_BOOL bTopRightStatus; OMX_BOOL bBottomLeftStatus; OMX_BOOL bBottomRightStatus; } OMX_PARAM_FOCUSSTATUSTYPE; /** @} */ #ifdef __cplusplus } #endif /* __cplusplus */ #endif /* File EOF */ libomxil-bellagio-0.9.3/include/OMX_Audio.h0000644000175000017500000022636411513256766015450 00000000000000/* * Copyright (c) 2008 The Khronos Group 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. * */ /** @file OMX_Audio.h - OpenMax IL version 1.1.2 * The structures needed by Audio components to exchange * parameters and configuration data with the componenmilts. */ #ifndef OMX_Audio_h #define OMX_Audio_h #ifdef __cplusplus extern "C" { #endif /* __cplusplus */ /* Each OMX header must include all required header files to allow the * header to compile without errors. The includes below are required * for this header file to compile successfully */ #include /** @defgroup midi MIDI * @ingroup audio */ /** @defgroup effects Audio effects * @ingroup audio */ /** @defgroup audio OpenMAX IL Audio Domain * Structures for OpenMAX IL Audio domain * @{ */ /** Enumeration used to define the possible audio codings. * If "OMX_AUDIO_CodingUnused" is selected, the coding selection must * be done in a vendor specific way. Since this is for an audio * processing element this enum is relevant. However, for another * type of component other enums would be in this area. */ typedef enum OMX_AUDIO_CODINGTYPE { OMX_AUDIO_CodingUnused = 0, /**< Placeholder value when coding is N/A */ OMX_AUDIO_CodingAutoDetect, /**< auto detection of audio format */ OMX_AUDIO_CodingPCM, /**< Any variant of PCM coding */ OMX_AUDIO_CodingADPCM, /**< Any variant of ADPCM encoded data */ OMX_AUDIO_CodingAMR, /**< Any variant of AMR encoded data */ OMX_AUDIO_CodingGSMFR, /**< Any variant of GSM fullrate (i.e. GSM610) */ OMX_AUDIO_CodingGSMEFR, /**< Any variant of GSM Enhanced Fullrate encoded data*/ OMX_AUDIO_CodingGSMHR, /**< Any variant of GSM Halfrate encoded data */ OMX_AUDIO_CodingPDCFR, /**< Any variant of PDC Fullrate encoded data */ OMX_AUDIO_CodingPDCEFR, /**< Any variant of PDC Enhanced Fullrate encoded data */ OMX_AUDIO_CodingPDCHR, /**< Any variant of PDC Halfrate encoded data */ OMX_AUDIO_CodingTDMAFR, /**< Any variant of TDMA Fullrate encoded data (TIA/EIA-136-420) */ OMX_AUDIO_CodingTDMAEFR, /**< Any variant of TDMA Enhanced Fullrate encoded data (TIA/EIA-136-410) */ OMX_AUDIO_CodingQCELP8, /**< Any variant of QCELP 8kbps encoded data */ OMX_AUDIO_CodingQCELP13, /**< Any variant of QCELP 13kbps encoded data */ OMX_AUDIO_CodingEVRC, /**< Any variant of EVRC encoded data */ OMX_AUDIO_CodingSMV, /**< Any variant of SMV encoded data */ OMX_AUDIO_CodingG711, /**< Any variant of G.711 encoded data */ OMX_AUDIO_CodingG723, /**< Any variant of G.723 dot 1 encoded data */ OMX_AUDIO_CodingG726, /**< Any variant of G.726 encoded data */ OMX_AUDIO_CodingG729, /**< Any variant of G.729 encoded data */ OMX_AUDIO_CodingAAC, /**< Any variant of AAC encoded data */ OMX_AUDIO_CodingMP3, /**< Any variant of MP3 encoded data */ OMX_AUDIO_CodingSBC, /**< Any variant of SBC encoded data */ OMX_AUDIO_CodingVORBIS, /**< Any variant of VORBIS encoded data */ OMX_AUDIO_CodingWMA, /**< Any variant of WMA encoded data */ OMX_AUDIO_CodingRA, /**< Any variant of RA encoded data */ OMX_AUDIO_CodingMIDI, /**< Any variant of MIDI encoded data */ OMX_AUDIO_CodingKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_CodingVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_CodingMax = 0x7FFFFFFF } OMX_AUDIO_CODINGTYPE; /** The PortDefinition structure is used to define all of the parameters * necessary for the compliant component to setup an input or an output audio * path. If additional information is needed to define the parameters of the * port (such as frequency), additional structures must be sent such as the * OMX_AUDIO_PARAM_PCMMODETYPE structure to supply the extra parameters for the port. */ typedef struct OMX_AUDIO_PORTDEFINITIONTYPE { OMX_STRING cMIMEType; /**< MIME type of data for the port */ OMX_NATIVE_DEVICETYPE pNativeRender; /** < platform specific reference for an output device, otherwise this field is 0 */ OMX_BOOL bFlagErrorConcealment; /**< Turns on error concealment if it is supported by the OMX component */ OMX_AUDIO_CODINGTYPE eEncoding; /**< Type of data expected for this port (e.g. PCM, AMR, MP3, etc) */ } OMX_AUDIO_PORTDEFINITIONTYPE; /** Port format parameter. This structure is used to enumerate * the various data input/output format supported by the port. */ typedef struct OMX_AUDIO_PARAM_PORTFORMATTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< Indicates which port to set */ OMX_U32 nIndex; /**< Indicates the enumeration index for the format from 0x0 to N-1 */ OMX_AUDIO_CODINGTYPE eEncoding; /**< Type of data expected for this port (e.g. PCM, AMR, MP3, etc) */ } OMX_AUDIO_PARAM_PORTFORMATTYPE; /** PCM mode type */ typedef enum OMX_AUDIO_PCMMODETYPE { OMX_AUDIO_PCMModeLinear = 0, /**< Linear PCM encoded data */ OMX_AUDIO_PCMModeALaw, /**< A law PCM encoded data (G.711) */ OMX_AUDIO_PCMModeMULaw, /**< Mu law PCM encoded data (G.711) */ OMX_AUDIO_PCMModeKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_PCMModeVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_PCMModeMax = 0x7FFFFFFF } OMX_AUDIO_PCMMODETYPE; typedef enum OMX_AUDIO_CHANNELTYPE { OMX_AUDIO_ChannelNone = 0x0, /**< Unused or empty */ OMX_AUDIO_ChannelLF = 0x1, /**< Left front */ OMX_AUDIO_ChannelRF = 0x2, /**< Right front */ OMX_AUDIO_ChannelCF = 0x3, /**< Center front */ OMX_AUDIO_ChannelLS = 0x4, /**< Left surround */ OMX_AUDIO_ChannelRS = 0x5, /**< Right surround */ OMX_AUDIO_ChannelLFE = 0x6, /**< Low frequency effects */ OMX_AUDIO_ChannelCS = 0x7, /**< Back surround */ OMX_AUDIO_ChannelLR = 0x8, /**< Left rear. */ OMX_AUDIO_ChannelRR = 0x9, /**< Right rear. */ OMX_AUDIO_ChannelKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_ChannelVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_ChannelMax = 0x7FFFFFFF } OMX_AUDIO_CHANNELTYPE; #define OMX_AUDIO_MAXCHANNELS 16 /**< maximum number distinct audio channels that a buffer may contain */ #define OMX_MIN_PCMPAYLOAD_MSEC 5 /**< Minimum audio buffer payload size for uncompressed (PCM) audio */ /** PCM format description */ typedef struct OMX_AUDIO_PARAM_PCMMODETYPE { OMX_U32 nSize; /**< Size of this structure, in Bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels (e.g. 2 for stereo) */ OMX_NUMERICALDATATYPE eNumData; /**< indicates PCM data as signed or unsigned */ OMX_ENDIANTYPE eEndian; /**< indicates PCM data as little or big endian */ OMX_BOOL bInterleaved; /**< True for normal interleaved data; false for non-interleaved data (e.g. block data) */ OMX_U32 nBitPerSample; /**< Bit per sample */ OMX_U32 nSamplingRate; /**< Sampling rate of the source data. Use 0 for variable or unknown sampling rate. */ OMX_AUDIO_PCMMODETYPE ePCMMode; /**< PCM mode enumeration */ OMX_AUDIO_CHANNELTYPE eChannelMapping[OMX_AUDIO_MAXCHANNELS]; /**< Slot i contains channel defined by eChannelMap[i] */ } OMX_AUDIO_PARAM_PCMMODETYPE; /** Audio channel mode. This is used by both AAC and MP3, although the names are more appropriate * for the MP3. For example, JointStereo for MP3 is CouplingChannels for AAC. */ typedef enum OMX_AUDIO_CHANNELMODETYPE { OMX_AUDIO_ChannelModeStereo = 0, /**< 2 channels, the bitrate allocation between those two channels changes accordingly to each channel information */ OMX_AUDIO_ChannelModeJointStereo, /**< mode that takes advantage of what is common between 2 channels for higher compression gain */ OMX_AUDIO_ChannelModeDual, /**< 2 mono-channels, each channel is encoded with half the bitrate of the overall bitrate */ OMX_AUDIO_ChannelModeMono, /**< Mono channel mode */ OMX_AUDIO_ChannelModeKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_ChannelModeVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_ChannelModeMax = 0x7FFFFFFF } OMX_AUDIO_CHANNELMODETYPE; typedef enum OMX_AUDIO_MP3STREAMFORMATTYPE { OMX_AUDIO_MP3StreamFormatMP1Layer3 = 0, /**< MP3 Audio MPEG 1 Layer 3 Stream format */ OMX_AUDIO_MP3StreamFormatMP2Layer3, /**< MP3 Audio MPEG 2 Layer 3 Stream format */ OMX_AUDIO_MP3StreamFormatMP2_5Layer3, /**< MP3 Audio MPEG2.5 Layer 3 Stream format */ OMX_AUDIO_MP3StreamFormatKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_MP3StreamFormatVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_MP3StreamFormatMax = 0x7FFFFFFF } OMX_AUDIO_MP3STREAMFORMATTYPE; /** MP3 params */ typedef struct OMX_AUDIO_PARAM_MP3TYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels */ OMX_U32 nBitRate; /**< Bit rate of the input data. Use 0 for variable rate or unknown bit rates */ OMX_U32 nSampleRate; /**< Sampling rate of the source data. Use 0 for variable or unknown sampling rate. */ OMX_U32 nAudioBandWidth; /**< Audio band width (in Hz) to which an encoder should limit the audio signal. Use 0 to let encoder decide */ OMX_AUDIO_CHANNELMODETYPE eChannelMode; /**< Channel mode enumeration */ OMX_AUDIO_MP3STREAMFORMATTYPE eFormat; /**< MP3 stream format */ } OMX_AUDIO_PARAM_MP3TYPE; typedef enum OMX_AUDIO_AACSTREAMFORMATTYPE { OMX_AUDIO_AACStreamFormatMP2ADTS = 0, /**< AAC Audio Data Transport Stream 2 format */ OMX_AUDIO_AACStreamFormatMP4ADTS, /**< AAC Audio Data Transport Stream 4 format */ OMX_AUDIO_AACStreamFormatMP4LOAS, /**< AAC Low Overhead Audio Stream format */ OMX_AUDIO_AACStreamFormatMP4LATM, /**< AAC Low overhead Audio Transport Multiplex */ OMX_AUDIO_AACStreamFormatADIF, /**< AAC Audio Data Interchange Format */ OMX_AUDIO_AACStreamFormatMP4FF, /**< AAC inside MPEG-4/ISO File Format */ OMX_AUDIO_AACStreamFormatRAW, /**< AAC Raw Format */ OMX_AUDIO_AACStreamFormatKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_AACStreamFormatVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_AACStreamFormatMax = 0x7FFFFFFF } OMX_AUDIO_AACSTREAMFORMATTYPE; /** AAC mode type. Note that the term profile is used with the MPEG-2 * standard and the term object type and profile is used with MPEG-4 */ typedef enum OMX_AUDIO_AACPROFILETYPE{ OMX_AUDIO_AACObjectNull = 0, /**< Null, not used */ OMX_AUDIO_AACObjectMain = 1, /**< AAC Main object */ OMX_AUDIO_AACObjectLC, /**< AAC Low Complexity object (AAC profile) */ OMX_AUDIO_AACObjectSSR, /**< AAC Scalable Sample Rate object */ OMX_AUDIO_AACObjectLTP, /**< AAC Long Term Prediction object */ OMX_AUDIO_AACObjectHE, /**< AAC High Efficiency (object type SBR, HE-AAC profile) */ OMX_AUDIO_AACObjectScalable, /**< AAC Scalable object */ OMX_AUDIO_AACObjectERLC = 17, /**< ER AAC Low Complexity object (Error Resilient AAC-LC) */ OMX_AUDIO_AACObjectLD = 23, /**< AAC Low Delay object (Error Resilient) */ OMX_AUDIO_AACObjectHE_PS = 29, /**< AAC High Efficiency with Parametric Stereo coding (HE-AAC v2, object type PS) */ OMX_AUDIO_AACObjectKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_AACObjectVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_AACObjectMax = 0x7FFFFFFF } OMX_AUDIO_AACPROFILETYPE; /** AAC tool usage (for nAACtools in OMX_AUDIO_PARAM_AACPROFILETYPE). * Required for encoder configuration and optional as decoder info output. * For MP3, OMX_AUDIO_CHANNELMODETYPE is sufficient. */ #define OMX_AUDIO_AACToolNone 0x00000000 /**< no AAC tools allowed (encoder config) or active (decoder info output) */ #define OMX_AUDIO_AACToolMS 0x00000001 /**< MS: Mid/side joint coding tool allowed or active */ #define OMX_AUDIO_AACToolIS 0x00000002 /**< IS: Intensity stereo tool allowed or active */ #define OMX_AUDIO_AACToolTNS 0x00000004 /**< TNS: Temporal Noise Shaping tool allowed or active */ #define OMX_AUDIO_AACToolPNS 0x00000008 /**< PNS: MPEG-4 Perceptual Noise substitution tool allowed or active */ #define OMX_AUDIO_AACToolLTP 0x00000010 /**< LTP: MPEG-4 Long Term Prediction tool allowed or active */ #define OMX_AUDIO_AACToolAll 0x7FFFFFFF /**< all AAC tools allowed or active (*/ /** MPEG-4 AAC error resilience (ER) tool usage (for nAACERtools in OMX_AUDIO_PARAM_AACPROFILETYPE). * Required for ER encoder configuration and optional as decoder info output */ #define OMX_AUDIO_AACERNone 0x00000000 /**< no AAC ER tools allowed/used */ #define OMX_AUDIO_AACERVCB11 0x00000001 /**< VCB11: Virtual Code Books for AAC section data */ #define OMX_AUDIO_AACERRVLC 0x00000002 /**< RVLC: Reversible Variable Length Coding */ #define OMX_AUDIO_AACERHCR 0x00000004 /**< HCR: Huffman Codeword Reordering */ #define OMX_AUDIO_AACERAll 0x7FFFFFFF /**< all AAC ER tools allowed/used */ /** AAC params */ typedef struct OMX_AUDIO_PARAM_AACPROFILETYPE { OMX_U32 nSize; /**< Size of this structure, in Bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< Port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels */ OMX_U32 nSampleRate; /**< Sampling rate of the source data. Use 0 for variable or unknown sampling rate. */ OMX_U32 nBitRate; /**< Bit rate of the input data. Use 0 for variable rate or unknown bit rates */ OMX_U32 nAudioBandWidth; /**< Audio band width (in Hz) to which an encoder should limit the audio signal. Use 0 to let encoder decide */ OMX_U32 nFrameLength; /**< Frame length (in audio samples per channel) of the codec. Can be 1024 or 960 (AAC-LC), 2048 (HE-AAC), 480 or 512 (AAC-LD). Use 0 to let encoder decide */ OMX_U32 nAACtools; /**< AAC tool usage */ OMX_U32 nAACERtools; /**< MPEG-4 AAC error resilience tool usage */ OMX_AUDIO_AACPROFILETYPE eAACProfile; /**< AAC profile enumeration */ OMX_AUDIO_AACSTREAMFORMATTYPE eAACStreamFormat; /**< AAC stream format enumeration */ OMX_AUDIO_CHANNELMODETYPE eChannelMode; /**< Channel mode enumeration */ } OMX_AUDIO_PARAM_AACPROFILETYPE; /** VORBIS params */ typedef struct OMX_AUDIO_PARAM_VORBISTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels */ OMX_U32 nBitRate; /**< Bit rate of the encoded data data. Use 0 for variable rate or unknown bit rates. Encoding is set to the bitrate closest to specified value (in bps) */ OMX_U32 nMinBitRate; /**< Sets minimum bitrate (in bps). */ OMX_U32 nMaxBitRate; /**< Sets maximum bitrate (in bps). */ OMX_U32 nSampleRate; /**< Sampling rate of the source data. Use 0 for variable or unknown sampling rate. */ OMX_U32 nAudioBandWidth; /**< Audio band width (in Hz) to which an encoder should limit the audio signal. Use 0 to let encoder decide */ OMX_S32 nQuality; /**< Sets encoding quality to n, between -1 (low) and 10 (high). In the default mode of operation, teh quality level is 3. Normal quality range is 0 - 10. */ OMX_BOOL bManaged; /**< Set bitrate management mode. This turns off the normal VBR encoding, but allows hard or soft bitrate constraints to be enforced by the encoder. This mode can be slower, and may also be lower quality. It is primarily useful for streaming. */ OMX_BOOL bDownmix; /**< Downmix input from stereo to mono (has no effect on non-stereo streams). Useful for lower-bitrate encoding. */ } OMX_AUDIO_PARAM_VORBISTYPE; /** WMA Version */ typedef enum OMX_AUDIO_WMAFORMATTYPE { OMX_AUDIO_WMAFormatUnused = 0, /**< format unused or unknown */ OMX_AUDIO_WMAFormat7, /**< Windows Media Audio format 7 */ OMX_AUDIO_WMAFormat8, /**< Windows Media Audio format 8 */ OMX_AUDIO_WMAFormat9, /**< Windows Media Audio format 9 */ OMX_AUDIO_WMAFormatKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_WMAFormatVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_WMAFormatMax = 0x7FFFFFFF } OMX_AUDIO_WMAFORMATTYPE; /** WMA Profile */ typedef enum OMX_AUDIO_WMAPROFILETYPE { OMX_AUDIO_WMAProfileUnused = 0, /**< profile unused or unknown */ OMX_AUDIO_WMAProfileL1, /**< Windows Media audio version 9 profile L1 */ OMX_AUDIO_WMAProfileL2, /**< Windows Media audio version 9 profile L2 */ OMX_AUDIO_WMAProfileL3, /**< Windows Media audio version 9 profile L3 */ OMX_AUDIO_WMAProfileKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_WMAProfileVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_WMAProfileMax = 0x7FFFFFFF } OMX_AUDIO_WMAPROFILETYPE; /** WMA params */ typedef struct OMX_AUDIO_PARAM_WMATYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U16 nChannels; /**< Number of channels */ OMX_U32 nBitRate; /**< Bit rate of the input data. Use 0 for variable rate or unknown bit rates */ OMX_AUDIO_WMAFORMATTYPE eFormat; /**< Version of WMA stream / data */ OMX_AUDIO_WMAPROFILETYPE eProfile; /**< Profile of WMA stream / data */ OMX_U32 nSamplingRate; /**< Sampling rate of the source data */ OMX_U16 nBlockAlign; /**< is the block alignment, or block size, in bytes of the audio codec */ OMX_U16 nEncodeOptions; /**< WMA Type-specific data */ OMX_U32 nSuperBlockAlign; /**< WMA Type-specific data */ } OMX_AUDIO_PARAM_WMATYPE; /** * RealAudio format */ typedef enum OMX_AUDIO_RAFORMATTYPE { OMX_AUDIO_RAFormatUnused = 0, /**< Format unused or unknown */ OMX_AUDIO_RA8, /**< RealAudio 8 codec */ OMX_AUDIO_RA9, /**< RealAudio 9 codec */ OMX_AUDIO_RA10_AAC, /**< MPEG-4 AAC codec for bitrates of more than 128kbps */ OMX_AUDIO_RA10_CODEC, /**< RealAudio codec for bitrates less than 128 kbps */ OMX_AUDIO_RA10_LOSSLESS, /**< RealAudio Lossless */ OMX_AUDIO_RA10_MULTICHANNEL, /**< RealAudio Multichannel */ OMX_AUDIO_RA10_VOICE, /**< RealAudio Voice for bitrates below 15 kbps */ OMX_AUDIO_RAFormatKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_RAFormatVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_RAFormatMax = 0x7FFFFFFF } OMX_AUDIO_RAFORMATTYPE; /** RA (Real Audio) params */ typedef struct OMX_AUDIO_PARAM_RATYPE { OMX_U32 nSize; /**< Size of this structure, in Bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< Port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels */ OMX_U32 nSamplingRate; /**< is the sampling rate of the source data */ OMX_U32 nBitsPerFrame; /**< is the value for bits per frame */ OMX_U32 nSamplePerFrame; /**< is the value for samples per frame */ OMX_U32 nCouplingQuantBits; /**< is the number of coupling quantization bits in the stream */ OMX_U32 nCouplingStartRegion; /**< is the coupling start region in the stream */ OMX_U32 nNumRegions; /**< is the number of regions value */ OMX_AUDIO_RAFORMATTYPE eFormat; /**< is the RealAudio audio format */ } OMX_AUDIO_PARAM_RATYPE; /** SBC Allocation Method Type */ typedef enum OMX_AUDIO_SBCALLOCMETHODTYPE { OMX_AUDIO_SBCAllocMethodLoudness, /**< Loudness allocation method */ OMX_AUDIO_SBCAllocMethodSNR, /**< SNR allocation method */ OMX_AUDIO_SBCAllocMethodKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_SBCAllocMethodVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_SBCAllocMethodMax = 0x7FFFFFFF } OMX_AUDIO_SBCALLOCMETHODTYPE; /** SBC params */ typedef struct OMX_AUDIO_PARAM_SBCTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels */ OMX_U32 nBitRate; /**< Bit rate of the input data. Use 0 for variable rate or unknown bit rates */ OMX_U32 nSampleRate; /**< Sampling rate of the source data. Use 0 for variable or unknown sampling rate. */ OMX_U32 nBlocks; /**< Number of blocks */ OMX_U32 nSubbands; /**< Number of subbands */ OMX_U32 nBitPool; /**< Bitpool value */ OMX_BOOL bEnableBitrate; /**< Use bitrate value instead of bitpool */ OMX_AUDIO_CHANNELMODETYPE eChannelMode; /**< Channel mode enumeration */ OMX_AUDIO_SBCALLOCMETHODTYPE eSBCAllocType; /**< SBC Allocation method type */ } OMX_AUDIO_PARAM_SBCTYPE; /** ADPCM stream format parameters */ typedef struct OMX_AUDIO_PARAM_ADPCMTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels in the data stream (not necessarily the same as the number of channels to be rendered. */ OMX_U32 nBitsPerSample; /**< Number of bits in each sample */ OMX_U32 nSampleRate; /**< Sampling rate of the source data. Use 0 for variable or unknown sampling rate. */ } OMX_AUDIO_PARAM_ADPCMTYPE; /** G723 rate */ typedef enum OMX_AUDIO_G723RATE { OMX_AUDIO_G723ModeUnused = 0, /**< AMRNB Mode unused / unknown */ OMX_AUDIO_G723ModeLow, /**< 5300 bps */ OMX_AUDIO_G723ModeHigh, /**< 6300 bps */ OMX_AUDIO_G723ModeKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_G723ModeVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_G723ModeMax = 0x7FFFFFFF } OMX_AUDIO_G723RATE; /** G723 - Sample rate must be 8 KHz */ typedef struct OMX_AUDIO_PARAM_G723TYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels in the data stream (not necessarily the same as the number of channels to be rendered. */ OMX_BOOL bDTX; /**< Enable Discontinuous Transmisssion */ OMX_AUDIO_G723RATE eBitRate; /**< todo: Should this be moved to a config? */ OMX_BOOL bHiPassFilter; /**< Enable High Pass Filter */ OMX_BOOL bPostFilter; /**< Enable Post Filter */ } OMX_AUDIO_PARAM_G723TYPE; /** ITU G726 (ADPCM) rate */ typedef enum OMX_AUDIO_G726MODE { OMX_AUDIO_G726ModeUnused = 0, /**< G726 Mode unused / unknown */ OMX_AUDIO_G726Mode16, /**< 16 kbps */ OMX_AUDIO_G726Mode24, /**< 24 kbps */ OMX_AUDIO_G726Mode32, /**< 32 kbps, most common rate, also G721 */ OMX_AUDIO_G726Mode40, /**< 40 kbps */ OMX_AUDIO_G726ModeKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_G726ModeVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_G726ModeMax = 0x7FFFFFFF } OMX_AUDIO_G726MODE; /** G.726 stream format parameters - must be at 8KHz */ typedef struct OMX_AUDIO_PARAM_G726TYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels in the data stream (not necessarily the same as the number of channels to be rendered. */ OMX_AUDIO_G726MODE eG726Mode; } OMX_AUDIO_PARAM_G726TYPE; /** G729 coder type */ typedef enum OMX_AUDIO_G729TYPE { OMX_AUDIO_G729 = 0, /**< ITU G.729 encoded data */ OMX_AUDIO_G729A, /**< ITU G.729 annex A encoded data */ OMX_AUDIO_G729B, /**< ITU G.729 with annex B encoded data */ OMX_AUDIO_G729AB, /**< ITU G.729 annexes A and B encoded data */ OMX_AUDIO_G729KhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_G729VendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_G729Max = 0x7FFFFFFF } OMX_AUDIO_G729TYPE; /** G729 stream format parameters - fixed 6KHz sample rate */ typedef struct OMX_AUDIO_PARAM_G729TYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels in the data stream (not necessarily the same as the number of channels to be rendered. */ OMX_BOOL bDTX; /**< Enable Discontinuous Transmisssion */ OMX_AUDIO_G729TYPE eBitType; } OMX_AUDIO_PARAM_G729TYPE; /** AMR Frame format */ typedef enum OMX_AUDIO_AMRFRAMEFORMATTYPE { OMX_AUDIO_AMRFrameFormatConformance = 0, /**< Frame Format is AMR Conformance (Standard) Format */ OMX_AUDIO_AMRFrameFormatIF1, /**< Frame Format is AMR Interface Format 1 */ OMX_AUDIO_AMRFrameFormatIF2, /**< Frame Format is AMR Interface Format 2*/ OMX_AUDIO_AMRFrameFormatFSF, /**< Frame Format is AMR File Storage Format */ OMX_AUDIO_AMRFrameFormatRTPPayload, /**< Frame Format is AMR Real-Time Transport Protocol Payload Format */ OMX_AUDIO_AMRFrameFormatITU, /**< Frame Format is ITU Format (added at Motorola request) */ OMX_AUDIO_AMRFrameFormatKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_AMRFrameFormatVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_AMRFrameFormatMax = 0x7FFFFFFF } OMX_AUDIO_AMRFRAMEFORMATTYPE; /** AMR band mode */ typedef enum OMX_AUDIO_AMRBANDMODETYPE { OMX_AUDIO_AMRBandModeUnused = 0, /**< AMRNB Mode unused / unknown */ OMX_AUDIO_AMRBandModeNB0, /**< AMRNB Mode 0 = 4750 bps */ OMX_AUDIO_AMRBandModeNB1, /**< AMRNB Mode 1 = 5150 bps */ OMX_AUDIO_AMRBandModeNB2, /**< AMRNB Mode 2 = 5900 bps */ OMX_AUDIO_AMRBandModeNB3, /**< AMRNB Mode 3 = 6700 bps */ OMX_AUDIO_AMRBandModeNB4, /**< AMRNB Mode 4 = 7400 bps */ OMX_AUDIO_AMRBandModeNB5, /**< AMRNB Mode 5 = 7950 bps */ OMX_AUDIO_AMRBandModeNB6, /**< AMRNB Mode 6 = 10200 bps */ OMX_AUDIO_AMRBandModeNB7, /**< AMRNB Mode 7 = 12200 bps */ OMX_AUDIO_AMRBandModeWB0, /**< AMRWB Mode 0 = 6600 bps */ OMX_AUDIO_AMRBandModeWB1, /**< AMRWB Mode 1 = 8850 bps */ OMX_AUDIO_AMRBandModeWB2, /**< AMRWB Mode 2 = 12650 bps */ OMX_AUDIO_AMRBandModeWB3, /**< AMRWB Mode 3 = 14250 bps */ OMX_AUDIO_AMRBandModeWB4, /**< AMRWB Mode 4 = 15850 bps */ OMX_AUDIO_AMRBandModeWB5, /**< AMRWB Mode 5 = 18250 bps */ OMX_AUDIO_AMRBandModeWB6, /**< AMRWB Mode 6 = 19850 bps */ OMX_AUDIO_AMRBandModeWB7, /**< AMRWB Mode 7 = 23050 bps */ OMX_AUDIO_AMRBandModeWB8, /**< AMRWB Mode 8 = 23850 bps */ OMX_AUDIO_AMRBandModeKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_AMRBandModeVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_AMRBandModeMax = 0x7FFFFFFF } OMX_AUDIO_AMRBANDMODETYPE; /** AMR Discontinuous Transmission mode */ typedef enum OMX_AUDIO_AMRDTXMODETYPE { OMX_AUDIO_AMRDTXModeOff = 0, /**< AMR Discontinuous Transmission Mode is disabled */ OMX_AUDIO_AMRDTXModeOnVAD1, /**< AMR Discontinuous Transmission Mode using Voice Activity Detector 1 (VAD1) is enabled */ OMX_AUDIO_AMRDTXModeOnVAD2, /**< AMR Discontinuous Transmission Mode using Voice Activity Detector 2 (VAD2) is enabled */ OMX_AUDIO_AMRDTXModeOnAuto, /**< The codec will automatically select between Off, VAD1 or VAD2 modes */ OMX_AUDIO_AMRDTXasEFR, /**< DTX as EFR instead of AMR standard (3GPP 26.101, frame type =8,9,10) */ OMX_AUDIO_AMRDTXModeKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_AMRDTXModeVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_AMRDTXModeMax = 0x7FFFFFFF } OMX_AUDIO_AMRDTXMODETYPE; /** AMR params */ typedef struct OMX_AUDIO_PARAM_AMRTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels */ OMX_U32 nBitRate; /**< Bit rate read only field */ OMX_AUDIO_AMRBANDMODETYPE eAMRBandMode; /**< AMR Band Mode enumeration */ OMX_AUDIO_AMRDTXMODETYPE eAMRDTXMode; /**< AMR DTX Mode enumeration */ OMX_AUDIO_AMRFRAMEFORMATTYPE eAMRFrameFormat; /**< AMR frame format enumeration */ } OMX_AUDIO_PARAM_AMRTYPE; /** GSM_FR (ETSI 06.10, 3GPP 46.010) stream format parameters */ typedef struct OMX_AUDIO_PARAM_GSMFRTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_BOOL bDTX; /**< Enable Discontinuous Transmisssion */ OMX_BOOL bHiPassFilter; /**< Enable High Pass Filter */ } OMX_AUDIO_PARAM_GSMFRTYPE; /** GSM-HR (ETSI 06.20, 3GPP 46.020) stream format parameters */ typedef struct OMX_AUDIO_PARAM_GSMHRTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_BOOL bDTX; /**< Enable Discontinuous Transmisssion */ OMX_BOOL bHiPassFilter; /**< Enable High Pass Filter */ } OMX_AUDIO_PARAM_GSMHRTYPE; /** GSM-EFR (ETSI 06.60, 3GPP 46.060) stream format parameters */ typedef struct OMX_AUDIO_PARAM_GSMEFRTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_BOOL bDTX; /**< Enable Discontinuous Transmisssion */ OMX_BOOL bHiPassFilter; /**< Enable High Pass Filter */ } OMX_AUDIO_PARAM_GSMEFRTYPE; /** TDMA FR (TIA/EIA-136-420, VSELP 7.95kbps coder) stream format parameters */ typedef struct OMX_AUDIO_PARAM_TDMAFRTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels in the data stream (not necessarily the same as the number of channels to be rendered. */ OMX_BOOL bDTX; /**< Enable Discontinuous Transmisssion */ OMX_BOOL bHiPassFilter; /**< Enable High Pass Filter */ } OMX_AUDIO_PARAM_TDMAFRTYPE; /** TDMA EFR (TIA/EIA-136-410, ACELP 7.4kbps coder) stream format parameters */ typedef struct OMX_AUDIO_PARAM_TDMAEFRTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels in the data stream (not necessarily the same as the number of channels to be rendered. */ OMX_BOOL bDTX; /**< Enable Discontinuous Transmisssion */ OMX_BOOL bHiPassFilter; /**< Enable High Pass Filter */ } OMX_AUDIO_PARAM_TDMAEFRTYPE; /** PDC FR ( RCR-27, VSELP 6.7kbps coder) stream format parameters */ typedef struct OMX_AUDIO_PARAM_PDCFRTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels in the data stream (not necessarily the same as the number of channels to be rendered. */ OMX_BOOL bDTX; /**< Enable Discontinuous Transmisssion */ OMX_BOOL bHiPassFilter; /**< Enable High Pass Filter */ } OMX_AUDIO_PARAM_PDCFRTYPE; /** PDC EFR ( RCR-27, ACELP 6.7kbps coder) stream format parameters */ typedef struct OMX_AUDIO_PARAM_PDCEFRTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels in the data stream (not necessarily the same as the number of channels to be rendered. */ OMX_BOOL bDTX; /**< Enable Discontinuous Transmisssion */ OMX_BOOL bHiPassFilter; /**< Enable High Pass Filter */ } OMX_AUDIO_PARAM_PDCEFRTYPE; /** PDC HR ( RCR-27, PSI-CELP 3.45kbps coder) stream format parameters */ typedef struct OMX_AUDIO_PARAM_PDCHRTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels in the data stream (not necessarily the same as the number of channels to be rendered. */ OMX_BOOL bDTX; /**< Enable Discontinuous Transmisssion */ OMX_BOOL bHiPassFilter; /**< Enable High Pass Filter */ } OMX_AUDIO_PARAM_PDCHRTYPE; /** CDMA Rate types */ typedef enum OMX_AUDIO_CDMARATETYPE { OMX_AUDIO_CDMARateBlank = 0, /**< CDMA encoded frame is blank */ OMX_AUDIO_CDMARateFull, /**< CDMA encoded frame in full rate */ OMX_AUDIO_CDMARateHalf, /**< CDMA encoded frame in half rate */ OMX_AUDIO_CDMARateQuarter, /**< CDMA encoded frame in quarter rate */ OMX_AUDIO_CDMARateEighth, /**< CDMA encoded frame in eighth rate (DTX)*/ OMX_AUDIO_CDMARateErasure, /**< CDMA erasure frame */ OMX_AUDIO_CDMARateKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_CDMARateVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_CDMARateMax = 0x7FFFFFFF } OMX_AUDIO_CDMARATETYPE; /** QCELP8 (TIA/EIA-96, up to 8kbps coder) stream format parameters */ typedef struct OMX_AUDIO_PARAM_QCELP8TYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels in the data stream (not necessarily the same as the number of channels to be rendered. */ OMX_U32 nBitRate; /**< Bit rate of the input data. Use 0 for variable rate or unknown bit rates */ OMX_AUDIO_CDMARATETYPE eCDMARate; /**< Frame rate */ OMX_U32 nMinBitRate; /**< minmal rate for the encoder = 1,2,3,4, default = 1 */ OMX_U32 nMaxBitRate; /**< maximal rate for the encoder = 1,2,3,4, default = 4 */ } OMX_AUDIO_PARAM_QCELP8TYPE; /** QCELP13 ( CDMA, EIA/TIA-733, 13.3kbps coder) stream format parameters */ typedef struct OMX_AUDIO_PARAM_QCELP13TYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels in the data stream (not necessarily the same as the number of channels to be rendered. */ OMX_AUDIO_CDMARATETYPE eCDMARate; /**< Frame rate */ OMX_U32 nMinBitRate; /**< minmal rate for the encoder = 1,2,3,4, default = 1 */ OMX_U32 nMaxBitRate; /**< maximal rate for the encoder = 1,2,3,4, default = 4 */ } OMX_AUDIO_PARAM_QCELP13TYPE; /** EVRC ( CDMA, EIA/TIA-127, RCELP up to 8.55kbps coder) stream format parameters */ typedef struct OMX_AUDIO_PARAM_EVRCTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels in the data stream (not necessarily the same as the number of channels to be rendered. */ OMX_AUDIO_CDMARATETYPE eCDMARate; /**< actual Frame rate */ OMX_BOOL bRATE_REDUCon; /**< RATE_REDUCtion is requested for this frame */ OMX_U32 nMinBitRate; /**< minmal rate for the encoder = 1,2,3,4, default = 1 */ OMX_U32 nMaxBitRate; /**< maximal rate for the encoder = 1,2,3,4, default = 4 */ OMX_BOOL bHiPassFilter; /**< Enable encoder's High Pass Filter */ OMX_BOOL bNoiseSuppressor; /**< Enable encoder's noise suppressor pre-processing */ OMX_BOOL bPostFilter; /**< Enable decoder's post Filter */ } OMX_AUDIO_PARAM_EVRCTYPE; /** SMV ( up to 8.55kbps coder) stream format parameters */ typedef struct OMX_AUDIO_PARAM_SMVTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannels; /**< Number of channels in the data stream (not necessarily the same as the number of channels to be rendered. */ OMX_AUDIO_CDMARATETYPE eCDMARate; /**< Frame rate */ OMX_BOOL bRATE_REDUCon; /**< RATE_REDUCtion is requested for this frame */ OMX_U32 nMinBitRate; /**< minmal rate for the encoder = 1,2,3,4, default = 1 ??*/ OMX_U32 nMaxBitRate; /**< maximal rate for the encoder = 1,2,3,4, default = 4 ??*/ OMX_BOOL bHiPassFilter; /**< Enable encoder's High Pass Filter ??*/ OMX_BOOL bNoiseSuppressor; /**< Enable encoder's noise suppressor pre-processing */ OMX_BOOL bPostFilter; /**< Enable decoder's post Filter ??*/ } OMX_AUDIO_PARAM_SMVTYPE; /** MIDI Format * @ingroup midi */ typedef enum OMX_AUDIO_MIDIFORMATTYPE { OMX_AUDIO_MIDIFormatUnknown = 0, /**< MIDI Format unknown or don't care */ OMX_AUDIO_MIDIFormatSMF0, /**< Standard MIDI File Type 0 */ OMX_AUDIO_MIDIFormatSMF1, /**< Standard MIDI File Type 1 */ OMX_AUDIO_MIDIFormatSMF2, /**< Standard MIDI File Type 2 */ OMX_AUDIO_MIDIFormatSPMIDI, /**< SP-MIDI */ OMX_AUDIO_MIDIFormatXMF0, /**< eXtensible Music Format type 0 */ OMX_AUDIO_MIDIFormatXMF1, /**< eXtensible Music Format type 1 */ OMX_AUDIO_MIDIFormatMobileXMF, /**< Mobile XMF (eXtensible Music Format type 2) */ OMX_AUDIO_MIDIFormatKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_MIDIFormatVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_MIDIFormatMax = 0x7FFFFFFF } OMX_AUDIO_MIDIFORMATTYPE; /** MIDI params * @ingroup midi */ typedef struct OMX_AUDIO_PARAM_MIDITYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nFileSize; /**< size of the MIDI file in bytes, where the entire MIDI file passed in, otherwise if 0x0, the MIDI data is merged and streamed (instead of passed as an entire MIDI file) */ OMX_BU32 sMaxPolyphony; /**< Specifies the maximum simultaneous polyphonic voices. A value of zero indicates that the default polyphony of the device is used */ OMX_BOOL bLoadDefaultSound; /**< Whether to load default sound bank at initialization */ OMX_AUDIO_MIDIFORMATTYPE eMidiFormat; /**< Version of the MIDI file */ } OMX_AUDIO_PARAM_MIDITYPE; /** Type of the MIDI sound bank * @ingroup midi */ typedef enum OMX_AUDIO_MIDISOUNDBANKTYPE { OMX_AUDIO_MIDISoundBankUnused = 0, /**< unused/unknown soundbank type */ OMX_AUDIO_MIDISoundBankDLS1, /**< DLS version 1 */ OMX_AUDIO_MIDISoundBankDLS2, /**< DLS version 2 */ OMX_AUDIO_MIDISoundBankMobileDLSBase, /**< Mobile DLS, using the base functionality */ OMX_AUDIO_MIDISoundBankMobileDLSPlusOptions, /**< Mobile DLS, using the specification-defined optional feature set */ OMX_AUDIO_MIDISoundBankKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_MIDISoundBankVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_MIDISoundBankMax = 0x7FFFFFFF } OMX_AUDIO_MIDISOUNDBANKTYPE; /** Bank Layout describes how bank MSB & LSB are used in the DLS instrument definitions sound bank * @ingroup midi */ typedef enum OMX_AUDIO_MIDISOUNDBANKLAYOUTTYPE { OMX_AUDIO_MIDISoundBankLayoutUnused = 0, /**< unused/unknown soundbank type */ OMX_AUDIO_MIDISoundBankLayoutGM, /**< GS layout (based on bank MSB 0x00) */ OMX_AUDIO_MIDISoundBankLayoutGM2, /**< General MIDI 2 layout (using MSB 0x78/0x79, LSB 0x00) */ OMX_AUDIO_MIDISoundBankLayoutUser, /**< Does not conform to any bank numbering standards */ OMX_AUDIO_MIDISoundBankLayoutKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_MIDISoundBankLayoutVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_MIDISoundBankLayoutMax = 0x7FFFFFFF } OMX_AUDIO_MIDISOUNDBANKLAYOUTTYPE; /** MIDI params to load/unload user soundbank * @ingroup midi */ typedef struct OMX_AUDIO_PARAM_MIDILOADUSERSOUNDTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nDLSIndex; /**< DLS file index to be loaded */ OMX_U32 nDLSSize; /**< Size in bytes */ OMX_PTR pDLSData; /**< Pointer to DLS file data */ OMX_AUDIO_MIDISOUNDBANKTYPE eMidiSoundBank; /**< Midi sound bank type enumeration */ OMX_AUDIO_MIDISOUNDBANKLAYOUTTYPE eMidiSoundBankLayout; /**< Midi sound bank layout enumeration */ } OMX_AUDIO_PARAM_MIDILOADUSERSOUNDTYPE; /** Structure for Live MIDI events and MIP messages. * (MIP = Maximum Instantaneous Polyphony; part of the SP-MIDI standard.) * @ingroup midi */ typedef struct OMX_AUDIO_CONFIG_MIDIIMMEDIATEEVENTTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< Port that this structure applies to */ OMX_U32 nMidiEventSize; /**< Size of immediate MIDI events or MIP message in bytes */ OMX_U8 nMidiEvents[1]; /**< MIDI event array to be rendered immediately, or an array for the MIP message buffer, where the size is indicated by nMidiEventSize */ } OMX_AUDIO_CONFIG_MIDIIMMEDIATEEVENTTYPE; /** MIDI sound bank/ program pair in a given channel * @ingroup midi */ typedef struct OMX_AUDIO_CONFIG_MIDISOUNDBANKPROGRAMTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< Port that this structure applies to */ OMX_U32 nChannel; /**< Valid channel values range from 1 to 16 */ OMX_U16 nIDProgram; /**< Valid program ID range is 1 to 128 */ OMX_U16 nIDSoundBank; /**< Sound bank ID */ OMX_U32 nUserSoundBankIndex;/**< User soundbank index, easier to access soundbanks by index if multiple banks are present */ } OMX_AUDIO_CONFIG_MIDISOUNDBANKPROGRAMTYPE; /** MIDI control * @ingroup midi */ typedef struct OMX_AUDIO_CONFIG_MIDICONTROLTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_BS32 sPitchTransposition; /**< Pitch transposition in semitones, stored as Q22.10 format based on JAVA MMAPI (JSR-135) requirement */ OMX_BU32 sPlayBackRate; /**< Relative playback rate, stored as Q14.17 fixed-point number based on JSR-135 requirement */ OMX_BU32 sTempo ; /**< Tempo in beats per minute (BPM), stored as Q22.10 fixed-point number based on JSR-135 requirement */ OMX_U32 nMaxPolyphony; /**< Specifies the maximum simultaneous polyphonic voices. A value of zero indicates that the default polyphony of the device is used */ OMX_U32 nNumRepeat; /**< Number of times to repeat playback */ OMX_U32 nStopTime; /**< Time in milliseconds to indicate when playback will stop automatically. Set to zero if not used */ OMX_U16 nChannelMuteMask; /**< 16 bit mask for channel mute status */ OMX_U16 nChannelSoloMask; /**< 16 bit mask for channel solo status */ OMX_U32 nTrack0031MuteMask; /**< 32 bit mask for track mute status. Note: This is for tracks 0-31 */ OMX_U32 nTrack3263MuteMask; /**< 32 bit mask for track mute status. Note: This is for tracks 32-63 */ OMX_U32 nTrack0031SoloMask; /**< 32 bit mask for track solo status. Note: This is for tracks 0-31 */ OMX_U32 nTrack3263SoloMask; /**< 32 bit mask for track solo status. Note: This is for tracks 32-63 */ } OMX_AUDIO_CONFIG_MIDICONTROLTYPE; /** MIDI Playback States * @ingroup midi */ typedef enum OMX_AUDIO_MIDIPLAYBACKSTATETYPE { OMX_AUDIO_MIDIPlayBackStateUnknown = 0, /**< Unknown state or state does not map to other defined states */ OMX_AUDIO_MIDIPlayBackStateClosedEngaged, /**< No MIDI resource is currently open. The MIDI engine is currently processing MIDI events. */ OMX_AUDIO_MIDIPlayBackStateParsing, /**< A MIDI resource is open and is being primed. The MIDI engine is currently processing MIDI events. */ OMX_AUDIO_MIDIPlayBackStateOpenEngaged, /**< A MIDI resource is open and primed but not playing. The MIDI engine is currently processing MIDI events. The transition to this state is only possible from the OMX_AUDIO_MIDIPlayBackStatePlaying state, when the 'playback head' reaches the end of media data or the playback stops due to stop time set.*/ OMX_AUDIO_MIDIPlayBackStatePlaying, /**< A MIDI resource is open and currently playing. The MIDI engine is currently processing MIDI events.*/ OMX_AUDIO_MIDIPlayBackStatePlayingPartially, /**< Best-effort playback due to SP-MIDI/DLS resource constraints */ OMX_AUDIO_MIDIPlayBackStatePlayingSilently, /**< Due to system resource constraints and SP-MIDI content constraints, there is no audible MIDI content during playback currently. The situation may change if resources are freed later.*/ OMX_AUDIO_MIDIPlayBackStateKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_MIDIPlayBackStateVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_MIDIPlayBackStateMax = 0x7FFFFFFF } OMX_AUDIO_MIDIPLAYBACKSTATETYPE; /** MIDI status * @ingroup midi */ typedef struct OMX_AUDIO_CONFIG_MIDISTATUSTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U16 nNumTracks; /**< Number of MIDI tracks in the file, read only field. NOTE: May not return a meaningful value until the entire file is parsed and buffered. */ OMX_U32 nDuration; /**< The length of the currently open MIDI resource in milliseconds. NOTE: May not return a meaningful value until the entire file is parsed and buffered. */ OMX_U32 nPosition; /**< Current Position of the MIDI resource being played in milliseconds */ OMX_BOOL bVibra; /**< Does Vibra track exist? NOTE: May not return a meaningful value until the entire file is parsed and buffered. */ OMX_U32 nNumMetaEvents; /**< Total number of MIDI Meta Events in the currently open MIDI resource. NOTE: May not return a meaningful value until the entire file is parsed and buffered. */ OMX_U32 nNumActiveVoices; /**< Number of active voices in the currently playing MIDI resource. NOTE: May not return a meaningful value until the entire file is parsed and buffered. */ OMX_AUDIO_MIDIPLAYBACKSTATETYPE eMIDIPlayBackState; /**< MIDI playback state enumeration, read only field */ } OMX_AUDIO_CONFIG_MIDISTATUSTYPE; /** MIDI Meta Event structure one per Meta Event. * MIDI Meta Events are like audio metadata, except that they are interspersed * with the MIDI content throughout the file and are not localized in the header. * As such, it is necessary to retrieve information about these Meta Events from * the engine, as it encounters these Meta Events within the MIDI content. * For example, SMF files can have up to 14 types of MIDI Meta Events (copyright, * author, default tempo, etc.) scattered throughout the file. * @ingroup midi */ typedef struct OMX_AUDIO_CONFIG_MIDIMETAEVENTTYPE{ OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nIndex; /**< Index of Meta Event */ OMX_U8 nMetaEventType; /**< Meta Event Type, 7bits (i.e. 0 - 127) */ OMX_U32 nMetaEventSize; /**< size of the Meta Event in bytes */ OMX_U32 nTrack; /**< track number for the meta event */ OMX_U32 nPosition; /**< Position of the meta-event in milliseconds */ } OMX_AUDIO_CONFIG_MIDIMETAEVENTTYPE; /** MIDI Meta Event Data structure - one per Meta Event. * @ingroup midi */ typedef struct OMX_AUDIO_CONFIG_MIDIMETAEVENTDATATYPE{ OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nIndex; /**< Index of Meta Event */ OMX_U32 nMetaEventSize; /**< size of the Meta Event in bytes */ OMX_U8 nData[1]; /**< array of one or more bytes of meta data as indicated by the nMetaEventSize field */ } OMX_AUDIO_CONFIG__MIDIMETAEVENTDATATYPE; /** Audio Volume adjustment for a port */ typedef struct OMX_AUDIO_CONFIG_VOLUMETYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< Port index indicating which port to set. Select the input port to set just that port's volume. Select the output port to adjust the master volume. */ OMX_BOOL bLinear; /**< Is the volume to be set in linear (0.100) or logarithmic scale (mB) */ OMX_BS32 sVolume; /**< Volume linear setting in the 0..100 range, OR Volume logarithmic setting for this port. The values for volume are in mB (millibels = 1/100 dB) relative to a gain of 1 (e.g. the output is the same as the input level). Values are in mB from nMax (maximum volume) to nMin mB (typically negative). Since the volume is "voltage" and not a "power", it takes a setting of -600 mB to decrease the volume by 1/2. If a component cannot accurately set the volume to the requested value, it must set the volume to the closest value BELOW the requested value. When getting the volume setting, the current actual volume must be returned. */ } OMX_AUDIO_CONFIG_VOLUMETYPE; /** Audio Volume adjustment for a channel */ typedef struct OMX_AUDIO_CONFIG_CHANNELVOLUMETYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< Port index indicating which port to set. Select the input port to set just that port's volume. Select the output port to adjust the master volume. */ OMX_U32 nChannel; /**< channel to select from 0 to N-1, using OMX_ALL to apply volume settings to all channels */ OMX_BOOL bLinear; /**< Is the volume to be set in linear (0.100) or logarithmic scale (mB) */ OMX_BS32 sVolume; /**< Volume linear setting in the 0..100 range, OR Volume logarithmic setting for this port. The values for volume are in mB (millibels = 1/100 dB) relative to a gain of 1 (e.g. the output is the same as the input level). Values are in mB from nMax (maximum volume) to nMin mB (typically negative). Since the volume is "voltage" and not a "power", it takes a setting of -600 mB to decrease the volume by 1/2. If a component cannot accurately set the volume to the requested value, it must set the volume to the closest value BELOW the requested value. When getting the volume setting, the current actual volume must be returned. */ OMX_BOOL bIsMIDI; /**< TRUE if nChannel refers to a MIDI channel, FALSE otherwise */ } OMX_AUDIO_CONFIG_CHANNELVOLUMETYPE; /** Audio balance setting */ typedef struct OMX_AUDIO_CONFIG_BALANCETYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< Port index indicating which port to set. Select the input port to set just that port's balance. Select the output port to adjust the master balance. */ OMX_S32 nBalance; /**< balance setting for this port (-100 to 100, where -100 indicates all left, and no right */ } OMX_AUDIO_CONFIG_BALANCETYPE; /** Audio Port mute */ typedef struct OMX_AUDIO_CONFIG_MUTETYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< Port index indicating which port to set. Select the input port to set just that port's mute. Select the output port to adjust the master mute. */ OMX_BOOL bMute; /**< Mute setting for this port */ } OMX_AUDIO_CONFIG_MUTETYPE; /** Audio Channel mute */ typedef struct OMX_AUDIO_CONFIG_CHANNELMUTETYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_U32 nChannel; /**< channel to select from 0 to N-1, using OMX_ALL to apply mute settings to all channels */ OMX_BOOL bMute; /**< Mute setting for this channel */ OMX_BOOL bIsMIDI; /**< TRUE if nChannel refers to a MIDI channel, FALSE otherwise */ } OMX_AUDIO_CONFIG_CHANNELMUTETYPE; /** Enable / Disable for loudness control, which boosts bass and to a * smaller extent high end frequencies to compensate for hearing * ability at the extreme ends of the audio spectrum */ typedef struct OMX_AUDIO_CONFIG_LOUDNESSTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_BOOL bLoudness; /**< Enable/disable for loudness */ } OMX_AUDIO_CONFIG_LOUDNESSTYPE; /** Enable / Disable for bass, which controls low frequencies */ typedef struct OMX_AUDIO_CONFIG_BASSTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_BOOL bEnable; /**< Enable/disable for bass control */ OMX_S32 nBass; /**< bass setting for the port, as a continuous value from -100 to 100 (0 means no change in bass level)*/ } OMX_AUDIO_CONFIG_BASSTYPE; /** Enable / Disable for treble, which controls high frequencies tones */ typedef struct OMX_AUDIO_CONFIG_TREBLETYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_BOOL bEnable; /**< Enable/disable for treble control */ OMX_S32 nTreble; /**< treble setting for the port, as a continuous value from -100 to 100 (0 means no change in treble level) */ } OMX_AUDIO_CONFIG_TREBLETYPE; /** An equalizer is typically used for two reasons: to compensate for an * sub-optimal frequency response of a system to make it sound more natural * or to create intentionally some unnatural coloring to the sound to create * an effect. * @ingroup effects */ typedef struct OMX_AUDIO_CONFIG_EQUALIZERTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_BOOL bEnable; /**< Enable/disable for equalizer */ OMX_BU32 sBandIndex; /**< Band number to be set. Upper Limit is N-1, where N is the number of bands, lower limit is 0 */ OMX_BU32 sCenterFreq; /**< Center frequecies in Hz. This is a read only element and is used to determine the lower, center and upper frequency of this band. */ OMX_BS32 sBandLevel; /**< band level in millibels */ } OMX_AUDIO_CONFIG_EQUALIZERTYPE; /** Stereo widening mode type * @ingroup effects */ typedef enum OMX_AUDIO_STEREOWIDENINGTYPE { OMX_AUDIO_StereoWideningHeadphones, /**< Stereo widening for loudspeakers */ OMX_AUDIO_StereoWideningLoudspeakers, /**< Stereo widening for closely spaced loudspeakers */ OMX_AUDIO_StereoWideningKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_StereoWideningVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_StereoWideningMax = 0x7FFFFFFF } OMX_AUDIO_STEREOWIDENINGTYPE; /** Control for stereo widening, which is a special 2-channel * case of the audio virtualizer effect. For example, for 5.1-channel * output, it translates to virtual surround sound. * @ingroup effects */ typedef struct OMX_AUDIO_CONFIG_STEREOWIDENINGTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_BOOL bEnable; /**< Enable/disable for stereo widening control */ OMX_AUDIO_STEREOWIDENINGTYPE eWideningType; /**< Stereo widening algorithm type */ OMX_U32 nStereoWidening; /**< stereo widening setting for the port, as a continuous value from 0 to 100 */ } OMX_AUDIO_CONFIG_STEREOWIDENINGTYPE; /** The chorus effect (or ``choralizer'') is any signal processor which makes * one sound source (such as a voice) sound like many such sources singing * (or playing) in unison. Since performance in unison is never exact, chorus * effects simulate this by making independently modified copies of the input * signal. Modifications may include (1) delay, (2) frequency shift, and * (3) amplitude modulation. * @ingroup effects */ typedef struct OMX_AUDIO_CONFIG_CHORUSTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_BOOL bEnable; /**< Enable/disable for chorus */ OMX_BU32 sDelay; /**< average delay in milliseconds */ OMX_BU32 sModulationRate; /**< rate of modulation in millihertz */ OMX_U32 nModulationDepth; /**< depth of modulation as a percentage of delay (i.e. 0 to 100) */ OMX_BU32 nFeedback; /**< Feedback from chorus output to input in percentage */ } OMX_AUDIO_CONFIG_CHORUSTYPE; /** Reverberation is part of the reflected sound that follows the early * reflections. In a typical room, this consists of a dense succession of * echoes whose energy decays exponentially. The reverberation effect structure * as defined here includes both (early) reflections as well as (late) reverberations. * @ingroup effects */ typedef struct OMX_AUDIO_CONFIG_REVERBERATIONTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_BOOL bEnable; /**< Enable/disable for reverberation control */ OMX_BS32 sRoomLevel; /**< Intensity level for the whole room effect (i.e. both early reflections and late reverberation) in millibels */ OMX_BS32 sRoomHighFreqLevel; /**< Attenuation at high frequencies relative to the intensity at low frequencies in millibels */ OMX_BS32 sReflectionsLevel; /**< Intensity level of early reflections (relative to room value), in millibels */ OMX_BU32 sReflectionsDelay; /**< Delay time of the first reflection relative to the direct path, in milliseconds */ OMX_BS32 sReverbLevel; /**< Intensity level of late reverberation relative to room level, in millibels */ OMX_BU32 sReverbDelay; /**< Time delay from the first early reflection to the beginning of the late reverberation section, in milliseconds */ OMX_BU32 sDecayTime; /**< Late reverberation decay time at low frequencies, in milliseconds */ OMX_BU32 nDecayHighFreqRatio; /**< Ratio of high frequency decay time relative to low frequency decay time in percent */ OMX_U32 nDensity; /**< Modal density in the late reverberation decay, in percent (i.e. 0 - 100) */ OMX_U32 nDiffusion; /**< Echo density in the late reverberation decay, in percent (i.e. 0 - 100) */ OMX_BU32 sReferenceHighFreq; /**< Reference high frequency in Hertz. This is the frequency used as the reference for all the high-frequency settings above */ } OMX_AUDIO_CONFIG_REVERBERATIONTYPE; /** Possible settings for the Echo Cancelation structure to use * @ingroup effects */ typedef enum OMX_AUDIO_ECHOCANTYPE { OMX_AUDIO_EchoCanOff = 0, /**< Echo Cancellation is disabled */ OMX_AUDIO_EchoCanNormal, /**< Echo Cancellation normal operation - echo from plastics and face */ OMX_AUDIO_EchoCanHFree, /**< Echo Cancellation optimized for Hands Free operation */ OMX_AUDIO_EchoCanCarKit, /**< Echo Cancellation optimized for Car Kit (longer echo) */ OMX_AUDIO_EchoCanKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_AUDIO_EchoCanVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_AUDIO_EchoCanMax = 0x7FFFFFFF } OMX_AUDIO_ECHOCANTYPE; /** Enable / Disable for echo cancelation, which removes undesired echo's * from the audio * @ingroup effects */ typedef struct OMX_AUDIO_CONFIG_ECHOCANCELATIONTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_AUDIO_ECHOCANTYPE eEchoCancelation; /**< Echo cancelation settings */ } OMX_AUDIO_CONFIG_ECHOCANCELATIONTYPE; /** Enable / Disable for noise reduction, which undesired noise from * the audio * @ingroup effects */ typedef struct OMX_AUDIO_CONFIG_NOISEREDUCTIONTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_BOOL bNoiseReduction; /**< Enable/disable for noise reduction */ } OMX_AUDIO_CONFIG_NOISEREDUCTIONTYPE; /** @} */ #ifdef __cplusplus } #endif /* __cplusplus */ #endif /* File EOF */ libomxil-bellagio-0.9.3/include/OMX_Video.h0000644000175000017500000012633411513256766015451 00000000000000/** * Copyright (c) 2008 The Khronos Group 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. * */ /** * @file OMX_Video.h - OpenMax IL version 1.1.2 * The structures is needed by Video components to exchange parameters * and configuration data with OMX components. */ #ifndef OMX_Video_h #define OMX_Video_h /** @defgroup video OpenMAX IL Video Domain * @ingroup iv * Structures for OpenMAX IL Video domain * @{ */ #ifdef __cplusplus extern "C" { #endif /* __cplusplus */ /** * Each OMX header must include all required header files to allow the * header to compile without errors. The includes below are required * for this header file to compile successfully */ #include /** * Enumeration used to define the possible video compression codings. * NOTE: This essentially refers to file extensions. If the coding is * being used to specify the ENCODE type, then additional work * must be done to configure the exact flavor of the compression * to be used. For decode cases where the user application can * not differentiate between MPEG-4 and H.264 bit streams, it is * up to the codec to handle this. */ typedef enum OMX_VIDEO_CODINGTYPE { OMX_VIDEO_CodingUnused, /**< Value when coding is N/A */ OMX_VIDEO_CodingAutoDetect, /**< Autodetection of coding type */ OMX_VIDEO_CodingMPEG2, /**< AKA: H.262 */ OMX_VIDEO_CodingH263, /**< H.263 */ OMX_VIDEO_CodingMPEG4, /**< MPEG-4 */ OMX_VIDEO_CodingWMV, /**< all versions of Windows Media Video */ OMX_VIDEO_CodingRV, /**< all versions of Real Video */ OMX_VIDEO_CodingAVC, /**< H.264/AVC */ OMX_VIDEO_CodingMJPEG, /**< Motion JPEG */ OMX_VIDEO_CodingKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_VIDEO_CodingVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_CodingMax = 0x7FFFFFFF } OMX_VIDEO_CODINGTYPE; /** * Data structure used to define a video path. The number of Video paths for * input and output will vary by type of the Video component. * * Input (aka Source) : zero Inputs, one Output, * Splitter : one Input, 2 or more Outputs, * Processing Element : one Input, one output, * Mixer : 2 or more inputs, one output, * Output (aka Sink) : one Input, zero outputs. * * The PortDefinition structure is used to define all of the parameters * necessary for the compliant component to setup an input or an output video * path. If additional vendor specific data is required, it should be * transmitted to the component using the CustomCommand function. Compliant * components will prepopulate this structure with optimal values during the * GetDefaultInitParams command. * * STRUCT MEMBERS: * cMIMEType : MIME type of data for the port * pNativeRender : Platform specific reference for a display if a * sync, otherwise this field is 0 * nFrameWidth : Width of frame to be used on channel if * uncompressed format is used. Use 0 for unknown, * don't care or variable * nFrameHeight : Height of frame to be used on channel if * uncompressed format is used. Use 0 for unknown, * don't care or variable * nStride : Number of bytes per span of an image * (i.e. indicates the number of bytes to get * from span N to span N+1, where negative stride * indicates the image is bottom up * nSliceHeight : Height used when encoding in slices * nBitrate : Bit rate of frame to be used on channel if * compressed format is used. Use 0 for unknown, * don't care or variable * xFramerate : Frame rate to be used on channel if uncompressed * format is used. Use 0 for unknown, don't care or * variable. Units are Q16 frames per second. * bFlagErrorConcealment : Turns on error concealment if it is supported by * the OMX component * eCompressionFormat : Compression format used in this instance of the * component. When OMX_VIDEO_CodingUnused is * specified, eColorFormat is used * eColorFormat : Decompressed format used by this component * pNativeWindow : Platform specific reference for a window object if a * display sink , otherwise this field is 0x0. */ typedef struct OMX_VIDEO_PORTDEFINITIONTYPE { OMX_STRING cMIMEType; OMX_NATIVE_DEVICETYPE pNativeRender; OMX_U32 nFrameWidth; OMX_U32 nFrameHeight; OMX_S32 nStride; OMX_U32 nSliceHeight; OMX_U32 nBitrate; OMX_U32 xFramerate; OMX_BOOL bFlagErrorConcealment; OMX_VIDEO_CODINGTYPE eCompressionFormat; OMX_COLOR_FORMATTYPE eColorFormat; OMX_NATIVE_WINDOWTYPE pNativeWindow; } OMX_VIDEO_PORTDEFINITIONTYPE; /** * Port format parameter. This structure is used to enumerate the various * data input/output format supported by the port. * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Indicates which port to set * nIndex : Indicates the enumeration index for the format from * 0x0 to N-1 * eCompressionFormat : Compression format used in this instance of the * component. When OMX_VIDEO_CodingUnused is specified, * eColorFormat is used * eColorFormat : Decompressed format used by this component * xFrameRate : Indicates the video frame rate in Q16 format */ typedef struct OMX_VIDEO_PARAM_PORTFORMATTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nIndex; OMX_VIDEO_CODINGTYPE eCompressionFormat; OMX_COLOR_FORMATTYPE eColorFormat; OMX_U32 xFramerate; } OMX_VIDEO_PARAM_PORTFORMATTYPE; /** * This is a structure for configuring video compression quantization * parameter values. Codecs may support different QP values for different * frame types. * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version info * nPortIndex : Port that this structure applies to * nQpI : QP value to use for index frames * nQpP : QP value to use for P frames * nQpB : QP values to use for bidirectional frames */ typedef struct OMX_VIDEO_PARAM_QUANTIZATIONTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nQpI; OMX_U32 nQpP; OMX_U32 nQpB; } OMX_VIDEO_PARAM_QUANTIZATIONTYPE; /** * Structure for configuration of video fast update parameters. * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version info * nPortIndex : Port that this structure applies to * bEnableVFU : Enable/Disable video fast update * nFirstGOB : Specifies the number of the first macroblock row * nFirstMB : specifies the first MB relative to the specified first GOB * nNumMBs : Specifies the number of MBs to be refreshed from nFirstGOB * and nFirstMB */ typedef struct OMX_VIDEO_PARAM_VIDEOFASTUPDATETYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_BOOL bEnableVFU; OMX_U32 nFirstGOB; OMX_U32 nFirstMB; OMX_U32 nNumMBs; } OMX_VIDEO_PARAM_VIDEOFASTUPDATETYPE; /** * Enumeration of possible bitrate control types */ typedef enum OMX_VIDEO_CONTROLRATETYPE { OMX_Video_ControlRateDisable, OMX_Video_ControlRateVariable, OMX_Video_ControlRateConstant, OMX_Video_ControlRateVariableSkipFrames, OMX_Video_ControlRateConstantSkipFrames, OMX_Video_ControlRateKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_Video_ControlRateVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_Video_ControlRateMax = 0x7FFFFFFF } OMX_VIDEO_CONTROLRATETYPE; /** * Structure for configuring bitrate mode of a codec. * * STRUCT MEMBERS: * nSize : Size of the struct in bytes * nVersion : OMX spec version info * nPortIndex : Port that this struct applies to * eControlRate : Control rate type enum * nTargetBitrate : Target bitrate to encode with */ typedef struct OMX_VIDEO_PARAM_BITRATETYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_VIDEO_CONTROLRATETYPE eControlRate; OMX_U32 nTargetBitrate; } OMX_VIDEO_PARAM_BITRATETYPE; /** * Enumeration of possible motion vector (MV) types */ typedef enum OMX_VIDEO_MOTIONVECTORTYPE { OMX_Video_MotionVectorPixel, OMX_Video_MotionVectorHalfPel, OMX_Video_MotionVectorQuarterPel, OMX_Video_MotionVectorEighthPel, OMX_Video_MotionVectorKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_Video_MotionVectorVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_Video_MotionVectorMax = 0x7FFFFFFF } OMX_VIDEO_MOTIONVECTORTYPE; /** * Structure for configuring the number of motion vectors used as well * as their accuracy. * * STRUCT MEMBERS: * nSize : Size of the struct in bytes * nVersion : OMX spec version info * nPortIndex : port that this structure applies to * eAccuracy : Enumerated MV accuracy * bUnrestrictedMVs : Allow unrestricted MVs * bFourMV : Allow use of 4 MVs * sXSearchRange : Search range in horizontal direction for MVs * sYSearchRange : Search range in vertical direction for MVs */ typedef struct OMX_VIDEO_PARAM_MOTIONVECTORTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_VIDEO_MOTIONVECTORTYPE eAccuracy; OMX_BOOL bUnrestrictedMVs; OMX_BOOL bFourMV; OMX_S32 sXSearchRange; OMX_S32 sYSearchRange; } OMX_VIDEO_PARAM_MOTIONVECTORTYPE; /** * Enumeration of possible methods to use for Intra Refresh */ typedef enum OMX_VIDEO_INTRAREFRESHTYPE { OMX_VIDEO_IntraRefreshCyclic, OMX_VIDEO_IntraRefreshAdaptive, OMX_VIDEO_IntraRefreshBoth, OMX_VIDEO_IntraRefreshKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_VIDEO_IntraRefreshVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_IntraRefreshMax = 0x7FFFFFFF } OMX_VIDEO_INTRAREFRESHTYPE; /** * Structure for configuring intra refresh mode * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * eRefreshMode : Cyclic, Adaptive, or Both * nAirMBs : Number of intra macroblocks to refresh in a frame when * AIR is enabled * nAirRef : Number of times a motion marked macroblock has to be * intra coded * nCirMBs : Number of consecutive macroblocks to be coded as "intra" * when CIR is enabled */ typedef struct OMX_VIDEO_PARAM_INTRAREFRESHTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_VIDEO_INTRAREFRESHTYPE eRefreshMode; OMX_U32 nAirMBs; OMX_U32 nAirRef; OMX_U32 nCirMBs; } OMX_VIDEO_PARAM_INTRAREFRESHTYPE; /** * Structure for enabling various error correction methods for video * compression. * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * bEnableHEC : Enable/disable header extension codes (HEC) * bEnableResync : Enable/disable resynchronization markers * nResynchMarkerSpacing : Resynch markers interval (in bits) to be * applied in the stream * bEnableDataPartitioning : Enable/disable data partitioning * bEnableRVLC : Enable/disable reversible variable length * coding */ typedef struct OMX_VIDEO_PARAM_ERRORCORRECTIONTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_BOOL bEnableHEC; OMX_BOOL bEnableResync; OMX_U32 nResynchMarkerSpacing; OMX_BOOL bEnableDataPartitioning; OMX_BOOL bEnableRVLC; } OMX_VIDEO_PARAM_ERRORCORRECTIONTYPE; /** * Configuration of variable block-size motion compensation (VBSMC) * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * b16x16 : Enable inter block search 16x16 * b16x8 : Enable inter block search 16x8 * b8x16 : Enable inter block search 8x16 * b8x8 : Enable inter block search 8x8 * b8x4 : Enable inter block search 8x4 * b4x8 : Enable inter block search 4x8 * b4x4 : Enable inter block search 4x4 */ typedef struct OMX_VIDEO_PARAM_VBSMCTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_BOOL b16x16; OMX_BOOL b16x8; OMX_BOOL b8x16; OMX_BOOL b8x8; OMX_BOOL b8x4; OMX_BOOL b4x8; OMX_BOOL b4x4; } OMX_VIDEO_PARAM_VBSMCTYPE; /** * H.263 profile types, each profile indicates support for various * performance bounds and different annexes. * * ENUMS: * Baseline : Baseline Profile: H.263 (V1), no optional modes * H320 Coding : H.320 Coding Efficiency Backward Compatibility * Profile: H.263+ (V2), includes annexes I, J, L.4 * and T * BackwardCompatible : Backward Compatibility Profile: H.263 (V1), * includes annex F * ISWV2 : Interactive Streaming Wireless Profile: H.263+ * (V2), includes annexes I, J, K and T * ISWV3 : Interactive Streaming Wireless Profile: H.263++ * (V3), includes profile 3 and annexes V and W.6.3.8 * HighCompression : Conversational High Compression Profile: H.263++ * (V3), includes profiles 1 & 2 and annexes D and U * Internet : Conversational Internet Profile: H.263++ (V3), * includes profile 5 and annex K * Interlace : Conversational Interlace Profile: H.263++ (V3), * includes profile 5 and annex W.6.3.11 * HighLatency : High Latency Profile: H.263++ (V3), includes * profile 6 and annexes O.1 and P.5 */ typedef enum OMX_VIDEO_H263PROFILETYPE { OMX_VIDEO_H263ProfileBaseline = 0x01, OMX_VIDEO_H263ProfileH320Coding = 0x02, OMX_VIDEO_H263ProfileBackwardCompatible = 0x04, OMX_VIDEO_H263ProfileISWV2 = 0x08, OMX_VIDEO_H263ProfileISWV3 = 0x10, OMX_VIDEO_H263ProfileHighCompression = 0x20, OMX_VIDEO_H263ProfileInternet = 0x40, OMX_VIDEO_H263ProfileInterlace = 0x80, OMX_VIDEO_H263ProfileHighLatency = 0x100, OMX_VIDEO_H263ProfileKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_VIDEO_H263ProfileVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_H263ProfileMax = 0x7FFFFFFF } OMX_VIDEO_H263PROFILETYPE; /** * H.263 level types, each level indicates support for various frame sizes, * bit rates, decoder frame rates. */ typedef enum OMX_VIDEO_H263LEVELTYPE { OMX_VIDEO_H263Level10 = 0x01, OMX_VIDEO_H263Level20 = 0x02, OMX_VIDEO_H263Level30 = 0x04, OMX_VIDEO_H263Level40 = 0x08, OMX_VIDEO_H263Level45 = 0x10, OMX_VIDEO_H263Level50 = 0x20, OMX_VIDEO_H263Level60 = 0x40, OMX_VIDEO_H263Level70 = 0x80, OMX_VIDEO_H263LevelKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_VIDEO_H263LevelVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_H263LevelMax = 0x7FFFFFFF } OMX_VIDEO_H263LEVELTYPE; /** * Specifies the picture type. These values should be OR'd to signal all * pictures types which are allowed. * * ENUMS: * Generic Picture Types: I, P and B * H.263 Specific Picture Types: SI and SP * H.264 Specific Picture Types: EI and EP * MPEG-4 Specific Picture Types: S */ typedef enum OMX_VIDEO_PICTURETYPE { OMX_VIDEO_PictureTypeI = 0x01, OMX_VIDEO_PictureTypeP = 0x02, OMX_VIDEO_PictureTypeB = 0x04, OMX_VIDEO_PictureTypeSI = 0x08, OMX_VIDEO_PictureTypeSP = 0x10, OMX_VIDEO_PictureTypeEI = 0x11, OMX_VIDEO_PictureTypeEP = 0x12, OMX_VIDEO_PictureTypeS = 0x14, OMX_VIDEO_PictureTypeKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_VIDEO_PictureTypeVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_PictureTypeMax = 0x7FFFFFFF } OMX_VIDEO_PICTURETYPE; /** * H.263 Params * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nPFrames : Number of P frames between each I frame * nBFrames : Number of B frames between each I frame * eProfile : H.263 profile(s) to use * eLevel : H.263 level(s) to use * bPLUSPTYPEAllowed : Indicating that it is allowed to use PLUSPTYPE * (specified in the 1998 version of H.263) to * indicate custom picture sizes or clock * frequencies * nAllowedPictureTypes : Specifies the picture types allowed in the * bitstream * bForceRoundingTypeToZero : value of the RTYPE bit (bit 6 of MPPTYPE) is * not constrained. It is recommended to change * the value of the RTYPE bit for each reference * picture in error-free communication * nPictureHeaderRepetition : Specifies the frequency of picture header * repetition * nGOBHeaderInterval : Specifies the interval of non-empty GOB * headers in units of GOBs */ typedef struct OMX_VIDEO_PARAM_H263TYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nPFrames; OMX_U32 nBFrames; OMX_VIDEO_H263PROFILETYPE eProfile; OMX_VIDEO_H263LEVELTYPE eLevel; OMX_BOOL bPLUSPTYPEAllowed; OMX_U32 nAllowedPictureTypes; OMX_BOOL bForceRoundingTypeToZero; OMX_U32 nPictureHeaderRepetition; OMX_U32 nGOBHeaderInterval; } OMX_VIDEO_PARAM_H263TYPE; /** * MPEG-2 profile types, each profile indicates support for various * performance bounds and different annexes. */ typedef enum OMX_VIDEO_MPEG2PROFILETYPE { OMX_VIDEO_MPEG2ProfileSimple = 0, /**< Simple Profile */ OMX_VIDEO_MPEG2ProfileMain, /**< Main Profile */ OMX_VIDEO_MPEG2Profile422, /**< 4:2:2 Profile */ OMX_VIDEO_MPEG2ProfileSNR, /**< SNR Profile */ OMX_VIDEO_MPEG2ProfileSpatial, /**< Spatial Profile */ OMX_VIDEO_MPEG2ProfileHigh, /**< High Profile */ OMX_VIDEO_MPEG2ProfileKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_VIDEO_MPEG2ProfileVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_MPEG2ProfileMax = 0x7FFFFFFF } OMX_VIDEO_MPEG2PROFILETYPE; /** * MPEG-2 level types, each level indicates support for various frame * sizes, bit rates, decoder frame rates. No need */ typedef enum OMX_VIDEO_MPEG2LEVELTYPE { OMX_VIDEO_MPEG2LevelLL = 0, /**< Low Level */ OMX_VIDEO_MPEG2LevelML, /**< Main Level */ OMX_VIDEO_MPEG2LevelH14, /**< High 1440 */ OMX_VIDEO_MPEG2LevelHL, /**< High Level */ OMX_VIDEO_MPEG2LevelKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_VIDEO_MPEG2LevelVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_MPEG2LevelMax = 0x7FFFFFFF } OMX_VIDEO_MPEG2LEVELTYPE; /** * MPEG-2 params * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nPFrames : Number of P frames between each I frame * nBFrames : Number of B frames between each I frame * eProfile : MPEG-2 profile(s) to use * eLevel : MPEG-2 levels(s) to use */ typedef struct OMX_VIDEO_PARAM_MPEG2TYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nPFrames; OMX_U32 nBFrames; OMX_VIDEO_MPEG2PROFILETYPE eProfile; OMX_VIDEO_MPEG2LEVELTYPE eLevel; } OMX_VIDEO_PARAM_MPEG2TYPE; /** * MPEG-4 profile types, each profile indicates support for various * performance bounds and different annexes. * * ENUMS: * - Simple Profile, Levels 1-3 * - Simple Scalable Profile, Levels 1-2 * - Core Profile, Levels 1-2 * - Main Profile, Levels 2-4 * - N-bit Profile, Level 2 * - Scalable Texture Profile, Level 1 * - Simple Face Animation Profile, Levels 1-2 * - Simple Face and Body Animation (FBA) Profile, Levels 1-2 * - Basic Animated Texture Profile, Levels 1-2 * - Hybrid Profile, Levels 1-2 * - Advanced Real Time Simple Profiles, Levels 1-4 * - Core Scalable Profile, Levels 1-3 * - Advanced Coding Efficiency Profile, Levels 1-4 * - Advanced Core Profile, Levels 1-2 * - Advanced Scalable Texture, Levels 2-3 */ typedef enum OMX_VIDEO_MPEG4PROFILETYPE { OMX_VIDEO_MPEG4ProfileSimple = 0x01, OMX_VIDEO_MPEG4ProfileSimpleScalable = 0x02, OMX_VIDEO_MPEG4ProfileCore = 0x04, OMX_VIDEO_MPEG4ProfileMain = 0x08, OMX_VIDEO_MPEG4ProfileNbit = 0x10, OMX_VIDEO_MPEG4ProfileScalableTexture = 0x20, OMX_VIDEO_MPEG4ProfileSimpleFace = 0x40, OMX_VIDEO_MPEG4ProfileSimpleFBA = 0x80, OMX_VIDEO_MPEG4ProfileBasicAnimated = 0x100, OMX_VIDEO_MPEG4ProfileHybrid = 0x200, OMX_VIDEO_MPEG4ProfileAdvancedRealTime = 0x400, OMX_VIDEO_MPEG4ProfileCoreScalable = 0x800, OMX_VIDEO_MPEG4ProfileAdvancedCoding = 0x1000, OMX_VIDEO_MPEG4ProfileAdvancedCore = 0x2000, OMX_VIDEO_MPEG4ProfileAdvancedScalable = 0x4000, OMX_VIDEO_MPEG4ProfileAdvancedSimple = 0x8000, OMX_VIDEO_MPEG4ProfileKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_VIDEO_MPEG4ProfileVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_MPEG4ProfileMax = 0x7FFFFFFF } OMX_VIDEO_MPEG4PROFILETYPE; /** * MPEG-4 level types, each level indicates support for various frame * sizes, bit rates, decoder frame rates. No need */ typedef enum OMX_VIDEO_MPEG4LEVELTYPE { OMX_VIDEO_MPEG4Level0 = 0x01, /**< Level 0 */ OMX_VIDEO_MPEG4Level0b = 0x02, /**< Level 0b */ OMX_VIDEO_MPEG4Level1 = 0x04, /**< Level 1 */ OMX_VIDEO_MPEG4Level2 = 0x08, /**< Level 2 */ OMX_VIDEO_MPEG4Level3 = 0x10, /**< Level 3 */ OMX_VIDEO_MPEG4Level4 = 0x20, /**< Level 4 */ OMX_VIDEO_MPEG4Level4a = 0x40, /**< Level 4a */ OMX_VIDEO_MPEG4Level5 = 0x80, /**< Level 5 */ OMX_VIDEO_MPEG4LevelKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_VIDEO_MPEG4LevelVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_MPEG4LevelMax = 0x7FFFFFFF } OMX_VIDEO_MPEG4LEVELTYPE; /** * MPEG-4 configuration. This structure handles configuration options * which are specific to MPEG4 algorithms * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nSliceHeaderSpacing : Number of macroblocks between slice header (H263+ * Annex K). Put zero if not used * bSVH : Enable Short Video Header mode * bGov : Flag to enable GOV * nPFrames : Number of P frames between each I frame (also called * GOV period) * nBFrames : Number of B frames between each I frame * nIDCVLCThreshold : Value of intra DC VLC threshold * bACPred : Flag to use ac prediction * nMaxPacketSize : Maximum size of packet in bytes. * nTimeIncRes : Used to pass VOP time increment resolution for MPEG4. * Interpreted as described in MPEG4 standard. * eProfile : MPEG-4 profile(s) to use. * eLevel : MPEG-4 level(s) to use. * nAllowedPictureTypes : Specifies the picture types allowed in the bitstream * nHeaderExtension : Specifies the number of consecutive video packet * headers within a VOP * bReversibleVLC : Specifies whether reversible variable length coding * is in use */ typedef struct OMX_VIDEO_PARAM_MPEG4TYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nSliceHeaderSpacing; OMX_BOOL bSVH; OMX_BOOL bGov; OMX_U32 nPFrames; OMX_U32 nBFrames; OMX_U32 nIDCVLCThreshold; OMX_BOOL bACPred; OMX_U32 nMaxPacketSize; OMX_U32 nTimeIncRes; OMX_VIDEO_MPEG4PROFILETYPE eProfile; OMX_VIDEO_MPEG4LEVELTYPE eLevel; OMX_U32 nAllowedPictureTypes; OMX_U32 nHeaderExtension; OMX_BOOL bReversibleVLC; } OMX_VIDEO_PARAM_MPEG4TYPE; /** * WMV Versions */ typedef enum OMX_VIDEO_WMVFORMATTYPE { OMX_VIDEO_WMVFormatUnused = 0x01, /**< Format unused or unknown */ OMX_VIDEO_WMVFormat7 = 0x02, /**< Windows Media Video format 7 */ OMX_VIDEO_WMVFormat8 = 0x04, /**< Windows Media Video format 8 */ OMX_VIDEO_WMVFormat9 = 0x08, /**< Windows Media Video format 9 */ OMX_VIDEO_WMFFormatKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_VIDEO_WMFFormatVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_WMVFormatMax = 0x7FFFFFFF } OMX_VIDEO_WMVFORMATTYPE; /** * WMV Params * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * eFormat : Version of WMV stream / data */ typedef struct OMX_VIDEO_PARAM_WMVTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_VIDEO_WMVFORMATTYPE eFormat; } OMX_VIDEO_PARAM_WMVTYPE; /** * Real Video Version */ typedef enum OMX_VIDEO_RVFORMATTYPE { OMX_VIDEO_RVFormatUnused = 0, /**< Format unused or unknown */ OMX_VIDEO_RVFormat8, /**< Real Video format 8 */ OMX_VIDEO_RVFormat9, /**< Real Video format 9 */ OMX_VIDEO_RVFormatG2, /**< Real Video Format G2 */ OMX_VIDEO_RVFormatKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_VIDEO_RVFormatVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_RVFormatMax = 0x7FFFFFFF } OMX_VIDEO_RVFORMATTYPE; /** * Real Video Params * * STUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * eFormat : Version of RV stream / data * nBitsPerPixel : Bits per pixel coded in the frame * nPaddedWidth : Padded width in pixel of a video frame * nPaddedHeight : Padded Height in pixels of a video frame * nFrameRate : Rate of video in frames per second * nBitstreamFlags : Flags which internal information about the bitstream * nBitstreamVersion : Bitstream version * nMaxEncodeFrameSize: Max encoded frame size * bEnablePostFilter : Turn on/off post filter * bEnableTemporalInterpolation : Turn on/off temporal interpolation * bEnableLatencyMode : When enabled, the decoder does not display a decoded * frame until it has detected that no enhancement layer * frames or dependent B frames will be coming. This * detection usually occurs when a subsequent non-B * frame is encountered */ typedef struct OMX_VIDEO_PARAM_RVTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_VIDEO_RVFORMATTYPE eFormat; OMX_U16 nBitsPerPixel; OMX_U16 nPaddedWidth; OMX_U16 nPaddedHeight; OMX_U32 nFrameRate; OMX_U32 nBitstreamFlags; OMX_U32 nBitstreamVersion; OMX_U32 nMaxEncodeFrameSize; OMX_BOOL bEnablePostFilter; OMX_BOOL bEnableTemporalInterpolation; OMX_BOOL bEnableLatencyMode; } OMX_VIDEO_PARAM_RVTYPE; /** * AVC profile types, each profile indicates support for various * performance bounds and different annexes. */ typedef enum OMX_VIDEO_AVCPROFILETYPE { OMX_VIDEO_AVCProfileBaseline = 0x01, /**< Baseline profile */ OMX_VIDEO_AVCProfileMain = 0x02, /**< Main profile */ OMX_VIDEO_AVCProfileExtended = 0x04, /**< Extended profile */ OMX_VIDEO_AVCProfileHigh = 0x08, /**< High profile */ OMX_VIDEO_AVCProfileHigh10 = 0x10, /**< High 10 profile */ OMX_VIDEO_AVCProfileHigh422 = 0x20, /**< High 4:2:2 profile */ OMX_VIDEO_AVCProfileHigh444 = 0x40, /**< High 4:4:4 profile */ OMX_VIDEO_AVCProfileKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_VIDEO_AVCProfileVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_AVCProfileMax = 0x7FFFFFFF } OMX_VIDEO_AVCPROFILETYPE; /** * AVC level types, each level indicates support for various frame sizes, * bit rates, decoder frame rates. No need */ typedef enum OMX_VIDEO_AVCLEVELTYPE { OMX_VIDEO_AVCLevel1 = 0x01, /**< Level 1 */ OMX_VIDEO_AVCLevel1b = 0x02, /**< Level 1b */ OMX_VIDEO_AVCLevel11 = 0x04, /**< Level 1.1 */ OMX_VIDEO_AVCLevel12 = 0x08, /**< Level 1.2 */ OMX_VIDEO_AVCLevel13 = 0x10, /**< Level 1.3 */ OMX_VIDEO_AVCLevel2 = 0x20, /**< Level 2 */ OMX_VIDEO_AVCLevel21 = 0x40, /**< Level 2.1 */ OMX_VIDEO_AVCLevel22 = 0x80, /**< Level 2.2 */ OMX_VIDEO_AVCLevel3 = 0x100, /**< Level 3 */ OMX_VIDEO_AVCLevel31 = 0x200, /**< Level 3.1 */ OMX_VIDEO_AVCLevel32 = 0x400, /**< Level 3.2 */ OMX_VIDEO_AVCLevel4 = 0x800, /**< Level 4 */ OMX_VIDEO_AVCLevel41 = 0x1000, /**< Level 4.1 */ OMX_VIDEO_AVCLevel42 = 0x2000, /**< Level 4.2 */ OMX_VIDEO_AVCLevel5 = 0x4000, /**< Level 5 */ OMX_VIDEO_AVCLevel51 = 0x8000, /**< Level 5.1 */ OMX_VIDEO_AVCLevelKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_VIDEO_AVCLevelVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_AVCLevelMax = 0x7FFFFFFF } OMX_VIDEO_AVCLEVELTYPE; /** * AVC loop filter modes * * OMX_VIDEO_AVCLoopFilterEnable : Enable * OMX_VIDEO_AVCLoopFilterDisable : Disable * OMX_VIDEO_AVCLoopFilterDisableSliceBoundary : Disabled on slice boundaries */ typedef enum OMX_VIDEO_AVCLOOPFILTERTYPE { OMX_VIDEO_AVCLoopFilterEnable = 0, OMX_VIDEO_AVCLoopFilterDisable, OMX_VIDEO_AVCLoopFilterDisableSliceBoundary, OMX_VIDEO_AVCLoopFilterKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_VIDEO_AVCLoopFilterVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_AVCLoopFilterMax = 0x7FFFFFFF } OMX_VIDEO_AVCLOOPFILTERTYPE; /** * AVC params * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nSliceHeaderSpacing : Number of macroblocks between slice header, put * zero if not used * nPFrames : Number of P frames between each I frame * nBFrames : Number of B frames between each I frame * bUseHadamard : Enable/disable Hadamard transform * nRefFrames : Max number of reference frames to use for inter * motion search (1-16) * nRefIdxTrailing : Pic param set ref frame index (index into ref * frame buffer of trailing frames list), B frame * support * nRefIdxForward : Pic param set ref frame index (index into ref * frame buffer of forward frames list), B frame * support * bEnableUEP : Enable/disable unequal error protection. This * is only valid of data partitioning is enabled. * bEnableFMO : Enable/disable flexible macroblock ordering * bEnableASO : Enable/disable arbitrary slice ordering * bEnableRS : Enable/disable sending of redundant slices * eProfile : AVC profile(s) to use * eLevel : AVC level(s) to use * nAllowedPictureTypes : Specifies the picture types allowed in the * bitstream * bFrameMBsOnly : specifies that every coded picture of the * coded video sequence is a coded frame * containing only frame macroblocks * bMBAFF : Enable/disable switching between frame and * field macroblocks within a picture * bEntropyCodingCABAC : Entropy decoding method to be applied for the * syntax elements for which two descriptors appear * in the syntax tables * bWeightedPPrediction : Enable/disable weighted prediction shall not * be applied to P and SP slices * nWeightedBipredicitonMode : Default weighted prediction is applied to B * slices * bconstIpred : Enable/disable intra prediction * bDirect8x8Inference : Specifies the method used in the derivation * process for luma motion vectors for B_Skip, * B_Direct_16x16 and B_Direct_8x8 as specified * in subclause 8.4.1.2 of the AVC spec * bDirectSpatialTemporal : Flag indicating spatial or temporal direct * mode used in B slice coding (related to * bDirect8x8Inference) . Spatial direct mode is * more common and should be the default. * nCabacInitIdx : Index used to init CABAC contexts * eLoopFilterMode : Enable/disable loop filter */ typedef struct OMX_VIDEO_PARAM_AVCTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nSliceHeaderSpacing; OMX_U32 nPFrames; OMX_U32 nBFrames; OMX_BOOL bUseHadamard; OMX_U32 nRefFrames; OMX_U32 nRefIdx10ActiveMinus1; OMX_U32 nRefIdx11ActiveMinus1; OMX_BOOL bEnableUEP; OMX_BOOL bEnableFMO; OMX_BOOL bEnableASO; OMX_BOOL bEnableRS; OMX_VIDEO_AVCPROFILETYPE eProfile; OMX_VIDEO_AVCLEVELTYPE eLevel; OMX_U32 nAllowedPictureTypes; OMX_BOOL bFrameMBsOnly; OMX_BOOL bMBAFF; OMX_BOOL bEntropyCodingCABAC; OMX_BOOL bWeightedPPrediction; OMX_U32 nWeightedBipredicitonMode; OMX_BOOL bconstIpred ; OMX_BOOL bDirect8x8Inference; OMX_BOOL bDirectSpatialTemporal; OMX_U32 nCabacInitIdc; OMX_VIDEO_AVCLOOPFILTERTYPE eLoopFilterMode; } OMX_VIDEO_PARAM_AVCTYPE; typedef struct OMX_VIDEO_PARAM_PROFILELEVELTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 eProfile; /**< type is OMX_VIDEO_AVCPROFILETYPE, OMX_VIDEO_H263PROFILETYPE, or OMX_VIDEO_MPEG4PROFILETYPE depending on context */ OMX_U32 eLevel; /**< type is OMX_VIDEO_AVCLEVELTYPE, OMX_VIDEO_H263LEVELTYPE, or OMX_VIDEO_MPEG4PROFILETYPE depending on context */ OMX_U32 nProfileIndex; /**< Used to query for individual profile support information, This parameter is valid only for OMX_IndexParamVideoProfileLevelQuerySupported index, For all other indices this parameter is to be ignored. */ } OMX_VIDEO_PARAM_PROFILELEVELTYPE; /** * Structure for dynamically configuring bitrate mode of a codec. * * STRUCT MEMBERS: * nSize : Size of the struct in bytes * nVersion : OMX spec version info * nPortIndex : Port that this struct applies to * nEncodeBitrate : Target average bitrate to be generated in bps */ typedef struct OMX_VIDEO_CONFIG_BITRATETYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nEncodeBitrate; } OMX_VIDEO_CONFIG_BITRATETYPE; /** * Defines Encoder Frame Rate setting * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * xEncodeFramerate : Encoding framerate represented in Q16 format */ typedef struct OMX_CONFIG_FRAMERATETYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 xEncodeFramerate; /* Q16 format */ } OMX_CONFIG_FRAMERATETYPE; typedef struct OMX_CONFIG_INTRAREFRESHVOPTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_BOOL IntraRefreshVOP; } OMX_CONFIG_INTRAREFRESHVOPTYPE; typedef struct OMX_CONFIG_MACROBLOCKERRORMAPTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nErrMapSize; /* Size of the Error Map in bytes */ OMX_U8 ErrMap[1]; /* Error map hint */ } OMX_CONFIG_MACROBLOCKERRORMAPTYPE; typedef struct OMX_CONFIG_MBERRORREPORTINGTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_BOOL bEnabled; } OMX_CONFIG_MBERRORREPORTINGTYPE; typedef struct OMX_PARAM_MACROBLOCKSTYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nMacroblocks; } OMX_PARAM_MACROBLOCKSTYPE; /** * AVC Slice Mode modes * * OMX_VIDEO_SLICEMODE_AVCDefault : Normal frame encoding, one slice per frame * OMX_VIDEO_SLICEMODE_AVCMBSlice : NAL mode, number of MBs per frame * OMX_VIDEO_SLICEMODE_AVCByteSlice : NAL mode, number of bytes per frame */ typedef enum OMX_VIDEO_AVCSLICEMODETYPE { OMX_VIDEO_SLICEMODE_AVCDefault = 0, OMX_VIDEO_SLICEMODE_AVCMBSlice, OMX_VIDEO_SLICEMODE_AVCByteSlice, OMX_VIDEO_SLICEMODE_AVCKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_VIDEO_SLICEMODE_AVCVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_VIDEO_SLICEMODE_AVCLevelMax = 0x7FFFFFFF } OMX_VIDEO_AVCSLICEMODETYPE; /** * AVC FMO Slice Mode Params * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nNumSliceGroups : Specifies the number of slice groups * nSliceGroupMapType : Specifies the type of slice groups * eSliceMode : Specifies the type of slice */ typedef struct OMX_VIDEO_PARAM_AVCSLICEFMO { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U8 nNumSliceGroups; OMX_U8 nSliceGroupMapType; OMX_VIDEO_AVCSLICEMODETYPE eSliceMode; } OMX_VIDEO_PARAM_AVCSLICEFMO; /** * AVC IDR Period Configs * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nIDRPeriod : Specifies periodicity of IDR frames * nPFrames : Specifies internal of coding Intra frames */ typedef struct OMX_VIDEO_CONFIG_AVCINTRAPERIOD { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nIDRPeriod; OMX_U32 nPFrames; } OMX_VIDEO_CONFIG_AVCINTRAPERIOD; /** * AVC NAL Size Configs * * STRUCT MEMBERS: * nSize : Size of the structure in bytes * nVersion : OMX specification version information * nPortIndex : Port that this structure applies to * nNaluBytes : Specifies the NAL unit size */ typedef struct OMX_VIDEO_CONFIG_NALSIZE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_U32 nNaluBytes; } OMX_VIDEO_CONFIG_NALSIZE; /** @} */ #ifdef __cplusplus } #endif /* __cplusplus */ #endif /* File EOF */ libomxil-bellagio-0.9.3/include/OMX_Types.h0000644000175000017500000003023011513256766015474 00000000000000/* * Copyright (c) 2008 The Khronos Group 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. * */ /** OMX_Types.h - OpenMax IL version 1.1.2 * The OMX_Types header file contains the primitive type definitions used by * the core, the application and the component. This file may need to be * modified to be used on systems that do not have "char" set to 8 bits, * "short" set to 16 bits and "long" set to 32 bits. */ #ifndef OMX_Types_h #define OMX_Types_h #ifdef __cplusplus extern "C" { #endif /* __cplusplus */ /** The OMX_API and OMX_APIENTRY are platform specific definitions used * to declare OMX function prototypes. They are modified to meet the * requirements for a particular platform */ #ifdef __SYMBIAN32__ # ifdef __OMX_EXPORTS # define OMX_API __declspec(dllexport) # else # ifdef _WIN32 # define OMX_API __declspec(dllexport) # else # define OMX_API __declspec(dllimport) # endif # endif #else # ifdef _WIN32 # ifdef __OMX_EXPORTS # define OMX_API __declspec(dllexport) # else # define OMX_API __declspec(dllimport) # endif # else # ifdef __OMX_EXPORTS # define OMX_API # else # define OMX_API extern # endif # endif #endif #ifndef OMX_APIENTRY #define OMX_APIENTRY #endif /** OMX_IN is used to identify inputs to an OMX function. This designation will also be used in the case of a pointer that points to a parameter that is used as an output. */ #ifndef OMX_IN #define OMX_IN #endif /** OMX_OUT is used to identify outputs from an OMX function. This designation will also be used in the case of a pointer that points to a parameter that is used as an input. */ #ifndef OMX_OUT #define OMX_OUT #endif /** OMX_INOUT is used to identify parameters that may be either inputs or outputs from an OMX function at the same time. This designation will also be used in the case of a pointer that points to a parameter that is used both as an input and an output. */ #ifndef OMX_INOUT #define OMX_INOUT #endif /** OMX_ALL is used to as a wildcard to select all entities of the same type * when specifying the index, or referring to a object by an index. (i.e. * use OMX_ALL to indicate all N channels). When used as a port index * for a config or parameter this OMX_ALL denotes that the config or * parameter applies to the entire component not just one port. */ #define OMX_ALL 0xFFFFFFFF /** In the following we define groups that help building doxygen documentation */ /** @defgroup core OpenMAX IL core * Functions and structure related to the OMX IL core */ /** @defgroup comp OpenMAX IL component * Functions and structure related to the OMX IL component */ /** @defgroup rpm Resource and Policy Management * Structures for resource and policy management of components */ /** @defgroup buf Buffer Management * Buffer handling functions and structures */ /** @defgroup tun Tunneling * @ingroup core comp * Structures and functions to manage tunnels among component ports */ /** @defgroup cp Content Pipes * @ingroup core */ /** @defgroup metadata Metadata handling * */ /** OMX_U8 is an 8 bit unsigned quantity that is byte aligned */ typedef unsigned char OMX_U8; /** OMX_S8 is an 8 bit signed quantity that is byte aligned */ typedef signed char OMX_S8; /** OMX_U16 is a 16 bit unsigned quantity that is 16 bit word aligned */ typedef unsigned short OMX_U16; /** OMX_S16 is a 16 bit signed quantity that is 16 bit word aligned */ typedef signed short OMX_S16; /** OMX_U32 is a 32 bit unsigned quantity that is 32 bit word aligned */ typedef unsigned long OMX_U32; /** OMX_S32 is a 32 bit signed quantity that is 32 bit word aligned */ typedef signed long OMX_S32; /* Users with compilers that cannot accept the "long long" designation should define the OMX_SKIP64BIT macro. It should be noted that this may cause some components to fail to compile if the component was written to require 64 bit integral types. However, these components would NOT compile anyway since the compiler does not support the way the component was written. */ #ifndef OMX_SKIP64BIT #ifdef __SYMBIAN32__ /** OMX_U64 is a 64 bit unsigned quantity that is 64 bit word aligned */ typedef unsigned long long OMX_U64; /** OMX_S64 is a 64 bit signed quantity that is 64 bit word aligned */ typedef signed long long OMX_S64; #elif defined(WIN32) /** OMX_U64 is a 64 bit unsigned quantity that is 64 bit word aligned */ typedef unsigned __int64 OMX_U64; /** OMX_S64 is a 64 bit signed quantity that is 64 bit word aligned */ typedef signed __int64 OMX_S64; #else /* WIN32 */ /** OMX_U64 is a 64 bit unsigned quantity that is 64 bit word aligned */ typedef unsigned long long OMX_U64; /** OMX_S64 is a 64 bit signed quantity that is 64 bit word aligned */ typedef signed long long OMX_S64; #endif /* WIN32 */ #endif /** The OMX_BOOL type is intended to be used to represent a true or a false value when passing parameters to and from the OMX core and components. The OMX_BOOL is a 32 bit quantity and is aligned on a 32 bit word boundary. */ typedef enum OMX_BOOL { OMX_FALSE = 0, OMX_TRUE = !OMX_FALSE, OMX_BOOL_MAX = 0x7FFFFFFF } OMX_BOOL; /** The OMX_PTR type is intended to be used to pass pointers between the OMX applications and the OMX Core and components. This is a 32 bit pointer and is aligned on a 32 bit boundary. */ typedef void* OMX_PTR; /** The OMX_STRING type is intended to be used to pass "C" type strings between the application and the core and component. The OMX_STRING type is a 32 bit pointer to a zero terminated string. The pointer is word aligned and the string is byte aligned. */ typedef char* OMX_STRING; /** The OMX_BYTE type is intended to be used to pass arrays of bytes such as buffers between the application and the component and core. The OMX_BYTE type is a 32 bit pointer to a zero terminated string. The pointer is word aligned and the string is byte aligned. */ typedef unsigned char* OMX_BYTE; /** OMX_UUIDTYPE is a very long unique identifier to uniquely identify at runtime. This identifier should be generated by a component in a way that guarantees that every instance of the identifier running on the system is unique. */ typedef unsigned char OMX_UUIDTYPE[128]; /** The OMX_DIRTYPE enumeration is used to indicate if a port is an input or an output port. This enumeration is common across all component types. */ typedef enum OMX_DIRTYPE { OMX_DirInput, /**< Port is an input port */ OMX_DirOutput, /**< Port is an output port */ OMX_DirMax = 0x7FFFFFFF } OMX_DIRTYPE; /** The OMX_ENDIANTYPE enumeration is used to indicate the bit ordering for numerical data (i.e. big endian, or little endian). */ typedef enum OMX_ENDIANTYPE { OMX_EndianBig, /**< big endian */ OMX_EndianLittle, /**< little endian */ OMX_EndianMax = 0x7FFFFFFF } OMX_ENDIANTYPE; /** The OMX_NUMERICALDATATYPE enumeration is used to indicate if data is signed or unsigned */ typedef enum OMX_NUMERICALDATATYPE { OMX_NumericalDataSigned, /**< signed data */ OMX_NumericalDataUnsigned, /**< unsigned data */ OMX_NumercialDataMax = 0x7FFFFFFF } OMX_NUMERICALDATATYPE; /** Unsigned bounded value type */ typedef struct OMX_BU32 { OMX_U32 nValue; /**< actual value */ OMX_U32 nMin; /**< minimum for value (i.e. nValue >= nMin) */ OMX_U32 nMax; /**< maximum for value (i.e. nValue <= nMax) */ } OMX_BU32; /** Signed bounded value type */ typedef struct OMX_BS32 { OMX_S32 nValue; /**< actual value */ OMX_S32 nMin; /**< minimum for value (i.e. nValue >= nMin) */ OMX_S32 nMax; /**< maximum for value (i.e. nValue <= nMax) */ } OMX_BS32; /** Structure representing some time or duration in microseconds. This structure * must be interpreted as a signed 64 bit value. The quantity is signed to accommodate * negative deltas and preroll scenarios. The quantity is represented in microseconds * to accomodate high resolution timestamps (e.g. DVD presentation timestamps based * on a 90kHz clock) and to allow more accurate and synchronized delivery (e.g. * individual audio samples delivered at 192 kHz). The quantity is 64 bit to * accommodate a large dynamic range (signed 32 bit values would allow only for plus * or minus 35 minutes). * * Implementations with limited precision may convert the signed 64 bit value to * a signed 32 bit value internally but risk loss of precision. */ #ifndef OMX_SKIP64BIT typedef OMX_S64 OMX_TICKS; #else typedef struct OMX_TICKS { OMX_U32 nLowPart; /** low bits of the signed 64 bit tick value */ OMX_U32 nHighPart; /** high bits of the signed 64 bit tick value */ } OMX_TICKS; #endif #define OMX_TICKS_PER_SECOND 1000000 /** Define the public interface for the OMX Handle. The core will not use this value internally, but the application should only use this value. */ typedef void* OMX_HANDLETYPE; typedef struct OMX_MARKTYPE { OMX_HANDLETYPE hMarkTargetComponent; /**< The component that will generate a mark event upon processing the mark. */ OMX_PTR pMarkData; /**< Application specific data associated with the mark sent on a mark event to disambiguate this mark from others. */ } OMX_MARKTYPE; /** OMX_NATIVE_DEVICETYPE is used to map a OMX video port to the * platform & operating specific object used to reference the display * or can be used by a audio port for native audio rendering */ typedef void* OMX_NATIVE_DEVICETYPE; /** OMX_NATIVE_WINDOWTYPE is used to map a OMX video port to the * platform & operating specific object used to reference the window */ typedef void* OMX_NATIVE_WINDOWTYPE; /** The OMX_VERSIONTYPE union is used to specify the version for a structure or component. For a component, the version is entirely specified by the component vendor. Components doing the same function from different vendors may or may not have the same version. For structures, the version shall be set by the entity that allocates the structure. For structures specified in the OMX 1.1 specification, the value of the version shall be set to 1.1.0.0 in all cases. Access to the OMX_VERSIONTYPE can be by a single 32 bit access (e.g. by nVersion) or by accessing one of the structure elements to, for example, check only the Major revision. */ typedef union OMX_VERSIONTYPE { struct { OMX_U8 nVersionMajor; /**< Major version accessor element */ OMX_U8 nVersionMinor; /**< Minor version accessor element */ OMX_U8 nRevision; /**< Revision version accessor element */ OMX_U8 nStep; /**< Step version accessor element */ } s; OMX_U32 nVersion; /**< 32 bit value to make accessing the version easily done in a single word size copy/compare operation */ } OMX_VERSIONTYPE; #ifdef __cplusplus } #endif /* __cplusplus */ #endif /* File EOF */ libomxil-bellagio-0.9.3/include/Makefile.in0000644000175000017500000003322511565413753015546 00000000000000# Makefile.in generated by automake 1.11.1 from Makefile.am. # @configure_input@ # Copyright (C) 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, # 2003, 2004, 2005, 2006, 2007, 2008, 2009 Free Software Foundation, # Inc. # This Makefile.in is free software; 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The includes below are required * for this header file to compile successfully */ #include /** The OMX_COMMANDTYPE enumeration is used to specify the action in the * OMX_SendCommand macro. * @ingroup core */ typedef enum OMX_COMMANDTYPE { OMX_CommandStateSet, /**< Change the component state */ OMX_CommandFlush, /**< Flush the data queue(s) of a component */ OMX_CommandPortDisable, /**< Disable a port on a component. */ OMX_CommandPortEnable, /**< Enable a port on a component. */ OMX_CommandMarkBuffer, /**< Mark a component/buffer for observation */ OMX_CommandKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_CommandVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_CommandMax = 0X7FFFFFFF } OMX_COMMANDTYPE; /** The OMX_STATETYPE enumeration is used to indicate or change the component * state. This enumeration reflects the current state of the component when * used with the OMX_GetState macro or becomes the parameter in a state change * command when used with the OMX_SendCommand macro. * * The component will be in the Loaded state after the component is initially * loaded into memory. In the Loaded state, the component is not allowed to * allocate or hold resources other than to build it's internal parameter * and configuration tables. The application will send one or more * SetParameters/GetParameters and SetConfig/GetConfig commands to the * component and the component will record each of these parameter and * configuration changes for use later. When the application sends the * Idle command, the component will acquire the resources needed for the * specified configuration and will transition to the idle state if the * allocation is successful. If the component cannot successfully * transition to the idle state for any reason, the state of the component * shall be fully rolled back to the Loaded state (e.g. all allocated * resources shall be released). When the component receives the command * to go to the Executing state, it shall begin processing buffers by * sending all input buffers it holds to the application. While * the component is in the Idle state, the application may also send the * Pause command. If the component receives the pause command while in the * Idle state, the component shall send all input buffers it holds to the * application, but shall not begin processing buffers. This will allow the * application to prefill buffers. * * @ingroup comp */ typedef enum OMX_STATETYPE { OMX_StateInvalid, /**< component has detected that it's internal data structures are corrupted to the point that it cannot determine it's state properly */ OMX_StateLoaded, /**< component has been loaded but has not completed initialization. The OMX_SetParameter macro and the OMX_GetParameter macro are the only valid macros allowed to be sent to the component in this state. */ OMX_StateIdle, /**< component initialization has been completed successfully and the component is ready to to start. */ OMX_StateExecuting, /**< component has accepted the start command and is processing data (if data is available) */ OMX_StatePause, /**< component has received pause command */ OMX_StateWaitForResources, /**< component is waiting for resources, either after preemption or before it gets the resources requested. See specification for complete details. */ OMX_StateKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_StateVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_StateMax = 0X7FFFFFFF } OMX_STATETYPE; /** The OMX_ERRORTYPE enumeration defines the standard OMX Errors. These * errors should cover most of the common failure cases. However, * vendors are free to add additional error messages of their own as * long as they follow these rules: * 1. Vendor error messages shall be in the range of 0x90000000 to * 0x9000FFFF. * 2. Vendor error messages shall be defined in a header file provided * with the component. No error messages are allowed that are * not defined. */ typedef enum OMX_ERRORTYPE { OMX_ErrorNone = 0, /** There were insufficient resources to perform the requested operation */ OMX_ErrorInsufficientResources = (OMX_S32) 0x80001000, /** There was an error, but the cause of the error could not be determined */ OMX_ErrorUndefined = (OMX_S32) 0x80001001, /** The component name string was not valid */ OMX_ErrorInvalidComponentName = (OMX_S32) 0x80001002, /** No component with the specified name string was found */ OMX_ErrorComponentNotFound = (OMX_S32) 0x80001003, /** The component specified did not have a "OMX_ComponentInit" or "OMX_ComponentDeInit entry point */ OMX_ErrorInvalidComponent = (OMX_S32) 0x80001004, /** One or more parameters were not valid */ OMX_ErrorBadParameter = (OMX_S32) 0x80001005, /** The requested function is not implemented */ OMX_ErrorNotImplemented = (OMX_S32) 0x80001006, /** The buffer was emptied before the next buffer was ready */ OMX_ErrorUnderflow = (OMX_S32) 0x80001007, /** The buffer was not available when it was needed */ OMX_ErrorOverflow = (OMX_S32) 0x80001008, /** The hardware failed to respond as expected */ OMX_ErrorHardware = (OMX_S32) 0x80001009, /** The component is in the state OMX_StateInvalid */ OMX_ErrorInvalidState = (OMX_S32) 0x8000100A, /** Stream is found to be corrupt */ OMX_ErrorStreamCorrupt = (OMX_S32) 0x8000100B, /** Ports being connected are not compatible */ OMX_ErrorPortsNotCompatible = (OMX_S32) 0x8000100C, /** Resources allocated to an idle component have been lost resulting in the component returning to the loaded state */ OMX_ErrorResourcesLost = (OMX_S32) 0x8000100D, /** No more indicies can be enumerated */ OMX_ErrorNoMore = (OMX_S32) 0x8000100E, /** The component detected a version mismatch */ OMX_ErrorVersionMismatch = (OMX_S32) 0x8000100F, /** The component is not ready to return data at this time */ OMX_ErrorNotReady = (OMX_S32) 0x80001010, /** There was a timeout that occurred */ OMX_ErrorTimeout = (OMX_S32) 0x80001011, /** This error occurs when trying to transition into the state you are already in */ OMX_ErrorSameState = (OMX_S32) 0x80001012, /** Resources allocated to an executing or paused component have been preempted, causing the component to return to the idle state */ OMX_ErrorResourcesPreempted = (OMX_S32) 0x80001013, /** A non-supplier port sends this error to the IL client (via the EventHandler callback) during the allocation of buffers (on a transition from the LOADED to the IDLE state or on a port restart) when it deems that it has waited an unusually long time for the supplier to send it an allocated buffer via a UseBuffer call. */ OMX_ErrorPortUnresponsiveDuringAllocation = (OMX_S32) 0x80001014, /** A non-supplier port sends this error to the IL client (via the EventHandler callback) during the deallocation of buffers (on a transition from the IDLE to LOADED state or on a port stop) when it deems that it has waited an unusually long time for the supplier to request the deallocation of a buffer header via a FreeBuffer call. */ OMX_ErrorPortUnresponsiveDuringDeallocation = (OMX_S32) 0x80001015, /** A supplier port sends this error to the IL client (via the EventHandler callback) during the stopping of a port (either on a transition from the IDLE to LOADED state or a port stop) when it deems that it has waited an unusually long time for the non-supplier to return a buffer via an EmptyThisBuffer or FillThisBuffer call. */ OMX_ErrorPortUnresponsiveDuringStop = (OMX_S32) 0x80001016, /** Attempting a state transtion that is not allowed */ OMX_ErrorIncorrectStateTransition = (OMX_S32) 0x80001017, /* Attempting a command that is not allowed during the present state. */ OMX_ErrorIncorrectStateOperation = (OMX_S32) 0x80001018, /** The values encapsulated in the parameter or config structure are not supported. */ OMX_ErrorUnsupportedSetting = (OMX_S32) 0x80001019, /** The parameter or config indicated by the given index is not supported. */ OMX_ErrorUnsupportedIndex = (OMX_S32) 0x8000101A, /** The port index supplied is incorrect. */ OMX_ErrorBadPortIndex = (OMX_S32) 0x8000101B, /** The port has lost one or more of its buffers and it thus unpopulated. */ OMX_ErrorPortUnpopulated = (OMX_S32) 0x8000101C, /** Component suspended due to temporary loss of resources */ OMX_ErrorComponentSuspended = (OMX_S32) 0x8000101D, /** Component suspended due to an inability to acquire dynamic resources */ OMX_ErrorDynamicResourcesUnavailable = (OMX_S32) 0x8000101E, /** When the macroblock error reporting is enabled the component returns new error for every frame that has errors */ OMX_ErrorMbErrorsInFrame = (OMX_S32) 0x8000101F, /** A component reports this error when it cannot parse or determine the format of an input stream. */ OMX_ErrorFormatNotDetected = (OMX_S32) 0x80001020, /** The content open operation failed. */ OMX_ErrorContentPipeOpenFailed = (OMX_S32) 0x80001021, /** The content creation operation failed. */ OMX_ErrorContentPipeCreationFailed = (OMX_S32) 0x80001022, /** Separate table information is being used */ OMX_ErrorSeperateTablesUsed = (OMX_S32) 0x80001023, /** Tunneling is unsupported by the component*/ OMX_ErrorTunnelingUnsupported = (OMX_S32) 0x80001024, OMX_ErrorKhronosExtensions = (OMX_S32)0x8F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_ErrorVendorStartUnused = (OMX_S32)0x90000000, /**< Reserved region for introducing Vendor Extensions */ OMX_ErrorMax = 0x7FFFFFFF } OMX_ERRORTYPE; /** @ingroup core */ typedef OMX_ERRORTYPE (* OMX_COMPONENTINITTYPE)(OMX_IN OMX_HANDLETYPE hComponent); /** @ingroup core */ typedef struct OMX_COMPONENTREGISTERTYPE { const char * pName; /* Component name, 128 byte limit (including '\0') applies */ OMX_COMPONENTINITTYPE pInitialize; /* Component instance initialization function */ } OMX_COMPONENTREGISTERTYPE; /** @ingroup core */ extern OMX_COMPONENTREGISTERTYPE OMX_ComponentRegistered[]; /** @ingroup rpm */ typedef struct OMX_PRIORITYMGMTTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nGroupPriority; /**< Priority of the component group */ OMX_U32 nGroupID; /**< ID of the component group */ } OMX_PRIORITYMGMTTYPE; /* Component name and Role names are limited to 128 characters including the terminating '\0'. */ #define OMX_MAX_STRINGNAME_SIZE 128 /** @ingroup comp */ typedef struct OMX_PARAM_COMPONENTROLETYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U8 cRole[OMX_MAX_STRINGNAME_SIZE]; /**< name of standard component which defines component role */ } OMX_PARAM_COMPONENTROLETYPE; /** End of Stream Buffer Flag: * * A component sets EOS when it has no more data to emit on a particular * output port. Thus an output port shall set EOS on the last buffer it * emits. A component's determination of when an output port should * cease sending data is implemenation specific. * @ingroup buf */ #define OMX_BUFFERFLAG_EOS 0x00000001 /** Start Time Buffer Flag: * * The source of a stream (e.g. a demux component) sets the STARTTIME * flag on the buffer that contains the starting timestamp for the * stream. The starting timestamp corresponds to the first data that * should be displayed at startup or after a seek. * The first timestamp of the stream is not necessarily the start time. * For instance, in the case of a seek to a particular video frame, * the target frame may be an interframe. Thus the first buffer of * the stream will be the intra-frame preceding the target frame and * the starttime will occur with the target frame (with any other * required frames required to reconstruct the target intervening). * * The STARTTIME flag is directly associated with the buffer's * timestamp ' thus its association to buffer data and its * propagation is identical to the timestamp's. * * When a Sync Component client receives a buffer with the * STARTTIME flag it shall perform a SetConfig on its sync port * using OMX_ConfigTimeClientStartTime and passing the buffer's * timestamp. * * @ingroup buf */ #define OMX_BUFFERFLAG_STARTTIME 0x00000002 /** Decode Only Buffer Flag: * * The source of a stream (e.g. a demux component) sets the DECODEONLY * flag on any buffer that should shall be decoded but should not be * displayed. This flag is used, for instance, when a source seeks to * a target interframe that requires the decode of frames preceding the * target to facilitate the target's reconstruction. In this case the * source would emit the frames preceding the target downstream * but mark them as decode only. * * The DECODEONLY is associated with buffer data and propagated in a * manner identical to the buffer timestamp. * * A component that renders data should ignore all buffers with * the DECODEONLY flag set. * * @ingroup buf */ #define OMX_BUFFERFLAG_DECODEONLY 0x00000004 /* Data Corrupt Flag: This flag is set when the IL client believes the data in the associated buffer is corrupt * @ingroup buf */ #define OMX_BUFFERFLAG_DATACORRUPT 0x00000008 /* End of Frame: The buffer contains exactly one end of frame and no data * occurs after the end of frame. This flag is an optional hint. The absence * of this flag does not imply the absence of an end of frame within the buffer. * @ingroup buf */ #define OMX_BUFFERFLAG_ENDOFFRAME 0x00000010 /* Sync Frame Flag: This flag is set when the buffer content contains a coded sync frame ' * a frame that has no dependency on any other frame information * @ingroup buf */ #define OMX_BUFFERFLAG_SYNCFRAME 0x00000020 /* Extra data present flag: there is extra data appended to the data stream * residing in the buffer * @ingroup buf */ #define OMX_BUFFERFLAG_EXTRADATA 0x00000040 /** Codec Config Buffer Flag: * OMX_BUFFERFLAG_CODECCONFIG is an optional flag that is set by an * output port when all bytes in the buffer form part or all of a set of * codec specific configuration data. Examples include SPS/PPS nal units * for OMX_VIDEO_CodingAVC or AudioSpecificConfig data for * OMX_AUDIO_CodingAAC. Any component that for a given stream sets * OMX_BUFFERFLAG_CODECCONFIG shall not mix codec configuration bytes * with frame data in the same buffer, and shall send all buffers * containing codec configuration bytes before any buffers containing * frame data that those configurations bytes describe. * If the stream format for a particular codec has a frame specific * header at the start of each frame, for example OMX_AUDIO_CodingMP3 or * OMX_AUDIO_CodingAAC in ADTS mode, then these shall be presented as * normal without setting OMX_BUFFERFLAG_CODECCONFIG. * @ingroup buf */ #define OMX_BUFFERFLAG_CODECCONFIG 0x00000080 /** @ingroup buf */ typedef struct OMX_BUFFERHEADERTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U8* pBuffer; /**< Pointer to actual block of memory that is acting as the buffer */ OMX_U32 nAllocLen; /**< size of the buffer allocated, in bytes */ OMX_U32 nFilledLen; /**< number of bytes currently in the buffer */ OMX_U32 nOffset; /**< start offset of valid data in bytes from the start of the buffer */ OMX_PTR pAppPrivate; /**< pointer to any data the application wants to associate with this buffer */ OMX_PTR pPlatformPrivate; /**< pointer to any data the platform wants to associate with this buffer */ OMX_PTR pInputPortPrivate; /**< pointer to any data the input port wants to associate with this buffer */ OMX_PTR pOutputPortPrivate; /**< pointer to any data the output port wants to associate with this buffer */ OMX_HANDLETYPE hMarkTargetComponent; /**< The component that will generate a mark event upon processing this buffer. */ OMX_PTR pMarkData; /**< Application specific data associated with the mark sent on a mark event to disambiguate this mark from others. */ OMX_U32 nTickCount; /**< Optional entry that the component and application can update with a tick count when they access the component. This value should be in microseconds. Since this is a value relative to an arbitrary starting point, this value cannot be used to determine absolute time. This is an optional entry and not all components will update it.*/ OMX_TICKS nTimeStamp; /**< Timestamp corresponding to the sample starting at the first logical sample boundary in the buffer. Timestamps of successive samples within the buffer may be inferred by adding the duration of the of the preceding buffer to the timestamp of the preceding buffer.*/ OMX_U32 nFlags; /**< buffer specific flags */ OMX_U32 nOutputPortIndex; /**< The index of the output port (if any) using this buffer */ OMX_U32 nInputPortIndex; /**< The index of the input port (if any) using this buffer */ } OMX_BUFFERHEADERTYPE; /** The OMX_EXTRADATATYPE enumeration is used to define the * possible extra data payload types. * NB: this enum is binary backwards compatible with the previous * OMX_EXTRADATA_QUANT define. This should be replaced with * OMX_ExtraDataQuantization. */ typedef enum OMX_EXTRADATATYPE { OMX_ExtraDataNone = 0, /**< Indicates that no more extra data sections follow */ OMX_ExtraDataQuantization, /**< The data payload contains quantization data */ OMX_ExtraDataKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_ExtraDataVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_ExtraDataMax = 0x7FFFFFFF } OMX_EXTRADATATYPE; typedef struct OMX_OTHER_EXTRADATATYPE { OMX_U32 nSize; OMX_VERSIONTYPE nVersion; OMX_U32 nPortIndex; OMX_EXTRADATATYPE eType; /* Extra Data type */ OMX_U32 nDataSize; /* Size of the supporting data to follow */ OMX_U8 data[1]; /* Supporting data hint */ } OMX_OTHER_EXTRADATATYPE; /** @ingroup comp */ typedef struct OMX_PORT_PARAM_TYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPorts; /**< The number of ports for this component */ OMX_U32 nStartPortNumber; /** first port number for this type of port */ } OMX_PORT_PARAM_TYPE; /** @ingroup comp */ typedef enum OMX_EVENTTYPE { OMX_EventCmdComplete, /**< component has sucessfully completed a command */ OMX_EventError, /**< component has detected an error condition */ OMX_EventMark, /**< component has detected a buffer mark */ OMX_EventPortSettingsChanged, /**< component is reported a port settings change */ OMX_EventBufferFlag, /**< component has detected an EOS */ OMX_EventResourcesAcquired, /**< component has been granted resources and is automatically starting the state change from OMX_StateWaitForResources to OMX_StateIdle. */ OMX_EventComponentResumed, /**< Component resumed due to reacquisition of resources */ OMX_EventDynamicResourcesAvailable, /**< Component has acquired previously unavailable dynamic resources */ OMX_EventPortFormatDetected, /**< Component has detected a supported format. */ OMX_EventKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_EventVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_EventMax = 0x7FFFFFFF } OMX_EVENTTYPE; typedef struct OMX_CALLBACKTYPE { /** The EventHandler method is used to notify the application when an event of interest occurs. Events are defined in the OMX_EVENTTYPE enumeration. Please see that enumeration for details of what will be returned for each type of event. Callbacks should not return an error to the component, so if an error occurs, the application shall handle it internally. This is a blocking call. The application should return from this call within 5 msec to avoid blocking the component for an excessively long period of time. @param hComponent handle of the component to access. This is the component handle returned by the call to the GetHandle function. @param pAppData pointer to an application defined value that was provided in the pAppData parameter to the OMX_GetHandle method for the component. This application defined value is provided so that the application can have a component specific context when receiving the callback. @param eEvent Event that the component wants to notify the application about. @param nData1 nData will be the OMX_ERRORTYPE for an error event and will be an OMX_COMMANDTYPE for a command complete event and OMX_INDEXTYPE for a OMX_PortSettingsChanged event. @param nData2 nData2 will hold further information related to the event. Can be OMX_STATETYPE for a OMX_CommandStateSet command or port index for a OMX_PortSettingsChanged event. Default value is 0 if not used. ) @param pEventData Pointer to additional event-specific data (see spec for meaning). */ OMX_ERRORTYPE (*EventHandler)( OMX_IN OMX_HANDLETYPE hComponent, OMX_IN OMX_PTR pAppData, OMX_IN OMX_EVENTTYPE eEvent, OMX_IN OMX_U32 nData1, OMX_IN OMX_U32 nData2, OMX_IN OMX_PTR pEventData); /** The EmptyBufferDone method is used to return emptied buffers from an input port back to the application for reuse. This is a blocking call so the application should not attempt to refill the buffers during this call, but should queue them and refill them in another thread. There is no error return, so the application shall handle any errors generated internally. The application should return from this call within 5 msec. @param hComponent handle of the component to access. This is the component handle returned by the call to the GetHandle function. @param pAppData pointer to an application defined value that was provided in the pAppData parameter to the OMX_GetHandle method for the component. This application defined value is provided so that the application can have a component specific context when receiving the callback. @param pBuffer pointer to an OMX_BUFFERHEADERTYPE structure allocated with UseBuffer or AllocateBuffer indicating the buffer that was emptied. @ingroup buf */ OMX_ERRORTYPE (*EmptyBufferDone)( OMX_IN OMX_HANDLETYPE hComponent, OMX_IN OMX_PTR pAppData, OMX_IN OMX_BUFFERHEADERTYPE* pBuffer); /** The FillBufferDone method is used to return filled buffers from an output port back to the application for emptying and then reuse. This is a blocking call so the application should not attempt to empty the buffers during this call, but should queue the buffers and empty them in another thread. There is no error return, so the application shall handle any errors generated internally. The application shall also update the buffer header to indicate the number of bytes placed into the buffer. The application should return from this call within 5 msec. @param hComponent handle of the component to access. This is the component handle returned by the call to the GetHandle function. @param pAppData pointer to an application defined value that was provided in the pAppData parameter to the OMX_GetHandle method for the component. This application defined value is provided so that the application can have a component specific context when receiving the callback. @param pBuffer pointer to an OMX_BUFFERHEADERTYPE structure allocated with UseBuffer or AllocateBuffer indicating the buffer that was filled. @ingroup buf */ OMX_ERRORTYPE (*FillBufferDone)( OMX_OUT OMX_HANDLETYPE hComponent, OMX_OUT OMX_PTR pAppData, OMX_OUT OMX_BUFFERHEADERTYPE* pBuffer); } OMX_CALLBACKTYPE; /** The OMX_BUFFERSUPPLIERTYPE enumeration is used to dictate port supplier preference when tunneling between two ports. @ingroup tun buf */ typedef enum OMX_BUFFERSUPPLIERTYPE { OMX_BufferSupplyUnspecified = 0x0, /**< port supplying the buffers is unspecified, or don't care */ OMX_BufferSupplyInput, /**< input port supplies the buffers */ OMX_BufferSupplyOutput, /**< output port supplies the buffers */ OMX_BufferSupplyKhronosExtensions = 0x6F000000, /**< Reserved region for introducing Khronos Standard Extensions */ OMX_BufferSupplyVendorStartUnused = 0x7F000000, /**< Reserved region for introducing Vendor Extensions */ OMX_BufferSupplyMax = 0x7FFFFFFF } OMX_BUFFERSUPPLIERTYPE; /** buffer supplier parameter * @ingroup tun */ typedef struct OMX_PARAM_BUFFERSUPPLIERTYPE { OMX_U32 nSize; /**< size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ OMX_U32 nPortIndex; /**< port that this structure applies to */ OMX_BUFFERSUPPLIERTYPE eBufferSupplier; /**< buffer supplier */ } OMX_PARAM_BUFFERSUPPLIERTYPE; /**< indicates that buffers received by an input port of a tunnel may not modify the data in the buffers @ingroup tun */ #define OMX_PORTTUNNELFLAG_READONLY 0x00000001 /** The OMX_TUNNELSETUPTYPE structure is used to pass data from an output port to an input port as part the two ComponentTunnelRequest calls resulting from a OMX_SetupTunnel call from the IL Client. @ingroup tun */ typedef struct OMX_TUNNELSETUPTYPE { OMX_U32 nTunnelFlags; /**< bit flags for tunneling */ OMX_BUFFERSUPPLIERTYPE eSupplier; /**< supplier preference */ } OMX_TUNNELSETUPTYPE; /* OMX Component headers is included to enable the core to use macros for functions into the component for OMX release 1.0. Developers should not access any structures or data from within the component header directly */ /* TO BE REMOVED - #include */ /** GetComponentVersion will return information about the component. This is a blocking call. This macro will go directly from the application to the component (via a core macro). The component will return from this call within 5 msec. @param [in] hComponent handle of component to execute the command @param [out] pComponentName pointer to an empty string of length 128 bytes. The component will write its name into this string. The name will be terminated by a single zero byte. The name of a component will be 127 bytes or less to leave room for the trailing zero byte. An example of a valid component name is "OMX.ABC.ChannelMixer\0". @param [out] pComponentVersion pointer to an OMX Version structure that the component will fill in. The component will fill in a value that indicates the component version. NOTE: the component version is NOT the same as the OMX Specification version (found in all structures). The component version is defined by the vendor of the component and its value is entirely up to the component vendor. @param [out] pSpecVersion pointer to an OMX Version structure that the component will fill in. The SpecVersion is the version of the specification that the component was built against. Please note that this value may or may not match the structure's version. For example, if the component was built against the 2.0 specification, but the application (which creates the structure is built against the 1.0 specification the versions would be different. @param [out] pComponentUUID pointer to the UUID of the component which will be filled in by the component. The UUID is a unique identifier that is set at RUN time for the component and is unique to each instantion of the component. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup comp */ #define OMX_GetComponentVersion( \ hComponent, \ pComponentName, \ pComponentVersion, \ pSpecVersion, \ pComponentUUID) \ ((OMX_COMPONENTTYPE*)hComponent)->GetComponentVersion( \ hComponent, \ pComponentName, \ pComponentVersion, \ pSpecVersion, \ pComponentUUID) /* Macro End */ /** Send a command to the component. This call is a non-blocking call. The component should check the parameters and then queue the command to the component thread to be executed. The component thread shall send the EventHandler() callback at the conclusion of the command. This macro will go directly from the application to the component (via a core macro). The component will return from this call within 5 msec. When the command is "OMX_CommandStateSet" the component will queue a state transition to the new state idenfied in nParam. When the command is "OMX_CommandFlush", to flush a port's buffer queues, the command will force the component to return all buffers NOT CURRENTLY BEING PROCESSED to the application, in the order in which the buffers were received. When the command is "OMX_CommandPortDisable" or "OMX_CommandPortEnable", the component's port (given by the value of nParam) will be stopped or restarted. When the command "OMX_CommandMarkBuffer" is used to mark a buffer, the pCmdData will point to a OMX_MARKTYPE structure containing the component handle of the component to examine the buffer chain for the mark. nParam1 contains the index of the port on which the buffer mark is applied. Specification text for more details. @param [in] hComponent handle of component to execute the command @param [in] Cmd Command for the component to execute @param [in] nParam Parameter for the command to be executed. When Cmd has the value OMX_CommandStateSet, value is a member of OMX_STATETYPE. When Cmd has the value OMX_CommandFlush, value of nParam indicates which port(s) to flush. -1 is used to flush all ports a single port index will only flush that port. When Cmd has the value "OMX_CommandPortDisable" or "OMX_CommandPortEnable", the component's port is given by the value of nParam. When Cmd has the value "OMX_CommandMarkBuffer" the components pot is given by the value of nParam. @param [in] pCmdData Parameter pointing to the OMX_MARKTYPE structure when Cmd has the value "OMX_CommandMarkBuffer". @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup comp */ #define OMX_SendCommand( \ hComponent, \ Cmd, \ nParam, \ pCmdData) \ ((OMX_COMPONENTTYPE*)hComponent)->SendCommand( \ hComponent, \ Cmd, \ nParam, \ pCmdData) /* Macro End */ /** The OMX_GetParameter macro will get one of the current parameter settings from the component. This macro cannot only be invoked when the component is in the OMX_StateInvalid state. The nParamIndex parameter is used to indicate which structure is being requested from the component. The application shall allocate the correct structure and shall fill in the structure size and version information before invoking this macro. When the parameter applies to a port, the caller shall fill in the appropriate nPortIndex value indicating the port on which the parameter applies. If the component has not had any settings changed, then the component should return a set of valid DEFAULT parameters for the component. This is a blocking call. The component should return from this call within 20 msec. @param [in] hComponent Handle of the component to be accessed. This is the component handle returned by the call to the OMX_GetHandle function. @param [in] nParamIndex Index of the structure to be filled. This value is from the OMX_INDEXTYPE enumeration. @param [in,out] pComponentParameterStructure Pointer to application allocated structure to be filled by the component. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup comp */ #define OMX_GetParameter( \ hComponent, \ nParamIndex, \ pComponentParameterStructure) \ ((OMX_COMPONENTTYPE*)hComponent)->GetParameter( \ hComponent, \ nParamIndex, \ pComponentParameterStructure) /* Macro End */ /** The OMX_SetParameter macro will send an initialization parameter structure to a component. Each structure shall be sent one at a time, in a separate invocation of the macro. This macro can only be invoked when the component is in the OMX_StateLoaded state, or the port is disabled (when the parameter applies to a port). The nParamIndex parameter is used to indicate which structure is being passed to the component. The application shall allocate the correct structure and shall fill in the structure size and version information (as well as the actual data) before invoking this macro. The application is free to dispose of this structure after the call as the component is required to copy any data it shall retain. This is a blocking call. The component should return from this call within 20 msec. @param [in] hComponent Handle of the component to be accessed. This is the component handle returned by the call to the OMX_GetHandle function. @param [in] nIndex Index of the structure to be sent. This value is from the OMX_INDEXTYPE enumeration. @param [in] pComponentParameterStructure pointer to application allocated structure to be used for initialization by the component. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup comp */ #define OMX_SetParameter( \ hComponent, \ nParamIndex, \ pComponentParameterStructure) \ ((OMX_COMPONENTTYPE*)hComponent)->SetParameter( \ hComponent, \ nParamIndex, \ pComponentParameterStructure) /* Macro End */ /** The OMX_GetConfig macro will get one of the configuration structures from a component. This macro can be invoked anytime after the component has been loaded. The nParamIndex call parameter is used to indicate which structure is being requested from the component. The application shall allocate the correct structure and shall fill in the structure size and version information before invoking this macro. If the component has not had this configuration parameter sent before, then the component should return a set of valid DEFAULT values for the component. This is a blocking call. The component should return from this call within 5 msec. @param [in] hComponent Handle of the component to be accessed. This is the component handle returned by the call to the OMX_GetHandle function. @param [in] nIndex Index of the structure to be filled. This value is from the OMX_INDEXTYPE enumeration. @param [in,out] pComponentConfigStructure pointer to application allocated structure to be filled by the component. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup comp */ #define OMX_GetConfig( \ hComponent, \ nConfigIndex, \ pComponentConfigStructure) \ ((OMX_COMPONENTTYPE*)hComponent)->GetConfig( \ hComponent, \ nConfigIndex, \ pComponentConfigStructure) /* Macro End */ /** The OMX_SetConfig macro will send one of the configuration structures to a component. Each structure shall be sent one at a time, each in a separate invocation of the macro. This macro can be invoked anytime after the component has been loaded. The application shall allocate the correct structure and shall fill in the structure size and version information (as well as the actual data) before invoking this macro. The application is free to dispose of this structure after the call as the component is required to copy any data it shall retain. This is a blocking call. The component should return from this call within 5 msec. @param [in] hComponent Handle of the component to be accessed. This is the component handle returned by the call to the OMX_GetHandle function. @param [in] nConfigIndex Index of the structure to be sent. This value is from the OMX_INDEXTYPE enumeration above. @param [in] pComponentConfigStructure pointer to application allocated structure to be used for initialization by the component. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup comp */ #define OMX_SetConfig( \ hComponent, \ nConfigIndex, \ pComponentConfigStructure) \ ((OMX_COMPONENTTYPE*)hComponent)->SetConfig( \ hComponent, \ nConfigIndex, \ pComponentConfigStructure) /* Macro End */ /** The OMX_GetExtensionIndex macro will invoke a component to translate a vendor specific configuration or parameter string into an OMX structure index. There is no requirement for the vendor to support this command for the indexes already found in the OMX_INDEXTYPE enumeration (this is done to save space in small components). The component shall support all vendor supplied extension indexes not found in the master OMX_INDEXTYPE enumeration. This is a blocking call. The component should return from this call within 5 msec. @param [in] hComponent Handle of the component to be accessed. This is the component handle returned by the call to the GetHandle function. @param [in] cParameterName OMX_STRING that shall be less than 128 characters long including the trailing null byte. This is the string that will get translated by the component into a configuration index. @param [out] pIndexType a pointer to a OMX_INDEXTYPE to receive the index value. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup comp */ #define OMX_GetExtensionIndex( \ hComponent, \ cParameterName, \ pIndexType) \ ((OMX_COMPONENTTYPE*)hComponent)->GetExtensionIndex( \ hComponent, \ cParameterName, \ pIndexType) /* Macro End */ /** The OMX_GetState macro will invoke the component to get the current state of the component and place the state value into the location pointed to by pState. The component should return from this call within 5 msec. @param [in] hComponent Handle of the component to be accessed. This is the component handle returned by the call to the OMX_GetHandle function. @param [out] pState pointer to the location to receive the state. The value returned is one of the OMX_STATETYPE members @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup comp */ #define OMX_GetState( \ hComponent, \ pState) \ ((OMX_COMPONENTTYPE*)hComponent)->GetState( \ hComponent, \ pState) /* Macro End */ /** The OMX_UseBuffer macro will request that the component use a buffer (and allocate its own buffer header) already allocated by another component, or by the IL Client. This is a blocking call. The component should return from this call within 20 msec. @param [in] hComponent Handle of the component to be accessed. This is the component handle returned by the call to the OMX_GetHandle function. @param [out] ppBuffer pointer to an OMX_BUFFERHEADERTYPE structure used to receive the pointer to the buffer header @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup comp buf */ #define OMX_UseBuffer( \ hComponent, \ ppBufferHdr, \ nPortIndex, \ pAppPrivate, \ nSizeBytes, \ pBuffer) \ ((OMX_COMPONENTTYPE*)hComponent)->UseBuffer( \ hComponent, \ ppBufferHdr, \ nPortIndex, \ pAppPrivate, \ nSizeBytes, \ pBuffer) /** The OMX_AllocateBuffer macro will request that the component allocate a new buffer and buffer header. The component will allocate the buffer and the buffer header and return a pointer to the buffer header. This is a blocking call. The component should return from this call within 5 msec. @param [in] hComponent Handle of the component to be accessed. This is the component handle returned by the call to the OMX_GetHandle function. @param [out] ppBuffer pointer to an OMX_BUFFERHEADERTYPE structure used to receive the pointer to the buffer header @param [in] nPortIndex nPortIndex is used to select the port on the component the buffer will be used with. The port can be found by using the nPortIndex value as an index into the Port Definition array of the component. @param [in] pAppPrivate pAppPrivate is used to initialize the pAppPrivate member of the buffer header structure. @param [in] nSizeBytes size of the buffer to allocate. Used when bAllocateNew is true. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup comp buf */ #define OMX_AllocateBuffer( \ hComponent, \ ppBuffer, \ nPortIndex, \ pAppPrivate, \ nSizeBytes) \ ((OMX_COMPONENTTYPE*)hComponent)->AllocateBuffer( \ hComponent, \ ppBuffer, \ nPortIndex, \ pAppPrivate, \ nSizeBytes) /* Macro End */ /** The OMX_FreeBuffer macro will release a buffer header from the component which was allocated using either OMX_AllocateBuffer or OMX_UseBuffer. If the component allocated the buffer (see the OMX_UseBuffer macro) then the component shall free the buffer and buffer header. This is a blocking call. The component should return from this call within 20 msec. @param [in] hComponent Handle of the component to be accessed. This is the component handle returned by the call to the OMX_GetHandle function. @param [in] nPortIndex nPortIndex is used to select the port on the component the buffer will be used with. @param [in] pBuffer pointer to an OMX_BUFFERHEADERTYPE structure allocated with UseBuffer or AllocateBuffer. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup comp buf */ #define OMX_FreeBuffer( \ hComponent, \ nPortIndex, \ pBuffer) \ ((OMX_COMPONENTTYPE*)hComponent)->FreeBuffer( \ hComponent, \ nPortIndex, \ pBuffer) /* Macro End */ /** The OMX_EmptyThisBuffer macro will send a buffer full of data to an input port of a component. The buffer will be emptied by the component and returned to the application via the EmptyBufferDone call back. This is a non-blocking call in that the component will record the buffer and return immediately and then empty the buffer, later, at the proper time. As expected, this macro may be invoked only while the component is in the OMX_StateExecuting. If nPortIndex does not specify an input port, the component shall return an error. The component should return from this call within 5 msec. @param [in] hComponent Handle of the component to be accessed. This is the component handle returned by the call to the OMX_GetHandle function. @param [in] pBuffer pointer to an OMX_BUFFERHEADERTYPE structure allocated with UseBuffer or AllocateBuffer. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup comp buf */ #define OMX_EmptyThisBuffer( \ hComponent, \ pBuffer) \ ((OMX_COMPONENTTYPE*)hComponent)->EmptyThisBuffer( \ hComponent, \ pBuffer) /* Macro End */ /** The OMX_FillThisBuffer macro will send an empty buffer to an output port of a component. The buffer will be filled by the component and returned to the application via the FillBufferDone call back. This is a non-blocking call in that the component will record the buffer and return immediately and then fill the buffer, later, at the proper time. As expected, this macro may be invoked only while the component is in the OMX_ExecutingState. If nPortIndex does not specify an output port, the component shall return an error. The component should return from this call within 5 msec. @param [in] hComponent Handle of the component to be accessed. This is the component handle returned by the call to the OMX_GetHandle function. @param [in] pBuffer pointer to an OMX_BUFFERHEADERTYPE structure allocated with UseBuffer or AllocateBuffer. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup comp buf */ #define OMX_FillThisBuffer( \ hComponent, \ pBuffer) \ ((OMX_COMPONENTTYPE*)hComponent)->FillThisBuffer( \ hComponent, \ pBuffer) /* Macro End */ /** The OMX_UseEGLImage macro will request that the component use a EGLImage provided by EGL (and allocate its own buffer header) This is a blocking call. The component should return from this call within 20 msec. @param [in] hComponent Handle of the component to be accessed. This is the component handle returned by the call to the OMX_GetHandle function. @param [out] ppBuffer pointer to an OMX_BUFFERHEADERTYPE structure used to receive the pointer to the buffer header. Note that the memory location used for this buffer is NOT visible to the IL Client. @param [in] nPortIndex nPortIndex is used to select the port on the component the buffer will be used with. The port can be found by using the nPortIndex value as an index into the Port Definition array of the component. @param [in] pAppPrivate pAppPrivate is used to initialize the pAppPrivate member of the buffer header structure. @param [in] eglImage eglImage contains the handle of the EGLImage to use as a buffer on the specified port. The component is expected to validate properties of the EGLImage against the configuration of the port to ensure the component can use the EGLImage as a buffer. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup comp buf */ #define OMX_UseEGLImage( \ hComponent, \ ppBufferHdr, \ nPortIndex, \ pAppPrivate, \ eglImage) \ ((OMX_COMPONENTTYPE*)hComponent)->UseEGLImage( \ hComponent, \ ppBufferHdr, \ nPortIndex, \ pAppPrivate, \ eglImage) /** The OMX_Init method is used to initialize the OMX core. It shall be the first call made into OMX and it should only be executed one time without an interviening OMX_Deinit call. The core should return from this call within 20 msec. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup core */ OMX_API OMX_ERRORTYPE OMX_APIENTRY OMX_Init(void); /** The OMX_Deinit method is used to deinitialize the OMX core. It shall be the last call made into OMX. In the event that the core determines that thare are components loaded when this call is made, the core may return with an error rather than try to unload the components. The core should return from this call within 20 msec. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup core */ OMX_API OMX_ERRORTYPE OMX_APIENTRY OMX_Deinit(void); /** The OMX_ComponentNameEnum method will enumerate through all the names of recognised valid components in the system. This function is provided as a means to detect all the components in the system run-time. There is no strict ordering to the enumeration order of component names, although each name will only be enumerated once. If the OMX core supports run-time installation of new components, it is only requried to detect newly installed components when the first call to enumerate component names is made (i.e. when nIndex is 0x0). The core should return from this call in 20 msec. @param [out] cComponentName pointer to a null terminated string with the component name. The names of the components are strings less than 127 bytes in length plus the trailing null for a maximum size of 128 bytes. An example of a valid component name is "OMX.TI.AUDIO.DSP.MIXER\0". Names are assigned by the vendor, but shall start with "OMX." and then have the Vendor designation next. @param [in] nNameLength number of characters in the cComponentName string. With all component name strings restricted to less than 128 characters (including the trailing null) it is recomended that the caller provide a input string for the cComponentName of 128 characters. @param [in] nIndex number containing the enumeration index for the component. Multiple calls to OMX_ComponentNameEnum with increasing values of nIndex will enumerate through the component names in the system until OMX_ErrorNoMore is returned. The value of nIndex is 0 to (N-1), where N is the number of valid installed components in the system. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. When the value of nIndex exceeds the number of components in the system minus 1, OMX_ErrorNoMore will be returned. Otherwise the appropriate OMX error will be returned. @ingroup core */ OMX_API OMX_ERRORTYPE OMX_APIENTRY OMX_ComponentNameEnum( OMX_OUT OMX_STRING cComponentName, OMX_IN OMX_U32 nNameLength, OMX_IN OMX_U32 nIndex); /** The OMX_GetHandle method will locate the component specified by the component name given, load that component into memory and then invoke the component's methods to create an instance of the component. The core should return from this call within 20 msec. @param [out] pHandle pointer to an OMX_HANDLETYPE pointer to be filled in by this method. @param [in] cComponentName pointer to a null terminated string with the component name. The names of the components are strings less than 127 bytes in length plus the trailing null for a maximum size of 128 bytes. An example of a valid component name is "OMX.TI.AUDIO.DSP.MIXER\0". Names are assigned by the vendor, but shall start with "OMX." and then have the Vendor designation next. @param [in] pAppData pointer to an application defined value that will be returned during callbacks so that the application can identify the source of the callback. @param [in] pCallBacks pointer to a OMX_CALLBACKTYPE structure that will be passed to the component to initialize it with. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup core */ OMX_API OMX_ERRORTYPE OMX_APIENTRY OMX_GetHandle( OMX_OUT OMX_HANDLETYPE* pHandle, OMX_IN OMX_STRING cComponentName, OMX_IN OMX_PTR pAppData, OMX_IN OMX_CALLBACKTYPE* pCallBacks); /** The OMX_FreeHandle method will free a handle allocated by the OMX_GetHandle method. If the component reference count goes to zero, the component will be unloaded from memory. The core should return from this call within 20 msec when the component is in the OMX_StateLoaded state. @param [in] hComponent Handle of the component to be accessed. This is the component handle returned by the call to the GetHandle function. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. @ingroup core */ OMX_API OMX_ERRORTYPE OMX_APIENTRY OMX_FreeHandle( OMX_IN OMX_HANDLETYPE hComponent); /** The OMX_SetupTunnel method will handle the necessary calls to the components to setup the specified tunnel the two components. NOTE: This is an actual method (not a #define macro). This method will make calls into the component ComponentTunnelRequest method to do the actual tunnel connection. The ComponentTunnelRequest method on both components will be called. This method shall not be called unless the component is in the OMX_StateLoaded state except when the ports used for the tunnel are disabled. In this case, the component may be in the OMX_StateExecuting, OMX_StatePause, or OMX_StateIdle states. The core should return from this call within 20 msec. @param [in] hOutput Handle of the component to be accessed. Also this is the handle of the component whose port, specified in the nPortOutput parameter will be used the source for the tunnel. This is the component handle returned by the call to the OMX_GetHandle function. There is a requirement that hOutput be the source for the data when tunelling (i.e. nPortOutput is an output port). If 0x0, the component specified in hInput will have it's port specified in nPortInput setup for communication with the application / IL client. @param [in] nPortOutput nPortOutput is used to select the source port on component to be used in the tunnel. @param [in] hInput This is the component to setup the tunnel with. This is the handle of the component whose port, specified in the nPortInput parameter will be used the destination for the tunnel. This is the component handle returned by the call to the OMX_GetHandle function. There is a requirement that hInput be the destination for the data when tunelling (i.e. nPortInut is an input port). If 0x0, the component specified in hOutput will have it's port specified in nPortPOutput setup for communication with the application / IL client. @param [in] nPortInput nPortInput is used to select the destination port on component to be used in the tunnel. @return OMX_ERRORTYPE If the command successfully executes, the return code will be OMX_ErrorNone. Otherwise the appropriate OMX error will be returned. When OMX_ErrorNotImplemented is returned, one or both components is a non-interop component and does not support tunneling. On failure, the ports of both components are setup for communication with the application / IL Client. @ingroup core tun */ OMX_API OMX_ERRORTYPE OMX_APIENTRY OMX_SetupTunnel( OMX_IN OMX_HANDLETYPE hOutput, OMX_IN OMX_U32 nPortOutput, OMX_IN OMX_HANDLETYPE hInput, OMX_IN OMX_U32 nPortInput); /** @ingroup cp */ OMX_API OMX_ERRORTYPE OMX_GetContentPipe( OMX_OUT OMX_HANDLETYPE *hPipe, OMX_IN OMX_STRING szURI); /** The OMX_GetComponentsOfRole method will return the number of components that support the given role and (if the compNames field is non-NULL) the names of those components. The call will fail if an insufficiently sized array of names is supplied. To ensure the array is sufficiently sized the client should: * first call this function with the compNames field NULL to determine the number of component names * second call this function with the compNames field pointing to an array of names allocated according to the number returned by the first call. The core should return from this call within 5 msec. @param [in] role This is generic standard component name consisting only of component class name and the type within that class (e.g. 'audio_decoder.aac'). @param [inout] pNumComps This is used both as input and output. If compNames is NULL, the input is ignored and the output specifies how many components support the given role. If compNames is not NULL, on input it bounds the size of the input structure and on output, it specifies the number of components string names listed within the compNames parameter. @param [inout] compNames If NULL this field is ignored. If non-NULL this points to an array of 128-byte strings which accepts a list of the names of all physical components that implement the specified standard component name. Each name is NULL terminated. numComps indicates the number of names. @ingroup core */ OMX_API OMX_ERRORTYPE OMX_GetComponentsOfRole ( OMX_IN OMX_STRING role, OMX_INOUT OMX_U32 *pNumComps, OMX_INOUT OMX_U8 **compNames); /** The OMX_GetRolesOfComponent method will return the number of roles supported by the given component and (if the roles field is non-NULL) the names of those roles. The call will fail if an insufficiently sized array of names is supplied. To ensure the array is sufficiently sized the client should: * first call this function with the roles field NULL to determine the number of role names * second call this function with the roles field pointing to an array of names allocated according to the number returned by the first call. The core should return from this call within 5 msec. @param [in] compName This is the name of the component being queried about. @param [inout] pNumRoles This is used both as input and output. If roles is NULL, the input is ignored and the output specifies how many roles the component supports. If compNames is not NULL, on input it bounds the size of the input structure and on output, it specifies the number of roles string names listed within the roles parameter. @param [out] roles If NULL this field is ignored. If non-NULL this points to an array of 128-byte strings which accepts a list of the names of all standard components roles implemented on the specified component name. numComps indicates the number of names. @ingroup core */ OMX_API OMX_ERRORTYPE OMX_GetRolesOfComponent ( OMX_IN OMX_STRING compName, OMX_INOUT OMX_U32 *pNumRoles, OMX_OUT OMX_U8 **roles); #ifdef __cplusplus } #endif /* __cplusplus */ #endif /* File EOF */ libomxil-bellagio-0.9.3/include/OMX_Index.h0000644000175000017500000004273511513256766015454 00000000000000/* * Copyright (c) 2008 The Khronos Group 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. * */ /** @file OMX_Index.h - OpenMax IL version 1.1.2 * The OMX_Index header file contains the definitions for both applications * and components . */ #ifndef OMX_Index_h #define OMX_Index_h #ifdef __cplusplus extern "C" { #endif /* __cplusplus */ /* Each OMX header must include all required header files to allow the * header to compile without errors. The includes below are required * for this header file to compile successfully */ #include /** The OMX_INDEXTYPE enumeration is used to select a structure when either * getting or setting parameters and/or configuration data. Each entry in * this enumeration maps to an OMX specified structure. When the * OMX_GetParameter, OMX_SetParameter, OMX_GetConfig or OMX_SetConfig methods * are used, the second parameter will always be an entry from this enumeration * and the third entry will be the structure shown in the comments for the entry. * For example, if the application is initializing a cropping function, the * OMX_SetConfig command would have OMX_IndexConfigCommonInputCrop as the second parameter * and would send a pointer to an initialized OMX_RECTTYPE structure as the * third parameter. * * The enumeration entries named with the OMX_Config prefix are sent using * the OMX_SetConfig command and the enumeration entries named with the * OMX_PARAM_ prefix are sent using the OMX_SetParameter command. */ typedef enum OMX_INDEXTYPE { OMX_IndexComponentStartUnused = 0x01000000, OMX_IndexParamPriorityMgmt, /**< reference: OMX_PRIORITYMGMTTYPE */ OMX_IndexParamAudioInit, /**< reference: OMX_PORT_PARAM_TYPE */ OMX_IndexParamImageInit, /**< reference: OMX_PORT_PARAM_TYPE */ OMX_IndexParamVideoInit, /**< reference: OMX_PORT_PARAM_TYPE */ OMX_IndexParamOtherInit, /**< reference: OMX_PORT_PARAM_TYPE */ OMX_IndexParamNumAvailableStreams, /**< reference: OMX_PARAM_U32TYPE */ OMX_IndexParamActiveStream, /**< reference: OMX_PARAM_U32TYPE */ OMX_IndexParamSuspensionPolicy, /**< reference: OMX_PARAM_SUSPENSIONPOLICYTYPE */ OMX_IndexParamComponentSuspended, /**< reference: OMX_PARAM_SUSPENSIONTYPE */ OMX_IndexConfigCapturing, /**< reference: OMX_CONFIG_BOOLEANTYPE */ OMX_IndexConfigCaptureMode, /**< reference: OMX_CONFIG_CAPTUREMODETYPE */ OMX_IndexAutoPauseAfterCapture, /**< reference: OMX_CONFIG_BOOLEANTYPE */ OMX_IndexParamContentURI, /**< reference: OMX_PARAM_CONTENTURITYPE */ OMX_IndexParamCustomContentPipe, /**< reference: OMX_PARAM_CONTENTPIPETYPE */ OMX_IndexParamDisableResourceConcealment, /**< reference: OMX_RESOURCECONCEALMENTTYPE */ OMX_IndexConfigMetadataItemCount, /**< reference: OMX_CONFIG_METADATAITEMCOUNTTYPE */ OMX_IndexConfigContainerNodeCount, /**< reference: OMX_CONFIG_CONTAINERNODECOUNTTYPE */ OMX_IndexConfigMetadataItem, /**< reference: OMX_CONFIG_METADATAITEMTYPE */ OMX_IndexConfigCounterNodeID, /**< reference: OMX_CONFIG_CONTAINERNODEIDTYPE */ OMX_IndexParamMetadataFilterType, /**< reference: OMX_PARAM_METADATAFILTERTYPE */ OMX_IndexParamMetadataKeyFilter, /**< reference: OMX_PARAM_METADATAFILTERTYPE */ OMX_IndexConfigPriorityMgmt, /**< reference: OMX_PRIORITYMGMTTYPE */ OMX_IndexParamStandardComponentRole, /**< reference: OMX_PARAM_COMPONENTROLETYPE */ OMX_IndexPortStartUnused = 0x02000000, OMX_IndexParamPortDefinition, /**< reference: OMX_PARAM_PORTDEFINITIONTYPE */ OMX_IndexParamCompBufferSupplier, /**< reference: OMX_PARAM_BUFFERSUPPLIERTYPE */ OMX_IndexReservedStartUnused = 0x03000000, /* Audio parameters and configurations */ OMX_IndexAudioStartUnused = 0x04000000, OMX_IndexParamAudioPortFormat, /**< reference: OMX_AUDIO_PARAM_PORTFORMATTYPE */ OMX_IndexParamAudioPcm, /**< reference: OMX_AUDIO_PARAM_PCMMODETYPE */ OMX_IndexParamAudioAac, /**< reference: OMX_AUDIO_PARAM_AACPROFILETYPE */ OMX_IndexParamAudioRa, /**< reference: OMX_AUDIO_PARAM_RATYPE */ OMX_IndexParamAudioMp3, /**< reference: OMX_AUDIO_PARAM_MP3TYPE */ OMX_IndexParamAudioAdpcm, /**< reference: OMX_AUDIO_PARAM_ADPCMTYPE */ OMX_IndexParamAudioG723, /**< reference: OMX_AUDIO_PARAM_G723TYPE */ OMX_IndexParamAudioG729, /**< reference: OMX_AUDIO_PARAM_G729TYPE */ OMX_IndexParamAudioAmr, /**< reference: OMX_AUDIO_PARAM_AMRTYPE */ OMX_IndexParamAudioWma, /**< reference: OMX_AUDIO_PARAM_WMATYPE */ OMX_IndexParamAudioSbc, /**< reference: OMX_AUDIO_PARAM_SBCTYPE */ OMX_IndexParamAudioMidi, /**< reference: OMX_AUDIO_PARAM_MIDITYPE */ OMX_IndexParamAudioGsm_FR, /**< reference: OMX_AUDIO_PARAM_GSMFRTYPE */ OMX_IndexParamAudioMidiLoadUserSound, /**< reference: OMX_AUDIO_PARAM_MIDILOADUSERSOUNDTYPE */ OMX_IndexParamAudioG726, /**< reference: OMX_AUDIO_PARAM_G726TYPE */ OMX_IndexParamAudioGsm_EFR, /**< reference: OMX_AUDIO_PARAM_GSMEFRTYPE */ OMX_IndexParamAudioGsm_HR, /**< reference: OMX_AUDIO_PARAM_GSMHRTYPE */ OMX_IndexParamAudioPdc_FR, /**< reference: OMX_AUDIO_PARAM_PDCFRTYPE */ OMX_IndexParamAudioPdc_EFR, /**< reference: OMX_AUDIO_PARAM_PDCEFRTYPE */ OMX_IndexParamAudioPdc_HR, /**< reference: OMX_AUDIO_PARAM_PDCHRTYPE */ OMX_IndexParamAudioTdma_FR, /**< reference: OMX_AUDIO_PARAM_TDMAFRTYPE */ OMX_IndexParamAudioTdma_EFR, /**< reference: OMX_AUDIO_PARAM_TDMAEFRTYPE */ OMX_IndexParamAudioQcelp8, /**< reference: OMX_AUDIO_PARAM_QCELP8TYPE */ OMX_IndexParamAudioQcelp13, /**< reference: OMX_AUDIO_PARAM_QCELP13TYPE */ OMX_IndexParamAudioEvrc, /**< reference: OMX_AUDIO_PARAM_EVRCTYPE */ OMX_IndexParamAudioSmv, /**< reference: OMX_AUDIO_PARAM_SMVTYPE */ OMX_IndexParamAudioVorbis, /**< reference: OMX_AUDIO_PARAM_VORBISTYPE */ OMX_IndexConfigAudioMidiImmediateEvent, /**< reference: OMX_AUDIO_CONFIG_MIDIIMMEDIATEEVENTTYPE */ OMX_IndexConfigAudioMidiControl, /**< reference: OMX_AUDIO_CONFIG_MIDICONTROLTYPE */ OMX_IndexConfigAudioMidiSoundBankProgram, /**< reference: OMX_AUDIO_CONFIG_MIDISOUNDBANKPROGRAMTYPE */ OMX_IndexConfigAudioMidiStatus, /**< reference: OMX_AUDIO_CONFIG_MIDISTATUSTYPE */ OMX_IndexConfigAudioMidiMetaEvent, /**< reference: OMX_AUDIO_CONFIG_MIDIMETAEVENTTYPE */ OMX_IndexConfigAudioMidiMetaEventData, /**< reference: OMX_AUDIO_CONFIG_MIDIMETAEVENTDATATYPE */ OMX_IndexConfigAudioVolume, /**< reference: OMX_AUDIO_CONFIG_VOLUMETYPE */ OMX_IndexConfigAudioBalance, /**< reference: OMX_AUDIO_CONFIG_BALANCETYPE */ OMX_IndexConfigAudioChannelMute, /**< reference: OMX_AUDIO_CONFIG_CHANNELMUTETYPE */ OMX_IndexConfigAudioMute, /**< reference: OMX_AUDIO_CONFIG_MUTETYPE */ OMX_IndexConfigAudioLoudness, /**< reference: OMX_AUDIO_CONFIG_LOUDNESSTYPE */ OMX_IndexConfigAudioEchoCancelation, /**< reference: OMX_AUDIO_CONFIG_ECHOCANCELATIONTYPE */ OMX_IndexConfigAudioNoiseReduction, /**< reference: OMX_AUDIO_CONFIG_NOISEREDUCTIONTYPE */ OMX_IndexConfigAudioBass, /**< reference: OMX_AUDIO_CONFIG_BASSTYPE */ OMX_IndexConfigAudioTreble, /**< reference: OMX_AUDIO_CONFIG_TREBLETYPE */ OMX_IndexConfigAudioStereoWidening, /**< reference: OMX_AUDIO_CONFIG_STEREOWIDENINGTYPE */ OMX_IndexConfigAudioChorus, /**< reference: OMX_AUDIO_CONFIG_CHORUSTYPE */ OMX_IndexConfigAudioEqualizer, /**< reference: OMX_AUDIO_CONFIG_EQUALIZERTYPE */ OMX_IndexConfigAudioReverberation, /**< reference: OMX_AUDIO_CONFIG_REVERBERATIONTYPE */ OMX_IndexConfigAudioChannelVolume, /**< reference: OMX_AUDIO_CONFIG_CHANNELVOLUMETYPE */ /* Image specific parameters and configurations */ OMX_IndexImageStartUnused = 0x05000000, OMX_IndexParamImagePortFormat, /**< reference: OMX_IMAGE_PARAM_PORTFORMATTYPE */ OMX_IndexParamFlashControl, /**< reference: OMX_IMAGE_PARAM_FLASHCONTROLTYPE */ OMX_IndexConfigFocusControl, /**< reference: OMX_IMAGE_CONFIG_FOCUSCONTROLTYPE */ OMX_IndexParamQFactor, /**< reference: OMX_IMAGE_PARAM_QFACTORTYPE */ OMX_IndexParamQuantizationTable, /**< reference: OMX_IMAGE_PARAM_QUANTIZATIONTABLETYPE */ OMX_IndexParamHuffmanTable, /**< reference: OMX_IMAGE_PARAM_HUFFMANTTABLETYPE */ OMX_IndexConfigFlashControl, /**< reference: OMX_IMAGE_PARAM_FLASHCONTROLTYPE */ /* Video specific parameters and configurations */ OMX_IndexVideoStartUnused = 0x06000000, OMX_IndexParamVideoPortFormat, /**< reference: OMX_VIDEO_PARAM_PORTFORMATTYPE */ OMX_IndexParamVideoQuantization, /**< reference: OMX_VIDEO_PARAM_QUANTIZATIONTYPE */ OMX_IndexParamVideoFastUpdate, /**< reference: OMX_VIDEO_PARAM_VIDEOFASTUPDATETYPE */ OMX_IndexParamVideoBitrate, /**< reference: OMX_VIDEO_PARAM_BITRATETYPE */ OMX_IndexParamVideoMotionVector, /**< reference: OMX_VIDEO_PARAM_MOTIONVECTORTYPE */ OMX_IndexParamVideoIntraRefresh, /**< reference: OMX_VIDEO_PARAM_INTRAREFRESHTYPE */ OMX_IndexParamVideoErrorCorrection, /**< reference: OMX_VIDEO_PARAM_ERRORCORRECTIONTYPE */ OMX_IndexParamVideoVBSMC, /**< reference: OMX_VIDEO_PARAM_VBSMCTYPE */ OMX_IndexParamVideoMpeg2, /**< reference: OMX_VIDEO_PARAM_MPEG2TYPE */ OMX_IndexParamVideoMpeg4, /**< reference: OMX_VIDEO_PARAM_MPEG4TYPE */ OMX_IndexParamVideoWmv, /**< reference: OMX_VIDEO_PARAM_WMVTYPE */ OMX_IndexParamVideoRv, /**< reference: OMX_VIDEO_PARAM_RVTYPE */ OMX_IndexParamVideoAvc, /**< reference: OMX_VIDEO_PARAM_AVCTYPE */ OMX_IndexParamVideoH263, /**< reference: OMX_VIDEO_PARAM_H263TYPE */ OMX_IndexParamVideoProfileLevelQuerySupported, /**< reference: OMX_VIDEO_PARAM_PROFILELEVELTYPE */ OMX_IndexParamVideoProfileLevelCurrent, /**< reference: OMX_VIDEO_PARAM_PROFILELEVELTYPE */ OMX_IndexConfigVideoBitrate, /**< reference: OMX_VIDEO_CONFIG_BITRATETYPE */ OMX_IndexConfigVideoFramerate, /**< reference: OMX_CONFIG_FRAMERATETYPE */ OMX_IndexConfigVideoIntraVOPRefresh, /**< reference: OMX_CONFIG_INTRAREFRESHVOPTYPE */ OMX_IndexConfigVideoIntraMBRefresh, /**< reference: OMX_CONFIG_MACROBLOCKERRORMAPTYPE */ OMX_IndexConfigVideoMBErrorReporting, /**< reference: OMX_CONFIG_MBERRORREPORTINGTYPE */ OMX_IndexParamVideoMacroblocksPerFrame, /**< reference: OMX_PARAM_MACROBLOCKSTYPE */ OMX_IndexConfigVideoMacroBlockErrorMap, /**< reference: OMX_CONFIG_MACROBLOCKERRORMAPTYPE */ OMX_IndexParamVideoSliceFMO, /**< reference: OMX_VIDEO_PARAM_AVCSLICEFMO */ OMX_IndexConfigVideoAVCIntraPeriod, /**< reference: OMX_VIDEO_CONFIG_AVCINTRAPERIOD */ OMX_IndexConfigVideoNalSize, /**< reference: OMX_VIDEO_CONFIG_NALSIZE */ /* Image & Video common Configurations */ OMX_IndexCommonStartUnused = 0x07000000, OMX_IndexParamCommonDeblocking, /**< reference: OMX_PARAM_DEBLOCKINGTYPE */ OMX_IndexParamCommonSensorMode, /**< reference: OMX_PARAM_SENSORMODETYPE */ OMX_IndexParamCommonInterleave, /**< reference: OMX_PARAM_INTERLEAVETYPE */ OMX_IndexConfigCommonColorFormatConversion, /**< reference: OMX_CONFIG_COLORCONVERSIONTYPE */ OMX_IndexConfigCommonScale, /**< reference: OMX_CONFIG_SCALEFACTORTYPE */ OMX_IndexConfigCommonImageFilter, /**< reference: OMX_CONFIG_IMAGEFILTERTYPE */ OMX_IndexConfigCommonColorEnhancement, /**< reference: OMX_CONFIG_COLORENHANCEMENTTYPE */ OMX_IndexConfigCommonColorKey, /**< reference: OMX_CONFIG_COLORKEYTYPE */ OMX_IndexConfigCommonColorBlend, /**< reference: OMX_CONFIG_COLORBLENDTYPE */ OMX_IndexConfigCommonFrameStabilisation,/**< reference: OMX_CONFIG_FRAMESTABTYPE */ OMX_IndexConfigCommonRotate, /**< reference: OMX_CONFIG_ROTATIONTYPE */ OMX_IndexConfigCommonMirror, /**< reference: OMX_CONFIG_MIRRORTYPE */ OMX_IndexConfigCommonOutputPosition, /**< reference: OMX_CONFIG_POINTTYPE */ OMX_IndexConfigCommonInputCrop, /**< reference: OMX_CONFIG_RECTTYPE */ OMX_IndexConfigCommonOutputCrop, /**< reference: OMX_CONFIG_RECTTYPE */ OMX_IndexConfigCommonDigitalZoom, /**< reference: OMX_CONFIG_SCALEFACTORTYPE */ OMX_IndexConfigCommonOpticalZoom, /**< reference: OMX_CONFIG_SCALEFACTORTYPE*/ OMX_IndexConfigCommonWhiteBalance, /**< reference: OMX_CONFIG_WHITEBALCONTROLTYPE */ OMX_IndexConfigCommonExposure, /**< reference: OMX_CONFIG_EXPOSURECONTROLTYPE */ OMX_IndexConfigCommonContrast, /**< reference: OMX_CONFIG_CONTRASTTYPE */ OMX_IndexConfigCommonBrightness, /**< reference: OMX_CONFIG_BRIGHTNESSTYPE */ OMX_IndexConfigCommonBacklight, /**< reference: OMX_CONFIG_BACKLIGHTTYPE */ OMX_IndexConfigCommonGamma, /**< reference: OMX_CONFIG_GAMMATYPE */ OMX_IndexConfigCommonSaturation, /**< reference: OMX_CONFIG_SATURATIONTYPE */ OMX_IndexConfigCommonLightness, /**< reference: OMX_CONFIG_LIGHTNESSTYPE */ OMX_IndexConfigCommonExclusionRect, /**< reference: OMX_CONFIG_RECTTYPE */ OMX_IndexConfigCommonDithering, /**< reference: OMX_CONFIG_DITHERTYPE */ OMX_IndexConfigCommonPlaneBlend, /**< reference: OMX_CONFIG_PLANEBLENDTYPE */ OMX_IndexConfigCommonExposureValue, /**< reference: OMX_CONFIG_EXPOSUREVALUETYPE */ OMX_IndexConfigCommonOutputSize, /**< reference: OMX_FRAMESIZETYPE */ OMX_IndexParamCommonExtraQuantData, /**< reference: OMX_OTHER_EXTRADATATYPE */ OMX_IndexConfigCommonFocusRegion, /**< reference: OMX_CONFIG_FOCUSREGIONTYPE */ OMX_IndexConfigCommonFocusStatus, /**< reference: OMX_PARAM_FOCUSSTATUSTYPE */ OMX_IndexConfigCommonTransitionEffect, /**< reference: OMX_CONFIG_TRANSITIONEFFECTTYPE */ /* Reserved Configuration range */ OMX_IndexOtherStartUnused = 0x08000000, OMX_IndexParamOtherPortFormat, /**< reference: OMX_OTHER_PARAM_PORTFORMATTYPE */ OMX_IndexConfigOtherPower, /**< reference: OMX_OTHER_CONFIG_POWERTYPE */ OMX_IndexConfigOtherStats, /**< reference: OMX_OTHER_CONFIG_STATSTYPE */ /* Reserved Time range */ OMX_IndexTimeStartUnused = 0x09000000, OMX_IndexConfigTimeScale, /**< reference: OMX_TIME_CONFIG_SCALETYPE */ OMX_IndexConfigTimeClockState, /**< reference: OMX_TIME_CONFIG_CLOCKSTATETYPE */ OMX_IndexConfigTimeActiveRefClock, /**< reference: OMX_TIME_CONFIG_ACTIVEREFCLOCKTYPE */ OMX_IndexConfigTimeCurrentMediaTime, /**< reference: OMX_TIME_CONFIG_TIMESTAMPTYPE (read only) */ OMX_IndexConfigTimeCurrentWallTime, /**< reference: OMX_TIME_CONFIG_TIMESTAMPTYPE (read only) */ OMX_IndexConfigTimeCurrentAudioReference, /**< reference: OMX_TIME_CONFIG_TIMESTAMPTYPE (write only) */ OMX_IndexConfigTimeCurrentVideoReference, /**< reference: OMX_TIME_CONFIG_TIMESTAMPTYPE (write only) */ OMX_IndexConfigTimeMediaTimeRequest, /**< reference: OMX_TIME_CONFIG_MEDIATIMEREQUESTTYPE (write only) */ OMX_IndexConfigTimeClientStartTime, /**&2 exit 1;; esac shift;; -o) chowncmd="$chownprog $2" shift;; -s) stripcmd=$stripprog;; -t) dst_arg=$2 shift;; -T) no_target_directory=true;; --version) echo "$0 $scriptversion"; exit $?;; --) shift break;; -*) echo "$0: invalid option: $1" >&2 exit 1;; *) break;; esac shift done if test $# -ne 0 && test -z "$dir_arg$dst_arg"; then # When -d is used, all remaining arguments are directories to create. # When -t is used, the destination is already specified. # Otherwise, the last argument is the destination. 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To suppress all normal output, redirect it to `/dev/null' (any error messages will still be shown). `--srcdir=DIR' Look for the package's source code in directory DIR. Usually `configure' can determine that directory automatically. `--prefix=DIR' Use DIR as the installation prefix. *note Installation Names:: for more details, including other options available for fine-tuning the installation locations. `--no-create' `-n' Run the configure checks, but stop before creating any output files. `configure' also accepts some other, not widely useful, options. Run `configure --help' for more details. libomxil-bellagio-0.9.3/libomxil-bellagio.spec.in0000644000175000017500000001116111565413703016720 00000000000000 Name: libomxil-bellagio Version: @VERSION@ Release: 0 License: GNU LGPL 2.1 Group: System Environment/Libraries Source: %{name}-%{version}.tar.gz BuildRoot: %{_tmppath}/%{name}-%{version}-root Summary: OpenMAX Integration Layer 1.1.2 library and components. Vendor: STMicroelectronics %description The OpenMAX IL API defines a standardized media component interface to enable developers and platform providers to integrate and communicate with multimedia codecs implemented in hardware or software. The libomxil shared library implements the OpenMAX IL Core functionalities. Four dynamically loadable components are also included: OMX volume control, OMX audio mixer (up to 4 inputs), a video scheduler component for uncompressed video streams and a clock component %prep %setup %build %configure make %install %makeinstall %clean [ -n "$RPM_BUILD_ROOT" -a "$RPM_BUILD_ROOT" != / ] && rm -rf $RPM_BUILD_ROOT %files %defattr(-,root,root) %doc ChangeLog README TODO %{_bindir}/omxregister-bellagio %{_includedir}/OMX_Audio.h %{_includedir}/OMX_Component.h %{_includedir}/OMX_ContentPipe.h %{_includedir}/OMX_Core.h %{_includedir}/OMX_IVCommon.h %{_includedir}/OMX_Image.h %{_includedir}/OMX_Index.h %{_includedir}/OMX_Other.h %{_includedir}/OMX_Types.h %{_includedir}/OMX_Video.h %{_includedir}/bellagio/common.h %{_includedir}/bellagio/component_loader.h %{_includedir}/bellagio/extension_struct.h %{_includedir}/bellagio/omx_base_audio_port.h %{_includedir}/bellagio/omx_base_clock_port.h %{_includedir}/bellagio/omx_base_component.h %{_includedir}/bellagio/omx_base_filter.h %{_includedir}/bellagio/omx_base_image_port.h %{_includedir}/bellagio/omx_base_port.h %{_includedir}/bellagio/omx_base_sink.h %{_includedir}/bellagio/omx_base_source.h %{_includedir}/bellagio/omx_base_video_port.h %{_includedir}/bellagio/omx_classmagic.h %{_includedir}/bellagio/omx_comp_debug_levels.h %{_includedir}/bellagio/OMXComponentRMExt.h %{_includedir}/bellagio/omxcore.h %{_includedir}/bellagio/OMXCoreRMExt.h %{_includedir}/bellagio/omx_reference_resource_manager.h %{_includedir}/bellagio/queue.h %{_includedir}/bellagio/st_static_component_loader.h %{_includedir}/bellagio/tsemaphore.h %{_includedir}/bellagio/user_debug_levels.h %{_includedir}/bellagio/utils.h %{_libdir}/libomxil-bellagio.so %{_libdir}/libomxil-bellagio.a %{_libdir}/libomxil-bellagio.la %{_libdir}/libomxil-bellagio.so.0 %{_libdir}/libomxil-bellagio.so.0.0.0 %{_libdir}/bellagio/libomxaudio_effects.a %{_libdir}/bellagio/libomxaudio_effects.la %{_libdir}/bellagio/libomxaudio_effects.so %{_libdir}/bellagio/libomxaudio_effects.so.0 %{_libdir}/bellagio/libomxaudio_effects.so.0.0.0 %{_libdir}/bellagio/libomxclocksrc.a %{_libdir}/bellagio/libomxclocksrc.la %{_libdir}/bellagio/libomxclocksrc.so %{_libdir}/bellagio/libomxclocksrc.so.0 %{_libdir}/bellagio/libomxclocksrc.so.0.0.0 %{_libdir}/bellagio/libomxvideosched.a %{_libdir}/bellagio/libomxvideosched.la %{_libdir}/bellagio/libomxvideosched.so %{_libdir}/bellagio/libomxvideosched.so.0 %{_libdir}/bellagio/libomxvideosched.so.0.0.0 %{_libdir}/omxloaders/libomxdynamicloader.a %{_libdir}/omxloaders/libomxdynamicloader.la %{_libdir}/omxloaders/libomxdynamicloader.so %{_libdir}/omxloaders/libomxdynamicloader.so.0 %{_libdir}/omxloaders/libomxdynamicloader.so.0.0.0 %{_libdir}/pkgconfig/libomxil-bellagio.pc %{_docdir}/libomxil-bellagio/ChangeLog %{_docdir}/libomxil-bellagio/README %{_docdir}/libomxil-bellagio/TODO %{_mandir}/man1/omxregister-bellagio.1.gz %changelog * Thu May 19 2011 Giulio Urlini - Update the list of files for release 0.9.3 * Wed Dec 23 2009 Giulio Urlini - Added quality levels extension * Tue Oct 20 2009 Giulio Urlini - removed html files form package. these files can be easily automatic generated * Wed Jul 29 2009 Giulio Urlini - removed old library files. Added diffs for 0.9.2 * Wed Sep 17 2008 Giulio Urlini - added jpeg encoder/decoder * Mon Jul 07 2008 Giulio Urlini - added clock source, video source, camera, frame buffer writer * Thu Mar 06 2008 Marc-Andre Lureau - copy&pasted some good practices from some other .spec.in - changed components directory - remove unnecessary plugins .la and .a files - untested * Wed Feb 27 2008 Giulio Urlini - changed the library list. * Fri Oct 19 2007 Giulio Urlini - removed fbdev from file list. It is experimental, and not installed on any platform * Tue Oct 01 2007 Giulio Urlini - Minor update and name change of this file * Tue Jun 04 2007 Giulio Urlini - Bellagio 0.3.2 release * Tue May 22 2007 Giulio Urlini - Bellagio 0.3.1 release * Fri Apr 06 2007 Giulio Urlini - Bellagio 0.3 release * Fri Feb 24 2006 David Siorpaes - Fixed some minor issues in build process * Mon Feb 6 2006 Giulio Urlini - First build attempt libomxil-bellagio-0.9.3/NEWS0000644000175000017500000000150511513256766012553 00000000000000The OpenMAX IL Bellagio package ver. 0.9.2.1 has been released. The main additions to this delivery are: - An optional support to components quality levels has been added. The global setting of quality level for a component has been added. Optionally a component can provide support for Set/GetQualityLevel functions. These functions will globally set a group of Parameters that represents a certain quality level. If this setting causes a change in any output port parameter the PortSettingsChange event is generated. The quality levels allow the IL Client to handle the resource usage of components given a quality of service policy. This change is not part of the OpenMAX standard and it is an optional feature of the Bellagio components. 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Copyright (C) 2008-2009 STMicroelectronics Copyright (C) 2008-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __OMXAUDIOMIXERTEST_H__ #define __OMXAUDIOMIXERTEST_H__ #include #include #include #include #include #include #include #include #include #include #include #include #include /** Specification version*/ #define VERSIONMAJOR 1 #define VERSIONMINOR 1 #define VERSIONREVISION 0 #define VERSIONSTEP 0 /* Application's private data */ typedef struct appPrivateType{ pthread_cond_t condition; pthread_mutex_t mutex; void* input_data; OMX_BUFFERHEADERTYPE* currentInputBuffer; tsem_t* eventSem; tsem_t* eofSem; OMX_HANDLETYPE handle; }appPrivateType; /* Size of the buffers requested to the component */ #define BUFFER_IN_SIZE 16384 * 2 /* Callback prototypes */ OMX_ERRORTYPE audiomixerEventHandler( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_EVENTTYPE eEvent, OMX_U32 Data1, OMX_U32 Data2, OMX_PTR pEventData); OMX_ERRORTYPE audiomixerEmptyBufferDone( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_BUFFERHEADERTYPE* pBuffer); OMX_ERRORTYPE audiomixerFillBufferDone( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_BUFFERHEADERTYPE* pBuffer); OMX_ERRORTYPE audiosinkEventHandler( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_EVENTTYPE eEvent, OMX_U32 Data1, OMX_U32 Data2, OMX_PTR pEventData); OMX_ERRORTYPE audiosinkEmptyBufferDone( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_BUFFERHEADERTYPE* pBuffer); /** Helper functions */ static int getFileSize(int fd); #endif libomxil-bellagio-0.9.3/test/components/audio_effects/omxvolcontroltest.c0000644000175000017500000003467511565227652024026 00000000000000/** test/components/audio_effects/omxvolcontroltest.c This simple test application provides a testing stream for the volume control component. It will be added in the more complex audio test application in the next release. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include "omxvolcontroltest.h" #include /* Application private date: should go in the component field (segs...) */ appPrivateType* appPriv; int fd = 0; unsigned int filesize; OMX_ERRORTYPE err; OMX_HANDLETYPE handle; OMX_CALLBACKTYPE callbacks = { .EventHandler = volcEventHandler, .EmptyBufferDone = volcEmptyBufferDone, .FillBufferDone = volcFillBufferDone, }; static void setHeader(OMX_PTR header, OMX_U32 size) { OMX_VERSIONTYPE* ver = (OMX_VERSIONTYPE*)(header + sizeof(OMX_U32)); *((OMX_U32*)header) = size; ver->s.nVersionMajor = VERSIONMAJOR; ver->s.nVersionMinor = VERSIONMINOR; ver->s.nRevision = VERSIONREVISION; ver->s.nStep = VERSIONSTEP; } void display_help() { printf("\n"); printf("Usage: omxvolcontroltest [-o outfile] [-g gain] filename\n"); printf("\n"); printf(" -o outfile: If this option is specified, the output stream is written to outfile\n"); printf(" otherwise redirected to std output\n"); printf(" -g: Gain of PCM data [0...100]\n"); printf(" -h: Displays this help\n"); printf("\n"); exit(1); } int flagIsOutputExpected; int flagOutputReceived; int flagInputReceived; int flagIsGain; char *input_file, *output_file; static OMX_BOOL bEOS=OMX_FALSE; FILE *outfile; int main(int argc, char** argv) { OMX_PORT_PARAM_TYPE param; OMX_BUFFERHEADERTYPE *inBuffer1, *inBuffer2, *outBuffer1, *outBuffer2; int data_read1; int data_read2; OMX_PARAM_PORTDEFINITIONTYPE sPortDef; OMX_AUDIO_CONFIG_VOLUMETYPE sVolume; int gain=100; int argn_dec; OMX_PARAM_BELLAGIOTHREADS_ID threadsID; OMX_INDEXTYPE custom_index; /* Obtain file descriptor */ if(argc < 2){ display_help(); } else { flagIsOutputExpected = 0; flagOutputReceived = 0; flagInputReceived = 0; flagIsGain = 0; argn_dec = 1; while (argn_dec 100) { DEBUG(DEFAULT_MESSAGES, "Gain should be between [0..100]\n"); gain = 100; } } else if (flagIsOutputExpected) { output_file = malloc(strlen(argv[argn_dec]) + 1); strcpy(output_file,argv[argn_dec]); flagIsOutputExpected = 0; flagOutputReceived = 1; } else { input_file = malloc(strlen(argv[argn_dec]) + 1); strcpy(input_file,argv[argn_dec]); flagInputReceived = 1; } } argn_dec++; } if (!flagInputReceived) { display_help(); } DEBUG(DEFAULT_MESSAGES, "Input file %s", input_file); DEBUG(DEFAULT_MESSAGES, " to "); if (flagOutputReceived) { DEBUG(DEFAULT_MESSAGES, " %s\n", output_file); } } fd = open(input_file, O_RDONLY); if(fd < 0){ perror("Error opening input file\n"); exit(1); } if (flagOutputReceived) { outfile = fopen(output_file,"wb"); if(outfile == NULL) { DEBUG(DEB_LEV_ERR, "Error at opening the output file"); exit(1); } } filesize = getFileSize(fd); /* Initialize application private data */ appPriv = malloc(sizeof(appPrivateType)); pthread_cond_init(&appPriv->condition, NULL); pthread_mutex_init(&appPriv->mutex, NULL); appPriv->eventSem = malloc(sizeof(tsem_t)); tsem_init(appPriv->eventSem, 0); appPriv->eofSem = malloc(sizeof(tsem_t)); tsem_init(appPriv->eofSem, 0); err = OMX_Init(); if(err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "OMX_Init() failed\n"); exit(1); } /** Ask the core for a handle to the volume control component */ err = OMX_GetHandle(&handle, "OMX.st.volume.component", NULL /*appPriv */, &callbacks); if(err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "OMX_GetHandle failed\n"); exit(1); } /* test the new feature of thread ID detection */ err = OMX_GetExtensionIndex(handle, "OMX.st.index.param.BellagioThreadsID", &custom_index); if(err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "OMX_GetExtensionIndex failed\n"); exit(1); } setHeader(&threadsID, sizeof(OMX_PARAM_BELLAGIOTHREADS_ID)); err = OMX_GetParameter(handle, custom_index, &threadsID); if(err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "OMX_GetParameter of extended index failed\n"); } else { DEBUG(DEFAULT_MESSAGES, "threadsID messages %i buffers %i\n", (int)threadsID.nThreadMessageID, (int)threadsID.nThreadBufferMngtID); } if((gain >= 0) && (gain <100)) { err = OMX_GetConfig(handle, OMX_IndexConfigAudioVolume, &sVolume); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR,"Error %08x In OMX_GetConfig 0 \n",err); } sVolume.sVolume.nValue = gain; DEBUG(DEFAULT_MESSAGES, "Setting Gain %d \n", gain); err = OMX_SetConfig(handle, OMX_IndexConfigAudioVolume, &sVolume); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR,"Error %08x In OMX_SetConfig 0 \n",err); } } /** Set the number of ports for the parameter structure */ param.nPorts = 2; setHeader(¶m, sizeof(OMX_PORT_PARAM_TYPE)); err = OMX_GetParameter(handle, OMX_IndexParamAudioInit, ¶m); if(err != OMX_ErrorNone){ DEBUG(DEB_LEV_ERR, "Error in getting OMX_PORT_PARAM_TYPE parameter\n"); exit(1); } setHeader(&sPortDef, sizeof(OMX_PARAM_PORTDEFINITIONTYPE)); sPortDef.nPortIndex = 0; err = OMX_GetParameter(handle, OMX_IndexParamPortDefinition, &sPortDef); sPortDef.nBufferCountActual = 2; err = OMX_SetParameter(handle, OMX_IndexParamPortDefinition, &sPortDef); if(err != OMX_ErrorNone){ DEBUG(DEB_LEV_ERR, "Error in getting OMX_PORT_PARAM_TYPE parameter\n"); exit(1); } sPortDef.nPortIndex = 1; err = OMX_GetParameter(handle, OMX_IndexParamPortDefinition, &sPortDef); sPortDef.nBufferCountActual = 2; err = OMX_SetParameter(handle, OMX_IndexParamPortDefinition, &sPortDef); if(err != OMX_ErrorNone){ DEBUG(DEB_LEV_ERR, "Error in getting OMX_PORT_PARAM_TYPE parameter\n"); exit(1); } err = OMX_SendCommand(handle, OMX_CommandStateSet, OMX_StateIdle, NULL); inBuffer1 = inBuffer2 = outBuffer1 = outBuffer2 = NULL; err = OMX_AllocateBuffer(handle, &inBuffer1, 0, NULL, BUFFER_IN_SIZE); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Error on AllocateBuffer in 1%i\n", err); exit(1); } err = OMX_AllocateBuffer(handle, &inBuffer2, 0, NULL, BUFFER_IN_SIZE); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Error on AllocateBuffer in 2 %i\n", err); exit(1); } err = OMX_AllocateBuffer(handle, &outBuffer1, 1, NULL, BUFFER_IN_SIZE); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Error on AllocateBuffer out 1 %i\n", err); exit(1); } err = OMX_AllocateBuffer(handle, &outBuffer2, 1, NULL, BUFFER_IN_SIZE); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Error on AllocateBuffer out 2 %i\n", err); exit(1); } tsem_down(appPriv->eventSem); /* in Idle the second thread has bee created, and the second thread ID * should be available */ err = OMX_GetParameter(handle, custom_index, &threadsID); if(err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "OMX_GetParameter of extended index failed\n"); } else { DEBUG(DEFAULT_MESSAGES, "threadsID messages %i buffers %i\n", (int)threadsID.nThreadMessageID, (int)threadsID.nThreadBufferMngtID); } err = OMX_SendCommand(handle, OMX_CommandStateSet, OMX_StateExecuting, NULL); /* Wait for commands to complete */ tsem_down(appPriv->eventSem); DEBUG(DEB_LEV_PARAMS, "Had buffers at:\n0x%p\n0x%p\n0x%p\n0x%p\n", inBuffer1->pBuffer, inBuffer2->pBuffer, outBuffer1->pBuffer, outBuffer2->pBuffer); DEBUG(DEB_LEV_PARAMS, "After switch to executing\n"); data_read1 = read(fd, inBuffer1->pBuffer, BUFFER_IN_SIZE); inBuffer1->nFilledLen = data_read1; filesize -= data_read1; data_read2 = read(fd, inBuffer2->pBuffer, BUFFER_IN_SIZE); inBuffer2->nFilledLen = data_read2; filesize -= data_read2; DEBUG(DEB_LEV_PARAMS, "Empty first buffer %p\n", inBuffer1); err = OMX_EmptyThisBuffer(handle, inBuffer1); DEBUG(DEB_LEV_PARAMS, "Empty second buffer %p\n", inBuffer2); err = OMX_EmptyThisBuffer(handle, inBuffer2); /** Schedule a couple of buffers to be filled on the output port * The callback itself will re-schedule them. */ err = OMX_FillThisBuffer(handle, outBuffer1); err = OMX_FillThisBuffer(handle, outBuffer2); tsem_down(appPriv->eofSem); err = OMX_SendCommand(handle, OMX_CommandStateSet, OMX_StateIdle, NULL); /* Wait for commands to complete */ tsem_down(appPriv->eventSem); err = OMX_SendCommand(handle, OMX_CommandStateSet, OMX_StateLoaded, NULL); err = OMX_FreeBuffer(handle, 0, inBuffer1); err = OMX_FreeBuffer(handle, 0, inBuffer2); err = OMX_FreeBuffer(handle, 1, outBuffer1); err = OMX_FreeBuffer(handle, 1, outBuffer2); /* Wait for commands to complete */ tsem_down(appPriv->eventSem); OMX_FreeHandle(handle); free(appPriv->eventSem); free(appPriv); if (flagOutputReceived) { if(fclose(outfile) != 0) { DEBUG(DEB_LEV_ERR,"Error in closing output file\n"); exit(1); } free(output_file); } close(fd); free(input_file); return 0; } /* Callbacks implementation */ OMX_ERRORTYPE volcEventHandler( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_EVENTTYPE eEvent, OMX_U32 Data1, OMX_U32 Data2, OMX_PTR pEventData) { DEBUG(DEB_LEV_SIMPLE_SEQ, "Hi there, I am in the %s callback\n", __func__); if(eEvent == OMX_EventCmdComplete) { if (Data1 == OMX_CommandStateSet) { DEBUG(DEB_LEV_SIMPLE_SEQ, "Volume Component State changed in "); switch ((int)Data2) { case OMX_StateInvalid: DEBUG(DEB_LEV_SIMPLE_SEQ, "OMX_StateInvalid\n"); break; case OMX_StateLoaded: DEBUG(DEB_LEV_SIMPLE_SEQ, "OMX_StateLoaded\n"); break; case OMX_StateIdle: DEBUG(DEB_LEV_SIMPLE_SEQ, "OMX_StateIdle\n"); break; case OMX_StateExecuting: DEBUG(DEB_LEV_SIMPLE_SEQ, "OMX_StateExecuting\n"); break; case OMX_StatePause: DEBUG(DEB_LEV_SIMPLE_SEQ, "OMX_StatePause\n"); break; case OMX_StateWaitForResources: DEBUG(DEB_LEV_SIMPLE_SEQ, "OMX_StateWaitForResources\n"); break; } tsem_up(appPriv->eventSem); } else if (Data1 == OMX_CommandPortEnable){ tsem_up(appPriv->eventSem); } else if (Data1 == OMX_CommandPortDisable){ tsem_up(appPriv->eventSem); } } else if(eEvent == OMX_EventBufferFlag) { if((int)Data2 == OMX_BUFFERFLAG_EOS) { tsem_up(appPriv->eofSem); } } else { DEBUG(DEB_LEV_SIMPLE_SEQ, "Param1 is %i\n", (int)Data1); DEBUG(DEB_LEV_SIMPLE_SEQ, "Param2 is %i\n", (int)Data2); } return OMX_ErrorNone; } OMX_ERRORTYPE volcEmptyBufferDone( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_BUFFERHEADERTYPE* pBuffer) { int data_read; static int iBufferDropped=0; DEBUG(DEB_LEV_FULL_SEQ, "Hi there, I am in the %s callback.\n", __func__); data_read = read(fd, pBuffer->pBuffer, BUFFER_IN_SIZE); pBuffer->nFilledLen = data_read; pBuffer->nOffset = 0; filesize -= data_read; if (data_read <= 0) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In the %s no more input data available\n", __func__); iBufferDropped++; if(iBufferDropped>=2) { tsem_up(appPriv->eofSem); return OMX_ErrorNone; } pBuffer->nFilledLen=0; pBuffer->nFlags = OMX_BUFFERFLAG_EOS; bEOS=OMX_TRUE; err = OMX_EmptyThisBuffer(hComponent, pBuffer); return OMX_ErrorNone; } if(!bEOS) { DEBUG(DEB_LEV_FULL_SEQ, "Empty buffer %p\n", pBuffer); err = OMX_EmptyThisBuffer(hComponent, pBuffer); }else { DEBUG(DEB_LEV_FULL_SEQ, "In %s Dropping Empty This buffer to Audio Dec\n", __func__); } return OMX_ErrorNone; } OMX_ERRORTYPE volcFillBufferDone( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_BUFFERHEADERTYPE* pBuffer) { OMX_ERRORTYPE err; int i; DEBUG(DEB_LEV_FULL_SEQ, "Hi there, I am in the %s callback. Got buflen %i for buffer at 0x%p\n", __func__, (int)pBuffer->nFilledLen, pBuffer); /* Output data to standard output */ if(pBuffer != NULL) { if (pBuffer->nFilledLen == 0) { DEBUG(DEB_LEV_ERR, "Ouch! In %s: no data in the output buffer!\n", __func__); return OMX_ErrorNone; } if (flagOutputReceived) { if(pBuffer->nFilledLen > 0) { fwrite(pBuffer->pBuffer, 1, pBuffer->nFilledLen, outfile); } } else { for(i=0;inFilledLen;i++) { putchar(*(char*)(pBuffer->pBuffer + i)); } } pBuffer->nFilledLen = 0; } else { DEBUG(DEB_LEV_ERR, "Ouch! In %s: had NULL buffer to output...\n", __func__); } /* Reschedule the fill buffer request */ if(!bEOS) { err = OMX_FillThisBuffer(hComponent, pBuffer); } return OMX_ErrorNone; } /** Gets the file descriptor's size * @return the size of the file. If size cannot be computed * (i.e. stdin, zero is returned) */ static int getFileSize(int fd) { struct stat input_file_stat; int err; /* Obtain input file length */ err = fstat(fd, &input_file_stat); if(err){ DEBUG(DEB_LEV_ERR, "fstat failed"); exit(-1); } return input_file_stat.st_size; } libomxil-bellagio-0.9.3/test/components/audio_effects/omxvolcontroltest.h0000644000175000017500000000453111513256766024020 00000000000000/** test/components/audio_effects/omxvolcontroltest.c This simple test application provides a testing stream for the volume control component. It will be added in the more complex audio test application in the next release. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __OMXVOLCONTROLTEST_H__ #define __OMXVOLCONTROLTEST_H__ #include #include #include #include #include #include #include #include #include #include #include #include #include /** Specification version*/ #define VERSIONMAJOR 1 #define VERSIONMINOR 1 #define VERSIONREVISION 0 #define VERSIONSTEP 0 /* Application's private data */ typedef struct appPrivateType{ pthread_cond_t condition; pthread_mutex_t mutex; void* input_data; OMX_BUFFERHEADERTYPE* currentInputBuffer; tsem_t* eventSem; tsem_t* eofSem; }appPrivateType; /* Size of the buffers requested to the component */ #define BUFFER_IN_SIZE 2*8192*2 /* Callback prototypes */ OMX_ERRORTYPE volcEventHandler( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_EVENTTYPE eEvent, OMX_U32 Data1, OMX_U32 Data2, OMX_PTR pEventData); OMX_ERRORTYPE volcEmptyBufferDone( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_BUFFERHEADERTYPE* pBuffer); OMX_ERRORTYPE volcFillBufferDone( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_BUFFERHEADERTYPE* pBuffer); /** Helper functions */ static int getFileSize(int fd); #endif libomxil-bellagio-0.9.3/test/components/audio_effects/Makefile.in0000644000175000017500000004760511565413755022100 00000000000000# Makefile.in generated by automake 1.11.1 from Makefile.am. # @configure_input@ # Copyright (C) 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, # 2003, 2004, 2005, 2006, 2007, 2008, 2009 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 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install-man install-pdf install-pdf-am \ install-ps install-ps-am install-strip installcheck \ installcheck-am installdirs maintainer-clean \ maintainer-clean-generic mostlyclean mostlyclean-compile \ mostlyclean-generic mostlyclean-libtool pdf pdf-am ps ps-am \ tags uninstall uninstall-am # 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: libomxil-bellagio-0.9.3/test/components/audio_effects/Makefile.am0000644000175000017500000000075611565403153022052 00000000000000check_PROGRAMS = omxvolcontroltest omxaudiomixertest bellagio_LDADD = -lomxil-bellagio common_CFLAGS = -I$(top_srcdir)/test/components/common -I$(includedir) omxvolcontroltest_SOURCES = omxvolcontroltest.c omxvolcontroltest.h omxvolcontroltest_LDADD = $(bellagio_LDADD) -lpthread omxvolcontroltest_CFLAGS = $(common_CFLAGS) omxaudiomixertest_SOURCES = omxaudiomixertest.c omxaudiomixertest.h omxaudiomixertest_LDADD = $(bellagio_LDADD) -lpthread omxaudiomixertest_CFLAGS = $(common_CFLAGS) libomxil-bellagio-0.9.3/test/components/audio_effects/omxaudiomixertest.c0000644000175000017500000004722211513256766023764 00000000000000/** test/components/audio_effects/omxaudiomixertest.c This simple test application take one or more input stream/s. passes these streams to an audio mixer component and stores the mixed output in another output file. Copyright (C) 2008-2009 STMicroelectronics Copyright (C) 2008-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include "omxaudiomixertest.h" #define BUFFER_COUNT_ACTUAL 2 #define FRAME_SIZE 1152*2*2 // 1152 samples* 2 channels * 2byte/16bits per channel OMX_CALLBACKTYPE callbacks = { .EventHandler = audiomixerEventHandler, .EmptyBufferDone = audiomixerEmptyBufferDone, .FillBufferDone = audiomixerFillBufferDone, }; static void setHeader(OMX_PTR header, OMX_U32 size) { OMX_VERSIONTYPE* ver = (OMX_VERSIONTYPE*)(header + sizeof(OMX_U32)); *((OMX_U32*)header) = size; ver->s.nVersionMajor = VERSIONMAJOR; ver->s.nVersionMinor = VERSIONMINOR; ver->s.nRevision = VERSIONREVISION; ver->s.nStep = VERSIONSTEP; } void display_help() { printf("\n"); printf("Usage: omxaudiomixertest [-o outfile] [-gi gain] -t -r 44100 -n 2 filename0 [filename1 filename2 filename3]\n"); printf("\n"); printf(" -o outfile: If this option is specified, the output stream is written to outfile\n"); printf(" otherwise redirected to std output\n"); printf(" -gi : Gain of stream i[0..3] data [0...100]\n"); printf(" -r 44100 : Sample Rate [Default 44100]\n"); printf(" -n 2 : Number of channel [Default 2]\n\n"); printf(" -h : Displays this help\n"); printf("\n"); exit(1); } /* Application private date: should go in the component field (segs...) */ appPrivateType* appPriv; int fd[4]; unsigned int filesize[4]; int flagIsOutputExpected; int flagOutputReceived; int flagInputReceived; int flagIsGain[4]; int flagSampleRate; int flagChannel; char *input_file[4], *output_file; OMX_BOOL bEOS[4]; FILE *outfile; OMX_BUFFERHEADERTYPE *inBuffer[8], *outBuffer[2],*inBufferSink[2]; static OMX_BOOL isPortDisabled[4]; static int iBufferDropped[4]; int main(int argc, char** argv) { OMX_PORT_PARAM_TYPE sParam; OMX_U32 data_read; int j; int i=0; OMX_PARAM_PORTDEFINITIONTYPE sPortDef; OMX_AUDIO_CONFIG_VOLUMETYPE sVolume; int gain[4]; int argn_dec; int index_files = 0, index_gain = 0; OMX_U32 srate=0,nchannel=0; OMX_ERRORTYPE err; char c; gain[0]=gain[1]=gain[2]=gain[3]=100; fd[0] = fd[1] = fd[2] = fd[3] = 0; bEOS[0] = bEOS[1] = bEOS[2] = bEOS[3] = OMX_FALSE; /* Obtain file descriptor */ if(argc < 2){ display_help(); } else { flagIsOutputExpected = 0; flagOutputReceived = 0; flagInputReceived = 0; flagIsGain[0] = 0; flagIsGain[1] = 0; flagIsGain[2] = 0; flagIsGain[3] = 0; flagSampleRate = 0; flagChannel = 0; argn_dec = 1; while (argn_dec 3) { DEBUG(DEFAULT_MESSAGES, "-g%i is not valid\n", index_gain); index_gain = 0; } flagIsGain[index_gain] = 1; break; case 'r': flagSampleRate = 1; break; case 'n': flagChannel = 1; break; default: display_help(); } } else { if (flagIsGain[index_gain]) { gain[index_gain] = (int)atoi(argv[argn_dec]); DEBUG(DEFAULT_MESSAGES, "gain[%d]=%d\n", index_gain, gain[index_gain]); flagIsGain[index_gain] = 0; if(gain[index_gain] > 100) { DEBUG(DEFAULT_MESSAGES, "Gain of stream %i should be between [0..100]\n", index_gain); gain[index_gain] = 100; } index_gain = 0; } else if (flagIsOutputExpected) { output_file = malloc(strlen(argv[argn_dec]) * sizeof(char) + 1); strcpy(output_file,argv[argn_dec]); flagIsOutputExpected = 0; flagOutputReceived = 1; } else if (flagSampleRate) { srate = (int)atoi(argv[argn_dec]); flagSampleRate = 0; } else if (flagChannel) { nchannel = (int)atoi(argv[argn_dec]); flagChannel = 0; } else { if (index_files>3) { DEBUG(DEB_LEV_ERR, "Too many input files. Only first four are accepted\n"); } else { input_file[index_files] = malloc(strlen(argv[argn_dec]) * sizeof(char) + 1); strcpy(input_file[index_files],argv[argn_dec]); flagInputReceived = 1; index_files++; } } } argn_dec++; } if (!flagInputReceived) { display_help(); } DEBUG(DEFAULT_MESSAGES, "Input files %s %s %s %s \n", input_file[0], input_file[1], input_file[2], input_file[3]); DEBUG(DEFAULT_MESSAGES, " to "); if (flagOutputReceived) { DEBUG(DEFAULT_MESSAGES, " %s\n", output_file); } else { DEBUG(DEFAULT_MESSAGES, " Audio Sink\n"); } } if(input_file[0]== NULL) { DEBUG(DEB_LEV_ERR, "Provide at least an input file\n"); exit(1); } for (i = 0; icondition, NULL); pthread_mutex_init(&appPriv->mutex, NULL); appPriv->eventSem = malloc(sizeof(tsem_t)); tsem_init(appPriv->eventSem, 0); appPriv->eofSem = malloc(sizeof(tsem_t)); tsem_init(appPriv->eofSem, 0); iBufferDropped[0] = 0; iBufferDropped[1] = 0; iBufferDropped[2] = 0; iBufferDropped[3] = 0; err = OMX_Init(); if(err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "OMX_Init() failed\n"); exit(1); } /** Ask the core for a handle to the audio mixer component */ err = OMX_GetHandle(&appPriv->handle, "OMX.st.audio.mixer", NULL , &callbacks); if(err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Audio Mixer OMX_GetHandle failed\n"); exit(1); } /*Max 4 input stream*/ for(j=0;j<4;j++) { isPortDisabled[j] = OMX_FALSE; if((gain[j] >= 0) && (gain[j] <100)) { sVolume.nPortIndex = j; err = OMX_GetConfig(appPriv->handle, OMX_IndexConfigAudioVolume, &sVolume); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR,"Error %08x In OMX_GetConfig %i \n",err, j); } sVolume.sVolume.nValue = gain[j]; DEBUG(DEFAULT_MESSAGES, "Setting Gain[%i] %d \n",(int)j, gain[j]); err = OMX_SetConfig(appPriv->handle, OMX_IndexConfigAudioVolume, &sVolume); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR,"Error %08x In OMX_SetConfig %i \n",err, j); } } } /** Get the number of ports */ setHeader(&sParam, sizeof(OMX_PORT_PARAM_TYPE)); err = OMX_GetParameter(appPriv->handle, OMX_IndexParamAudioInit, &sParam); if(err != OMX_ErrorNone){ DEBUG(DEB_LEV_ERR, "Error in getting OMX_PORT_PARAM_TYPE parameter\n"); exit(1); } DEBUG(DEFAULT_MESSAGES, "Audio Mixer has %d ports\n",(int)sParam.nPorts); // disable unused ports for (j = index_files; j<4; j++) { isPortDisabled[j] = OMX_TRUE; err = OMX_SendCommand(appPriv->handle, OMX_CommandPortDisable, j, NULL); tsem_down(appPriv->eventSem); DEBUG(DEFAULT_MESSAGES, "Port %i disabled\n", j); } for (j = 0; j < index_files; j++) { setHeader(&sPortDef, sizeof(OMX_PARAM_PORTDEFINITIONTYPE)); sPortDef.nPortIndex = j; err = OMX_GetParameter(appPriv->handle, OMX_IndexParamPortDefinition, &sPortDef); sPortDef.nBufferCountActual = 2; err = OMX_SetParameter(appPriv->handle, OMX_IndexParamPortDefinition, &sPortDef); if(err != OMX_ErrorNone){ DEBUG(DEB_LEV_ERR, "Error in getting OMX_PORT_PARAM_TYPE parameter\n"); exit(1); } } err = OMX_SendCommand(appPriv->handle, OMX_CommandStateSet, OMX_StateIdle, NULL); for (j=0; j<8; j++) { inBuffer[j] = 0; } outBuffer[0] = outBuffer[1] = NULL; for(j=0; jhandle, &inBuffer[j*2], j, NULL, BUFFER_IN_SIZE); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Error on AllocateBuffer %i %p on port %i\n", j*2, inBuffer[j*2], j); exit(1); } err = OMX_AllocateBuffer(appPriv->handle, &inBuffer[j * 2 + 1], j, NULL, BUFFER_IN_SIZE); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Error on AllocateBuffer %i %p on port %i\n", j*2+1, inBuffer[j*2+1], j); exit(1); } } err = OMX_AllocateBuffer(appPriv->handle, &outBuffer[0], 4, NULL, BUFFER_IN_SIZE); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Error on AllocateBuffer 0 %p on port 4\n", outBuffer[0]); exit(1); } err = OMX_AllocateBuffer(appPriv->handle, &outBuffer[1], 4, NULL, BUFFER_IN_SIZE); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Error on AllocateBuffer 1 %p on port 4\n", outBuffer[1]); exit(1); } tsem_down(appPriv->eventSem); err = OMX_SendCommand(appPriv->handle, OMX_CommandStateSet, OMX_StateExecuting, NULL); /* Wait for commands to complete */ tsem_down(appPriv->eventSem); for (i = 0; ipBuffer, FRAME_SIZE); inBuffer[i*2]->nFilledLen = data_read; filesize[i] -= data_read; data_read = read(fd[i], inBuffer[i*2+1]->pBuffer, FRAME_SIZE); inBuffer[i*2+1]->nFilledLen = data_read; filesize[i] -= data_read; } for (i = 0; ihandle, inBuffer[i*2]); err = OMX_EmptyThisBuffer(appPriv->handle, inBuffer[i*2+1]); } /** Schedule a couple of buffers to be filled on the output port * The callback itself will re-schedule them. */ err = OMX_FillThisBuffer(appPriv->handle, outBuffer[0]); err = OMX_FillThisBuffer(appPriv->handle, outBuffer[1]); /*Port Disable option available in case of direct play out only*/ if(!flagOutputReceived) { DEBUG(DEFAULT_MESSAGES, "\nIf you want to disabled port enter port number[0..3]: else Enter 'q' \n\n"); while(!bEOS[0] || !bEOS[1] || !bEOS[2] || !bEOS[3]) { DEBUG(DEFAULT_MESSAGES, "Port status 0=%i, 1=%i, 2=%i, 3=%i\n",isPortDisabled[0], isPortDisabled[1], isPortDisabled[2], isPortDisabled[3]); DEBUG(DEFAULT_MESSAGES, "Port play 0=%i, 1=%i, 2=%i, 3=%i\n",bEOS[0], bEOS[1], bEOS[2], bEOS[3]); DEBUG(DEFAULT_MESSAGES, "Entry : "); c = getchar(); if(c=='\n') { continue; } else if(c == 'q') { DEBUG(DEFAULT_MESSAGES,"No port to disable\n"); break; } else { i= (int)atoi(&c); if(i>=0 && i<4) { DEBUG(DEFAULT_MESSAGES,"Disabling/Enabling Port %i\n", i); if (isPortDisabled[i] == OMX_TRUE) { err = OMX_SendCommand(appPriv->handle, OMX_CommandPortEnable, i, NULL); err = OMX_AllocateBuffer(appPriv->handle, &inBuffer[i*2], i, NULL, BUFFER_IN_SIZE); err = OMX_AllocateBuffer(appPriv->handle, &inBuffer[i*2+1], i, NULL, BUFFER_IN_SIZE); tsem_down(appPriv->eventSem); isPortDisabled[i] = OMX_FALSE; data_read = read(fd[i], inBuffer[i*2]->pBuffer, FRAME_SIZE); inBuffer[i*2]->nFilledLen = data_read; data_read = read(fd[i], inBuffer[i*2+1]->pBuffer, FRAME_SIZE); inBuffer[i*2+1]->nFilledLen = data_read; //Sending Empty buffer err = OMX_EmptyThisBuffer(appPriv->handle, inBuffer[i*2]); err = OMX_EmptyThisBuffer(appPriv->handle, inBuffer[i*2+1]); } else { isPortDisabled[i] = OMX_TRUE; err = OMX_SendCommand(appPriv->handle, OMX_CommandPortDisable, i, NULL); while(iBufferDropped[i]!=2) { usleep(10000); } for(j=0;jhandle, i, inBuffer[j+i]); } tsem_down(appPriv->eventSem); iBufferDropped[i] = 0; } } else { DEBUG(DEFAULT_MESSAGES,"Either Port %i is already disabled or not valid\n",i); } } } } DEBUG(DEFAULT_MESSAGES, "Waiting for EOS\n"); if(isPortDisabled[0] == OMX_FALSE) { tsem_down(appPriv->eofSem); DEBUG(DEFAULT_MESSAGES, "Received EOS 1\n"); } if(isPortDisabled[1] == OMX_FALSE) { tsem_down(appPriv->eofSem); DEBUG(DEFAULT_MESSAGES, "Received EOS 2\n"); } if(isPortDisabled[2] == OMX_FALSE) { tsem_down(appPriv->eofSem); DEBUG(DEFAULT_MESSAGES, "Received EOS 3\n"); } if(isPortDisabled[3] == OMX_FALSE) { tsem_down(appPriv->eofSem); DEBUG(DEFAULT_MESSAGES, "Received EOS 4\n"); } err = OMX_SendCommand(appPriv->handle, OMX_CommandStateSet, OMX_StateIdle, NULL); /* Wait for commands to complete */ tsem_down(appPriv->eventSem); err = OMX_SendCommand(appPriv->handle, OMX_CommandStateSet, OMX_StateLoaded, NULL); for(j=0; jhandle, j, inBuffer[j*2]); err = OMX_FreeBuffer(appPriv->handle, j, inBuffer[j*2+1]); } } for(j=0;jhandle, 4, outBuffer[j]); } /* Wait for commands to complete */ tsem_down(appPriv->eventSem); OMX_FreeHandle(appPriv->handle); free(appPriv->eventSem); free(appPriv); if (flagOutputReceived) { if(fclose(outfile) != 0) { DEBUG(DEB_LEV_ERR,"Error in closing output file\n"); exit(1); } free(output_file); } for (i = 0; ieventSem); } else if (Data1 == OMX_CommandPortEnable){ tsem_up(appPriv->eventSem); } else if (Data1 == OMX_CommandPortDisable){ tsem_up(appPriv->eventSem); } } else if(eEvent == OMX_EventBufferFlag) { DEBUG(DEB_LEV_SIMPLE_SEQ, "OMX_EventBufferFlag\n"); if((int)Data2 == OMX_BUFFERFLAG_EOS) { tsem_up(appPriv->eofSem); } } else { DEBUG(DEB_LEV_SIMPLE_SEQ, "Param1 is %i\n", (int)Data1); DEBUG(DEB_LEV_SIMPLE_SEQ, "Param2 is %i\n", (int)Data2); } return OMX_ErrorNone; } OMX_ERRORTYPE audiomixerEmptyBufferDone( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_BUFFERHEADERTYPE* pBuffer) { OMX_ERRORTYPE err; int data_read; DEBUG(DEB_LEV_FULL_SEQ, "Hi there, I am in the %s callback from the port %i\n", __func__, (int)pBuffer->nInputPortIndex); if(isPortDisabled[pBuffer->nInputPortIndex] == OMX_FALSE) { data_read = read(fd[pBuffer->nInputPortIndex], pBuffer->pBuffer, FRAME_SIZE); pBuffer->nFilledLen = data_read; pBuffer->nOffset = 0; filesize[pBuffer->nInputPortIndex] -= data_read; DEBUG(DEB_LEV_SIMPLE_SEQ, "Sending from file %i data read=%d\n", (int)pBuffer->nInputPortIndex, data_read); if (data_read <= 0) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In the %s no more input data available\n", __func__); ++iBufferDropped[pBuffer->nInputPortIndex]; if(iBufferDropped[pBuffer->nInputPortIndex]==2) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Dropping Empty This buffer to Audio Mixer Stream %i\n", __func__, (int)pBuffer->nInputPortIndex); return OMX_ErrorNone; } else if(iBufferDropped[pBuffer->nInputPortIndex]>2) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Dropping Empty This buffer to Audio Mixer Stream %i\n", __func__, (int)pBuffer->nInputPortIndex); return OMX_ErrorNone; } pBuffer->nFilledLen=0; pBuffer->nFlags = OMX_BUFFERFLAG_EOS; bEOS[pBuffer->nInputPortIndex]=OMX_TRUE; DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Sending EOS for Stream %i\n", __func__, (int)pBuffer->nInputPortIndex); err = OMX_EmptyThisBuffer(hComponent, pBuffer); return OMX_ErrorNone; } } else { ++iBufferDropped[pBuffer->nInputPortIndex]; return OMX_ErrorNone; } if(!bEOS[pBuffer->nInputPortIndex]) { DEBUG(DEB_LEV_FULL_SEQ, "Empty buffer %p\n", pBuffer); err = OMX_EmptyThisBuffer(hComponent, pBuffer); }else { DEBUG(DEB_LEV_FULL_SEQ, "In %s Dropping Empty This buffer to Audio Mixer\n", __func__); } return OMX_ErrorNone; } OMX_ERRORTYPE audiomixerFillBufferDone( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_BUFFERHEADERTYPE* pBuffer) { OMX_ERRORTYPE err; int i; DEBUG(DEB_LEV_FULL_SEQ, "Hi there, I am in the %s callback. Got buflen %i for buffer at 0x%p\n", __func__, (int)pBuffer->nFilledLen, pBuffer); /* Output data to standard output */ if(pBuffer != NULL) { if (pBuffer->nFilledLen == 0) { DEBUG(DEB_LEV_ERR, "Ouch! In %s: no data in the output buffer!\n", __func__); return OMX_ErrorNone; } if (flagOutputReceived) { if(pBuffer->nFilledLen > 0) { fwrite(pBuffer->pBuffer, 1, pBuffer->nFilledLen, outfile); } } else { for(i=0;inFilledLen;i++) { putchar(*(char*)(pBuffer->pBuffer + i)); } } pBuffer->nFilledLen = 0; /* Reschedule the fill buffer request */ if(!bEOS[0] || !bEOS[1] || !bEOS[2] || !bEOS[3]) { err = OMX_FillThisBuffer(hComponent, pBuffer); } else { DEBUG(DEB_LEV_FULL_SEQ, "In %s Dropping Fill This buffer to Audio Mixer\n", __func__); } } else { DEBUG(DEB_LEV_ERR, "Ouch! In %s: had NULL buffer to output...\n", __func__); } return OMX_ErrorNone; } /** Gets the file descriptor's size * @return the size of the file. 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Copyright (C) 2010 STMicroelectronics This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include "omxrmtest.h" #include #include #define MAX_COMPONENTS 5 #define TIMEOUT 500 /* Application private date: should go in the component field (segs...) */ OMX_HANDLETYPE *handle; OMX_CALLBACKTYPE callbacks = { .EventHandler = rmEventHandler, .EmptyBufferDone = rmEmptyBufferDone, .FillBufferDone = rmFillBufferDone, }; static void setHeader(OMX_PTR header, OMX_U32 size) { OMX_VERSIONTYPE* ver = (OMX_VERSIONTYPE*)(header + sizeof(OMX_U32)); *((OMX_U32*)header) = size; ver->s.nVersionMajor = VERSIONMAJOR; ver->s.nVersionMinor = VERSIONMINOR; ver->s.nRevision = VERSIONREVISION; ver->s.nStep = VERSIONSTEP; } int convertStr2Int(char* str) { int val = 0; int len = strlen(str); int i = 0; while(i < len) { if ((*(str+i)<'0') || (*(str+i)>'9')) { return 0; } val = (val*10) + ((*(str+i))-'0'); i++; } return val; } void display_help() { printf("\n"); printf("Usage: omxrmtest OMX_name [-i max_comp]\n"); printf("\n"); exit(1); } int max_value; int main(int argc, char** argv) { int getMaxValue = 0; int flagInputReceived = 0; int argn_dec = 1; int i, j; int num_of_components; OMX_STATETYPE state; char* componentName; int global_err = 0; OMX_ERRORTYPE err; OMX_PORT_PARAM_TYPE sParam; int indexaudiostart = -1; int audioports = 0; int indexvideostart = -1; int videoports = 0; int indeximagestart = -1; int imageports = 0; int indexotherstart = -1; int otherports = 0; max_value = 0; if(argc < 2){ display_help(); } else { while (argn_dec < argc) { if (*(argv[argn_dec]) == '-') { switch (*(argv[argn_dec] + 1)) { case 'h': display_help(); break; case 'i': getMaxValue = 1; break; default: display_help(); } } else { if (getMaxValue) { max_value = convertStr2Int(argv[argn_dec]); if (max_value == 0) { display_help(); } } else { componentName = malloc(strlen(argv[argn_dec]) * sizeof(char) + 1); strcpy(componentName, argv[argn_dec]); flagInputReceived = 1; } } argn_dec++; } } if (!flagInputReceived) { display_help(); } if (max_value == 0) { max_value = MAX_COMPONENTS; } handle = malloc(sizeof(OMX_HANDLETYPE*) * max_value); /* Obtain file descriptor */ eventSem = malloc(sizeof(tsem_t)); tsem_init(eventSem, 0); bResourceErrorReceived = OMX_FALSE; err = OMX_Init(); if(err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "OMX_Init() failed\n"); exit(1); } DEBUG(DEB_LEV_SIMPLE_SEQ, "OMX_Init()\n"); for (i = 0; i 0) { indexaudiostart = sParam.nStartPortNumber; audioports = sParam.nPorts; } err = OMX_GetParameter(handle[0], OMX_IndexParamVideoInit, &sParam); if (sParam.nPorts > 0) { indexvideostart = sParam.nStartPortNumber; videoports = sParam.nPorts; } err = OMX_GetParameter(handle[0], OMX_IndexParamImageInit, &sParam); if (sParam.nPorts > 0) { indeximagestart = sParam.nStartPortNumber; imageports = sParam.nPorts; } err = OMX_GetParameter(handle[0], OMX_IndexParamOtherInit, &sParam); if (sParam.nPorts > 0) { indexotherstart = sParam.nStartPortNumber; otherports = sParam.nPorts; } for (i = 0; i= 0) { for (j = 0; j< audioports; j++) { err = OMX_SendCommand(handle[i], OMX_CommandPortDisable, j + indexaudiostart, 0); } } if (indexvideostart >= 0) { for (j = 0; j< videoports; j++) { err = OMX_SendCommand(handle[i], OMX_CommandPortDisable, j + indexvideostart, 0); } } if (indeximagestart >= 0) { for (j = 0; j< imageports; j++) { err = OMX_SendCommand(handle[i], OMX_CommandPortDisable, j + indeximagestart, 0); } } if (indexotherstart >= 0) { for (j = 0; j< otherports; j++) { err = OMX_SendCommand(handle[i], OMX_CommandPortDisable, j + indexotherstart, 0); } } err = OMX_SendCommand(handle[i], OMX_CommandStateSet, OMX_StateIdle, NULL); if(err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "The component %s can't go to Idle\n", componentName); break; } global_err = tsem_timed_down(eventSem, TIMEOUT); if (global_err != 0) { DEBUG(DEFAULT_MESSAGES, "#########################################################################\n"); DEBUG(DEFAULT_MESSAGES, "The resource manager does not handle component %s\n", componentName); DEBUG(DEFAULT_MESSAGES, "#########################################################################\n"); break; } else { DEBUG(DEB_LEV_SIMPLE_SEQ, "The component %i is set to Idle\n", i); if (bResourceErrorReceived) { DEBUG(DEB_LEV_SIMPLE_SEQ, "The resources are exhausted\n"); DEBUG(DEB_LEV_SIMPLE_SEQ, "Send component %i to WaitForResources\n", i); err = OMX_SendCommand(handle[i], OMX_CommandStateSet, OMX_StateWaitForResources, NULL); tsem_down(eventSem); DEBUG(DEB_LEV_SIMPLE_SEQ, "Send component %i to Loaded\n", i-1); err = OMX_SendCommand(handle[i-1], OMX_CommandStateSet, OMX_StateLoaded, NULL); tsem_down(eventSem); DEBUG(DEB_LEV_SIMPLE_SEQ, "Wait for component %i to go to Idle\n", i); tsem_down(eventSem); DEBUG(DEFAULT_MESSAGES, "#########################################################################\n"); DEBUG(DEFAULT_MESSAGES, "The resource manager has operated on %s\n", componentName); DEBUG(DEFAULT_MESSAGES, "#########################################################################\n"); break; } } } num_of_components = i; DEBUG(DEB_LEV_SIMPLE_SEQ, "Dispose the system\n"); for (i = 0; i #include #include #include #include #include #include #include /** Specification version*/ #define VERSIONMAJOR 1 #define VERSIONMINOR 1 #define VERSIONREVISION 0 #define VERSIONSTEP 0 tsem_t* eventSem; OMX_BOOL bResourceErrorReceived; /* Callback prototypes */ OMX_ERRORTYPE rmEventHandler( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_EVENTTYPE eEvent, OMX_U32 Data1, OMX_U32 Data2, OMX_PTR pEventData); OMX_ERRORTYPE rmEmptyBufferDone( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_BUFFERHEADERTYPE* pBuffer); OMX_ERRORTYPE rmFillBufferDone( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_BUFFERHEADERTYPE* pBuffer); #endif 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Copyright (C) 2010 STMicroelectronics This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include "omxprioritytest.h" #include #include #define MAX_COMPONENTS 5 #define TIMEOUT 500 /* Application private date: should go in the component field (segs...) */ OMX_HANDLETYPE *handle; OMX_CALLBACKTYPE callbacks = { .EventHandler = rmEventHandler, .EmptyBufferDone = rmEmptyBufferDone, .FillBufferDone = rmFillBufferDone, }; static void setHeader(OMX_PTR header, OMX_U32 size) { OMX_VERSIONTYPE* ver = (OMX_VERSIONTYPE*)(header + sizeof(OMX_U32)); *((OMX_U32*)header) = size; ver->s.nVersionMajor = VERSIONMAJOR; ver->s.nVersionMinor = VERSIONMINOR; ver->s.nRevision = VERSIONREVISION; ver->s.nStep = VERSIONSTEP; } int convertStr2Int(char* str) { int val = 0; int len = strlen(str); int i = 0; while(i < len) { if ((*(str+i)<'0') || (*(str+i)>'9')) { return 0; } val = (val*10) + ((*(str+i))-'0'); i++; } return val; } void display_help() { printf("\n"); printf("Usage: omxprioritytest OMX_name [-i max_comp]\n"); printf("\n"); exit(1); } int max_value; int main(int argc, char** argv) { int getMaxValue = 0; int flagInputReceived = 0; int argn_dec = 1; int i, j; int num_of_components; OMX_STATETYPE state; char* componentName; int global_err = 0; OMX_ERRORTYPE err; OMX_PORT_PARAM_TYPE sParam; int indexaudiostart = -1; int audioports = 0; int indexvideostart = -1; int videoports = 0; int indeximagestart = -1; int imageports = 0; int indexotherstart = -1; int otherports = 0; OMX_PRIORITYMGMTTYPE oPriority; max_value = 0; if(argc < 2){ display_help(); } else { while (argn_dec < argc) { if (*(argv[argn_dec]) == '-') { switch (*(argv[argn_dec] + 1)) { case 'h': display_help(); break; case 'i': getMaxValue = 1; break; default: display_help(); } } else { if (getMaxValue) { max_value = convertStr2Int(argv[argn_dec]); if (max_value == 0) { display_help(); } } else { componentName = malloc(strlen(argv[argn_dec]) * sizeof(char) + 1); strcpy(componentName, argv[argn_dec]); flagInputReceived = 1; } } argn_dec++; } } if (!flagInputReceived) { display_help(); } if (max_value == 0) { max_value = MAX_COMPONENTS; } handle = malloc(sizeof(OMX_HANDLETYPE*) * max_value); /* Obtain file descriptor */ eventSem = malloc(sizeof(tsem_t)); tsem_init(eventSem, 0); bResourceErrorReceived = OMX_FALSE; err = OMX_Init(); if(err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "OMX_Init() failed\n"); exit(1); } DEBUG(DEB_LEV_SIMPLE_SEQ, "OMX_Init()\n"); for (i = 0; i 0) { indexaudiostart = sParam.nStartPortNumber; audioports = sParam.nPorts; } err = OMX_GetParameter(handle[0], OMX_IndexParamVideoInit, &sParam); if (sParam.nPorts > 0) { indexvideostart = sParam.nStartPortNumber; videoports = sParam.nPorts; } err = OMX_GetParameter(handle[0], OMX_IndexParamImageInit, &sParam); if (sParam.nPorts > 0) { indeximagestart = sParam.nStartPortNumber; imageports = sParam.nPorts; } err = OMX_GetParameter(handle[0], OMX_IndexParamOtherInit, &sParam); if (sParam.nPorts > 0) { indexotherstart = sParam.nStartPortNumber; otherports = sParam.nPorts; } for (i = 0; i= 0) { for (j = 0; j< audioports; j++) { err = OMX_SendCommand(handle[i], OMX_CommandPortDisable, j + indexaudiostart, 0); } } if (indexvideostart >= 0) { for (j = 0; j< videoports; j++) { err = OMX_SendCommand(handle[i], OMX_CommandPortDisable, j + indexvideostart, 0); } } if (indeximagestart >= 0) { for (j = 0; j< imageports; j++) { err = OMX_SendCommand(handle[i], OMX_CommandPortDisable, j + indeximagestart, 0); } } if (indexotherstart >= 0) { for (j = 0; j< otherports; j++) { err = OMX_SendCommand(handle[i], OMX_CommandPortDisable, j + indexotherstart, 0); } } err = OMX_SendCommand(handle[i], OMX_CommandStateSet, OMX_StateIdle, NULL); if(err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "The component %s can't go to Idle\n", componentName); break; } global_err = tsem_timed_down(eventSem, TIMEOUT); if (global_err != 0) { DEBUG(DEFAULT_MESSAGES, "#########################################################################\n"); DEBUG(DEFAULT_MESSAGES, "The resource manager does not handle component %s\n", componentName); DEBUG(DEFAULT_MESSAGES, "#########################################################################\n"); break; } else { DEBUG(DEB_LEV_SIMPLE_SEQ, "The component %i is set to Idle\n", i); if (bResourceErrorReceived) { /** the priority of the component which fails to go to idle is raised so that another component is preempted to leave room to this component */ DEBUG(DEB_LEV_SIMPLE_SEQ, "The resources are exhausted\n"); DEBUG(DEB_LEV_SIMPLE_SEQ, "Raising the priority of component %i\n", i); setHeader(&oPriority, sizeof(OMX_PRIORITYMGMTTYPE)); oPriority.nGroupPriority = 1; err = OMX_SetParameter(handle[i], OMX_IndexParamPriorityMgmt, &oPriority); err = OMX_SendCommand(handle[i], OMX_CommandStateSet, OMX_StateIdle, NULL); tsem_down(eventSem); DEBUG(DEFAULT_MESSAGES, "#########################################################################\n"); DEBUG(DEFAULT_MESSAGES, "The resource manager has operated on %s\n", componentName); DEBUG(DEFAULT_MESSAGES, "#########################################################################\n"); break; } } } num_of_components = i; DEBUG(DEB_LEV_SIMPLE_SEQ, "Dispose the system\n"); for (i = 0; i #include #include #include #include #include #include #include /** Specification version*/ #define VERSIONMAJOR 1 #define VERSIONMINOR 1 #define VERSIONREVISION 0 #define VERSIONSTEP 0 tsem_t* eventSem; OMX_BOOL bResourceErrorReceived; /* Callback prototypes */ OMX_ERRORTYPE rmEventHandler( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_EVENTTYPE eEvent, OMX_U32 Data1, OMX_U32 Data2, OMX_PTR pEventData); OMX_ERRORTYPE rmEmptyBufferDone( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_BUFFERHEADERTYPE* pBuffer); OMX_ERRORTYPE rmFillBufferDone( OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_BUFFERHEADERTYPE* pBuffer); #endif libomxil-bellagio-0.9.3/test/components/common/0000755000175000017500000000000011565425034016560 500000000000000libomxil-bellagio-0.9.3/test/components/common/user_debug_levels.h0000644000175000017500000000436511513256766022366 00000000000000/** test/components/common/user_debug_levels.h Define the level of debug prints on standard err. The different levels can be composed with binary OR. The debug levels defined here belong to the test applications Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ /** Remove all debug output lines */ #define DEB_LEV_NO_OUTPUT 0 /** Messages explaing the reason of critical errors */ #define DEB_LEV_ERR 1 /** Messages showing values related to the test and the component/s used */ #define DEB_LEV_PARAMS 2 /** Messages representing steps in the execution. These are the simple messages, because * they avoid iterations */ #define DEB_LEV_SIMPLE_SEQ 4 /** Messages representing steps in the execution. All the steps are described, * also with iterations. With this level of output the performance is * seriously compromised */ #define DEB_LEV_FULL_SEQ 8 /** Messages that indicate the beginning and the end of a function. * It can be used to trace the execution */ #define DEB_LEV_FUNCTION_NAME 16 /** Messages that are the default test application output. These message should be * shown every time */ #define DEFAULT_MESSAGES 32 /** All the messages - max value */ #define DEB_ALL_MESS 255 /** \def DEBUG_LEVEL is the current level do debug output on standard err */ #define DEBUG_LEVEL (DEB_LEV_ERR | DEFAULT_MESSAGES) #if DEBUG_LEVEL > 0 #define DEBUG(n, args...) do { if (DEBUG_LEVEL & (n)){fprintf(stderr, args);} } while (0) #else #define DEBUG(n, args...) #endif libomxil-bellagio-0.9.3/test/components/common/Makefile.in0000644000175000017500000002322211565413755020555 00000000000000# Makefile.in generated by automake 1.11.1 from Makefile.am. # @configure_input@ # Copyright (C) 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, # 2003, 2004, 2005, 2006, 2007, 2008, 2009 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; 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Added diffs for 0.9.2 * Wed Sep 17 2008 Giulio Urlini - added jpeg encoder/decoder * Mon Jul 07 2008 Giulio Urlini - added clock source, video source, camera, frame buffer writer * Thu Mar 06 2008 Marc-Andre Lureau - copy&pasted some good practices from some other .spec.in - changed components directory - remove unnecessary plugins .la and .a files - untested * Wed Feb 27 2008 Giulio Urlini - changed the library list. * Fri Oct 19 2007 Giulio Urlini - removed fbdev from file list. It is experimental, and not installed on any platform * Tue Oct 01 2007 Giulio Urlini - Minor update and name change of this file * Tue Jun 04 2007 Giulio Urlini - Bellagio 0.3.2 release * Tue May 22 2007 Giulio Urlini - Bellagio 0.3.1 release * Fri Apr 06 2007 Giulio Urlini - Bellagio 0.3 release * Fri Feb 24 2006 David Siorpaes - Fixed some minor issues in build process * Mon Feb 6 2006 Giulio Urlini - First build attempt libomxil-bellagio-0.9.3/README0000644000175000017500000001467611565422643012745 00000000000000Bellagio OpenMAX Integration Layer 1.1.2 project Release 0.9.3 This is an Open Source implementation of the OpenMAX Integration Layer (IL) API ver. 1.1.2, specified by the Khronos group (see http://www.khronos.org/openmax). This package includes the libomxil-bellagio shared library together with the following OpenMAX components (built as separate shared objects and loaded at runtime): CORE FUNCTIONALITIES - An IL core - A component loader for static libraries for Linux - A simple resource manager - A framework of components and ports base classes for Bellagio Hierarchy - A draft support to content pipes AUDIO - OMX audio volume control - OMX audio mixer component VIDEO - a video scheduler connected to a clock component for video synchronization CLOCK - OMX Clock component. It take audio(default) as input reference clock and provide media clock to video sink and other component. It support fast forward and rewind. NEWS - support for dynamic loading of components - compilation compatible with Android ============================= IMPORTANT NOTE ============================= All the other components present in the old versions of Bellagio are distributed from the 0.9.2 on as external packages maintained separately. If you need more details you can check the download page in the Bellagio web site: http://omxil.sourceforge.net/downloads.html ============================= ENVIRONMENT VARIABLES ============================= export PATH=$INSTALL_DIR/bin:$PATH export LD_LIBRARY_PATH=$INSTALL_DIR/lib:$LD_LIBRARY_PATH export BELLAGIO_SEARCH_PATH=$INSTALL_DIR/lib/bellagio/:$INSTALL_DIR/lib/extern_omxcomp/lib/:$INSTALL_DIR/lib/ export PKG_CONFIG_PATH=$INSTALL_DIR/lib/pkgconfig/:/usr/local/lib/pkgconfig/:/usr/lib/pkgconfig/ where $INSTALL_DIR is by default /usr/local or can be specified with configure with the following command option: ./configure --prefix=$INSTALL_DIR ============================= BUILD the bellagio library ============================= autoreconf -i -f $(source_path) $(source_path)/configure make make install make check Before attempting to run any test, the OMX components *must* be registered with the command "omxregister-bellagio". omxregister-bellagio components_path1:components_path2 That will create a registry file that will contain all the components installed in the specified directories. By default the components distributed with this package are installed in /usr/local/lib/bellagio and the registry entries are stored in the file $HOME/.omxregister The location of registry file can be changed setting the environment variable OMX_BELLAGIO_REGISTRY to the location and name of the new register file. Note: the default location for the installation is TARGET=/usr/local/lib for the library, and the component will be installed in TARGET/bellagio To change the installation directory execute the configure as in the example: $(source_path)/configure --prefix=new_installation_path ============================= TEST ============================= The following simple test applications are provided: test/components/audio_effects/omxvolcontroltest test/components/audio_effects/omxaudiomixertest test/components/resource_manager/omxrmtest TEST USAGE ---------------------------------------------- Usage: omxvolcontroltest [-o outfile] [-g gain] filename -o outfile: If this option is specified, the output stream is written to outfile otherwise redirected to std output -g: Gain of PCM data [0...100] -h: Displays this help Usage: omxaudiomixertest [-o outfile] [-gi gain] -t -r 44100 -n 2 filename1 filename2 [filename3] [filename4] -o outfile: If this option is specified, the output stream is written to outfile otherwise redirected to std output; Can't be used with -t. -gi : Gain of stream i[0..3] data [0...100] -t : The audio mixer is tunneled with the ALSA sink; Can't be used with -o -r 44100 : Sample Rate [Default 44100] -n 2 : Number of channel [Default 2] -h : Displays this help The omxvolcontroltest and omxaudiomixertest receive as input an audio decompressed stream. If an output file is produced yet another uncompressed audio stream is written. The purpose of these tests is to verify the correct behavior of audio effects volume control ands audio mixer. If any developer is interested in a full multimedia chain with codecs also please refer to the external components and relates tests. A set of application using many components is also provided as a separate package. For further details go to the download page of the Bellagio web pages: http://omxil.sourceforge.net/downloads.html ============================= BUILD RPM ============================= - To build RPM: make dist cp libomxil-bellagio-0.9.3.tar.gz $HOME/rpmbuild/SOURCES/ rpmbuild -bb libomxil-bellagio.spec ============================= BUILD DEB ============================= To build the installable deb package with the Bellagio libraries run in the source directory: sudo checkinstall --pkgsource=$(source_path) --install=no --maintainer=giulio.urlini@st.com --spec=$(source_path)/libomxil-bellagio.spec --inspect Note: the deb package will store the intallation path set by the last configure executed ============================= SOURCE CODE PACKAGE ============================= There are two ways to generate the source code package. One is provided by the makefile internal structure, running the following command: make dist In Ubuntu system is also available the debian mechanism to build a source code package, running the following instructions, in the base directory of the source code: dpkg-buildpackage -S ============================= Android Support ============================= Actually the Bellagio framework can be executed in Android Froyo 2.2 using the stagefright multimedia framework. Some makefiles and instructions are contained in the actual packet. ============================= DITRIBUTIONS ============================= This version has been tested on: - UBUNTU 10.10 and older - Fedora Core 11 ================================ UBUNTU Installation instructions ================================ In order to compile properly the bellagio framework in Ubuntu some packages should be added. 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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; ;; 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 $lt_cv_sys_max_cmd_len \* 3` ;; interix*) # We know the value 262144 and hardcode it with a safety zone (like BSD) lt_cv_sys_max_cmd_len=196608 ;; osf*) # Dr. Hans Ekkehard Plesser reports seeing a kernel panic running configure # due to this test when exec_disable_arg_limit is 1 on Tru64. It is not # nice to cause kernel panics so lets avoid the loop below. # First set a reasonable default. lt_cv_sys_max_cmd_len=16384 # if test -x /sbin/sysconfig; then case `/sbin/sysconfig -q proc exec_disable_arg_limit` in *1*) lt_cv_sys_max_cmd_len=-1 ;; esac fi ;; sco3.2v5*) lt_cv_sys_max_cmd_len=102400 ;; sysv5* | sco5v6* | sysv4.2uw2*) kargmax=`grep ARG_MAX /etc/conf/cf.d/stune 2>/dev/null` if test -n "$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-${CONFIG_SHELL-/bin/sh}} # If test is not a shell built-in, we'll probably end up computing a # maximum length that is only half of the actual maximum length, but # we can't tell. while { test "X"`$SHELL $0 --fallback-echo "X$teststring$teststring" 2>/dev/null` \ = "XX$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 $as_echo_n "checking whether the shell understands some XSI constructs... " >&6; } # Try some XSI features xsi_shell=no ( _lt_dummy="a/b/c" test "${_lt_dummy##*/},${_lt_dummy%/*},"${_lt_dummy%"$_lt_dummy"}, \ = c,a/b,, \ && eval 'test $(( 1 + 1 )) -eq 2 \ && test "${#_lt_dummy}" -eq 5' ) >/dev/null 2>&1 \ && xsi_shell=yes { $as_echo "$as_me:${as_lineno-$LINENO}: result: $xsi_shell" >&5 $as_echo "$xsi_shell" >&6; } { $as_echo "$as_me:${as_lineno-$LINENO}: checking whether the shell understands \"+=\"" >&5 $as_echo_n "checking whether the shell understands \"+=\"... " >&6; } lt_shell_append=no ( foo=bar; set foo baz; eval "$1+=\$2" && test "$foo" = barbaz ) \ >/dev/null 2>&1 \ && lt_shell_append=yes { $as_echo "$as_me:${as_lineno-$LINENO}: result: $lt_shell_append" >&5 $as_echo "$lt_shell_append" >&6; } if ( (MAIL=60; unset MAIL) || exit) >/dev/null 2>&1; then lt_unset=unset else lt_unset=false fi # test EBCDIC or ASCII case `echo X|tr X '\101'` in A) # ASCII based system # \n is not interpreted correctly by Solaris 8 /usr/ucb/tr lt_SP2NL='tr \040 \012' lt_NL2SP='tr \015\012 \040\040' ;; *) # EBCDIC based system lt_SP2NL='tr \100 \n' lt_NL2SP='tr \r\n \100\100' ;; esac { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $LD option to reload object files" >&5 $as_echo_n "checking for $LD option to reload object files... " >&6; } if test "${lt_cv_ld_reload_flag+set}" = set; 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 $host_os in darwin*) if test "$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 $ac_word... " >&6; } if test "${ac_cv_prog_OBJDUMP+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 $ac_word... " >&6; } if test "${ac_cv_prog_ac_ct_OBJDUMP+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 $as_echo_n "checking how to recognize dependent libraries... " >&6; } if test "${lt_cv_deplibs_check_method+set}" = set; 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 $host_os in aix[4-9]*) lt_cv_deplibs_check_method=pass_all ;; beos*) lt_cv_deplibs_check_method=pass_all ;; bsdi[45]*) lt_cv_deplibs_check_method='file_magic ELF [0-9][0-9]*-bit [ML]SB (shared object|dynamic lib)' lt_cv_file_magic_cmd='/usr/bin/file -L' lt_cv_file_magic_test_file=/shlib/libc.so ;; cygwin*) # func_win32_libid is a shell function defined in ltmain.sh lt_cv_deplibs_check_method='file_magic ^x86 archive import|^x86 DLL' lt_cv_file_magic_cmd='func_win32_libid' ;; mingw* | pw32*) # Base MSYS/MinGW do not provide the 'file' command needed by # func_win32_libid shell function, so use a weaker test based on 'objdump', # unless we find 'file', for example because we are cross-compiling. if ( file / ) >/dev/null 2>&1; then lt_cv_deplibs_check_method='file_magic ^x86 archive import|^x86 DLL' lt_cv_file_magic_cmd='func_win32_libid' else lt_cv_deplibs_check_method='file_magic file format pei*-i386(.*architecture: i386)?' lt_cv_file_magic_cmd='$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 ;; hpux10.20* | hpux11*) lt_cv_file_magic_cmd=/usr/bin/file case $host_cpu in ia64*) lt_cv_deplibs_check_method='file_magic (s[0-9][0-9][0-9]|ELF-[0-9][0-9]) shared object file - IA64' lt_cv_file_magic_test_file=/usr/lib/hpux32/libc.so ;; hppa*64*) lt_cv_deplibs_check_method='file_magic (s[0-9][0-9][0-9]|ELF-[0-9][0-9]) shared object file - PA-RISC [0-9].[0-9]' lt_cv_file_magic_test_file=/usr/lib/pa20_64/libc.sl ;; *) lt_cv_deplibs_check_method='file_magic (s[0-9][0-9][0-9]|PA-RISC[0-9].[0-9]) shared library' lt_cv_file_magic_test_file=/usr/lib/libc.sl ;; esac ;; interix[3-9]*) # PIC code is broken on Interix 3.x, that's why |\.a not |_pic\.a here lt_cv_deplibs_check_method='match_pattern /lib[^/]+(\.so|\.a)$' ;; 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 Linux 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_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}ar", so it can be a program name with args. set dummy ${ac_tool_prefix}ar; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if test "${ac_cv_prog_AR+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$as_dir/$ac_word$ac_exec_ext"; }; then ac_cv_prog_AR="${ac_tool_prefix}ar" $as_echo "$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 $as_echo "no" >&6; } fi fi if test -z "$ac_cv_prog_AR"; then ac_ct_AR=$AR # Extract the first word of "ar", so it can be a program name with args. set dummy ar; ac_word=$2 { $as_echo "$as_me:${as_lineno-$LINENO}: checking for $ac_word" >&5 $as_echo_n "checking for $ac_word... " >&6; } if test "${ac_cv_prog_ac_ct_AR+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$as_dir/$ac_word$ac_exec_ext"; }; then ac_cv_prog_ac_ct_AR="ar" $as_echo "$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 $as_echo "no" >&6; } fi if test "x$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=$ac_ct_AR fi else AR="$ac_cv_prog_AR" fi test -z "$AR" && AR=ar test -z "$AR_FLAGS" && AR_FLAGS=cru 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 $ac_word... " >&6; } if test "${ac_cv_prog_STRIP+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 $ac_word... " >&6; } if test "${ac_cv_prog_ac_ct_STRIP+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 $ac_word... " >&6; } if test "${ac_cv_prog_RANLIB+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 $ac_word... " >&6; } if test "${ac_cv_prog_ac_ct_RANLIB+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 \$oldlib" ;; *) old_postinstall_cmds="$old_postinstall_cmds~\$RANLIB \$oldlib" ;; esac old_archive_cmds="$old_archive_cmds~\$RANLIB \$oldlib" fi # 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 $compiler object... " >&6; } if test "${lt_cv_sys_global_symbol_pipe+set}" = set; 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};"\ " /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$opt_cr$/$symxfrm/p'" fi # Check to see that the pipe works correctly. pipe_works=no rm -f conftest* cat > conftest.$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 #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. */ 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.$ac_objext lt_save_LIBS="$LIBS" lt_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="$lt_save_LIBS" CFLAGS="$lt_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 $as_echo "ok" >&6; } fi # Check whether --enable-libtool-lock was given. if test "${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 6682 "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 $as_echo_n "checking whether the C compiler needs -belf... " >&6; } if test "${lt_cv_cc_needs_belf+set}" = set; 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 ;; sparc*-*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 $lt_cv_prog_gnu_ld in yes*) LD="${LD-ld} -m elf64_sparc" ;; *) 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" 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 $ac_word... " >&6; } if test "${ac_cv_prog_DSYMUTIL+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 $ac_word... " >&6; } if test "${ac_cv_prog_ac_ct_DSYMUTIL+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 $ac_word... " >&6; } if test "${ac_cv_prog_NMEDIT+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 $ac_word... " >&6; } if test "${ac_cv_prog_ac_ct_NMEDIT+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 $ac_word... " >&6; } if test "${ac_cv_prog_LIPO+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 $ac_word... " >&6; } if test "${ac_cv_prog_ac_ct_LIPO+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 $ac_word... " >&6; } if test "${ac_cv_prog_OTOOL+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 $ac_word... " >&6; } if test "${ac_cv_prog_ac_ct_OTOOL+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 $ac_word... " >&6; } if test "${ac_cv_prog_OTOOL64+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 $ac_word... " >&6; } if test "${ac_cv_prog_ac_ct_OTOOL64+set}" = set; 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 '' $ac_executable_extensions; do if { test -f "$as_dir/$ac_word$ac_exec_ext" && $as_test_x "$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 $as_echo_n "checking for -single_module linker flag... " >&6; } if test "${lt_cv_apple_cc_single_mod+set}" = set; 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 test -f libconftest.dylib && test ! -s conftest.err && test $_lt_result = 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 $as_echo_n "checking for -exported_symbols_list linker flag... " >&6; } if test "${lt_cv_ld_exported_symbols_list+set}" = set; then : $as_echo_n "(cached) " >&6 else lt_cv_ld_exported_symbols_list=no save_LDFLAGS=$LDFLAGS echo "_main" > conftest.sym LDFLAGS="$LDFLAGS -Wl,-exported_symbols_list,conftest.sym" cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ int main () { ; return 0; } _ACEOF if ac_fn_c_try_link "$LINENO"; then : lt_cv_ld_exported_symbols_list=yes else lt_cv_ld_exported_symbols_list=no fi rm -f core conftest.err conftest.$ac_objext \ conftest$ac_exeext conftest.$ac_ext LDFLAGS="$save_LDFLAGS" fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $lt_cv_ld_exported_symbols_list" >&5 $as_echo "$lt_cv_ld_exported_symbols_list" >&6; } case $host_os in rhapsody* | darwin1.[012]) _lt_dar_allow_undefined='${wl}-undefined ${wl}suppress' ;; darwin1.*) _lt_dar_allow_undefined='${wl}-flat_namespace ${wl}-undefined ${wl}suppress' ;; darwin*) # darwin 5.x on # if running on 10.5 or later, the deployment target defaults # to the OS version, if on x86, and 10.4, the deployment # target defaults to 10.4. Don't you love it? case ${MACOSX_DEPLOYMENT_TARGET-10.0},$host in 10.0,*86*-darwin8*|10.0,*-darwin[91]*) _lt_dar_allow_undefined='${wl}-undefined ${wl}dynamic_lookup' ;; 10.[012]*) _lt_dar_allow_undefined='${wl}-flat_namespace ${wl}-undefined ${wl}suppress' ;; 10.*) _lt_dar_allow_undefined='${wl}-undefined ${wl}dynamic_lookup' ;; esac ;; esac if test "$lt_cv_apple_cc_single_mod" = "yes"; then _lt_dar_single_mod='$single_module' fi if test "$lt_cv_ld_exported_symbols_list" = "yes"; then _lt_dar_export_syms=' ${wl}-exported_symbols_list,$output_objdir/${libname}-symbols.expsym' else _lt_dar_export_syms='~$NMEDIT -s $output_objdir/${libname}-symbols.expsym ${lib}' fi if test "$DSYMUTIL" != ":"; then _lt_dsymutil='~$DSYMUTIL $lib || :' else _lt_dsymutil= fi ;; esac { $as_echo "$as_me:${as_lineno-$LINENO}: checking for ANSI C header files" >&5 $as_echo_n "checking for ANSI C header files... " >&6; } if test "${ac_cv_header_stdc+set}" = set; then : $as_echo_n "(cached) " >&6 else cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ #include #include #include #include int main () { ; return 0; } _ACEOF if ac_fn_c_try_compile "$LINENO"; then : ac_cv_header_stdc=yes else ac_cv_header_stdc=no fi rm -f core conftest.err conftest.$ac_objext conftest.$ac_ext if test $ac_cv_header_stdc = yes; then # SunOS 4.x string.h does not declare mem*, contrary to ANSI. cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ #include _ACEOF if (eval "$ac_cpp conftest.$ac_ext") 2>&5 | $EGREP "memchr" >/dev/null 2>&1; then : else ac_cv_header_stdc=no fi rm -f conftest* fi if test $ac_cv_header_stdc = yes; then # ISC 2.0.2 stdlib.h does not declare free, contrary to ANSI. cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ #include _ACEOF if (eval "$ac_cpp conftest.$ac_ext") 2>&5 | $EGREP "free" >/dev/null 2>&1; then : else ac_cv_header_stdc=no fi rm -f conftest* fi if test $ac_cv_header_stdc = yes; then # /bin/cc in Irix-4.0.5 gets non-ANSI ctype macros unless using -ansi. if test "$cross_compiling" = yes; then : : else cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ #include #include #if ((' ' & 0x0FF) == 0x020) # define ISLOWER(c) ('a' <= (c) && (c) <= 'z') # define TOUPPER(c) (ISLOWER(c) ? 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If you *** really care for shared libraries, you may want to modify your PATH *** so that a non-GNU linker is found, and then restart. _LT_EOF 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 ;; beos*) if $LD --help 2>&1 | $GREP ': supported targets:.* elf' > /dev/null; then allow_undefined_flag=unsupported # Joseph Beckenbach says some releases of gcc # support --undefined. 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FIXME archive_cmds='$CC -nostart $libobjs $deplibs $compiler_flags ${wl}-soname $wl$soname -o $lib' else ld_shlibs=no fi ;; cygwin* | mingw* | pw32* | cegcc*) # _LT_TAGVAR(hardcode_libdir_flag_spec, ) is actually meaningless, # as there is no search path for DLLs. hardcode_libdir_flag_spec='-L$libdir' allow_undefined_flag=unsupported always_export_symbols=no enable_shared_with_static_runtimes=yes export_symbols_cmds='$NM $libobjs $convenience | $global_symbol_pipe | $SED -e '\''/^[BCDGRS][ ]/s/.*[ ]\([^ ]*\)/\1 DATA/'\'' | $SED -e '\''/^[AITW][ ]/s/.*[ ]//'\'' | sort | uniq > $export_symbols' if $LD --help 2>&1 | $GREP 'auto-import' > /dev/null; then archive_cmds='$CC -shared $libobjs $deplibs $compiler_flags -o $output_objdir/$soname ${wl}--enable-auto-image-base -Xlinker --out-implib -Xlinker $lib' # If the export-symbols file already is a .def file (1st line # is EXPORTS), use it as is; otherwise, prepend... archive_expsym_cmds='if test "x`$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 $lib' else ld_shlibs=no fi ;; interix[3-9]*) hardcode_direct=no hardcode_shlibpath_var=no hardcode_libdir_flag_spec='${wl}-rpath,$libdir' export_dynamic_flag_spec='${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. To avoid this, we pick a random, # 256 KiB-aligned image base between 0x50000000 and 0x6FFC0000 at link # time. 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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 $libobjs $deplibs $compiler_flags ${wl}-soname $wl$soname -o $lib' archive_expsym_cmds='$CC -shared $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. 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return 0; } _ACEOF if ac_fn_c_try_link "$LINENO"; then : lt_aix_libpath_sed=' /Import File Strings/,/^$/ { /^0/ { s/^0 *\(.*\)$/\1/ p } }' aix_libpath=`dump -H conftest$ac_exeext 2>/dev/null | $SED -n -e "$lt_aix_libpath_sed"` # Check for a 64-bit object if we didn't find anything. if test -z "$aix_libpath"; then aix_libpath=`dump -HX64 conftest$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.$ac_ext if test -z "$aix_libpath"; then aix_libpath="/usr/lib:/lib"; fi hardcode_libdir_flag_spec='${wl}-blibpath:$libdir:'"$aix_libpath" # Warning - without using the other run time loading flags, # -berok will link without error, but may produce a broken library. no_undefined_flag=' ${wl}-bernotok' allow_undefined_flag=' ${wl}-berok' # Exported symbols can be pulled into shared objects from archives whole_archive_flag_spec='$convenience' 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. 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 $compiler_flags `$ECHO "X$deplibs" | $Xsed -e '\''s/ -lc$//'\''` -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$old_deplibs' fix_srcfile_path='`cygpath -w "$srcfile"`' enable_shared_with_static_runtimes=yes ;; darwin* | rhapsody*) archive_cmds_need_lc=no hardcode_direct=no hardcode_automatic=yes hardcode_shlibpath_var=unsupported whole_archive_flag_spec='' 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=echo 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 ;; freebsd1*) ld_shlibs=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 -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 -fPIC ${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 -a "$with_gnu_ld" = no; then archive_cmds='$CC -shared -fPIC ${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_flag_spec_ld='+b $libdir' hardcode_libdir_separator=: hardcode_direct=yes hardcode_direct_absolute=yes export_dynamic_flag_spec='${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 "$GCC" = yes -a "$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 -fPIC ${wl}+h ${wl}$soname ${wl}+nodefaultrpath -o $lib $libobjs $deplibs $compiler_flags' ;; *) archive_cmds='$CC -shared -fPIC ${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 $compiler_flags' ;; *) archive_cmds='$CC -b ${wl}+h ${wl}$soname ${wl}+b ${wl}$install_libdir -o $lib $libobjs $deplibs $compiler_flags' ;; esac fi if test "$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 $libobjs $deplibs $compiler_flags ${wl}-soname ${wl}$soname `test -n "$verstring" && $ECHO "X${wl}-set_version ${wl}$verstring" | $Xsed` ${wl}-update_registry ${wl}${output_objdir}/so_locations -o $lib' # Try to use the -exported_symbol ld option, if it does not # work, assume that -exports_file does not work either and # implicitly export all symbols. save_LDFLAGS="$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) {} _ACEOF if ac_fn_c_try_link "$LINENO"; then : archive_expsym_cmds='$CC -shared $libobjs $deplibs $compiler_flags ${wl}-soname ${wl}$soname `test -n "$verstring" && $ECHO "X${wl}-set_version ${wl}$verstring" | $Xsed` ${wl}-update_registry ${wl}${output_objdir}/so_locations ${wl}-exports_file ${wl}$export_symbols -o $lib' fi rm -f core conftest.err conftest.$ac_objext \ conftest$ac_exeext conftest.$ac_ext LDFLAGS="$save_LDFLAGS" else archive_cmds='$CC -shared $libobjs $deplibs $compiler_flags -soname $soname `test -n "$verstring" && $ECHO "X-set_version $verstring" | $Xsed` -update_registry ${output_objdir}/so_locations -o $lib' archive_expsym_cmds='$CC -shared $libobjs $deplibs $compiler_flags -soname $soname `test -n "$verstring" && $ECHO "X-set_version $verstring" | $Xsed` -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" && $ECHO "X${wl}-set_version ${wl}$verstring" | $Xsed` ${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" && $ECHO "X-set_version $verstring" | $Xsed` -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} $libobjs $deplibs $compiler_flags ${wl}-msym ${wl}-soname ${wl}$soname `test -n "$verstring" && $ECHO "X${wl}-set_version ${wl}$verstring" | $Xsed` ${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" && $ECHO "X-set_version $verstring" | $Xsed` -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 "X-set_version $verstring" | $Xsed` -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 ${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 ${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 $host_os in solaris2.[0-5] | solaris2.[0-5].*) ;; *) # The compiler driver will combine and reorder linker options, # but understands `-z linker_flag'. GCC discards it without `$wl', # but is careful enough not to reorder. # Supported since Solaris 2.6 (maybe 2.5.1?) if test "$GCC" = yes; then whole_archive_flag_spec='${wl}-z ${wl}allextract$convenience ${wl}-z ${wl}defaultextract' else whole_archive_flag_spec='-z allextract$convenience -z defaultextract' fi ;; esac link_all_deplibs=yes ;; sunos4*) if test "x$host_vendor" = xsequent; then # Use $CC to link under sequent, because it throws in some extra .o # files that make .init and .fini sections work. archive_cmds='$CC -G ${wl}-h $soname -o $lib $libobjs $deplibs $compiler_flags' else archive_cmds='$LD -assert pure-text -Bstatic -o $lib $libobjs $deplibs $linker_flags' fi hardcode_libdir_flag_spec='-L$libdir' hardcode_direct=yes hardcode_minus_L=yes hardcode_shlibpath_var=no ;; sysv4) case $host_vendor in sni) archive_cmds='$LD -G -h $soname -o $lib $libobjs $deplibs $linker_flags' hardcode_direct=yes # is this really true??? ;; siemens) ## LD is ld it makes a PLAMLIB ## CC just makes a GrossModule. archive_cmds='$LD -G -o $lib $libobjs $deplibs $linker_flags' reload_cmds='$CC -r -o $output$reload_objs' hardcode_direct=no ;; motorola) archive_cmds='$LD -G -h $soname -o $lib $libobjs $deplibs $linker_flags' hardcode_direct=no #Motorola manual says yes, but my tests say they lie ;; esac runpath_var='LD_RUN_PATH' hardcode_shlibpath_var=no ;; sysv4.3*) archive_cmds='$LD -G -h $soname -o $lib $libobjs $deplibs $linker_flags' hardcode_shlibpath_var=no export_dynamic_flag_spec='-Bexport' ;; sysv4*MP*) if test -d /usr/nec; then archive_cmds='$LD -G -h $soname -o $lib $libobjs $deplibs $linker_flags' hardcode_shlibpath_var=no runpath_var=LD_RUN_PATH hardcode_runpath_var=yes ld_shlibs=yes fi ;; sysv4*uw2* | sysv5OpenUNIX* | sysv5UnixWare7.[01].[10]* | unixware7* | sco3.2v5.0.[024]*) no_undefined_flag='${wl}-z,text' archive_cmds_need_lc=no hardcode_shlibpath_var=no runpath_var='LD_RUN_PATH' if test "$GCC" = yes; then archive_cmds='$CC -shared ${wl}-h,$soname -o $lib $libobjs $deplibs $compiler_flags' archive_expsym_cmds='$CC -shared ${wl}-Bexport:$export_symbols ${wl}-h,$soname -o $lib $libobjs $deplibs $compiler_flags' else archive_cmds='$CC -G ${wl}-h,$soname -o $lib $libobjs $deplibs $compiler_flags' archive_expsym_cmds='$CC -G ${wl}-Bexport:$export_symbols ${wl}-h,$soname -o $lib $libobjs $deplibs $compiler_flags' fi ;; sysv5* | sco3.2v5* | sco5v6*) # Note: We can NOT use -z defs as we might desire, because we do not # link with -lc, and that would cause any symbols used from libc to # always be unresolved, which means just about no library would # ever link correctly. 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If # given, STRING is the basename for that directory. func_mktempdir () { my_template="${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 $ECHO "X$my_tmpdir" | $Xsed } # 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 "X$1" | $Xsed -e "$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 "X$1" | $Xsed \ -e "$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_version # Echo version message to standard output and exit. func_version () { $SED -n '/^# '$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 () { $SED -n '/^# Usage:/,/# -h/ { s/^# // s/^# *$// s/\$progname/'$progname'/ p }' < "$progpath" $ECHO $ECHO "run \`$progname --help | more' for full usage" exit $? } # func_help # Echo long help message to standard output and exit. func_help () { $SED -n '/^# Usage:/,/# Report bugs to/ { s/^# // s/^# *$// s*\$progname*'$progname'* s*\$host*'"$host"'* s*\$SHELL*'"$SHELL"'* s*\$LTCC*'"$LTCC"'* s*\$LTCFLAGS*'"$LTCFLAGS"'* s*\$LD*'"$LD"'* s/\$with_gnu_ld/'"$with_gnu_ld"'/ s/\$automake_version/'"`(automake --version) 2>/dev/null |$SED 1q`"'/ s/\$autoconf_version/'"`(autoconf --version) 2>/dev/null |$SED 1q`"'/ p }' < "$progpath" exit $? } # func_missing_arg argname # Echo program name prefixed message to standard error and set global # exit_cmd. func_missing_arg () { func_error "missing argument for $1" exit_cmd=exit } exit_cmd=: # Check that we have a working $ECHO. if test "X$1" = X--no-reexec; then # Discard the --no-reexec flag, and continue. shift elif test "X$1" = X--fallback-echo; then # Avoid inline document here, it may be left over : elif test "X`{ $ECHO '\t'; } 2>/dev/null`" = 'X\t'; then # Yippee, $ECHO works! : else # Restart under the correct shell, and then maybe $ECHO will work. exec $SHELL "$progpath" --no-reexec ${1+"$@"} fi if test "X$1" = X--fallback-echo; then # used as fallback echo shift cat </dev/null 2>&1; then taglist="$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 } # Parse options once, thoroughly. This comes as soon as possible in # the script to make things like `libtool --version' happen quickly. { # 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 # Parse non-mode specific arguments: while test "$#" -gt 0; do opt="$1" shift case $opt in --config) func_config ;; --debug) preserve_args="$preserve_args $opt" func_echo "enabling shell trace mode" opt_debug='set -x' $opt_debug ;; -dlopen) test "$#" -eq 0 && func_missing_arg "$opt" && break execute_dlfiles="$execute_dlfiles $1" shift ;; --dry-run | -n) opt_dry_run=: ;; --features) func_features ;; --finish) mode="finish" ;; --mode) test "$#" -eq 0 && func_missing_arg "$opt" && break case $1 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 mode="$1" shift ;; --preserve-dup-deps) opt_duplicate_deps=: ;; --quiet|--silent) preserve_args="$preserve_args $opt" opt_silent=: ;; --verbose| -v) preserve_args="$preserve_args $opt" opt_silent=false ;; --tag) test "$#" -eq 0 && func_missing_arg "$opt" && break preserve_args="$preserve_args $opt $1" func_enable_tag "$1" # tagname is set here shift ;; # Separate optargs to long options: -dlopen=*|--mode=*|--tag=*) func_opt_split "$opt" set dummy "$func_opt_split_opt" "$func_opt_split_arg" ${1+"$@"} shift ;; -\?|-h) func_usage ;; --help) opt_help=: ;; --version) func_version ;; -*) func_fatal_help "unrecognized option \`$opt'" ;; *) nonopt="$opt" break ;; esac done 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_duplicate_deps ;; esac # Having warned about all mis-specified options, bail out if # anything was wrong. $exit_cmd $EXIT_FAILURE } # func_check_version_match # Ensure that we are using m4 macros, and libtool script from the same # release of libtool. func_check_version_match () { if test "$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 } ## ----------- ## ## Main. ## ## ----------- ## $opt_help || { # Sanity checks first: func_check_version_match if test "$build_libtool_libs" != yes && test "$build_old_libs" != yes; then func_fatal_configuration "not configured to build any kind of library" fi test -z "$mode" && func_fatal_error "error: you must specify a MODE." # Darwin sucks eval std_shrext=\"$shrext_cmds\" # Only execute mode is allowed to have -dlopen flags. if test -n "$execute_dlfiles" && test "$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 \`$progname --help --mode=$mode' for more information." } # 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_ltwrapper_scriptname_result="" if func_ltwrapper_executable_p "$1"; then func_dirname_and_basename "$1" "" "." func_stripname '' '.exe' "$func_basename_result" func_ltwrapper_scriptname_result="$func_dirname_result/$objdir/${func_stripname_result}_ltshwrapper" fi } # 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_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 $CC; do func_quote_for_eval "$arg" CC_quoted="$CC_quoted $func_quote_for_eval_result" done 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 "* | " `$ECHO $CC` "* | "`$ECHO $CC` "* | " $CC_quoted"* | "$CC_quoted "* | " `$ECHO $CC_quoted` "* | "`$ECHO $CC_quoted` "*) ;; # 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 $CC; do # Double-quote args containing other shell metacharacters. func_quote_for_eval "$arg" CC_quoted="$CC_quoted $func_quote_for_eval_result" done case "$@ " in " $CC "* | "$CC "* | " `$ECHO $CC` "* | "`$ECHO $CC` "* | " $CC_quoted"* | "$CC_quoted "* | " `$ECHO $CC_quoted` "* | "`$ECHO $CC_quoted` "*) # The compiler in the base compile command matches # the one in the tagged configuration. # Assume this is the tagged configuration we want. tagname=$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 <?"'"'"' &()|`$[]' \ && func_warning "libobj name \`$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=`$ECHO "X$srcfile" | $Xsed -e 's%^.*/%%' -e 's%\.[^.]*$%%'`.${objext} lockfile="$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 $EXIT_FAILURE fi removelist="$removelist $output_obj" $ECHO "$srcfile" > "$lockfile" fi $opt_dry_run || $RM $removelist removelist="$removelist $lockfile" trap '$opt_dry_run || $RM $removelist; exit $EXIT_FAILURE' 1 2 15 if test -n "$fix_srcfile_path"; then eval srcfile=\"$fix_srcfile_path\" fi func_quote_for_eval "$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 $objdir command="$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 command="$command -o $obj" fi # Suppress compiler output if we already did a PIC compilation. command="$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 } $opt_help || { test "$mode" = compile && func_mode_compile ${1+"$@"} } func_mode_help () { # We need to display help for each of the modes. case $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 building PIC objects only -prefer-non-pic try to building 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 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 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 -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 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: $progname [OPTION]... --mode=uninstall RM [RM-OPTION]... FILE... Remove libraries from an installation directory. RM is the name of the program to use to delete files associated with each FILE (typically \`/bin/rm'). RM-OPTIONS are options (such as \`-f') to be passed to RM. If FILE is a libtool library, all the files associated with it are deleted. Otherwise, only FILE itself is deleted using RM." ;; *) func_fatal_help "invalid operation mode \`$mode'" ;; esac $ECHO $ECHO "Try \`$progname --help' for more information about other modes." exit $? } # Now that we've collected a possible --mode arg, show help if necessary $opt_help && func_mode_help # 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 $execute_dlfiles; do test -f "$file" \ || func_fatal_help "\`$file' is not a file" dir= case $file in *.la) # Check to see that this really is a libtool archive. func_lalib_unsafe_p "$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 dir="$dir/$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 $file in -*) ;; *) # Do a test to see if this is really a libtool program. if func_ltwrapper_script_p "$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_quote_for_eval "$file" args="$args $func_quote_for_eval_result" done if test "X$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 $EXIT_SUCCESS fi } test "$mode" = execute && func_mode_execute ${1+"$@"} # func_mode_finish arg... func_mode_finish () { $opt_debug libdirs="$nonopt" admincmds= if test -n "$finish_cmds$finish_eval" && test -n "$libdirs"; then for dir do libdirs="$libdirs $dir" done 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" || admincmds="$admincmds $cmds" fi done fi # Exit here if they wanted silent mode. $opt_silent && exit $EXIT_SUCCESS $ECHO "X----------------------------------------------------------------------" | $Xsed $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 "X----------------------------------------------------------------------" | $Xsed exit $EXIT_SUCCESS } test "$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. $ECHO "X$nonopt" | $GREP shtool >/dev/null; then # Aesthetically quote it. func_quote_for_eval "$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 "$arg" install_prog="$install_prog$func_quote_for_eval_result" # We need to accept at least all the BSD install flags. dest= files= opts= prev= install_type= isdir=no stripme= for arg do if test -n "$dest"; then files="$files $dest" dest=$arg continue fi case $arg in -d) isdir=yes ;; -f) case " $install_prog " in *[\\\ /]cp\ *) ;; *) prev=$arg ;; esac ;; -g | -m | -o) prev=$arg ;; -s) stripme=" -s" continue ;; -*) ;; *) # If the previous option needed an argument, then skip it. if test -n "$prev"; then prev= else dest=$arg continue fi ;; esac # Aesthetically quote the argument. func_quote_for_eval "$arg" install_prog="$install_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 -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. staticlibs="$staticlibs $file" ;; *.la) # Check to see that this really is a libtool archive. func_lalib_unsafe_p "$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 *" $libdir "*) ;; *) current_libdirs="$current_libdirs $libdir" ;; esac else # Note the libdir as a future libdir. case "$future_libdirs " in *" $libdir "*) ;; *) future_libdirs="$future_libdirs $libdir" ;; esac fi func_dirname "$file" "/" "" dir="$func_dirname_result" dir="$dir$objdir" if test -n "$relink_command"; then # Determine the prefix the user has applied to our future dir. inst_prefix_dir=`$ECHO "X$destdir" | $Xsed -e "s%$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=`$ECHO "X$relink_command" | $Xsed -e "s%@inst_prefix_dir@%-inst-prefix-dir $inst_prefix_dir%"` else relink_command=`$ECHO "X$relink_command" | $Xsed -e "s%@inst_prefix_dir@%%"` fi func_warning "relinking \`$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_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" && staticlibs="$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/"`$ECHO "X$lib" | $Xsed -e 's%^.*/%%g'` ### testsuite: skip nested quoting test if test -n "$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 "X$relink_command" | $Xsed -e 's%@OUTPUT@%'"$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=`$ECHO "X$file$stripped_ext" | $Xsed -e "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/$name" func_show_eval "$install_prog \$file \$oldlib" 'exit $?' if test -n "$stripme" && test -n "$old_striplib"; then func_show_eval "$old_striplib $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 $EXIT_SUCCESS fi } test "$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) $VERSION */ #ifdef __cplusplus extern \"C\" { #endif /* External symbol declarations for the compiler. */\ " if test "$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=`$ECHO "X$objs$old_deplibs" | $SP2NL | $Xsed -e "$lo2o" | $NL2SP` for progfile in $progfiles; do func_verbose "extracting global C symbols from \`$progfile'" $opt_dry_run || eval "$NM $progfile | $global_symbol_pipe >> '$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" $opt_dry_run || { eval '$ECHO ": $name " >> "$nlist"' eval "$NM $dlprefile 2>/dev/null | $global_symbol_pipe >> '$nlist'" } 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; " case $host in *cygwin* | *mingw* | *cegcc* ) $ECHO >> "$output_objdir/$my_dlsyms" "\ /* DATA imports from DLLs on WIN32 con't be const, because runtime relocations are performed -- see ld's documentation on pseudo-relocs. */" lt_dlsym_const= ;; *osf5*) echo >> "$output_objdir/$my_dlsyms" "\ /* This system does not cope well with relocations in const data */" lt_dlsym_const= ;; *) lt_dlsym_const=const ;; esac $ECHO >> "$output_objdir/$my_dlsyms" "\ 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 $arg in -pie | -fpie | -fPIE) ;; *) symtab_cflags="$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 "X$compile_command" | $Xsed -e "s%@SYMFILE@%$output_objdir/$my_outputname.def $symfileobj%"` finalize_command=`$ECHO "X$finalize_command" | $Xsed -e "s%@SYMFILE@%$output_objdir/$my_outputname.def $symfileobj%"` else compile_command=`$ECHO "X$compile_command" | $Xsed -e "s%@SYMFILE@%$symfileobj%"` finalize_command=`$ECHO "X$finalize_command" | $Xsed -e "s%@SYMFILE@%$symfileobj%"` fi ;; *) compile_command=`$ECHO "X$compile_command" | $Xsed -e "s%@SYMFILE@%$symfileobj%"` finalize_command=`$ECHO "X$finalize_command" | $Xsed -e "s%@SYMFILE@%$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 "X$compile_command" | $Xsed -e "s% @SYMFILE@%%"` finalize_command=`$ECHO "X$finalize_command" | $Xsed -e "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. 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 if eval $OBJDUMP -f $1 | $SED -e '10q' 2>/dev/null | $EGREP 'file format pe-i386(.*architecture: i386)?' >/dev/null ; then win32_nmres=`eval $NM -f posix -A $1 | $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_extract_an_archive dir oldlib func_extract_an_archive () { $opt_debug f_ex_an_ar_dir="$1"; shift f_ex_an_ar_oldlib="$1" func_show_eval "(cd \$f_ex_an_ar_dir && $AR x \"\$f_ex_an_ar_oldlib\")" 'exit $?' if ($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 | $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 | $NL2SP` done func_extract_archives_result="$my_oldobjs" } # func_emit_wrapper_part1 [arg=no] # # Emit the first part of a libtool wrapper script on stdout. # For more information, see the description associated with # func_emit_wrapper(), below. func_emit_wrapper_part1 () { func_emit_wrapper_part1_arg1=no if test -n "$1" ; then func_emit_wrapper_part1_arg1=$1 fi $ECHO "\ #! $SHELL # $output - temporary wrapper script for $objdir/$outputname # Generated by $PROGRAM (GNU $PACKAGE$TIMESTAMP) $VERSION # # The $output program cannot be directly executed until all the libtool # libraries that it depends on are installed. # # This wrapper script should never be moved out of the build directory. # If it is, it will not operate correctly. # Sed substitution that helps us do robust quoting. It backslashifies # metacharacters that are still active within double-quoted strings. Xsed='${SED} -e 1s/^X//' 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 ECHO=\"$qecho\" file=\"\$0\" # Make sure echo works. if test \"X\$1\" = X--no-reexec; then # Discard the --no-reexec flag, and continue. shift elif test \"X\`{ \$ECHO '\t'; } 2>/dev/null\`\" = 'X\t'; then # Yippee, \$ECHO works! : else # Restart under the correct shell, and then maybe \$ECHO will work. exec $SHELL \"\$0\" --no-reexec \${1+\"\$@\"} fi fi\ " $ECHO "\ # Find the directory that this script lives in. thisdir=\`\$ECHO \"X\$file\" | \$Xsed -e 's%/[^/]*$%%'\` 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 \"X\$file\" | \$Xsed -e '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 \"X\$file\" | \$Xsed -e 's%^.*/%%'\` file=\`ls -ld \"\$thisdir/\$file\" | ${SED} -n 's/.*-> //p'\` done " } # end: func_emit_wrapper_part1 # func_emit_wrapper_part2 [arg=no] # # Emit the second part of a libtool wrapper script on stdout. # For more information, see the description associated with # func_emit_wrapper(), below. func_emit_wrapper_part2 () { func_emit_wrapper_part2_arg1=no if test -n "$1" ; then func_emit_wrapper_part2_arg1=$1 fi $ECHO "\ # Usually 'no', except on cygwin/mingw when embedded into # the cwrapper. WRAPPER_SCRIPT_BELONGS_IN_OBJDIR=$func_emit_wrapper_part2_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 *[\\\\/]$objdir ) thisdir=\`\$ECHO \"X\$thisdir\" | \$Xsed -e 's%[\\\\/][^\\\\/]*$%%'\` ;; $objdir ) thisdir=. ;; esac fi # Try to get the absolute directory name. absdir=\`cd \"\$thisdir\" && pwd\` test -n \"\$absdir\" && thisdir=\"\$absdir\" " if test "$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 $ECHO "\ if test -f \"\$progdir/\$program\"; then" # Export our shlibpath_var if we have one. if test "$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 $shlibpath_var=\`\$ECHO \"X\$$shlibpath_var\" | \$Xsed -e 's/::*\$//'\` export $shlibpath_var " fi # fixup the dll searchpath if we need to. if test -n "$dllsearchpath"; then $ECHO "\ # Add the dll search path components to the executable PATH PATH=$dllsearchpath:\$PATH " fi $ECHO "\ if test \"\$libtool_execute_magic\" != \"$magic\"; then # Run the actual program with our arguments. " case $host in # Backslashes separate directories on plain windows *-*-mingw | *-*-os2* | *-cegcc*) $ECHO "\ exec \"\$progdir\\\\\$program\" \${1+\"\$@\"} " ;; *) $ECHO "\ exec \"\$progdir/\$program\" \${1+\"\$@\"} " ;; esac $ECHO "\ \$ECHO \"\$0: cannot exec \$program \$*\" 1>&2 exit 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\ " } # end: func_emit_wrapper_part2 # 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=no if test -n "$1" ; then func_emit_wrapper_arg1=$1 fi # split this up so that func_emit_cwrapperexe_src # can call each part independently. func_emit_wrapper_part1 "${func_emit_wrapper_arg1}" func_emit_wrapper_part2 "${func_emit_wrapper_arg1}" } # func_to_host_path arg # # Convert paths to host format when used with build tools. # Intended for use with "native" mingw (where libtool itself # is running under the msys shell), or in the following cross- # build environments: # $build $host # mingw (msys) mingw [e.g. native] # cygwin mingw # *nix + wine mingw # where wine is equipped with the `winepath' executable. # In the native mingw case, the (msys) shell automatically # converts paths for any non-msys applications it launches, # but that facility isn't available from inside the cwrapper. # Similar accommodations are necessary for $host mingw and # $build cygwin. Calling this function does no harm for other # $host/$build combinations not listed above. # # ARG is the path (on $build) that should be converted to # the proper representation for $host. The result is stored # in $func_to_host_path_result. func_to_host_path () { func_to_host_path_result="$1" if test -n "$1" ; then case $host in *mingw* ) lt_sed_naive_backslashify='s|\\\\*|\\|g;s|/|\\|g;s|\\|\\\\|g' case $build in *mingw* ) # actually, msys # awkward: cmd appends spaces to result lt_sed_strip_trailing_spaces="s/[ ]*\$//" func_to_host_path_tmp1=`( cmd //c echo "$1" |\ $SED -e "$lt_sed_strip_trailing_spaces" ) 2>/dev/null || echo ""` func_to_host_path_result=`echo "$func_to_host_path_tmp1" |\ $SED -e "$lt_sed_naive_backslashify"` ;; *cygwin* ) func_to_host_path_tmp1=`cygpath -w "$1"` func_to_host_path_result=`echo "$func_to_host_path_tmp1" |\ $SED -e "$lt_sed_naive_backslashify"` ;; * ) # 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_to_host_path_tmp1=`winepath -w "$1" 2>/dev/null` if test "$?" -eq 0 && test -n "${func_to_host_path_tmp1}"; then func_to_host_path_result=`echo "$func_to_host_path_tmp1" |\ $SED -e "$lt_sed_naive_backslashify"` else # Allow warning below. func_to_host_path_result="" fi ;; esac if test -z "$func_to_host_path_result" ; then func_error "Could not determine host path corresponding to" func_error " '$1'" func_error "Continuing, but uninstalled executables may not work." # Fallback: func_to_host_path_result="$1" fi ;; esac fi } # end: func_to_host_path # func_to_host_pathlist arg # # Convert pathlists to host format when used with build tools. # See func_to_host_path(), above. This function supports the # following $build/$host combinations (but does no harm for # combinations not listed here): # $build $host # mingw (msys) mingw [e.g. native] # cygwin mingw # *nix + wine mingw # # 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. # # ARG is a pathlist (on $build) that should be converted to # the proper representation on $host. The result is stored # in $func_to_host_pathlist_result. func_to_host_pathlist () { func_to_host_pathlist_result="$1" if test -n "$1" ; then case $host in *mingw* ) lt_sed_naive_backslashify='s|\\\\*|\\|g;s|/|\\|g;s|\\|\\\\|g' # 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_to_host_pathlist_tmp2="$1" # Once set for this call, this variable should not be # reassigned. It is used in tha fallback case. func_to_host_pathlist_tmp1=`echo "$func_to_host_pathlist_tmp2" |\ $SED -e 's|^:*||' -e 's|:*$||'` case $build in *mingw* ) # Actually, msys. # Awkward: cmd appends spaces to result. lt_sed_strip_trailing_spaces="s/[ ]*\$//" func_to_host_pathlist_tmp2=`( cmd //c echo "$func_to_host_pathlist_tmp1" |\ $SED -e "$lt_sed_strip_trailing_spaces" ) 2>/dev/null || echo ""` func_to_host_pathlist_result=`echo "$func_to_host_pathlist_tmp2" |\ $SED -e "$lt_sed_naive_backslashify"` ;; *cygwin* ) func_to_host_pathlist_tmp2=`cygpath -w -p "$func_to_host_pathlist_tmp1"` func_to_host_pathlist_result=`echo "$func_to_host_pathlist_tmp2" |\ $SED -e "$lt_sed_naive_backslashify"` ;; * ) # unfortunately, winepath doesn't convert pathlists func_to_host_pathlist_result="" func_to_host_pathlist_oldIFS=$IFS IFS=: for func_to_host_pathlist_f in $func_to_host_pathlist_tmp1 ; do IFS=$func_to_host_pathlist_oldIFS if test -n "$func_to_host_pathlist_f" ; then func_to_host_path "$func_to_host_pathlist_f" if test -n "$func_to_host_path_result" ; then if test -z "$func_to_host_pathlist_result" ; then func_to_host_pathlist_result="$func_to_host_path_result" else func_to_host_pathlist_result="$func_to_host_pathlist_result;$func_to_host_path_result" fi fi fi IFS=: done IFS=$func_to_host_pathlist_oldIFS ;; esac if test -z "$func_to_host_pathlist_result" ; then func_error "Could not determine the host path(s) corresponding to" func_error " '$1'" func_error "Continuing, but uninstalled executables may not work." # Fallback. This may break if $1 contains DOS-style drive # specifications. The fix is not to complicate the expression # below, but for the user to provide a working wine installation # with winepath so that path translation in the cross-to-mingw # case works properly. lt_replace_pathsep_nix_to_dos="s|:|;|g" func_to_host_pathlist_result=`echo "$func_to_host_pathlist_tmp1" |\ $SED -e "$lt_replace_pathsep_nix_to_dos"` fi # Now, add the leading and trailing path separators back case "$1" in :* ) func_to_host_pathlist_result=";$func_to_host_pathlist_result" ;; esac case "$1" in *: ) func_to_host_pathlist_result="$func_to_host_pathlist_result;" ;; esac ;; esac fi } # end: func_to_host_pathlist # 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 # define setmode _setmode #else # include # include # ifdef __CYGWIN__ # include # define HAVE_SETENV # ifdef __STRICT_ANSI__ char *realpath (const char *, char *); int putenv (char *); int setenv (const char *, const char *, int); # endif # endif #endif #include #include #include #include #include #include #include #include #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 #ifdef _MSC_VER # define S_IXUSR _S_IEXEC # define stat _stat # ifndef _INTPTR_T_DEFINED # define intptr_t int # endif #endif #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 */ #ifdef __CYGWIN__ # define FOPEN_WB "wb" #endif #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) #undef LTWRAPPER_DEBUGPRINTF #if defined DEBUGWRAPPER # define LTWRAPPER_DEBUGPRINTF(args) ltwrapper_debugprintf args static void ltwrapper_debugprintf (const char *fmt, ...) { va_list args; va_start (args, fmt); (void) vfprintf (stderr, fmt, args); va_end (args); } #else # define LTWRAPPER_DEBUGPRINTF(args) #endif const char *program_name = NULL; 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_fatal (const char *message, ...); 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_opt_process_env_set (const char *arg); void lt_opt_process_env_prepend (const char *arg); void lt_opt_process_env_append (const char *arg); int lt_split_name_value (const char *arg, char** name, char** value); void lt_update_exe_path (const char *name, const char *value); void lt_update_lib_path (const char *name, const char *value); static const char *script_text_part1 = EOF func_emit_wrapper_part1 yes | $SED -e 's/\([\\"]\)/\\\1/g' \ -e 's/^/ "/' -e 's/$/\\n"/' echo ";" cat <"))); for (i = 0; i < newargc; i++) { LTWRAPPER_DEBUGPRINTF (("(main) newargz[%d] : %s\n", i, (newargz[i] ? newargz[i] : ""))); } EOF case $host_os in mingw*) cat <<"EOF" /* execv doesn't actually work on mingw as expected on unix */ rval = _spawnv (_P_WAIT, lt_argv_zero, (const char * const *) newargz); if (rval == -1) { /* failed to start process */ LTWRAPPER_DEBUGPRINTF (("(main) failed to launch target \"%s\": errno = %d\n", lt_argv_zero, 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 ("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; LTWRAPPER_DEBUGPRINTF (("(check_executable) : %s\n", path ? (*path ? path : "EMPTY!") : "NULL!")); 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; LTWRAPPER_DEBUGPRINTF (("(make_executable) : %s\n", path ? (*path ? path : "EMPTY!") : "NULL!")); 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; LTWRAPPER_DEBUGPRINTF (("(find_executable) : %s\n", wrapper ? (*wrapper ? wrapper : "EMPTY!") : "NULL!")); 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 ("getcwd failed"); 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 ("getcwd failed"); 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) { LTWRAPPER_DEBUGPRINTF (("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 { char *errstr = strerror (errno); lt_fatal ("Error accessing file %s (%s)", tmp_pathspec, errstr); } } XFREE (tmp_pathspec); if (!has_symlinks) { return xstrdup (pathspec); } tmp_pathspec = realpath (pathspec, buf); if (tmp_pathspec == 0) { lt_fatal ("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; } static void lt_error_core (int exit_status, const char *mode, const char *message, va_list ap) { fprintf (stderr, "%s: %s: ", program_name, mode); vfprintf (stderr, message, ap); fprintf (stderr, ".\n"); if (exit_status >= 0) exit (exit_status); } void lt_fatal (const char *message, ...) { va_list ap; va_start (ap, message); lt_error_core (EXIT_FAILURE, "FATAL", message, ap); va_end (ap); } void lt_setenv (const char *name, const char *value) { LTWRAPPER_DEBUGPRINTF (("(lt_setenv) setting '%s' to '%s'\n", (name ? name : ""), (value ? 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; } int lt_split_name_value (const char *arg, char** name, char** value) { const char *p; int len; if (!arg || !*arg) return 1; p = strchr (arg, (int)'='); if (!p) return 1; *value = xstrdup (++p); len = strlen (arg) - strlen (*value); *name = XMALLOC (char, len); strncpy (*name, arg, len-1); (*name)[len - 1] = '\0'; return 0; } void lt_opt_process_env_set (const char *arg) { char *name = NULL; char *value = NULL; if (lt_split_name_value (arg, &name, &value) != 0) { XFREE (name); XFREE (value); lt_fatal ("bad argument for %s: '%s'", env_set_opt, arg); } lt_setenv (name, value); XFREE (name); XFREE (value); } void lt_opt_process_env_prepend (const char *arg) { char *name = NULL; char *value = NULL; char *new_value = NULL; if (lt_split_name_value (arg, &name, &value) != 0) { XFREE (name); XFREE (value); lt_fatal ("bad argument for %s: '%s'", env_prepend_opt, arg); } new_value = lt_extend_str (getenv (name), value, 0); lt_setenv (name, new_value); XFREE (new_value); XFREE (name); XFREE (value); } void lt_opt_process_env_append (const char *arg) { char *name = NULL; char *value = NULL; char *new_value = NULL; if (lt_split_name_value (arg, &name, &value) != 0) { XFREE (name); XFREE (value); lt_fatal ("bad argument for %s: '%s'", env_append_opt, arg); } new_value = lt_extend_str (getenv (name), value, 1); lt_setenv (name, new_value); XFREE (new_value); XFREE (name); XFREE (value); } void lt_update_exe_path (const char *name, const char *value) { LTWRAPPER_DEBUGPRINTF (("(lt_update_exe_path) modifying '%s' by prepending '%s'\n", (name ? name : ""), (value ? 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) { LTWRAPPER_DEBUGPRINTF (("(lt_update_lib_path) modifying '%s' by prepending '%s'\n", (name ? name : ""), (value ? 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 } # end: func_emit_cwrapperexe_src # 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=$nonopt compile_rpath= finalize_rpath= compile_shlibpath= finalize_shlibpath= convenience= old_convenience= deplibs= old_deplibs= compiler_flags= linker_flags= dllsearchpath= lib_search_path=`pwd` inst_prefix_dir= new_inherited_linker_flags= avoid_version=no dlfiles= dlprefiles= dlself=no export_dynamic=no export_symbols= export_symbols_regex= generated= libobjs= ltlibs= module=no no_install=no objs= non_pic_objects= precious_files_regex= prefer_static_libs=no preload=no prev= prevarg= release= rpath= xrpath= perm_rpath= temp_rpath= thread_safe=no vinfo= vinfo_number=no weak_libs= single_module="${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 $prev in dlfiles|dlprefiles) if test "$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 dlfiles="$dlfiles $arg" else dlprefiles="$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 *" $qarg.ltframework "*) ;; *) deplibs="$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 "$save_arg"` do # moreargs="$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 "$dlopen_support" = yes; then dlfiles="$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. dlprefiles="$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 *" $arg "*) ;; *) rpath="$rpath $arg" ;; esac else case "$xrpath " in *" $arg "*) ;; *) xrpath="$xrpath $arg" ;; esac fi prev= continue ;; shrext) shrext_cmds="$arg" prev= continue ;; weak) weak_libs="$weak_libs $arg" prev= continue ;; xcclinker) linker_flags="$linker_flags $qarg" compiler_flags="$compiler_flags $qarg" prev= func_append compile_command " $qarg" func_append finalize_command " $qarg" continue ;; xcompiler) compiler_flags="$compiler_flags $qarg" prev= func_append compile_command " $qarg" func_append finalize_command " $qarg" continue ;; xlinker) linker_flags="$linker_flags $qarg" compiler_flags="$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 " $link_static_flag" fi continue ;; -allow-undefined) # FIXME: remove this flag sometime in the future. func_fatal_error "\`-allow-undefined' must not be used because it is the default" ;; -avoid-version) avoid_version=yes continue ;; -dlopen) prev=dlfiles continue ;; -dlpreopen) prev=dlprefiles continue ;; -export-dynamic) export_dynamic=yes continue ;; -export-symbols | -export-symbols-regex) if test -n "$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" dir=$func_stripname_result if test -z "$dir"; 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 # 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$dir "*) ;; *) deplibs="$deplibs -L$dir" lib_search_path="$lib_search_path $dir" ;; esac case $host in *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-cegcc*) testbindir=`$ECHO "X$dir" | $Xsed -e 's*/lib$*/bin*'` case :$dllsearchpath: in *":$dir:"*) ;; ::) dllsearchpath=$dir;; *) dllsearchpath="$dllsearchpath:$dir";; esac case :$dllsearchpath: in *":$testbindir:"*) ;; ::) dllsearchpath=$testbindir;; *) dllsearchpath="$dllsearchpath:$testbindir";; esac ;; esac continue ;; -l*) if test "X$arg" = "X-lc" || test "X$arg" = "X-lm"; then case $host in *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-beos* | *-cegcc*) # These systems don't actually have a C or math library (as such) continue ;; *-*-os2*) # These systems don't actually have a C library (as such) test "X$arg" = "X-lc" && continue ;; *-*-openbsd* | *-*-freebsd* | *-*-dragonfly*) # Do not include libc due to us having libc/libc_r. test "X$arg" = "X-lc" && continue ;; *-*-rhapsody* | *-*-darwin1.[012]) # Rhapsody C and math libraries are in the System framework deplibs="$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 $host in *-*-openbsd* | *-*-freebsd* | *-*-dragonfly*) # Do not include libc_r directly, use -pthread flag. continue ;; esac fi deplibs="$deplibs $arg" continue ;; -module) module=yes continue ;; # Tru64 UNIX uses -model [arg] to determine the layout of C++ # classes, name mangling, and exception handling. # Darwin uses the -arch flag to determine output architecture. -model|-arch|-isysroot) compiler_flags="$compiler_flags $arg" func_append compile_command " $arg" func_append finalize_command " $arg" prev=xcompiler continue ;; -mt|-mthreads|-kthread|-Kthread|-pthread|-pthreads|--thread-safe|-threads) compiler_flags="$compiler_flags $arg" func_append compile_command " $arg" func_append finalize_command " $arg" case "$new_inherited_linker_flags " in *" $arg "*) ;; * ) new_inherited_linker_flags="$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 $dir in [\\/]* | [A-Za-z]:[\\/]*) ;; *) func_fatal_error "only absolute run-paths are allowed" ;; esac case "$xrpath " in *" $dir "*) ;; *) xrpath="$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 "$flag" arg="$arg $wl$func_quote_for_eval_result" compiler_flags="$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 "$flag" arg="$arg $wl$func_quote_for_eval_result" compiler_flags="$compiler_flags $wl$func_quote_for_eval_result" linker_flags="$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" ;; # -64, -mips[0-9] enable 64-bit mode on the SGI compiler # -r[0-9][0-9]* specifies the processor on the SGI compiler # -xarch=*, -xtarget=* enable 64-bit mode on the Sun compiler # +DA*, +DD* enable 64-bit mode on the HP compiler # -q* pass through compiler args for the IBM compiler # -m*, -t[45]*, -txscale* pass through architecture-specific # compiler args for GCC # -F/path gives path to uninstalled frameworks, gcc on darwin # -p, -pg, --coverage, -fprofile-* pass through profiling flag for GCC # @file GCC response files -64|-mips[0-9]|-r[0-9][0-9]*|-xarch=*|-xtarget=*|+DA*|+DD*|-q*|-m*| \ -t[45]*|-txscale*|-p|-pg|--coverage|-fprofile-*|-F*|@*) func_quote_for_eval "$arg" arg="$func_quote_for_eval_result" func_append compile_command " $arg" func_append finalize_command " $arg" compiler_flags="$compiler_flags $arg" continue ;; # Some other compiler flag. -* | +*) func_quote_for_eval "$arg" arg="$func_quote_for_eval_result" ;; *.$objext) # A standard object. objs="$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 dlfiles="$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. dlprefiles="$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 ;; *.$libext) # An archive. deplibs="$deplibs $arg" old_deplibs="$old_deplibs $arg" continue ;; *.la) # A libtool-controlled library. if test "$prev" = dlfiles; then # This library was specified with -dlopen. dlfiles="$dlfiles $arg" prev= elif test "$prev" = dlprefiles; then # The library was specified with -dlpreopen. dlprefiles="$dlprefiles $arg" prev= else deplibs="$deplibs $arg" fi continue ;; # Some other compiler argument. *) # Unknown arguments in both finalize_command and compile_command need # to be aesthetically quoted because they are evaled later. func_quote_for_eval "$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 $shlibpath_var eval shlib_search_path=\`\$ECHO \"X\${$shlibpath_var}\" \| \$Xsed -e \'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$objdir" # Create the object directory. func_mkdir_p "$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 $opt_duplicate_deps ; then case "$libs " in *" $deplib "*) specialdeplibs="$specialdeplibs $deplib" ;; esac fi libs="$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 *" $pre_post_dep "*) specialdeplibs="$specialdeplibs $pre_post_deps" ;; esac pre_post_deps="$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= case $lib in *.la) func_source "$lib" ;; esac # Collect preopened libtool deplibs, except any this library # has declared as weak libs for deplib in $dependency_libs; do deplib_base=`$ECHO "X$deplib" | $Xsed -e "$basename"` case " $weak_libs " in *" $deplib_base "*) ;; *) deplibs="$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 $deplib in -mt|-mthreads|-kthread|-Kthread|-pthread|-pthreads|--thread-safe|-threads) if test "$linkmode,$pass" = "prog,link"; then compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" else compiler_flags="$compiler_flags $deplib" if test "$linkmode" = lib ; then case "$new_inherited_linker_flags " in *" $deplib "*) ;; * ) new_inherited_linker_flags="$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 *" $deplib "*) ;; * ) new_inherited_linker_flags="$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" newlib_search_path="$newlib_search_path $func_stripname_result" ;; prog) if test "$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" newlib_search_path="$newlib_search_path $func_stripname_result" ;; *) func_warning "\`-L' is ignored for archives/objects" ;; esac # linkmode continue ;; # -L -R*) if test "$pass" = link; then func_stripname '-R' '' "$deplib" dir=$func_stripname_result # Make sure the xrpath contains only unique directories. case "$xrpath " in *" $dir "*) ;; *) xrpath="$xrpath $dir" ;; esac fi deplibs="$deplib $deplibs" continue ;; *.la) lib="$deplib" ;; *.$libext) if test "$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 \"X$deplib\"" 2>/dev/null | $Xsed -e 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 "$build_libtool_libs" = no; then # If there is no dlopen support or we're linking statically, # we need to preload. newdlprefiles="$newdlprefiles $deplib" compile_deplibs="$deplib $compile_deplibs" finalize_deplibs="$deplib $finalize_deplibs" else newdlfiles="$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 "X$inherited_linker_flags" | $Xsed -e 's/-framework \([^ $]*\)/\1.ltframework/g'` for tmp_inherited_linker_flag in $tmp_inherited_linker_flags; do case " $new_inherited_linker_flags " in *" $tmp_inherited_linker_flag "*) ;; *) new_inherited_linker_flags="$new_inherited_linker_flags $tmp_inherited_linker_flag";; esac done fi dependency_libs=`$ECHO "X $dependency_libs" | $Xsed -e '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 "$dlopen" && dlfiles="$dlfiles $dlopen" test -n "$dlpreopen" && dlprefiles="$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. convenience="$convenience $ladir/$objdir/$old_library" old_convenience="$old_convenience $ladir/$objdir/$old_library" tmp_libs= for deplib in $dependency_libs; do deplibs="$deplib $deplibs" if $opt_duplicate_deps ; then case "$tmp_libs " in *" $deplib "*) specialdeplibs="$specialdeplibs $deplib" ;; esac fi tmp_libs="$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= for l in $old_library $library_names; do linklib="$l" done 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. dlprefiles="$dlprefiles $lib $dependency_libs" else newdlfiles="$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$installed" = Xyes; then if test ! -f "$libdir/$linklib" && test -f "$abs_ladir/$linklib"; then func_warning "library \`$lib' was moved." dir="$ladir" absdir="$abs_ladir" libdir="$abs_ladir" else dir="$libdir" absdir="$libdir" fi test "X$hardcode_automatic" = Xyes && avoidtemprpath=yes else if test ! -f "$ladir/$objdir/$linklib" && test -f "$abs_ladir/$linklib"; then dir="$ladir" absdir="$abs_ladir" # Remove this search path later notinst_path="$notinst_path $abs_ladir" else dir="$ladir/$objdir" absdir="$abs_ladir/$objdir" # Remove this search path later notinst_path="$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: \`$lib'" fi # Prefer using a static library (so that no silly _DYNAMIC symbols # are required to link). if test -n "$old_library"; then newdlprefiles="$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 "$libdir" && \ dlpreconveniencelibs="$dlpreconveniencelibs $dir/$old_library" # Otherwise, use the dlname, so that lt_dlopen finds it. elif test -n "$dlname"; then newdlprefiles="$newdlprefiles $dir/$dlname" else newdlprefiles="$newdlprefiles $dir/$linklib" fi 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 "$pass" != link; then newlib_search_path="$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" newlib_search_path="$newlib_search_path $func_stripname_result" ;; esac # Need to link against all dependency_libs? if test "$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 $opt_duplicate_deps ; then case "$tmp_libs " in *" $deplib "*) specialdeplibs="$specialdeplibs $deplib" ;; esac fi tmp_libs="$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:"*) ;; *) temp_rpath="$temp_rpath$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 *" $absdir "*) ;; *) compile_rpath="$compile_rpath $absdir" esac ;; esac case " $sys_lib_dlsearch_path " in *" $libdir "*) ;; *) case "$finalize_rpath " in *" $libdir "*) ;; *) finalize_rpath="$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 $host in *cygwin* | *mingw* | *cegcc*) # No point in relinking DLLs because paths are not encoded notinst_deplibs="$notinst_deplibs $lib" need_relink=no ;; *) if test "$installed" = no; then notinst_deplibs="$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 *" $absdir "*) ;; *) compile_rpath="$compile_rpath $absdir" esac ;; esac case " $sys_lib_dlsearch_path " in *" $libdir "*) ;; *) case "$finalize_rpath " in *" $libdir "*) ;; *) finalize_rpath="$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 "$linkmode" = prog || test "$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$dir" # Try looking first in the location we're being installed to. if test -n "$inst_prefix_dir"; then case $libdir in [\\/]*) add_dir="$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:"*) ;; *) compile_shlibpath="$compile_shlibpath$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:"*) ;; *) finalize_shlibpath="$finalize_shlibpath$libdir:" ;; esac fi fi fi if test "$linkmode" = prog || test "$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:"*) ;; *) finalize_shlibpath="$finalize_shlibpath$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 $libdir in [\\/]*) add_dir="$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 *" $temp_xrpath "*) ;; *) xrpath="$xrpath $temp_xrpath";; esac;; *) temp_deplibs="$temp_deplibs $libdir";; esac done dependency_libs="$temp_deplibs" fi newlib_search_path="$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" if $opt_duplicate_deps ; then case "$tmp_libs " in *" $deplib "*) specialdeplibs="$specialdeplibs $deplib" ;; esac fi tmp_libs="$tmp_libs $deplib" done if test "$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_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 $1;exit}}'` fi compiler_flags="$compiler_flags ${wl}-dylib_file ${wl}${darwin_install_name}:${depdepl}" linker_flags="$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 "X $new_inherited_linker_flags" | $Xsed -e '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 *" $dir "*) ;; *) lib_search_path="$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 *" $deplib "*) ;; *) tmp_libs="$tmp_libs $deplib" ;; esac ;; *) tmp_libs="$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 tmp_libs="$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" objs="$objs$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 $objs is not portable!" libobjs="$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 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|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) 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. verstring="$verstring:${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" libobjs="$libobjs $symfileobj" test "X$libobjs" = "X " && libobjs= if test "$mode" != relink; then # Remove our outputs, but don't remove object files since they # may have been created when compiling PIC objects. removelist= tempremovelist=`$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 removelist="$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 "$build_libtool_libs" != convenience ; then oldlibs="$oldlibs $output_objdir/$libname.$libext" # Transform .lo files to .o files. oldobjs="$objs "`$ECHO "X$libobjs" | $SP2NL | $Xsed -e '/\.'${libext}'$/d' -e "$lo2o" | $NL2SP` fi # Eliminate all temporary directories. #for path in $notinst_path; do # lib_search_path=`$ECHO "X$lib_search_path " | $Xsed -e "s% $path % %g"` # deplibs=`$ECHO "X$deplibs " | $Xsed -e "s% -L$path % %g"` # dependency_libs=`$ECHO "X$dependency_libs " | $Xsed -e "s% -L$path % %g"` #done if test -n "$xrpath"; then # If the user specified any rpath flags, then add them. temp_xrpath= for libdir in $xrpath; do temp_xrpath="$temp_xrpath -R$libdir" case "$finalize_rpath " in *" $libdir "*) ;; *) finalize_rpath="$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 *" $lib "*) ;; *) dlfiles="$dlfiles $lib" ;; esac done # Make sure dlprefiles contains only unique files old_dlprefiles="$dlprefiles" dlprefiles= for lib in $old_dlprefiles; do case "$dlprefiles " in *" $lib "*) ;; *) dlprefiles="$dlprefiles $lib" ;; esac done if test "$build_libtool_libs" = yes; then if test -n "$rpath"; then case $host in *-*-cygwin* | *-*-mingw* | *-*-pw32* | *-*-os2* | *-*-beos* | *-cegcc*) # these systems don't actually have a c library (as such)! ;; *-*-rhapsody* | *-*-darwin1.[012]) # Rhapsody C library is in the System framework deplibs="$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 "$build_libtool_need_lc" = "yes"; then deplibs="$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` 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=`$ECHO "X$potlib" | $Xsed -e 's,[^/]*$,,'`"$potliblink";; esac done if eval $file_magic_cmd \"\$potlib\" 2>/dev/null | $SED -e 10q | $EGREP "$file_magic_regex" > /dev/null; then newdeplibs="$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: $potlib" fi fi ;; *) # Add a -L argument. newdeplibs="$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 *" $a_deplib "*) newdeplibs="$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 \"X$potent_lib\"" 2>/dev/null | $Xsed -e 10q | \ $EGREP "$match_pattern_regex" > /dev/null; then newdeplibs="$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: $potlib" fi fi ;; *) # Add a -L argument. newdeplibs="$newdeplibs $a_deplib" ;; esac done # Gone through all deplibs. ;; none | unknown | *) newdeplibs="" tmp_deplibs=`$ECHO "X $deplibs" | $Xsed \ -e 's/ -lc$//' -e '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 "X $tmp_deplibs" | $Xsed -e "s,$i,,"` done fi if $ECHO "X $tmp_deplibs" | $Xsed -e 's/[ ]//g' | $GREP . >/dev/null; then $ECHO if test "X$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 $ECHO "*** All declared inter-library dependencies are being dropped." droppeddeps=yes fi ;; esac versuffix=$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 "X $newdeplibs" | $Xsed -e 's/ -lc / System.ltframework /'` ;; esac if test "$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 "X $newdeplibs" | $Xsed -e 's% \([^ $]*\).ltframework% -framework \1%g'` new_inherited_linker_flags=`$ECHO "X $new_inherited_linker_flags" | $Xsed -e 's% \([^ $]*\).ltframework% -framework \1%g'` deplibs=`$ECHO "X $deplibs" | $Xsed -e '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/$objdir "*) new_libs="$new_libs -L$path/$objdir" ;; esac ;; esac done for deplib in $deplibs; do case $deplib in -L*) case " $new_libs " in *" $deplib "*) ;; *) new_libs="$new_libs $deplib" ;; esac ;; *) new_libs="$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 "$build_libtool_libs" = yes; then if test "$hardcode_into_libs" = yes; then # Hardcode the library paths hardcode_libdirs= dep_rpath= rpath="$finalize_rpath" test "$mode" != relink && rpath="$compile_rpath$rpath" for libdir in $rpath; do if test -n "$hardcode_libdir_flag_spec"; then if test -n "$hardcode_libdir_separator"; then if test -z "$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"*) ;; *) hardcode_libdirs="$hardcode_libdirs$hardcode_libdir_separator$libdir" ;; esac fi else eval flag=\"$hardcode_libdir_flag_spec\" dep_rpath="$dep_rpath $flag" fi elif test -n "$runpath_var"; then case "$perm_rpath " in *" $libdir "*) ;; *) perm_rpath="$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" if test -n "$hardcode_libdir_flag_spec_ld"; then eval dep_rpath=\"$hardcode_libdir_flag_spec_ld\" else eval dep_rpath=\"$hardcode_libdir_flag_spec\" fi fi if test -n "$runpath_var" && test -n "$perm_rpath"; then # We should set the runpath_var. rpath= for dir in $perm_rpath; do rpath="$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 "$mode" != relink && shlibpath="$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 linknames="$linknames $link" done # Use standard objects if they are pic test -z "$pic_flag" && libobjs=`$ECHO "X$libobjs" | $SP2NL | $Xsed -e "$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" delfiles="$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 cmd in $cmds; do IFS="$save_ifs" eval cmd=\"$cmd\" func_len " $cmd" len=$func_len_result if test "$len" -lt "$max_cmd_len" || test "$max_cmd_len" -le -1; then func_show_eval "$cmd" 'exit $?' skipped_export=false else # The command line is too long to execute in one step. func_verbose "using reloadable object file for export list..." skipped_export=: # Break out early, otherwise skipped_export may be # set to false by a later but shorter cmd. break fi done IFS="$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 "X$include_expsyms" | $Xsed | $SP2NL >> "$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 delfiles="$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 *" $test_deplib "*) ;; *) tmp_deplibs="$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" generated="$generated $gentop" func_extract_archives $gentop $convenience libobjs="$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=\"$thread_safe_flag_spec\" linker_flags="$linker_flags $flag" fi # Make a backup of the uninstalled library when relinking if test "$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=$output output_la=`$ECHO "X$output" | $Xsed -e "$basename"` # 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 $ECHO "$obj" >> $output done $ECHO ')' >> $output delfiles="$delfiles $output" elif test -n "$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 $ECHO "$obj" >> $output done delfiles="$delfiles $output" output=$firstobj\"$file_list_spec$output\" 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. eval concat_cmds=\"$reload_cmds $objlist $last_robj\" else # All subsequent reloadable object files will link in # the last one created. eval concat_cmds=\"\$concat_cmds~$reload_cmds $objlist $last_robj~\$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~ eval concat_cmds=\"\${concat_cmds}$reload_cmds $objlist $last_robj\" if test -n "$last_robj"; then eval concat_cmds=\"\${concat_cmds}~\$RM $last_robj\" fi delfiles="$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=$? # Restore the uninstalled library and exit if test "$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 "X$include_expsyms" | $Xsed | $SP2NL >> "$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 delfiles="$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" generated="$generated $gentop" func_extract_archives $gentop $dlprefiles libobjs="$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=$? # Restore the uninstalled library and exit if test "$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 "$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 "X$tmp_whole_archive_flags" | $Xsed -e 's|,| |g'` else gentop="$output_objdir/${obj}x" generated="$generated $gentop" func_extract_archives $gentop $convenience reload_conv_objs="$reload_objs $func_extract_archives_result" fi fi # Create the old-style object. reload_objs="$objs$old_deplibs "`$ECHO "X$libobjs" | $SP2NL | $Xsed -e '/\.'${libext}$'/d' -e '/\.lib$/d' -e "$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 "X $compile_deplibs" | $Xsed -e 's/ -lc / System.ltframework /'` finalize_deplibs=`$ECHO "X $finalize_deplibs" | $Xsed -e '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 ${MACOSX_DEPLOYMENT_TARGET-10.0} in 10.[0123]) compile_command="$compile_command ${wl}-bind_at_load" finalize_command="$finalize_command ${wl}-bind_at_load" ;; esac fi # Time to change all our "foo.ltframework" stuff back to "-framework foo" compile_deplibs=`$ECHO "X $compile_deplibs" | $Xsed -e 's% \([^ $]*\).ltframework% -framework \1%g'` finalize_deplibs=`$ECHO "X $finalize_deplibs" | $Xsed -e '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/$objdir "*) new_libs="$new_libs -L$path/$objdir" ;; esac ;; esac done for deplib in $compile_deplibs; do case $deplib in -L*) case " $new_libs " in *" $deplib "*) ;; *) new_libs="$new_libs $deplib" ;; esac ;; *) new_libs="$new_libs $deplib" ;; esac done compile_deplibs="$new_libs" compile_command="$compile_command $compile_deplibs" finalize_command="$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 *" $libdir "*) ;; *) finalize_rpath="$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"*) ;; *) hardcode_libdirs="$hardcode_libdirs$hardcode_libdir_separator$libdir" ;; esac fi else eval flag=\"$hardcode_libdir_flag_spec\" rpath="$rpath $flag" fi elif test -n "$runpath_var"; then case "$perm_rpath " in *" $libdir "*) ;; *) perm_rpath="$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=$libdir;; *) dllsearchpath="$dllsearchpath:$libdir";; esac case :$dllsearchpath: in *":$testbindir:"*) ;; ::) dllsearchpath=$testbindir;; *) dllsearchpath="$dllsearchpath:$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"*) ;; *) hardcode_libdirs="$hardcode_libdirs$hardcode_libdir_separator$libdir" ;; esac fi else eval flag=\"$hardcode_libdir_flag_spec\" rpath="$rpath $flag" fi elif test -n "$runpath_var"; then case "$finalize_perm_rpath " in *" $libdir "*) ;; *) finalize_perm_rpath="$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=`$ECHO "X$compile_command" | $SP2NL | $Xsed -e "$lo2o" | $NL2SP` finalize_command=`$ECHO "X$finalize_command" | $SP2NL | $Xsed -e "$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 $host in *cygwin* | *mingw* ) if test "$build_libtool_libs" != yes; then wrappers_required=no fi ;; *cegcc) # Disable wrappers for cegcc, we are cross compiling anyway. wrappers_required=no ;; *) 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 "X$compile_command" | $Xsed -e 's%@OUTPUT@%'"$output"'%g'` link_command="$compile_command$compile_rpath" # We have no uninstalled library dependencies, so finalize right now. exit_status=0 func_show_eval "$link_command" 'exit_status=$?' # 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 $perm_rpath; do rpath="$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 $finalize_perm_rpath; do rpath="$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=`$ECHO "X$link_command" | $Xsed -e 's%@OUTPUT@%'"$output"'%g'` # Delete the old output file. $opt_dry_run || $RM $output # Link the executable and exit func_show_eval "$link_command" 'exit $?' 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=`$ECHO "X$compile_var$compile_command$compile_rpath" | $Xsed -e 's%@OUTPUT@%\$progdir/\$file%g'` else # fast_install is set to needless relink_command= fi else link_command="$compile_var$compile_command$compile_rpath" relink_command="$finalize_var$finalize_command$finalize_rpath" fi fi # Replace the output file specification. link_command=`$ECHO "X$link_command" | $Xsed -e 's%@OUTPUT@%'"$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 $?' # 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 "X$relink_command" | $Xsed -e "$sed_quote_subst"` fi # Quote $ECHO for shipping. if test "X$ECHO" = "X$SHELL $progpath --fallback-echo"; then case $progpath in [\\/]* | [A-Za-z]:[\\/]*) qecho="$SHELL $progpath --fallback-echo";; *) qecho="$SHELL `pwd`/$progpath --fallback-echo";; esac qecho=`$ECHO "X$qecho" | $Xsed -e "$sed_quote_subst"` else qecho=`$ECHO "X$ECHO" | $Xsed -e "$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 ;; 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fi ;; esac done func_show_eval "ln $obj $gentop/$newobj || cp $obj $gentop/$newobj" oldobjs="$oldobjs $gentop/$newobj" ;; *) oldobjs="$oldobjs $obj" ;; esac done fi eval cmds=\"$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 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; 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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 $EXIT_SUCCESS } { test "$mode" = link || test "$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 $arg in -f) RM="$RM $arg"; rmforce=yes ;; -*) RM="$RM $arg" ;; *) files="$files $arg" ;; esac done test -z "$RM" && \ func_fatal_help "you must specify an RM program" rmdirs= origobjdir="$objdir" for file in $files; do func_dirname "$file" "" "." dir="$func_dirname_result" if test "X$dir" = X.; then objdir="$origobjdir" else objdir="$dir/$origobjdir" fi func_basename "$file" name="$func_basename_result" test "$mode" = uninstall && objdir="$dir" # Remember objdir for removal later, being careful to avoid duplicates if test "$mode" = clean; then case " $rmdirs " in *" $objdir "*) ;; *) rmdirs="$rmdirs $objdir" ;; esac fi # Don't error if the file doesn't exist and rm -f was used. if { test -L "$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 $library_names; do rmfiles="$rmfiles $objdir/$n" done test -n "$old_library" && rmfiles="$rmfiles $objdir/$old_library" case "$mode" in clean) case " $library_names " in # " " in the beginning catches empty $dlname *" $dlname "*) ;; *) rmfiles="$rmfiles $objdir/$dlname" ;; esac test -n "$libdir" && rmfiles="$rmfiles $objdir/$name $objdir/${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 rmfiles="$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 rmfiles="$rmfiles $dir/$non_pic_object" fi fi ;; *) if test "$mode" = clean ; then noexename=$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 $file without .exe rmfiles="$rmfiles $file" ;; esac # Do a test to see if this is a libtool program. if func_ltwrapper_p "$file"; 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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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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 libomxil-bellagio-0.9.3/depcomp0000755000175000017500000004426711565413755013445 00000000000000#! /bin/sh # depcomp - compile a program generating dependencies as side-effects scriptversion=2009-04-28.21; # UTC # Copyright (C) 1999, 2000, 2003, 2004, 2005, 2006, 2007, 2009 Free # Software Foundation, Inc. # 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, 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. # Originally written by Alexandre Oliva . 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 outputing dependencies. libtool Whether libtool is used (yes/no). Report bugs to . 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. 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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. # # 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 to . Submit a context # diff and a properly formatted 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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ALPHA_CPU_TYPE=`/usr/sbin/psrinfo -v | sed -n -e 's/^ The alpha \(.*\) processor.*$/\1/p' | head -n 1` case "$ALPHA_CPU_TYPE" in "EV4 (21064)") UNAME_MACHINE="alpha" ;; "EV4.5 (21064)") UNAME_MACHINE="alpha" ;; "LCA4 (21066/21068)") UNAME_MACHINE="alpha" ;; "EV5 (21164)") UNAME_MACHINE="alphaev5" ;; "EV5.6 (21164A)") UNAME_MACHINE="alphaev56" ;; "EV5.6 (21164PC)") UNAME_MACHINE="alphapca56" ;; "EV5.7 (21164PC)") UNAME_MACHINE="alphapca57" ;; "EV6 (21264)") UNAME_MACHINE="alphaev6" ;; "EV6.7 (21264A)") UNAME_MACHINE="alphaev67" ;; "EV6.8CB (21264C)") UNAME_MACHINE="alphaev68" ;; "EV6.8AL (21264B)") UNAME_MACHINE="alphaev68" ;; "EV6.8CX (21264D)") UNAME_MACHINE="alphaev68" ;; "EV6.9A (21264/EV69A)") UNAME_MACHINE="alphaev69" ;; "EV7 (21364)") UNAME_MACHINE="alphaev7" ;; "EV7.9 (21364A)") UNAME_MACHINE="alphaev79" ;; esac # A Pn.n version is a patched version. # A Vn.n version is a released version. # A Tn.n version is a released field test version. # A Xn.n version is an unreleased experimental baselevel. # 1.2 uses "1.2" for uname -r. echo ${UNAME_MACHINE}-dec-osf`echo ${UNAME_RELEASE} | sed -e 's/^[PVTX]//' | tr 'ABCDEFGHIJKLMNOPQRSTUVWXYZ' 'abcdefghijklmnopqrstuvwxyz'` exit ;; Alpha\ *:Windows_NT*:*) # How do we know it's Interix rather than the generic POSIX subsystem? # Should we change UNAME_MACHINE based on the output of uname instead # of the specific Alpha model? echo alpha-pc-interix exit ;; 21064:Windows_NT:50:3) echo alpha-dec-winnt3.5 exit ;; Amiga*:UNIX_System_V:4.0:*) echo m68k-unknown-sysv4 exit ;; *:[Aa]miga[Oo][Ss]:*:*) echo ${UNAME_MACHINE}-unknown-amigaos exit ;; *:[Mm]orph[Oo][Ss]:*:*) echo ${UNAME_MACHINE}-unknown-morphos exit ;; *:OS/390:*:*) echo i370-ibm-openedition exit ;; *:z/VM:*:*) echo s390-ibm-zvmoe exit ;; *:OS400:*:*) echo powerpc-ibm-os400 exit ;; arm:RISC*:1.[012]*:*|arm:riscix:1.[012]*:*) echo arm-acorn-riscix${UNAME_RELEASE} exit ;; arm:riscos:*:*|arm:RISCOS:*:*) echo arm-unknown-riscos exit ;; SR2?01:HI-UX/MPP:*:* | SR8000:HI-UX/MPP:*:*) echo hppa1.1-hitachi-hiuxmpp exit ;; Pyramid*:OSx*:*:* | MIS*:OSx*:*:* | MIS*:SMP_DC-OSx*:*:*) # akee@wpdis03.wpafb.af.mil (Earle F. Ake) contributed MIS and NILE. if test "`(/bin/universe) 2>/dev/null`" = att ; then echo pyramid-pyramid-sysv3 else echo pyramid-pyramid-bsd fi exit ;; NILE*:*:*:dcosx) echo pyramid-pyramid-svr4 exit ;; DRS?6000:unix:4.0:6*) echo sparc-icl-nx6 exit ;; DRS?6000:UNIX_SV:4.2*:7* | DRS?6000:isis:4.2*:7*) case `/usr/bin/uname -p` in sparc) echo sparc-icl-nx7; exit ;; esac ;; s390x:SunOS:*:*) echo ${UNAME_MACHINE}-ibm-solaris2`echo ${UNAME_RELEASE}|sed -e 's/[^.]*//'` exit ;; sun4H:SunOS:5.*:*) echo sparc-hal-solaris2`echo ${UNAME_RELEASE}|sed -e 's/[^.]*//'` exit ;; sun4*:SunOS:5.*:* | tadpole*:SunOS:5.*:*) echo sparc-sun-solaris2`echo ${UNAME_RELEASE}|sed -e 's/[^.]*//'` exit ;; i86pc:SunOS:5.*:* | i86xen:SunOS:5.*:*) eval $set_cc_for_build SUN_ARCH="i386" # If there is a compiler, see if it is configured for 64-bit objects. # Note that the Sun cc does not turn __LP64__ into 1 like gcc does. # This test works for both compilers. if [ "$CC_FOR_BUILD" != 'no_compiler_found' ]; then if (echo '#ifdef __amd64'; echo IS_64BIT_ARCH; echo '#endif') | \ (CCOPTS= $CC_FOR_BUILD -E - 2>/dev/null) | \ grep IS_64BIT_ARCH >/dev/null then SUN_ARCH="x86_64" fi fi echo ${SUN_ARCH}-pc-solaris2`echo ${UNAME_RELEASE}|sed -e 's/[^.]*//'` exit ;; sun4*:SunOS:6*:*) # According to config.sub, this is the proper way to canonicalize # SunOS6. Hard to guess exactly what SunOS6 will be like, but # it's likely to be more like Solaris than SunOS4. echo sparc-sun-solaris3`echo ${UNAME_RELEASE}|sed -e 's/[^.]*//'` exit ;; sun4*:SunOS:*:*) case "`/usr/bin/arch -k`" in Series*|S4*) UNAME_RELEASE=`uname -v` ;; esac # Japanese Language versions have a version number like `4.1.3-JL'. echo sparc-sun-sunos`echo ${UNAME_RELEASE}|sed -e 's/-/_/'` exit ;; sun3*:SunOS:*:*) echo m68k-sun-sunos${UNAME_RELEASE} exit ;; sun*:*:4.2BSD:*) UNAME_RELEASE=`(sed 1q /etc/motd | awk '{print substr($5,1,3)}') 2>/dev/null` test "x${UNAME_RELEASE}" = "x" && UNAME_RELEASE=3 case "`/bin/arch`" in sun3) echo m68k-sun-sunos${UNAME_RELEASE} ;; sun4) echo sparc-sun-sunos${UNAME_RELEASE} ;; esac exit ;; aushp:SunOS:*:*) echo sparc-auspex-sunos${UNAME_RELEASE} exit ;; # The situation for MiNT is a little confusing. The machine name # can be virtually everything (everything which is not # "atarist" or "atariste" at least should have a processor # > m68000). The system name ranges from "MiNT" over "FreeMiNT" # to the lowercase version "mint" (or "freemint"). Finally # the system name "TOS" denotes a system which is actually not # MiNT. But MiNT is downward compatible to TOS, so this should # be no problem. atarist[e]:*MiNT:*:* | atarist[e]:*mint:*:* | atarist[e]:*TOS:*:*) echo m68k-atari-mint${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 /* 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 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:*:[456]) 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 #include 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 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:*:*) case ${UNAME_MACHINE} in pc98) echo i386-unknown-freebsd`echo ${UNAME_RELEASE}|sed -e 's/[-(].*//'` ;; amd64) echo x86_64-unknown-freebsd`echo ${UNAME_RELEASE}|sed -e 's/[-(].*//'` ;; *) echo ${UNAME_MACHINE}-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*:windows32*:*) # uname -m includes "-pc" on this system. echo ${UNAME_MACHINE}-mingw32 exit ;; i*:PW*:*) echo ${UNAME_MACHINE}-pc-pw32 exit ;; *:Interix*:[3456]*) case ${UNAME_MACHINE} in x86) echo i586-pc-interix${UNAME_RELEASE} exit ;; EM64T | authenticamd | genuineintel) 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 ;; 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 echo ${UNAME_MACHINE}-unknown-linux-gnueabi fi exit ;; avr32*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; cris:Linux:*:*) echo cris-axis-linux-gnu exit ;; crisv32:Linux:*:*) echo crisv32-axis-linux-gnu exit ;; frv:Linux:*:*) echo frv-unknown-linux-gnu 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 $dummy.c 2>/dev/null | sed -n ' /^CPU/{ s: ::g p }'`" test x"${CPU}" != x && { echo "${CPU}-unknown-linux-gnu"; exit; } ;; or32:Linux:*:*) echo or32-unknown-linux-gnu exit ;; ppc:Linux:*:*) echo powerpc-unknown-linux-gnu exit ;; ppc64:Linux:*:*) echo powerpc64-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 ;; padre:Linux:*:*) echo sparc-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 ;; parisc64:Linux:*:* | hppa64:Linux:*:*) echo hppa64-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 ;; vax:Linux:*:*) echo ${UNAME_MACHINE}-dec-linux-gnu exit ;; x86_64:Linux:*:*) echo x86_64-unknown-linux-gnu exit ;; xtensa*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; i*86:Linux:*:*) # The BFD linker knows what the default object file format is, so # first see if it will tell us. cd to the root directory to prevent # problems with other programs or directories called `ld' in the path. # Set LC_ALL=C to ensure ld outputs messages in English. ld_supported_targets=`cd /; LC_ALL=C ld --help 2>&1 \ | sed -ne '/supported targets:/!d s/[ ][ ]*/ /g s/.*supported targets: *// s/ .*// p'` case "$ld_supported_targets" in elf32-i386) TENTATIVE="${UNAME_MACHINE}-pc-linux-gnu" ;; esac # Determine whether the default compiler is a.out or elf eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #include #ifdef __ELF__ # ifdef __GLIBC__ # if __GLIBC__ >= 2 LIBC=gnu # else LIBC=gnulibc1 # endif # else LIBC=gnulibc1 # endif #else #if defined(__INTEL_COMPILER) || defined(__PGI) || defined(__SUNPRO_C) || defined(__SUNPRO_CC) LIBC=gnu #else LIBC=gnuaout #endif #endif #ifdef __dietlibc__ LIBC=dietlibc #endif EOF eval "`$CC_FOR_BUILD -E $dummy.c 2>/dev/null | sed -n ' /^LIBC/{ s: ::g p }'`" test x"${LIBC}" != x && { echo "${UNAME_MACHINE}-pc-linux-${LIBC}" exit } test x"${TENTATIVE}" != x && { echo "${TENTATIVE}"; 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' /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 echo i586-unisys-sysv4 exit ;; *:UNIX_System_V:4*:FTX*) # From Gerald Hewes . # 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 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${UNAME_RELEASE} exit ;; *:QNX:*:4*) echo i386-pc-qnx exit ;; NSE-?:NONSTOP_KERNEL:*:*) echo nse-tandem-nsk${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 ${UNAME_MACHINE}-pc-aros exit ;; esac #echo '(No uname command or uname output not recognized.)' 1>&2 #echo "${UNAME_MACHINE}:${UNAME_SYSTEM}:${UNAME_RELEASE}:${UNAME_VERSION}" 1>&2 eval $set_cc_for_build cat >$dummy.c < # include #endif main () { #if defined (sony) #if defined (MIPSEB) /* BFD wants "bsd" instead of "newsos". 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newsos6) version_type=linux 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-$host_cpu" = "openbsd2.8-powerpc"; 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*) lt_cv_deplibs_check_method='file_magic (s[[0-9]][[0-9]][[0-9]]|PA-RISC[[0-9]].[[0-9]]) shared library' lt_cv_file_magic_test_file=/usr/lib/libc.sl ;; esac ;; interix[[3-9]]*) # PIC code is broken on Interix 3.x, that's why |\.a not |_pic\.a here lt_cv_deplibs_check_method='match_pattern /lib[[^/]]+(\.so|\.a)$' ;; 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 Linux 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 $host_vendor in motorola) lt_cv_deplibs_check_method='file_magic ELF [[0-9]][[0-9]]*-bit [[ML]]SB (shared object|dynamic lib) M[[0-9]][[0-9]]* Version [[0-9]]' lt_cv_file_magic_test_file=`echo /usr/lib/libc.so*` ;; ncr) lt_cv_deplibs_check_method=pass_all ;; sequent) lt_cv_file_magic_cmd='/bin/file' lt_cv_deplibs_check_method='file_magic ELF [[0-9]][[0-9]]*-bit [[LM]]SB (shared object|dynamic lib )' ;; sni) lt_cv_file_magic_cmd='/bin/file' lt_cv_deplibs_check_method="file_magic ELF [[0-9]][[0-9]]*-bit [[LM]]SB dynamic lib" lt_cv_file_magic_test_file=/lib/libc.so ;; siemens) lt_cv_deplibs_check_method=pass_all ;; pc) lt_cv_deplibs_check_method=pass_all ;; esac ;; tpf*) lt_cv_deplibs_check_method=pass_all ;; esac ]) file_magic_cmd=$lt_cv_file_magic_cmd deplibs_check_method=$lt_cv_deplibs_check_method test -z "$deplibs_check_method" && deplibs_check_method=unknown _LT_DECL([], [deplibs_check_method], [1], [Method to check whether dependent libraries are shared objects]) _LT_DECL([], [file_magic_cmd], [1], [Command to use when deplibs_check_method == "file_magic"]) ])# _LT_CHECK_MAGIC_METHOD # LT_PATH_NM # ---------- # find the pathname to a BSD- or MS-compatible name lister AC_DEFUN([LT_PATH_NM], [AC_REQUIRE([AC_PROG_CC])dnl AC_CACHE_CHECK([for BSD- or MS-compatible name lister (nm)], lt_cv_path_NM, [if test -n "$NM"; then # Let the user override the test. lt_cv_path_NM="$NM" else lt_nm_to_check="${ac_tool_prefix}nm" if test -n "$ac_tool_prefix" && test "$build" = "$host"; then lt_nm_to_check="$lt_nm_to_check nm" fi for lt_tmp_nm in $lt_nm_to_check; do lt_save_ifs="$IFS"; IFS=$PATH_SEPARATOR for ac_dir in $PATH /usr/ccs/bin/elf /usr/ccs/bin /usr/ucb /bin; do IFS="$lt_save_ifs" test -z "$ac_dir" && ac_dir=. tmp_nm="$ac_dir/$lt_tmp_nm" if test -f "$tmp_nm" || test -f "$tmp_nm$ac_exeext" ; then # Check to see if the nm accepts a BSD-compat flag. # Adding the `sed 1q' prevents false positives on HP-UX, which says: # nm: unknown option "B" ignored # Tru64's nm complains that /dev/null is an invalid object file case `"$tmp_nm" -B /dev/null 2>&1 | sed '1q'` in */dev/null* | *'Invalid file or object type'*) lt_cv_path_NM="$tmp_nm -B" break ;; *) case `"$tmp_nm" -p /dev/null 2>&1 | sed '1q'` in */dev/null*) lt_cv_path_NM="$tmp_nm -p" break ;; *) lt_cv_path_NM=${lt_cv_path_NM="$tmp_nm"} # keep the first match, but continue # so that we can try to find one that supports BSD flags ;; esac ;; esac fi done IFS="$lt_save_ifs" done : ${lt_cv_path_NM=no} fi]) if test "$lt_cv_path_NM" != "no"; then NM="$lt_cv_path_NM" else # Didn't find any BSD compatible name lister, look for dumpbin. AC_CHECK_TOOLS(DUMPBIN, ["dumpbin -symbols" "link -dump -symbols"], :) AC_SUBST([DUMPBIN]) if test "$DUMPBIN" != ":"; then NM="$DUMPBIN" fi fi test -z "$NM" && NM=nm AC_SUBST([NM]) _LT_DECL([], [NM], [1], [A BSD- or MS-compatible name lister])dnl AC_CACHE_CHECK([the name lister ($NM) interface], [lt_cv_nm_interface], [lt_cv_nm_interface="BSD nm" echo "int some_variable = 0;" > conftest.$ac_ext (eval echo "\"\$as_me:__oline__: $ac_compile\"" >&AS_MESSAGE_LOG_FD) (eval "$ac_compile" 2>conftest.err) cat conftest.err >&AS_MESSAGE_LOG_FD (eval echo "\"\$as_me:__oline__: $NM \\\"conftest.$ac_objext\\\"\"" >&AS_MESSAGE_LOG_FD) (eval "$NM \"conftest.$ac_objext\"" 2>conftest.err > conftest.out) cat conftest.err >&AS_MESSAGE_LOG_FD (eval echo "\"\$as_me:__oline__: output\"" >&AS_MESSAGE_LOG_FD) cat conftest.out >&AS_MESSAGE_LOG_FD if $GREP 'External.*some_variable' conftest.out > /dev/null; then lt_cv_nm_interface="MS dumpbin" fi rm -f conftest*]) ])# LT_PATH_NM # Old names: AU_ALIAS([AM_PROG_NM], [LT_PATH_NM]) AU_ALIAS([AC_PROG_NM], [LT_PATH_NM]) dnl aclocal-1.4 backwards compatibility: dnl AC_DEFUN([AM_PROG_NM], []) dnl AC_DEFUN([AC_PROG_NM], []) # LT_LIB_M # -------- # check for math library AC_DEFUN([LT_LIB_M], [AC_REQUIRE([AC_CANONICAL_HOST])dnl LIBM= case $host in *-*-beos* | *-*-cygwin* | *-*-pw32* | *-*-darwin*) # These system don't have libm, or don't need it ;; *-ncr-sysv4.3*) AC_CHECK_LIB(mw, _mwvalidcheckl, LIBM="-lmw") AC_CHECK_LIB(m, cos, LIBM="$LIBM -lm") ;; *) AC_CHECK_LIB(m, cos, LIBM="-lm") ;; esac AC_SUBST([LIBM]) ])# LT_LIB_M # Old name: AU_ALIAS([AC_CHECK_LIBM], [LT_LIB_M]) dnl aclocal-1.4 backwards compatibility: dnl AC_DEFUN([AC_CHECK_LIBM], []) # _LT_COMPILER_NO_RTTI([TAGNAME]) # ------------------------------- m4_defun([_LT_COMPILER_NO_RTTI], [m4_require([_LT_TAG_COMPILER])dnl _LT_TAGVAR(lt_prog_compiler_no_builtin_flag, $1)= if test "$GCC" = yes; then _LT_TAGVAR(lt_prog_compiler_no_builtin_flag, $1)=' -fno-builtin' _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([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};"\ " /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$opt_cr$/$symxfrm/p'" fi # Check to see that the pipe works correctly. pipe_works=no rm -f conftest* cat > conftest.$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 #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. */ 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.$ac_objext lt_save_LIBS="$LIBS" lt_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="$lt_save_LIBS" CFLAGS="$lt_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 _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_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)= AC_MSG_CHECKING([for $compiler option to produce PIC]) 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)= ;; 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 ;; 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*) # IBM XL 8.0 on PPC _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. 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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' ;; pgcc* | pgf77* | pgf90* | pgf95*) # 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*) # IBM XL C 8.0/Fortran 10.1 on PPC _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)='-Wl,' ;; 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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],[])])" ;; 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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_TAGVAR(hardcode_libdir_flag_spec, $1)='${wl}+b ${wl}$libdir' _LT_TAGVAR(hardcode_libdir_flag_spec_ld, $1)='+b $libdir' _LT_TAGVAR(hardcode_libdir_separator, $1)=: _LT_TAGVAR(hardcode_direct, $1)=yes _LT_TAGVAR(hardcode_direct_absolute, $1)=yes _LT_TAGVAR(export_dynamic_flag_spec, $1)='${wl}-E' # hardcode_minus_L: Not really in the search PATH, # but as the default location of the library. _LT_TAGVAR(hardcode_minus_L, $1)=yes fi ;; hpux11*) if test "$GCC" = yes -a "$with_gnu_ld" = no; then case $host_cpu in hppa*64*) _LT_TAGVAR(archive_cmds, $1)='$CC -shared ${wl}+h ${wl}$soname -o $lib $libobjs $deplibs $compiler_flags' ;; ia64*) _LT_TAGVAR(archive_cmds, $1)='$CC -shared -fPIC ${wl}+h ${wl}$soname ${wl}+nodefaultrpath -o $lib $libobjs $deplibs $compiler_flags' ;; *) _LT_TAGVAR(archive_cmds, $1)='$CC -shared -fPIC ${wl}+h ${wl}$soname ${wl}+b ${wl}$install_libdir -o $lib $libobjs $deplibs $compiler_flags' ;; esac else case $host_cpu in hppa*64*) _LT_TAGVAR(archive_cmds, $1)='$CC -b ${wl}+h ${wl}$soname -o $lib $libobjs $deplibs $compiler_flags' ;; ia64*) _LT_TAGVAR(archive_cmds, $1)='$CC -b ${wl}+h ${wl}$soname ${wl}+nodefaultrpath -o $lib $libobjs $deplibs $compiler_flags' ;; *) _LT_TAGVAR(archive_cmds, $1)='$CC -b ${wl}+h ${wl}$soname ${wl}+b ${wl}$install_libdir -o $lib $libobjs $deplibs $compiler_flags' ;; esac fi if test "$with_gnu_ld" = no; then _LT_TAGVAR(hardcode_libdir_flag_spec, $1)='${wl}+b ${wl}$libdir' _LT_TAGVAR(hardcode_libdir_separator, $1)=: case $host_cpu in hppa*64*|ia64*) _LT_TAGVAR(hardcode_direct, $1)=no _LT_TAGVAR(hardcode_shlibpath_var, $1)=no ;; *) _LT_TAGVAR(hardcode_direct, $1)=yes _LT_TAGVAR(hardcode_direct_absolute, $1)=yes _LT_TAGVAR(export_dynamic_flag_spec, $1)='${wl}-E' # hardcode_minus_L: Not really in the search PATH, # but as the default location of the library. _LT_TAGVAR(hardcode_minus_L, $1)=yes ;; esac fi ;; irix5* | irix6* | nonstopux*) if test "$GCC" = yes; then _LT_TAGVAR(archive_cmds, $1)='$CC -shared $libobjs $deplibs $compiler_flags ${wl}-soname ${wl}$soname `test -n "$verstring" && $ECHO "X${wl}-set_version ${wl}$verstring" | $Xsed` ${wl}-update_registry ${wl}${output_objdir}/so_locations -o $lib' # Try to use the -exported_symbol ld option, if it does not # work, assume that -exports_file does not work either and # implicitly export all symbols. save_LDFLAGS="$LDFLAGS" LDFLAGS="$LDFLAGS -shared ${wl}-exported_symbol ${wl}foo ${wl}-update_registry ${wl}/dev/null" AC_LINK_IFELSE(int foo(void) {}, _LT_TAGVAR(archive_expsym_cmds, $1)='$CC -shared $libobjs $deplibs $compiler_flags ${wl}-soname ${wl}$soname `test -n "$verstring" && $ECHO "X${wl}-set_version ${wl}$verstring" | $Xsed` ${wl}-update_registry ${wl}${output_objdir}/so_locations ${wl}-exports_file ${wl}$export_symbols -o $lib' ) LDFLAGS="$save_LDFLAGS" else _LT_TAGVAR(archive_cmds, $1)='$CC -shared $libobjs $deplibs $compiler_flags -soname $soname `test -n "$verstring" && $ECHO "X-set_version $verstring" | $Xsed` -update_registry ${output_objdir}/so_locations -o $lib' _LT_TAGVAR(archive_expsym_cmds, $1)='$CC -shared $libobjs $deplibs $compiler_flags -soname $soname `test -n "$verstring" && $ECHO "X-set_version $verstring" | $Xsed` -update_registry ${output_objdir}/so_locations -exports_file $export_symbols -o $lib' fi _LT_TAGVAR(archive_cmds_need_lc, $1)='no' _LT_TAGVAR(hardcode_libdir_flag_spec, $1)='${wl}-rpath ${wl}$libdir' _LT_TAGVAR(hardcode_libdir_separator, $1)=: _LT_TAGVAR(inherit_rpath, $1)=yes _LT_TAGVAR(link_all_deplibs, $1)=yes ;; netbsd* | netbsdelf*-gnu) if echo __ELF__ | $CC -E - | $GREP __ELF__ >/dev/null; then _LT_TAGVAR(archive_cmds, $1)='$LD -Bshareable -o $lib $libobjs $deplibs $linker_flags' # a.out else _LT_TAGVAR(archive_cmds, $1)='$LD -shared -o $lib $libobjs $deplibs $linker_flags' # ELF fi _LT_TAGVAR(hardcode_libdir_flag_spec, $1)='-R$libdir' _LT_TAGVAR(hardcode_direct, $1)=yes _LT_TAGVAR(hardcode_shlibpath_var, $1)=no ;; newsos6) _LT_TAGVAR(archive_cmds, $1)='$LD -G -h $soname -o $lib $libobjs $deplibs $linker_flags' _LT_TAGVAR(hardcode_direct, $1)=yes _LT_TAGVAR(hardcode_libdir_flag_spec, $1)='${wl}-rpath ${wl}$libdir' _LT_TAGVAR(hardcode_libdir_separator, $1)=: _LT_TAGVAR(hardcode_shlibpath_var, $1)=no ;; *nto* | *qnx*) ;; openbsd*) if test -f /usr/libexec/ld.so; then _LT_TAGVAR(hardcode_direct, $1)=yes _LT_TAGVAR(hardcode_shlibpath_var, $1)=no _LT_TAGVAR(hardcode_direct_absolute, $1)=yes if test -z "`echo __ELF__ | $CC -E - | $GREP __ELF__`" || test "$host_os-$host_cpu" = "openbsd2.8-powerpc"; then _LT_TAGVAR(archive_cmds, $1)='$CC -shared $pic_flag -o $lib $libobjs $deplibs $compiler_flags' _LT_TAGVAR(archive_expsym_cmds, $1)='$CC -shared $pic_flag -o $lib $libobjs $deplibs $compiler_flags ${wl}-retain-symbols-file,$export_symbols' _LT_TAGVAR(hardcode_libdir_flag_spec, $1)='${wl}-rpath,$libdir' _LT_TAGVAR(export_dynamic_flag_spec, $1)='${wl}-E' else case $host_os in openbsd[[01]].* | openbsd2.[[0-7]] | openbsd2.[[0-7]].*) _LT_TAGVAR(archive_cmds, $1)='$LD -Bshareable -o $lib $libobjs $deplibs $linker_flags' _LT_TAGVAR(hardcode_libdir_flag_spec, $1)='-R$libdir' ;; *) _LT_TAGVAR(archive_cmds, $1)='$CC -shared $pic_flag -o $lib $libobjs $deplibs $compiler_flags' _LT_TAGVAR(hardcode_libdir_flag_spec, $1)='${wl}-rpath,$libdir' ;; esac fi else _LT_TAGVAR(ld_shlibs, $1)=no fi ;; os2*) _LT_TAGVAR(hardcode_libdir_flag_spec, $1)='-L$libdir' _LT_TAGVAR(hardcode_minus_L, $1)=yes _LT_TAGVAR(allow_undefined_flag, $1)=unsupported _LT_TAGVAR(archive_cmds, $1)='$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' _LT_TAGVAR(old_archive_from_new_cmds, $1)='emximp -o $output_objdir/$libname.a $output_objdir/$libname.def' ;; 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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_RC], [AC_DEFUN([AC_LIBTOOL_RC])]) 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])]) libomxil-bellagio-0.9.3/m4/ltsugar.m40000644000175000017500000001042411565413746014317 00000000000000# 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 ]) libomxil-bellagio-0.9.3/m4/ltversion.m40000644000175000017500000000127711565413746014671 00000000000000# 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. # Generated from ltversion.in. # serial 3017 ltversion.m4 # This file is part of GNU Libtool m4_define([LT_PACKAGE_VERSION], [2.2.6b]) m4_define([LT_PACKAGE_REVISION], [1.3017]) AC_DEFUN([LTVERSION_VERSION], [macro_version='2.2.6b' macro_revision='1.3017' _LT_DECL(, macro_version, 0, [Which release of libtool.m4 was used?]) _LT_DECL(, macro_revision, 0) ]) libomxil-bellagio-0.9.3/m4/acx_pthread.m40000644000175000017500000002224711513256766015126 00000000000000dnl @synopsis ACX_PTHREAD([ACTION-IF-FOUND[, ACTION-IF-NOT-FOUND]]) dnl dnl @summary figure out how to build C programs using POSIX threads dnl dnl This macro figures out how to build C programs using POSIX threads. dnl It sets the PTHREAD_LIBS output variable to the threads library and dnl linker flags, and the PTHREAD_CFLAGS output variable to any special dnl C compiler flags that are needed. (The user can also force certain dnl compiler flags/libs to be tested by setting these environment dnl variables.) dnl dnl Also sets PTHREAD_CC to any special C compiler that is needed for dnl multi-threaded programs (defaults to the value of CC otherwise). dnl (This is necessary on AIX to use the special cc_r compiler alias.) dnl dnl NOTE: You are assumed to not only compile your program with these dnl flags, but also link it with them as well. e.g. you should link dnl with $PTHREAD_CC $CFLAGS $PTHREAD_CFLAGS $LDFLAGS ... $PTHREAD_LIBS dnl $LIBS dnl dnl If you are only building threads programs, you may wish to use dnl these variables in your default LIBS, CFLAGS, and CC: dnl dnl LIBS="$PTHREAD_LIBS $LIBS" dnl CFLAGS="$CFLAGS $PTHREAD_CFLAGS" dnl CC="$PTHREAD_CC" dnl dnl In addition, if the PTHREAD_CREATE_JOINABLE thread-attribute dnl constant has a nonstandard name, defines PTHREAD_CREATE_JOINABLE to dnl that name (e.g. PTHREAD_CREATE_UNDETACHED on AIX). dnl dnl ACTION-IF-FOUND is a list of shell commands to run if a threads dnl library is found, and ACTION-IF-NOT-FOUND is a list of commands to dnl run it if it is not found. If ACTION-IF-FOUND is not specified, the dnl default action will define HAVE_PTHREAD. dnl dnl Please let the authors know if this macro fails on any platform, or dnl if you have any other suggestions or comments. This macro was based dnl on work by SGJ on autoconf scripts for FFTW (www.fftw.org) (with dnl help from M. Frigo), as well as ac_pthread and hb_pthread macros dnl posted by Alejandro Forero Cuervo to the autoconf macro repository. dnl We are also grateful for the helpful feedback of numerous users. dnl dnl @category InstalledPackages dnl @author Steven G. Johnson dnl @version 2005-06-15 dnl @license GPLWithACException AC_DEFUN([ACX_PTHREAD], [ AC_REQUIRE([AC_CANONICAL_HOST]) AC_LANG_SAVE AC_LANG_C acx_pthread_ok=no # We used to check for pthread.h first, but this fails if pthread.h # requires special compiler flags (e.g. on True64 or Sequent). # It gets checked for in the link test anyway. # First of all, check if the user has set any of the PTHREAD_LIBS, # etcetera environment variables, and if threads linking works using # them: if test x"$PTHREAD_LIBS$PTHREAD_CFLAGS" != x; then save_CFLAGS="$CFLAGS" CFLAGS="$CFLAGS $PTHREAD_CFLAGS" save_LIBS="$LIBS" LIBS="$PTHREAD_LIBS $LIBS" AC_MSG_CHECKING([for pthread_join in LIBS=$PTHREAD_LIBS with CFLAGS=$PTHREAD_CFLAGS]) AC_TRY_LINK_FUNC(pthread_join, acx_pthread_ok=yes) AC_MSG_RESULT($acx_pthread_ok) if test x"$acx_pthread_ok" = xno; then PTHREAD_LIBS="" PTHREAD_CFLAGS="" fi LIBS="$save_LIBS" CFLAGS="$save_CFLAGS" fi # We must check for the threads library under a number of different # names; the ordering is very important because some systems # (e.g. DEC) have both -lpthread and -lpthreads, where one of the # libraries is broken (non-POSIX). # Create a list of thread flags to try. Items starting with a "-" are # C compiler flags, and other items are library names, except for "none" # which indicates that we try without any flags at all, and "pthread-config" # which is a program returning the flags for the Pth emulation library. acx_pthread_flags="pthreads none -Kthread -kthread lthread -pthread -pthreads -mthreads pthread --thread-safe -mt pthread-config" # The ordering *is* (sometimes) important. Some notes on the # individual items follow: # pthreads: AIX (must check this before -lpthread) # none: in case threads are in libc; should be tried before -Kthread and # other compiler flags to prevent continual compiler warnings # -Kthread: Sequent (threads in libc, but -Kthread needed for pthread.h) # -kthread: FreeBSD kernel threads (preferred to -pthread since SMP-able) # lthread: LinuxThreads port on FreeBSD (also preferred to -pthread) # -pthread: Linux/gcc (kernel threads), BSD/gcc (userland threads) # -pthreads: Solaris/gcc # -mthreads: Mingw32/gcc, Lynx/gcc # -mt: Sun Workshop C (may only link SunOS threads [-lthread], but it # doesn't hurt to check since this sometimes defines pthreads too; # also defines -D_REENTRANT) # ... -mt is also the pthreads flag for HP/aCC # pthread: Linux, etcetera # --thread-safe: KAI C++ # pthread-config: use pthread-config program (for GNU Pth library) case "${host_cpu}-${host_os}" in *solaris*) # On Solaris (at least, for some versions), libc contains stubbed # (non-functional) versions of the pthreads routines, so link-based # tests will erroneously succeed. (We need to link with -pthreads/-mt/ # -lpthread.) (The stubs are missing pthread_cleanup_push, or rather # a function called by this macro, so we could check for that, but # who knows whether they'll stub that too in a future libc.) So, # we'll just look for -pthreads and -lpthread first: acx_pthread_flags="-pthreads pthread -mt -pthread $acx_pthread_flags" ;; esac if test x"$acx_pthread_ok" = xno; then for flag in $acx_pthread_flags; do case $flag in none) AC_MSG_CHECKING([whether pthreads work without any flags]) ;; -*) AC_MSG_CHECKING([whether pthreads work with $flag]) PTHREAD_CFLAGS="$flag" ;; pthread-config) AC_CHECK_PROG(acx_pthread_config, pthread-config, yes, no) if test x"$acx_pthread_config" = xno; then continue; fi PTHREAD_CFLAGS="`pthread-config --cflags`" PTHREAD_LIBS="`pthread-config --ldflags` `pthread-config --libs`" ;; *) AC_MSG_CHECKING([for the pthreads library -l$flag]) PTHREAD_LIBS="-l$flag" ;; esac save_LIBS="$LIBS" save_CFLAGS="$CFLAGS" LIBS="$PTHREAD_LIBS $LIBS" CFLAGS="$CFLAGS $PTHREAD_CFLAGS" # Check for various functions. We must include pthread.h, # since some functions may be macros. (On the Sequent, we # need a special flag -Kthread to make this header compile.) # We check for pthread_join because it is in -lpthread on IRIX # while pthread_create is in libc. We check for pthread_attr_init # due to DEC craziness with -lpthreads. We check for # pthread_cleanup_push because it is one of the few pthread # functions on Solaris that doesn't have a non-functional libc stub. # We try pthread_create on general principles. AC_TRY_LINK([#include ], [pthread_t th; pthread_join(th, 0); pthread_attr_init(0); pthread_cleanup_push(0, 0); pthread_create(0,0,0,0); pthread_cleanup_pop(0); ], [acx_pthread_ok=yes]) LIBS="$save_LIBS" CFLAGS="$save_CFLAGS" AC_MSG_RESULT($acx_pthread_ok) if test "x$acx_pthread_ok" = xyes; then break; fi PTHREAD_LIBS="" PTHREAD_CFLAGS="" done fi # Various other checks: if test "x$acx_pthread_ok" = xyes; then save_LIBS="$LIBS" LIBS="$PTHREAD_LIBS $LIBS" save_CFLAGS="$CFLAGS" CFLAGS="$CFLAGS $PTHREAD_CFLAGS" # Detect AIX lossage: JOINABLE attribute is called UNDETACHED. AC_MSG_CHECKING([for joinable pthread attribute]) attr_name=unknown for attr in PTHREAD_CREATE_JOINABLE PTHREAD_CREATE_UNDETACHED; do AC_TRY_LINK([#include ], [int attr=$attr; return attr;], [attr_name=$attr; break]) done AC_MSG_RESULT($attr_name) if test "$attr_name" != PTHREAD_CREATE_JOINABLE; then AC_DEFINE_UNQUOTED(PTHREAD_CREATE_JOINABLE, $attr_name, [Define to necessary symbol if this constant uses a non-standard name on your system.]) fi AC_MSG_CHECKING([if more special flags are required for pthreads]) flag=no case "${host_cpu}-${host_os}" in *-aix* | *-freebsd* | *-darwin*) flag="-D_THREAD_SAFE";; *solaris* | *-osf* | *-hpux*) flag="-D_REENTRANT";; esac AC_MSG_RESULT(${flag}) if test "x$flag" != xno; then PTHREAD_CFLAGS="$flag $PTHREAD_CFLAGS" fi LIBS="$save_LIBS" CFLAGS="$save_CFLAGS" # More AIX lossage: must compile with cc_r AC_CHECK_PROG(PTHREAD_CC, cc_r, cc_r, ${CC}) else PTHREAD_CC="$CC" fi AC_SUBST(PTHREAD_LIBS) AC_SUBST(PTHREAD_CFLAGS) AC_SUBST(PTHREAD_CC) # Finally, execute ACTION-IF-FOUND/ACTION-IF-NOT-FOUND: if test x"$acx_pthread_ok" = xyes; 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If omitted, it defaults to `yes'. m4_define([_LT_ENABLE_FAST_INSTALL], [m4_define([_LT_ENABLE_FAST_INSTALL_DEFAULT], [m4_if($1, no, no, yes)])dnl AC_ARG_ENABLE([fast-install], [AS_HELP_STRING([--enable-fast-install@<:@=PKGS@:>@], [optimize for fast installation @<:@default=]_LT_ENABLE_FAST_INSTALL_DEFAULT[@:>@])], [p=${PACKAGE-default} case $enableval in yes) enable_fast_install=yes ;; no) enable_fast_install=no ;; *) enable_fast_install=no # Look at the argument we got. We use all the common list separators. lt_save_ifs="$IFS"; IFS="${IFS}$PATH_SEPARATOR," for pkg in $enableval; do IFS="$lt_save_ifs" if test "X$pkg" = "X$p"; then enable_fast_install=yes fi done IFS="$lt_save_ifs" ;; esac], [enable_fast_install=]_LT_ENABLE_FAST_INSTALL_DEFAULT) _LT_DECL([fast_install], [enable_fast_install], [0], [Whether or not to optimize for fast installation])dnl ])# _LT_ENABLE_FAST_INSTALL LT_OPTION_DEFINE([LT_INIT], [fast-install], [_LT_ENABLE_FAST_INSTALL([yes])]) LT_OPTION_DEFINE([LT_INIT], [disable-fast-install], [_LT_ENABLE_FAST_INSTALL([no])]) # Old names: AU_DEFUN([AC_ENABLE_FAST_INSTALL], [_LT_SET_OPTION([LT_INIT], m4_if([$1], [no], [disable-])[fast-install]) AC_DIAGNOSE([obsolete], [$0: Remove this warning and the call to _LT_SET_OPTION when you put the `fast-install' option into LT_INIT's first parameter.]) ]) AU_DEFUN([AC_DISABLE_FAST_INSTALL], [_LT_SET_OPTION([LT_INIT], [disable-fast-install]) AC_DIAGNOSE([obsolete], [$0: Remove this warning and the call to _LT_SET_OPTION when you put the `disable-fast-install' option into LT_INIT's first parameter.]) ]) dnl aclocal-1.4 backwards compatibility: dnl AC_DEFUN([AC_ENABLE_FAST_INSTALL], []) dnl AC_DEFUN([AM_DISABLE_FAST_INSTALL], []) # _LT_WITH_PIC([MODE]) # -------------------- # implement the --with-pic flag, and support the `pic-only' and `no-pic' # LT_INIT options. # MODE is either `yes' or `no'. If omitted, it defaults to `both'. m4_define([_LT_WITH_PIC], [AC_ARG_WITH([pic], [AS_HELP_STRING([--with-pic], [try to use only PIC/non-PIC objects @<:@default=use both@:>@])], [pic_mode="$withval"], [pic_mode=default]) test -z "$pic_mode" && pic_mode=m4_default([$1], [default]) _LT_DECL([], [pic_mode], [0], [What type of objects to build])dnl ])# _LT_WITH_PIC LT_OPTION_DEFINE([LT_INIT], [pic-only], [_LT_WITH_PIC([yes])]) LT_OPTION_DEFINE([LT_INIT], [no-pic], [_LT_WITH_PIC([no])]) # Old name: AU_DEFUN([AC_LIBTOOL_PICMODE], [_LT_SET_OPTION([LT_INIT], [pic-only]) AC_DIAGNOSE([obsolete], [$0: Remove this warning and the call to _LT_SET_OPTION when you put the `pic-only' option into LT_INIT's first parameter.]) ]) dnl aclocal-1.4 backwards compatibility: dnl AC_DEFUN([AC_LIBTOOL_PICMODE], []) ## ----------------- ## ## LTDL_INIT Options ## ## ----------------- ## m4_define([_LTDL_MODE], []) LT_OPTION_DEFINE([LTDL_INIT], [nonrecursive], [m4_define([_LTDL_MODE], [nonrecursive])]) LT_OPTION_DEFINE([LTDL_INIT], [recursive], [m4_define([_LTDL_MODE], [recursive])]) LT_OPTION_DEFINE([LTDL_INIT], [subproject], [m4_define([_LTDL_MODE], [subproject])]) m4_define([_LTDL_TYPE], []) LT_OPTION_DEFINE([LTDL_INIT], [installable], [m4_define([_LTDL_TYPE], [installable])]) LT_OPTION_DEFINE([LTDL_INIT], [convenience], [m4_define([_LTDL_TYPE], [convenience])]) libomxil-bellagio-0.9.3/m4/as_ac_expand.m40000644000175000017500000000210511513256766015240 00000000000000dnl as-ac-expand.m4 0.2.0 dnl autostars m4 macro for expanding directories using configure's prefix dnl thomas@apestaart.org dnl AS_AC_EXPAND(VAR, CONFIGURE_VAR) dnl example dnl AS_AC_EXPAND(SYSCONFDIR, $sysconfdir) dnl will set SYSCONFDIR to /usr/local/etc if prefix=/usr/local AC_DEFUN([AS_AC_EXPAND], [ EXP_VAR=[$1] FROM_VAR=[$2] dnl first expand prefix and exec_prefix if necessary prefix_save=$prefix exec_prefix_save=$exec_prefix dnl if no prefix given, then use /usr/local, the default prefix if test "x$prefix" = "xNONE"; then prefix="$ac_default_prefix" fi dnl if no exec_prefix given, then use prefix if test "x$exec_prefix" = "xNONE"; then exec_prefix=$prefix fi full_var="$FROM_VAR" dnl loop until it doesn't change anymore while true; do new_full_var="`eval echo $full_var`" if test "x$new_full_var" = "x$full_var"; then break; fi full_var=$new_full_var done dnl clean up full_var=$new_full_var AC_SUBST([$1], "$full_var") dnl restore prefix and exec_prefix prefix=$prefix_save exec_prefix=$exec_prefix_save ]) libomxil-bellagio-0.9.3/m4/Makefile.am0000644000175000017500000000010011513256766014416 00000000000000EXTRA_DIST = acx_pthread.m4 ax_set_plugindir.m4 as_ac_expand.m4 libomxil-bellagio-0.9.3/TODO0000644000175000017500000000000111513256766012532 00000000000000 libomxil-bellagio-0.9.3/AUTHORS0000644000175000017500000000021211513256766013116 00000000000000BHATTACHARYYA Sourya CONTRERAS Felipe FOUET Benoit MATHUR Mona MELPIGNANO Diego NIEMIMUUKKO Ukri SEN Pankaj SIORPAES David URLINI Giulio libomxil-bellagio-0.9.3/Makefile.am0000644000175000017500000000046011513256766014107 00000000000000SUBDIRS = src include test m4 doc ACLOCAL_AMFLAGS = -I m4 EXTRA_DIST = libomxil-bellagio.spec pkgconfigdir = $(libdir)/pkgconfig pkgconfig_DATA = libomxil-bellagio.pc docdir = $(DESTDIR)$(prefix)/share/doc/@PACKAGE@ doc_DATA = README \ ChangeLog \ TODO uninstall-local: rm -rf $(plugindir) libomxil-bellagio-0.9.3/src/0000755000175000017500000000000011565425032012711 500000000000000libomxil-bellagio-0.9.3/src/tsemaphore.c0000644000175000017500000000775211513256766015170 00000000000000/** src/tsemaphore.c Implements a simple inter-thread semaphore so not to have to deal with IPC creation and the like. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include "tsemaphore.h" #include "omx_comp_debug_levels.h" /** Initializes the semaphore at a given value * * @param tsem the semaphore to initialize * @param val the initial value of the semaphore * */ OSCL_EXPORT_REF int tsem_init(tsem_t* tsem, unsigned int val) { int i; i = pthread_cond_init(&tsem->condition, NULL); if (i!=0) { return -1; } i = pthread_mutex_init(&tsem->mutex, NULL); if (i!=0) { return -1; } tsem->semval = val; return 0; } /** Destroy the semaphore * * @param tsem the semaphore to destroy */ OSCL_EXPORT_REF void tsem_deinit(tsem_t* tsem) { pthread_cond_destroy(&tsem->condition); pthread_mutex_destroy(&tsem->mutex); } /** Decreases the value of the semaphore. Blocks if the semaphore * value is zero. If the timeout is reached the function exits with * error ETIMEDOUT * * @param tsem the semaphore to decrease * @param timevalue the value of delay for the timeout */ OSCL_EXPORT_REF int tsem_timed_down(tsem_t* tsem, unsigned int milliSecondsDelay) { int err = 0; struct timespec final_time; struct timeval currentTime; long int microdelay; gettimeofday(¤tTime, NULL); /** convert timeval to timespec and add delay in milliseconds for the timeout */ microdelay = ((milliSecondsDelay * 1000 + currentTime.tv_usec)); final_time.tv_sec = currentTime.tv_sec + (microdelay / 1000000); final_time.tv_nsec = (microdelay % 1000000) * 1000; pthread_mutex_lock(&tsem->mutex); while (tsem->semval == 0) { err = pthread_cond_timedwait(&tsem->condition, &tsem->mutex, &final_time); if (err != 0) { tsem->semval--; } } tsem->semval--; pthread_mutex_unlock(&tsem->mutex); return err; } /** Decreases the value of the semaphore. Blocks if the semaphore * value is zero. * * @param tsem the semaphore to decrease */ OSCL_EXPORT_REF void tsem_down(tsem_t* tsem) { pthread_mutex_lock(&tsem->mutex); while (tsem->semval == 0) { pthread_cond_wait(&tsem->condition, &tsem->mutex); } tsem->semval--; pthread_mutex_unlock(&tsem->mutex); } /** Increases the value of the semaphore * * @param tsem the semaphore to increase */ OSCL_EXPORT_REF void tsem_up(tsem_t* tsem) { pthread_mutex_lock(&tsem->mutex); tsem->semval++; pthread_cond_signal(&tsem->condition); pthread_mutex_unlock(&tsem->mutex); } /** Reset the value of the semaphore * * @param tsem the semaphore to reset */ OSCL_EXPORT_REF void tsem_reset(tsem_t* tsem) { pthread_mutex_lock(&tsem->mutex); tsem->semval=0; pthread_mutex_unlock(&tsem->mutex); } /** Wait on the condition. * * @param tsem the semaphore to wait */ OSCL_EXPORT_REF void tsem_wait(tsem_t* tsem) { pthread_mutex_lock(&tsem->mutex); pthread_cond_wait(&tsem->condition, &tsem->mutex); pthread_mutex_unlock(&tsem->mutex); } /** Signal the condition,if waiting * * @param tsem the semaphore to signal */ OSCL_EXPORT_REF void tsem_signal(tsem_t* tsem) { pthread_mutex_lock(&tsem->mutex); pthread_cond_signal(&tsem->condition); pthread_mutex_unlock(&tsem->mutex); } libomxil-bellagio-0.9.3/src/content_pipe_inet.h0000644000175000017500000000271711513256766016530 00000000000000/** src/content_pipe_inet.h This file implements the support for content pipes related to inet resources. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __CONTENT_PIPE_INET_H__ #define __CONTENT_PIPE_INET_H__ #include #include #include #include #include #include #include #include #include #include #include #include "omx_comp_debug_levels.h" #define SOCKET_ERROR -1 #define QUEUE_SIZE 1 typedef struct { /* public */ CP_PIPETYPE pipe; /* private */ int sfd; int cfd; } inet_ContentPipe; #endif libomxil-bellagio-0.9.3/src/omxcore.c0000644000175000017500000003331511565375761014473 00000000000000/** src/omxcore.c OpenMAX Integration Layer Core. This library implements the OpenMAX core responsible for environment setup, components tunneling and communication. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #define _GNU_SOURCE #include #include #include #include #include #include #include #include #include #include #include "omxcore.h" #include "omx_create_loaders.h" extern CPresult file_pipe_Constructor(CP_PIPETYPE* pPipe, CPstring szURI); extern CPresult inet_pipe_Constructor(CP_PIPETYPE* pPipe, CPstring szURI); /** The static field initialized is equal to 0 if the core is not initialized. * It is equal to 1 when the OMX_Init has been called */ static int initialized; /** The int bosa_loaders contains the number of loaders available in the system. */ static int bosa_loaders; /** The pointer to the loaders list. This list contains the all the different component loaders * present in the system or added by the IL Client with the BOSA_AddComponentLoader function. * The component loader is a implementation specific way to handle a set of components. The implementation * of the IL core accesses to the loaders in a standard way, but the different loaders can handle * different types of components, or handle in different ways the same components. It can be used also * to create a multi-OS support */ BOSA_COMPONENTLOADER **loadersList = NULL; OMX_ERRORTYPE BOSA_AddComponentLoader(BOSA_COMPONENTLOADER *pLoader) { BOSA_COMPONENTLOADER **newLoadersList = NULL; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); assert(pLoader); bosa_loaders++; newLoadersList = realloc(loadersList, bosa_loaders * sizeof(BOSA_COMPONENTLOADER *)); if (!newLoadersList) return OMX_ErrorInsufficientResources; loadersList = newLoadersList; loadersList[bosa_loaders - 1] = pLoader; DEBUG(DEB_LEV_SIMPLE_SEQ, "Loader added at index %d\n", bosa_loaders - 1); return OMX_ErrorNone; } /** @brief The OMX_Init standard function * * This function calls the init function of each component loader added. If there * is no component loaders present, the ST default component loader (static libraries) * is loaded as default component loader. * * @return OMX_ErrorNone */ OSCL_EXPORT_REF OMX_ERRORTYPE OMX_Init() { int i = 0; OMX_ERRORTYPE err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); if(initialized == 0) { initialized = 1; if (createComponentLoaders()) { return OMX_ErrorInsufficientResources; } for (i = 0; i < bosa_loaders; i++) { err = loadersList[i]->BOSA_InitComponentLoader(loadersList[i]); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "A Component loader constructor fails. Exiting\n"); return OMX_ErrorInsufficientResources; } } } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** @brief The OMX_Deinit standard function * * In this function the Deinit function for each component loader is performed */ OSCL_EXPORT_REF OMX_ERRORTYPE OMX_Deinit() { int i = 0; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); if(initialized == 1) { for (i = 0; i < bosa_loaders; i++) { loadersList[i]->BOSA_DeInitComponentLoader(loadersList[i]); free(loadersList[i]); loadersList[i] = 0; } } free(loadersList); loadersList = 0; initialized = 0; bosa_loaders = 0; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** @brief the OMX_GetHandle standard function * * This function will scan inside any component loader to search for * the requested component. If there are more components with the same name * the first component is returned. The existence of multiple components with * the same name is not contemplated in OpenMAX specification. The assumption is * that this behavior is NOT allowed. * * @return OMX_ErrorNone if a component has been found * OMX_ErrorComponentNotFound if the requested component has not been found * in any loader */ OSCL_EXPORT_REF OMX_ERRORTYPE OMX_GetHandle(OMX_HANDLETYPE* pHandle, OMX_STRING cComponentName, OMX_PTR pAppData, OMX_CALLBACKTYPE* pCallBacks) { OMX_ERRORTYPE err = OMX_ErrorNone; int i; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for %s\n", __func__, cComponentName); for (i = 0; i < bosa_loaders; i++) { err = loadersList[i]->BOSA_CreateComponent( loadersList[i], pHandle, cComponentName, pAppData, pCallBacks); if (err == OMX_ErrorNone) { // the component has been found return OMX_ErrorNone; } } /*Required to meet conformance test: do not remove*/ if (err == OMX_ErrorInsufficientResources) { return OMX_ErrorInsufficientResources; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorComponentNotFound; } /** @brief The OMX_FreeHandle standard function * * This function executes the BOSA_DestroyComponent of the component loaders * * @param hComponent the component handle to be freed * * @return The error of the BOSA_DestroyComponent function or OMX_ErrorNone */ OSCL_EXPORT_REF OMX_ERRORTYPE OMX_FreeHandle(OMX_HANDLETYPE hComponent) { int i; OMX_ERRORTYPE err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for %p\n", __func__, hComponent); for (i = 0; i < bosa_loaders; i++) { err = loadersList[i]->BOSA_DestroyComponent( loadersList[i], hComponent); if (err == OMX_ErrorNone) { // the component has been found and destroyed return OMX_ErrorNone; } } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorComponentNotFound; } /** @brief the OMX_ComponentNameEnum standard function * * This function build a complete list of names from all the loaders. * For each loader the index is from 0 to max, but this function must provide a single * list, with a common index. This implementation orders the loaders and the * related list of components. */ OSCL_EXPORT_REF OMX_ERRORTYPE OMX_ComponentNameEnum( OMX_STRING cComponentName, OMX_U32 nNameLength, OMX_U32 nIndex) { OMX_ERRORTYPE err = OMX_ErrorNone; int i = 0; int index = 0; int offset = 0; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); for (i = 0; i < bosa_loaders; i++) { offset = 0; while((err = loadersList[i]->BOSA_ComponentNameEnum(loadersList[i], cComponentName, nNameLength, offset)) != OMX_ErrorNoMore) { if (index == nIndex) { return err; } offset++; index++; } } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNoMore; } /** @brief the OMX_SetupTunnel standard function * * The implementation of this function is described in the OpenMAX spec * * @param hOutput component handler that controls the output port of the tunnel * @param nPortOutput index of the output port of the tunnel * @param hInput component handler that controls the input port of the tunnel * @param nPortInput index of the input port of the tunnel * * @return OMX_ErrorBadParameter, OMX_ErrorPortsNotCompatible, tunnel rejected by a component * or OMX_ErrorNone if the tunnel has been established */ OSCL_EXPORT_REF OMX_ERRORTYPE OMX_SetupTunnel( OMX_HANDLETYPE hOutput, OMX_U32 nPortOutput, OMX_HANDLETYPE hInput, OMX_U32 nPortInput) { OMX_ERRORTYPE err; OMX_COMPONENTTYPE* component; OMX_TUNNELSETUPTYPE* tunnelSetup; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s the output port is:%p/%i, the input port is %p/%i\n", __func__, hOutput, (int)nPortOutput, hInput, (int)nPortInput); tunnelSetup = malloc(sizeof(OMX_TUNNELSETUPTYPE)); component = (OMX_COMPONENTTYPE*)hOutput; tunnelSetup->nTunnelFlags = 0; tunnelSetup->eSupplier = OMX_BufferSupplyUnspecified; if (hOutput == NULL && hInput == NULL) return OMX_ErrorBadParameter; if (hOutput){ err = (component->ComponentTunnelRequest)(hOutput, nPortOutput, hInput, nPortInput, tunnelSetup); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Tunneling failed: output port rejects it - err = %x\n", err); free(tunnelSetup); tunnelSetup = NULL; return err; } } DEBUG(DEB_LEV_PARAMS, "First stage of tunneling acheived:\n"); DEBUG(DEB_LEV_PARAMS, " - supplier proposed = %i\n", tunnelSetup->eSupplier); DEBUG(DEB_LEV_PARAMS, " - flags = %i\n", (int)tunnelSetup->nTunnelFlags); component = (OMX_COMPONENTTYPE*)hInput; if (hInput) { err = (component->ComponentTunnelRequest)(hInput, nPortInput, hOutput, nPortOutput, tunnelSetup); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Tunneling failed: input port rejects it - err = %08x\n", err); // the second stage fails. the tunnel on poutput port has to be removed component = (OMX_COMPONENTTYPE*)hOutput; err = (component->ComponentTunnelRequest)(hOutput, nPortOutput, NULL, 0, tunnelSetup); if (err != OMX_ErrorNone) { // This error should never happen. It is critical, and not recoverable free(tunnelSetup); tunnelSetup = NULL; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s with OMX_ErrorUndefined\n", __func__); return OMX_ErrorUndefined; } free(tunnelSetup); tunnelSetup = NULL; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s with OMX_ErrorPortsNotCompatible\n", __func__); return OMX_ErrorPortsNotCompatible; } } DEBUG(DEB_LEV_PARAMS, "Second stage of tunneling acheived:\n"); DEBUG(DEB_LEV_PARAMS, " - supplier proposed = %i\n", (int)tunnelSetup->eSupplier); DEBUG(DEB_LEV_PARAMS, " - flags = %i\n", (int)tunnelSetup->nTunnelFlags); free(tunnelSetup); tunnelSetup = NULL; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** @brief the OMX_GetRolesOfComponent standard function */ OSCL_EXPORT_REF OMX_ERRORTYPE OMX_GetRolesOfComponent ( OMX_STRING CompName, OMX_U32 *pNumRoles, OMX_U8 **roles) { OMX_ERRORTYPE err = OMX_ErrorNone; int i; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); for (i = 0; i < bosa_loaders; i++) { err = loadersList[i]->BOSA_GetRolesOfComponent( loadersList[i], CompName, pNumRoles, roles); if (err == OMX_ErrorNone) { return OMX_ErrorNone; } } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorComponentNotFound; } /** @brief the OMX_GetComponentsOfRole standard function * * This function searches in all the component loaders any component * supporting the requested role * * @param role See spec * @param pNumComps See spec * @param compNames See spec * */ OSCL_EXPORT_REF OMX_ERRORTYPE OMX_GetComponentsOfRole ( OMX_STRING role, OMX_U32 *pNumComps, OMX_U8 **compNames) { OMX_ERRORTYPE err = OMX_ErrorNone; int i,j; int only_number_requested = 0, full_number=0; OMX_U32 temp_num_comp = 0; OMX_U8 **tempCompNames; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); if (compNames == NULL) { only_number_requested = 1; } else { only_number_requested = 0; } for (i = 0; i < bosa_loaders; i++) { temp_num_comp = *pNumComps; err = loadersList[i]->BOSA_GetComponentsOfRole( loadersList[i], role, &temp_num_comp, NULL); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorComponentNotFound; } if (only_number_requested == 0) { tempCompNames = malloc(temp_num_comp * sizeof(OMX_STRING)); for (j=0; jBOSA_GetComponentsOfRole( loadersList[i], role, &temp_num_comp, tempCompNames); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorComponentNotFound; } for (j = 0; j #else #define OSCL_IMPORT_REF #define OSCL_EXPORT_REF #endif /** The structure contains the semaphore value, mutex and green light flag */ typedef struct tsem_t{ pthread_cond_t condition; pthread_mutex_t mutex; unsigned int semval; }tsem_t; /** Initializes the semaphore at a given value * * @param tsem the semaphore to initialize * * @param val the initial value of the semaphore */ OSCL_IMPORT_REF int tsem_init(tsem_t* tsem, unsigned int val); /** Destroy the semaphore * * @param tsem the semaphore to destroy */ OSCL_IMPORT_REF void tsem_deinit(tsem_t* tsem); /** Decreases the value of the semaphore. Blocks if the semaphore * value is zero. * * @param tsem the semaphore to decrease */ OSCL_IMPORT_REF void tsem_down(tsem_t* tsem); /** Decreases the value of the semaphore. Blocks if the semaphore * value is zero. If the timeout is reached the function exits with * error ETIMEDOUT * * @param tsem the semaphore to decrease * @param timevalue the value of delay for the timeout */ OSCL_IMPORT_REF int tsem_timed_down(tsem_t* tsem, unsigned int milliSecondsDelay); /** Increases the value of the semaphore * * @param tsem the semaphore to increase */ OSCL_IMPORT_REF void tsem_up(tsem_t* tsem); /** Reset the value of the semaphore * * @param tsem the semaphore to reset */ OSCL_IMPORT_REF void tsem_reset(tsem_t* tsem); /** Wait on the condition. * * @param tsem the semaphore to wait */ OSCL_IMPORT_REF void tsem_wait(tsem_t* tsem); /** Signal the condition,if waiting * * @param tsem the semaphore to signal */ OSCL_IMPORT_REF void tsem_signal(tsem_t* tsem); #endif libomxil-bellagio-0.9.3/src/extension_struct.h0000644000175000017500000000345111513256766016436 00000000000000/** src/extension_struct.h This file will include all the extension structures defined in Bellagio and not present in the OpenMAX spec. These structure will be used with the function getExtensionIndex defined in the standard. Copyright (C) 2009 STMicroelectronics Copyright (C) 2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef EXTENSION_STRUCT_H_ #define EXTENSION_STRUCT_H_ /** This structure is threaded like a parameter with the * extension index OMX_IndexParameterThreadsID */ typedef struct OMX_PARAM_BELLAGIOTHREADS_ID { OMX_U32 nSize; /**< Size of the structure in bytes */ OMX_VERSIONTYPE nVersion; /**< OMX specification version information */ long int nThreadBufferMngtID; /**< @param nThreadBufferMngtID the linux thread ID of the buffer management thread*/\ long int nThreadMessageID; /**< @param nThreadMessageID the linux thread ID of the message handler thread*/\ } OMX_PARAM_BELLAGIOTHREADS_ID; typedef struct multiResourceDescriptor { int CPUResourceRequested; int MemoryResourceRequested; } multiResourceDescriptor; #endif libomxil-bellagio-0.9.3/src/omx_comp_debug_levels.h0000644000175000017500000000472311565375761017366 00000000000000/** src/omx_comp_debug_levels.h Define the level of debug prints on standard err. The different levels can be composed with binary OR. The debug levels defined here belong to OpenMAX components and IL core Copyright (C) 2007-2011 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __OMX_COMP_DEBUG_LEVELS_H__ #define __OMX_COMP_DEBUG_LEVELS_H__ #include /** Remove all debug output lines */ #define DEB_LEV_NO_OUTPUT 0 /** Messages explaining the reason of critical errors */ #define DEB_LEV_ERR 1 /** Messages showing values related to the test and the component/s used */ #define DEB_LEV_PARAMS 2 /** Messages representing steps in the execution. These are the simple messages, because * they avoid iterations */ #define DEB_LEV_SIMPLE_SEQ 4 /** Messages representing steps in the execution. All the steps are described, * also with iterations. With this level of output the performances are * seriously compromised */ #define DEB_LEV_FULL_SEQ 8 /** Messages that indicates the beginning and the end of a function. * It can be used to trace the execution */ #define DEB_LEV_FUNCTION_NAME 16 /** Messages that are the default test application output. These message should be * shown every time */ #define DEFAULT_MESSAGES 32 /** All the messages - max value */ #define DEB_ALL_MESS 255 #ifdef CONFIG_DEBUG_LEVEL /** \def DEBUG_LEVEL is the current level do debug output on standard err */ #define DEBUG_LEVEL (DEB_LEV_ERR | CONFIG_DEBUG_LEVEL) #else #define DEBUG_LEVEL (DEB_LEV_ERR) #endif #if DEBUG_LEVEL > 0 #define DEBUG(n, fmt, args...) do { if (DEBUG_LEVEL & (n)){fprintf(stderr, "OMX-" fmt, ##args);} } while (0) #else #define DEBUG(n, fmt, args...) {} #endif #endif libomxil-bellagio-0.9.3/src/omx_reference_resource_manager.c0000644000175000017500000004373411513256766021243 00000000000000/** src/omx_reference_resource_manager.c This simple resource manager emulates the behavior of a real RM. It applies the rules defined in the OpenMAX spec. It can be replaced in the future by a real system. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include "omx_reference_resource_manager.h" #include "base/omx_base_component.h" #include "queue.h" /** * This is the static base pointer of the list */ static int globalTimestamp = 0; /** * This function initializes the Resource manager. In the current implementation * it does not perform any operation */ OMX_ERRORTYPE RM_Init() { int i; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); globalIndex = 0; listOfcomponentRegistered = calloc(1, sizeof(struct NameIndexType) * MAX_COMPONENTS_TYPES_HANDLED); for (i = 0; ipComponentPrivate; if (!*list) { *list = malloc(sizeof(ComponentListType)); if (!bIsWaiting) { globalComponentList[index] = *list; } else { globalWaitingComponentList[index] = *list; } if (!*list) { DEBUG(DEB_LEV_ERR, "In %s OMX_ErrorInsufficientResources\n", __func__); return OMX_ErrorInsufficientResources; } (*list)->openmaxStandComp = openmaxStandComp; (*list)->timestamp = globalTimestamp; globalTimestamp++; (*list)->nGroupPriority = omx_base_component_Private->nGroupPriority; (*list)->next = NULL; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } componentTemp = *list; while(componentTemp->next) { componentTemp = componentTemp->next; } componentNext = malloc(sizeof(ComponentListType)); if (!componentNext) { DEBUG(DEB_LEV_ERR, "In %s OMX_ErrorInsufficientResources\n", __func__); return OMX_ErrorInsufficientResources; } componentTemp->next = componentNext; componentNext->next = NULL; componentNext->openmaxStandComp = openmaxStandComp; componentNext->timestamp = globalTimestamp; globalTimestamp++; componentNext->nGroupPriority = omx_base_component_Private->nGroupPriority; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** * This function removes the given element from the list, if present. * If the list is empty, this function cleans up everything. */ OMX_ERRORTYPE removeElemFromList(ComponentListType **list, OMX_COMPONENTTYPE *openmaxStandComp) { ComponentListType *componentTemp; ComponentListType *componentPrev; OMX_BOOL bFound = OMX_FALSE; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s list %p\n", __func__, *list); if (!*list) { DEBUG(DEB_LEV_ERR, "In %s, the resource manager is not initialized\n", __func__); return OMX_ErrorUndefined; } componentTemp = *list; componentPrev = *list; while(componentTemp) { if (componentTemp->openmaxStandComp == openmaxStandComp) { if (componentTemp == *list) { *list = (*list)->next; free(componentTemp); } else { componentPrev->next = componentTemp->next; free(componentTemp); } bFound = OMX_TRUE; break; } else { if (componentTemp != *list) { componentPrev = componentPrev->next; } componentTemp = componentTemp->next; } } if(!bFound) { DEBUG(DEB_LEV_ERR, "In %s, the specified component does not exist\n", __func__); return OMX_ErrorComponentNotFound; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** * This function returns the number of elements present in the * list. If the list does not exists, this function returns 0 elements * without further warnings */ int numElemInList(ComponentListType *list) { ComponentListType *componentTemp; int numElem = 0; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); if (!list) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s, no list no elements\n", __func__); return 0; } componentTemp = list; while(componentTemp) { numElem++; componentTemp = componentTemp->next; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return numElem; } /** * This function deallocate any remaining element in a list * and dispose it */ OMX_ERRORTYPE clearList(ComponentListType **list) { ComponentListType *componentTemp; ComponentListType *componentPrev; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); if (!*list) { DEBUG(DEB_LEV_FUNCTION_NAME, "In %s, no list no elements\n", __func__); return OMX_ErrorNone; } componentTemp = *list; while(componentTemp) { componentPrev = componentTemp; componentTemp = componentTemp->next; free(componentPrev); } *list = NULL; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** * This debug function is capable of printing the full list * actually stored */ void RM_printList(ComponentListType *list, int viewFlag) { ComponentListType *componentTemp = list; omx_base_component_PrivateType* omx_base_component_Private; int index; if (!list) { printf("The list is empty\n"); return; } index = 0; while (componentTemp) { omx_base_component_Private = (omx_base_component_PrivateType*)componentTemp->openmaxStandComp->pComponentPrivate; if ((viewFlag & RM_SHOW_NAME) == RM_SHOW_NAME) { printf("Name %s ", omx_base_component_Private->name); } if ((viewFlag & RM_SHOW_ADDRESS) == RM_SHOW_ADDRESS) { printf("Address %p ", componentTemp->openmaxStandComp); } printf("\n"); index++; componentTemp = componentTemp->next; } } /** * This function returns the number of components that have a lower priority * than the value specified, and the lowest among all possibles. * If the number returned is 0, no component is preemptable. if it is 1 or more, * the oldest_component_preemptable will contain the reference to the preemptable * component with the oldest time stamp. */ int searchLowerPriority(ComponentListType *list, int current_priority, ComponentListType **oldest_component_preemptable) { ComponentListType *componentTemp; ComponentListType *componentCandidate; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); int nComp = 0; if (!list) { DEBUG(DEB_LEV_ERR, "In %s no list\n", __func__); return OMX_ErrorUndefined; } componentTemp = list; componentCandidate = NULL; while (componentTemp) { if (componentTemp->nGroupPriority > current_priority) { nComp++; } if (nComp>0) { if (componentCandidate) { if (componentCandidate->timestamp > componentTemp->timestamp) { componentCandidate = componentTemp; } } else { componentCandidate = componentTemp; } } componentTemp = componentTemp->next; } *oldest_component_preemptable = componentCandidate; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return nComp; } /** * This function tries to preempt the given component, that has been detected as * the candidate by the default policy defined in the OpenMAX spec. */ OMX_ERRORTYPE preemptComponent(OMX_COMPONENTTYPE *openmaxStandComp) { OMX_ERRORTYPE err; omx_base_component_PrivateType* omx_base_component_Private = openmaxStandComp->pComponentPrivate; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); if (omx_base_component_Private->state == OMX_StateIdle) { (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventError, OMX_ErrorResourcesLost, 0, NULL); err = OMX_SendCommand(openmaxStandComp, OMX_CommandStateSet, OMX_StateLoaded, NULL); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s, the state cannot be changed\n", __func__); return OMX_ErrorUndefined; } } else if ((omx_base_component_Private->state == OMX_StateExecuting) || (omx_base_component_Private->state == OMX_StatePause)) { // TODO fill also this section that cover the preemption of a running component // send OMX_ErrorResourcesPreempted // change state to Idle // send OMX_ErrorResourcesLost // change state to Loaded } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** * This function is executed by a component when it changes state from Loaded to Idle. * If it return ErrorNone the resource is granted and it can transit to Idle. * In case the resource is already busy, the resource manager preempt another component * with a lower priority and a oldest time flag if it exists. Differently it returns OMX_ErrorInsufficientResources */ OMX_ERRORTYPE RM_getResource(OMX_COMPONENTTYPE *openmaxStandComp) { ComponentListType *componentCandidate; omx_base_component_PrivateType* omx_base_component_Private; int candidates; OMX_ERRORTYPE err; int i = 0; int indexComponent = -1; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; while(listOfcomponentRegistered[i].component_name != NULL ) { if (!strcmp(listOfcomponentRegistered[i].component_name, omx_base_component_Private->name)) { // found component in the list of the resource manager indexComponent = listOfcomponentRegistered[i].index; break; } i++; } if (indexComponent <0) { // No resource to be handled DEBUG(DEB_LEV_ERR, "In %s No resource to be handled\n", __func__); return OMX_ErrorNone; } if (numElemInList(globalComponentList[indexComponent]) >= listOfcomponentRegistered[i].max_components) { candidates = searchLowerPriority(globalComponentList[indexComponent], omx_base_component_Private->nGroupPriority, &componentCandidate); if (candidates) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s candidates %i winner %p\n", __func__, candidates, componentCandidate->openmaxStandComp); err = preemptComponent(componentCandidate->openmaxStandComp); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s the component cannot be preempted\n", __func__); return OMX_ErrorInsufficientResources; } else { err = removeElemFromList(&globalComponentList[indexComponent], componentCandidate->openmaxStandComp); err = addElemToList(&globalComponentList[indexComponent], openmaxStandComp, indexComponent, OMX_FALSE); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s memory error\n", __func__); return OMX_ErrorInsufficientResources; } } } else { DEBUG(DEB_LEV_SIMPLE_SEQ, "Out of %s with insufficient resources\n", __func__); return OMX_ErrorInsufficientResources; } } else { err = addElemToList(&globalComponentList[indexComponent], openmaxStandComp, indexComponent, OMX_FALSE); } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** * This function is called by a component when it transit from Idle to Loaded and can release * its used resource handled by the resource manager */ OMX_ERRORTYPE RM_releaseResource(OMX_COMPONENTTYPE *openmaxStandComp){ omx_base_component_PrivateType* omx_base_component_Private; OMX_COMPONENTTYPE *openmaxWaitingComp; OMX_ERRORTYPE err; int i = 0; int indexComponent = -1; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; while(listOfcomponentRegistered[i].component_name != NULL ) { if (!strcmp(listOfcomponentRegistered[i].component_name, omx_base_component_Private->name)) { // found component in the list of the resource manager indexComponent = listOfcomponentRegistered[i].index; break; } i++; } if (indexComponent <0) { // No resource to be handled DEBUG(DEB_LEV_ERR, "In %s No resource to be handled\n", __func__); return OMX_ErrorNone; } if (!globalComponentList[indexComponent]) { DEBUG(DEB_LEV_ERR, "In %s, the resource manager is not initialized\n", __func__); return OMX_ErrorUndefined; } err = removeElemFromList(&globalComponentList[indexComponent], openmaxStandComp); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s, the resource cannot be released\n", __func__); return OMX_ErrorUndefined; } if(numElemInList(globalWaitingComponentList[indexComponent])) { openmaxWaitingComp = globalWaitingComponentList[indexComponent]->openmaxStandComp; removeElemFromList(&globalWaitingComponentList[indexComponent], openmaxWaitingComp); err = OMX_SendCommand(openmaxWaitingComp, OMX_CommandStateSet, OMX_StateIdle, NULL); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s, the state cannot be changed\n", __func__); } } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** * This function adds the given component to the waiting queue for * the given resource. When a resource becomes available through the * RM_releaseResource function the first element in the queue is taken * off the list and it receives the resource just released. */ OMX_ERRORTYPE RM_waitForResource(OMX_COMPONENTTYPE *openmaxStandComp) { omx_base_component_PrivateType* omx_base_component_Private; int i = 0; int indexComponent = -1; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; while(listOfcomponentRegistered[i].component_name != NULL ) { if (!strcmp(listOfcomponentRegistered[i].component_name, omx_base_component_Private->name)) { // found component in the list of the resource manager indexComponent = listOfcomponentRegistered[i].index; break; } i++; } if (indexComponent <0) { // No resource to be handled DEBUG(DEB_LEV_ERR, "In %s No resource to be handled\n", __func__); return OMX_ErrorNone; } addElemToList(&globalWaitingComponentList[indexComponent], openmaxStandComp, listOfcomponentRegistered[i].index, OMX_TRUE); DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** * This function removes a component from the waiting queue * if the IL client decides that the component should not wait any * more for the resource */ OMX_ERRORTYPE RM_removeFromWaitForResource(OMX_COMPONENTTYPE *openmaxStandComp) { omx_base_component_PrivateType* omx_base_component_Private; int i = 0; int indexComponent = -1; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; while(listOfcomponentRegistered[i].component_name != NULL ) { if (!strcmp(listOfcomponentRegistered[i].component_name, omx_base_component_Private->name)) { // found component in the list of the resource manager removeElemFromList(&globalComponentList[indexComponent], openmaxStandComp); break; } i++; } if (indexComponent <0) { // No resource to be handled DEBUG(DEB_LEV_ERR, "In %s No resource to be handled\n", __func__); return OMX_ErrorNone; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } libomxil-bellagio-0.9.3/src/omxregister.c0000644000175000017500000003567411513256766015375 00000000000000/** src/omxregister.c Register OpenMAX components. This application registers the installed OpenMAX components and stores the list in the file: $HOME/.omxregistry It must be run before using components. The components are searched in the default directory: OMXILCOMPONENTSPATH If the components are installed in a different location, specify: omxregister-bellagio installation_path If the installation path parameter is not set also the environment variable BELLAGIO_SEARCH_PATH is checked. If set it contains the locations of the components, separated by colons Copyright (C) 2007-2010 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #include "st_static_component_loader.h" #include "common.h" #define DEFAULT_LINE_LENGHT 500 /** String element to be put in the .omxregister file to indicate an * OpenMAX component and its roles */ static const char arrow[] = " ==> "; int int2strlen(int value) { int ret = 0; if (value<0) return -1; while(value>0) { value = value/10; ret++; } return ret; } /** This function shows all the components and related rules already registered * and described in the omxregister file */ static int showComponentsList(FILE* omxregistryfp) { char* buffer; char* temp_buffer, *temp_rules; char *comp_name, *temp_name, *comp_rules; char* checkChar; int data_read; int allocation_length = DEFAULT_LINE_LENGHT; long int start_pos, end_pos; long int offset; int i; buffer = malloc(allocation_length+1); comp_name = malloc(DEFAULT_LINE_LENGHT); temp_name = malloc(DEFAULT_LINE_LENGHT); comp_rules = malloc(DEFAULT_LINE_LENGHT); checkChar = malloc(2); printf("*********************************\n"); printf("* List of registered components *\n"); printf("*********************************\n"); while(1) { //read line start_pos = ftell(omxregistryfp); do { data_read = fread(checkChar, 1, 1, omxregistryfp); } while ((*checkChar != '\n') && (data_read > 0)); if (feof(omxregistryfp)) { break; } end_pos = ftell(omxregistryfp); offset = (end_pos - start_pos); fseek(omxregistryfp, start_pos, SEEK_SET); data_read = fread(buffer, offset, 1, omxregistryfp); buffer[offset] = '\0'; if (buffer[0] == '/') { continue; } temp_buffer = buffer+5; i = 0; while ((temp_buffer[i] != '\0') && (temp_buffer[i] != ' ')) { i++; } strncpy(comp_name, temp_buffer, i); comp_name[i] = '\0'; temp_buffer += i; if (*temp_buffer != '\0') { temp_buffer += 5; i = 0; while ((temp_buffer[i] != '\n') && (temp_buffer[i] != ' ')) { i++; } strncpy(comp_rules, temp_buffer, i); comp_rules[i] = '\0'; } else { comp_rules[0] = '\0'; } printf("Component %s\n", comp_name); if (comp_rules[0] != '\0') { temp_rules = comp_rules; printf(" supported formats:\n"); i = 0; while (*(temp_rules+i) != '\0') { i++; if (*(temp_rules+i) == ':') { strncpy(temp_name, temp_rules, i); temp_name[i] = '\0'; temp_rules += i+1; printf(" %s\n", temp_name); i = 0; } } } printf("\n"); } free(buffer); free(comp_name); free(temp_name); free(comp_rules); free(checkChar); return 0; } /** @brief Creates a list of components on a registry file * * This function * - reads for the given directory(ies) any library contained * - check if the library belongs to OpenMAX ST static component loader * (it must contain the function omx_component_library_Setup for the initialization) * - write the openmax names and related libraries to the registry file */ static int buildComponentsList(FILE* omxregistryfp, char *componentspath, int verbose) { DIR *dirp; struct dirent *dp; void *handle = NULL; int i, num_of_comp, k, qi; int num_of_libraries = 0; unsigned int j; char *buffer = NULL; int (*fptr)(void *); stLoaderComponentType **stComponents; int ncomponents = 0, nroles=0; int pathconsumed = 0; int currentgiven; int index; char* currentpath = componentspath; char* actual; int err; nameList *allNames = NULL; nameList *currentName = NULL; nameList *tempName = NULL; char* qualityString = NULL; int index_string; /* the componentpath contains a single or multiple directories * and is is colon separated like env variables in Linux */ qualityString = malloc(4096); buffer = malloc(8192); while (!pathconsumed) { index = 0; currentgiven = 0; while (!currentgiven) { if (*(currentpath + index) == '\0') { pathconsumed = 1; } if ((*(currentpath + index) == ':') || (*(currentpath + index) =='\0')) { currentgiven = 1; if (*(currentpath + index - 1) != '/') { actual = malloc(index + 2); *(actual + index) = '/'; *(actual+index + 1) = '\0'; } else { actual = malloc(index + 1); *(actual+index) = '\0'; } strncpy(actual, currentpath, index); currentpath = currentpath + index + 1; } index++; } /* Populate the registry file */ dirp = opendir(actual); if (verbose) { printf("\n Scanning directory %s\n", actual); } if(dirp == NULL){ free(actual); DEBUG(DEB_LEV_SIMPLE_SEQ, "Cannot open directory %s\n", actual); continue; } while((dp = readdir(dirp)) != NULL) { int len = strlen(dp->d_name); if(len >= 3){ if(strncmp(dp->d_name+len-3, ".so", 3) == 0){ char lib_absolute_path[strlen(actual) + len + 1]; strcpy(lib_absolute_path, actual); strcat(lib_absolute_path, dp->d_name); if((handle = dlopen(lib_absolute_path, RTLD_NOW)) == NULL) { DEBUG(DEB_LEV_ERR, "could not load %s: %s\n", lib_absolute_path, dlerror()); } else { if (verbose) { printf("\n Scanning library %s\n", lib_absolute_path); } if ((fptr = dlsym(handle, "omx_component_library_Setup")) == NULL) { DEBUG(DEB_LEV_SIMPLE_SEQ, "the library %s is not compatible with ST static component loader - %s\n", lib_absolute_path, dlerror()); continue; } num_of_libraries++; num_of_comp = fptr(NULL); stComponents = malloc(num_of_comp * sizeof(stLoaderComponentType*)); for (i = 0; inqualitylevels = 0; stComponents[i]->multiResourceLevel = NULL; } fptr(stComponents); err = fwrite(lib_absolute_path, 1, strlen(lib_absolute_path), omxregistryfp); err = fwrite("\n", 1, 1, omxregistryfp); for (i = 0; iname, stComponents[i]->name)) { DEBUG(DEB_LEV_ERR, "Component %s already registered. Skip\n", stComponents[i]->name); break; } tempName = tempName->next; } while(tempName != NULL); if (tempName != NULL) { continue; } } if (allNames == NULL) { allNames = malloc(sizeof(nameList)); currentName = allNames; } else { currentName->next = malloc(sizeof(nameList)); currentName = currentName->next; } currentName->next = NULL; currentName->name = malloc(strlen(stComponents[i]->name) + 1); strcpy(currentName->name, stComponents[i]->name); *(currentName->name + strlen(currentName->name)) = '\0'; DEBUG(DEB_LEV_PARAMS, "Found component %s version=%d.%d.%d.%d in shared object %s\n", stComponents[i]->name, stComponents[i]->componentVersion.s.nVersionMajor, stComponents[i]->componentVersion.s.nVersionMinor, stComponents[i]->componentVersion.s.nRevision, stComponents[i]->componentVersion.s.nStep, lib_absolute_path); if (verbose) { printf("Component %s registered with %i quality levels\n", stComponents[i]->name, (int)stComponents[i]->nqualitylevels); } if (stComponents[i]->nqualitylevels > 0) { index_string = 0; sprintf((qualityString + index_string), "%i ", (int)stComponents[i]->nqualitylevels); index_string = index_string + int2strlen(stComponents[i]->nqualitylevels) + 1; for (qi=0; qinqualitylevels; qi++) { sprintf((qualityString + index_string), "%i,%i ", stComponents[i]->multiResourceLevel[qi]->CPUResourceRequested, stComponents[i]->multiResourceLevel[qi]->MemoryResourceRequested); index_string = index_string + 2 + int2strlen(stComponents[i]->multiResourceLevel[qi]->CPUResourceRequested) + int2strlen(stComponents[i]->multiResourceLevel[qi]->MemoryResourceRequested); } index_string--; *(qualityString + index_string) = '\0'; } // insert first of all the name of the library strcpy(buffer, arrow); strcat(buffer, stComponents[i]->name); if (stComponents[i]->name_specific_length>0) { nroles += stComponents[i]->name_specific_length; strcat(buffer, arrow); for(j=0;jname_specific_length;j++){ if (verbose) { printf(" Specific role %s registered\n", stComponents[i]->name_specific[j]); } strcat(buffer, stComponents[i]->name_specific[j]); strcat(buffer, ":"); } } if ((qualityString != NULL) && (qualityString[0] != '\0')) { strcat(buffer, arrow); strcat(buffer, qualityString); } qualityString[0] = '\0'; strcat(buffer, "\n"); err = fwrite(buffer, 1, strlen(buffer), omxregistryfp); ncomponents++; } for (i = 0; i < num_of_comp; i++) { free(stComponents[i]->name); for (k=0; kname_specific_length; k++) { free(stComponents[i]->name_specific[k]); free(stComponents[i]->role_specific[k]); } if (stComponents[i]->name_specific_length > 0) { free(stComponents[i]->name_specific); free(stComponents[i]->role_specific); } for (k=0; knqualitylevels; k++) { free(stComponents[i]->multiResourceLevel[k]); } if (stComponents[i]->multiResourceLevel) { free(stComponents[i]->multiResourceLevel); } free(stComponents[i]); } free(stComponents); } } } } free(actual); closedir(dirp); } if (verbose) { printf("\n %i OpenMAX IL ST static components in %i libraries succesfully scanned\n", ncomponents, num_of_libraries); } else { DEBUG(DEB_LEV_SIMPLE_SEQ, "\n %i OpenMAX IL ST static components with %i roles in %i libraries succesfully scanned\n", ncomponents, nroles, num_of_libraries); } free(qualityString); free(buffer); return 0; } static void usage(const char *app) { char *registry_filename; registry_filename = componentsRegistryGetFilename(); printf( "Usage: %s [-l] [-v] [-h] [componentspath[:other_components_path]]...\n" "\n" "Version 0.9.2\n" "\n" "This programs scans for a given list of directory searching for any OpenMAX\n" "component compatible with the ST static component loader.\n" "The registry is saved under %s. (can be changed via OMX_BELLAGIO_REGISTRY\n" "environment variable)\n" "\n" "The following options are supported:\n" "\n" " -v display a verbose output, listing all the components registered\n" " -l list only the components already registered. If -l is specified \n" " all the other parameters are ignored and only the register file\n" " is checked\n" " -h display this message\n" "\n" " componentspath: a searching path for components can be specified.\n" " If this parameter is omitted, the components are searched in the\n" " locations specified by the environment variable BELLAGIO_SEARCH_PATH.If it \n" " is not defined the components are searched in the default %s directory \n" "\n", app, registry_filename, OMXILCOMPONENTSPATH); free(registry_filename); } /** @brief execution of registration function * * This register by default searches for OpenMAX libraries in OMXILCOMPONENTSPATH * If specified it can search in a different directory */ int main(int argc, char *argv[]) { int found; int err, i; int verbose=0; FILE *omxregistryfp; char *registry_filename; char *dir,*dirp; char *buffer; int isListOnly = 0; for(i = 1; i < argc; i++) { if(*(argv[i]) != '-') { continue; } if (*(argv[i]+1) == 'v') { verbose = 1; } else if (*(argv[i]+1) == 'l') { isListOnly = 1; } else { usage(argv[0]); exit(*(argv[i]+1) == 'h' ? 0 : -EINVAL); } } registry_filename = componentsRegistryGetFilename(); /* make sure the registry directory exists */ dir = strdup(registry_filename); if (dir == NULL) { exit(EXIT_FAILURE); } dirp = strrchr(dir, '/'); if (dirp != NULL) { *dirp = '\0'; if (makedir(dir)) { DEBUG(DEB_LEV_ERR, "Cannot create OpenMAX registry directory %s\n", dir); exit(EXIT_FAILURE); } } free(dir); if (isListOnly) { omxregistryfp = fopen(registry_filename, "r"); } else { omxregistryfp = fopen(registry_filename, "w"); } if (omxregistryfp == NULL){ DEBUG(DEB_LEV_ERR, "Cannot open OpenMAX registry file %s\n", registry_filename); exit(EXIT_FAILURE); } free(registry_filename); if (isListOnly) { err = showComponentsList(omxregistryfp); if(err) { DEBUG(DEB_LEV_ERR, "Error reading omxregister file\n"); } exit(0); } for(i = 1, found = 0; i < argc; i++) { if(*(argv[i]) == '-') { continue; } found = 1; err = buildComponentsList(omxregistryfp, argv[i], verbose); if(err) { DEBUG(DEB_LEV_ERR, "Error registering OpenMAX components with ST static component loader %s\n", strerror(err)); continue; } } if (found == 0) { buffer=getenv("BELLAGIO_SEARCH_PATH"); if (buffer!=NULL&&*buffer!='\0') { err = buildComponentsList(omxregistryfp, buffer, verbose); if(err) { DEBUG(DEB_LEV_ERR, "Error registering OpenMAX components with ST static component loader %s\n", strerror(err)); } } else { err = buildComponentsList(omxregistryfp, OMXILCOMPONENTSPATH, verbose); if(err) { DEBUG(DEB_LEV_ERR, "Error registering OpenMAX components with ST static component loader %s\n", strerror(err)); } } } fclose(omxregistryfp); return 0; } libomxil-bellagio-0.9.3/src/omxcore.h0000644000175000017500000000334411513256766014473 00000000000000/** src/omxcore.h OpenMAX Integration Layer Core. This library implements the OpenMAX core responsible for environment setup, components tunneling and communication. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __ST_OMXCORE_H__ #define __ST_OMXCORE_H__ #include #include #include #include "utils.h" #include "component_loader.h" #include "omx_comp_debug_levels.h" #ifdef ANDROID_COMPILATION #include #else #define OSCL_IMPORT_REF #define OSCL_EXPORT_REF #endif //forward decl struct BOSA_COMPONENTLOADER; OMX_ERRORTYPE BOSA_AddComponentLoader(struct BOSA_COMPONENTLOADER *pLoader); /** Defines the major version of the core */ #define SPECVERSIONMAJOR 1 /** Defines the minor version of the core */ #define SPECVERSIONMINOR 1 /** Defines the revision of the core */ #define SPECREVISION 0 /** Defines the step version of the core */ #define SPECSTEP 0 #endif libomxil-bellagio-0.9.3/src/content_pipe_file.c0000644000175000017500000002022111513256766016471 00000000000000/** src/content_pipe_file.c This file implements the support for content pipes related to local files. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include "content_pipe_file.h" /** Create a content source and open it for writing. */ static CPresult Create( CPhandle *hContent, CPstring szURI ) { file_ContentPipe* pFilePipe = (file_ContentPipe*) hContent; char* pathname = szURI + 7; CPresult err = 0; int flags, ret; DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_file:%s \n", __func__); if(0 != strncmp(szURI, "file://", 7)) err = KD_EINVAL; flags = O_WRONLY | O_CREAT; if(0 == err) { ret = open(pathname, flags, 0); if(-1 != ret) { pFilePipe->fd = ret; } else { err = KD_EIO; /* ??? */ } } return err; } /** Open a content stream for reading or writing. */ static CPresult Open( CPhandle* hContent, CPstring szURI, CP_ACCESSTYPE eAccess ) { file_ContentPipe* pFilePipe = (file_ContentPipe*) hContent; CPresult err = 0; int flags, ret; DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_file:%s \n", __func__); if(0 != strncmp(szURI, "file://", 7)) err = KD_EINVAL; if(0 == err) switch(eAccess) { case CP_AccessRead: flags = O_RDONLY; break; case CP_AccessWrite: flags = O_WRONLY; break; case CP_AccessReadWrite: flags = O_RDWR; break; default: err = KD_EINVAL; /* ??? */ break; } if(0 == err) { char* pathname = szURI + 7; ret = open(pathname, flags); if(-1 != ret) { pFilePipe->fd = ret; } else { /* Map errno */ err = KD_EIO; /* ??? */ } } return err; } /** Close a content stream. */ static CPresult Close( CPhandle hContent ) { file_ContentPipe* pFilePipe = (file_ContentPipe*) hContent; CPresult err = 0; int ret; DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_file:%s \n", __func__); ret = close(pFilePipe->fd); if(ret == -1) { /* Map errno */ err = KD_EIO; /* ??? */ } return err; } /** Check the that specified number of bytes are available for reading or writing (depending on access type).*/ static CPresult CheckAvailableBytes( CPhandle hContent, CPuint nBytesRequested, CP_CHECKBYTESRESULTTYPE *eResult ) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_file:%s \n", __func__); return KD_EBADF; } /** Seek to certain position in the content relative to the specified origin. */ static CPresult SetPosition( CPhandle hContent, CPint nOffset, CP_ORIGINTYPE eOrigin) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_file:%s \n", __func__); return KD_EBADF; } /** Retrieve the current position relative to the start of the content. */ static CPresult GetPosition( CPhandle hContent, CPuint *pPosition) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_file:%s \n", __func__); return KD_EBADF; } /** Retrieve data of the specified size from the content stream (advance content pointer by size of data). Note: pipe client provides pointer. This function is appropriate for small high frequency reads. */ static CPresult Read( CPhandle hContent, CPbyte *pData, CPuint nSize) { file_ContentPipe* pFilePipe = (file_ContentPipe*) hContent; CPresult err = 0; ssize_t count; DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_file:%s \n", __func__); count = read(pFilePipe->fd, (void*) pData, (size_t) nSize); if(count < nSize) { err = KD_EIO; /* ??? */ } else if(count == -1) { err = KD_EIO; /* ??? */ } return err; } /** Retrieve a buffer allocated by the pipe that contains the requested number of bytes. Buffer contains the next block of bytes, as specified by nSize, of the content. nSize also returns the size of the block actually read. Content pointer advances the by the returned size. Note: pipe provides pointer. This function is appropriate for large reads. The client must call ReleaseReadBuffer when done with buffer. In some cases the requested block may not reside in contiguous memory within the pipe implementation. For instance if the pipe leverages a circular buffer then the requested block may straddle the boundary of the circular buffer. By default a pipe implementation performs a copy in this case to provide the block to the pipe client in one contiguous buffer. If, however, the client sets bForbidCopy, then the pipe returns only those bytes preceding the memory boundary. Here the client may retrieve the data in segments over successive calls. */ static CPresult ReadBuffer( CPhandle hContent, CPbyte **ppBuffer, CPuint *nSize, CPbool bForbidCopy) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_file:%s \n", __func__); return KD_EBADF; } /** Release a buffer obtained by ReadBuffer back to the pipe. */ static CPresult ReleaseReadBuffer(CPhandle hContent, CPbyte *pBuffer) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_file:%s \n", __func__); return KD_EBADF; } /** Write data of the specified size to the content (advance content pointer by size of data). Note: pipe client provides pointer. This function is appropriate for small high frequency writes. */ static CPresult Write( CPhandle hContent, CPbyte *pData, CPuint nSize) { file_ContentPipe* pFilePipe = (file_ContentPipe*) hContent; CPresult err = 0; ssize_t ret; DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_file:%s \n", __func__); ret = write(pFilePipe->fd, (void*) pData, (size_t) nSize); if(ret < nSize) { err = KD_EIO; /* ??? */ } else if(ret == -1) { err = KD_EIO; /* ??? */ } return err; } /** Retrieve a buffer allocated by the pipe used to write data to the content. Client will fill buffer with output data. Note: pipe provides pointer. This function is appropriate for large writes. The client must call WriteBuffer when done it has filled the buffer with data.*/ static CPresult GetWriteBuffer( CPhandle hContent, CPbyte **ppBuffer, CPuint nSize) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_file:%s \n", __func__); return KD_EBADF; } /** Deliver a buffer obtained via GetWriteBuffer to the pipe. Pipe will write the the contents of the buffer to content and advance content pointer by the size of the buffer */ static CPresult WriteBuffer( CPhandle hContent, CPbyte *pBuffer, CPuint nFilledSize) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_file:%s \n", __func__); return KD_EBADF; } /** Register a per-handle client callback with the content pipe. */ static CPresult RegisterCallback( CPhandle hContent, CPresult (*ClientCallback)(CP_EVENTTYPE eEvent, CPuint iParam)) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_file:%s \n", __func__); return KD_EBADF; } CPresult file_pipe_Constructor(CP_PIPETYPE **ppPipe, CPstring szURI) { file_ContentPipe* pFilePipe; pFilePipe = (file_ContentPipe*) calloc(1, sizeof(file_ContentPipe)); if(NULL != pFilePipe) { pFilePipe->pipe.Open = Open; pFilePipe->pipe.Close = Close; pFilePipe->pipe.Create = Create; pFilePipe->pipe.CheckAvailableBytes = CheckAvailableBytes; pFilePipe->pipe.SetPosition = SetPosition; pFilePipe->pipe.GetPosition = GetPosition; pFilePipe->pipe.Read = Read; pFilePipe->pipe.ReadBuffer = ReadBuffer; pFilePipe->pipe.ReleaseReadBuffer = ReleaseReadBuffer; pFilePipe->pipe.Write = Write; pFilePipe->pipe.GetWriteBuffer = GetWriteBuffer; pFilePipe->pipe.WriteBuffer = WriteBuffer; pFilePipe->pipe.RegisterCallback = RegisterCallback; pFilePipe->fd = -1; /* An invalid value */ *ppPipe = (CP_PIPETYPE*) pFilePipe; } return 0; } libomxil-bellagio-0.9.3/src/omx_create_loaders_linux.c0000644000175000017500000001343311565375761020074 00000000000000/** src/omx_create_loaders_linux.c In this file is implemented the entry point for the construction of every component loader in linux. In the current implementation only the ST static loader is called. Copyright (C) 2007-2010 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #define _GNU_SOURCE #include #include #include #include #include "component_loader.h" #include "omx_create_loaders.h" #include "st_static_component_loader.h" #include "common.h" #define OMX_LOADERS_FILENAME ".omxloaders" #ifndef OMX_LOADERS_DIRNAME #define OMX_LOADERS_DIRNAME "/usr/lib/omxloaders/" #endif #ifndef INSTALL_PATH_STR #define INSTALL_PATH_STR "/usr/local/lib/bellagio" #endif /** * This function allocates all the structures needed by the component loaders * available in the system and initialize the function pointers of the loader. * Finally it searches for more loaders that can be pointed by the .omxloaders * file. If this file exists it contains a list of library containing custom * component loaders. Each library should contain a function named 'setup_component_loader' * that will initialize the custom loader. This mechanism is similar to the * default loading of the components. * */ int createComponentLoaders() { // load component loaders BOSA_COMPONENTLOADER *loader; DIR *dirp_name; struct dirent *dp; void *handle; void *functionPointer; void (*fptr)(BOSA_COMPONENTLOADER *loader); char *libraryFileName = NULL; FILE *loaderFP; char *omxloader_registry_filename; int onlyDefault = 0; int index_readline; int isFileExisting = 0; int isDirExisting = 0; omxloader_registry_filename = loadersRegistryGetFilename(OMX_LOADERS_FILENAME); isFileExisting = exists(omxloader_registry_filename); isDirExisting = exists(OMX_LOADERS_DIRNAME); /* test the existence of the file */ if (!isDirExisting && !isFileExisting) { onlyDefault = 1; } if (onlyDefault) { loader = calloc(1, sizeof(BOSA_COMPONENTLOADER)); if (loader == NULL) { DEBUG(DEB_LEV_ERR, "not enough memory for this loader\n"); return OMX_ErrorInsufficientResources; } st_static_setup_component_loader(loader); BOSA_AddComponentLoader(loader); return 0; } if (isFileExisting) { loaderFP = fopen(omxloader_registry_filename, "r"); // dlopen all loaders defined in .omxloaders file libraryFileName = malloc(MAX_LINE_LENGTH); while(1) { index_readline = 0; while(index_readline < MAX_LINE_LENGTH) { *(libraryFileName + index_readline) = fgetc(loaderFP); if ((*(libraryFileName + index_readline) == '\n') || (*(libraryFileName + index_readline) == '\0')) { break; } index_readline++; } *(libraryFileName + index_readline) = '\0'; if ((index_readline >= MAX_LINE_LENGTH) || (index_readline == 0)) { break; } handle = dlopen(libraryFileName, RTLD_NOW); if (!handle) { DEBUG(DEB_LEV_ERR, "library %s dlopen error: %s\n", libraryFileName, dlerror()); continue; } if ((functionPointer = dlsym(handle, "setup_component_loader")) == NULL) { DEBUG(DEB_LEV_ERR, "the library %s is not compatible - %s\n", libraryFileName, dlerror()); continue; } fptr = functionPointer; loader = calloc(1, sizeof(BOSA_COMPONENTLOADER)); if (loader == NULL) { DEBUG(DEB_LEV_ERR, "not enough memory for this loader\n"); return OMX_ErrorInsufficientResources; } /* setup the function pointers */ (*fptr)(loader); /* add loader to core */ BOSA_AddComponentLoader(loader); } if (libraryFileName) { free(libraryFileName); } fclose(loaderFP); } if (isDirExisting) { dirp_name = opendir(OMX_LOADERS_DIRNAME); while ((dp = readdir(dirp_name)) != NULL) { int len = strlen(dp->d_name); if(len >= 3) { if(strncmp(dp->d_name+len-3, ".so", 3) == 0){ char lib_absolute_path[strlen(OMX_LOADERS_DIRNAME) + len + 1]; strcpy(lib_absolute_path, OMX_LOADERS_DIRNAME); strcat(lib_absolute_path, dp->d_name); handle = dlopen(lib_absolute_path, RTLD_NOW); if (!handle) { DEBUG(DEB_LEV_ERR, "library %s dlopen error: %s\n", lib_absolute_path, dlerror()); continue; } if ((functionPointer = dlsym(handle, "setup_component_loader")) == NULL) { DEBUG(DEB_LEV_ERR, "the library %s is not compatible - %s\n", lib_absolute_path, dlerror()); continue; } fptr = functionPointer; loader = calloc(1, sizeof(BOSA_COMPONENTLOADER)); if (loader == NULL) { DEBUG(DEB_LEV_ERR, "not enough memory for this loader\n"); return OMX_ErrorInsufficientResources; } /* setup the function pointers */ (*fptr)(loader); /* add loader to core */ BOSA_AddComponentLoader(loader); } } } closedir(dirp_name); } /* add the ST static component loader */ loader = calloc(1, sizeof(BOSA_COMPONENTLOADER)); if (loader == NULL) { DEBUG(DEB_LEV_ERR, "not enough memory for this loader\n"); return OMX_ErrorInsufficientResources; } st_static_setup_component_loader(loader); BOSA_AddComponentLoader(loader); free(omxloader_registry_filename); return 0; } libomxil-bellagio-0.9.3/src/queue.h0000644000175000017500000000503711513256766014144 00000000000000/** src/queue.h Implements a simple FIFO structure used for queueing OMX buffers. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __TQUEUE_H__ #define __TQUEUE_H__ #include /** Maximum number of elements in a queue */ #define MAX_QUEUE_ELEMENTS 10 /** Output port queue element. Contains an OMX buffer header type */ typedef struct qelem_t qelem_t; struct qelem_t{ qelem_t* q_forw; void* data; }; /** This structure contains the queue */ typedef struct queue_t{ qelem_t* first; /**< Output buffer queue head */ qelem_t* last; /**< Output buffer queue tail */ int nelem; /**< Number of elements in the queue */ pthread_mutex_t mutex; } queue_t; /** Initialize a queue descriptor * * @param queue The queue descriptor to initialize. * The user needs to allocate the queue * * @return -1 if the resources are not enough and the allocation cannot be performed */ int queue_init(queue_t* queue); /** Deinitialize a queue descriptor * flushing all of its internal data * * @param queue the queue descriptor to dump */ void queue_deinit(queue_t* queue); /** Enqueue an element to the given queue descriptor * * @param queue the queue descritpor where to queue data * * @param data the data to be enqueued * * @return -1 if the queue is full */ int queue(queue_t* queue, void* data); /** Dequeue an element from the given queue descriptor * * @param queue the queue descriptor from which to dequeue the element * * @return the element that has bee dequeued. If the queue is empty * a NULL value is returned */ void* dequeue(queue_t* queue); /** Returns the number of elements hold in the queue * * @param queue the requested queue * * @return the number of elements in the queue */ int getquenelem(queue_t* queue); #endif libomxil-bellagio-0.9.3/src/base/0000755000175000017500000000000011565425033013624 500000000000000libomxil-bellagio-0.9.3/src/base/omx_base_sink.h0000644000175000017500000000536611513256766016560 00000000000000/** src/base/omx_base_sink.h OpenMAX base sink component. This component does not perform any multimedia processing. It derives from base component and contains a single port. It can be used as base class for sink components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef _OMX_BASE_SINK_COMPONENT_H_ #define _OMX_BASE_SINK_COMPONENT_H_ #include #include #include #include "omx_base_component.h" #define OMX_BASE_SINK_INPUTPORT_INDEX 0 /* The index of the input port for the derived components */ #define OMX_BASE_SINK_CLOCKPORT_INDEX 1 /* The index of the clock port for the derived components */ #define OMX_BASE_SINK_INPUTPORT_INDEX_1 1 /* The index of the 2nd input port for the derived components */ /** OMX_BASE_SINK_ALLPORT_INDEX as the standard specifies, the -1 value for port index is used to point to all the ports */ #define OMX_BASE_SINK_ALLPORT_INDEX -1 /** base sink component private structure. */ DERIVEDCLASS(omx_base_sink_PrivateType, omx_base_component_PrivateType) #define omx_base_sink_PrivateType_FIELDS omx_base_component_PrivateType_FIELDS \ /** @param BufferMgmtCallback function pointer for algorithm callback */ \ void (*BufferMgmtCallback)(OMX_COMPONENTTYPE* openmaxStandComp, OMX_BUFFERHEADERTYPE* inputbuffer); ENDCLASS(omx_base_sink_PrivateType) /** Base sink contructor */ OMX_ERRORTYPE omx_base_sink_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,OMX_STRING cComponentName); /** The base sink destructor. It simply calls the base destructor */ OMX_ERRORTYPE omx_base_sink_Destructor(OMX_COMPONENTTYPE *openmaxStandComp); /** This is the central function for component processing. It * is executed in a separate thread, is synchronized with * semaphores at each port, those are released each time a new buffer * is available on the given port. */ void* omx_base_sink_BufferMgmtFunction(void* param); void* omx_base_sink_twoport_BufferMgmtFunction (void* param); #endif libomxil-bellagio-0.9.3/src/base/omx_base_image_port.h0000644000175000017500000000552011513256766017732 00000000000000/** src/base/omx_base_image_port.h Base Image Port class for OpenMAX ports to be used in derived components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include "omx_classmagic.h" #include "omx_base_port.h" #ifndef __OMX_BASE_IMAGE_PORT_H__ #define __OMX_BASE_IMAGE_PORT_H__ /** * @brief the base image domain structure that describes each port. * * The data structure is derived from base port class and contain image * domain specific parameters. * Other elements can be added in the derived components structures. */ DERIVEDCLASS(omx_base_image_PortType, omx_base_PortType) #define omx_base_image_PortType_FIELDS omx_base_PortType_FIELDS \ /** @param sImageParam Domain specific (image) OpenMAX port parameter */ \ OMX_IMAGE_PARAM_PORTFORMATTYPE sImageParam; ENDCLASS(omx_base_image_PortType) /** * @brief the base contructor for the generic OpenMAX ST Image port * * This function is executed by the component that uses a port. * The parameter contains the info about the component. * It takes care of constructing the instance of the port and * every object needed by the base port. * * @param openmaxStandComp pointer to the Handle of the component * @param openmaxStandPort the ST port to be initialized * @param nPortIndex Index of the port to be constructed * @param isInput specifices if the port is an input or an output * * @return OMX_ErrorInsufficientResources if a memory allocation fails */ OMX_ERRORTYPE base_image_port_Constructor( OMX_COMPONENTTYPE *openmaxStandComp, omx_base_PortType **openmaxStandPort, OMX_U32 nPortIndex, OMX_BOOL isInput); /** * @brief the base image port destructor for the generic OpenMAX ST Image port * * This function is executed by the component that uses a port. * The parameter contains the info about the port. * It takes care of destructing the instance of the port * * @param openmaxStandPort the ST port to be destructed * * @return OMX_ErrorNone */ OMX_ERRORTYPE base_image_port_Destructor( omx_base_PortType *openmaxStandPort); #endif libomxil-bellagio-0.9.3/src/base/omx_base_port.h0000644000175000017500000003453211513256766016575 00000000000000/** src/base/omx_base_port.h Base class for OpenMAX ports to be used in derived components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include "tsemaphore.h" #include "queue.h" #include "omx_classmagic.h" #ifndef __OMX_BASE_PORT_H__ #define __OMX_BASE_PORT_H__ #define TUNNEL_USE_BUFFER_RETRY 20 #define TUNNEL_USE_BUFFER_RETRY_USLEEP_TIME 50000 /** * Port Specific Macro's */ #define PORT_IS_BEING_FLUSHED(pPort) (pPort->bIsPortFlushed == OMX_TRUE) #define PORT_IS_BEING_DISABLED(pPort) (pPort->bIsTransientToDisabled == OMX_TRUE) #define PORT_IS_ENABLED(pPort) (pPort->sPortParam.bEnabled == OMX_TRUE) #define PORT_IS_POPULATED(pPort) (pPort->sPortParam.bPopulated == OMX_TRUE) #define PORT_IS_TUNNELED(pPort) (pPort->nTunnelFlags & TUNNEL_ESTABLISHED) #define PORT_IS_DEEP_TUNNELED(pPort) (pPort->nTunnelFlags & PROPRIETARY_COMMUNICATION_ESTABLISHED) #define PORT_IS_BUFFER_SUPPLIER(pPort) (pPort->nTunnelFlags & TUNNEL_IS_SUPPLIER) #define PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(pPort) ((pPort->nTunnelFlags & TUNNEL_ESTABLISHED) && (pPort->nTunnelFlags & TUNNEL_IS_SUPPLIER)) /** The following enum values are used to characterize each buffer * allocated or assigned to the component. A buffer list is * created for each port of the component. The buffer can be assigned * to the port, or owned by the port. The buffer flag are applied for each buffer * in each port buffer list. The following use cases are currently implemented: * - When the IL Client asks the component to allocate a buffer * for a given port, with the call to AllocateBuffer, the * buffer created is characterizeed by the flag BUFFER_ALLOCATED * - When the IL Client asks the component to use a buffer allocated * by the client itself, the buffer flag is BUFFER_ASSIGNED * - When the component is tunneled by another component, and the first * is supplier of the buffer, the buffer is marked with the * BUFFER_ALLOCATED flag. * - When the component is tunneled by another component, and the second * is supplier of the buffer, the buffer is marked with the * BUFFER_ASSIGNED flag. * - The case of a buffer supplied by the first component but allocated by another * component or another port inside the same component, as in the case * of shared buffers, is not yet implemented in these components * - During hte deallocation phase each buffer is marked with the BUFFER_FREE * flag, so that the component can check if all the buffers have been deallocated * before switch the component state to Loaded, as specified by * the OpenMAX specs */ typedef enum BUFFER_STATUS_FLAG { BUFFER_FREE = 0, BUFFER_ALLOCATED = 0x0001, /**< This flag is applied to a buffer when it is allocated by the given port of the component */ BUFFER_ASSIGNED = 0x0002, /**< This flag is applied to a buffer when it is assigned from another port or by the IL client */ HEADER_ALLOCATED = 0x0004 /**< This flag is applied to a buffer when buffer header is allocated by the given port of the component */ } BUFFER_STATUS_FLAG; /** @brief the status of a port related to the tunneling with another component */ typedef enum TUNNEL_STATUS_FLAG { NO_TUNNEL = 0, /**< No tunnel established */ TUNNEL_ESTABLISHED = 0x0001, /**< the TUNNEL_ESTABLISHED specifies if a port is tunneled. * It is assigned to a private field of the port if it is tunneled */ TUNNEL_IS_SUPPLIER = 0x0002, /**< the TUNNEL_IS_SUPPLIER specifies if a tunneled port is the supplier. * It is assigned to a private field of the port if it is tunneled and also it is the buffer supplier for the tunnel. */ PROPRIETARY_COMMUNICATION_ESTABLISHED = 0x0004 /** The tunnel established is created between two components of the same * vendor. These components can take advantage from a vendor specific * communication */ } TUNNEL_STATUS_FLAG; /** * @brief the base structure that describes each port. * * The data structure that describes a port contains the basic elements used in the * base component. Other elements can be added in the derived components structures. */ CLASS(omx_base_PortType) #define omx_base_PortType_FIELDS \ OMX_HANDLETYPE hTunneledComponent; /**< @param hTunneledComponent Handle to the tunnelled component */\ OMX_U32 nTunnelFlags; /**< This field contains one or more tags that describe the tunnel status of the port */\ OMX_U32 nTunneledPort; /**< @param nTunneledPort Tunneled port number */ \ OMX_BUFFERSUPPLIERTYPE eBufferSupplier; /**< @param eBufferSupplier the type of supplier in case of tunneling */\ OMX_U32 nNumTunnelBuffer; /**< @param nNumTunnelBuffer Number of buffer to be tunnelled */\ tsem_t* pAllocSem; /**< @param pFlushSem Semaphore that locks the execution until the buffers have been flushed, if needed */ \ pthread_mutex_t exitMutex; /** This mutex synchronizes the access to the boolean variable bIsDestroying */ \ OMX_BOOL bIsDestroying; /** This variable is set to true when the port has been selected for destruction */ \ OMX_U32 nNumBufferFlushed; /**< @param nNumBufferFlushed Number of buffer Flushed */\ OMX_BOOL bIsPortFlushed;/**< @param bIsPortFlushed Boolean variables indicate port is being flushed at the moment */ \ queue_t* pBufferQueue; /**< @param pBufferQueue queue for buffer to be processed by the port */\ tsem_t* pBufferSem; /**< @param pBufferSem Semaphore for buffer queue access synchronization */\ OMX_U32 nNumAssignedBuffers; /**< @param nNumAssignedBuffers Number of buffer assigned on each port */\ OMX_PARAM_PORTDEFINITIONTYPE sPortParam; /**< @param sPortParam General OpenMAX port parameter */\ OMX_BUFFERHEADERTYPE **pInternalBufferStorage; /**< This array contains the reference to all the buffers hadled by this port and already registered*/\ BUFFER_STATUS_FLAG *bBufferStateAllocated; /**< @param bBufferStateAllocated The State of the Buffer whether assigned or allocated */\ OMX_COMPONENTTYPE *standCompContainer;/**< The OpenMAX component reference that contains this port */\ OMX_BOOL bIsTransientToEnabled;/**< It indicates that the port is going from disabled to enabled */ \ OMX_BOOL bIsTransientToDisabled;/**< It indicates that the port is going from enabled to disabled */ \ OMX_BOOL bIsFullOfBuffers; /**< It indicates if the port has all the buffers needed */ \ OMX_BOOL bIsEmptyOfBuffers;/**< It indicates if the port has no buffers*/ \ OMX_ERRORTYPE (*PortConstructor)(OMX_COMPONENTTYPE *openmaxStandComp,omx_base_PortType **openmaxStandPort,OMX_U32 nPortIndex, OMX_BOOL isInput); /**< The contructor of the port. It fills all the other function pointers */ \ OMX_ERRORTYPE (*PortDestructor)(omx_base_PortType *openmaxStandPort); /**< The destructor of the port*/ \ OMX_ERRORTYPE (*Port_DisablePort)(omx_base_PortType *openmaxStandPort); /**< Disables the port */ \ OMX_ERRORTYPE (*Port_EnablePort)(omx_base_PortType *openmaxStandPort); /**< Enables the port */ \ OMX_ERRORTYPE (*Port_SendBufferFunction)(omx_base_PortType *openmaxStandPort, OMX_BUFFERHEADERTYPE* pBuffer); /**< Holds the EmptyThisBuffer of FillThisBuffer function, if the port is input or output */ \ OMX_ERRORTYPE (*Port_AllocateBuffer)(omx_base_PortType *openmaxStandPort, OMX_BUFFERHEADERTYPE** pBuffer, OMX_U32 nPortIndex, OMX_PTR pAppPrivate, OMX_U32 nSizeBytes);/**< Replaces the AllocateBuffer call for the base port. */ \ OMX_ERRORTYPE (*Port_UseBuffer)(omx_base_PortType *openmaxStandPort,OMX_BUFFERHEADERTYPE** ppBufferHdr,OMX_U32 nPortIndex,OMX_PTR pAppPrivate,OMX_U32 nSizeBytes,OMX_U8* pBuffer);/**< The standard use buffer function applied to the port class */ \ OMX_ERRORTYPE (*Port_FreeBuffer)(omx_base_PortType *openmaxStandPort,OMX_U32 nPortIndex,OMX_BUFFERHEADERTYPE* pBuffer); /**< The standard free buffer function applied to the port class */ \ OMX_ERRORTYPE (*Port_AllocateTunnelBuffer)(omx_base_PortType *openmaxStandPort,OMX_U32 nPortIndex);/**< AllocateTunnelBuffer call for the base port. */ \ OMX_ERRORTYPE (*Port_FreeTunnelBuffer)(omx_base_PortType *openmaxStandPort,OMX_U32 nPortIndex); /**< The free buffer function used to free tunnelled buffers */ \ OMX_ERRORTYPE (*BufferProcessedCallback)(OMX_HANDLETYPE hComponent, OMX_PTR pAppData, OMX_BUFFERHEADERTYPE* pBuffer);/**< Holds the EmptyBufferDone or FillBufferDone callback, if the port is input or output port */ \ OMX_ERRORTYPE (*FlushProcessingBuffers)(omx_base_PortType *openmaxStandPort); /**< release all the buffers currently under processing */ \ OMX_ERRORTYPE (*ReturnBufferFunction)(omx_base_PortType* openmaxStandPort,OMX_BUFFERHEADERTYPE* pBuffer); /**< Call appropriate function to return buffers to peer or IL Client*/ \ OMX_ERRORTYPE (*ComponentTunnelRequest)(omx_base_PortType* openmaxStandPort, OMX_HANDLETYPE hTunneledComp, OMX_U32 nTunneledPort, OMX_TUNNELSETUPTYPE* pTunnelSetup); /**< Setup tunnel with the port */ ENDCLASS(omx_base_PortType) /** * @brief The base contructor for the generic OpenMAX ST port * * This function is executed by the component that uses a port. * The parameter contains the info about the component. * It takes care of constructing the instance of the port and * every object needed by the base port. * * @param openmaxStandPort the ST port to be initialized * * @return OMX_ErrorInsufficientResources if a memory allocation fails */ OMX_ERRORTYPE base_port_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,omx_base_PortType **openmaxStandPort,OMX_U32 nPortIndex, OMX_BOOL isInput); /** @brief The base destructor for the generic OpenMAX ST port * * This function is executed by the component that uses a port. * The parameter contains the info about the component. * It takes care of destructing the instance of the port and * every object used by the base port. * * @param openmaxStandPort the ST port to be disposed */ OMX_ERRORTYPE base_port_Destructor(omx_base_PortType *openmaxStandPort); /** @brief Disables the port. * * This function is called due to a request by the IL client * * @param openmaxStandPort the reference to the port * */ OMX_ERRORTYPE base_port_DisablePort(omx_base_PortType *openmaxStandPort); /** @brief Enables the port. * * This function is called due to a request by the IL client * * @param openmaxStandPort the reference to the port * */ OMX_ERRORTYPE base_port_EnablePort(omx_base_PortType *openmaxStandPort); /** @brief The entry point for sending buffers to the port * * This function can be called by the EmptyThisBuffer or FillThisBuffer. It depends on * the nature of the port, that can be an input or output port. */ OMX_ERRORTYPE base_port_SendBufferFunction( omx_base_PortType *openmaxStandPort, OMX_BUFFERHEADERTYPE* pBuffer); /** @brief Called by the standard allocate buffer, it implements a base functionality. * * This function can be overriden if the allocation of the buffer is not a simply malloc call. * The parameters are the same as the standard function, except for the handle of the port * instead of the handler of the component * When the buffers needed by this port are all assigned or allocated, the variable * bIsFullOfBuffers becomes equal to OMX_TRUE */ OMX_ERRORTYPE base_port_AllocateBuffer( omx_base_PortType *openmaxStandPort, OMX_BUFFERHEADERTYPE** pBuffer, OMX_U32 nPortIndex, OMX_PTR pAppPrivate, OMX_U32 nSizeBytes); /** @brief Called by the standard use buffer, it implements a base functionality. * * This function can be overriden if the use buffer implicate more complicated operations. * The parameters are the same as the standard function, except for the handle of the port * instead of the handler of the component * When the buffers needed by this port are all assigned or allocated, the variable * bIsFullOfBuffers becomes equal to OMX_TRUE */ OMX_ERRORTYPE base_port_UseBuffer( omx_base_PortType *openmaxStandPort, OMX_BUFFERHEADERTYPE** ppBufferHdr, OMX_U32 nPortIndex, OMX_PTR pAppPrivate, OMX_U32 nSizeBytes, OMX_U8* pBuffer); /** @brief Called by the standard function. * * It frees the buffer header and in case also the buffer itself, if needed. * When all the bufers are done, the variable bIsEmptyOfBuffers is set to OMX_TRUE */ OMX_ERRORTYPE base_port_FreeBuffer( omx_base_PortType *openmaxStandPort, OMX_U32 nPortIndex, OMX_BUFFERHEADERTYPE* pBuffer); /** @brief Releases buffers under processing. * * This function must be implemented in the derived classes, for the * specific processing */ OMX_ERRORTYPE base_port_FlushProcessingBuffers(omx_base_PortType *openmaxStandPort); /** @brief Returns buffers when processed. * * Call appropriate function to return buffers to peer or IL Client */ OMX_ERRORTYPE base_port_ReturnBufferFunction( omx_base_PortType* openmaxStandPort, OMX_BUFFERHEADERTYPE* pBuffer); /** @brief Setup Tunnel with the port */ OMX_ERRORTYPE base_port_ComponentTunnelRequest( omx_base_PortType* openmaxStandPort, OMX_HANDLETYPE hTunneledComp, OMX_U32 nTunneledPort, OMX_TUNNELSETUPTYPE* pTunnelSetup); /** @brief Allocate Buffers for tunneling use */ OMX_ERRORTYPE base_port_AllocateTunnelBuffer( omx_base_PortType *openmaxStandPort, OMX_U32 nPortIndex); /** @brief Free buffers used in tunnel */ OMX_ERRORTYPE base_port_FreeTunnelBuffer( omx_base_PortType *openmaxStandPort, OMX_U32 nPortIndex); #endif libomxil-bellagio-0.9.3/src/base/OMXComponentRMExt.c0000644000175000017500000000514211513256766017170 00000000000000/** src/base/OMXComponentRMExt.c This extension of the core provides functions for the resoruce manager used to retrieve the quality levels of the components available. Copyright (C) 2008-2010 STMicroelectronics This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include "omxcore.h" #include "omx_base_component.h" #include "OMXComponentRMExt.h" OMX_ERRORTYPE getQualityLevel(OMX_HANDLETYPE hComponent, OMX_U32* pQualityLevel) { omx_base_component_PrivateType* omx_base_component_Private; OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE *)hComponent; OMX_ERRORTYPE err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; if (omx_base_component_Private == NULL) { DEBUG(DEB_LEV_ERR, "The function %s should be called on a Bellagio OpenMAX component\n", __func__); return OMX_ErrorNotImplemented; } err = omx_base_component_Private->getQualityLevel(openmaxStandComp, pQualityLevel); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "The get Quality levels fails\n"); return err; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } OMX_ERRORTYPE setQualityLevel(OMX_HANDLETYPE hComponent, OMX_U32 nQualityLevel) { omx_base_component_PrivateType* omx_base_component_Private; OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE *)hComponent; OMX_ERRORTYPE err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; if (omx_base_component_Private == NULL) { DEBUG(DEB_LEV_ERR, "The function %s should be called on a Bellagio OpenMAX component\n", __func__); return OMX_ErrorNotImplemented; } err = omx_base_component_Private->setQualityLevel(openmaxStandComp, nQualityLevel); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "The set Quality levels fails\n"); return err; } return OMX_ErrorNone; } libomxil-bellagio-0.9.3/src/base/omx_base_video_port.c0000644000175000017500000001105511513256766017751 00000000000000/** src/base/omx_base_video_port.c Base Video Port class for OpenMAX ports to be used in derived components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include "omx_base_video_port.h" /** * @brief The base contructor for the generic OpenMAX ST Video port * * This function is executed by the component that uses a port. * The parameter contains the info about the component. * It takes care of constructing the instance of the port and * every object needed by the base port. * * @param openmaxStandComp pointer to the Handle of the component * @param openmaxStandPort the ST port to be initialized * @param nPortIndex Index of the port to be constructed * @param isInput specifices if the port is an input or an output * * @return OMX_ErrorInsufficientResources if a memory allocation fails */ OSCL_EXPORT_REF OMX_ERRORTYPE base_video_port_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,omx_base_PortType **openmaxStandPort,OMX_U32 nPortIndex, OMX_BOOL isInput) { omx_base_video_PortType *omx_base_video_Port; if (!(*openmaxStandPort)) { *openmaxStandPort = calloc(1,sizeof (omx_base_video_PortType)); } if (!(*openmaxStandPort)) { return OMX_ErrorInsufficientResources; } base_port_Constructor(openmaxStandComp,openmaxStandPort,nPortIndex, isInput); omx_base_video_Port = (omx_base_video_PortType *)*openmaxStandPort; setHeader(&omx_base_video_Port->sVideoParam, sizeof(OMX_VIDEO_PARAM_PORTFORMATTYPE)); omx_base_video_Port->sVideoParam.nPortIndex = nPortIndex; omx_base_video_Port->sVideoParam.nIndex = 0; omx_base_video_Port->sVideoParam.eCompressionFormat = OMX_VIDEO_CodingUnused; omx_base_video_Port->sVideoParam.eColorFormat = OMX_COLOR_FormatUnused; omx_base_video_Port->sVideoParam.xFramerate = 15; omx_base_video_Port->sPortParam.eDomain = OMX_PortDomainVideo; omx_base_video_Port->sPortParam.format.video.cMIMEType = malloc(DEFAULT_MIME_STRING_LENGTH); strcpy(omx_base_video_Port->sPortParam.format.video.cMIMEType, "raw/video"); omx_base_video_Port->sPortParam.format.video.pNativeRender = 0; omx_base_video_Port->sPortParam.format.video.bFlagErrorConcealment = OMX_FALSE; omx_base_video_Port->sPortParam.format.video.eCompressionFormat = OMX_VIDEO_CodingUnused; omx_base_video_Port->sPortParam.format.video.nFrameWidth = 0; omx_base_video_Port->sPortParam.format.video.nFrameHeight= 0; omx_base_video_Port->sPortParam.format.video.nStride = 0; omx_base_video_Port->sPortParam.format.video.nSliceHeight = 0; omx_base_video_Port->sPortParam.format.video.nBitrate = 0; omx_base_video_Port->sPortParam.format.video.xFramerate = 15; omx_base_video_Port->sPortParam.format.video.eColorFormat = OMX_COLOR_FormatUnused; omx_base_video_Port->sPortParam.format.video.pNativeWindow = NULL; omx_base_video_Port->sPortParam.nBufferSize = (isInput == OMX_TRUE)?DEFAULT_IN_BUFFER_SIZE:MAX_VIDEO_OUTPUT_BUF_SIZE ; omx_base_video_Port->PortDestructor = &base_video_port_Destructor; return OMX_ErrorNone; } /** * @brief The base video port destructor for the generic OpenMAX ST Video port * * This function is executed by the component that uses a port. * The parameter contains the info about the port. * It takes care of destructing the instance of the port * * @param openmaxStandPort the ST port to be destructed * * @return OMX_ErrorNone */ OSCL_EXPORT_REF OMX_ERRORTYPE base_video_port_Destructor(omx_base_PortType *openmaxStandPort){ if(openmaxStandPort->sPortParam.format.video.cMIMEType) { free(openmaxStandPort->sPortParam.format.video.cMIMEType); openmaxStandPort->sPortParam.format.video.cMIMEType = NULL; } base_port_Destructor(openmaxStandPort); return OMX_ErrorNone; } libomxil-bellagio-0.9.3/src/base/omx_base_clock_port.c0000644000175000017500000002356611513256766017750 00000000000000/** src/base/omx_base_clock_port.c Base Clock Port class for OpenMAX clock ports to be used in derived components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include "omx_base_component.h" #include "omx_base_clock_port.h" /** * @brief the base constructor for the generic OpenMAX ST Clock port * * This function is executed by the component that uses a port. * The parameter contains the info about the component. * It takes care of constructing the instance of the port and * every object needed by the base port. * * @param openmaxStandComp pointer to the Handle of the component * @param openmaxStandPort the ST port to be initialized * @param nPortIndex Index of the port to be constructed * @param isInput specifies if the port is an input or an output * * @return OMX_ErrorInsufficientResources if a memory allocation fails */ OMX_ERRORTYPE base_clock_port_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,omx_base_PortType **openmaxStandPort,OMX_U32 nPortIndex, OMX_BOOL isInput) { OMX_ERRORTYPE err; omx_base_clock_PortType *omx_base_clock_Port; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s of component %p\n", __func__, openmaxStandComp); if (!(*openmaxStandPort)) { *openmaxStandPort = calloc(1,sizeof (omx_base_clock_PortType)); } if (!(*openmaxStandPort)) { return OMX_ErrorInsufficientResources; } err = base_port_Constructor(openmaxStandComp,openmaxStandPort,nPortIndex, isInput); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Base port constructor failed in %s\n", __func__); return err; } omx_base_clock_Port = (omx_base_clock_PortType *)*openmaxStandPort; setHeader(&omx_base_clock_Port->sOtherParam, sizeof(OMX_OTHER_PARAM_PORTFORMATTYPE)); omx_base_clock_Port->sOtherParam.nPortIndex = nPortIndex; omx_base_clock_Port->sOtherParam.nIndex = 0; omx_base_clock_Port->sOtherParam.eFormat = OMX_OTHER_FormatTime; omx_base_clock_Port->sPortParam.eDomain = OMX_PortDomainOther; omx_base_clock_Port->sPortParam.format.other.eFormat = OMX_OTHER_FormatTime; omx_base_clock_Port->sPortParam.nBufferSize = sizeof(OMX_TIME_MEDIATIMETYPE) ; omx_base_clock_Port->sPortParam.nBufferCountActual = 1; omx_base_clock_Port->sPortParam.nBufferCountMin = 1; omx_base_clock_Port->sPortParam.format.other.eFormat = OMX_OTHER_FormatTime; setHeader(&omx_base_clock_Port->sTimeStamp, sizeof(OMX_TIME_CONFIG_TIMESTAMPTYPE)); omx_base_clock_Port->sTimeStamp.nPortIndex = nPortIndex; omx_base_clock_Port->sTimeStamp.nTimestamp = 0x00; setHeader(&omx_base_clock_Port->sMediaTime, sizeof(OMX_TIME_MEDIATIMETYPE)); omx_base_clock_Port->sMediaTime.nClientPrivate = 0; omx_base_clock_Port->sMediaTime.nOffset = 0x0; omx_base_clock_Port->sMediaTime.xScale = 1; setHeader(&omx_base_clock_Port->sMediaTimeRequest, sizeof(OMX_TIME_MEDIATIMETYPE)); omx_base_clock_Port->sMediaTimeRequest.nPortIndex = nPortIndex; omx_base_clock_Port->sMediaTimeRequest.pClientPrivate = NULL; omx_base_clock_Port->sMediaTimeRequest.nOffset = 0x0; omx_base_clock_Port->Port_SendBufferFunction = &base_clock_port_SendBufferFunction; omx_base_clock_Port->PortDestructor = &base_clock_port_Destructor; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s of component %p\n", __func__, openmaxStandComp); return OMX_ErrorNone; } /** * @brief the base clock port destructor for the generic OpenMAX ST clock port * * This function is executed by the component that uses a port. * The parameter contains the info about the port. * It takes care of destructing the instance of the port * * @param openmaxStandPort the ST port to be destructed * * @return OMX_ErrorNone */ OMX_ERRORTYPE base_clock_port_Destructor(omx_base_PortType *openmaxStandPort){ OMX_ERRORTYPE err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s of component %p\n", __func__, openmaxStandPort->standCompContainer); err = base_port_Destructor(openmaxStandPort); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Base port destructor failed in %s\n", __func__); return err; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s of component %p\n", __func__, openmaxStandPort->standCompContainer); return OMX_ErrorNone; } /** @brief the entry point for sending buffers to the port * * This function can be called by the EmptyThisBuffer or FillThisBuffer. It depends on * the nature of the port, that can be an input or output port. */ OMX_ERRORTYPE base_clock_port_SendBufferFunction( omx_base_PortType *openmaxStandPort, OMX_BUFFERHEADERTYPE* pBuffer) { OMX_ERRORTYPE err; int errQue; OMX_U32 portIndex; OMX_COMPONENTTYPE* omxComponent = openmaxStandPort->standCompContainer; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)omxComponent->pComponentPrivate; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s of component %p\n", __func__, omxComponent); #if NO_GST_OMX_PATCH unsigned int i; #endif portIndex = (openmaxStandPort->sPortParam.eDir == OMX_DirInput)?pBuffer->nInputPortIndex:pBuffer->nOutputPortIndex; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s portIndex %lu\n", __func__, portIndex); if (portIndex != openmaxStandPort->sPortParam.nPortIndex) { DEBUG(DEB_LEV_ERR, "In %s: wrong port for this operation portIndex=%d port->portIndex=%d\n", __func__, (int)portIndex, (int)openmaxStandPort->sPortParam.nPortIndex); return OMX_ErrorBadPortIndex; } if(omx_base_component_Private->state == OMX_StateInvalid) { DEBUG(DEB_LEV_ERR, "In %s: we are in OMX_StateInvalid\n", __func__); return OMX_ErrorInvalidState; } if(omx_base_component_Private->state != OMX_StateExecuting && omx_base_component_Private->state != OMX_StatePause && omx_base_component_Private->state != OMX_StateIdle) { DEBUG(DEB_LEV_ERR, "In %s: we are not in executing/paused/idle state, but in %d\n", __func__, omx_base_component_Private->state); return OMX_ErrorIncorrectStateOperation; } if (!PORT_IS_ENABLED(openmaxStandPort) || (PORT_IS_BEING_DISABLED(openmaxStandPort) && !PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort)) || ((omx_base_component_Private->transientState == OMX_TransStateExecutingToIdle || omx_base_component_Private->transientState == OMX_TransStatePauseToIdle) && (PORT_IS_TUNNELED(openmaxStandPort) && !PORT_IS_BUFFER_SUPPLIER(openmaxStandPort)))) { DEBUG(DEB_LEV_ERR, "In %s: Port %d is disabled comp = %s \n", __func__, (int)portIndex,omx_base_component_Private->name); return OMX_ErrorIncorrectStateOperation; } /* Temporarily disable this check for gst-openmax */ #if NO_GST_OMX_PATCH { OMX_BOOL foundBuffer = OMX_FALSE; if(pBuffer!=NULL && pBuffer->pBuffer!=NULL) { for(i=0; i < openmaxStandPort->sPortParam.nBufferCountActual; i++){ if (pBuffer->pBuffer == openmaxStandPort->pInternalBufferStorage[i]->pBuffer) { foundBuffer = OMX_TRUE; break; } } } if (!foundBuffer) { return OMX_ErrorBadParameter; } } #endif if ((err = checkHeader(pBuffer, sizeof(OMX_BUFFERHEADERTYPE))) != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s: received wrong buffer header on input port\n", __func__); return err; } /*If port is not tunneled then simply return the buffer except paused state*/ if (!PORT_IS_TUNNELED(openmaxStandPort) && (omx_base_component_Private->state != OMX_StatePause)) { openmaxStandPort->ReturnBufferFunction(openmaxStandPort,pBuffer); return OMX_ErrorNone; } /* And notify the buffer management thread we have a fresh new buffer to manage */ if(!PORT_IS_BEING_FLUSHED(openmaxStandPort) && !(PORT_IS_BEING_DISABLED(openmaxStandPort) && PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort))){ errQue = queue(openmaxStandPort->pBufferQueue, pBuffer); if (errQue) { /* /TODO the queue is full. This can be handled in a fine way with * some retrials, or other checking. For the moment this is a critical error * and simply causes the failure of this call */ return OMX_ErrorInsufficientResources; } tsem_up(openmaxStandPort->pBufferSem); DEBUG(DEB_LEV_PARAMS, "In %s Signalling bMgmtSem Port Index=%d\n",__func__, (int)portIndex); tsem_up(omx_base_component_Private->bMgmtSem); } else if(PORT_IS_BUFFER_SUPPLIER(openmaxStandPort)){ DEBUG(DEB_LEV_FULL_SEQ, "In %s: Comp %s received io:%d buffer\n", __func__,omx_base_component_Private->name,(int)openmaxStandPort->sPortParam.nPortIndex); errQue = queue(openmaxStandPort->pBufferQueue, pBuffer); if (errQue) { /* /TODO the queue is full. This can be handled in a fine way with * some retrials, or other checking. For the moment this is a critical error * and simply causes the failure of this call */ return OMX_ErrorInsufficientResources; } tsem_up(openmaxStandPort->pBufferSem); } else { // If port being flushed and not tunneled then return error DEBUG(DEB_LEV_ERR, "Port flushed but not tunneled in %s \n", __func__); return OMX_ErrorIncorrectStateOperation; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s of component %p\n", __func__, omx_base_component_Private); return OMX_ErrorNone; } libomxil-bellagio-0.9.3/src/base/omx_base_source.c0000644000175000017500000004547611513256766017115 00000000000000/** src/base/omx_base_source.c OpenMAX base source component. This component does not perform any multimedia processing. It derives from base component and contains a single output port. This class can also be used for a two port source component It can be used as base class for source components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include OMX_ERRORTYPE omx_base_source_Constructor(OMX_COMPONENTTYPE *openmaxStandComp, OMX_STRING cComponentName) { OMX_ERRORTYPE err = OMX_ErrorNone; omx_base_source_PrivateType* omx_base_source_Private; if (openmaxStandComp->pComponentPrivate) { omx_base_source_Private = (omx_base_source_PrivateType*)openmaxStandComp->pComponentPrivate; } else { omx_base_source_Private = calloc(1,sizeof(omx_base_source_PrivateType)); if (!omx_base_source_Private) { return OMX_ErrorInsufficientResources; } } // we could create our own port structures here // fixme maybe the base class could use a "port factory" function pointer? err = omx_base_component_Constructor(openmaxStandComp, cComponentName); /* here we can override whatever defaults the base_component constructor set * e.g. we can override the function pointers in the private struct */ omx_base_source_Private = openmaxStandComp->pComponentPrivate; omx_base_source_Private->BufferMgmtFunction = omx_base_source_BufferMgmtFunction; return err; } OMX_ERRORTYPE omx_base_source_Destructor(OMX_COMPONENTTYPE *openmaxStandComp) { return omx_base_component_Destructor(openmaxStandComp); } /** This is the central function for component processing. It * is executed in a separate thread, is synchronized with * semaphores at each port, those are released each time a new buffer * is available on the given port. */ void* omx_base_source_BufferMgmtFunction (void* param) { OMX_COMPONENTTYPE* openmaxStandComp = (OMX_COMPONENTTYPE*)param; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; omx_base_source_PrivateType* omx_base_source_Private = (omx_base_source_PrivateType*)omx_base_component_Private; omx_base_PortType *pOutPort = (omx_base_PortType *)omx_base_source_Private->ports[OMX_BASE_SOURCE_OUTPUTPORT_INDEX]; tsem_t* pOutputSem = pOutPort->pBufferSem; queue_t* pOutputQueue = pOutPort->pBufferQueue; OMX_BUFFERHEADERTYPE* pOutputBuffer = NULL; OMX_COMPONENTTYPE* target_component; OMX_BOOL isOutputBufferNeeded = OMX_TRUE; int outBufExchanged = 0; omx_base_source_Private->bellagioThreads->nThreadBufferMngtID = (long int)syscall(__NR_gettid); DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s the thread ID is %i\n", __func__, (int)omx_base_source_Private->bellagioThreads->nThreadBufferMngtID); DEBUG(DEB_LEV_FUNCTION_NAME, "In %s \n", __func__); while(omx_base_component_Private->state == OMX_StateIdle || omx_base_component_Private->state == OMX_StateExecuting || omx_base_component_Private->state == OMX_StatePause || omx_base_component_Private->transientState == OMX_TransStateLoadedToIdle){ /*Wait till the ports are being flushed*/ pthread_mutex_lock(&omx_base_source_Private->flush_mutex); while( PORT_IS_BEING_FLUSHED(pOutPort)) { pthread_mutex_unlock(&omx_base_source_Private->flush_mutex); if(isOutputBufferNeeded == OMX_FALSE) { pOutPort->ReturnBufferFunction(pOutPort, pOutputBuffer); outBufExchanged--; pOutputBuffer = NULL; isOutputBufferNeeded = OMX_TRUE; DEBUG(DEB_LEV_FULL_SEQ, "Ports are flushing,so returning output buffer\n"); } DEBUG(DEB_LEV_FULL_SEQ, "In %s signalling flush all condition \n", __func__); tsem_up(omx_base_source_Private->flush_all_condition); tsem_down(omx_base_source_Private->flush_condition); pthread_mutex_lock(&omx_base_source_Private->flush_mutex); } pthread_mutex_unlock(&omx_base_source_Private->flush_mutex); /*No buffer to process. So wait here*/ if((isOutputBufferNeeded==OMX_TRUE && pOutputSem->semval==0) && (omx_base_source_Private->state != OMX_StateLoaded && omx_base_source_Private->state != OMX_StateInvalid)) { DEBUG(DEB_LEV_SIMPLE_SEQ, "Waiting for output buffer \n"); tsem_down(omx_base_source_Private->bMgmtSem); } if(omx_base_source_Private->state == OMX_StateLoaded || omx_base_source_Private->state == OMX_StateInvalid) { DEBUG(DEB_LEV_FULL_SEQ, "In %s Buffer Management Thread is exiting\n",__func__); break; } DEBUG(DEB_LEV_SIMPLE_SEQ, "Waiting for output buffer semval=%d \n",pOutputSem->semval); if(pOutputSem->semval > 0 && isOutputBufferNeeded == OMX_TRUE ) { tsem_down(pOutputSem); if(pOutputQueue->nelem>0){ outBufExchanged++; isOutputBufferNeeded = OMX_FALSE; pOutputBuffer = dequeue(pOutputQueue); if(pOutputBuffer == NULL){ DEBUG(DEB_LEV_ERR, "In %s Had NULL output buffer!!\n",__func__); break; } } } if(isOutputBufferNeeded == OMX_FALSE) { if((pOutputBuffer->nFlags & OMX_BUFFERFLAG_EOS) == OMX_BUFFERFLAG_EOS) { pOutputBuffer->nFlags = 0; } if(omx_base_source_Private->pMark.hMarkTargetComponent != NULL){ pOutputBuffer->hMarkTargetComponent = omx_base_source_Private->pMark.hMarkTargetComponent; pOutputBuffer->pMarkData = omx_base_source_Private->pMark.pMarkData; omx_base_source_Private->pMark.hMarkTargetComponent = NULL; omx_base_source_Private->pMark.pMarkData = NULL; } target_component = (OMX_COMPONENTTYPE*)pOutputBuffer->hMarkTargetComponent; if(target_component == (OMX_COMPONENTTYPE *)openmaxStandComp) { /*Clear the mark and generate an event*/ (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventMark, /* The command was completed */ 1, /* The commands was a OMX_CommandStateSet */ 0, /* The state has been changed in message->messageParam2 */ pOutputBuffer->pMarkData); } else if(pOutputBuffer->hMarkTargetComponent != NULL) { /*If this is not the target component then pass the mark*/ DEBUG(DEB_LEV_FULL_SEQ, "Pass Mark. This is a Source!!\n"); } if(omx_base_source_Private->state == OMX_StateExecuting) { if (omx_base_source_Private->BufferMgmtCallback && pOutputBuffer->nFilledLen == 0) { (*(omx_base_source_Private->BufferMgmtCallback))(openmaxStandComp, pOutputBuffer); } else { /*It no buffer management call back then don't produce any output buffer*/ pOutputBuffer->nFilledLen = 0; } } else { DEBUG(DEB_LEV_ERR, "In %s Received Buffer in non-Executing State(%x)\n", __func__, (int)omx_base_source_Private->state); } if(omx_base_source_Private->state == OMX_StatePause && !PORT_IS_BEING_FLUSHED(pOutPort)) { /*Waiting at paused state*/ tsem_wait(omx_base_source_Private->bStateSem); } if((pOutputBuffer->nFlags & OMX_BUFFERFLAG_EOS) == OMX_BUFFERFLAG_EOS) { DEBUG(DEB_LEV_SIMPLE_SEQ, "Detected EOS flags in output buffer\n"); (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventBufferFlag, /* The command was completed */ 0, /* The commands was a OMX_CommandStateSet */ pOutputBuffer->nFlags, /* The state has been changed in message->messageParam2 */ NULL); //pOutputBuffer->nFlags = 0; omx_base_source_Private->bIsEOSReached = OMX_TRUE; } /*Output Buffer has been produced or EOS. So, return output buffer and get new buffer*/ if((pOutputBuffer->nFilledLen != 0) || ((pOutputBuffer->nFlags & OMX_BUFFERFLAG_EOS) ==OMX_BUFFERFLAG_EOS) || (omx_base_source_Private->bIsEOSReached == OMX_TRUE)) { if((pOutputBuffer->nFlags & OMX_BUFFERFLAG_EOS) == OMX_BUFFERFLAG_EOS) DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s nFlags=%x Name=%s \n", __func__, (int)pOutputBuffer->nFlags, omx_base_source_Private->name); pOutPort->ReturnBufferFunction(pOutPort, pOutputBuffer); outBufExchanged--; pOutputBuffer = NULL; isOutputBufferNeeded = OMX_TRUE; } } } DEBUG(DEB_LEV_SIMPLE_SEQ, "Exiting Buffer Management Thread\n"); return NULL; } /** This is the central function for buffer processing of a two port source component. * It is executed in a separate thread, is synchronized with * semaphores at each port, those are released each time a new buffer * is available on the given port. */ void* omx_base_source_twoport_BufferMgmtFunction (void* param) { OMX_COMPONENTTYPE* openmaxStandComp = (OMX_COMPONENTTYPE*)param; omx_base_component_PrivateType* omx_base_component_Private=(omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; omx_base_source_PrivateType* omx_base_source_Private = (omx_base_source_PrivateType*)omx_base_component_Private; omx_base_PortType *pOutPort[2]; tsem_t* pOutputSem[2]; queue_t* pOutputQueue[2]; OMX_BUFFERHEADERTYPE* pOutputBuffer[2]; OMX_COMPONENTTYPE* target_component; OMX_BOOL isOutputBufferNeeded[2]; int i,outBufExchanged[2]; pOutPort[0]=(omx_base_PortType *)omx_base_source_Private->ports[OMX_BASE_SOURCE_OUTPUTPORT_INDEX]; pOutPort[1]=(omx_base_PortType *)omx_base_source_Private->ports[OMX_BASE_SOURCE_OUTPUTPORT_INDEX_1]; pOutputSem[0] = pOutPort[0]->pBufferSem; pOutputSem[1] = pOutPort[1]->pBufferSem; pOutputQueue[0] = pOutPort[0]->pBufferQueue; pOutputQueue[1] = pOutPort[1]->pBufferQueue; pOutputBuffer[1]= pOutputBuffer[0]=NULL; isOutputBufferNeeded[0]=isOutputBufferNeeded[1]=OMX_TRUE; outBufExchanged[0]=outBufExchanged[1]=0; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); while(omx_base_source_Private->state == OMX_StateIdle || omx_base_source_Private->state == OMX_StateExecuting || omx_base_source_Private->state == OMX_StatePause || omx_base_source_Private->transientState == OMX_TransStateLoadedToIdle){ /*Wait till the ports are being flushed*/ pthread_mutex_lock(&omx_base_source_Private->flush_mutex); while( PORT_IS_BEING_FLUSHED(pOutPort[0]) || PORT_IS_BEING_FLUSHED(pOutPort[1])) { pthread_mutex_unlock(&omx_base_source_Private->flush_mutex); DEBUG(DEB_LEV_FULL_SEQ, "In %s 1 signalling flush all cond iE=%d,iF=%d,oE=%d,oF=%d iSemVal=%d,oSemval=%d\n", __func__,outBufExchanged[0],isOutputBufferNeeded[0],outBufExchanged[1],isOutputBufferNeeded[1],pOutputSem[0]->semval,pOutputSem[1]->semval); if(isOutputBufferNeeded[1]==OMX_FALSE && PORT_IS_BEING_FLUSHED(pOutPort[1])) { pOutPort[1]->ReturnBufferFunction(pOutPort[1],pOutputBuffer[1]); outBufExchanged[1]--; pOutputBuffer[1]=NULL; isOutputBufferNeeded[1]=OMX_TRUE; DEBUG(DEB_LEV_FULL_SEQ, "Ports are flushing,so returning output 1 buffer\n"); } if(isOutputBufferNeeded[0]==OMX_FALSE && PORT_IS_BEING_FLUSHED(pOutPort[0])) { pOutPort[0]->ReturnBufferFunction(pOutPort[0],pOutputBuffer[0]); outBufExchanged[0]--; pOutputBuffer[0]=NULL; isOutputBufferNeeded[0]=OMX_TRUE; DEBUG(DEB_LEV_FULL_SEQ, "Ports are flushing,so returning output 0 buffer\n"); } DEBUG(DEB_LEV_FULL_SEQ, "In %s 2 signalling flush all cond iE=%d,iF=%d,oE=%d,oF=%d iSemVal=%d,oSemval=%d\n", __func__,outBufExchanged[0],isOutputBufferNeeded[0],outBufExchanged[1],isOutputBufferNeeded[1],pOutputSem[0]->semval,pOutputSem[1]->semval); tsem_up(omx_base_source_Private->flush_all_condition); tsem_down(omx_base_source_Private->flush_condition); pthread_mutex_lock(&omx_base_source_Private->flush_mutex); } pthread_mutex_unlock(&omx_base_source_Private->flush_mutex); /*No buffer to process. So wait here*/ if((isOutputBufferNeeded[0]==OMX_TRUE && pOutputSem[0]->semval==0) && (omx_base_source_Private->state != OMX_StateLoaded && omx_base_source_Private->state != OMX_StateInvalid)) { //Signalled from EmptyThisBuffer or FillThisBuffer or some thing else DEBUG(DEB_LEV_FULL_SEQ, "Waiting for next output buffer 0\n"); tsem_down(omx_base_source_Private->bMgmtSem); } if(omx_base_source_Private->state == OMX_StateLoaded || omx_base_source_Private->state == OMX_StateInvalid) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Buffer Management Thread is exiting\n",__func__); break; } if((isOutputBufferNeeded[1]==OMX_TRUE && pOutputSem[1]->semval==0) && (omx_base_source_Private->state != OMX_StateLoaded && omx_base_source_Private->state != OMX_StateInvalid) && !(PORT_IS_BEING_FLUSHED(pOutPort[0]) || PORT_IS_BEING_FLUSHED(pOutPort[1]))) { //Signalled from EmptyThisBuffer or FillThisBuffer or some thing else DEBUG(DEB_LEV_FULL_SEQ, "Waiting for next output buffer 1\n"); tsem_down(omx_base_source_Private->bMgmtSem); } if(omx_base_source_Private->state == OMX_StateLoaded || omx_base_source_Private->state == OMX_StateInvalid) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Buffer Management Thread is exiting\n",__func__); break; } DEBUG(DEB_LEV_SIMPLE_SEQ, "Waiting for output buffer 0 semval=%d \n",pOutputSem[0]->semval); if(pOutputSem[0]->semval>0 && isOutputBufferNeeded[0]==OMX_TRUE ) { tsem_down(pOutputSem[0]); if(pOutputQueue[0]->nelem>0){ outBufExchanged[0]++; isOutputBufferNeeded[0]=OMX_FALSE; pOutputBuffer[0] = dequeue(pOutputQueue[0]); if(pOutputBuffer[0] == NULL){ DEBUG(DEB_LEV_ERR, "Had NULL output buffer!!\n"); break; } } } /*When we have input buffer to process then get one output buffer*/ if(pOutputSem[1]->semval>0 && isOutputBufferNeeded[1]==OMX_TRUE) { tsem_down(pOutputSem[1]); if(pOutputQueue[1]->nelem>0){ outBufExchanged[1]++; isOutputBufferNeeded[1]=OMX_FALSE; pOutputBuffer[1] = dequeue(pOutputQueue[1]); if(pOutputBuffer[1] == NULL){ DEBUG(DEB_LEV_ERR, "Had NULL output buffer!! op is=%d,iq=%d\n",pOutputSem[1]->semval,pOutputQueue[1]->nelem); break; } } } for(i=0;i < (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts -1);i++) { if(omx_base_source_Private->ports[i]->sPortParam.eDomain!=OMX_PortDomainOther){ /* clock ports are not to be processed */ /*Process Output buffer of Port i */ if(isOutputBufferNeeded[i]==OMX_FALSE) { /*Pass the Mark to all outgoing buffers*/ if(omx_base_source_Private->pMark.hMarkTargetComponent != NULL){ pOutputBuffer[i]->hMarkTargetComponent = omx_base_source_Private->pMark.hMarkTargetComponent; pOutputBuffer[i]->pMarkData = omx_base_source_Private->pMark.pMarkData; } target_component=(OMX_COMPONENTTYPE*)pOutputBuffer[i]->hMarkTargetComponent; if(target_component==(OMX_COMPONENTTYPE *)openmaxStandComp) { /*Clear the mark and generate an event*/ (*(omx_base_source_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_source_Private->callbackData, OMX_EventMark, /* The command was completed */ 1, /* The commands was a OMX_CommandStateSet */ i, /* The state has been changed in message->messageParam2 */ pOutputBuffer[i]->pMarkData); } else if(pOutputBuffer[i]->hMarkTargetComponent!=NULL){ /*If this is not the target component then pass the mark*/ DEBUG(DEB_LEV_FULL_SEQ, "Pass Mark. This is a Source!!\n"); } if(omx_base_source_Private->state == OMX_StateExecuting) { if (omx_base_source_Private->BufferMgmtCallback && pOutputBuffer[i]->nFilledLen == 0) { (*(omx_base_source_Private->BufferMgmtCallback))(openmaxStandComp, pOutputBuffer[i]); } else { /*If no buffer management call back then don't produce any output buffer*/ pOutputBuffer[i]->nFilledLen = 0; } } else { DEBUG(DEB_LEV_ERR, "In %s Received Buffer in non-Executing State(%x)\n", __func__, (int)omx_base_source_Private->state); } if((pOutputBuffer[i]->nFlags & OMX_BUFFERFLAG_EOS) == OMX_BUFFERFLAG_EOS && pOutputBuffer[i]->nFilledLen==0) { DEBUG(DEB_LEV_FULL_SEQ, "Detected EOS flags in input buffer filled len=%d\n", (int)pOutputBuffer[i]->nFilledLen); (*(omx_base_source_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_source_Private->callbackData, OMX_EventBufferFlag, /* The command was completed */ i, /* The commands was a OMX_CommandStateSet */ pOutputBuffer[i]->nFlags, /* The state has been changed in message->messageParam2 */ NULL); } if(omx_base_source_Private->state==OMX_StatePause && !(PORT_IS_BEING_FLUSHED(pOutPort[0]) || PORT_IS_BEING_FLUSHED(pOutPort[1]))) { /*Waiting at paused state*/ tsem_wait(omx_base_component_Private->bStateSem); } /*Output Buffer has been produced or EOS. So, return output buffer and get new buffer*/ if(pOutputBuffer[i]->nFilledLen!=0 || (pOutputBuffer[i]->nFlags & OMX_BUFFERFLAG_EOS) == OMX_BUFFERFLAG_EOS){ pOutPort[i]->ReturnBufferFunction(pOutPort[i],pOutputBuffer[i]); outBufExchanged[i]--; pOutputBuffer[i]=NULL; isOutputBufferNeeded[i]=OMX_TRUE; } } } } /*Clear the Mark*/ if(omx_base_source_Private->pMark.hMarkTargetComponent != NULL){ omx_base_source_Private->pMark.hMarkTargetComponent = NULL; omx_base_source_Private->pMark.pMarkData = NULL; } } DEBUG(DEB_LEV_SIMPLE_SEQ,"Exiting Buffer Management Thread\n"); return NULL; } libomxil-bellagio-0.9.3/src/base/omx_base_component.c0000644000175000017500000025070511513256766017610 00000000000000/** src/base/omx_base_component.c OpenMAX base_component component. This component does not perform any multimedia processing. It is used as a base_component for new components development. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifdef __cplusplus extern "C" { #endif #include #include #include "omx_base_component.h" #include #include "tsemaphore.h" #include "queue.h" /** * This function releases all the resources allocated by the base constructor if something fails. * It checks if any item has been already allocated/configured */ void base_constructor_remove_garbage_collected(omx_base_component_PrivateType* omx_base_component_Private) { if (omx_base_component_Private->flush_condition) { tsem_deinit(omx_base_component_Private->flush_condition); free(omx_base_component_Private->flush_condition); } if (omx_base_component_Private->flush_all_condition) { tsem_deinit(omx_base_component_Private->flush_all_condition); free(omx_base_component_Private->flush_all_condition); } if (omx_base_component_Private->bellagioThreads) { free(omx_base_component_Private->bellagioThreads); } if (omx_base_component_Private->name) { free(omx_base_component_Private->name); } if (omx_base_component_Private->bStateSem) { tsem_deinit(omx_base_component_Private->bStateSem); free(omx_base_component_Private->bStateSem); } if (omx_base_component_Private->bMgmtSem) { tsem_deinit(omx_base_component_Private->bMgmtSem); free(omx_base_component_Private->bMgmtSem); } if (omx_base_component_Private->messageSem) { tsem_deinit(omx_base_component_Private->messageSem); free(omx_base_component_Private->messageSem); } if (omx_base_component_Private->messageQueue) { queue_deinit(omx_base_component_Private->messageQueue); free(omx_base_component_Private->messageQueue); } if (omx_base_component_Private) { free(omx_base_component_Private); } } /** * @brief The base constructor for the OpenMAX ST components * * This function is executed by the ST static component loader. * It takes care of constructing the instance of the component. * For the base_component component, the following is done: * * 1) Fills the basic OpenMAX structure. The fields can be overwritten * by derived components. * 2) Allocates (if needed) the omx_base_component_PrivateType private structure * * @param openmaxStandComp the ST component to be initialized * @param cComponentName the OpenMAX string that describes the component * * @return OMX_ErrorInsufficientResources if a memory allocation fails */ OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,OMX_STRING cComponentName) { omx_base_component_PrivateType* omx_base_component_Private; OMX_U32 i; int err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, openmaxStandComp); if (openmaxStandComp->pComponentPrivate) { omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; } else { omx_base_component_Private = calloc(1,sizeof(omx_base_component_PrivateType)); if (!omx_base_component_Private) { return OMX_ErrorInsufficientResources; } } if(!omx_base_component_Private->messageQueue) { omx_base_component_Private->messageQueue = calloc(1,sizeof(queue_t)); if (!omx_base_component_Private->messageQueue) { base_constructor_remove_garbage_collected(omx_base_component_Private); return OMX_ErrorInsufficientResources; } err = queue_init(omx_base_component_Private->messageQueue); if (err != 0) { base_constructor_remove_garbage_collected(omx_base_component_Private); return OMX_ErrorInsufficientResources; } } if(!omx_base_component_Private->messageSem) { omx_base_component_Private->messageSem = calloc(1,sizeof(tsem_t)); if (!omx_base_component_Private->messageSem) { base_constructor_remove_garbage_collected(omx_base_component_Private); return OMX_ErrorInsufficientResources; } err = tsem_init(omx_base_component_Private->messageSem, 0); if (err != 0) { base_constructor_remove_garbage_collected(omx_base_component_Private); return OMX_ErrorInsufficientResources; } } if(!omx_base_component_Private->bMgmtSem) { omx_base_component_Private->bMgmtSem = calloc(1,sizeof(tsem_t)); if (!omx_base_component_Private->bMgmtSem) { base_constructor_remove_garbage_collected(omx_base_component_Private); return OMX_ErrorInsufficientResources; } err = tsem_init(omx_base_component_Private->bMgmtSem, 0); if (err != 0) { base_constructor_remove_garbage_collected(omx_base_component_Private); return OMX_ErrorInsufficientResources; } } if(!omx_base_component_Private->bStateSem) { omx_base_component_Private->bStateSem = calloc(1,sizeof(tsem_t)); if (!omx_base_component_Private->bStateSem) { base_constructor_remove_garbage_collected(omx_base_component_Private); return OMX_ErrorInsufficientResources; } err = tsem_init(omx_base_component_Private->bStateSem, 0); if (err != 0) { base_constructor_remove_garbage_collected(omx_base_component_Private); return OMX_ErrorInsufficientResources; } } openmaxStandComp->nSize = sizeof(OMX_COMPONENTTYPE); openmaxStandComp->pApplicationPrivate = NULL; openmaxStandComp->GetComponentVersion = omx_base_component_GetComponentVersion; openmaxStandComp->SendCommand = omx_base_component_SendCommand; openmaxStandComp->GetParameter = omx_base_component_GetParameter; openmaxStandComp->SetParameter = omx_base_component_SetParameter; openmaxStandComp->GetConfig = omx_base_component_GetConfig; openmaxStandComp->SetConfig = omx_base_component_SetConfig; openmaxStandComp->GetExtensionIndex = omx_base_component_GetExtensionIndex; openmaxStandComp->GetState = omx_base_component_GetState; openmaxStandComp->SetCallbacks = omx_base_component_SetCallbacks; openmaxStandComp->ComponentDeInit = omx_base_component_ComponentDeInit; openmaxStandComp->ComponentRoleEnum = omx_base_component_ComponentRoleEnum; openmaxStandComp->ComponentTunnelRequest =omx_base_component_ComponentTunnelRequest; /*Will make Specific port Allocate buffer call*/ openmaxStandComp->AllocateBuffer = omx_base_component_AllocateBuffer; openmaxStandComp->UseBuffer = omx_base_component_UseBuffer; openmaxStandComp->UseEGLImage = omx_base_component_UseEGLImage; openmaxStandComp->FreeBuffer = omx_base_component_FreeBuffer; openmaxStandComp->EmptyThisBuffer = omx_base_component_EmptyThisBuffer; openmaxStandComp->FillThisBuffer = omx_base_component_FillThisBuffer; openmaxStandComp->nVersion.s.nVersionMajor = SPECVERSIONMAJOR; openmaxStandComp->nVersion.s.nVersionMinor = SPECVERSIONMINOR; openmaxStandComp->nVersion.s.nRevision = SPECREVISION; openmaxStandComp->nVersion.s.nStep = SPECSTEP; omx_base_component_Private->name = calloc(1,OMX_MAX_STRINGNAME_SIZE); if (!omx_base_component_Private->name) { base_constructor_remove_garbage_collected(omx_base_component_Private); return OMX_ErrorInsufficientResources; } strcpy(omx_base_component_Private->name,cComponentName); omx_base_component_Private->state = OMX_StateLoaded; omx_base_component_Private->transientState = OMX_TransStateMax; omx_base_component_Private->callbacks = NULL; omx_base_component_Private->callbackData = NULL; omx_base_component_Private->nGroupPriority = 100; omx_base_component_Private->nGroupID = 0; omx_base_component_Private->pMark.hMarkTargetComponent = NULL; omx_base_component_Private->pMark.pMarkData = NULL; omx_base_component_Private->openmaxStandComp = openmaxStandComp; omx_base_component_Private->DoStateSet = &omx_base_component_DoStateSet; omx_base_component_Private->messageHandler = omx_base_component_MessageHandler; omx_base_component_Private->destructor = omx_base_component_Destructor; omx_base_component_Private->getQualityLevel = omx_base_getQualityLevel; omx_base_component_Private->setQualityLevel = omx_base_setQualityLevel; omx_base_component_Private->currentQualityLevel = 0; omx_base_component_Private->nqualitylevels = 0; omx_base_component_Private->bufferMgmtThreadID = -1; omx_base_component_Private->bellagioThreads = calloc(1, sizeof(OMX_PARAM_BELLAGIOTHREADS_ID)); if (omx_base_component_Private->bellagioThreads == NULL) { base_constructor_remove_garbage_collected(omx_base_component_Private); return OMX_ErrorInsufficientResources; } omx_base_component_Private->bellagioThreads->nThreadBufferMngtID = 0; omx_base_component_Private->bellagioThreads->nThreadMessageID = 0; omx_base_component_Private->bIsEOSReached = OMX_FALSE; pthread_mutex_init(&omx_base_component_Private->flush_mutex, NULL); if(!omx_base_component_Private->flush_all_condition) { omx_base_component_Private->flush_all_condition = calloc(1,sizeof(tsem_t)); if(!omx_base_component_Private->flush_all_condition) { base_constructor_remove_garbage_collected(omx_base_component_Private); return OMX_ErrorInsufficientResources; } err = tsem_init(omx_base_component_Private->flush_all_condition, 0); if (err != 0) { base_constructor_remove_garbage_collected(omx_base_component_Private); return OMX_ErrorInsufficientResources; } } if(!omx_base_component_Private->flush_condition) { omx_base_component_Private->flush_condition = calloc(1,sizeof(tsem_t)); if(!omx_base_component_Private->flush_condition) { base_constructor_remove_garbage_collected(omx_base_component_Private); return OMX_ErrorInsufficientResources; } err = tsem_init(omx_base_component_Private->flush_condition, 0); if (err != 0) { base_constructor_remove_garbage_collected(omx_base_component_Private); return OMX_ErrorInsufficientResources; } } for(i=0;isPortTypesParam[i], 0, sizeof(OMX_PORT_PARAM_TYPE)); setHeader(&omx_base_component_Private->sPortTypesParam[i], sizeof(OMX_PORT_PARAM_TYPE)); } err = pthread_create(&omx_base_component_Private->messageHandlerThread, NULL, compMessageHandlerFunction, openmaxStandComp); if (err) { base_constructor_remove_garbage_collected(omx_base_component_Private); return OMX_ErrorInsufficientResources; } DEBUG(DEB_LEV_FUNCTION_NAME,"Out of %s for component %p\n", __func__, openmaxStandComp); return OMX_ErrorNone; } /** @brief The base destructor for ST OpenMAX components * * This function is called by the standard function ComponentDeInit() * that is called by the IL core during the execution of the FreeHandle() * * @param openmaxStandComp the ST OpenMAX component to be disposed */ OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_Destructor(OMX_COMPONENTTYPE *openmaxStandComp) { omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; int err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, openmaxStandComp); omx_base_component_Private->state = OMX_StateInvalid; omx_base_component_Private->callbacks=NULL; /*Send Dummy signal to Component Message handler to exit*/ tsem_up(omx_base_component_Private->messageSem); DEBUG(DEB_LEV_FUNCTION_NAME, "In %s before pthread_detach\n", __func__); err = pthread_detach(omx_base_component_Private->messageHandlerThread); if(err!=0) { DEBUG(DEB_LEV_FUNCTION_NAME,"In %s pthread_detach returned err=%d\n", __func__, err); } DEBUG(DEB_LEV_FUNCTION_NAME, "In %s after pthread_detach\n", __func__); /*Deinitialize and free message queue*/ if(omx_base_component_Private->messageQueue) { queue_deinit(omx_base_component_Private->messageQueue); free(omx_base_component_Private->messageQueue); omx_base_component_Private->messageQueue=NULL; } /*Deinitialize and free buffer management semaphore*/ if(omx_base_component_Private->bMgmtSem){ tsem_deinit(omx_base_component_Private->bMgmtSem); free(omx_base_component_Private->bMgmtSem); omx_base_component_Private->bMgmtSem=NULL; } /*Deinitialize and free message semaphore*/ if(omx_base_component_Private->messageSem) { tsem_deinit(omx_base_component_Private->messageSem); free(omx_base_component_Private->messageSem); omx_base_component_Private->messageSem=NULL; } if(omx_base_component_Private->bStateSem){ tsem_deinit(omx_base_component_Private->bStateSem); free(omx_base_component_Private->bStateSem); omx_base_component_Private->bStateSem=NULL; } if(omx_base_component_Private->name){ free(omx_base_component_Private->name); omx_base_component_Private->name=NULL; } pthread_mutex_destroy(&omx_base_component_Private->flush_mutex); if(omx_base_component_Private->flush_all_condition){ tsem_deinit(omx_base_component_Private->flush_all_condition); free(omx_base_component_Private->flush_all_condition); omx_base_component_Private->flush_all_condition=NULL; } if(omx_base_component_Private->flush_condition){ tsem_deinit(omx_base_component_Private->flush_condition); free(omx_base_component_Private->flush_condition); omx_base_component_Private->flush_condition=NULL; } DEBUG(DEB_LEV_FUNCTION_NAME,"Out of %s for component %p\n", __func__, openmaxStandComp); return OMX_ErrorNone; } /** @brief This standard functionality is called when the component is * destroyed in the FreeHandle standard call. * * In this way the implementation of the FreeHandle is standard, * and it does not need a support by a specific component loader. * The implementation of the ComponentDeInit contains the * implementation specific part of the destroying phase. */ OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_ComponentDeInit( OMX_HANDLETYPE hComponent) { OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE *)hComponent; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; DEBUG(DEB_LEV_FUNCTION_NAME,"In %s for component %p\n", __func__, openmaxStandComp); omx_base_component_Private->destructor(openmaxStandComp); free(openmaxStandComp->pComponentPrivate); openmaxStandComp->pComponentPrivate=NULL; DEBUG(DEB_LEV_FUNCTION_NAME,"Out of %s for component %p\n", __func__, openmaxStandComp); return OMX_ErrorNone; } /** Changes the state of a component taking proper actions depending on * the transition requested. This base function cover only the state * changes that do not involve any port * * @param openmaxStandComp the OpenMAX component which state is to be changed * @param destinationState the requested target state * * @return OMX_ErrorNotImplemented if the state change is not handled in this base class, but needs * a specific handling */ OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_DoStateSet(OMX_COMPONENTTYPE *openmaxStandComp, OMX_U32 destinationState) { omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; omx_base_PortType *pPort; OMX_U32 i,j,k; OMX_ERRORTYPE err=OMX_ErrorNone; OMX_BOOL bExit = OMX_FALSE; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, openmaxStandComp); DEBUG(DEB_LEV_PARAMS, "Changing state from %i to %i\n", omx_base_component_Private->state, (int)destinationState); if (omx_base_component_Private->state == OMX_StateLoaded && destinationState == OMX_StateIdle) { err = RM_getResource(openmaxStandComp); if (err != OMX_ErrorNone) { return OMX_ErrorInsufficientResources; } } if (omx_base_component_Private->state == OMX_StateIdle && destinationState == OMX_StateLoaded) { RM_releaseResource(openmaxStandComp); } if(destinationState == OMX_StateLoaded){ switch(omx_base_component_Private->state){ case OMX_StateInvalid: err = OMX_ErrorInvalidState; break; case OMX_StateWaitForResources: /* return back from wait for resources */ RM_removeFromWaitForResource(openmaxStandComp); omx_base_component_Private->state = OMX_StateLoaded; break; case OMX_StateLoaded: err = OMX_ErrorSameState; break; case OMX_StateIdle: /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { pPort = omx_base_component_Private->ports[i]; if (PORT_IS_TUNNELED(pPort) && PORT_IS_BUFFER_SUPPLIER(pPort)) { while(pPort->pBufferQueue->nelem > 0) { DEBUG(DEB_LEV_PARAMS, "In %s Buffer %d remained in the port %d queue of comp%s\n", __func__,(int)pPort->pBufferQueue->nelem,(int)i,omx_base_component_Private->name); dequeue(pPort->pBufferQueue); } /* Freeing here the buffers allocated for the tunneling:*/ err = pPort->Port_FreeTunnelBuffer(pPort,i); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s Freeing Tunnel Buffer Error=%x\n",__func__,err); return err; } } else { DEBUG(DEB_LEV_FULL_SEQ, "In %s nPortIndex=%d pAllocSem Semval=%x\n", __func__,(int)i,(int)pPort->pAllocSem->semval); /*If ports are enabled then wait till all buffers are freed*/ if(PORT_IS_ENABLED(pPort)) { tsem_down(pPort->pAllocSem); } } pPort->sPortParam.bPopulated = OMX_FALSE; if(pPort->pInternalBufferStorage != NULL) { free(pPort->pInternalBufferStorage); pPort->pInternalBufferStorage=NULL; } if(pPort->bBufferStateAllocated != NULL) { free(pPort->bBufferStateAllocated); pPort->bBufferStateAllocated=NULL; } } } omx_base_component_Private->state = OMX_StateLoaded; if(omx_base_component_Private->bufferMgmtThreadID == 0 ){ /*Signal Buffer Management thread to exit*/ tsem_up(omx_base_component_Private->bMgmtSem); pthread_join(omx_base_component_Private->bufferMgmtThread, NULL); omx_base_component_Private->bufferMgmtThreadID = -1; if(err != 0) { DEBUG(DEB_LEV_ERR,"In %s pthread_join returned err=%d\n",__func__,err); } } break; default: DEBUG(DEB_LEV_ERR, "In %s: state transition not allowed\n", __func__); err = OMX_ErrorIncorrectStateTransition; break; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p with err %i\n", __func__, openmaxStandComp, err); return err; } if(destinationState == OMX_StateWaitForResources){ switch(omx_base_component_Private->state){ case OMX_StateInvalid: err = OMX_ErrorInvalidState; break; case OMX_StateLoaded: omx_base_component_Private->state = OMX_StateWaitForResources; err = RM_waitForResource(openmaxStandComp); break; case OMX_StateWaitForResources: err = OMX_ErrorSameState; break; default: DEBUG(DEB_LEV_ERR, "In %s: state transition not allowed\n", __func__); err = OMX_ErrorIncorrectStateTransition; break; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p with err %i\n", __func__, openmaxStandComp, err); return err; } if(destinationState == OMX_StateIdle){ switch(omx_base_component_Private->state){ case OMX_StateInvalid: err = OMX_ErrorInvalidState; break; case OMX_StateWaitForResources: omx_base_component_Private->state = OMX_StateIdle; break; case OMX_StateLoaded: /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { pPort = omx_base_component_Private->ports[i]; if (PORT_IS_TUNNELED(pPort) && PORT_IS_BUFFER_SUPPLIER(pPort)) { if(PORT_IS_ENABLED(pPort)) { /** Allocate here the buffers needed for the tunneling */ err= pPort->Port_AllocateTunnelBuffer(pPort, i); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s Allocating Tunnel Buffer Error=%x\n",__func__,err); return err; } } } else { if(PORT_IS_ENABLED(pPort)) { DEBUG(DEB_LEV_FULL_SEQ, "In %s: wait for buffers. port enabled %i, port populated %i\n", __func__, pPort->sPortParam.bEnabled,pPort->sPortParam.bPopulated); if (pPort->sPortParam.nBufferCountActual > 0) { tsem_down(pPort->pAllocSem); pthread_mutex_lock(&pPort->exitMutex); if (pPort->bIsDestroying) { bExit = OMX_TRUE; pthread_mutex_unlock(&pPort->exitMutex); continue; } pthread_mutex_unlock(&pPort->exitMutex); } pPort->sPortParam.bPopulated = OMX_TRUE; } else { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s: Port %i Disabled So no wait\n",__func__,(int)i); } } DEBUG(DEB_LEV_SIMPLE_SEQ, "Tunnel status : port %d flags 0x%x\n",(int)i, (int)pPort->nTunnelFlags); } } if (bExit) { break; } omx_base_component_Private->state = OMX_StateIdle; /** starting buffer management thread */ omx_base_component_Private->bufferMgmtThreadID = pthread_create(&omx_base_component_Private->bufferMgmtThread, NULL, omx_base_component_Private->BufferMgmtFunction, openmaxStandComp); if(omx_base_component_Private->bufferMgmtThreadID < 0){ DEBUG(DEB_LEV_ERR, "Starting buffer management thread failed\n"); return OMX_ErrorUndefined; } break; case OMX_StateIdle: err = OMX_ErrorSameState; break; case OMX_StateExecuting: /*Flush Ports*/ /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { DEBUG(DEB_LEV_FULL_SEQ, "Flushing Port %i\n",(int)i); pPort = omx_base_component_Private->ports[i]; if(PORT_IS_ENABLED(pPort)) { pPort->FlushProcessingBuffers(pPort); } } } omx_base_component_Private->state = OMX_StateIdle; break; case OMX_StatePause: /*Flush Ports*/ /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { DEBUG(DEB_LEV_FULL_SEQ, "Flushing Port %i\n",(int)i); pPort = omx_base_component_Private->ports[i]; if(PORT_IS_ENABLED(pPort)) { pPort->FlushProcessingBuffers(pPort); } } } omx_base_component_Private->state = OMX_StateIdle; /*Signal buffer management thread if waiting at paused state*/ tsem_signal(omx_base_component_Private->bStateSem); break; default: DEBUG(DEB_LEV_ERR, "In %s: state transition not allowed\n", __func__); err = OMX_ErrorIncorrectStateTransition; break; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p with err %i\n", __func__, openmaxStandComp, err); return err; } if(destinationState == OMX_StatePause) { switch(omx_base_component_Private->state) { case OMX_StateInvalid: err = OMX_ErrorInvalidState; break; case OMX_StatePause: err = OMX_ErrorSameState; break; case OMX_StateIdle: omx_base_component_Private->bIsEOSReached = OMX_FALSE; case OMX_StateExecuting: omx_base_component_Private->state = OMX_StatePause; break; default: DEBUG(DEB_LEV_ERR, "In %s: state transition not allowed\n", __func__); err = OMX_ErrorIncorrectStateTransition; break; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p with err %i\n", __func__, openmaxStandComp, err); return err; } if(destinationState == OMX_StateExecuting) { switch(omx_base_component_Private->state) { case OMX_StateInvalid: err = OMX_ErrorInvalidState; break; case OMX_StateIdle: omx_base_component_Private->state = OMX_StateExecuting; omx_base_component_Private->bIsEOSReached = OMX_FALSE; /*Send Tunneled Buffer to the Neighbouring Components*/ /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { pPort = omx_base_component_Private->ports[i]; if (PORT_IS_TUNNELED(pPort) && PORT_IS_BUFFER_SUPPLIER(pPort) && PORT_IS_ENABLED(pPort)) { for(k=0;knNumTunnelBuffer;k++) { tsem_up(pPort->pBufferSem); /*signal buffer management thread availability of buffers*/ tsem_up(omx_base_component_Private->bMgmtSem); } } } } omx_base_component_Private->transientState = OMX_TransStateMax; err = OMX_ErrorNone; break; case OMX_StatePause: omx_base_component_Private->state=OMX_StateExecuting; /* Tunneled Supplier Ports were enabled in paused state. So signal buffer managment thread*/ /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { pPort=omx_base_component_Private->ports[i]; DEBUG(DEB_LEV_PARAMS, "In %s: state transition Paused 2 Executing, nelem=%d,semval=%d,Buf Count Actual=%d\n", __func__, pPort->pBufferQueue->nelem,pPort->pBufferSem->semval,(int)pPort->sPortParam.nBufferCountActual); if (PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(pPort) && (pPort->pBufferQueue->nelem == (pPort->pBufferSem->semval + pPort->sPortParam.nBufferCountActual))) { for(k=0; k < pPort->sPortParam.nBufferCountActual;k++) { tsem_up(pPort->pBufferSem); tsem_up(omx_base_component_Private->bMgmtSem); } } } } /*Signal buffer management thread if waiting at paused state*/ tsem_signal(omx_base_component_Private->bStateSem); break; case OMX_StateExecuting: err = OMX_ErrorSameState; break; default: DEBUG(DEB_LEV_ERR, "In %s: state transition not allowed\n", __func__); err = OMX_ErrorIncorrectStateTransition; break; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p with err %i\n", __func__, openmaxStandComp, err); return err; } if(destinationState == OMX_StateInvalid) { switch(omx_base_component_Private->state) { case OMX_StateInvalid: err = OMX_ErrorInvalidState; break; default: omx_base_component_Private->state = OMX_StateInvalid; if(omx_base_component_Private->bufferMgmtThreadID == 0 ){ tsem_signal(omx_base_component_Private->bStateSem); /*Signal Buffer Management Thread to Exit*/ tsem_up(omx_base_component_Private->bMgmtSem); pthread_join(omx_base_component_Private->bufferMgmtThread, NULL); omx_base_component_Private->bufferMgmtThreadID = -1; if(err!=0) { DEBUG(DEB_LEV_FUNCTION_NAME,"In %s pthread_join returned err=%d\n",__func__,err); } } err = OMX_ErrorInvalidState; break; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p with err %i\n", __func__, openmaxStandComp, err); return err; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, openmaxStandComp); return OMX_ErrorNone; } /** @brief Checks the header of a structure for consistency * with size and spec version * * @param header Pointer to the structure to be checked * @param size Size of the structure. it is in general obtained * with a sizeof call applied to the structure * * @return OMX error code. If the header has failed the check, * OMX_ErrorVersionMismatch is returned. * If the header fails the size check OMX_ErrorBadParameter is returned */ OSCL_EXPORT_REF OMX_ERRORTYPE checkHeader(OMX_PTR header, OMX_U32 size) { OMX_VERSIONTYPE* ver; if (header == NULL) { DEBUG(DEB_LEV_ERR, "In %s the header is null\n",__func__); return OMX_ErrorBadParameter; } ver = (OMX_VERSIONTYPE*)((char*)header + sizeof(OMX_U32)); if(*((OMX_U32*)header) != size) { DEBUG(DEB_LEV_ERR, "In %s the header has a wrong size %i should be %i\n",__func__,(int)*((OMX_U32*)header),(int)size); return OMX_ErrorBadParameter; } if(ver->s.nVersionMajor != SPECVERSIONMAJOR || ver->s.nVersionMinor != SPECVERSIONMINOR) { DEBUG(DEB_LEV_ERR, "The version does not match\n"); return OMX_ErrorVersionMismatch; } return OMX_ErrorNone; } /** @brief Simply fills the first two fields in any OMX structure * with the size and the version * * @param header pointer to the structure to be filled * @param size size of the structure. It can be obtained with * a call to sizeof of the structure type */ void setHeader(OMX_PTR header, OMX_U32 size) { OMX_VERSIONTYPE* ver = (OMX_VERSIONTYPE*)((char*)header + sizeof(OMX_U32)); *((OMX_U32*)header) = size; ver->s.nVersionMajor = SPECVERSIONMAJOR; ver->s.nVersionMinor = SPECVERSIONMINOR; ver->s.nRevision = SPECREVISION; ver->s.nStep = SPECSTEP; } /** * This function verify Component State and Structure header */ OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_ParameterSanityCheck(OMX_HANDLETYPE hComponent, OMX_U32 nPortIndex, OMX_PTR pStructure, size_t size) { omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)(((OMX_COMPONENTTYPE*)hComponent)->pComponentPrivate); omx_base_PortType *pPort; int nNumPorts; OMX_ERRORTYPE err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, hComponent); nNumPorts = omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts; if (nPortIndex >= nNumPorts) { DEBUG(DEB_LEV_ERR, "Bad Port index %i when the component has %i ports\n", (int)nPortIndex, (int)nNumPorts); return OMX_ErrorBadPortIndex; } pPort = omx_base_component_Private->ports[nPortIndex]; if (omx_base_component_Private->state != OMX_StateLoaded && omx_base_component_Private->state != OMX_StateWaitForResources) { if(PORT_IS_ENABLED(pPort) && !pPort->bIsTransientToEnabled) { DEBUG(DEB_LEV_ERR, "In %s Incorrect State=%x lineno=%d\n",__func__,omx_base_component_Private->state,__LINE__); return OMX_ErrorIncorrectStateOperation; } } err = checkHeader(pStructure, size); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s failing the checkHeader with err %i\n", __func__, (int)err); return err; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, hComponent); return OMX_ErrorNone; } /** @brief Standard OpenMAX function * * it returns the version of the component. See OMX_Core.h */ OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_GetComponentVersion(OMX_HANDLETYPE hComponent, OMX_STRING pComponentName, OMX_VERSIONTYPE* pComponentVersion, OMX_VERSIONTYPE* pSpecVersion, OMX_UUIDTYPE* pComponentUUID) { OMX_COMPONENTTYPE* omx_component = (OMX_COMPONENTTYPE*)hComponent; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)omx_component->pComponentPrivate; OMX_U32 uuid[3]; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, hComponent); /* Fill component name */ strcpy(pComponentName, omx_base_component_Private->name); /* Fill component version */ pComponentVersion->s.nVersionMajor = SPECVERSIONMAJOR; pComponentVersion->s.nVersionMinor = SPECVERSIONMINOR; pComponentVersion->s.nRevision = SPECREVISION; pComponentVersion->s.nStep = SPECSTEP; /* Fill spec version (copy from component field) */ memcpy(pSpecVersion, &omx_component->nVersion, sizeof(OMX_VERSIONTYPE)); /* Fill UUID with handle address, PID and UID. * This should guarantee uiniqness */ uuid[0] = (OMX_U32)omx_component; uuid[1] = getpid(); uuid[2] = getuid(); memcpy(*pComponentUUID, uuid, 3*sizeof(uuid)); DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, hComponent); return OMX_ErrorNone; } /** @brief Enumerates all the roles of the component. * * This function is intended to be used only by a core. The ST static core * in any case does not use this function, because it can not be used before the * creation of the component, but uses a static list. * It is implemented only for API completion,and it will be not overriden * by a derived component */ OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_ComponentRoleEnum( OMX_HANDLETYPE hComponent, OMX_U8 *cRole, OMX_U32 nIndex) { strcat((char*)cRole, "\0"); return OMX_ErrorNoMore; } /** @brief standard OpenMAX function * * it sets the callback functions given by the IL client. * See OMX_Component.h */ OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_SetCallbacks( OMX_HANDLETYPE hComponent, OMX_CALLBACKTYPE* pCallbacks, OMX_PTR pAppData) { OMX_COMPONENTTYPE *omxcomponent = (OMX_COMPONENTTYPE*)hComponent; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)omxcomponent->pComponentPrivate; omx_base_PortType *pPort; OMX_U32 i,j; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, hComponent); omx_base_component_Private->callbacks = pCallbacks; omx_base_component_Private->callbackData = pAppData; /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { pPort = omx_base_component_Private->ports[i]; if (pPort->sPortParam.eDir == OMX_DirInput) { pPort->BufferProcessedCallback = omx_base_component_Private->callbacks->EmptyBufferDone; } else { pPort->BufferProcessedCallback = omx_base_component_Private->callbacks->FillBufferDone; } } } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, hComponent); return OMX_ErrorNone; } /** @brief Part of the standard OpenMAX function * * This function return the parameters not related to any port. * These parameters are handled in the derived components * See OMX_Core.h for standard reference * * @return OMX_ErrorUnsupportedIndex if the index is not supported or not handled here */ OSCL_EXPORT_REF OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_GetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure) { OMX_COMPONENTTYPE *omxcomponent = (OMX_COMPONENTTYPE*)hComponent; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)omxcomponent->pComponentPrivate; OMX_PRIORITYMGMTTYPE* pPrioMgmt; OMX_PARAM_PORTDEFINITIONTYPE *pPortDef; OMX_PARAM_BUFFERSUPPLIERTYPE *pBufferSupplier; omx_base_PortType *pPort; OMX_PORT_PARAM_TYPE* pPortDomains; OMX_ERRORTYPE err = OMX_ErrorNone; OMX_VENDOR_PROP_TUNNELSETUPTYPE *pPropTunnelSetup; OMX_PARAM_BELLAGIOTHREADS_ID *threadID; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, hComponent); DEBUG(DEB_LEV_PARAMS, "Getting parameter %i\n", nParamIndex); if (ComponentParameterStructure == NULL) { return OMX_ErrorBadParameter; } switch(nParamIndex) { case OMX_IndexParameterThreadsID: if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PARAM_BELLAGIOTHREADS_ID))) != OMX_ErrorNone) { break; } threadID = (OMX_PARAM_BELLAGIOTHREADS_ID *)ComponentParameterStructure; threadID->nThreadBufferMngtID = omx_base_component_Private->bellagioThreads->nThreadBufferMngtID; threadID->nThreadMessageID = omx_base_component_Private->bellagioThreads->nThreadMessageID; break; case OMX_IndexParamAudioInit: case OMX_IndexParamVideoInit: case OMX_IndexParamImageInit: case OMX_IndexParamOtherInit: pPortDomains = (OMX_PORT_PARAM_TYPE*)ComponentParameterStructure; if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PORT_PARAM_TYPE))) != OMX_ErrorNone) { break; } pPortDomains->nPorts = 0; pPortDomains->nStartPortNumber = 0; break; case OMX_IndexParamPortDefinition: pPortDef = (OMX_PARAM_PORTDEFINITIONTYPE*) ComponentParameterStructure; if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PARAM_PORTDEFINITIONTYPE))) != OMX_ErrorNone) { break; } if (pPortDef->nPortIndex >= (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts)) { return OMX_ErrorBadPortIndex; } memcpy(pPortDef, &omx_base_component_Private->ports[pPortDef->nPortIndex]->sPortParam, sizeof(OMX_PARAM_PORTDEFINITIONTYPE)); break; case OMX_IndexParamPriorityMgmt: pPrioMgmt = (OMX_PRIORITYMGMTTYPE*)ComponentParameterStructure; if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PRIORITYMGMTTYPE))) != OMX_ErrorNone) { break; } pPrioMgmt->nGroupPriority = omx_base_component_Private->nGroupPriority; pPrioMgmt->nGroupID = omx_base_component_Private->nGroupID; break; case OMX_IndexParamCompBufferSupplier: pBufferSupplier = (OMX_PARAM_BUFFERSUPPLIERTYPE*)ComponentParameterStructure; if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PARAM_BUFFERSUPPLIERTYPE))) != OMX_ErrorNone) { break; } if (pBufferSupplier->nPortIndex >= (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts)) { return OMX_ErrorBadPortIndex; } pPort = omx_base_component_Private->ports[pBufferSupplier->nPortIndex]; if (pPort->sPortParam.eDir == OMX_DirInput) { if (PORT_IS_BUFFER_SUPPLIER(pPort)) { pBufferSupplier->eBufferSupplier = OMX_BufferSupplyInput; } else if (PORT_IS_TUNNELED(pPort)) { pBufferSupplier->eBufferSupplier = OMX_BufferSupplyOutput; } else { pBufferSupplier->eBufferSupplier = OMX_BufferSupplyUnspecified; } } else { if (PORT_IS_BUFFER_SUPPLIER(pPort)) { pBufferSupplier->eBufferSupplier = OMX_BufferSupplyOutput; } else if (PORT_IS_TUNNELED(pPort)) { pBufferSupplier->eBufferSupplier = OMX_BufferSupplyInput; } else { pBufferSupplier->eBufferSupplier = OMX_BufferSupplyUnspecified; } } break; case OMX_IndexVendorCompPropTunnelFlags: pPropTunnelSetup = (OMX_VENDOR_PROP_TUNNELSETUPTYPE*)ComponentParameterStructure; if (pPropTunnelSetup->nPortIndex >= (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts)) { DEBUG(DEB_LEV_ERR,"In %s OMX_IndexVendorCompPropTunnelFlags nPortIndex=%d Line=%d \n", __func__,(int)pPropTunnelSetup->nPortIndex,__LINE__); return OMX_ErrorBadPortIndex; } pPort = omx_base_component_Private->ports[pPropTunnelSetup->nPortIndex]; pPropTunnelSetup->nTunnelSetup.nTunnelFlags = pPort->nTunnelFlags; pPropTunnelSetup->nTunnelSetup.eSupplier = pPort->eBufferSupplier; break; default: err = OMX_ErrorUnsupportedIndex; break; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, hComponent); return err; } /** @brief Part of the standard OpenMAX function * * This function sets the parameters not related to any port. * These parameters are handled in the derived components * See OMX_Core.h for standard reference * * @return OMX_ErrorUnsupportedIndex if the index is not supported or not handled here */ OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_SetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure) { OMX_PRIORITYMGMTTYPE* pPrioMgmt; OMX_PARAM_PORTDEFINITIONTYPE *pPortDef; OMX_ERRORTYPE err = OMX_ErrorNone; OMX_COMPONENTTYPE *omxcomponent = (OMX_COMPONENTTYPE*)hComponent; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)omxcomponent->pComponentPrivate; OMX_PARAM_BUFFERSUPPLIERTYPE *pBufferSupplier; omx_base_PortType *pPort; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, hComponent); DEBUG(DEB_LEV_PARAMS, "Setting parameter %x\n", nParamIndex); if (ComponentParameterStructure == NULL) { DEBUG(DEB_LEV_ERR, "In %s parameter provided is null! err = %x\n", __func__, err); return OMX_ErrorBadParameter; } switch(nParamIndex) { case OMX_IndexParamAudioInit: case OMX_IndexParamVideoInit: case OMX_IndexParamImageInit: case OMX_IndexParamOtherInit: /* pPortParam = (OMX_PORT_PARAM_TYPE* ) ComponentParameterStructure;*/ if (omx_base_component_Private->state != OMX_StateLoaded && omx_base_component_Private->state != OMX_StateWaitForResources) { return OMX_ErrorIncorrectStateOperation; } if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PORT_PARAM_TYPE))) != OMX_ErrorNone) { break; } err = OMX_ErrorUndefined; break; case OMX_IndexParamPortDefinition: pPortDef = (OMX_PARAM_PORTDEFINITIONTYPE*) ComponentParameterStructure; err = omx_base_component_ParameterSanityCheck(hComponent, pPortDef->nPortIndex, pPortDef, sizeof(OMX_PARAM_PORTDEFINITIONTYPE)); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s Parameter Check Error=%x\n",__func__,err); break; } { OMX_PARAM_PORTDEFINITIONTYPE *pPortParam; OMX_U32 j,old_nBufferCountActual=0; pPortParam = &omx_base_component_Private->ports[pPortDef->nPortIndex]->sPortParam; if(pPortDef->nBufferCountActual < pPortParam->nBufferCountMin) { DEBUG(DEB_LEV_ERR, "In %s nBufferCountActual of param (%i) is < of nBufferCountMin of port(%i)\n",__func__, (int)pPortDef->nBufferCountActual, (int)pPortParam->nBufferCountMin); err = OMX_ErrorBadParameter; break; } old_nBufferCountActual = pPortParam->nBufferCountActual; pPortParam->nBufferCountActual = pPortDef->nBufferCountActual; switch(pPortDef->eDomain) { case OMX_PortDomainAudio: memcpy(&pPortParam->format.audio, &pPortDef->format.audio, sizeof(OMX_AUDIO_PORTDEFINITIONTYPE)); break; case OMX_PortDomainVideo: pPortParam->format.video.pNativeRender = pPortDef->format.video.pNativeRender; pPortParam->format.video.nFrameWidth = pPortDef->format.video.nFrameWidth; pPortParam->format.video.nFrameHeight = pPortDef->format.video.nFrameHeight; pPortParam->format.video.nStride = pPortDef->format.video.nStride; pPortParam->format.video.xFramerate = pPortDef->format.video.xFramerate; pPortParam->format.video.bFlagErrorConcealment = pPortDef->format.video.bFlagErrorConcealment; pPortParam->format.video.eCompressionFormat = pPortDef->format.video.eCompressionFormat; pPortParam->format.video.eColorFormat = pPortDef->format.video.eColorFormat; pPortParam->format.video.pNativeWindow = pPortDef->format.video.pNativeWindow; break; case OMX_PortDomainImage: pPortParam->format.image.nFrameWidth = pPortDef->format.image.nFrameWidth; pPortParam->format.image.nFrameHeight = pPortDef->format.image.nFrameHeight; pPortParam->format.image.nStride = pPortDef->format.image.nStride; pPortParam->format.image.bFlagErrorConcealment = pPortDef->format.image.bFlagErrorConcealment; pPortParam->format.image.eCompressionFormat = pPortDef->format.image.eCompressionFormat; pPortParam->format.image.eColorFormat = pPortDef->format.image.eColorFormat; pPortParam->format.image.pNativeWindow = pPortDef->format.image.pNativeWindow; break; case OMX_PortDomainOther: memcpy(&pPortParam->format.other, &pPortDef->format.other, sizeof(OMX_OTHER_PORTDEFINITIONTYPE)); break; default: DEBUG(DEB_LEV_ERR, "In %s wrong port domain. Out of OpenMAX scope\n",__func__); err = OMX_ErrorBadParameter; break; } /*If component state Idle/Pause/Executing and re-alloc the following private variables */ if ((omx_base_component_Private->state == OMX_StateIdle || omx_base_component_Private->state == OMX_StatePause || omx_base_component_Private->state == OMX_StateExecuting) && (pPortParam->nBufferCountActual > old_nBufferCountActual)) { // todo check if here it is not better != instead of > pPort = omx_base_component_Private->ports[pPortDef->nPortIndex]; if(pPort->pInternalBufferStorage) { pPort->pInternalBufferStorage = realloc(pPort->pInternalBufferStorage,pPort->sPortParam.nBufferCountActual*sizeof(OMX_BUFFERHEADERTYPE *)); } if(pPort->bBufferStateAllocated) { pPort->bBufferStateAllocated = realloc(pPort->bBufferStateAllocated,pPort->sPortParam.nBufferCountActual*sizeof(BUFFER_STATUS_FLAG)); for(j=0; j < pPort->sPortParam.nBufferCountActual; j++) { pPort->bBufferStateAllocated[j] = BUFFER_FREE; } } } } break; case OMX_IndexParamPriorityMgmt: if (omx_base_component_Private->state != OMX_StateLoaded && omx_base_component_Private->state != OMX_StateWaitForResources) { return OMX_ErrorIncorrectStateOperation; } pPrioMgmt = (OMX_PRIORITYMGMTTYPE*)ComponentParameterStructure; if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PRIORITYMGMTTYPE))) != OMX_ErrorNone) { break; } omx_base_component_Private->nGroupPriority = pPrioMgmt->nGroupPriority; omx_base_component_Private->nGroupID = pPrioMgmt->nGroupID; break; case OMX_IndexParamCompBufferSupplier: pBufferSupplier = (OMX_PARAM_BUFFERSUPPLIERTYPE*)ComponentParameterStructure; DEBUG(DEB_LEV_PARAMS, "In %s Buf Sup Port index=%d\n", __func__,(int)pBufferSupplier->nPortIndex); if(pBufferSupplier == NULL) { DEBUG(DEB_LEV_ERR, "In %s pBufferSupplier is null!\n",__func__); return OMX_ErrorBadParameter; } if(pBufferSupplier->nPortIndex > (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts)) { return OMX_ErrorBadPortIndex; } err = omx_base_component_ParameterSanityCheck(hComponent, pBufferSupplier->nPortIndex, pBufferSupplier, sizeof(OMX_PARAM_BUFFERSUPPLIERTYPE)); if(err==OMX_ErrorIncorrectStateOperation) { if (PORT_IS_ENABLED(omx_base_component_Private->ports[pBufferSupplier->nPortIndex])) { DEBUG(DEB_LEV_ERR, "In %s Incorrect State=%x\n",__func__,omx_base_component_Private->state); return OMX_ErrorIncorrectStateOperation; } } else if (err != OMX_ErrorNone) { break; } if (pBufferSupplier->eBufferSupplier == OMX_BufferSupplyUnspecified) { DEBUG(DEB_LEV_PARAMS, "In %s: port is already buffer supplier unspecified\n", __func__); return OMX_ErrorNone; } if ((PORT_IS_TUNNELED(omx_base_component_Private->ports[pBufferSupplier->nPortIndex])) == 0) { return OMX_ErrorNone; } pPort = omx_base_component_Private->ports[pBufferSupplier->nPortIndex]; if ((pBufferSupplier->eBufferSupplier == OMX_BufferSupplyInput) && (pPort->sPortParam.eDir == OMX_DirInput)) { /** These two cases regard the first stage of client override */ if (PORT_IS_BUFFER_SUPPLIER(pPort)) { err = OMX_ErrorNone; } pPort->nTunnelFlags |= TUNNEL_IS_SUPPLIER; pBufferSupplier->nPortIndex = pPort->nTunneledPort; err = OMX_SetParameter(pPort->hTunneledComponent, OMX_IndexParamCompBufferSupplier, pBufferSupplier); } else if ((pBufferSupplier->eBufferSupplier == OMX_BufferSupplyOutput) && (pPort->sPortParam.eDir == OMX_DirInput)) { if (PORT_IS_BUFFER_SUPPLIER(pPort)) { pPort->nTunnelFlags &= ~TUNNEL_IS_SUPPLIER; pBufferSupplier->nPortIndex = pPort->nTunneledPort; err = OMX_SetParameter(pPort->hTunneledComponent, OMX_IndexParamCompBufferSupplier, pBufferSupplier); } err = OMX_ErrorNone; } else if ((pBufferSupplier->eBufferSupplier == OMX_BufferSupplyOutput) && (pPort->sPortParam.eDir == OMX_DirOutput)) { /** these two cases regard the second stage of client override */ if (PORT_IS_BUFFER_SUPPLIER(pPort)) { err = OMX_ErrorNone; } pPort->nTunnelFlags |= TUNNEL_IS_SUPPLIER; } else { if (PORT_IS_BUFFER_SUPPLIER(pPort)) { pPort->nTunnelFlags &= ~TUNNEL_IS_SUPPLIER; err = OMX_ErrorNone; } err = OMX_ErrorNone; } DEBUG(DEB_LEV_PARAMS, "In %s port %d Tunnel flag=%x \n", __func__,(int)pBufferSupplier->nPortIndex, (int)pPort->nTunnelFlags); break; default: err = OMX_ErrorUnsupportedIndex; break; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, hComponent); return err; } /** @brief base GetConfig function * * This base function is not implemented. If a derived component * needs to support any config, it must implement a derived * version of this function and assign it to the correct pointer * in the private component descriptor */ OSCL_EXPORT_REF OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_GetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure) { return OMX_ErrorNone; } /** @brief base SetConfig function * * This base function is not implemented. If a derived component * needs to support any config, it must implement a derived * version of this function and assign it to the correct pointer * in the private component descriptor */ OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_SetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure) { return OMX_ErrorNone; } /** @brief base function not implemented * * This function can be eventually implemented by a * derived component if needed */ OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_GetExtensionIndex( OMX_HANDLETYPE hComponent, OMX_STRING cParameterName, OMX_INDEXTYPE* pIndexType) { DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, hComponent); if(strcmp(cParameterName,"OMX.st.index.param.BellagioThreadsID") == 0) { *pIndexType = OMX_IndexParameterThreadsID; } else { return OMX_ErrorBadParameter; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, hComponent); return OMX_ErrorNone; } /** @return the state of the component * * This function does not need any override by derived components */ OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_GetState( OMX_HANDLETYPE hComponent, OMX_STATETYPE* pState) { OMX_COMPONENTTYPE *omxcomponent = (OMX_COMPONENTTYPE*)hComponent; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)omxcomponent->pComponentPrivate; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, hComponent); *pState = omx_base_component_Private->state; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, hComponent); return OMX_ErrorNone; } /** @brief standard SendCommand function * * In general this function does not need a overwrite, but * a special derived component could do it. */ OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_SendCommand( OMX_HANDLETYPE hComponent, OMX_COMMANDTYPE Cmd, OMX_U32 nParam, OMX_PTR pCmdData) { OMX_COMPONENTTYPE* omxComponent = (OMX_COMPONENTTYPE*)hComponent; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)omxComponent->pComponentPrivate; internalRequestMessageType *message; queue_t* messageQueue; tsem_t* messageSem; OMX_U32 i,j,k; omx_base_PortType *pPort; OMX_ERRORTYPE err = OMX_ErrorNone; int errQue; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, hComponent); messageQueue = omx_base_component_Private->messageQueue; messageSem = omx_base_component_Private->messageSem; if (omx_base_component_Private->state == OMX_StateInvalid) { return OMX_ErrorInvalidState; } message = calloc(1,sizeof(internalRequestMessageType)); message->messageParam = nParam; message->pCmdData=pCmdData; /** Fill in the message */ switch (Cmd) { case OMX_CommandStateSet: message->messageType = OMX_CommandStateSet; if ((nParam == OMX_StateIdle) && (omx_base_component_Private->state == OMX_StateLoaded)) { /*Allocate Internal Buffer Storage and Buffer Allocation State flags*/ /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { pPort = omx_base_component_Private->ports[i]; if(pPort->pInternalBufferStorage == NULL) { pPort->pInternalBufferStorage = calloc(pPort->sPortParam.nBufferCountActual,sizeof(OMX_BUFFERHEADERTYPE *)); } if(pPort->bBufferStateAllocated == NULL) { pPort->bBufferStateAllocated = calloc(pPort->sPortParam.nBufferCountActual,sizeof(BUFFER_STATUS_FLAG)); } for(k=0; k < pPort->sPortParam.nBufferCountActual; k++) { pPort->bBufferStateAllocated[k] = BUFFER_FREE; } } } omx_base_component_Private->transientState = OMX_TransStateLoadedToIdle; } else if ((nParam == OMX_StateLoaded) && (omx_base_component_Private->state == OMX_StateIdle)) { omx_base_component_Private->transientState = OMX_TransStateIdleToLoaded; } else if ((nParam == OMX_StateIdle) && (omx_base_component_Private->state == OMX_StateExecuting)) { omx_base_component_Private->transientState = OMX_TransStateExecutingToIdle; } else if ((nParam == OMX_StateIdle) && (omx_base_component_Private->state == OMX_StatePause)) { omx_base_component_Private->transientState = OMX_TransStatePauseToIdle; } break; case OMX_CommandFlush: if (nParam >= (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts) && nParam != OMX_ALL) { return OMX_ErrorBadPortIndex; } message->messageType = OMX_CommandFlush; break; case OMX_CommandPortDisable: if (nParam >= (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts) && nParam != OMX_ALL) { return OMX_ErrorBadPortIndex; } message->messageType = OMX_CommandPortDisable; if(message->messageParam == OMX_ALL) { /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { omx_base_component_Private->ports[i]->bIsTransientToDisabled = OMX_TRUE; } } } else { omx_base_component_Private->ports[message->messageParam]->bIsTransientToDisabled = OMX_TRUE; } break; case OMX_CommandPortEnable: if (nParam >= (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts) && nParam != OMX_ALL) { return OMX_ErrorBadPortIndex; } message->messageType = OMX_CommandPortEnable; if(message->messageParam == OMX_ALL) { /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { omx_base_component_Private->ports[i]->bIsTransientToEnabled = OMX_TRUE; } } } else { omx_base_component_Private->ports[message->messageParam]->bIsTransientToEnabled = OMX_TRUE; } break; case OMX_CommandMarkBuffer: if (nParam >= (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts) && nParam != OMX_ALL) { return OMX_ErrorBadPortIndex; } message->messageType = OMX_CommandMarkBuffer; break; default: err = OMX_ErrorUnsupportedIndex; break; } if (err == OMX_ErrorNone) { errQue = queue(messageQueue, message); if (errQue) { /* /TODO the queue is full. This can be handled in a fine way with * some retrials, or other checking. For the moment this is a critical error * and simply causes the failure of this call */ return OMX_ErrorInsufficientResources; } tsem_up(messageSem); } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, hComponent); return err; } /** @brief Component's message handler thread function * * Handles all messages coming from components and * processes them by dispatching them back to the * triggering component. */ void* compMessageHandlerFunction(void* param) { OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE *)param; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; internalRequestMessageType *message; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, openmaxStandComp); omx_base_component_Private->bellagioThreads->nThreadMessageID = (long int)syscall(__NR_gettid); DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s the thread ID is %i\n", __func__, (int)omx_base_component_Private->bellagioThreads->nThreadMessageID); while(1){ /* Wait for an incoming message */ if (omx_base_component_Private == NULL) { break; } tsem_down(omx_base_component_Private->messageSem); DEBUG(DEB_LEV_FUNCTION_NAME, "In %s new message\n", __func__); /*Destructor has been called. So exit from the loop*/ if(omx_base_component_Private->state == OMX_StateInvalid) { DEBUG(DEB_LEV_FUNCTION_NAME, "In %s Destructor has been called. So exit from the loop\n", __func__); break; } /* Dequeue it */ message = dequeue(omx_base_component_Private->messageQueue); if(message == NULL){ DEBUG(DEB_LEV_ERR, "In %s: ouch!! had null message!\n", __func__); break; } /* Process it by calling component's message handler method */ omx_base_component_Private->messageHandler(openmaxStandComp, message); /* Message ownership has been transferred to us * so we gonna free it when finished. */ free(message); message = NULL; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, openmaxStandComp); return NULL; } /** This is called by the component message entry point. * In this base version this function is named compMessageHandlerFunction * * A request is made by the component when some asynchronous services are needed: * 1) A SendCommand() is to be processed * 2) An error needs to be notified * 3) ... * * @param openmaxStandComp the component itself * @param message the message that has been passed to core */ OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_MessageHandler(OMX_COMPONENTTYPE *openmaxStandComp,internalRequestMessageType* message) { omx_base_component_PrivateType* omx_base_component_Private=openmaxStandComp->pComponentPrivate; OMX_U32 i,j,k; OMX_ERRORTYPE err = OMX_ErrorNone; omx_base_PortType* pPort; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p with message %i\n", __func__, openmaxStandComp, message->messageType); /* Dealing with a SendCommand call. * -messageType contains the command to execute * -messageParam contains the parameter of the command * (destination state in case of a state change command). */ switch(message->messageType){ case OMX_CommandStateSet: { /* Do the actual state change */ err = (*(omx_base_component_Private->DoStateSet))(openmaxStandComp, message->messageParam); if (err != OMX_ErrorNone) { (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventError, /* The command was completed */ err, /* The commands was a OMX_CommandStateSet */ 0, /* The state has been changed in message->messageParam */ NULL); } else { /* And run the callback */ if (omx_base_component_Private->callbacks) { DEBUG(DEB_LEV_SIMPLE_SEQ, "running callback in %s\n", __func__); (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventCmdComplete, /* The command was completed */ OMX_CommandStateSet, /* The commands was a OMX_CommandStateSet */ message->messageParam, /* The state has been changed in message->messageParam */ NULL); } } } break; case OMX_CommandFlush: { /*Flush port/s*/ if(message->messageParam == OMX_ALL) { /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { omx_base_component_Private->ports[i]->bIsPortFlushed = OMX_TRUE; } } /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { pPort=omx_base_component_Private->ports[i]; err = pPort->FlushProcessingBuffers(pPort); } } } else { pPort=omx_base_component_Private->ports[message->messageParam]; err = pPort->FlushProcessingBuffers(pPort); } if (err != OMX_ErrorNone) { (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventError, /* The command was completed */ err, /* The commands was a OMX_CommandStateSet */ 0, /* The state has been changed in message->messageParam */ NULL); } else { if(message->messageParam == OMX_ALL){ /*Flush all port*/ /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventCmdComplete, /* The command was completed */ OMX_CommandFlush, /* The commands was a OMX_CommandStateSet */ i, /* The state has been changed in message->messageParam */ NULL); pPort=omx_base_component_Private->ports[i]; /* Signal the buffer Semaphore and the buffer managment semaphore, to restart the exchange of buffers after flush */ if (PORT_IS_TUNNELED(pPort) && PORT_IS_BUFFER_SUPPLIER(pPort)) { for(k=0;knNumTunnelBuffer;k++) { tsem_up(pPort->pBufferSem); /*signal buffer management thread availability of buffers*/ tsem_up(omx_base_component_Private->bMgmtSem); } } } } } else {/*Flush input/output port*/ (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventCmdComplete, /* The command was completed */ OMX_CommandFlush, /* The commands was a OMX_CommandStateSet */ message->messageParam, /* The state has been changed in message->messageParam */ NULL); /* Signal the buffer Semaphore and the buffer managment semaphore, to restart the exchange of buffers after flush */ if (PORT_IS_TUNNELED(omx_base_component_Private->ports[message->messageParam]) && PORT_IS_BUFFER_SUPPLIER(omx_base_component_Private->ports[message->messageParam])) { for(j=0;jports[message->messageParam]->nNumTunnelBuffer;j++) { tsem_up(omx_base_component_Private->ports[message->messageParam]->pBufferSem); /*signal buffer management thread availability of buffers*/ tsem_up(omx_base_component_Private->bMgmtSem); } } } } } break; case OMX_CommandPortDisable: { /*Flush port/s*/ if(message->messageParam == OMX_ALL) { /*If Component is not in loaded state,then First Flush all buffers then disable the port*/ if(omx_base_component_Private->state!=OMX_StateLoaded) { /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { pPort=omx_base_component_Private->ports[i]; err = pPort->FlushProcessingBuffers(pPort); } } } /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { pPort=omx_base_component_Private->ports[i]; err = pPort->Port_DisablePort(pPort); } } } else { pPort=omx_base_component_Private->ports[message->messageParam]; if(omx_base_component_Private->state!=OMX_StateLoaded) { err = pPort->FlushProcessingBuffers(pPort); DEBUG(DEB_LEV_FULL_SEQ, "In %s: Port Flush completed for Comp %s\n",__func__,omx_base_component_Private->name); } err = pPort->Port_DisablePort(pPort); } /** This condition is added to pass the tests, it is not significant for the environment */ if (err != OMX_ErrorNone) { (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventError, /* The command was completed */ err, /* The commands was a OMX_CommandStateSet */ 0, /* The state has been changed in message->messageParam */ NULL); } else { if(message->messageParam == OMX_ALL){ /*Disable all ports*/ /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventCmdComplete, /* The command was completed */ OMX_CommandPortDisable, /* The commands was a OMX_CommandStateSet */ i, /* The state has been changed in message->messageParam */ NULL); } } } else { (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventCmdComplete, /* The command was completed */ OMX_CommandPortDisable, /* The commands was a OMX_CommandStateSet */ message->messageParam, /* The state has been changed in message->messageParam */ NULL); } } } break; case OMX_CommandPortEnable:{ /*Flush port/s*/ if(message->messageParam == OMX_ALL) { /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { pPort=omx_base_component_Private->ports[i]; err = pPort->Port_EnablePort(pPort); } } } else { pPort=omx_base_component_Private->ports[message->messageParam]; err = pPort->Port_EnablePort(pPort); } if (err != OMX_ErrorNone) { (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventError, /* The command was completed */ err, /* The commands was a OMX_CommandStateSet */ 0, /* The state has been changed in message->messageParam */ NULL); } else { if(message->messageParam != OMX_ALL) { (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventCmdComplete, /* The command was completed */ OMX_CommandPortEnable, /* The commands was a OMX_CommandStateSet */ message->messageParam, /* The state has been changed in message->messageParam */ NULL); if (omx_base_component_Private->state==OMX_StateExecuting) { pPort=omx_base_component_Private->ports[message->messageParam]; if (PORT_IS_BUFFER_SUPPLIER(pPort)) { for(i=0; i < pPort->sPortParam.nBufferCountActual;i++) { tsem_up(pPort->pBufferSem); tsem_up(omx_base_component_Private->bMgmtSem); } } } } else { /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventCmdComplete, /* The command was completed */ OMX_CommandPortEnable, /* The commands was a OMX_CommandStateSet */ i, /* The state has been changed in message->messageParam */ NULL); } } if (omx_base_component_Private->state==OMX_StateExecuting) { /* for all ports */ for(j = 0; j < NUM_DOMAINS; j++) { for(i = omx_base_component_Private->sPortTypesParam[j].nStartPortNumber; i < omx_base_component_Private->sPortTypesParam[j].nStartPortNumber + omx_base_component_Private->sPortTypesParam[j].nPorts; i++) { pPort=omx_base_component_Private->ports[i]; if (PORT_IS_BUFFER_SUPPLIER(pPort)) { for(k=0; k < pPort->sPortParam.nBufferCountActual;k++) { tsem_up(pPort->pBufferSem); tsem_up(omx_base_component_Private->bMgmtSem); } } } } } } } } break; case OMX_CommandMarkBuffer: { omx_base_component_Private->pMark.hMarkTargetComponent = ((OMX_MARKTYPE *)message->pCmdData)->hMarkTargetComponent; omx_base_component_Private->pMark.pMarkData = ((OMX_MARKTYPE *)message->pCmdData)->pMarkData; } break; default: DEBUG(DEB_LEV_ERR, "In %s: Unrecognized command %i\n", __func__, message->messageType); break; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, openmaxStandComp); return OMX_ErrorNone; } OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_AllocateBuffer( OMX_HANDLETYPE hComponent, OMX_BUFFERHEADERTYPE** ppBuffer, OMX_U32 nPortIndex, OMX_PTR pAppPrivate, OMX_U32 nSizeBytes) { omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)((OMX_COMPONENTTYPE*)hComponent)->pComponentPrivate; omx_base_PortType *pPort; OMX_ERRORTYPE err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, hComponent); if (nPortIndex >= (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts)) { DEBUG(DEB_LEV_ERR, "In %s: wrong port index\n", __func__); return OMX_ErrorBadPortIndex; } pPort = omx_base_component_Private->ports[nPortIndex]; err = pPort->Port_AllocateBuffer(pPort, ppBuffer, nPortIndex, pAppPrivate, nSizeBytes); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Out of %s for component %p with err %i\n", __func__, hComponent, (int)err); return err; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p buffer %p\n", __func__, hComponent, ppBuffer); return OMX_ErrorNone; } OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_UseBuffer( OMX_HANDLETYPE hComponent, OMX_BUFFERHEADERTYPE** ppBufferHdr, OMX_U32 nPortIndex, OMX_PTR pAppPrivate, OMX_U32 nSizeBytes, OMX_U8* pBuffer) { omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)((OMX_COMPONENTTYPE*)hComponent)->pComponentPrivate; omx_base_PortType *pPort; OMX_ERRORTYPE err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, hComponent); if (nPortIndex >= (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts)) { DEBUG(DEB_LEV_ERR, "In %s: wrong port index\n", __func__); return OMX_ErrorBadPortIndex; } pPort = omx_base_component_Private->ports[nPortIndex]; err = pPort->Port_UseBuffer(pPort, ppBufferHdr, nPortIndex, pAppPrivate, nSizeBytes, pBuffer); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Out of %s for component %p with err %i\n", __func__, hComponent, (int)err); return err; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, hComponent); return OMX_ErrorNone; } OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_UseEGLImage ( OMX_HANDLETYPE hComponent, OMX_BUFFERHEADERTYPE** ppBufferHdr, OMX_U32 nPortIndex, OMX_PTR pAppPrivate, void* eglImage) { return OMX_ErrorNotImplemented; } OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_FreeBuffer( OMX_HANDLETYPE hComponent, OMX_U32 nPortIndex, OMX_BUFFERHEADERTYPE* pBuffer) { omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)((OMX_COMPONENTTYPE*)hComponent)->pComponentPrivate; omx_base_PortType *pPort; OMX_ERRORTYPE err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, hComponent); if (nPortIndex >= (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts)) { DEBUG(DEB_LEV_ERR, "In %s: wrong port index\n", __func__); return OMX_ErrorBadPortIndex; } pPort = omx_base_component_Private->ports[nPortIndex]; err = pPort->Port_FreeBuffer(pPort, nPortIndex, pBuffer); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Out of %s for component %p with err %i\n", __func__, hComponent, (int)err); return err; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, hComponent); return OMX_ErrorNone; } OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_EmptyThisBuffer( OMX_HANDLETYPE hComponent, OMX_BUFFERHEADERTYPE* pBuffer) { omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)((OMX_COMPONENTTYPE*)hComponent)->pComponentPrivate; omx_base_PortType *pPort; OMX_ERRORTYPE err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, hComponent); if (pBuffer->nInputPortIndex >= (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts)) { DEBUG(DEB_LEV_ERR, "In %s: wrong port index\n", __func__); return OMX_ErrorBadPortIndex; } pPort = omx_base_component_Private->ports[pBuffer->nInputPortIndex]; if (pPort->sPortParam.eDir != OMX_DirInput) { DEBUG(DEB_LEV_ERR, "In %s: wrong port direction in Component %s\n", __func__,omx_base_component_Private->name); return OMX_ErrorBadPortIndex; } err = pPort->Port_SendBufferFunction(pPort, pBuffer); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Out of %s for component %p with err %s\n", __func__, hComponent, errorName(err)); return err; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, hComponent); return OMX_ErrorNone; } OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_FillThisBuffer( OMX_HANDLETYPE hComponent, OMX_BUFFERHEADERTYPE* pBuffer) { omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)((OMX_COMPONENTTYPE*)hComponent)->pComponentPrivate; omx_base_PortType *pPort; OMX_ERRORTYPE err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, hComponent); if (pBuffer->nOutputPortIndex >= (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts)) { DEBUG(DEB_LEV_ERR, "In %s: wrong port index\n", __func__); return OMX_ErrorBadPortIndex; } pPort = omx_base_component_Private->ports[pBuffer->nOutputPortIndex]; if (pPort->sPortParam.eDir != OMX_DirOutput) { DEBUG(DEB_LEV_ERR, "In %s: wrong port(%d) direction(%x) pBuffer=%p in Component %s\n", __func__, (int)pBuffer->nOutputPortIndex, (int)pPort->sPortParam.eDir, pBuffer, omx_base_component_Private->name); return OMX_ErrorBadPortIndex; } err = pPort->Port_SendBufferFunction(pPort, pBuffer); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Out of %s for component %p with err %s\n", __func__, hComponent, errorName(err)); return err; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, hComponent); return OMX_ErrorNone; } OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_component_ComponentTunnelRequest( OMX_HANDLETYPE hComponent, OMX_U32 nPort, OMX_HANDLETYPE hTunneledComp, OMX_U32 nTunneledPort, OMX_TUNNELSETUPTYPE* pTunnelSetup) { omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)((OMX_COMPONENTTYPE*)hComponent)->pComponentPrivate; omx_base_PortType *pPort; OMX_ERRORTYPE err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, hComponent); if (nPort >= (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts)) { return OMX_ErrorBadPortIndex; } pPort = omx_base_component_Private->ports[nPort]; err = pPort->ComponentTunnelRequest(pPort, hTunneledComp, nTunneledPort, pTunnelSetup); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "Out of %s for component %p with err %i\n", __func__, hComponent, (int)err); return err; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, hComponent); return OMX_ErrorNone; } OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_getQualityLevel(OMX_COMPONENTTYPE *openmaxStandComp, OMX_U32* pQualityLevel) { omx_base_component_PrivateType* omx_base_component_Private = openmaxStandComp->pComponentPrivate; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); *pQualityLevel = omx_base_component_Private->currentQualityLevel; return OMX_ErrorNone; } OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_setQualityLevel(OMX_COMPONENTTYPE *openmaxStandComp, OMX_U32 nQualityLevel) { omx_base_component_PrivateType* omx_base_component_Private = openmaxStandComp->pComponentPrivate; /* this change is done regardless to the state. When the way to change effectively quality in a component is known * change this function adding state checks */ DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s setting %i of %i\n", __func__, (int)nQualityLevel, (int)omx_base_component_Private->nqualitylevels); if ((nQualityLevel > 0) && (nQualityLevel <= omx_base_component_Private->nqualitylevels)) { omx_base_component_Private->currentQualityLevel = nQualityLevel; return OMX_ErrorNone; } else { return OMX_ErrorBadParameter; } } #ifdef __cplusplus } #endif libomxil-bellagio-0.9.3/src/base/omx_base_audio_port.c0000644000175000017500000001124711513256766017747 00000000000000/** src/base/omx_base_audio_port.c Base Audio Port class for OpenMAX ports to be used in derived components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include "omx_base_component.h" #include "omx_base_audio_port.h" /** * @brief The base constructor for the generic OpenMAX ST Audio port * * This function is executed by the component that uses a port. * The parameter contains the info about the component. * It takes care of constructing the instance of the port and * every object needed by the base port. * * @param openmaxStandComp pointer to the Handle of the component * @param openmaxStandPort the ST port to be initialized * @param nPortIndex Index of the port to be constructed * @param isInput specifies if the port is an input or an output * * @return OMX_ErrorInsufficientResources if a memory allocation fails */ OMX_ERRORTYPE base_audio_port_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,omx_base_PortType **openmaxStandPort,OMX_U32 nPortIndex, OMX_BOOL isInput) { OMX_ERRORTYPE err; omx_base_audio_PortType *omx_base_audio_Port; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s of component %p\n", __func__, openmaxStandComp); if (!(*openmaxStandPort)) { *openmaxStandPort = calloc(1, sizeof(omx_base_audio_PortType)); } if (!(*openmaxStandPort)) { return OMX_ErrorInsufficientResources; } err = base_port_Constructor(openmaxStandComp,openmaxStandPort,nPortIndex, isInput); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s base port constructor failed\n", __func__); return err; } omx_base_audio_Port = (omx_base_audio_PortType *)*openmaxStandPort; setHeader(&omx_base_audio_Port->sAudioParam, sizeof(OMX_AUDIO_PARAM_PORTFORMATTYPE)); omx_base_audio_Port->sAudioParam.nPortIndex = nPortIndex; omx_base_audio_Port->sAudioParam.nIndex = 0; omx_base_audio_Port->sAudioParam.eEncoding = OMX_AUDIO_CodingUnused; omx_base_audio_Port->sPortParam.eDomain = OMX_PortDomainAudio; omx_base_audio_Port->sPortParam.format.audio.cMIMEType = malloc(DEFAULT_MIME_STRING_LENGTH); if (!omx_base_audio_Port->sPortParam.format.audio.cMIMEType) { DEBUG(DEB_LEV_ERR, "Memory allocation failed in %s\n", __func__); return OMX_ErrorInsufficientResources; } strcpy(omx_base_audio_Port->sPortParam.format.audio.cMIMEType, "raw/audio"); omx_base_audio_Port->sPortParam.format.audio.pNativeRender = 0; omx_base_audio_Port->sPortParam.format.audio.bFlagErrorConcealment = OMX_FALSE; omx_base_audio_Port->sPortParam.format.audio.eEncoding = OMX_AUDIO_CodingUnused; omx_base_audio_Port->sPortParam.nBufferSize = (isInput == OMX_TRUE)?DEFAULT_IN_BUFFER_SIZE:DEFAULT_OUT_BUFFER_SIZE ; omx_base_audio_Port->PortDestructor = &base_audio_port_Destructor; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s of component %p\n", __func__, openmaxStandComp); return OMX_ErrorNone; } /** * @brief The base audio port destructor for the generic OpenMAX ST Audio port * * This function is executed by the component that uses a port. * The parameter contains the info about the port. * It takes care of destructing the instance of the port * * @param openmaxStandPort the ST port to be destructed * * @return OMX_ErrorNone */ OMX_ERRORTYPE base_audio_port_Destructor(omx_base_PortType *openmaxStandPort){ OMX_ERRORTYPE err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s of port %p\n", __func__, openmaxStandPort); if(openmaxStandPort->sPortParam.format.audio.cMIMEType) { free(openmaxStandPort->sPortParam.format.audio.cMIMEType); openmaxStandPort->sPortParam.format.audio.cMIMEType = NULL; } err = base_port_Destructor(openmaxStandPort); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s base port destructor failed\n", __func__); return err; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s of port %p\n", __func__, openmaxStandPort); return OMX_ErrorNone; } libomxil-bellagio-0.9.3/src/base/omx_base_filter.c0000644000175000017500000003221211513256766017062 00000000000000/** src/base/omx_base_filter.c OpenMAX Base Filter component. This component does not perform any multimedia processing. It derives from base component and contains two ports. It can be used as a base class for codec and filter components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include "omx_base_filter.h" OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_filter_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,OMX_STRING cComponentName) { OMX_ERRORTYPE err; omx_base_filter_PrivateType* omx_base_filter_Private; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s of component %p\n", __func__, openmaxStandComp); if (openmaxStandComp->pComponentPrivate) { omx_base_filter_Private = (omx_base_filter_PrivateType*)openmaxStandComp->pComponentPrivate; } else { omx_base_filter_Private = calloc(1,sizeof(omx_base_filter_PrivateType)); if (!omx_base_filter_Private) { DEBUG(DEB_LEV_ERR, "Insufficient memory in %s\n", __func__); return OMX_ErrorInsufficientResources; } openmaxStandComp->pComponentPrivate=omx_base_filter_Private; } /* Call the base class constructor */ err = omx_base_component_Constructor(openmaxStandComp,cComponentName); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "The base constructor failed in %s\n", __func__); return err; } /* here we can override whatever defaults the base_component constructor set * e.g. we can override the function pointers in the private struct */ omx_base_filter_Private = openmaxStandComp->pComponentPrivate; omx_base_filter_Private->BufferMgmtFunction = omx_base_filter_BufferMgmtFunction; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s of component %p\n", __func__, openmaxStandComp); return OMX_ErrorNone; } OSCL_EXPORT_REF OMX_ERRORTYPE omx_base_filter_Destructor(OMX_COMPONENTTYPE *openmaxStandComp) { OMX_ERRORTYPE err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s of component %p\n", __func__, openmaxStandComp); err = omx_base_component_Destructor(openmaxStandComp); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "The base component destructor failed\n"); return err; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s of component %p\n", __func__, openmaxStandComp); return OMX_ErrorNone; } /** This is the central function for component processing. It * is executed in a separate thread, is synchronized with * semaphores at each port, those are released each time a new buffer * is available on the given port. */ void* omx_base_filter_BufferMgmtFunction (void* param) { OMX_COMPONENTTYPE* openmaxStandComp = (OMX_COMPONENTTYPE*)param; omx_base_filter_PrivateType* omx_base_filter_Private = (omx_base_filter_PrivateType*)openmaxStandComp->pComponentPrivate; omx_base_PortType *pInPort=(omx_base_PortType *)omx_base_filter_Private->ports[OMX_BASE_FILTER_INPUTPORT_INDEX]; omx_base_PortType *pOutPort=(omx_base_PortType *)omx_base_filter_Private->ports[OMX_BASE_FILTER_OUTPUTPORT_INDEX]; tsem_t* pInputSem = pInPort->pBufferSem; tsem_t* pOutputSem = pOutPort->pBufferSem; queue_t* pInputQueue = pInPort->pBufferQueue; queue_t* pOutputQueue = pOutPort->pBufferQueue; OMX_BUFFERHEADERTYPE* pOutputBuffer=NULL; OMX_BUFFERHEADERTYPE* pInputBuffer=NULL; OMX_BOOL isInputBufferNeeded=OMX_TRUE,isOutputBufferNeeded=OMX_TRUE; int inBufExchanged=0,outBufExchanged=0; omx_base_filter_Private->bellagioThreads->nThreadBufferMngtID = (long int)syscall(__NR_gettid); DEBUG(DEB_LEV_FUNCTION_NAME, "In %s of component %p\n", __func__, openmaxStandComp); DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s the thread ID is %i\n", __func__, (int)omx_base_filter_Private->bellagioThreads->nThreadBufferMngtID); DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); /* checks if the component is in a state able to receive buffers */ while(omx_base_filter_Private->state == OMX_StateIdle || omx_base_filter_Private->state == OMX_StateExecuting || omx_base_filter_Private->state == OMX_StatePause || omx_base_filter_Private->transientState == OMX_TransStateLoadedToIdle){ /*Wait till the ports are being flushed*/ pthread_mutex_lock(&omx_base_filter_Private->flush_mutex); while( PORT_IS_BEING_FLUSHED(pInPort) || PORT_IS_BEING_FLUSHED(pOutPort)) { pthread_mutex_unlock(&omx_base_filter_Private->flush_mutex); DEBUG(DEB_LEV_FULL_SEQ, "In %s 1 signaling flush all cond iE=%d,iF=%d,oE=%d,oF=%d iSemVal=%d,oSemval=%d\n", __func__,inBufExchanged,isInputBufferNeeded,outBufExchanged,isOutputBufferNeeded,pInputSem->semval,pOutputSem->semval); if(isOutputBufferNeeded==OMX_FALSE && PORT_IS_BEING_FLUSHED(pOutPort)) { pOutPort->ReturnBufferFunction(pOutPort,pOutputBuffer); outBufExchanged--; pOutputBuffer=NULL; isOutputBufferNeeded=OMX_TRUE; DEBUG(DEB_LEV_FULL_SEQ, "Ports are flushing,so returning output buffer\n"); } if(isInputBufferNeeded==OMX_FALSE && PORT_IS_BEING_FLUSHED(pInPort)) { pInPort->ReturnBufferFunction(pInPort,pInputBuffer); inBufExchanged--; pInputBuffer=NULL; isInputBufferNeeded=OMX_TRUE; DEBUG(DEB_LEV_FULL_SEQ, "Ports are flushing,so returning input buffer\n"); } DEBUG(DEB_LEV_FULL_SEQ, "In %s 2 signaling flush all cond iE=%d,iF=%d,oE=%d,oF=%d iSemVal=%d,oSemval=%d\n", __func__,inBufExchanged,isInputBufferNeeded,outBufExchanged,isOutputBufferNeeded,pInputSem->semval,pOutputSem->semval); tsem_up(omx_base_filter_Private->flush_all_condition); tsem_down(omx_base_filter_Private->flush_condition); pthread_mutex_lock(&omx_base_filter_Private->flush_mutex); } pthread_mutex_unlock(&omx_base_filter_Private->flush_mutex); /*No buffer to process. So wait here*/ if((isInputBufferNeeded==OMX_TRUE && pInputSem->semval==0) && (omx_base_filter_Private->state != OMX_StateLoaded && omx_base_filter_Private->state != OMX_StateInvalid)) { //Signaled from EmptyThisBuffer or FillThisBuffer or some thing else DEBUG(DEB_LEV_FULL_SEQ, "Waiting for next input/output buffer\n"); tsem_down(omx_base_filter_Private->bMgmtSem); } if(omx_base_filter_Private->state == OMX_StateLoaded || omx_base_filter_Private->state == OMX_StateInvalid) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Buffer Management Thread is exiting\n",__func__); break; } if((isOutputBufferNeeded==OMX_TRUE && pOutputSem->semval==0) && (omx_base_filter_Private->state != OMX_StateLoaded && omx_base_filter_Private->state != OMX_StateInvalid) && !(PORT_IS_BEING_FLUSHED(pInPort) || PORT_IS_BEING_FLUSHED(pOutPort))) { //Signaled from EmptyThisBuffer or FillThisBuffer or some thing else DEBUG(DEB_LEV_FULL_SEQ, "Waiting for next input/output buffer\n"); tsem_down(omx_base_filter_Private->bMgmtSem); } if(omx_base_filter_Private->state == OMX_StateLoaded || omx_base_filter_Private->state == OMX_StateInvalid) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Buffer Management Thread is exiting\n",__func__); break; } DEBUG(DEB_LEV_FULL_SEQ, "Waiting for input buffer semval=%d in %s\n",pInputSem->semval, __func__); if(pInputSem->semval>0 && isInputBufferNeeded==OMX_TRUE ) { tsem_down(pInputSem); if(pInputQueue->nelem>0){ inBufExchanged++; isInputBufferNeeded=OMX_FALSE; pInputBuffer = dequeue(pInputQueue); if(pInputBuffer == NULL){ DEBUG(DEB_LEV_ERR, "Had NULL input buffer!!\n"); break; } } } /*When we have input buffer to process then get one output buffer*/ if(pOutputSem->semval>0 && isOutputBufferNeeded==OMX_TRUE) { tsem_down(pOutputSem); if(pOutputQueue->nelem>0){ outBufExchanged++; isOutputBufferNeeded=OMX_FALSE; pOutputBuffer = dequeue(pOutputQueue); if(pOutputBuffer == NULL){ DEBUG(DEB_LEV_ERR, "Had NULL output buffer!! op is=%d,iq=%d\n",pOutputSem->semval,pOutputQueue->nelem); break; } } } if(isInputBufferNeeded==OMX_FALSE) { if(pInputBuffer->hMarkTargetComponent != NULL){ if((OMX_COMPONENTTYPE*)pInputBuffer->hMarkTargetComponent ==(OMX_COMPONENTTYPE *)openmaxStandComp) { /*Clear the mark and generate an event*/ (*(omx_base_filter_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_filter_Private->callbackData, OMX_EventMark, /* The command was completed */ 1, /* The commands was a OMX_CommandStateSet */ 0, /* The state has been changed in message->messageParam2 */ pInputBuffer->pMarkData); } else { /*If this is not the target component then pass the mark*/ omx_base_filter_Private->pMark.hMarkTargetComponent = pInputBuffer->hMarkTargetComponent; omx_base_filter_Private->pMark.pMarkData = pInputBuffer->pMarkData; } pInputBuffer->hMarkTargetComponent = NULL; } } if(isInputBufferNeeded==OMX_FALSE && isOutputBufferNeeded==OMX_FALSE) { if(omx_base_filter_Private->pMark.hMarkTargetComponent != NULL){ pOutputBuffer->hMarkTargetComponent = omx_base_filter_Private->pMark.hMarkTargetComponent; pOutputBuffer->pMarkData = omx_base_filter_Private->pMark.pMarkData; omx_base_filter_Private->pMark.hMarkTargetComponent = NULL; omx_base_filter_Private->pMark.pMarkData = NULL; } pOutputBuffer->nTimeStamp = pInputBuffer->nTimeStamp; if((pInputBuffer->nFlags & OMX_BUFFERFLAG_STARTTIME) == OMX_BUFFERFLAG_STARTTIME) { DEBUG(DEB_LEV_FULL_SEQ, "Detected START TIME flag in the input buffer filled len=%d\n", (int)pInputBuffer->nFilledLen); pOutputBuffer->nFlags = pInputBuffer->nFlags; pInputBuffer->nFlags = 0; } if(omx_base_filter_Private->state == OMX_StateExecuting) { if (omx_base_filter_Private->BufferMgmtCallback && pInputBuffer->nFilledLen > 0) { (*(omx_base_filter_Private->BufferMgmtCallback))(openmaxStandComp, pInputBuffer, pOutputBuffer); } else { /*It no buffer management call back the explicitly consume input buffer*/ pInputBuffer->nFilledLen = 0; } } else if(!(PORT_IS_BEING_FLUSHED(pInPort) || PORT_IS_BEING_FLUSHED(pOutPort))) { DEBUG(DEB_LEV_ERR, "In %s Received Buffer in non-Executing State(%x)\n", __func__, (int)omx_base_filter_Private->state); } else { pInputBuffer->nFilledLen = 0; } if((pInputBuffer->nFlags & OMX_BUFFERFLAG_EOS) == OMX_BUFFERFLAG_EOS && pInputBuffer->nFilledLen==0) { DEBUG(DEB_LEV_FULL_SEQ, "Detected EOS flags in input buffer filled len=%d\n", (int)pInputBuffer->nFilledLen); pOutputBuffer->nFlags=pInputBuffer->nFlags; pInputBuffer->nFlags=0; (*(omx_base_filter_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_filter_Private->callbackData, OMX_EventBufferFlag, /* The command was completed */ 1, /* The commands was a OMX_CommandStateSet */ pOutputBuffer->nFlags, /* The state has been changed in message->messageParam2 */ NULL); omx_base_filter_Private->bIsEOSReached = OMX_TRUE; } if(omx_base_filter_Private->state==OMX_StatePause && !(PORT_IS_BEING_FLUSHED(pInPort) || PORT_IS_BEING_FLUSHED(pOutPort))) { /*Waiting at paused state*/ tsem_wait(omx_base_filter_Private->bStateSem); } /*If EOS and Input buffer Filled Len Zero then Return output buffer immediately*/ if((pOutputBuffer->nFilledLen != 0) || ((pOutputBuffer->nFlags & OMX_BUFFERFLAG_EOS) == OMX_BUFFERFLAG_EOS) || (omx_base_filter_Private->bIsEOSReached == OMX_TRUE)) { pOutPort->ReturnBufferFunction(pOutPort,pOutputBuffer); outBufExchanged--; pOutputBuffer=NULL; isOutputBufferNeeded=OMX_TRUE; } } if(omx_base_filter_Private->state==OMX_StatePause && !(PORT_IS_BEING_FLUSHED(pInPort) || PORT_IS_BEING_FLUSHED(pOutPort))) { /*Waiting at paused state*/ tsem_wait(omx_base_filter_Private->bStateSem); } /*Input Buffer has been completely consumed. So, return input buffer*/ if((isInputBufferNeeded == OMX_FALSE) && (pInputBuffer->nFilledLen==0)) { pInPort->ReturnBufferFunction(pInPort,pInputBuffer); inBufExchanged--; pInputBuffer=NULL; isInputBufferNeeded=OMX_TRUE; } } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s of component %p\n", __func__, openmaxStandComp); return NULL; } libomxil-bellagio-0.9.3/src/base/omx_classmagic.h0000644000175000017500000000522611513256766016723 00000000000000/** src/base/omx_classmagic.h This file contains class handling helper macros It is left as an exercise to the reader how they do the magic (FIXME) Usage Rules: 1) include this file 2) if your don't inherit, start your class with CLASS(classname) 3) if you inherit something, start your class with DERIVEDCLASS(classname, inheritedclassname) 4) end your class with ENDCLASS(classname) 5) define your class variables with a #define classname_FIELDS inheritedclassname_FIELDS inside your class and always add a backslash at the end of line (except last) 6) if you want to use doxygen, use C-style comments inside the #define, and enable macro expansion in doxyconf and predefine DOXYGEN_PREPROCESSING there, etc. See examples at the end of this file (in #if 0 block) Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef OMX_CLASSMAGIC_H_ #define OMX_CLASSMAGIC_H_ #ifdef DOXYGEN_PREPROCESSING #define CLASS(a) class a { public: #define DERIVEDCLASS(a, b) class a : public b { public: #define ENDCLASS(a) a##_FIELDS }; #else #define CLASS(a) typedef struct a a; \ struct a { #define DERIVEDCLASS(a, b) typedef struct a a; \ struct a { #define ENDCLASS(a) a##_FIELDS }; #endif #if 0 /*EXAMPLES*/ /** * Class A is a nice class */ CLASS(A) #define A_FIELDS \ /** @param a very nice parameter */ \ int a; \ /** @param ash another very nice parameter */ \ int ash; ENDCLASS(A) /** * Class B is a nice derived class */ DERIVEDCLASS(B,A) #define B_FIELDS A_FIELDS \ /** @param b very nice parameter */ \ int b; ENDCLASS(B) /** * Class B2 is a nice derived class */ DERIVEDCLASS(B2,A) #define B2_FIELDS A_FIELDS \ /** @param b2 very nice parameter */ \ int b2; ENDCLASS(B2) /** * Class C is an even nicer derived class. */ DERIVEDCLASS(C,B) #define C_FIELDS B_FIELDS \ /** @param c very nice parameter */ \ int c; ENDCLASS(C) #endif /* 0 */ #endif libomxil-bellagio-0.9.3/src/base/Makefile.in0000644000175000017500000006625511565413754015636 00000000000000# Makefile.in generated by automake 1.11.1 from Makefile.am. # @configure_input@ # Copyright (C) 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, # 2003, 2004, 2005, 2006, 2007, 2008, 2009 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@ 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distdir dvi dvi-am html html-am info info-am \ install install-am install-data install-data-am install-dvi \ install-dvi-am install-exec install-exec-am install-html \ install-html-am install-info install-info-am install-man \ install-pdf install-pdf-am install-ps install-ps-am \ install-strip installcheck installcheck-am installdirs \ maintainer-clean maintainer-clean-generic mostlyclean \ mostlyclean-compile mostlyclean-generic mostlyclean-libtool \ pdf pdf-am ps ps-am tags uninstall uninstall-am # 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: libomxil-bellagio-0.9.3/src/base/omx_base_port.c0000644000175000017500000015104511513256766016567 00000000000000/** src/base/omx_base_port.c Base class for OpenMAX ports to be used in derived components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include "omx_base_component.h" #include "omx_base_port.h" /** The default value for the number of needed buffers for each port. */ #define DEFAULT_NUMBER_BUFFERS_PER_PORT 2 /** The default value for the minimum number of needed buffers for each port. */ #define DEFAULT_MIN_NUMBER_BUFFERS_PER_PORT 2 /** * @brief The base contructor for the generic OpenMAX ST port * * This function is executed by the component that uses a port. * The parameter contains the info about the component. * It takes care of constructing the instance of the port and * every object needed by the base port. * * @param openmaxStandComp in the component that holds the port * @param openmaxStandPort the ST port to be initialized * @param nPortIndex the index of the port * @param isInput specifies if the port is an input or an output * * @return OMX_ErrorInsufficientResources if a memory allocation fails */ OMX_ERRORTYPE base_port_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,omx_base_PortType **openmaxStandPort,OMX_U32 nPortIndex, OMX_BOOL isInput) { DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, openmaxStandComp); // create ports, but only if the subclass hasn't done it if (!(*openmaxStandPort)) { *openmaxStandPort = calloc(1,sizeof (omx_base_PortType)); } if (!(*openmaxStandPort)) { DEBUG(DEB_LEV_ERR, "Out of %s for component %p for a lack of resources\n", __func__, openmaxStandComp); return OMX_ErrorInsufficientResources; } (*openmaxStandPort)->hTunneledComponent = NULL; (*openmaxStandPort)->nTunnelFlags=0; (*openmaxStandPort)->nTunneledPort=0; (*openmaxStandPort)->eBufferSupplier=OMX_BufferSupplyUnspecified; (*openmaxStandPort)->nNumTunnelBuffer=0; if((*openmaxStandPort)->pAllocSem==NULL) { (*openmaxStandPort)->pAllocSem = calloc(1,sizeof(tsem_t)); if((*openmaxStandPort)->pAllocSem==NULL) { return OMX_ErrorInsufficientResources; } tsem_init((*openmaxStandPort)->pAllocSem, 0); } (*openmaxStandPort)->nNumBufferFlushed=0; (*openmaxStandPort)->bIsPortFlushed=OMX_FALSE; /** Allocate and initialize buffer queue */ if(!(*openmaxStandPort)->pBufferQueue) { (*openmaxStandPort)->pBufferQueue = calloc(1,sizeof(queue_t)); if((*openmaxStandPort)->pBufferQueue==NULL) return OMX_ErrorInsufficientResources; queue_init((*openmaxStandPort)->pBufferQueue); } /*Allocate and initialise port semaphores*/ if(!(*openmaxStandPort)->pBufferSem) { (*openmaxStandPort)->pBufferSem = calloc(1,sizeof(tsem_t)); if((*openmaxStandPort)->pBufferSem==NULL) return OMX_ErrorInsufficientResources; tsem_init((*openmaxStandPort)->pBufferSem, 0); } (*openmaxStandPort)->nNumAssignedBuffers=0; setHeader(&(*openmaxStandPort)->sPortParam, sizeof (OMX_PARAM_PORTDEFINITIONTYPE)); (*openmaxStandPort)->sPortParam.nPortIndex = nPortIndex; (*openmaxStandPort)->sPortParam.nBufferCountActual = DEFAULT_NUMBER_BUFFERS_PER_PORT; (*openmaxStandPort)->sPortParam.nBufferCountMin = DEFAULT_MIN_NUMBER_BUFFERS_PER_PORT; (*openmaxStandPort)->sPortParam.bEnabled = OMX_TRUE; (*openmaxStandPort)->sPortParam.bPopulated = OMX_FALSE; (*openmaxStandPort)->sPortParam.eDir = (isInput == OMX_TRUE)?OMX_DirInput:OMX_DirOutput; (*openmaxStandPort)->standCompContainer=openmaxStandComp; (*openmaxStandPort)->bIsTransientToEnabled=OMX_FALSE; (*openmaxStandPort)->bIsTransientToDisabled=OMX_FALSE; (*openmaxStandPort)->bIsFullOfBuffers=OMX_FALSE; (*openmaxStandPort)->bIsEmptyOfBuffers=OMX_FALSE; (*openmaxStandPort)->bBufferStateAllocated = NULL; (*openmaxStandPort)->pInternalBufferStorage = NULL; (*openmaxStandPort)->PortDestructor = &base_port_Destructor; (*openmaxStandPort)->Port_AllocateBuffer = &base_port_AllocateBuffer; (*openmaxStandPort)->Port_UseBuffer = &base_port_UseBuffer; (*openmaxStandPort)->Port_FreeBuffer = &base_port_FreeBuffer; (*openmaxStandPort)->Port_DisablePort = &base_port_DisablePort; (*openmaxStandPort)->Port_EnablePort = &base_port_EnablePort; (*openmaxStandPort)->Port_SendBufferFunction = &base_port_SendBufferFunction; (*openmaxStandPort)->FlushProcessingBuffers = &base_port_FlushProcessingBuffers; (*openmaxStandPort)->ReturnBufferFunction = &base_port_ReturnBufferFunction; (*openmaxStandPort)->ComponentTunnelRequest = &base_port_ComponentTunnelRequest; (*openmaxStandPort)->Port_AllocateTunnelBuffer = &base_port_AllocateTunnelBuffer; (*openmaxStandPort)->Port_FreeTunnelBuffer = &base_port_FreeTunnelBuffer; (*openmaxStandPort)->bIsDestroying = OMX_FALSE; pthread_mutex_init(&((*openmaxStandPort)->exitMutex), NULL); DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, openmaxStandComp); return OMX_ErrorNone; } OMX_ERRORTYPE base_port_Destructor(omx_base_PortType *openmaxStandPort){ DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for port %p\n", __func__, openmaxStandPort); if(openmaxStandPort->pAllocSem) { pthread_mutex_lock(&openmaxStandPort->exitMutex); openmaxStandPort->bIsDestroying = OMX_TRUE; pthread_mutex_unlock(&openmaxStandPort->exitMutex); /** TODO This semaphore, if activated, can cause memory leaks. * It can be necessary to avoid to wait forever if the other component in tunnel * doesn't perform required actions. This operation can be timed but can cause problems. * Currently it is left commented for reference. // tsem_up(openmaxStandPort->pAllocSem); */ tsem_deinit(openmaxStandPort->pAllocSem); free(openmaxStandPort->pAllocSem); openmaxStandPort->pAllocSem=NULL; } /** Allocate and initialize buffer queue */ if(openmaxStandPort->pBufferQueue) { queue_deinit(openmaxStandPort->pBufferQueue); free(openmaxStandPort->pBufferQueue); openmaxStandPort->pBufferQueue=NULL; } /*Allocate and initialize port semaphores*/ if(openmaxStandPort->pBufferSem) { tsem_deinit(openmaxStandPort->pBufferSem); free(openmaxStandPort->pBufferSem); openmaxStandPort->pBufferSem=NULL; } pthread_mutex_destroy(&openmaxStandPort->exitMutex); free(openmaxStandPort); openmaxStandPort = NULL; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for port %p\n", __func__, openmaxStandPort); return OMX_ErrorNone; } /** @brief Releases buffers under processing. * This function must be implemented in the derived classes, for the * specific processing */ OMX_ERRORTYPE base_port_FlushProcessingBuffers(omx_base_PortType *openmaxStandPort) { omx_base_component_PrivateType* omx_base_component_Private; OMX_BUFFERHEADERTYPE* pBuffer; int errQue; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for port %p\n", __func__, openmaxStandPort); omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandPort->standCompContainer->pComponentPrivate; if(openmaxStandPort->sPortParam.eDomain!=OMX_PortDomainOther) { /* clock buffers not used in the clients buffer managment function */ pthread_mutex_lock(&omx_base_component_Private->flush_mutex); openmaxStandPort->bIsPortFlushed=OMX_TRUE; /*Signal the buffer management thread of port flush,if it is waiting for buffers*/ if(omx_base_component_Private->bMgmtSem->semval==0) { tsem_up(omx_base_component_Private->bMgmtSem); } if(omx_base_component_Private->state != OMX_StateExecuting ) { /*Waiting at paused state*/ tsem_signal(omx_base_component_Private->bStateSem); } DEBUG(DEB_LEV_FULL_SEQ, "In %s waiting for flush all condition port index =%d\n", __func__,(int)openmaxStandPort->sPortParam.nPortIndex); /* Wait until flush is completed */ pthread_mutex_unlock(&omx_base_component_Private->flush_mutex); tsem_down(omx_base_component_Private->flush_all_condition); } DEBUG(DEB_LEV_FUNCTION_NAME, "In %s flushed all the buffers under processing\n", __func__); tsem_reset(omx_base_component_Private->bMgmtSem); /* Flush all the buffers not under processing */ while (openmaxStandPort->pBufferSem->semval > 0) { DEBUG(DEB_LEV_FULL_SEQ, "In %s TFlag=%x Flusing Port=%d,Semval=%d Qelem=%d\n", __func__,(int)openmaxStandPort->nTunnelFlags,(int)openmaxStandPort->sPortParam.nPortIndex, (int)openmaxStandPort->pBufferSem->semval,(int)openmaxStandPort->pBufferQueue->nelem); tsem_down(openmaxStandPort->pBufferSem); pBuffer = dequeue(openmaxStandPort->pBufferQueue); if (PORT_IS_TUNNELED(openmaxStandPort) && !PORT_IS_BUFFER_SUPPLIER(openmaxStandPort)) { DEBUG(DEB_LEV_FULL_SEQ, "In %s: Comp %s is returning io:%d buffer\n", __func__,omx_base_component_Private->name,(int)openmaxStandPort->sPortParam.nPortIndex); if (openmaxStandPort->sPortParam.eDir == OMX_DirInput) { ((OMX_COMPONENTTYPE*)(openmaxStandPort->hTunneledComponent))->FillThisBuffer(openmaxStandPort->hTunneledComponent, pBuffer); } else { ((OMX_COMPONENTTYPE*)(openmaxStandPort->hTunneledComponent))->EmptyThisBuffer(openmaxStandPort->hTunneledComponent, pBuffer); } } else if (PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort)) { errQue = queue(openmaxStandPort->pBufferQueue,pBuffer); if (errQue) { /* /TODO the queue is full. This can be handled in a fine way with * some retrials, or other checking. For the moment this is a critical error * and simply causes the failure of this call */ return OMX_ErrorInsufficientResources; } } else { (*(openmaxStandPort->BufferProcessedCallback))( openmaxStandPort->standCompContainer, omx_base_component_Private->callbackData, pBuffer); } } /*Port is tunneled and supplier and didn't received all it's buffer then wait for the buffers*/ if (PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort)) { while(openmaxStandPort->pBufferQueue->nelem!= openmaxStandPort->nNumAssignedBuffers){ tsem_down(openmaxStandPort->pBufferSem); DEBUG(DEB_LEV_PARAMS, "In %s Got a buffer qelem=%d\n",__func__,openmaxStandPort->pBufferQueue->nelem); } tsem_reset(openmaxStandPort->pBufferSem); } pthread_mutex_lock(&omx_base_component_Private->flush_mutex); openmaxStandPort->bIsPortFlushed=OMX_FALSE; pthread_mutex_unlock(&omx_base_component_Private->flush_mutex); tsem_up(omx_base_component_Private->flush_condition); DEBUG(DEB_LEV_FULL_SEQ, "Out %s Port Index=%d bIsPortFlushed=%d Component %s\n", __func__, (int)openmaxStandPort->sPortParam.nPortIndex,(int)openmaxStandPort->bIsPortFlushed,omx_base_component_Private->name); DEBUG(DEB_LEV_PARAMS, "In %s TFlag=%x Qelem=%d BSem=%d bMgmtsem=%d component=%s\n", __func__, (int)openmaxStandPort->nTunnelFlags, (int)openmaxStandPort->pBufferQueue->nelem, (int)openmaxStandPort->pBufferSem->semval, (int)omx_base_component_Private->bMgmtSem->semval, omx_base_component_Private->name); DEBUG(DEB_LEV_FUNCTION_NAME, "Out %s Port %p Index=%d\n", __func__, openmaxStandPort, (int)openmaxStandPort->sPortParam.nPortIndex); return OMX_ErrorNone; } /** @brief Disables the port. * * This function is called due to a request by the IL client * * @param openmaxStandPort the reference to the port * */ OMX_ERRORTYPE base_port_DisablePort(omx_base_PortType *openmaxStandPort) { omx_base_component_PrivateType* omx_base_component_Private; OMX_ERRORTYPE err=OMX_ErrorNone; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s Port %p Index=%d\n", __func__, openmaxStandPort, (int)openmaxStandPort->sPortParam.nPortIndex); omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandPort->standCompContainer->pComponentPrivate; if (! PORT_IS_ENABLED(openmaxStandPort)) { return OMX_ErrorNone; } if(omx_base_component_Private->state!=OMX_StateLoaded) { if(!PORT_IS_BUFFER_SUPPLIER(openmaxStandPort)) { /*Signal Buffer Mgmt Thread if it's holding any buffer*/ if(omx_base_component_Private->bMgmtSem->semval==0) { tsem_up(omx_base_component_Private->bMgmtSem); } /*Wait till all buffers are freed*/ tsem_down(openmaxStandPort->pAllocSem); tsem_reset(omx_base_component_Private->bMgmtSem); } else { /*Since port is being disabled then remove buffers from the queue*/ while(openmaxStandPort->pBufferQueue->nelem > 0) { dequeue(openmaxStandPort->pBufferQueue); } err = openmaxStandPort->Port_FreeTunnelBuffer(openmaxStandPort,openmaxStandPort->sPortParam.nPortIndex); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s Freeing Tunnel Buffer Error=%x\n",__func__,err); } DEBUG(DEB_LEV_PARAMS, "In %s Qelem=%d\n", __func__,openmaxStandPort->pBufferQueue->nelem); } } DEBUG(DEB_LEV_PARAMS, "In %s TFlag=%x Qelem=%d BSem=%d bMgmtsem=%d component=%s\n", __func__, (int)openmaxStandPort->nTunnelFlags, (int)openmaxStandPort->pBufferQueue->nelem, (int)openmaxStandPort->pBufferSem->semval, (int)omx_base_component_Private->bMgmtSem->semval, omx_base_component_Private->name); openmaxStandPort->bIsTransientToDisabled = OMX_FALSE; openmaxStandPort->sPortParam.bEnabled = OMX_FALSE; DEBUG(DEB_LEV_FUNCTION_NAME, "Out %s Port Index=%d isEnabled=%d\n", __func__, (int)openmaxStandPort->sPortParam.nPortIndex, (int)openmaxStandPort->sPortParam.bEnabled); return err; } /** @brief Enables the port. * * This function is called due to a request by the IL client * * @param openmaxStandPort the reference to the port * */ OMX_ERRORTYPE base_port_EnablePort(omx_base_PortType *openmaxStandPort) { omx_base_component_PrivateType* omx_base_component_Private; OMX_ERRORTYPE err=OMX_ErrorNone; OMX_U32 i; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for port %p\n", __func__, openmaxStandPort); if (PORT_IS_ENABLED(openmaxStandPort)) { DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for port %p\n", __func__, openmaxStandPort); return OMX_ErrorNone; } omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandPort->standCompContainer->pComponentPrivate; openmaxStandPort->sPortParam.bEnabled = OMX_TRUE; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s port T flag=%x popu=%d state=%x\n", __func__, (int)openmaxStandPort->nTunnelFlags, (int)openmaxStandPort->sPortParam.bPopulated, (int)omx_base_component_Private->state); if (!PORT_IS_BUFFER_SUPPLIER(openmaxStandPort)) { /*Wait Till All buffers are allocated if the component state is not Loaded*/ if (omx_base_component_Private->state!=OMX_StateLoaded && omx_base_component_Private->state!=OMX_StateWaitForResources) { tsem_down(openmaxStandPort->pAllocSem); openmaxStandPort->sPortParam.bPopulated = OMX_TRUE; } } else { //Port Tunneled and supplier. Then allocate tunnel buffers err= openmaxStandPort->Port_AllocateTunnelBuffer(openmaxStandPort, openmaxStandPort->sPortParam.nPortIndex); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s Allocating Tunnel Buffer Error=%x\n",__func__,err); return err; } openmaxStandPort->sPortParam.bPopulated = OMX_TRUE; if (omx_base_component_Private->state==OMX_StateExecuting) { for(i=0; i < openmaxStandPort->sPortParam.nBufferCountActual;i++) { tsem_up(openmaxStandPort->pBufferSem); tsem_up(omx_base_component_Private->bMgmtSem); } } DEBUG(DEB_LEV_PARAMS, "In %s Qelem=%d BSem=%d\n", __func__,openmaxStandPort->pBufferQueue->nelem,openmaxStandPort->pBufferSem->semval); } openmaxStandPort->bIsTransientToEnabled = OMX_FALSE; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for port %p\n", __func__, openmaxStandPort); return OMX_ErrorNone; } /** @brief Called by the standard allocate buffer, it implements a base functionality. * * This function can be overriden if the allocation of the buffer is not a simply alloc call. * The parameters are the same as the standard function, except for the handle of the port * instead of the handler of the component * When the buffers needed by this port are all assigned or allocated, the variable * bIsFullOfBuffers becomes equal to OMX_TRUE */ OMX_ERRORTYPE base_port_AllocateBuffer( omx_base_PortType *openmaxStandPort, OMX_BUFFERHEADERTYPE** pBuffer, OMX_U32 nPortIndex, OMX_PTR pAppPrivate, OMX_U32 nSizeBytes) { unsigned int i; OMX_COMPONENTTYPE* omxComponent = openmaxStandPort->standCompContainer; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)omxComponent->pComponentPrivate; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for port %p\n", __func__, openmaxStandPort); if (nPortIndex != openmaxStandPort->sPortParam.nPortIndex) { return OMX_ErrorBadPortIndex; } if (PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort)) { return OMX_ErrorBadPortIndex; } if (omx_base_component_Private->transientState != OMX_TransStateLoadedToIdle) { if (!openmaxStandPort->bIsTransientToEnabled) { DEBUG(DEB_LEV_ERR, "In %s: The port is not allowed to receive buffers\n", __func__); return OMX_ErrorIncorrectStateTransition; } } if(nSizeBytes < openmaxStandPort->sPortParam.nBufferSize) { DEBUG(DEB_LEV_ERR, "In %s: Requested Buffer Size %lu is less than Minimum Buffer Size %lu\n", __func__, nSizeBytes, openmaxStandPort->sPortParam.nBufferSize); return OMX_ErrorIncorrectStateTransition; } for(i=0; i < openmaxStandPort->sPortParam.nBufferCountActual; i++){ if (openmaxStandPort->bBufferStateAllocated[i] == BUFFER_FREE) { openmaxStandPort->pInternalBufferStorage[i] = calloc(1,sizeof(OMX_BUFFERHEADERTYPE)); if (!openmaxStandPort->pInternalBufferStorage[i]) { return OMX_ErrorInsufficientResources; } setHeader(openmaxStandPort->pInternalBufferStorage[i], sizeof(OMX_BUFFERHEADERTYPE)); /* allocate the buffer */ openmaxStandPort->pInternalBufferStorage[i]->pBuffer = calloc(1,nSizeBytes); if(openmaxStandPort->pInternalBufferStorage[i]->pBuffer==NULL) { return OMX_ErrorInsufficientResources; } openmaxStandPort->pInternalBufferStorage[i]->nAllocLen = nSizeBytes; openmaxStandPort->pInternalBufferStorage[i]->pPlatformPrivate = openmaxStandPort; openmaxStandPort->pInternalBufferStorage[i]->pAppPrivate = pAppPrivate; *pBuffer = openmaxStandPort->pInternalBufferStorage[i]; openmaxStandPort->bBufferStateAllocated[i] = BUFFER_ALLOCATED; openmaxStandPort->bBufferStateAllocated[i] |= HEADER_ALLOCATED; if (openmaxStandPort->sPortParam.eDir == OMX_DirInput) { openmaxStandPort->pInternalBufferStorage[i]->nInputPortIndex = openmaxStandPort->sPortParam.nPortIndex; } else { openmaxStandPort->pInternalBufferStorage[i]->nOutputPortIndex = openmaxStandPort->sPortParam.nPortIndex; } openmaxStandPort->nNumAssignedBuffers++; DEBUG(DEB_LEV_PARAMS, "openmaxStandPort->nNumAssignedBuffers %i\n", (int)openmaxStandPort->nNumAssignedBuffers); if (openmaxStandPort->sPortParam.nBufferCountActual == openmaxStandPort->nNumAssignedBuffers) { openmaxStandPort->sPortParam.bPopulated = OMX_TRUE; openmaxStandPort->bIsFullOfBuffers = OMX_TRUE; DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s nPortIndex=%d\n",__func__,(int)nPortIndex); tsem_up(openmaxStandPort->pAllocSem); } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for port %p\n", __func__, openmaxStandPort); return OMX_ErrorNone; } } DEBUG(DEB_LEV_ERR, "Out of %s for port %p. Error: no available buffers\n",__func__, openmaxStandPort); return OMX_ErrorInsufficientResources; } /** @brief Called by the standard use buffer, it implements a base functionality. * * This function can be overriden if the use buffer implicate more complicated operations. * The parameters are the same as the standard function, except for the handle of the port * instead of the handler of the component. * When the buffers needed by this port are all assigned or allocated, the variable * bIsFullOfBuffers becomes equal to OMX_TRUE */ OMX_ERRORTYPE base_port_UseBuffer( omx_base_PortType *openmaxStandPort, OMX_BUFFERHEADERTYPE** ppBufferHdr, OMX_U32 nPortIndex, OMX_PTR pAppPrivate, OMX_U32 nSizeBytes, OMX_U8* pBuffer) { unsigned int i; OMX_BUFFERHEADERTYPE* returnBufferHeader; OMX_COMPONENTTYPE* omxComponent = openmaxStandPort->standCompContainer; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)omxComponent->pComponentPrivate; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for port %p\n", __func__, openmaxStandPort); if (nPortIndex != openmaxStandPort->sPortParam.nPortIndex) { return OMX_ErrorBadPortIndex; } if (PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort)) { return OMX_ErrorBadPortIndex; } if (omx_base_component_Private->transientState != OMX_TransStateLoadedToIdle) { if (!openmaxStandPort->bIsTransientToEnabled) { DEBUG(DEB_LEV_ERR, "In %s: The port of Comp %s is not allowed to receive buffers\n", __func__,omx_base_component_Private->name); return OMX_ErrorIncorrectStateTransition; } } if(nSizeBytes < openmaxStandPort->sPortParam.nBufferSize) { DEBUG(DEB_LEV_ERR, "In %s: Port %d Given Buffer Size %u is less than Minimum Buffer Size %u\n", __func__, (int)nPortIndex, (int)nSizeBytes, (int)openmaxStandPort->sPortParam.nBufferSize); return OMX_ErrorIncorrectStateTransition; } for(i=0; i < openmaxStandPort->sPortParam.nBufferCountActual; i++){ if (openmaxStandPort->bBufferStateAllocated[i] == BUFFER_FREE) { openmaxStandPort->pInternalBufferStorage[i] = calloc(1,sizeof(OMX_BUFFERHEADERTYPE)); if (!openmaxStandPort->pInternalBufferStorage[i]) { return OMX_ErrorInsufficientResources; } openmaxStandPort->bIsEmptyOfBuffers = OMX_FALSE; setHeader(openmaxStandPort->pInternalBufferStorage[i], sizeof(OMX_BUFFERHEADERTYPE)); openmaxStandPort->pInternalBufferStorage[i]->pBuffer = pBuffer; openmaxStandPort->pInternalBufferStorage[i]->nAllocLen = nSizeBytes; openmaxStandPort->pInternalBufferStorage[i]->pPlatformPrivate = openmaxStandPort; openmaxStandPort->pInternalBufferStorage[i]->pAppPrivate = pAppPrivate; openmaxStandPort->bBufferStateAllocated[i] = BUFFER_ASSIGNED; openmaxStandPort->bBufferStateAllocated[i] |= HEADER_ALLOCATED; returnBufferHeader = calloc(1,sizeof(OMX_BUFFERHEADERTYPE)); if (!returnBufferHeader) { return OMX_ErrorInsufficientResources; } setHeader(returnBufferHeader, sizeof(OMX_BUFFERHEADERTYPE)); returnBufferHeader->pBuffer = pBuffer; returnBufferHeader->nAllocLen = nSizeBytes; returnBufferHeader->pPlatformPrivate = openmaxStandPort; returnBufferHeader->pAppPrivate = pAppPrivate; if (openmaxStandPort->sPortParam.eDir == OMX_DirInput) { openmaxStandPort->pInternalBufferStorage[i]->nInputPortIndex = openmaxStandPort->sPortParam.nPortIndex; returnBufferHeader->nInputPortIndex = openmaxStandPort->sPortParam.nPortIndex; } else { openmaxStandPort->pInternalBufferStorage[i]->nOutputPortIndex = openmaxStandPort->sPortParam.nPortIndex; returnBufferHeader->nOutputPortIndex = openmaxStandPort->sPortParam.nPortIndex; } *ppBufferHdr = returnBufferHeader; openmaxStandPort->nNumAssignedBuffers++; DEBUG(DEB_LEV_PARAMS, "openmaxStandPort->nNumAssignedBuffers %i\n", (int)openmaxStandPort->nNumAssignedBuffers); if (openmaxStandPort->sPortParam.nBufferCountActual == openmaxStandPort->nNumAssignedBuffers) { openmaxStandPort->sPortParam.bPopulated = OMX_TRUE; openmaxStandPort->bIsFullOfBuffers = OMX_TRUE; tsem_up(openmaxStandPort->pAllocSem); } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for port %p\n", __func__, openmaxStandPort); return OMX_ErrorNone; } } DEBUG(DEB_LEV_ERR, "In %s Error: no available buffers CompName=%s\n",__func__,omx_base_component_Private->name); return OMX_ErrorInsufficientResources; } /** @brief Called by the standard function. * * It frees the buffer header and in case also the buffer itself, if needed. * When all the buffers are done, the variable bIsEmptyOfBuffers is set to OMX_TRUE */ OMX_ERRORTYPE base_port_FreeBuffer( omx_base_PortType *openmaxStandPort, OMX_U32 nPortIndex, OMX_BUFFERHEADERTYPE* pBuffer) { unsigned int i; OMX_COMPONENTTYPE* omxComponent = openmaxStandPort->standCompContainer; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)omxComponent->pComponentPrivate; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for port %p\n", __func__, openmaxStandPort); if (nPortIndex != openmaxStandPort->sPortParam.nPortIndex) { return OMX_ErrorBadPortIndex; } if (PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort)) { return OMX_ErrorBadPortIndex; } if (omx_base_component_Private->transientState != OMX_TransStateIdleToLoaded) { if (!openmaxStandPort->bIsTransientToDisabled) { DEBUG(DEB_LEV_FULL_SEQ, "In %s: The port is not allowed to free the buffers\n", __func__); (*(omx_base_component_Private->callbacks->EventHandler)) (omxComponent, omx_base_component_Private->callbackData, OMX_EventError, /* The command was completed */ OMX_ErrorPortUnpopulated, /* The commands was a OMX_CommandStateSet */ nPortIndex, /* The state has been changed in message->messageParam2 */ NULL); } } for(i=0; i < openmaxStandPort->sPortParam.nBufferCountActual; i++){ if (openmaxStandPort->bBufferStateAllocated[i] & (BUFFER_ASSIGNED | BUFFER_ALLOCATED)) { openmaxStandPort->bIsFullOfBuffers = OMX_FALSE; if (openmaxStandPort->bBufferStateAllocated[i] & BUFFER_ALLOCATED) { if(openmaxStandPort->pInternalBufferStorage[i]->pBuffer){ DEBUG(DEB_LEV_PARAMS, "In %s freeing %i pBuffer=%p\n",__func__, (int)i, openmaxStandPort->pInternalBufferStorage[i]->pBuffer); free(openmaxStandPort->pInternalBufferStorage[i]->pBuffer); openmaxStandPort->pInternalBufferStorage[i]->pBuffer=NULL; } } else if (openmaxStandPort->bBufferStateAllocated[i] & BUFFER_ASSIGNED) { free(pBuffer); } if(openmaxStandPort->bBufferStateAllocated[i] & HEADER_ALLOCATED) { free(openmaxStandPort->pInternalBufferStorage[i]); openmaxStandPort->pInternalBufferStorage[i]=NULL; } openmaxStandPort->bBufferStateAllocated[i] = BUFFER_FREE; openmaxStandPort->nNumAssignedBuffers--; DEBUG(DEB_LEV_PARAMS, "openmaxStandPort->nNumAssignedBuffers %i\n", (int)openmaxStandPort->nNumAssignedBuffers); if (openmaxStandPort->nNumAssignedBuffers == 0) { openmaxStandPort->sPortParam.bPopulated = OMX_FALSE; openmaxStandPort->bIsEmptyOfBuffers = OMX_TRUE; tsem_up(openmaxStandPort->pAllocSem); } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for port %p\n", __func__, openmaxStandPort); return OMX_ErrorNone; } } DEBUG(DEB_LEV_ERR, "Out of %s for port %p with OMX_ErrorInsufficientResources\n", __func__, openmaxStandPort); return OMX_ErrorInsufficientResources; } OMX_ERRORTYPE base_port_AllocateTunnelBuffer( omx_base_PortType *openmaxStandPort, OMX_U32 nPortIndex) { unsigned int i; OMX_COMPONENTTYPE* omxComponent = openmaxStandPort->standCompContainer; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)omxComponent->pComponentPrivate; OMX_U8* pBuffer=NULL; OMX_ERRORTYPE eError=OMX_ErrorNone,err; int errQue; OMX_U32 numRetry=0,nBufferSize; OMX_PARAM_PORTDEFINITIONTYPE sPortDef; OMX_U32 nLocalBufferCountActual; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for port %p\n", __func__, openmaxStandPort); if (nPortIndex != openmaxStandPort->sPortParam.nPortIndex) { DEBUG(DEB_LEV_ERR, "In %s: Bad Port Index\n", __func__); return OMX_ErrorBadPortIndex; } if (! PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort)) { DEBUG(DEB_LEV_ERR, "In %s: Port is not tunneled Flag=%x\n", __func__, (int)openmaxStandPort->nTunnelFlags); return OMX_ErrorBadPortIndex; } if (omx_base_component_Private->transientState != OMX_TransStateLoadedToIdle) { if (!openmaxStandPort->bIsTransientToEnabled) { DEBUG(DEB_LEV_ERR, "In %s: The port is not allowed to receive buffers\n", __func__); return OMX_ErrorIncorrectStateTransition; } } /*Get nBufferSize of the peer port and allocate which one is bigger*/ nBufferSize = openmaxStandPort->sPortParam.nBufferSize; setHeader(&sPortDef, sizeof(OMX_PARAM_PORTDEFINITIONTYPE)); sPortDef.nPortIndex = openmaxStandPort->nTunneledPort; err = OMX_GetParameter(openmaxStandPort->hTunneledComponent, OMX_IndexParamPortDefinition, &sPortDef); if(err == OMX_ErrorNone) { nBufferSize = (sPortDef.nBufferSize > openmaxStandPort->sPortParam.nBufferSize) ? sPortDef.nBufferSize: openmaxStandPort->sPortParam.nBufferSize; } else { return OMX_ErrorPortsNotCompatible; } /* set the number of buffer needed getting the max nBufferCountActual of the two components * On the one with the minor nBufferCountActual a setParam should be called to normalize the value, * if possible. */ nLocalBufferCountActual = openmaxStandPort->sPortParam.nBufferCountActual; if (nLocalBufferCountActual < sPortDef.nBufferCountActual) { nLocalBufferCountActual = sPortDef.nBufferCountActual; openmaxStandPort->sPortParam.nBufferCountActual = nLocalBufferCountActual; } else if (sPortDef.nBufferCountActual < nLocalBufferCountActual){ sPortDef.nBufferCountActual = nLocalBufferCountActual; err = OMX_SetParameter(openmaxStandPort->hTunneledComponent, OMX_IndexParamPortDefinition, &sPortDef); if(err != OMX_ErrorNone) { /* for some reasons undetected during negotiation the tunnel cannot be established. */ return OMX_ErrorPortsNotCompatible; } } if (openmaxStandPort->sPortParam.nBufferCountActual == 0) { openmaxStandPort->sPortParam.bPopulated = OMX_TRUE; openmaxStandPort->bIsFullOfBuffers = OMX_TRUE; DEBUG(DEB_LEV_ERR, "In %s Allocated nothing\n",__func__); return OMX_ErrorNone; } for(i=0; i < openmaxStandPort->sPortParam.nBufferCountActual; i++){ if (openmaxStandPort->bBufferStateAllocated[i] == BUFFER_FREE) { pBuffer = calloc(1,nBufferSize); if(pBuffer==NULL) { return OMX_ErrorInsufficientResources; } /*Retry more than once, if the tunneled component is not in Loaded->Idle State*/ while(numRetry hTunneledComponent,&openmaxStandPort->pInternalBufferStorage[i], openmaxStandPort->nTunneledPort,NULL,nBufferSize,pBuffer); if(eError!=OMX_ErrorNone) { DEBUG(DEB_LEV_FULL_SEQ,"Tunneled Component Couldn't Use buffer %i From Comp=%s Retry=%d\n", i,omx_base_component_Private->name,(int)numRetry); if((eError == OMX_ErrorIncorrectStateTransition) && numRetrysPortParam.eDir == OMX_DirInput) { openmaxStandPort->pInternalBufferStorage[i]->nInputPortIndex = openmaxStandPort->sPortParam.nPortIndex; openmaxStandPort->pInternalBufferStorage[i]->nOutputPortIndex = openmaxStandPort->nTunneledPort; } else { openmaxStandPort->pInternalBufferStorage[i]->nInputPortIndex = openmaxStandPort->nTunneledPort; openmaxStandPort->pInternalBufferStorage[i]->nOutputPortIndex = openmaxStandPort->sPortParam.nPortIndex; } break; } } if(eError!=OMX_ErrorNone) { free(pBuffer); pBuffer = NULL; DEBUG(DEB_LEV_ERR,"In %s Tunneled Component Couldn't Use Buffer err = %x \n",__func__,(int)eError); return eError; } openmaxStandPort->bBufferStateAllocated[i] = BUFFER_ALLOCATED; openmaxStandPort->nNumAssignedBuffers++; DEBUG(DEB_LEV_PARAMS, "openmaxStandPort->nNumAssignedBuffers %i\n", (int)openmaxStandPort->nNumAssignedBuffers); if (openmaxStandPort->sPortParam.nBufferCountActual == openmaxStandPort->nNumAssignedBuffers) { openmaxStandPort->sPortParam.bPopulated = OMX_TRUE; openmaxStandPort->bIsFullOfBuffers = OMX_TRUE; DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s nPortIndex=%d\n",__func__, (int)nPortIndex); } errQue = queue(openmaxStandPort->pBufferQueue, openmaxStandPort->pInternalBufferStorage[i]); if (errQue) { /* /TODO the queue is full. This can be handled in a fine way with * some retrials, or other checking. For the moment this is a critical error * and simply causes the failure of this call */ return OMX_ErrorInsufficientResources; } } } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for port %p. Allocated all the buffers\n", __func__, openmaxStandPort); return OMX_ErrorNone; } OMX_ERRORTYPE base_port_FreeTunnelBuffer(omx_base_PortType *openmaxStandPort,OMX_U32 nPortIndex) { unsigned int i; OMX_COMPONENTTYPE* omxComponent = openmaxStandPort->standCompContainer; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)omxComponent->pComponentPrivate; OMX_ERRORTYPE eError=OMX_ErrorNone; OMX_U32 numRetry=0; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for port %p\n", __func__, openmaxStandPort); if (nPortIndex != openmaxStandPort->sPortParam.nPortIndex) { DEBUG(DEB_LEV_ERR, "In %s: Bad Port Index\n", __func__); return OMX_ErrorBadPortIndex; } if (! PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort)) { DEBUG(DEB_LEV_ERR, "In %s: Port is not tunneled\n", __func__); return OMX_ErrorBadPortIndex; } if (omx_base_component_Private->transientState != OMX_TransStateIdleToLoaded) { if (!openmaxStandPort->bIsTransientToDisabled) { DEBUG(DEB_LEV_FULL_SEQ, "In %s: The port is not allowed to free the buffers\n", __func__); (*(omx_base_component_Private->callbacks->EventHandler)) (omxComponent, omx_base_component_Private->callbackData, OMX_EventError, /* The command was completed */ OMX_ErrorPortUnpopulated, /* The commands was a OMX_CommandStateSet */ nPortIndex, /* The state has been changed in message->messageParam2 */ NULL); } } for(i=0; i < openmaxStandPort->sPortParam.nBufferCountActual; i++){ if (openmaxStandPort->bBufferStateAllocated[i] & (BUFFER_ASSIGNED | BUFFER_ALLOCATED)) { openmaxStandPort->bIsFullOfBuffers = OMX_FALSE; if (openmaxStandPort->bBufferStateAllocated[i] & BUFFER_ALLOCATED) { free(openmaxStandPort->pInternalBufferStorage[i]->pBuffer); openmaxStandPort->pInternalBufferStorage[i]->pBuffer = NULL; } /*Retry more than once, if the tunneled component is not in Idle->Loaded State*/ while(numRetry hTunneledComponent,openmaxStandPort->nTunneledPort,openmaxStandPort->pInternalBufferStorage[i]); if(eError!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR,"Tunneled Component Couldn't free buffer %i \n",i); if((eError == OMX_ErrorIncorrectStateTransition) && numRetrybBufferStateAllocated[i] = BUFFER_FREE; openmaxStandPort->nNumAssignedBuffers--; DEBUG(DEB_LEV_PARAMS, "openmaxStandPort->nNumAssignedBuffers %i\n", (int)openmaxStandPort->nNumAssignedBuffers); if (openmaxStandPort->nNumAssignedBuffers == 0) { openmaxStandPort->sPortParam.bPopulated = OMX_FALSE; openmaxStandPort->bIsEmptyOfBuffers = OMX_TRUE; //tsem_up(openmaxStandPort->pAllocSem); } } } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for port %p Qelem=%d BSem=%d\n", __func__, openmaxStandPort, openmaxStandPort->pBufferQueue->nelem, openmaxStandPort->pBufferSem->semval); return OMX_ErrorNone; } /** @brief the entry point for sending buffers to the port * * This function can be called by the EmptyThisBuffer or FillThisBuffer. It depends on * the nature of the port, that can be an input or output port. */ OMX_ERRORTYPE base_port_SendBufferFunction( omx_base_PortType *openmaxStandPort, OMX_BUFFERHEADERTYPE* pBuffer) { OMX_ERRORTYPE err; int errQue; OMX_U32 portIndex; OMX_COMPONENTTYPE* omxComponent = openmaxStandPort->standCompContainer; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)omxComponent->pComponentPrivate; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for port %p\n", __func__, openmaxStandPort); #if NO_GST_OMX_PATCH unsigned int i; #endif portIndex = (openmaxStandPort->sPortParam.eDir == OMX_DirInput)?pBuffer->nInputPortIndex:pBuffer->nOutputPortIndex; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s portIndex %lu\n", __func__, portIndex); if (portIndex != openmaxStandPort->sPortParam.nPortIndex) { DEBUG(DEB_LEV_ERR, "In %s: wrong port for this operation portIndex=%d port->portIndex=%d\n", __func__, (int)portIndex, (int)openmaxStandPort->sPortParam.nPortIndex); return OMX_ErrorBadPortIndex; } if(omx_base_component_Private->state == OMX_StateInvalid) { DEBUG(DEB_LEV_ERR, "In %s: we are in OMX_StateInvalid\n", __func__); return OMX_ErrorInvalidState; } if(omx_base_component_Private->state != OMX_StateExecuting && omx_base_component_Private->state != OMX_StatePause && omx_base_component_Private->state != OMX_StateIdle) { DEBUG(DEB_LEV_ERR, "In %s: we are not in executing/paused/idle state, but in %d\n", __func__, omx_base_component_Private->state); return OMX_ErrorIncorrectStateOperation; } if (!PORT_IS_ENABLED(openmaxStandPort) || (PORT_IS_BEING_DISABLED(openmaxStandPort) && !PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort)) || ((omx_base_component_Private->transientState == OMX_TransStateExecutingToIdle || omx_base_component_Private->transientState == OMX_TransStatePauseToIdle) && (PORT_IS_TUNNELED(openmaxStandPort) && !PORT_IS_BUFFER_SUPPLIER(openmaxStandPort)))) { DEBUG(DEB_LEV_ERR, "In %s: Port %d is disabled comp = %s \n", __func__, (int)portIndex,omx_base_component_Private->name); return OMX_ErrorIncorrectStateOperation; } /* Temporarily disable this check for gst-openmax */ #if NO_GST_OMX_PATCH { OMX_BOOL foundBuffer = OMX_FALSE; if(pBuffer!=NULL && pBuffer->pBuffer!=NULL) { for(i=0; i < openmaxStandPort->sPortParam.nBufferCountActual; i++){ if (pBuffer->pBuffer == openmaxStandPort->pInternalBufferStorage[i]->pBuffer) { foundBuffer = OMX_TRUE; break; } } } if (!foundBuffer) { return OMX_ErrorBadParameter; } } #endif if ((err = checkHeader(pBuffer, sizeof(OMX_BUFFERHEADERTYPE))) != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s: received wrong buffer header on input port\n", __func__); return err; } /* And notify the buffer management thread we have a fresh new buffer to manage */ if(!PORT_IS_BEING_FLUSHED(openmaxStandPort) && !(PORT_IS_BEING_DISABLED(openmaxStandPort) && PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort))){ errQue = queue(openmaxStandPort->pBufferQueue, pBuffer); if (errQue) { /* /TODO the queue is full. This can be handled in a fine way with * some retrials, or other checking. For the moment this is a critical error * and simply causes the failure of this call */ return OMX_ErrorInsufficientResources; } tsem_up(openmaxStandPort->pBufferSem); DEBUG(DEB_LEV_PARAMS, "In %s Signalling bMgmtSem Port Index=%d\n",__func__, (int)portIndex); tsem_up(omx_base_component_Private->bMgmtSem); }else if(PORT_IS_BUFFER_SUPPLIER(openmaxStandPort)){ DEBUG(DEB_LEV_FULL_SEQ, "In %s: Comp %s received io:%d buffer\n", __func__,omx_base_component_Private->name,(int)openmaxStandPort->sPortParam.nPortIndex); errQue = queue(openmaxStandPort->pBufferQueue, pBuffer); if (errQue) { /* /TODO the queue is full. This can be handled in a fine way with * some retrials, or other checking. For the moment this is a critical error * and simply causes the failure of this call */ return OMX_ErrorInsufficientResources; } tsem_up(openmaxStandPort->pBufferSem); } else { // If port being flushed and not tunneled then return error DEBUG(DEB_LEV_FULL_SEQ, "In %s \n", __func__); return OMX_ErrorIncorrectStateOperation; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for port %p\n", __func__, openmaxStandPort); return OMX_ErrorNone; } /** * Returns Input/Output Buffer to the IL client or Tunneled Component */ OMX_ERRORTYPE base_port_ReturnBufferFunction(omx_base_PortType* openmaxStandPort,OMX_BUFFERHEADERTYPE* pBuffer){ omx_base_component_PrivateType* omx_base_component_Private=openmaxStandPort->standCompContainer->pComponentPrivate; queue_t* pQueue = openmaxStandPort->pBufferQueue; tsem_t* pSem = openmaxStandPort->pBufferSem; OMX_ERRORTYPE eError = OMX_ErrorNone; int errQue; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for port %p\n", __func__, openmaxStandPort); if (PORT_IS_TUNNELED(openmaxStandPort) && ! PORT_IS_BUFFER_SUPPLIER(openmaxStandPort)) { if (openmaxStandPort->sPortParam.eDir == OMX_DirInput) { pBuffer->nOutputPortIndex = openmaxStandPort->nTunneledPort; pBuffer->nInputPortIndex = openmaxStandPort->sPortParam.nPortIndex; eError = ((OMX_COMPONENTTYPE*)(openmaxStandPort->hTunneledComponent))->FillThisBuffer(openmaxStandPort->hTunneledComponent, pBuffer); if(eError != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s eError %08x in FillThis Buffer from Component %s Non-Supplier\n", __func__, eError,omx_base_component_Private->name); } } else { pBuffer->nInputPortIndex = openmaxStandPort->nTunneledPort; pBuffer->nOutputPortIndex = openmaxStandPort->sPortParam.nPortIndex; eError = ((OMX_COMPONENTTYPE*)(openmaxStandPort->hTunneledComponent))->EmptyThisBuffer(openmaxStandPort->hTunneledComponent, pBuffer); if(eError != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s eError %08x in EmptyThis Buffer from Component %s Non-Supplier\n", __func__, eError,omx_base_component_Private->name); } } } else if (PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort) && !PORT_IS_BEING_FLUSHED(openmaxStandPort)) { if (openmaxStandPort->sPortParam.eDir == OMX_DirInput) { eError = ((OMX_COMPONENTTYPE*)(openmaxStandPort->hTunneledComponent))->FillThisBuffer(openmaxStandPort->hTunneledComponent, pBuffer); if(eError != OMX_ErrorNone) { DEBUG(DEB_LEV_FULL_SEQ, "In %s eError %08x in FillThis Buffer from Component %s Supplier\n", __func__, eError,omx_base_component_Private->name); /*If Error Occured then queue the buffer*/ errQue = queue(pQueue, pBuffer); if (errQue) { /* /TODO the queue is full. This can be handled in a fine way with * some retrials, or other checking. For the moment this is a critical error * and simply causes the failure of this call */ return OMX_ErrorInsufficientResources; } tsem_up(pSem); } } else { eError = ((OMX_COMPONENTTYPE*)(openmaxStandPort->hTunneledComponent))->EmptyThisBuffer(openmaxStandPort->hTunneledComponent, pBuffer); if(eError != OMX_ErrorNone) { DEBUG(DEB_LEV_FULL_SEQ, "In %s eError %08x in EmptyThis Buffer from Component %s Supplier\n", __func__, eError,omx_base_component_Private->name); /*If Error Occured then queue the buffer*/ errQue = queue(pQueue, pBuffer); if (errQue) { /* /TODO the queue is full. This can be handled in a fine way with * some retrials, or other checking. For the moment this is a critical error * and simply causes the failure of this call */ return OMX_ErrorInsufficientResources; } tsem_up(pSem); } } } else if (!PORT_IS_TUNNELED(openmaxStandPort)){ (*(openmaxStandPort->BufferProcessedCallback))( openmaxStandPort->standCompContainer, omx_base_component_Private->callbackData, pBuffer); } else { errQue = queue(pQueue, pBuffer); if (errQue) { /* /TODO the queue is full. This can be handled in a fine way with * some retrials, or other checking. For the moment this is a critical error * and simply causes the failure of this call */ return OMX_ErrorInsufficientResources; } openmaxStandPort->nNumBufferFlushed++; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for port %p\n", __func__, openmaxStandPort); return OMX_ErrorNone; } OMX_ERRORTYPE base_port_ComponentTunnelRequest(omx_base_PortType* openmaxStandPort, OMX_HANDLETYPE hTunneledComp, OMX_U32 nTunneledPort, OMX_TUNNELSETUPTYPE* pTunnelSetup) { OMX_ERRORTYPE err = OMX_ErrorNone; OMX_PARAM_PORTDEFINITIONTYPE param; OMX_PARAM_BUFFERSUPPLIERTYPE pSupplier; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for port %p\n", __func__, openmaxStandPort); if (pTunnelSetup == NULL || hTunneledComp == 0) { /* cancel previous tunnel */ openmaxStandPort->hTunneledComponent = 0; openmaxStandPort->nTunneledPort = 0; openmaxStandPort->nTunnelFlags = 0; openmaxStandPort->eBufferSupplier=OMX_BufferSupplyUnspecified; return OMX_ErrorNone; } if (openmaxStandPort->sPortParam.eDir == OMX_DirInput) { /* Get Port Definition of the Tunnelled Component*/ param.nPortIndex=nTunneledPort; setHeader(¶m, sizeof(OMX_PARAM_PORTDEFINITIONTYPE)); err = OMX_GetParameter(hTunneledComp, OMX_IndexParamPortDefinition, ¶m); /// \todo insert here a detailed comparison with the OMX_AUDIO_PORTDEFINITIONTYPE if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR,"In %s Tunneled Port Definition error=0x%08x Line=%d\n",__func__,err,__LINE__); // compatibility not reached return OMX_ErrorPortsNotCompatible; } openmaxStandPort->nNumTunnelBuffer = param.nBufferCountActual; if(param.eDomain!=openmaxStandPort->sPortParam.eDomain) { return OMX_ErrorPortsNotCompatible; } if(param.eDomain==OMX_PortDomainAudio) { if(param.format.audio.eEncoding == OMX_AUDIO_CodingMax) { return OMX_ErrorPortsNotCompatible; } } else if(param.eDomain==OMX_PortDomainVideo) { if(param.format.video.eCompressionFormat == OMX_VIDEO_CodingMax) { return OMX_ErrorPortsNotCompatible; } } else if(param.eDomain==OMX_PortDomainOther) { if(param.format.other.eFormat == OMX_OTHER_FormatMax) { return OMX_ErrorPortsNotCompatible; } } /* Get Buffer Supplier type of the Tunneled Component*/ pSupplier.nPortIndex=nTunneledPort; setHeader(&pSupplier, sizeof(OMX_PARAM_BUFFERSUPPLIERTYPE)); err = OMX_GetParameter(hTunneledComp, OMX_IndexParamCompBufferSupplier, &pSupplier); if (err != OMX_ErrorNone) { // compatibility not reached DEBUG(DEB_LEV_ERR,"In %s Tunneled Buffer Supplier error=0x%08x Line=%d\n",__func__,err,__LINE__); return OMX_ErrorPortsNotCompatible; } else { DEBUG(DEB_LEV_FULL_SEQ,"Tunneled Port eBufferSupplier=%x\n", pSupplier.eBufferSupplier); } // store the current callbacks, if defined openmaxStandPort->hTunneledComponent = hTunneledComp; openmaxStandPort->nTunneledPort = nTunneledPort; /*Check for and set proprietary communication flag. In case a component support Deep Tunneling should set it's tunnel flag to PROPRIETARY_COMMUNICATION_ESTABLISHED */ if(PORT_IS_DEEP_TUNNELED(openmaxStandPort)) { OMX_VENDOR_PROP_TUNNELSETUPTYPE pPropTunnelSetup; pPropTunnelSetup.nPortIndex = nTunneledPort; err = OMX_GetParameter(hTunneledComp, OMX_IndexVendorCompPropTunnelFlags, &pPropTunnelSetup); if (err != OMX_ErrorNone) { // compatibility not reached DEBUG(DEB_LEV_ERR,"In %s Proprietary Tunneled Buffer Supplier nTunneledPort=%d error=0x%08x Line=%d \n", __func__,(int)pPropTunnelSetup.nPortIndex,err,__LINE__); openmaxStandPort->nTunnelFlags = 0; } else { openmaxStandPort->nTunnelFlags = PROPRIETARY_COMMUNICATION_ESTABLISHED; } } else { openmaxStandPort->nTunnelFlags = 0; } // Negotiation if (pTunnelSetup->nTunnelFlags & OMX_PORTTUNNELFLAG_READONLY) { // the buffer provider MUST be the output port provider pTunnelSetup->eSupplier = OMX_BufferSupplyInput; openmaxStandPort->nTunnelFlags |= TUNNEL_IS_SUPPLIER; openmaxStandPort->eBufferSupplier=OMX_BufferSupplyInput; } else { if (pTunnelSetup->eSupplier == OMX_BufferSupplyInput) { openmaxStandPort->nTunnelFlags |= TUNNEL_IS_SUPPLIER; openmaxStandPort->eBufferSupplier=OMX_BufferSupplyInput; } else if (pTunnelSetup->eSupplier == OMX_BufferSupplyUnspecified) { pTunnelSetup->eSupplier = OMX_BufferSupplyInput; openmaxStandPort->nTunnelFlags |= TUNNEL_IS_SUPPLIER; openmaxStandPort->eBufferSupplier=OMX_BufferSupplyInput; } } openmaxStandPort->nTunnelFlags |= TUNNEL_ESTABLISHED; /* Set Buffer Supplier type of the Tunnelled Component after final negotiation*/ pSupplier.nPortIndex=nTunneledPort; pSupplier.eBufferSupplier=openmaxStandPort->eBufferSupplier; err = OMX_SetParameter(hTunneledComp, OMX_IndexParamCompBufferSupplier, &pSupplier); if (err != OMX_ErrorNone) { // compatibility not reached DEBUG(DEB_LEV_ERR,"In %s Tunneled Buffer Supplier error=0x%08x Line=%d\n",__func__,err,__LINE__); openmaxStandPort->nTunnelFlags=0; return OMX_ErrorPortsNotCompatible; } } else { // output port // all the consistency checks are under other component responsibility /* Get Port Definition of the Tunnelled Component*/ param.nPortIndex=nTunneledPort; setHeader(¶m, sizeof(OMX_PARAM_PORTDEFINITIONTYPE)); err = OMX_GetParameter(hTunneledComp, OMX_IndexParamPortDefinition, ¶m); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR,"In %s Tunneled Port Definition error=0x%08x Line=%d\n",__func__,err,__LINE__); // compatibility not reached return OMX_ErrorPortsNotCompatible; } if(param.eDomain!=openmaxStandPort->sPortParam.eDomain) { return OMX_ErrorPortsNotCompatible; } if(param.eDomain==OMX_PortDomainAudio) { if(param.format.audio.eEncoding == OMX_AUDIO_CodingMax) { return OMX_ErrorPortsNotCompatible; } } else if(param.eDomain==OMX_PortDomainVideo) { if(param.format.video.eCompressionFormat == OMX_VIDEO_CodingMax) { return OMX_ErrorPortsNotCompatible; } } else if(param.eDomain==OMX_PortDomainOther) { if(param.format.other.eFormat == OMX_OTHER_FormatMax) { return OMX_ErrorPortsNotCompatible; } } /*Check for and set proprietary communication flag*/ if(PORT_IS_DEEP_TUNNELED(openmaxStandPort)) { OMX_VENDOR_PROP_TUNNELSETUPTYPE pPropTunnelSetup; pPropTunnelSetup.nPortIndex = nTunneledPort; err = OMX_GetParameter(hTunneledComp, OMX_IndexVendorCompPropTunnelFlags, &pPropTunnelSetup); if (err != OMX_ErrorNone) { // compatibility not reached DEBUG(DEB_LEV_ERR,"In %s Proprietary Tunneled Buffer Supplier nTunneledPort=%d error=0x%08x Line=%d \n", __func__,(int)pPropTunnelSetup.nPortIndex,err,__LINE__); openmaxStandPort->nTunnelFlags = 0; } else { openmaxStandPort->nTunnelFlags = PROPRIETARY_COMMUNICATION_ESTABLISHED; } } else { openmaxStandPort->nTunnelFlags = 0; } openmaxStandPort->nNumTunnelBuffer=param.nBufferCountActual; openmaxStandPort->hTunneledComponent = hTunneledComp; openmaxStandPort->nTunneledPort = nTunneledPort; pTunnelSetup->eSupplier = OMX_BufferSupplyOutput; openmaxStandPort->nTunnelFlags |= TUNNEL_IS_SUPPLIER; openmaxStandPort->nTunnelFlags |= TUNNEL_ESTABLISHED; openmaxStandPort->eBufferSupplier=OMX_BufferSupplyOutput; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for port %p\n", __func__, openmaxStandPort); return OMX_ErrorNone; } libomxil-bellagio-0.9.3/src/base/omx_base_image_port.c0000644000175000017500000001056411513256766017731 00000000000000/** src/base/omx_base_image_port.c Base Image Port class for OpenMAX ports to be used in derived components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include "omx_base_component.h" #include "omx_base_image_port.h" /** * @brief The base constructor for the generic OpenMAX ST Image port * * This function is executed by the component that uses a port. * The parameter contains the info about the component. * It takes care of constructing the instance of the port and * every object needed by the base port. * * @param openmaxStandComp pointer to the Handle of the component * @param openmaxStandPort the ST port to be initialized * @param nPortIndex Index of the port to be constructed * @param isInput specifies if the port is an input or an output * * @return OMX_ErrorInsufficientResources if a memory allocation fails */ OMX_ERRORTYPE base_image_port_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,omx_base_PortType **openmaxStandPort,OMX_U32 nPortIndex, OMX_BOOL isInput) { omx_base_image_PortType *omx_base_image_Port; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s of component %p\n", __func__, openmaxStandComp); if (!(*openmaxStandPort)) { *openmaxStandPort = calloc(1,sizeof (omx_base_image_PortType)); } if (!(*openmaxStandPort)) { return OMX_ErrorInsufficientResources; } base_port_Constructor(openmaxStandComp,openmaxStandPort,nPortIndex, isInput); omx_base_image_Port = (omx_base_image_PortType *)*openmaxStandPort; setHeader(&omx_base_image_Port->sImageParam, sizeof(OMX_IMAGE_PARAM_PORTFORMATTYPE)); omx_base_image_Port->sImageParam.nPortIndex = nPortIndex; omx_base_image_Port->sImageParam.nIndex = 0; omx_base_image_Port->sImageParam.eCompressionFormat = OMX_IMAGE_CodingUnused; omx_base_image_Port->sPortParam.eDomain = OMX_PortDomainImage; omx_base_image_Port->sPortParam.format.image.cMIMEType = malloc(DEFAULT_MIME_STRING_LENGTH); strcpy(omx_base_image_Port->sPortParam.format.image.cMIMEType, "raw/image"); omx_base_image_Port->sPortParam.format.image.pNativeRender = 0; omx_base_image_Port->sPortParam.format.image.bFlagErrorConcealment = OMX_FALSE; omx_base_image_Port->sPortParam.format.image.eCompressionFormat = OMX_IMAGE_CodingUnused; omx_base_image_Port->sPortParam.nBufferSize = (isInput == OMX_TRUE)?DEFAULT_IN_BUFFER_SIZE:DEFAULT_OUT_BUFFER_SIZE ; omx_base_image_Port->PortDestructor = &base_image_port_Destructor; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s of component %p\n", __func__, openmaxStandComp); return OMX_ErrorNone; } /** * @brief The base image port destructor for the generic OpenMAX ST Image port * * This function is executed by the component that uses a port. * The parameter contains the info about the port. * It takes care of destructing the instance of the port * * @param openmaxStandPort the ST port to be destructed * * @return OMX_ErrorNone */ OMX_ERRORTYPE base_image_port_Destructor(omx_base_PortType *openmaxStandPort){ OMX_ERRORTYPE err; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s of port %p\n", __func__, openmaxStandPort); if(openmaxStandPort->sPortParam.format.image.cMIMEType) { free(openmaxStandPort->sPortParam.format.image.cMIMEType); openmaxStandPort->sPortParam.format.image.cMIMEType = NULL; } err = base_port_Destructor(openmaxStandPort); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s base port destructor failed\n", __func__); return err; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s of port %p\n", __func__, openmaxStandPort); return OMX_ErrorNone; } libomxil-bellagio-0.9.3/src/base/omx_base_component.h0000644000175000017500000004261711513256766017616 00000000000000/** src/base/omx_base_component.h OpenMAX base component. This component does not perform any multimedia processing.It is used as a base component for new components development. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef _OMX_BASE_COMPONENT_H_ #define _OMX_BASE_COMPONENT_H_ #include #include #include #include #include #include #include #ifdef ANDROID_COMPILATION #include #else #define OSCL_IMPORT_REF #define OSCL_EXPORT_REF #endif #include "omxcore.h" #include "OMXComponentRMExt.h" #include "tsemaphore.h" #include "queue.h" #include "omx_classmagic.h" #include "omx_base_port.h" #include "extension_struct.h" #include "omx_reference_resource_manager.h" /** Default size of the internal input buffer */ #define DEFAULT_IN_BUFFER_SIZE 4 * 1024 /** Default size of the internal output buffer */ #define DEFAULT_OUT_BUFFER_SIZE 32 * 1024 /*16 * 1024 */ // TODO - check this size is ok /** Default MIME string length */ #define DEFAULT_MIME_STRING_LENGTH 128 #define NUM_DOMAINS 4 #define OMX_BUFFERFLAG_KEY_FRAME 0x11000000 typedef struct OMX_VENDOR_EXTRADATATYPE { OMX_U32 nPortIndex; OMX_U32 nDataSize; // Size of the supporting data to follow OMX_U8 *pData; // Supporting data hint } OMX_VENDOR_EXTRADATATYPE; typedef struct OMX_VENDOR_PROP_TUNNELSETUPTYPE { OMX_U32 nPortIndex; OMX_TUNNELSETUPTYPE nTunnelSetup; // Tunnel setup flags } OMX_VENDOR_PROP_TUNNELSETUPTYPE; /** this is the list of custom vendor index */ typedef enum OMX_INDEXVENDORTYPE { /** only one index for file reader component input file */ OMX_IndexVendorInputFilename = OMX_IndexVendorStartUnused+1, OMX_IndexVendorOutputFilename, OMX_IndexVendorCompPropTunnelFlags, /* Will use OMX_TUNNELSETUPTYPE structure*/ OMX_IndexParameterThreadsID, OMX_VIDEO_CodingTheora } OMX_INDEXVENDORTYPE; /** This enum defines the transition states of the Component*/ typedef enum OMX_TRANS_STATETYPE { OMX_TransStateInvalid, OMX_TransStateLoadedToIdle, OMX_TransStateIdleToPause, OMX_TransStatePauseToExecuting, OMX_TransStateIdleToExecuting, OMX_TransStateExecutingToIdle, OMX_TransStateExecutingToPause, OMX_TransStatePauseToIdle, OMX_TransStateIdleToLoaded, OMX_TransStateMax = 0X7FFFFFFF } OMX_TRANS_STATETYPE; /** @brief Enumerates all the possible types of messages * handled internally by the component */ typedef enum INTERNAL_MESSAGE_TYPE { SENDCOMMAND_MSG_TYPE = 1,/**< this flag specifies that the message send is a command */ ERROR_MSG_TYPE,/**< this flag specifies that the message send is an error message */ WARNING_MSG_TYPE /**< this flag specifies that the message send is a warning message */ } INTERNAL_MESSAGE_TYPE; /** @brief The container of an internal message * * This structure contains a generic OpenMAX request (from send command). * It is processed by the internal message handler thread */ typedef struct internalRequestMessageType { int messageType; /**< the flag that specifies if the message is a command, a warning or an error */ int messageParam; /**< the second field of the message. Its use is the same as specified for the command in OpenMAX spec */ OMX_PTR pCmdData; /**< This pointer could contain some proprietary data not covered by the standard */ } internalRequestMessageType; /** * @brief the base descriptor for a ST component */ CLASS(omx_base_component_PrivateType) #define omx_base_component_PrivateType_FIELDS \ OMX_COMPONENTTYPE *openmaxStandComp; /**< The OpenMAX standard data structure describing a component */ \ omx_base_PortType **ports; /** @param ports The ports of the component */ \ OMX_PORT_PARAM_TYPE sPortTypesParam[NUM_DOMAINS]; /** @param sPortTypesParam OpenMAX standard parameter that contains a short description of the available ports */ \ char uniqueID; /**< ID code that identifies an ST static component*/ \ char* name; /**< component name */\ OMX_STATETYPE state; /**< The state of the component */ \ OMX_TRANS_STATETYPE transientState; /**< The transient state in case of transition between \ Loaded/waitForResources - Idle. It is equal to \ Invalid if the state or transition are not corect \ Loaded when the transition is from Idle to Loaded \ Idle when the transition is from Loaded to Idle */ \ OMX_CALLBACKTYPE* callbacks; /**< pointer to every client callback function, \ as specified by the standard*/ \ OMX_PTR callbackData;/**< Private data that can be send with \ the client callbacks. Not specified by the standard */ \ queue_t* messageQueue;/**< the queue of all the messages recevied by the component */\ tsem_t* messageSem;/**< the semaphore that coordinates the access to the message queue */\ OMX_U32 nGroupPriority; /**< @param nGroupPriority Resource management field: component priority (common to a group of components) */\ OMX_U32 nGroupID; /**< @param nGroupID ID of a group of components that share the same logical chain */\ OMX_PARAM_BELLAGIOTHREADS_ID* bellagioThreads;\ OMX_BOOL bIsEOSReached; /** @param bIsEOSReached boolean flag is true when EOS has been reached */ \ OMX_MARKTYPE pMark; /**< @param pMark This field holds the private data associated with a mark request, if any */\ pthread_mutex_t flush_mutex; /** @param flush_mutex mutex for the flush condition from buffers */ \ tsem_t* flush_all_condition; /** @param flush_all_condition condition for the flush all buffers */ \ tsem_t* flush_condition; /** @param The flush_condition condition */ \ tsem_t* bMgmtSem;/**< @param bMgmtSem the semaphore that control BufferMgmtFunction processing */\ tsem_t* bStateSem;/**< @param bMgmtSem the semaphore that control BufferMgmtFunction processing */\ pthread_t messageHandlerThread; /** @param messageHandlerThread This field contains the reference to the thread that receives messages for the components */ \ int bufferMgmtThreadID; /** @param bufferMgmtThreadID The ID of the pthread that process buffers */ \ pthread_t bufferMgmtThread; /** @param bufferMgmtThread This field contains the reference to the thread that process buffers */ \ void *loader; /**< pointer to the loader that created this component, used for destruction */ \ void* (*BufferMgmtFunction)(void* param); /** @param BufferMgmtFunction This function processes input output buffers */ \ OMX_ERRORTYPE (*messageHandler)(OMX_COMPONENTTYPE*,internalRequestMessageType*);/** This function receives messages from the message queue. It is needed for each Linux ST OpenMAX component */ \ OMX_ERRORTYPE (*DoStateSet)(OMX_COMPONENTTYPE *openmaxStandComp, OMX_U32); /**< @param DoStateSet internal function called when a generic state transition is requested*/ \ OMX_ERRORTYPE (*destructor)(OMX_COMPONENTTYPE *openmaxStandComp); /** Component Destructor*/ \ OMX_ERRORTYPE (*getQualityLevel)(OMX_COMPONENTTYPE *openmaxStandComp, OMX_U32* pQualityLevel); /** RM entry point. By default is not implemented */ \ OMX_ERRORTYPE (*setQualityLevel)(OMX_COMPONENTTYPE *openmaxStandComp, OMX_U32 nQualityLevel); /** RM entry point. By default is not implemented */ \ OMX_U32 nqualitylevels;/**< number of available quality levels */ \ multiResourceDescriptor** multiResourceLevel; \ int currentQualityLevel; /** if supported the current quality level set for this component */ ENDCLASS(omx_base_component_PrivateType) void base_constructor_remove_garbage_collected(omx_base_component_PrivateType* omx_base_component_Private); /** * @brief The base constructor for the OpenMAX ST components * * This function is executed by the ST static component loader. * It takes care of constructing the instance of the component. * For the base_component component, the following is done: * * 1) Fills the basic OpenMAX structure. The fields can be overwritten * by derived components. * 2) Allocates (if needed) the omx_base_component_PrivateType private structure * * @param openmaxStandComp the ST component to be initialized * @param cComponentName the OpenMAX string that describes the component * * @return OMX_ErrorInsufficientResources if a memory allocation fails */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,OMX_STRING cComponentName); /** @brief the base destructor for ST OpenMAX components * * This function is called by the standard function ComponentDeInit() * that is called by the IL core during the execution of the FreeHandle() * * @param openmaxStandComp the ST OpenMAX component to be disposed */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_Destructor(OMX_COMPONENTTYPE *openmaxStandComp); OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_getQualityLevel(OMX_COMPONENTTYPE *openmaxStandComp, OMX_U32* pQualityLevel); OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_setQualityLevel(OMX_COMPONENTTYPE *openmaxStandComp, OMX_U32 nQualityLevel); /** Changes the state of a component taking proper actions depending on * the transition requested. This base function cover only the state * changes that do not involve any port * * @param openmaxStandComp the OpenMAX component which state is to be changed * @param destinationState the requested target state * * @return OMX_ErrorNotImplemented if the state change is noty handled * in this base class, but needs a specific handling */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_DoStateSet( OMX_COMPONENTTYPE *openmaxStandComp, OMX_U32 destinationState); /** @brief Checks the header of a structure for consistency * with size and spec version * * @param header Pointer to the structure to be checked * @param size Size of the structure. it is in general obtained * with a sizeof call applied to the structure * * @return OMX error code. If the header has failed the check, * OMX_ErrorVersionMismatch is returned. * If the header fails the size check OMX_ErrorBadParameter is returned */ OSCL_IMPORT_REF OMX_ERRORTYPE checkHeader(OMX_PTR header, OMX_U32 size); /** @brief Simply fills the first two fields in any OMX structure * with the size and the version * * @param header pointer to the structure to be filled * @param size size of the structure. It can be obtained with * a call to sizeof of the structure type */ void setHeader(OMX_PTR header, OMX_U32 size); /** @brief standard openmax function * * it returns the version of the component. See OMX_Core.h */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_GetComponentVersion( OMX_HANDLETYPE hComponent, OMX_STRING pComponentName, OMX_VERSIONTYPE* pComponentVersion, OMX_VERSIONTYPE* pSpecVersion, OMX_UUIDTYPE* pComponentUUID); /** @brief Enumerates all the role of the component. * * This function is intended to be used only by a core. The ST static core * in any case does not use this function, because it can not be used before the * creation of the component, but uses a static list. * It is implemented only for API completion, and it will be not overriden * by a derived component. * * @param hComponent handle of the component * @param cRole the output string containing the n-role of the component * @param nIndex the index of the role requested */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_ComponentRoleEnum( OMX_HANDLETYPE hComponent, OMX_U8 *cRole, OMX_U32 nIndex); /** @brief standard OpenMAX function * * it sets the callback functions given by the IL client. * See OMX_Component.h */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_SetCallbacks( OMX_HANDLETYPE hComponent, OMX_CALLBACKTYPE* pCallbacks, OMX_PTR pAppData); /** @brief Part of the standard OpenMAX function * * This function return the parameters not related to any port. * These parameters are handled in the derived components * See OMX_Core.h for standard reference. */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_GetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure); /** @brief part of the standard openmax function * * This function return the parameters not related to any port, * These parameters are handled in the derived components * See OMX_Core.h for standard reference. * * @return OMX_ErrorUnsupportedIndex if the index is not supported or not handled here */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_SetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure); /** @brief base GetConfig function * * This base function is not implemented. If a derived component * needs to support any config, it must implement a derived * version of this function and assign it to the correct pointer * in the private component descriptor. */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_GetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure); /** @brief base SetConfig function * * This base function is not implemented. If a derived component * needs to support any config, it must implement a derived * version of this function and assign it to the correct pointer * in the private component descriptor. */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_SetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure); /** @brief base function not implemented * * This function can be eventually implemented by a * derived component if needed. */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_GetExtensionIndex( OMX_HANDLETYPE hComponent, OMX_STRING cParameterName, OMX_INDEXTYPE* pIndexType); /** @returns the state of the component * * This function does not need any override by derived components. */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_GetState( OMX_HANDLETYPE hComponent, OMX_STATETYPE* pState); /** @brief standard SendCommand function * * In general this function does not need a overwrite, but * a special derived component could do it. */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_SendCommand( OMX_HANDLETYPE hComponent, OMX_COMMANDTYPE Cmd, OMX_U32 nParam, OMX_PTR pCmdData); /** @brief This standard functionality is called when the component is * destroyed in the FreeHandle standard call. * * In this way the implementation of the FreeHandle is standard, * and it does not need a support by a specific component loader. * The implementation of the ComponentDeInit contains the * implementation specific part of the destroying phase. */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_ComponentDeInit( OMX_HANDLETYPE hComponent); /** @brief Component's message handler thread function * * Handles all messages coming from components and * processes them by dispatching them back to the * triggering component. */ void* compMessageHandlerFunction(void*); /** This is called by the component message entry point. * In the base version this function is named compMessageHandlerFunction * * A request is made by the component when some asynchronous services are needed: * 1) A SendCommand() is to be processed * 2) An error needs to be notified * 3) ... * * @param openmaxStandComp the component itself * @param message the message that has been passed to core */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_MessageHandler(OMX_COMPONENTTYPE *openmaxStandComp,internalRequestMessageType* message); /** * This function verify Component State and Structure header */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_ParameterSanityCheck( OMX_HANDLETYPE hComponent, OMX_U32 nPortIndex, OMX_PTR pStructure, size_t size); OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_AllocateBuffer( OMX_HANDLETYPE hComponent, OMX_BUFFERHEADERTYPE** ppBuffer, OMX_U32 nPortIndex, OMX_PTR pAppPrivate, OMX_U32 nSizeBytes); OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_UseBuffer( OMX_HANDLETYPE hComponent, OMX_BUFFERHEADERTYPE** ppBufferHdr, OMX_U32 nPortIndex, OMX_PTR pAppPrivate, OMX_U32 nSizeBytes, OMX_U8* pBuffer); OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_UseEGLImage ( OMX_HANDLETYPE hComponent, OMX_BUFFERHEADERTYPE** ppBufferHdr, OMX_U32 nPortIndex, OMX_PTR pAppPrivate, void* eglImage); OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_FreeBuffer( OMX_HANDLETYPE hComponent, OMX_U32 nPortIndex, OMX_BUFFERHEADERTYPE* pBuffer); OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_EmptyThisBuffer( OMX_HANDLETYPE hComponent, OMX_BUFFERHEADERTYPE* pBuffer); OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_FillThisBuffer( OMX_HANDLETYPE hComponent, OMX_BUFFERHEADERTYPE* pBuffer); OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_component_ComponentTunnelRequest( OMX_HANDLETYPE hComp, OMX_U32 nPort, OMX_HANDLETYPE hTunneledComp, OMX_U32 nTunneledPort, OMX_TUNNELSETUPTYPE* pTunnelSetup); #endif libomxil-bellagio-0.9.3/src/base/omx_base_video_port.h0000644000175000017500000000606211513256766017760 00000000000000/** src/base/omx_base_video_port.h Base Video Port class for OpenMAX ports to be used in derived components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include "omx_base_component.h" #include "omx_classmagic.h" #include "omx_base_port.h" #ifndef __OMX_BASE_VIDEO_PORT_H__ #define __OMX_BASE_VIDEO_PORT_H__ /** define the max output buffer size */ #define MAX_VIDEO_OUTPUT_BUF_SIZE 460800 //640 * 480 * 1.5 #define MIN_VIDEO_OUTPUT_BUF_SIZE 176*144*3 //176 * 144 * 1.5 /** * @brief the base video domain structure that describes each port. * * The data structure is derived from base port class and contain video * domain specific parameters. * Other elements can be added in the derived components structures. */ DERIVEDCLASS(omx_base_video_PortType, omx_base_PortType) #define omx_base_video_PortType_FIELDS omx_base_PortType_FIELDS \ /** @param sVideoParam Domain specific (video) OpenMAX port parameter */ \ OMX_VIDEO_PARAM_PORTFORMATTYPE sVideoParam; ENDCLASS(omx_base_video_PortType) /** * @brief The base contructor for the generic OpenMAX ST Video port * * This function is executed by the component that uses a port. * The parameter contains the info about the component. * It takes care of constructing the instance of the port and * every object needed by the base port. * * @param openmaxStandComp pointer to the Handle of the component * @param openmaxStandPort the ST port to be initialized * @param nPortIndex Index of the port to be constructed * @param isInput specifices if the port is an input or an output * * @return OMX_ErrorInsufficientResources if a memory allocation fails */ OSCL_IMPORT_REF OMX_ERRORTYPE base_video_port_Constructor( OMX_COMPONENTTYPE *openmaxStandComp, omx_base_PortType **openmaxStandPort, OMX_U32 nPortIndex, OMX_BOOL isInput); /** * @brief The base video port destructor for the generic OpenMAX ST Video port * * This function is executed by the component that uses a port. * The parameter contains the info about the port. * It takes care of destructing the instance of the port * * @param openmaxStandPort the ST port to be destructed * * @return OMX_ErrorNone */ OSCL_IMPORT_REF OMX_ERRORTYPE base_video_port_Destructor( omx_base_PortType *openmaxStandPort); #endif libomxil-bellagio-0.9.3/src/base/Makefile.am0000644000175000017500000000144011513256766015607 00000000000000noinst_LTLIBRARIES = libomxbase.la libomxbase_la_SOURCES = omx_base_component.c omx_base_component.h \ omx_base_port.c omx_base_port.h \ omx_base_filter.c omx_base_filter.h \ omx_base_sink.c omx_base_sink.h \ omx_base_source.c omx_base_source.h \ omx_base_audio_port.c omx_base_audio_port.h \ omx_base_video_port.c omx_base_video_port.h \ omx_base_image_port.c omx_base_image_port.h \ omx_base_clock_port.c omx_base_clock_port.h \ OMXComponentRMExt.c OMXComponentRMExt.h \ omx_classmagic.h libomxbase_la_CFLAGS = -I$(top_srcdir)/include -I$(top_srcdir)/src libomxil-bellagio-0.9.3/src/base/omx_base_clock_port.h0000644000175000017500000000635311513256766017750 00000000000000/** src/base/omx_base_clock_port.h Base Clock Port class for OpenMAX clock ports to be used in derived components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include "omx_classmagic.h" #include "omx_base_port.h" #ifndef __OMX_BASE_CLOCK_PORT_H__ #define __OMX_BASE_CLOCK_PORT_H__ /** * @brief the base clock domain structure that describes each port. * * The data structure is derived from base port class and contain clock * domain specific parameters. * Other elements can be added in the derived components structures. * * @param sOtherParam Domain specific (other) OpenMAX port parameter */ DERIVEDCLASS(omx_base_clock_PortType, omx_base_PortType) #define omx_base_clock_PortType_FIELDS omx_base_PortType_FIELDS \ OMX_TIME_CONFIG_TIMESTAMPTYPE sTimeStamp; /**< General OpenMAX configuration time stamp parameter */ \ OMX_TIME_MEDIATIMETYPE sMediaTime; \ OMX_TIME_CONFIG_MEDIATIMEREQUESTTYPE sMediaTimeRequest; \ OMX_OTHER_PARAM_PORTFORMATTYPE sOtherParam; /**< Domain specific (other) OpenMAX port parameter */ ENDCLASS(omx_base_clock_PortType) /** * @brief the base contructor for the generic openmax ST clock port * * This function is executed by the component that uses a port. * The parameter contains the info about the component. * It takes care of constructing the instance of the port and * every object needed by the base port. * * @param openmaxStandComp pointer to the Handle of the component * @param openmaxStandPort the ST port to be initialized * @param nPortIndex Index of the port to be constructed * @param isInput specifices if the port is an input or an output * * @return OMX_ErrorInsufficientResources if a memory allocation fails */ OMX_ERRORTYPE base_clock_port_Constructor( OMX_COMPONENTTYPE *openmaxStandComp, omx_base_PortType **openmaxStandPort, OMX_U32 nPortIndex, OMX_BOOL isInput); /** * @brief the base clock port destructor for the generic openmax ST clock port * * This function is executed by the component that uses a port. * The parameter contains the info about the port. * It takes care of destructing the instance of the port * * @param openmaxStandPort the ST port to be destructed * * @return OMX_ErrorNone */ OMX_ERRORTYPE base_clock_port_Destructor( omx_base_PortType *openmaxStandPort); OMX_ERRORTYPE base_clock_port_SendBufferFunction( omx_base_PortType *openmaxStandPort, OMX_BUFFERHEADERTYPE* pBuffer); #endif libomxil-bellagio-0.9.3/src/base/omx_base_sink.c0000644000175000017500000004512311513256766016546 00000000000000/** src/base/omx_base_sink.c OpenMAX base sink component. This component does not perform any multimedia processing. It derives from base component and contains a single input port. It can be used as base class for sink components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include OMX_ERRORTYPE omx_base_sink_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,OMX_STRING cComponentName) { OMX_ERRORTYPE err = OMX_ErrorNone; omx_base_sink_PrivateType* omx_base_sink_Private; if (openmaxStandComp->pComponentPrivate) { omx_base_sink_Private = (omx_base_sink_PrivateType*)openmaxStandComp->pComponentPrivate; } else { omx_base_sink_Private = calloc(1,sizeof(omx_base_sink_PrivateType)); if (!omx_base_sink_Private) { return OMX_ErrorInsufficientResources; } } // we could create our own port structures here // fixme maybe the base class could use a "port factory" function pointer? err = omx_base_component_Constructor(openmaxStandComp,cComponentName); /* here we can override whatever defaults the base_component constructor set * e.g. we can override the function pointers in the private struct */ omx_base_sink_Private = openmaxStandComp->pComponentPrivate; omx_base_sink_Private->BufferMgmtFunction = omx_base_sink_BufferMgmtFunction; return err; } OMX_ERRORTYPE omx_base_sink_Destructor(OMX_COMPONENTTYPE *openmaxStandComp) { return omx_base_component_Destructor(openmaxStandComp); } /** This is the central function for component processing. It * is executed in a separate thread, is synchronized with * semaphores at each port, those are released each time a new buffer * is available on the given port. */ void* omx_base_sink_BufferMgmtFunction (void* param) { OMX_COMPONENTTYPE* openmaxStandComp = (OMX_COMPONENTTYPE*)param; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; omx_base_sink_PrivateType* omx_base_sink_Private = (omx_base_sink_PrivateType*)omx_base_component_Private; omx_base_PortType *pInPort = (omx_base_PortType *)omx_base_sink_Private->ports[OMX_BASE_SINK_INPUTPORT_INDEX]; tsem_t* pInputSem = pInPort->pBufferSem; queue_t* pInputQueue = pInPort->pBufferQueue; OMX_BUFFERHEADERTYPE* pInputBuffer = NULL; OMX_COMPONENTTYPE* target_component; OMX_BOOL isInputBufferNeeded = OMX_TRUE; int inBufExchanged = 0; omx_base_sink_Private->bellagioThreads->nThreadBufferMngtID = (long int)syscall(__NR_gettid); DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s the thread ID is %i\n", __func__, (int)omx_base_sink_Private->bellagioThreads->nThreadBufferMngtID); DEBUG(DEB_LEV_FUNCTION_NAME, "In %s \n", __func__); while(omx_base_component_Private->state == OMX_StateIdle || omx_base_component_Private->state == OMX_StateExecuting || omx_base_component_Private->state == OMX_StatePause || omx_base_component_Private->transientState == OMX_TransStateLoadedToIdle){ /*Wait till the ports are being flushed*/ pthread_mutex_lock(&omx_base_sink_Private->flush_mutex); while( PORT_IS_BEING_FLUSHED(pInPort)) { pthread_mutex_unlock(&omx_base_sink_Private->flush_mutex); if(isInputBufferNeeded==OMX_FALSE) { pInPort->ReturnBufferFunction(pInPort,pInputBuffer); inBufExchanged--; pInputBuffer=NULL; isInputBufferNeeded=OMX_TRUE; DEBUG(DEB_LEV_FULL_SEQ, "Ports are flushing,so returning input buffer\n"); } DEBUG(DEB_LEV_FULL_SEQ, "In %s signalling flush all condition \n", __func__); tsem_up(omx_base_sink_Private->flush_all_condition); tsem_down(omx_base_sink_Private->flush_condition); pthread_mutex_lock(&omx_base_sink_Private->flush_mutex); } pthread_mutex_unlock(&omx_base_sink_Private->flush_mutex); /*No buffer to process. So wait here*/ if((pInputSem->semval==0 && isInputBufferNeeded==OMX_TRUE ) && (omx_base_sink_Private->state != OMX_StateLoaded && omx_base_sink_Private->state != OMX_StateInvalid)) { DEBUG(DEB_LEV_SIMPLE_SEQ, "Waiting for input buffer \n"); tsem_down(omx_base_sink_Private->bMgmtSem); } if(omx_base_sink_Private->state == OMX_StateLoaded || omx_base_sink_Private->state == OMX_StateInvalid) { DEBUG(DEB_LEV_FULL_SEQ, "In %s Buffer Management Thread is exiting\n",__func__); break; } DEBUG(DEB_LEV_FULL_SEQ, "Waiting for input buffer semval=%d in %s\n",pInputSem->semval, __func__); if(pInputSem->semval>0 && isInputBufferNeeded==OMX_TRUE ) { tsem_down(pInputSem); if(pInputQueue->nelem>0){ inBufExchanged++; isInputBufferNeeded=OMX_FALSE; pInputBuffer = dequeue(pInputQueue); if(pInputBuffer == NULL){ DEBUG(DEB_LEV_ERR, "Had NULL input buffer!!\n"); break; } } } if(isInputBufferNeeded==OMX_FALSE) { if((pInputBuffer->nFlags & OMX_BUFFERFLAG_EOS) ==OMX_BUFFERFLAG_EOS) { DEBUG(DEB_LEV_SIMPLE_SEQ, "Detected EOS flags in input buffer\n"); (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventBufferFlag, /* The command was completed */ 0, /* The commands was a OMX_CommandStateSet */ pInputBuffer->nFlags, /* The state has been changed in message->messageParam2 */ NULL); pInputBuffer->nFlags=0; } target_component=(OMX_COMPONENTTYPE*)pInputBuffer->hMarkTargetComponent; if(target_component==(OMX_COMPONENTTYPE *)openmaxStandComp) { /*Clear the mark and generate an event*/ (*(omx_base_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_component_Private->callbackData, OMX_EventMark, /* The command was completed */ 1, /* The commands was a OMX_CommandStateSet */ 0, /* The state has been changed in message->messageParam2 */ pInputBuffer->pMarkData); } else if(pInputBuffer->hMarkTargetComponent!=NULL){ /*If this is not the target component then pass the mark*/ DEBUG(DEB_LEV_FULL_SEQ, "Can't Pass Mark. This is a Sink!!\n"); } if((omx_base_sink_Private->state == OMX_StateExecuting) || (omx_base_sink_Private->state == OMX_StateIdle)) { if ((omx_base_sink_Private->BufferMgmtCallback && pInputBuffer->nFilledLen > 0) || (pInputBuffer->nFlags)){ (*(omx_base_sink_Private->BufferMgmtCallback))(openmaxStandComp, pInputBuffer); } else { /*If no buffer management call back the explicitly consume input buffer*/ pInputBuffer->nFilledLen = 0; } } else { DEBUG(DEB_LEV_ERR, "In %s Received Buffer in non-Executing State(%s) TrState (%s)\n", __func__, stateName(omx_base_sink_Private->state), transientStateName(omx_base_component_Private->transientState)); if(OMX_TransStateExecutingToIdle == omx_base_component_Private->transientState || OMX_TransStatePauseToIdle == omx_base_component_Private->transientState) { pInputBuffer->nFilledLen = 0; } } /*Input Buffer has been completely consumed. So, get new input buffer*/ if(omx_base_sink_Private->state==OMX_StatePause && !PORT_IS_BEING_FLUSHED(pInPort)) { /*Waiting at paused state*/ tsem_wait(omx_base_sink_Private->bStateSem); } /*Input Buffer has been completely consumed. So, return input buffer*/ if(pInputBuffer->nFilledLen==0) { pInPort->ReturnBufferFunction(pInPort,pInputBuffer); inBufExchanged--; pInputBuffer=NULL; isInputBufferNeeded = OMX_TRUE; } } } DEBUG(DEB_LEV_SIMPLE_SEQ,"Exiting Buffer Management Thread\n"); return NULL; } /** This is the central function for buffer processing of a two port sink component. * It is executed in a separate thread, is synchronized with * semaphores at each port, those are released each time a new buffer * is available on the given port. */ void* omx_base_sink_twoport_BufferMgmtFunction (void* param) { OMX_COMPONENTTYPE* openmaxStandComp = (OMX_COMPONENTTYPE*)param; omx_base_component_PrivateType* omx_base_component_Private=(omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; omx_base_sink_PrivateType* omx_base_sink_Private = (omx_base_sink_PrivateType*)omx_base_component_Private; omx_base_PortType *pInPort[2]; tsem_t* pInputSem[2]; queue_t* pInputQueue[2]; OMX_BUFFERHEADERTYPE* pInputBuffer[2]; OMX_COMPONENTTYPE* target_component; OMX_BOOL isInputBufferNeeded[2]; int i,outBufExchanged[2]; pInPort[0]=(omx_base_PortType *)omx_base_sink_Private->ports[OMX_BASE_SINK_INPUTPORT_INDEX]; pInPort[1]=(omx_base_PortType *)omx_base_sink_Private->ports[OMX_BASE_SINK_INPUTPORT_INDEX_1]; pInputSem[0] = pInPort[0]->pBufferSem; pInputSem[1] = pInPort[1]->pBufferSem; pInputQueue[0] = pInPort[0]->pBufferQueue; pInputQueue[1] = pInPort[1]->pBufferQueue; pInputBuffer[1]= pInputBuffer[0]=NULL; isInputBufferNeeded[0]=isInputBufferNeeded[1]=OMX_TRUE; outBufExchanged[0]=outBufExchanged[1]=0; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); while(omx_base_sink_Private->state == OMX_StateIdle || omx_base_sink_Private->state == OMX_StateExecuting || omx_base_sink_Private->state == OMX_StatePause || omx_base_sink_Private->transientState == OMX_TransStateLoadedToIdle){ /*Wait till the ports are being flushed*/ pthread_mutex_lock(&omx_base_sink_Private->flush_mutex); while( PORT_IS_BEING_FLUSHED(pInPort[0]) || PORT_IS_BEING_FLUSHED(pInPort[1])) { pthread_mutex_unlock(&omx_base_sink_Private->flush_mutex); DEBUG(DEB_LEV_FULL_SEQ, "In %s 1 signalling flush all cond iE=%d,iF=%d,oE=%d,oF=%d iSemVal=%d,oSemval=%d\n", __func__,outBufExchanged[0],isInputBufferNeeded[0],outBufExchanged[1],isInputBufferNeeded[1],pInputSem[0]->semval,pInputSem[1]->semval); if(isInputBufferNeeded[1]==OMX_FALSE && PORT_IS_BEING_FLUSHED(pInPort[1])) { pInPort[1]->ReturnBufferFunction(pInPort[1],pInputBuffer[1]); outBufExchanged[1]--; pInputBuffer[1]=NULL; isInputBufferNeeded[1]=OMX_TRUE; DEBUG(DEB_LEV_FULL_SEQ, "Ports are flushing,so returning Input 1 buffer\n"); } if(isInputBufferNeeded[0]==OMX_FALSE && PORT_IS_BEING_FLUSHED(pInPort[0])) { pInPort[0]->ReturnBufferFunction(pInPort[0],pInputBuffer[0]); outBufExchanged[0]--; pInputBuffer[0]=NULL; isInputBufferNeeded[0]=OMX_TRUE; DEBUG(DEB_LEV_FULL_SEQ, "Ports are flushing,so returning Input 0 buffer\n"); } DEBUG(DEB_LEV_FULL_SEQ, "In %s 2 signalling flush all cond iE=%d,iF=%d,oE=%d,oF=%d iSemVal=%d,oSemval=%d\n", __func__,outBufExchanged[0],isInputBufferNeeded[0],outBufExchanged[1],isInputBufferNeeded[1],pInputSem[0]->semval,pInputSem[1]->semval); tsem_up(omx_base_sink_Private->flush_all_condition); tsem_down(omx_base_sink_Private->flush_condition); pthread_mutex_lock(&omx_base_sink_Private->flush_mutex); } pthread_mutex_unlock(&omx_base_sink_Private->flush_mutex); /*No buffer to process. So wait here*/ if((isInputBufferNeeded[0]==OMX_TRUE && pInputSem[0]->semval==0) && (omx_base_sink_Private->state != OMX_StateLoaded && omx_base_sink_Private->state != OMX_StateInvalid)) { //Signalled from EmptyThisBuffer or FillThisBuffer or some thing else DEBUG(DEB_LEV_FULL_SEQ, "Waiting for next Input buffer 0\n"); tsem_down(omx_base_sink_Private->bMgmtSem); } if(omx_base_sink_Private->state == OMX_StateLoaded || omx_base_sink_Private->state == OMX_StateInvalid) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Buffer Management Thread is exiting\n",__func__); break; } if((isInputBufferNeeded[1]==OMX_TRUE && pInputSem[1]->semval==0) && (omx_base_sink_Private->state != OMX_StateLoaded && omx_base_sink_Private->state != OMX_StateInvalid) && !(PORT_IS_BEING_FLUSHED(pInPort[0]) || PORT_IS_BEING_FLUSHED(pInPort[1]))) { //Signalled from EmptyThisBuffer or FillThisBuffer or some thing else DEBUG(DEB_LEV_FULL_SEQ, "Waiting for next Input buffer 1\n"); tsem_down(omx_base_sink_Private->bMgmtSem); } if(omx_base_sink_Private->state == OMX_StateLoaded || omx_base_sink_Private->state == OMX_StateInvalid) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Buffer Management Thread is exiting\n",__func__); break; } DEBUG(DEB_LEV_SIMPLE_SEQ, "Waiting for Input buffer 0 semval=%d \n",pInputSem[0]->semval); if(pInputSem[0]->semval>0 && isInputBufferNeeded[0]==OMX_TRUE ) { tsem_down(pInputSem[0]); if(pInputQueue[0]->nelem>0){ outBufExchanged[0]++; isInputBufferNeeded[0]=OMX_FALSE; pInputBuffer[0] = dequeue(pInputQueue[0]); if(pInputBuffer[0] == NULL){ DEBUG(DEB_LEV_ERR, "Had NULL Input buffer!!\n"); break; } } } /*When we have input buffer to process then get one Input buffer*/ if(pInputSem[1]->semval>0 && isInputBufferNeeded[1]==OMX_TRUE) { tsem_down(pInputSem[1]); DEBUG(DEB_LEV_FULL_SEQ, "Wait over for Input buffer 1 semval=%d \n",pInputSem[1]->semval); if(pInputQueue[1]->nelem>0){ outBufExchanged[1]++; isInputBufferNeeded[1]=OMX_FALSE; pInputBuffer[1] = dequeue(pInputQueue[1]); if(pInputBuffer[1] == NULL){ DEBUG(DEB_LEV_ERR, "Had NULL Input buffer!! op is=%d,iq=%d\n",pInputSem[1]->semval,pInputQueue[1]->nelem); break; } } } for(i=0;i < (omx_base_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainImage].nPorts + omx_base_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts);i++) { if(omx_base_sink_Private->ports[i]->sPortParam.eDomain != OMX_PortDomainOther){ /* clock ports are not to be processed */ /*Process Input buffer of Port i */ if(isInputBufferNeeded[i]==OMX_FALSE) { /*Pass the Mark to all outgoing buffers*/ if(omx_base_sink_Private->pMark.hMarkTargetComponent != NULL){ pInputBuffer[i]->hMarkTargetComponent = omx_base_sink_Private->pMark.hMarkTargetComponent; pInputBuffer[i]->pMarkData = omx_base_sink_Private->pMark.pMarkData; } target_component=(OMX_COMPONENTTYPE*)pInputBuffer[i]->hMarkTargetComponent; if(target_component==(OMX_COMPONENTTYPE *)openmaxStandComp) { /*Clear the mark and generate an event*/ (*(omx_base_sink_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_sink_Private->callbackData, OMX_EventMark, /* The command was completed */ 1, /* The commands was a OMX_CommandStateSet */ i, /* The state has been changed in message->messageParam2 */ pInputBuffer[i]->pMarkData); } else if(pInputBuffer[i]->hMarkTargetComponent!=NULL){ /*If this is not the target component then pass the mark*/ //pInputBuffer[i]->pMarkData=NULL; DEBUG(DEB_LEV_FULL_SEQ, "Pass Mark. This is a Source!!\n"); } if(omx_base_sink_Private->state == OMX_StateExecuting) { if (omx_base_sink_Private->BufferMgmtCallback && pInputBuffer[i]->nFilledLen > 0) { (*(omx_base_sink_Private->BufferMgmtCallback))(openmaxStandComp, pInputBuffer[i]); } else { /*If no buffer management call back then don't produce any Input buffer*/ pInputBuffer[i]->nFilledLen = 0; } } else { DEBUG(DEB_LEV_ERR, "In %s Received Buffer in non-Executing State(%x)\n", __func__, (int)omx_base_sink_Private->state); if(OMX_TransStateExecutingToIdle == omx_base_component_Private->transientState || OMX_TransStatePauseToIdle == omx_base_component_Private->transientState) { pInputBuffer[i]->nFilledLen = 0; } } if((pInputBuffer[i]->nFlags & OMX_BUFFERFLAG_EOS) == OMX_BUFFERFLAG_EOS && pInputBuffer[i]->nFilledLen==0) { DEBUG(DEB_LEV_FULL_SEQ, "Detected EOS flags in input buffer filled len=%d\n", (int)pInputBuffer[i]->nFilledLen); (*(omx_base_sink_Private->callbacks->EventHandler)) (openmaxStandComp, omx_base_sink_Private->callbackData, OMX_EventBufferFlag, /* The command was completed */ i, /* The commands was a OMX_CommandStateSet */ pInputBuffer[i]->nFlags, /* The state has been changed in message->messageParam2 */ NULL); } if(omx_base_sink_Private->state==OMX_StatePause && !(PORT_IS_BEING_FLUSHED(pInPort[0]) || PORT_IS_BEING_FLUSHED(pInPort[1]))) { /*Waiting at paused state*/ tsem_wait(omx_base_component_Private->bStateSem); } /*Input Buffer has been produced or EOS. So, return Input buffer and get new buffer*/ if(pInputBuffer[i]->nFilledLen ==0 || ((pInputBuffer[i]->nFlags & OMX_BUFFERFLAG_EOS) == OMX_BUFFERFLAG_EOS)){ pInPort[i]->ReturnBufferFunction(pInPort[i],pInputBuffer[i]); outBufExchanged[i]--; pInputBuffer[i]=NULL; isInputBufferNeeded[i]=OMX_TRUE; } } } } /*Clear the Mark*/ if(omx_base_sink_Private->pMark.hMarkTargetComponent != NULL){ omx_base_sink_Private->pMark.hMarkTargetComponent = NULL; omx_base_sink_Private->pMark.pMarkData = NULL; } } DEBUG(DEB_LEV_SIMPLE_SEQ,"Exiting Buffer Management Thread\n"); return NULL; } libomxil-bellagio-0.9.3/src/base/omx_base_filter.h0000644000175000017500000000623511513256766017075 00000000000000/** src/base/omx_base_filter.h OpenMAX Base Filter component. This component does not perform any multimedia processing. It derives from base component and contains two ports. It can be used as base class for codec and filter components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __OMX_BASE_FILTER_H__ #define __OMX_BASE_FILTER_H__ #include #include #include #include "omx_base_component.h" /** OMX_BASE_FILTER_INPUTPORT_INDEX is the index of any input port for the derived components */ #define OMX_BASE_FILTER_INPUTPORT_INDEX 0 /** OMX_BASE_FILTER_OUTPUTPORT_INDEX is the index of any output port for the derived components */ #define OMX_BASE_FILTER_OUTPUTPORT_INDEX 1 /** OMX_BASE_FILTER_ALLPORT_INDEX as the standard specifies, the -1 value for port index is used to point to all the ports */ #define OMX_BASE_FILTER_ALLPORT_INDEX -1 /** Base Filter component private structure. */ DERIVEDCLASS(omx_base_filter_PrivateType, omx_base_component_PrivateType) #define omx_base_filter_PrivateType_FIELDS omx_base_component_PrivateType_FIELDS \ /** @param pPendingOutputBuffer pending Output Buffer pointer */ \ OMX_BUFFERHEADERTYPE* pPendingOutputBuffer; \ /** @param BufferMgmtCallback function pointer for algorithm callback */ \ void (*BufferMgmtCallback)(OMX_COMPONENTTYPE* openmaxStandComp, OMX_BUFFERHEADERTYPE* inputbuffer, OMX_BUFFERHEADERTYPE* outputbuffer); ENDCLASS(omx_base_filter_PrivateType) /** * @brief The base filter contructor for the OpenMAX ST components * * @param openmaxStandComp the ST component to be initialized * @param cComponentName the OpenMAX string that describes the component * * @return OMX_ErrorInsufficientResources if a memory allocation fails */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_filter_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,OMX_STRING cComponentName); /** @brief the base filter destructor for ST OpenMAX components * * @param openmaxStandComp the ST OpenMAX component to be disposed */ OSCL_IMPORT_REF OMX_ERRORTYPE omx_base_filter_Destructor(OMX_COMPONENTTYPE *openmaxStandComp); /** This is the central function for component processing. It * is executed in a separate thread, is synchronized with * semaphores at each port, those are released each time a new buffer * is available on the given port. */ void* omx_base_filter_BufferMgmtFunction(void* param); #endif libomxil-bellagio-0.9.3/src/base/omx_base_audio_port.h0000644000175000017500000000552011513256766017751 00000000000000/** src/base/omx_base_audio_port.h Base Audio Port class for OpenMAX ports to be used in derived components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include "omx_classmagic.h" #include "omx_base_port.h" #ifndef __OMX_BASE_AUDIO_PORT_H__ #define __OMX_BASE_AUDIO_PORT_H__ /** * @brief the base audio domain structure that describes each port. * * The data structure is derived from base port class and contain audio * domain specific parameters. * Other elements can be added in the derived components structures. */ DERIVEDCLASS(omx_base_audio_PortType, omx_base_PortType) #define omx_base_audio_PortType_FIELDS omx_base_PortType_FIELDS \ /** @param sAudioParam Domain specific (audio) OpenMAX port parameter */ \ OMX_AUDIO_PARAM_PORTFORMATTYPE sAudioParam; ENDCLASS(omx_base_audio_PortType) /** * @brief the base contructor for the generic OpenMAX ST Audio port * * This function is executed by the component that uses a port. * The parameter contains the info about the component. * It takes care of constructing the instance of the port and * every object needed by the base port. * * @param openmaxStandComp pointer to the Handle of the component * @param openmaxStandPort the ST port to be initialized * @param nPortIndex Index of the port to be constructed * @param isInput specifices if the port is an input or an output * * @return OMX_ErrorInsufficientResources if a memory allocation fails */ OMX_ERRORTYPE base_audio_port_Constructor( OMX_COMPONENTTYPE *openmaxStandComp, omx_base_PortType **openmaxStandPort, OMX_U32 nPortIndex, OMX_BOOL isInput); /** * @brief the base audio port destructor for the generic OpenMAX ST Audio port * * This function is executed by the component that uses a port. * The parameter contains the info about the port. * It takes care of destructing the instance of the port * * @param openmaxStandPort the ST port to be destructed * * @return OMX_ErrorNone */ OMX_ERRORTYPE base_audio_port_Destructor( omx_base_PortType *openmaxStandPort); #endif libomxil-bellagio-0.9.3/src/base/OMXComponentRMExt.h0000644000175000017500000000354111513256766017176 00000000000000/** src/base/OMXComponentRMExt.h This extension of the core provides functions for the resource manager used to retrieve the quality levels of the components available. Copyright (C) 2008-2010 STMicroelectronics This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __OMXCOMPONENTRMEXT_H__ #define __OMXCOMPONENTRMEXT_H__ #include /** * @file * @brief Extended OMXIL component interface for quality-of-service */ /** * @brief Returns the currently installed quality level of a OMXIL component * instance * @param hComponent [IN] Component handle * @param pQualityLevel [OUT] Current quality level * @return OMX_ErrorNone * @remark This function should move to a OMX_GetParameter call with appropriate * structure. */ OMX_ERRORTYPE getQualityLevel(OMX_HANDLETYPE hComponent, OMX_U32* pQualityLevel); /** * @brief Sets the quality level on a OMXIL component instance * @param hComponent [IN] Component handle * @param nQualityLevel [IN] New quality level * @return OMX_ErrorNone * @remark This function should move to a OMX_GetParameter call with appropriate * structure. */ OMX_ERRORTYPE setQualityLevel(OMX_HANDLETYPE hComponent, OMX_U32 nQualityLevel); #endif libomxil-bellagio-0.9.3/src/base/omx_base_source.h0000644000175000017500000000577511513256766017120 00000000000000/** src/base/omx_base_source.h OpenMAX base source component. This component does not perform any multimedia processing. It derives from base component and contains a single port. It can be used as base class for source components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef _OMX_BASE_SOURCE_COMPONENT_H_ #define _OMX_BASE_SOURCE_COMPONENT_H_ #include #include #include #include "omx_base_component.h" /** OMX_BASE_SOURCE_OUTPUTPORT_INDEX is the index of any output port for the derived components */ #define OMX_BASE_SOURCE_OUTPUTPORT_INDEX 0 /** OMX_BASE_SPLITTER_OUTPUTPORT_INDEX_1 is the index of any output port for the derived components */ #define OMX_BASE_SOURCE_OUTPUTPORT_INDEX_1 1 /** OMX_BASE_SOURCE_ALLPORT_INDEX as the standard specifies, the -1 value for port index is used to point to all the ports */ #define OMX_BASE_SOURCE_ALLPORT_INDEX -1 /** base source component private structure. */ DERIVEDCLASS(omx_base_source_PrivateType, omx_base_component_PrivateType) #define omx_base_source_PrivateType_FIELDS omx_base_component_PrivateType_FIELDS \ /** @param BufferMgmtCallback function pointer for algorithm callback */ \ void (*BufferMgmtCallback)(OMX_COMPONENTTYPE* openmaxStandComp, OMX_BUFFERHEADERTYPE* outputbuffer); ENDCLASS(omx_base_source_PrivateType) /** Base source contructor */ OMX_ERRORTYPE omx_base_source_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,OMX_STRING cComponentName); /** The base source destructor. It simply calls the base destructor */ OMX_ERRORTYPE omx_base_source_Destructor(OMX_COMPONENTTYPE *openmaxStandComp); /** This is the central function for component processing. It * is executed in a separate thread, is synchronized with * semaphores at each port, those are released each time a new buffer * is available on the given port. */ void* omx_base_source_BufferMgmtFunction(void* param); /** This is the central function for buffer processing of a two port source component. * It is executed in a separate thread, is synchronized with * semaphores at each port, those are released each time a new buffer * is available on the given port. */ void* omx_base_source_twoport_BufferMgmtFunction (void* param); #endif libomxil-bellagio-0.9.3/src/component_loader.h0000644000175000017500000002352011513256766016345 00000000000000/** src/component_loader.h OpenMAX Component loader APIs. This header file specifies the entry point that a component loader must provide. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __COMPONENT_LOADER_H__ #define __COMPONENT_LOADER_H__ #include /** @brief Component loader entry points * * The component loader generic structure contains the entry points for * each component loader. The list of component loaders is filled using * a special function, called AddComponentLoader. */ typedef struct BOSA_COMPONENTLOADER { /** @brief The constructor of the component loader * * The component loader creator is called by the OMX_Init function. It is * implemented by the specific component loader. It must allocate any * resource needed by the component loader. * * @param loader A private data structure, if needed by the component loader. * This data structure is passed every time a function of this loader is called. * @return OMX_ErrorInsufficientResources if the component loader can not be constructed */ OMX_ERRORTYPE (*BOSA_InitComponentLoader)(struct BOSA_COMPONENTLOADER *loader); /** @brief The destructor of the component loader * * The component loader destructor is called by the OMX_Deinit function. It is * implemented by the specific component loader. It must free every specific * resource used by the component loader. * * @param loader the specific component loader. This parameter is also specific * to the component loader, and its structure is defined by each loader. * @return OMX_ErrorNone */ OMX_ERRORTYPE (*BOSA_DeInitComponentLoader)(struct BOSA_COMPONENTLOADER *loader); /** @brief The component constructor of the current component loader * * This function implements the OMX_GetHandle function for the * specific component loader. Its interface is the same as the * standard GetHandle function, except that the first parameter * that contains the private data of the specific component loader. * * @param loader Private data of the component loader * @param pHandle the openmax handle returned by the function, or NULL * in case of failure. * @param cComponentName A string that contains the standard * component's name * @param pAppData private data of the component (if needed) * @param pCallBacks IL client callback function pointers passed * to the component * * @return OMX_ErrorNone if the component is correctly constructed and returned * @return OMX_ErrorComponentNotFound if the component is not found * @return OMX_ErrorInsufficientResources if the component exists but can not be allocated. */ OMX_ERRORTYPE (*BOSA_CreateComponent)( struct BOSA_COMPONENTLOADER *loader, OMX_HANDLETYPE* pHandle, OMX_STRING cComponentName, OMX_PTR pAppData, OMX_CALLBACKTYPE* pCallBacks); /** @brief The component destructor of the current component loader * * This function implements the OMX_FreeHandle function for the * specific component loader. Its interface is the same as the * standard FreeHandle function, except that the first parameter * that contains the private data of the specific component loader. * * @param loader Private data of the component loader * @param pHandle the openmax handle returned by the function, or NULL * in case of failure. * @param cComponentName A string that contains the standard * component's name * @param pAppData private data of the component (if needed) * @param pCallBacks IL client callback function pointers passed * to the component * * @return OMX_ErrorNone if the component is correctly constructed and returned * @return OMX_ErrorComponentNotFound if the component is not found * @return OMX_ErrorInsufficientResources if the component exists but can not be allocated. */ OMX_ERRORTYPE (*BOSA_DestroyComponent)( struct BOSA_COMPONENTLOADER *loader, OMX_HANDLETYPE hComponent); /** @brief An enumerator of the components handled by the current component loader. * * This function implements the OMX_ComponentNameEnum function * for the specific component loader * * @param loader Private data of the component loader * @param cComponentName A pointer to a null terminated string * with the component name. The names of the components are * strings less than 127 bytes in length plus the trailing null * for a maximum size of 128 bytes (OMX_MAX_STRINGNAME_SIZE). * @param nNameLength The number of characters in the * cComponentName string. With all component name strings * restricted to less than 128 characters (including the trailing null) * it is recommended that the caller provide a input string for the * cComponentName of 128 characters. * @param nIndex A number containing the enumeration index * for the component. Multiple calls to OMX_ComponentNameEnum * with increasing values of nIndex will enumerate through the * component names in the system until OMX_ErrorNoMore is returned. * The value of nIndex is 0 to (N-1), where N is the number of * valid installed components in the system. * * @return OMX_ErrorNone If the command successfully executes * @return OMX_ErrorNoMore If the value of nIndex exceeds the * number of components handled by the component loader minus 1 */ OMX_ERRORTYPE (*BOSA_ComponentNameEnum)( struct BOSA_COMPONENTLOADER *loader, OMX_STRING cComponentName, OMX_U32 nNameLength, OMX_U32 nIndex); /** @brief This function implements the OMX_GetRolesOfComponent standard function for the current component loader * * This function will return the number of roles supported by * the given component and (if the roles field is non-NULL) * the names of those roles. The call will fail if an insufficiently * sized array of names is supplied. * To ensure the array is sufficiently sized the client should: * - first call this function with the roles field NULL to * determine the number of role names * - second call this function with the roles field pointing to * an array of names allocated according to the number * returned by the first call. * * @param loader Private data of the component loader * @param compName The name of the component being queried about. * @param pNumRoles This parameter is used both as input and output. * If roles is NULL, the input is ignored and the output specifies * how many roles the component supports. If compNames is not NULL, * on input it bounds the size of the input structure and on output, * it specifies the number of roles string names listed within * the roles parameter. * @param roles If NULL this field is ignored. If non-NULL this points * to an array of 128-byte strings which accepts a list of the names of * all standard components roles implemented on the specified * component name. numComps indicates the number of names. */ OMX_ERRORTYPE (*BOSA_GetRolesOfComponent)( struct BOSA_COMPONENTLOADER *loader, OMX_STRING compName, OMX_U32 *pNumRoles, OMX_U8 **roles); /** @brief This function implements the OMX_GetComponentsOfRole * standard function for the current component loader * * This function will return the number of components that support * the given role and (if the compNames field is non-NULL) the names * of those components. The call will fail if an insufficiently * sized array of names is supplied. To ensure the array is * sufficiently sized the client should: * - first call this function with the compNames field NULL to * determine the number of component names * - second call this function with the compNames field pointing * to an array of names allocated according to the number * returned by the first call. * * @param loader Private data of the component loader * @param role This is generic standard component name consisting * only of component class name and the type within that class * (e.g. 'audio_decoder.aac'). * @param pNumComps This is used both as input and output. If compNames * is NULL, the input is ignored and the output specifies how many * components support the given role. If compNames is not NULL, * on input it bounds the size of the input structure and on output, * it specifies the number of components string names listed within * the compNames parameter. * @param compNames If NULL this field is ignored. If non-NULL this points * to an array of 128-byte strings which accepts a list of the names of * all physical components that implement the specified standard component * name. Each name is NULL terminated. numComps indicates the number of names. */ OMX_ERRORTYPE (*BOSA_GetComponentsOfRole) ( struct BOSA_COMPONENTLOADER *loader, OMX_STRING role, OMX_U32 *pNumComps, OMX_U8 **compNames); /** @brief The reference to the current component loader private data * * The current loader specified by this structure is described with this * generic pointer that contains the private data of the loader. */ void *loaderPrivate; } BOSA_COMPONENTLOADER; #endif libomxil-bellagio-0.9.3/src/omx_create_loaders.h0000644000175000017500000000236211513256766016655 00000000000000/** src/omx_create_loaders.h Define a generic entry point for component loaders creation. Each component loader should provide an implementation of the createComponentLoaders function. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __OMX_CREATE_LOADERS_H__ #define __OMX_CREATE_LOADERS_H__ #ifdef __cplusplus extern "C" { #endif int createComponentLoaders(void); #ifdef __cplusplus } #endif /* __cplusplus */ #endif // __OMX_CREATE_LOADERS_H__ libomxil-bellagio-0.9.3/src/utils.c0000644000175000017500000001146511513256766014155 00000000000000/** src/utils.c Set of utility functions for debugging purposes Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include "utils.h" char *stateName(OMX_STATETYPE state) { char *nameString; switch(state) { case 0: nameString = "OMX_StateInvalid"; break; case 1: nameString = "OMX_StateLoaded"; break; case 2: nameString = "OMX_StateIdle"; break; case 3: nameString = "OMX_StateExecuting"; break; case 4: nameString = "OMX_StatePause"; break; case 5: nameString = "OMX_StateWaitForResources"; break; default: nameString = '\0'; } return nameString; } char *transientStateName(int state) { char *nameString; switch(state) { case 0: nameString = "OMX_StateInvalid"; break; case 1: nameString = "OMX_TransStateLoadedToIdle"; break; case 2: nameString = "OMX_TransStateIdleToPause"; break; case 3: nameString = "OMX_TransStatePauseToExecuting"; break; case 4: nameString = "OMX_TransStateIdleToExecuting"; break; case 5: nameString = "OMX_TransStateExecutingToIdle"; break; case 6: nameString = "OMX_TransStateExecutingToPause"; break; case 7: nameString = "OMX_TransStatePauseToIdle"; break; case 8: nameString = "OMX_TransStateIdleToLoaded"; break; default: nameString = '\0'; } return nameString; } char *errorName(OMX_ERRORTYPE error) { char *nameString; switch(error) { case 0: nameString = "OMX_ErrorNone"; break; case 0x80001000: nameString = "OMX_ErrorInsufficientResources"; break; case 0x80001001: nameString = "OMX_ErrorUndefined"; break; case 0x80001002: nameString = "OMX_ErrorInvalidComponentName"; break; case 0x80001003: nameString = "OMX_ErrorComponentNotFound"; break; case 0x80001004: nameString = "OMX_ErrorInvalidComponent"; break; case 0x80001005: nameString = "OMX_ErrorBadParameter"; break; case 0x80001006: nameString = "OMX_ErrorNotImplemented"; break; case 0x80001007: nameString = "OMX_ErrorUnderflow"; break; case 0x80001008: nameString = "OMX_ErrorOverflow"; break; case 0x80001009: nameString = "OMX_ErrorHardware"; break; case 0x8000100A: nameString = "OMX_ErrorInvalidState"; break; case 0x8000100B: nameString = "OMX_ErrorStreamCorrupt"; break; case 0x8000100C: nameString = "OMX_ErrorPortsNotCompatible"; break; case 0x8000100D: nameString = "OMX_ErrorResourcesLost"; break; case 0x8000100E: nameString = "OMX_ErrorNoMore"; break; case 0x8000100F: nameString = "OMX_ErrorVersionMismatch"; break; case 0x80001010: nameString = "OMX_ErrorNotReady"; break; case 0x80001011: nameString = "OMX_ErrorTimeout"; break; case 0x80001012: nameString = "OMX_ErrorSameState"; break; case 0x80001013: nameString = "OMX_ErrorResourcesPreempted"; break; case 0x80001014: nameString = "OMX_ErrorPortUnresponsiveDuringAllocation"; break; case 0x80001015: nameString = "OMX_ErrorPortUnresponsiveDuringDeallocation"; break; case 0x80001016: nameString = "OMX_ErrorPortUnresponsiveDuringStop"; break; case 0x80001017: nameString = "OMX_ErrorIncorrectStateTransition"; break; case 0x80001018: nameString = "OMX_ErrorIncorrectStateOperation"; break; case 0x80001019: nameString = "OMX_ErrorUnsupportedSetting"; break; case 0x8000101A: nameString = "OMX_ErrorUnsupportedIndex"; break; case 0x8000101B: nameString = "OMX_ErrorBadPortIndex"; break; case 0x8000101C: nameString = "OMX_ErrorPortUnpopulated"; break; case 0x8000101D: nameString = "OMX_ErrorComponentSuspended"; break; case 0x8000101E: nameString = "OMX_ErrorDynamicResourcesUnavailable"; break; case 0x8000101F: nameString = "OMX_ErrorMbErrorsInFrame"; break; case 0x80001020: nameString = "OMX_ErrorFormatNotDetected"; break; case 0x80001021: nameString = "OMX_ErrorContentPipeOpenFailed"; break; case 0x80001022: nameString = "OMX_ErrorContentPipeCreationFailed"; break; case 0x80001023: nameString = "OMX_ErrorSeperateTablesUsed"; break; case 0x80001024: nameString = "OMX_ErrorTunnelingUnsupported"; break; default: nameString = '\0'; } return nameString; } libomxil-bellagio-0.9.3/src/common.c0000644000175000017500000001107011565375761014301 00000000000000/** src/common.c This file implements some useful common functionalities for handling the register files used in Bellagio Copyright (C) 2007-2011 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include "config.h" #include "common.h" #define REGISTRY_FILENAME ".omxregister" #ifdef ANDROID_COMPILATION #define TMP_DATA_DIRECTORY "/data/omx/" #else #define TMP_DATA_DIRECTORY "/tmp/" #endif /** @brief Get registry filename * This function returns the name of the registry file for the components loaded with the default component loader. */ char* componentsRegistryGetFilename() { char *omxregistryfile = NULL; char *buffer; buffer=getenv("OMX_BELLAGIO_REGISTRY"); if(buffer!=NULL&&*buffer!='\0') { omxregistryfile = strdup(buffer); return omxregistryfile; } buffer=getenv("XDG_DATA_HOME"); if(buffer!=NULL&&*buffer!='\0') { omxregistryfile = malloc(strlen(buffer) + strlen(REGISTRY_FILENAME) + 2); strcpy(omxregistryfile, buffer); strcat(omxregistryfile, "/"); strcat(omxregistryfile, REGISTRY_FILENAME); return omxregistryfile; } buffer=getenv("HOME"); if(buffer!=NULL&&*buffer!='\0') { omxregistryfile = malloc(strlen(buffer) + strlen(REGISTRY_FILENAME) + 3); strcpy(omxregistryfile, buffer); strcat(omxregistryfile, "/"); strcat(omxregistryfile, REGISTRY_FILENAME); } else { omxregistryfile = malloc(strlen(TMP_DATA_DIRECTORY) + strlen(REGISTRY_FILENAME) + 2); strcpy(omxregistryfile, TMP_DATA_DIRECTORY); strcat(omxregistryfile, REGISTRY_FILENAME); } return omxregistryfile; } /* This function return the absolute path of the registry_name file or * directory depending by the environment variable set. * the variables considered in order are: * $XDG_DATA_HOME * $HOME * TMP_DATA_DIRECTORY (/tmp by default on Linux) * The function does not check for file/dir existence */ char* loadersRegistryGetFilename(char* registry_name) { char *omxregistryfile = NULL; char *buffer; buffer=getenv("XDG_DATA_HOME"); if(buffer!=NULL&&*buffer!='\0') { omxregistryfile = malloc(strlen(buffer) + strlen(registry_name) + 2); strcpy(omxregistryfile, buffer); strcat(omxregistryfile, "/"); strcat(omxregistryfile, registry_name); return omxregistryfile; } buffer=getenv("HOME"); if(buffer!=NULL&&*buffer!='\0') { omxregistryfile = malloc(strlen(buffer) + strlen(registry_name) + 3); strcpy(omxregistryfile, buffer); strcat(omxregistryfile, "/"); strcat(omxregistryfile, registry_name); } else { omxregistryfile = malloc(strlen(TMP_DATA_DIRECTORY) + strlen(registry_name) + 2); strcpy(omxregistryfile, TMP_DATA_DIRECTORY); strcat(omxregistryfile, registry_name); } return omxregistryfile; } /** This function creates the directory specified by newdir * It returns 1 if is not possible to create it * It returns 0 if the directory is created or it already exists */ int makedir (const char *newdir) { char *buffer; char *p; int err; size_t len; buffer = strdup(newdir); len = strlen(buffer); if (len == 0) { free(buffer); return 1; } if (buffer[len-1] == '/') { buffer[len-1] = '\0'; } err = mkdir(buffer, 0755); if (err == 0 || (( err == -1) && (errno == EEXIST))) { free(buffer); return 0; } p = buffer+1; while (1) { char hold; while(*p && *p != '\\' && *p != '/') p++; hold = *p; *p = 0; if ((mkdir(buffer, 0755) == -1) && (errno == ENOENT)) { free(buffer); return 1; } if (hold == 0) break; *p++ = hold; } free(buffer); return 0; } int exists(const char* fname) { FILE *file; if ((file = fopen(fname, "r"))) { fclose(file); return 1; } return 0; } #ifdef COMMON_TEST int main (int argc, char*argv[]) { printf (componentsRegistryGetFilename ()); } #endif libomxil-bellagio-0.9.3/src/omx_reference_resource_manager.h0000644000175000017500000000477011513256766021245 00000000000000/** src/omx_reference_resource_manager.h This simple resource manager emulates the behavior of a real RM. It applies the rules defined in the OpenMAX spec. It can be replaced in the future by a real system. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef _OMX_REFERENCE_RESOURCE_MANAGER_H_ #define _OMX_REFERENCE_RESOURCE_MANAGER_H_ #define MAX_COMPONENTS_TYPES_HANDLED 500 #include "omxcore.h" typedef struct ComponentListType ComponentListType; struct ComponentListType { OMX_COMPONENTTYPE *openmaxStandComp; OMX_U32 nGroupPriority; OMX_U32 timestamp; ComponentListType* next; }; typedef struct NameIndexType NameIndexType; struct NameIndexType { char* component_name; int index; int max_components; }; int globalIndex; NameIndexType *listOfcomponentRegistered; ComponentListType **globalComponentList; ComponentListType **globalWaitingComponentList; OMX_ERRORTYPE RM_RegisterComponent(char *name, int max_components); OMX_ERRORTYPE addElemToList(ComponentListType **list, OMX_COMPONENTTYPE *openmaxStandComp, int index, OMX_BOOL bIsWaiting); OMX_ERRORTYPE removeElemFromList(ComponentListType **list, OMX_COMPONENTTYPE *openmaxStandComp); int numElemInList(ComponentListType *list); OMX_ERRORTYPE clearList(ComponentListType **list); /** Debug flags */ #define RM_SHOW_NAME 0x01 #define RM_SHOW_ADDRESS 0x02 OMX_ERRORTYPE RM_Init(); OMX_ERRORTYPE RM_Deinit(); OMX_ERRORTYPE RM_getResource(OMX_COMPONENTTYPE *openmaxStandComp); OMX_ERRORTYPE RM_releaseResource(OMX_COMPONENTTYPE *openmaxStandComp); OMX_ERRORTYPE RM_waitForResource(OMX_COMPONENTTYPE *openmaxStandComp); OMX_ERRORTYPE RM_removeFromWaitForResource(OMX_COMPONENTTYPE *openmaxStandComp); void RM_printList(ComponentListType *list, int viewFlag); #endif libomxil-bellagio-0.9.3/src/Makefile.in0000644000175000017500000013135411565413754014715 00000000000000# Makefile.in generated by automake 1.11.1 from Makefile.am. # @configure_input@ # Copyright (C) 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, # 2003, 2004, 2005, 2006, 2007, 2008, 2009 Free Software 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install-include_extraHEADERS install-info install-info-am \ install-libLTLIBRARIES install-man install-pdf install-pdf-am \ install-ps install-ps-am install-strip installcheck \ installcheck-am installdirs installdirs-am maintainer-clean \ maintainer-clean-generic mostlyclean mostlyclean-compile \ mostlyclean-generic mostlyclean-libtool pdf pdf-am ps ps-am \ tags tags-recursive uninstall uninstall-am \ uninstall-binPROGRAMS uninstall-include_extraHEADERS \ uninstall-libLTLIBRARIES # 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: libomxil-bellagio-0.9.3/src/content_pipe_file.h0000644000175000017500000000244611513256766016507 00000000000000/** src/content_pipe_file.h This file implements the support for content pipes related to local files. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __CONTENT_PIPE_FILE_H__ #define __CONTENT_PIPE_FILE_H__ #include #include #include #include #include #include #include #include "omx_comp_debug_levels.h" typedef struct { /* public */ CP_PIPETYPE pipe; /* private */ int fd; } file_ContentPipe; #endif libomxil-bellagio-0.9.3/src/Makefile.am0000644000175000017500000000444311565375761014707 00000000000000# Build order is important # First base, then core, finally components SUBDIRS = base core_extensions . components dynamic_loader bin_PROGRAMS = omxregister-bellagio omxregister_bellagio_SOURCES = omxregister.c common.c common.h omxregister_bellagio_CFLAGS = -DOMXILCOMPONENTSPATH=\"$(plugindir)/\" \ -I$(top_srcdir)/include omxregister_bellagio_LDFLAGS = -lomxil-bellagio -L$(builddir) lib_LTLIBRARIES = libomxil-bellagio.la libomxil_bellagio_la_SOURCES = component_loader.h \ st_static_component_loader.c st_static_component_loader.h \ omxcore.c omxcore.h \ omx_create_loaders_linux.c omx_create_loaders.h \ omx_comp_debug_levels.h \ extension_struct.h \ tsemaphore.c tsemaphore.h \ queue.c queue.h \ utils.c utils.h \ common.c common.h \ content_pipe_inet.c content_pipe_inet.h \ content_pipe_file.c content_pipe_file.h \ omx_reference_resource_manager.c \ omx_reference_resource_manager.h libomxil_bellagio_la_CFLAGS = -I$(top_srcdir)/include -I$(srcdir)/base -I$(srcdir)/core_extensions \ -DINSTALL_PATH_STR=\"$(plugindir)\" -DOMX_LOADERS_DIRNAME=\"$(libdir)/omxloaders\/\" libomxil_bellagio_la_LIBADD = base/libomxbase.la core_extensions/libomxcoreext.la -lpthread libomxil_bellagio_la_LDFLAGS = -version-info @SHARED_VERSION_INFO@ include_extradir = $(includedir)/bellagio include_extra_HEADERS = $(srcdir)/omxcore.h \ $(srcdir)/queue.h \ $(srcdir)/utils.h \ $(srcdir)/component_loader.h \ $(srcdir)/st_static_component_loader.h \ $(srcdir)/tsemaphore.h \ $(srcdir)/omx_comp_debug_levels.h \ $(srcdir)/common.h \ $(srcdir)/omx_reference_resource_manager.h \ $(srcdir)/base/omx_base_component.h \ $(srcdir)/base/omx_base_port.h \ $(srcdir)/base/omx_base_audio_port.h \ $(srcdir)/base/omx_base_video_port.h \ $(srcdir)/base/omx_base_filter.h \ $(srcdir)/base/omx_base_sink.h \ $(srcdir)/base/omx_base_source.h \ $(srcdir)/base/omx_classmagic.h \ $(srcdir)/base/omx_base_clock_port.h \ $(srcdir)/base/omx_base_image_port.h \ $(srcdir)/extension_struct.h \ $(srcdir)/base/OMXComponentRMExt.h \ $(srcdir)/core_extensions/OMXCoreRMExt.h \ $(top_srcdir)/test/components/common/user_debug_levels.h libomxil-bellagio-0.9.3/src/dynamic_loader/0000755000175000017500000000000011565425034015665 500000000000000libomxil-bellagio-0.9.3/src/dynamic_loader/ste_dynamic_component_loader.c0000644000175000017500000003564611565375761023711 00000000000000/** src/st_static_component_loader.c ST specific component loader for local components. Copyright (C) 2007-2010 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #define _GNU_SOURCE #ifndef OMX_COMPONENT_PATH #define OMX_COMPONENT_PATH "/usr/lib/bellagio/" #endif #include #include #include #include #include #include #include #include #include #include "common.h" #include "ste_dynamic_component_loader.h" #include "omx_reference_resource_manager.h" #include "base/omx_base_component.h" /** This pointer holds and handle allocate by this loader and requested by * some application. If the IL client does not de-allocate it calling * explicitly the FreeHandle function, any pending handle is release at the * end, when the global function OMX_Deinit is called. This list takes track of * any handle */ void *handleLibList[100]; /** Current number of handles already allocated by this loader */ OMX_U32 numLib=0; static struct BOSA_COMPONENTLOADER *ste_static_loader; /** @brief The initialization of the ST specific component loader. * * This function allocates memory for the component loader and initialize other function pointer */ void setup_component_loader(BOSA_COMPONENTLOADER * loader) { ste_static_loader = loader; ste_static_loader->BOSA_InitComponentLoader = &BOSA_STE_InitComponentLoader; ste_static_loader->BOSA_DeInitComponentLoader = &BOSA_STE_DeInitComponentLoader; ste_static_loader->BOSA_CreateComponent = &BOSA_STE_CreateComponent; ste_static_loader->BOSA_DestroyComponent = &BOSA_STE_DestroyComponent; ste_static_loader->BOSA_ComponentNameEnum = &BOSA_STE_ComponentNameEnum; ste_static_loader->BOSA_GetRolesOfComponent = &BOSA_STE_GetRolesOfComponent; ste_static_loader->BOSA_GetComponentsOfRole = &BOSA_STE_GetComponentsOfRole; } /** @brief the ST static loader constructor * * This function creates the ST static component loader, and creates * the list of available components, based on a registry file * created by a separate application. It is called omxregister, * and must be called before the use of this loader */ OMX_ERRORTYPE BOSA_STE_InitComponentLoader(BOSA_COMPONENTLOADER *loader) { DIR *dirp; struct dirent *dp; int num_of_comp=0; steLoaderComponentType** templateList; steLoaderComponentType** stComponentsTemp; void* handle; int (*fptr)(steLoaderComponentType **stComponents); int i; int listindex; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); /* Populate the registry file */ dirp = opendir(OMX_COMPONENT_PATH); if(dirp == NULL){ DEBUG(DEB_LEV_ERR, "Failed to open directory %s\n", OMX_COMPONENT_PATH); return OMX_ErrorUndefined; } templateList = malloc(sizeof (steLoaderComponentType*)); templateList[0] = NULL; listindex = 0; while((dp = readdir(dirp)) != NULL) { int len = strlen(dp->d_name); if(len <= 3) continue; if(strncmp(dp->d_name+len-3, ".so", 3) == 0) { char lib_absolute_path[strlen(OMX_COMPONENT_PATH) + len + 1]; strcpy(lib_absolute_path, OMX_COMPONENT_PATH); strcat(lib_absolute_path, dp->d_name); if((handle = dlopen(lib_absolute_path, RTLD_NOW)) == NULL) { DEBUG(DEB_LEV_ERR, "could not load %s: %s\n", lib_absolute_path, dlerror()); } else { handleLibList[numLib]=handle; numLib++; if ((fptr = dlsym(handle, "omx_component_library_Setup")) == NULL) { DEBUG(DEB_LEV_ERR, "the library %s is not compatible with ST static component loader - %s\n", lib_absolute_path, dlerror()); } else { num_of_comp = (int)(*fptr)(NULL); templateList = realloc(templateList, (listindex + num_of_comp + 1) * sizeof (steLoaderComponentType*)); templateList[listindex + num_of_comp] = NULL; stComponentsTemp = calloc(num_of_comp,sizeof(steLoaderComponentType*)); for (i = 0; iname); } free(stComponentsTemp); stComponentsTemp = NULL; listindex+= i; } } } } loader->loaderPrivate = templateList; RM_Init(); closedir(dirp); DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** @brief The destructor of the ST specific component loader. * * This function deallocates the list of available components. */ OMX_ERRORTYPE BOSA_STE_DeInitComponentLoader(BOSA_COMPONENTLOADER *loader) { unsigned int i, j; int err; steLoaderComponentType** templateList; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); templateList = (steLoaderComponentType**)loader->loaderPrivate; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); i = 0; while(templateList[i]) { if(templateList[i]->name_requested){ free(templateList[i]->name_requested); templateList[i]->name_requested=NULL; } for(j = 0 ; j < templateList[i]->name_specific_length; j++){ if(templateList[i]->name_specific[j]) { free(templateList[i]->name_specific[j]); templateList[i]->name_specific[j]=NULL; } if(templateList[i]->role_specific[j]){ free(templateList[i]->role_specific[j]); templateList[i]->role_specific[j]=NULL; } } if(templateList[i]->name_specific){ free(templateList[i]->name_specific); templateList[i]->name_specific=NULL; } if(templateList[i]->role_specific){ free(templateList[i]->role_specific); templateList[i]->role_specific=NULL; } if(templateList[i]->name){ free(templateList[i]->name); templateList[i]->name=NULL; } free(templateList[i]); templateList[i] = NULL; i++; } if(templateList) { free(templateList); templateList=NULL; } for(i=0;iloaderPrivate; i = 0; while(templateList[i]) { if(!strcmp(templateList[i]->name, cComponentName)) { //given component name matches with the general component names componentPosition = i; break; } else { for(j=0;jname_specific_length;j++) { if(!strcmp(templateList[i]->name_specific[j], cComponentName)) { //given component name matches with specific component names componentPosition = i; break; } } if(componentPosition != -1) { break; } } i++; } if (componentPosition == -1) { DEBUG(DEB_LEV_ERR, "Component not found with current ST static component loader.\n"); return OMX_ErrorComponentNotFound; } //component name matches with general component name field DEBUG(DEB_LEV_PARAMS, "Found base requested template %s\n", cComponentName); /* Build ST component from template and fill fields */ if (templateList[componentPosition]->name_requested == NULL) { /* This check is to prevent memory leak in case two instances of the same component are loaded */ templateList[componentPosition]->name_requested = strndup (cComponentName, OMX_MAX_STRINGNAME_SIZE); } openmaxStandComp = calloc(1,sizeof(OMX_COMPONENTTYPE)); if (!openmaxStandComp) { return OMX_ErrorInsufficientResources; } eError = templateList[componentPosition]->constructor(openmaxStandComp,cComponentName); if (eError != OMX_ErrorNone) { if (eError == OMX_ErrorInsufficientResources) { *pHandle = openmaxStandComp; priv = (omx_base_component_PrivateType *) openmaxStandComp->pComponentPrivate; priv->loader = loader; return OMX_ErrorInsufficientResources; } DEBUG(DEB_LEV_ERR, "Error during component construction\n"); openmaxStandComp->ComponentDeInit(openmaxStandComp); free(openmaxStandComp); openmaxStandComp = NULL; return OMX_ErrorComponentNotFound; } priv = (omx_base_component_PrivateType *) openmaxStandComp->pComponentPrivate; priv->loader = loader; *pHandle = openmaxStandComp; ((OMX_COMPONENTTYPE*)*pHandle)->SetCallbacks(*pHandle, pCallBacks, pAppData); DEBUG(DEB_LEV_FULL_SEQ, "Template %s found returning from OMX_GetHandle\n", cComponentName); DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } OMX_ERRORTYPE BOSA_STE_DestroyComponent( BOSA_COMPONENTLOADER *loader, OMX_HANDLETYPE hComponent) { OMX_ERRORTYPE err = OMX_ErrorNone; omx_base_component_PrivateType * priv = (omx_base_component_PrivateType *) ((OMX_COMPONENTTYPE*)hComponent)->pComponentPrivate; /* check if this component was actually loaded from this loader */ if (priv->loader != loader) { return OMX_ErrorComponentNotFound; } err = ((OMX_COMPONENTTYPE*)hComponent)->ComponentDeInit(hComponent); free((OMX_COMPONENTTYPE*)hComponent); hComponent = NULL; return err; } /** @brief This function search for the index from 0 to end of the list * * This function searches in the list of ST static components and enumerates * both the class names and the role specific components. */ OMX_ERRORTYPE BOSA_STE_ComponentNameEnum( BOSA_COMPONENTLOADER *loader, OMX_STRING cComponentName, OMX_U32 nNameLength, OMX_U32 nIndex) { steLoaderComponentType** templateList; int i; unsigned int j, index = 0; int found = 0; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); templateList = (steLoaderComponentType**)loader->loaderPrivate; i = 0; while(templateList[i]) { if (index == nIndex) { strncpy(cComponentName, templateList[i]->name, nNameLength); found = 1; break; } index++; if (templateList[i]->name_specific_length > 0) { for (j = 0; jname_specific_length; j++) { if (index == nIndex) { strncpy(cComponentName,templateList[i]->name_specific[j], nNameLength); found = 1; break; } index++; } } if (found) { break; } i++; } if (!found) { DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s with OMX_ErrorNoMore\n", __func__); return OMX_ErrorNoMore; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** @brief The specific version of OMX_GetRolesOfComponent * * This function replicates exactly the behavior of the * standard OMX_GetRolesOfComponent function for the ST static * component loader */ OMX_ERRORTYPE BOSA_STE_GetRolesOfComponent( BOSA_COMPONENTLOADER *loader, OMX_STRING compName, OMX_U32 *pNumRoles, OMX_U8 **roles) { steLoaderComponentType** templateList; int i; unsigned int j, index; unsigned int max_roles = *pNumRoles; int found = 0; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); templateList = (steLoaderComponentType**)loader->loaderPrivate; *pNumRoles = 0; i = 0; while (templateList[i]) { if(!strcmp(templateList[i]->name, compName)) { DEBUG(DEB_LEV_SIMPLE_SEQ, "Found requested template %s IN GENERAL COMPONENT\n", compName); // set the no of roles field *pNumRoles = templateList[i]->name_specific_length; if(roles == NULL) { return OMX_ErrorNone; } //append the roles for (index = 0; index < templateList[i]->name_specific_length; index++) { if (index < max_roles) { strcpy ((char*)*(roles+index), templateList[i]->role_specific[index]); } } found = 1; } else { for(j=0;jname_specific_length;j++) { if(!strcmp(templateList[i]-> name_specific[j], compName)) { DEBUG(DEB_LEV_SIMPLE_SEQ, "Found requested component %s IN SPECIFIC COMPONENT \n", compName); *pNumRoles = 1; found = 1; if(roles == NULL) { return OMX_ErrorNone; } if (max_roles > 0) { strcpy ((char*)*roles , templateList[i]->role_specific[j]); } } } } i++; if(found) { break; } } if(!found) { DEBUG(DEB_LEV_ERR, "no component match in whole template list has been found\n"); *pNumRoles = 0; return OMX_ErrorComponentNotFound; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** @brief The specific version of OMX_GetComponentsOfRole * * This function replicates exactly the behavior of the * standard OMX_GetComponentsOfRole function for the ST static * component loader */ OMX_ERRORTYPE BOSA_STE_GetComponentsOfRole ( BOSA_COMPONENTLOADER *loader, OMX_STRING role, OMX_U32 *pNumComps, OMX_U8 **compNames) { steLoaderComponentType** templateList; int i = 0; unsigned int j = 0; int num_comp = 0; int max_entries = *pNumComps; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); templateList = (steLoaderComponentType**)loader->loaderPrivate; i = 0; while(templateList[i]) { for (j = 0; jname_specific_length; j++) { if (!strcmp(templateList[i]->role_specific[j], role)) { if (compNames != NULL) { if (num_comp < max_entries) { strcpy((char*)(compNames[num_comp]), templateList[i]->name); } } num_comp++; } } i++; } *pNumComps = num_comp; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } libomxil-bellagio-0.9.3/src/dynamic_loader/ste_dynamic_component_loader.h0000644000175000017500000001133311565375761023701 00000000000000/** src/st_static_component_loader.h ST specific component loader for local components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __ST_STATIC_COMPONENT_LOADER_H__ #define __ST_STATIC_COMPONENT_LOADER_H__ #include "omxcore.h" #include "extension_struct.h" /** @brief the private data structure handled by the ST static loader that described * an OpenMAX component * * This structure contains all the fields that the loader must use to support * the loading unloading functions of the component, that are not described by the * standard. */ typedef struct steLoaderComponentType{ OMX_VERSIONTYPE componentVersion; /**< the version of the component in the OpenMAX standard format */ char* name; /**< String that represents the name of the component, ruled by the standard */ unsigned int name_specific_length;/**< this field contains the number of roles of the component */ char** name_specific; /**< Strings those represent the names of the specific format components */ char** role_specific; /**< Strings those represent the names of the specific format components */ char* name_requested; /**< This parameter is used to send to the component the string requested by the IL Client */ OMX_ERRORTYPE (*constructor)(OMX_COMPONENTTYPE*,OMX_STRING cComponentName); /**< constructor function pointer for each Linux ST OpenMAX component */ OMX_U32 nqualitylevels;/**< number of available quality levels */ multiResourceDescriptor** multiResourceLevel; } steLoaderComponentType; /** @brief The initialization of the ST specific component loader. */ void st_static_setup_component_loader(BOSA_COMPONENTLOADER * st_static_loader); /** @brief The constructor of the ST specific component loader. * * It is the component loader developed under linux by ST, for local libraries. * It is based on a registry file, like in the case of GStreamer. It reads the * registry file, and allows the components to register themself to the * main list templateList. */ OMX_ERRORTYPE BOSA_STE_InitComponentLoader(BOSA_COMPONENTLOADER *loader); /** @brief The destructor of the ST specific component loader. * * This function deallocates the list of available components. */ OMX_ERRORTYPE BOSA_STE_DeInitComponentLoader(BOSA_COMPONENTLOADER *loader); /** @brief creator of the requested openmax component * * This function searches for the requested component in the internal list. * If the component is found, its constructor is called, * and the standard callback are assigned. * A pointer to a standard openmax component is returned. */ OMX_ERRORTYPE BOSA_STE_CreateComponent( BOSA_COMPONENTLOADER *loader, OMX_HANDLETYPE* pHandle, OMX_STRING cComponentName, OMX_PTR pAppData, OMX_CALLBACKTYPE* pCallBacks); /** @brief destructor of the requested OpenMAX component * */ OMX_ERRORTYPE BOSA_STE_DestroyComponent( BOSA_COMPONENTLOADER *loader, OMX_HANDLETYPE hComponent); /** @brief This function search for the index from 0 to end of the list * * This function searches in the list of ST static components and enumerates * both the class names and the role specific components. */ OMX_ERRORTYPE BOSA_STE_ComponentNameEnum( BOSA_COMPONENTLOADER *loader, OMX_STRING cComponentName, OMX_U32 nNameLength, OMX_U32 nIndex); /** @brief The specific version of OMX_GetRolesOfComponent * * This function replicates exactly the behavior of the * standard OMX_GetRolesOfComponent function for the ST static * component loader */ OMX_ERRORTYPE BOSA_STE_GetRolesOfComponent( BOSA_COMPONENTLOADER *loader, OMX_STRING compName, OMX_U32 *pNumRoles, OMX_U8 **roles); /** @brief The specific version of OMX_GetComponentsOfRole * * This function replicates exactly the behavior of the * standard OMX_GetComponentsOfRole function for the ST static * component loader */ OMX_ERRORTYPE BOSA_STE_GetComponentsOfRole ( BOSA_COMPONENTLOADER *loader, OMX_STRING role, OMX_U32 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distclean-compile distclean-generic \ distclean-libtool distclean-tags distdir dvi dvi-am html \ html-am info info-am install install-am install-data \ install-data-am install-dvi install-dvi-am install-exec \ install-exec-am install-html install-html-am install-info \ install-info-am install-man \ install-omxdynamicloaderLTLIBRARIES install-pdf install-pdf-am \ install-ps install-ps-am install-strip installcheck \ installcheck-am installdirs maintainer-clean \ maintainer-clean-generic mostlyclean mostlyclean-compile \ mostlyclean-generic mostlyclean-libtool pdf pdf-am ps ps-am \ tags uninstall uninstall-am \ uninstall-omxdynamicloaderLTLIBRARIES # 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: libomxil-bellagio-0.9.3/src/dynamic_loader/Makefile.am0000755000175000017500000000057711565375761017670 00000000000000omxdynamicloaderdir = $(libdir)/omxloaders omxdynamicloader_LTLIBRARIES = libomxdynamicloader.la libomxdynamicloader_la_SOURCES = ste_dynamic_component_loader.c ste_dynamic_component_loader.h libomxdynamicloader_la_LDFLAGS = libomxdynamicloader_la_CFLAGS = -I$(top_srcdir)/include \ -I$(top_srcdir)/src \ -I$(top_srcdir)/src/base \ -DOMX_COMPONENT_PATH=\"$(plugindir)\/\" libomxil-bellagio-0.9.3/src/utils.h0000644000175000017500000000216111513256766014153 00000000000000/** src/utils.h Set of utility functions for debugging purposes Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __ST_UTILS_H__ #define __ST_UTILS_H__ #include #include char *stateName(OMX_STATETYPE state); char *transientStateName(int state); char *errorName(OMX_ERRORTYPE error); #endif libomxil-bellagio-0.9.3/src/queue.c0000644000175000017500000000735711513256766014146 00000000000000/** src/queue.c Implements a simple FIFO structure used for queueing OMX buffers. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include "queue.h" #include "omx_comp_debug_levels.h" /** Initialize a queue descriptor * * @param queue The queue descriptor to initialize. * The user needs to allocate the queue */ int queue_init(queue_t* queue) { int i; qelem_t* newelem; qelem_t* current; i = pthread_mutex_init(&queue->mutex, NULL); if (i!=0) { return -1; } queue->first = malloc(sizeof(qelem_t)); if (!(queue->first)) { return -1; } memset(queue->first, 0, sizeof(qelem_t)); current = queue->last = queue->first; queue->nelem = 0; for (i = 0; ifirst!=NULL) { current = queue->first->q_forw; free(queue->first); queue->first = current; } return -1; } memset(newelem, 0, sizeof(qelem_t)); current->q_forw = newelem; current = newelem; } current->q_forw = queue->first; return 0; } /** Deinitialize a queue descriptor * flushing all of its internal data * * @param queue the queue descriptor to dump */ void queue_deinit(queue_t* queue) { int i; qelem_t* current; current = queue->first; for (i = 0; iq_forw; free(queue->first); queue->first = current; } } if(queue->first) { free(queue->first); queue->first = NULL; } pthread_mutex_destroy(&queue->mutex); } /** Enqueue an element to the given queue descriptor * * @param queue the queue descriptor where to queue data * * @param data the data to be enqueued * * @return -1 if the queue is full */ int queue(queue_t* queue, void* data) { if (queue->last->data != NULL) { return -1; } pthread_mutex_lock(&queue->mutex); queue->last->data = data; queue->last = queue->last->q_forw; queue->nelem++; pthread_mutex_unlock(&queue->mutex); return 0; } /** Dequeue an element from the given queue descriptor * * @param queue the queue descriptor from which to dequeue the element * * @return the element that has bee dequeued. If the queue is empty * a NULL value is returned */ void* dequeue(queue_t* queue) { void* data; if (queue->first->data == NULL) { return NULL; } pthread_mutex_lock(&queue->mutex); data = queue->first->data; queue->first->data = NULL; queue->first = queue->first->q_forw; queue->nelem--; pthread_mutex_unlock(&queue->mutex); return data; } /** Returns the number of elements hold in the queue * * @param queue the requested queue * * @return the number of elements in the queue */ int getquenelem(queue_t* queue) { int qelem; pthread_mutex_lock(&queue->mutex); qelem = queue->nelem; pthread_mutex_unlock(&queue->mutex); return qelem; } libomxil-bellagio-0.9.3/src/st_static_component_loader.c0000644000175000017500000003635511513256766020427 00000000000000/** src/st_static_component_loader.c ST specific component loader for local components. Copyright (C) 2007-2010 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #define _GNU_SOURCE #include #include #include #include #include #include #include #include #include #include "common.h" #include "st_static_component_loader.h" #include "omx_reference_resource_manager.h" #include "base/omx_base_component.h" /** This pointer holds and handle allocate by this loader and requested by * some application. If the IL client does not de-allocate it calling * explicitly the FreeHandle function, any pending handle is release at the * end, when the global function OMX_Deinit is called. This list takes track of * any handle */ void *handleLibList[100]; /** Current number of handles already allocated by this loader */ OMX_U32 numLib=0; /** @brief The initialization of the ST specific component loader. * * This function allocates memory for the component loader and initialize other function pointer */ void st_static_setup_component_loader(BOSA_COMPONENTLOADER * st_static_loader) { st_static_loader->BOSA_InitComponentLoader = &BOSA_ST_InitComponentLoader; st_static_loader->BOSA_DeInitComponentLoader = &BOSA_ST_DeInitComponentLoader; st_static_loader->BOSA_CreateComponent = &BOSA_ST_CreateComponent; st_static_loader->BOSA_DestroyComponent = &BOSA_ST_DestroyComponent; st_static_loader->BOSA_ComponentNameEnum = &BOSA_ST_ComponentNameEnum; st_static_loader->BOSA_GetRolesOfComponent = &BOSA_ST_GetRolesOfComponent; st_static_loader->BOSA_GetComponentsOfRole = &BOSA_ST_GetComponentsOfRole; } /** @brief the ST static loader constructor * * This function creates the ST static component loader, and creates * the list of available components, based on a registry file * created by a separate application. It is called omxregister, * and must be called before the use of this loader */ OMX_ERRORTYPE BOSA_ST_InitComponentLoader(BOSA_COMPONENTLOADER *loader) { FILE* omxregistryfp; char* line = NULL; char *libname; int num_of_comp=0; stLoaderComponentType** templateList; stLoaderComponentType** stComponentsTemp; void* handle; int (*fptr)(stLoaderComponentType **stComponents); int i; int listindex; char *registry_filename; int index_readline = 0; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); registry_filename = componentsRegistryGetFilename(); omxregistryfp = fopen(registry_filename, "r"); if (omxregistryfp == NULL){ DEBUG(DEB_LEV_ERR, "Cannot open OpenMAX registry file %s\n", registry_filename); return ENOENT; } free(registry_filename); libname = malloc(OMX_MAX_STRINGNAME_SIZE * 2); templateList = malloc(sizeof (stLoaderComponentType*)); templateList[0] = NULL; line = malloc(MAX_LINE_LENGTH); fseek(omxregistryfp, 0, 0); listindex = 0; while(1) { index_readline = 0; while(index_readline < MAX_LINE_LENGTH) { *(line+index_readline) = fgetc(omxregistryfp); if ((*(line+index_readline) == '\n') || (*(line+index_readline) == '\0')) { break; } index_readline++; } *(line+index_readline) = '\0'; if ((index_readline >= MAX_LINE_LENGTH) || (index_readline == 0)) { break; } if ((*line == ' ') && (*(line+1) == '=')) { // not a library line. skip continue; } strcpy(libname, line); DEBUG(DEB_LEV_FULL_SEQ, "libname: >%s<\n",libname); if((handle = dlopen(libname, RTLD_NOW)) == NULL) { DEBUG(DEB_LEV_ERR, "could not load %s: %s\n", libname, dlerror()); } else { handleLibList[numLib]=handle; numLib++; if ((fptr = dlsym(handle, "omx_component_library_Setup")) == NULL) { DEBUG(DEB_LEV_ERR, "the library %s is not compatible with ST static component loader - %s\n", libname, dlerror()); } else { num_of_comp = (int)(*fptr)(NULL); templateList = realloc(templateList, (listindex + num_of_comp + 1) * sizeof (stLoaderComponentType*)); templateList[listindex + num_of_comp] = NULL; stComponentsTemp = calloc(num_of_comp,sizeof(stLoaderComponentType*)); for (i = 0; iname); } free(stComponentsTemp); stComponentsTemp = NULL; listindex+= i; } } } if(line) { free(line); line = NULL; } free(libname); libname = NULL; fclose(omxregistryfp); loader->loaderPrivate = templateList; RM_Init(); DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** @brief The destructor of the ST specific component loader. * * This function deallocates the list of available components. */ OMX_ERRORTYPE BOSA_ST_DeInitComponentLoader(BOSA_COMPONENTLOADER *loader) { unsigned int i, j; int err; stLoaderComponentType** templateList; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); templateList = (stLoaderComponentType**)loader->loaderPrivate; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); i = 0; while(templateList[i]) { if(templateList[i]->name_requested){ free(templateList[i]->name_requested); templateList[i]->name_requested=NULL; } for(j = 0 ; j < templateList[i]->name_specific_length; j++){ if(templateList[i]->name_specific[j]) { free(templateList[i]->name_specific[j]); templateList[i]->name_specific[j]=NULL; } if(templateList[i]->role_specific[j]){ free(templateList[i]->role_specific[j]); templateList[i]->role_specific[j]=NULL; } } if(templateList[i]->name_specific){ free(templateList[i]->name_specific); templateList[i]->name_specific=NULL; } if(templateList[i]->role_specific){ free(templateList[i]->role_specific); templateList[i]->role_specific=NULL; } if(templateList[i]->name){ free(templateList[i]->name); templateList[i]->name=NULL; } free(templateList[i]); templateList[i] = NULL; i++; } if(templateList) { free(templateList); templateList=NULL; } for(i=0;iloaderPrivate; i = 0; while(templateList[i]) { if(!strcmp(templateList[i]->name, cComponentName)) { //given component name matches with the general component names componentPosition = i; break; } else { for(j=0;jname_specific_length;j++) { if(!strcmp(templateList[i]->name_specific[j], cComponentName)) { //given component name matches with specific component names componentPosition = i; break; } } if(componentPosition != -1) { break; } } i++; } if (componentPosition == -1) { DEBUG(DEB_LEV_ERR, "Component not found with current ST static component loader.\n"); return OMX_ErrorComponentNotFound; } //component name matches with general component name field DEBUG(DEB_LEV_PARAMS, "Found base requested template %s\n", cComponentName); /* Build ST component from template and fill fields */ if (templateList[componentPosition]->name_requested == NULL) { /* This check is to prevent memory leak in case two instances of the same component are loaded */ templateList[componentPosition]->name_requested = strndup (cComponentName, OMX_MAX_STRINGNAME_SIZE); } openmaxStandComp = calloc(1,sizeof(OMX_COMPONENTTYPE)); if (!openmaxStandComp) { return OMX_ErrorInsufficientResources; } eError = templateList[componentPosition]->constructor(openmaxStandComp,cComponentName); if (eError != OMX_ErrorNone) { if (eError == OMX_ErrorInsufficientResources) { *pHandle = openmaxStandComp; priv = (omx_base_component_PrivateType *) openmaxStandComp->pComponentPrivate; priv->loader = loader; return OMX_ErrorInsufficientResources; } DEBUG(DEB_LEV_ERR, "Error during component construction\n"); openmaxStandComp->ComponentDeInit(openmaxStandComp); free(openmaxStandComp); openmaxStandComp = NULL; return OMX_ErrorComponentNotFound; } priv = (omx_base_component_PrivateType *) openmaxStandComp->pComponentPrivate; priv->loader = loader; *pHandle = openmaxStandComp; ((OMX_COMPONENTTYPE*)*pHandle)->SetCallbacks(*pHandle, pCallBacks, pAppData); DEBUG(DEB_LEV_FULL_SEQ, "Template %s found returning from OMX_GetHandle\n", cComponentName); DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } OMX_ERRORTYPE BOSA_ST_DestroyComponent( BOSA_COMPONENTLOADER *loader, OMX_HANDLETYPE hComponent) { OMX_ERRORTYPE err = OMX_ErrorNone; omx_base_component_PrivateType * priv = (omx_base_component_PrivateType *) ((OMX_COMPONENTTYPE*)hComponent)->pComponentPrivate; /* check if this component was actually loaded from this loader */ if (priv->loader != loader) { return OMX_ErrorComponentNotFound; } err = ((OMX_COMPONENTTYPE*)hComponent)->ComponentDeInit(hComponent); free((OMX_COMPONENTTYPE*)hComponent); hComponent = NULL; return err; } /** @brief This function search for the index from 0 to end of the list * * This function searches in the list of ST static components and enumerates * both the class names and the role specific components. */ OMX_ERRORTYPE BOSA_ST_ComponentNameEnum( BOSA_COMPONENTLOADER *loader, OMX_STRING cComponentName, OMX_U32 nNameLength, OMX_U32 nIndex) { stLoaderComponentType** templateList; int i; unsigned int j, index = 0; int found = 0; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); templateList = (stLoaderComponentType**)loader->loaderPrivate; i = 0; while(templateList[i]) { if (index == nIndex) { strncpy(cComponentName, templateList[i]->name, nNameLength); found = 1; break; } index++; if (templateList[i]->name_specific_length > 0) { for (j = 0; jname_specific_length; j++) { if (index == nIndex) { strncpy(cComponentName,templateList[i]->name_specific[j], nNameLength); found = 1; break; } index++; } } if (found) { break; } i++; } if (!found) { DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s with OMX_ErrorNoMore\n", __func__); return OMX_ErrorNoMore; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** @brief The specific version of OMX_GetRolesOfComponent * * This function replicates exactly the behavior of the * standard OMX_GetRolesOfComponent function for the ST static * component loader */ OMX_ERRORTYPE BOSA_ST_GetRolesOfComponent( BOSA_COMPONENTLOADER *loader, OMX_STRING compName, OMX_U32 *pNumRoles, OMX_U8 **roles) { stLoaderComponentType** templateList; int i; unsigned int j, index; unsigned int max_roles = *pNumRoles; int found = 0; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); templateList = (stLoaderComponentType**)loader->loaderPrivate; *pNumRoles = 0; i = 0; while (templateList[i]) { if(!strcmp(templateList[i]->name, compName)) { DEBUG(DEB_LEV_SIMPLE_SEQ, "Found requested template %s IN GENERAL COMPONENT\n", compName); // set the no of roles field *pNumRoles = templateList[i]->name_specific_length; if(roles == NULL) { return OMX_ErrorNone; } //append the roles for (index = 0; index < templateList[i]->name_specific_length; index++) { if (index < max_roles) { strcpy ((char*)*(roles+index), templateList[i]->role_specific[index]); } } found = 1; } else { for(j=0;jname_specific_length;j++) { if(!strcmp(templateList[i]-> name_specific[j], compName)) { DEBUG(DEB_LEV_SIMPLE_SEQ, "Found requested component %s IN SPECIFIC COMPONENT \n", compName); *pNumRoles = 1; found = 1; if(roles == NULL) { return OMX_ErrorNone; } if (max_roles > 0) { strcpy ((char*)*roles , templateList[i]->role_specific[j]); } } } } i++; if(found) { break; } } if(!found) { DEBUG(DEB_LEV_ERR, "no component match in whole template list has been found\n"); *pNumRoles = 0; return OMX_ErrorComponentNotFound; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** @brief The specific version of OMX_GetComponentsOfRole * * This function replicates exactly the behavior of the * standard OMX_GetComponentsOfRole function for the ST static * component loader */ OMX_ERRORTYPE BOSA_ST_GetComponentsOfRole ( BOSA_COMPONENTLOADER *loader, OMX_STRING role, OMX_U32 *pNumComps, OMX_U8 **compNames) { stLoaderComponentType** templateList; int i = 0; unsigned int j = 0; int num_comp = 0; int max_entries = *pNumComps; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); templateList = (stLoaderComponentType**)loader->loaderPrivate; i = 0; while(templateList[i]) { for (j = 0; jname_specific_length; j++) { if (!strcmp(templateList[i]->role_specific[j], role)) { if (compNames != NULL) { if (num_comp < max_entries) { strcpy((char*)(compNames[num_comp]), templateList[i]->name); } } num_comp++; } } i++; } *pNumComps = num_comp; DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } libomxil-bellagio-0.9.3/src/core_extensions/0000755000175000017500000000000011565425033016121 500000000000000libomxil-bellagio-0.9.3/src/core_extensions/OMXCoreRMExt.h0000644000175000017500000000511211513256766020415 00000000000000/** src/core_extensions/OMXCoreRMExt.h This extension of the core provides functions for the resource manager used to retrieve the quality levels of the components available. Copyright (C) 2008-2010 STMicroelectronics This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __OMXCORERMEXT_H__ #define __OMXCORERMEXT_H__ #include #include "extension_struct.h" enum OMX_RESOURCETYPE { OMX_ResourceTypeMemory, OMX_ResourceTypeCpu }; /** * @brief Returns the supported quality levels for a scalable OMXIL component. * @param cComponentName [IN] Component name * @param ppQualityLevel [OUT] List of supported quality levels * @param pNrOfQualityLevels [OUT] Number of quality levels in the list * @return OMX_ErrorNone * @return OMX_ErrorInvalidComponentName * @return OMX_ErrorComponentNotFound * @pre ppQualityLevel != NULL * @pre pNrOfQualityLevels !=NULL */ OMX_ERRORTYPE getSupportedQualityLevels(OMX_STRING cComponentName, OMX_U32** ppQualityLevel, OMX_U32* pNrOfQualityLevels); /** * @brief Returns the multiresource estimates for a given OMXIL component name and * quality level. * @param cComponentName [IN] Component name * @param nQualityLevel [IN] quality level (applicable for scalable components) * @param pMultiResourceEstimates [OUT] The multiresource estimates * @return OMX_ErrorNone * @return OMX_ErrorInvalidComponentName * @return OMX_ErrorComponentNotFound * @verbatim * * The resource estimates for a given quality level are the basis for generating * * the resource budgets. Later on, when components are instantiated and the bit * * stream properties are known, resource budget adaptations might be required, * or * if not feasible, the quality level might need to be downgraded. * @endverbatim */ OMX_ERRORTYPE getMultiResourceEstimates(OMX_STRING cComponentName, OMX_U32 nQualityLevel, multiResourceDescriptor* pMultiResourceEstimates); OMX_ERRORTYPE readRegistryFile(); #endif libomxil-bellagio-0.9.3/src/core_extensions/OMXCoreRMExt.c0000644000175000017500000002306011513256766020412 00000000000000/** src/core_extensions/OMXCoreRMExt.c This extension of the core provides functions for the resource manager used to retrieve the quality levels of the components available. Copyright (C) 2008-2010 STMicroelectronics This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef _GNU_SOURCE #define _GNU_SOURCE #endif #include #include #include #include "common.h" #include "OMXCoreRMExt.h" #include "st_static_component_loader.h" static int data_loaded = 0; static stLoaderComponentType** qualityList; static int qualityListItems = 0; OMX_ERRORTYPE getSupportedQualityLevels(OMX_STRING cComponentName, OMX_U32** ppQualityLevel, OMX_U32* pNrOfQualityLevels) { OMX_ERRORTYPE err; int found = 0; int j,i,k; if (pNrOfQualityLevels == NULL) { return OMX_ErrorUndefined; } if (!data_loaded) { err = readRegistryFile(); if (err != OMX_ErrorNone) { return err; } data_loaded = 1; } for (i = 0; iname, cComponentName)) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s found requested component %s with quality levels %i\n", __func__, cComponentName, (int)qualityList[i]->nqualitylevels); *pNrOfQualityLevels = qualityList[i]->nqualitylevels; if (ppQualityLevel == NULL) { return OMX_ErrorNone; } for (k=0; knqualitylevels; k++) { (*ppQualityLevel)[k] = k+1; } found = 1; } else { for(j=0;jname_specific_length;j++) { if(!strcmp(qualityList[i]->name_specific[j], cComponentName)) { DEBUG(DEB_LEV_SIMPLE_SEQ, "Found requested component %s IN SPECIFIC COMPONENT \n", cComponentName); *pNrOfQualityLevels = qualityList[i]->nqualitylevels; if (ppQualityLevel == NULL) { return OMX_ErrorNone; } for (k=0; knqualitylevels; k++) { (*ppQualityLevel)[k] = k+1; } found = 1; } } } if(found) { break; } } if(!found) { DEBUG(DEB_LEV_ERR, "Not found any component\n"); *pNrOfQualityLevels = 0; } return OMX_ErrorNone; } OMX_ERRORTYPE getMultiResourceEstimates(OMX_STRING cComponentName, OMX_U32 nQualityLevel, multiResourceDescriptor* pMultiResourceEstimates) { OMX_ERRORTYPE err; int found = 0; int j,i = 0; if (pMultiResourceEstimates == NULL) { return OMX_ErrorUndefined; } if (!data_loaded) { err = readRegistryFile(); if (err != OMX_ErrorNone) { return err; } data_loaded = 1; } for (i = 0; iname, cComponentName)) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s found requested component %s with quality level %i\n", __func__, cComponentName, (int)nQualityLevel); if ((nQualityLevel>0) && (nQualityLevel<=qualityList[i]->nqualitylevels)) { found = 1; pMultiResourceEstimates->CPUResourceRequested = qualityList[i]->multiResourceLevel[nQualityLevel-1]->CPUResourceRequested; pMultiResourceEstimates->MemoryResourceRequested = qualityList[i]->multiResourceLevel[nQualityLevel-1]->MemoryResourceRequested; break; } } else { for(j=0;jname_specific_length;j++) { if(!strcmp(qualityList[i]-> name_specific[j], cComponentName)) { DEBUG(DEB_LEV_SIMPLE_SEQ, "Found requested component %s IN SPECIFIC COMPONENT \n", cComponentName); if ((nQualityLevel>0) && (nQualityLevel<=qualityList[i]->nqualitylevels)) { found = 1; pMultiResourceEstimates->CPUResourceRequested = qualityList[i]->multiResourceLevel[nQualityLevel-1]->CPUResourceRequested; pMultiResourceEstimates->MemoryResourceRequested = qualityList[i]->multiResourceLevel[nQualityLevel-1]->MemoryResourceRequested; break; } if (found) { break; } } } } if(found) { break; } } if(!found) { pMultiResourceEstimates->CPUResourceRequested = -1; pMultiResourceEstimates->MemoryResourceRequested = -1; } return OMX_ErrorNone; } /** This function reads the .omxregister file and retrieve all the information about resources and quality levels. */ OMX_ERRORTYPE readRegistryFile() { FILE* omxregistryfp; char* line = NULL; char *libname; int index_readline; int listindex; char *registry_filename; int numberOfLines = 0; int index; int tempindex; int wordlength; int roleindex; int numlevels; int i; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); qualityList = NULL; registry_filename = componentsRegistryGetFilename(); omxregistryfp = fopen(registry_filename, "r"); if (omxregistryfp == NULL){ DEBUG(DEB_LEV_ERR, "Cannot open OpenMAX registry file %s\n", registry_filename); return OMX_ErrorUndefined; } free(registry_filename); libname = malloc(OMX_MAX_STRINGNAME_SIZE * 2); fseek(omxregistryfp, 0, 0); while(1) { index_readline = 0; while(index_readline < MAX_LINE_LENGTH) { *(line+index_readline) = fgetc(omxregistryfp); if ((*(line+index_readline) == '\n') || (*(line+index_readline) == '\0')) { break; } index_readline++; } *(line+index_readline) = '\0'; if ((index_readline >= MAX_LINE_LENGTH) || (index_readline == 0)) { break; } if ((*line == ' ') && (*(line+1) == '=')) { numberOfLines++; } else { continue; } } fseek(omxregistryfp, 0, 0); qualityList = malloc(numberOfLines * sizeof (stLoaderComponentType*)); qualityListItems = numberOfLines; line = malloc(MAX_LINE_LENGTH); listindex = 0; while(1) { index_readline = 0; while(index_readline < MAX_LINE_LENGTH) { *(line+index_readline) = fgetc(omxregistryfp); if ((*(line+index_readline) == '\n') || (*(line+index_readline) == '\0')) { break; } index_readline++; } *(line+index_readline) = '\0'; if ((index_readline >= MAX_LINE_LENGTH) || (index_readline == 0)) { break; } if ((*line == ' ') && (*(line+1) == '=')) { qualityList[listindex] = NULL; qualityList[listindex] = calloc(1,sizeof(stLoaderComponentType)); index = 5; wordlength = 0; while((*(line + index) != ' ') && (*(line + index) != '\0')) { wordlength++; index++; } qualityList[listindex]->name = malloc(wordlength + 1); strncpy(qualityList[listindex]->name, (line + 5), wordlength); *(qualityList[listindex]->name + wordlength) = '\0'; // count rules if (*(line + index) == '\n') { listindex++; continue; } index = index + 5; tempindex = index; qualityList[listindex]->name_specific_length = 0; while((*(line + tempindex) != ' ') && (*(line + tempindex) != '\0')) { while(*(line + tempindex) !=':') { tempindex++; } tempindex++; qualityList[listindex]->name_specific_length++; } qualityList[listindex]->name_specific = calloc(qualityList[listindex]->name_specific_length, sizeof(char *)); roleindex = 0; while((*(line + index) != ' ') && (*(line + index) != '\n')) { wordlength = 0; tempindex = index; while(*(line + index) !=':') { wordlength++; index++; } tempindex = index - tempindex; qualityList[listindex]->name_specific[roleindex] = malloc(tempindex + 1); strncpy(qualityList[listindex]->name_specific[roleindex], (line+index-tempindex), tempindex); *(qualityList[listindex]->name_specific[roleindex]+tempindex) = '\0'; roleindex++; index++; } if (*(line + index) == '\0') { listindex++; continue; } // finally reached the quality levels index = index + 5; numlevels = 0; while(1) { if (*(line + index) != ' ') { numlevels = (numlevels * 10) + (*(line + index) -'0'); index++; } else { qualityList[listindex]->nqualitylevels = numlevels; qualityList[listindex]->multiResourceLevel = malloc(sizeof(multiResourceDescriptor *) * qualityList[listindex]->nqualitylevels); for (i = 0; inqualitylevels; i++) { qualityList[listindex]->multiResourceLevel[i] = malloc(sizeof(multiResourceDescriptor)); } break; } } index++; for (i = 0; inqualitylevels; i++) { qualityList[listindex]->multiResourceLevel[i]->CPUResourceRequested = 0; qualityList[listindex]->multiResourceLevel[i]->MemoryResourceRequested = 0; while(*(line + index) != ',') { qualityList[listindex]->multiResourceLevel[i]->CPUResourceRequested = (qualityList[listindex]->multiResourceLevel[i]->CPUResourceRequested * 10) + (*(line + index) - '0'); index++; } index++; while((*(line + index) != ' ') && (*(line + index) != '\n')) { qualityList[listindex]->multiResourceLevel[i]->MemoryResourceRequested = (qualityList[listindex]->multiResourceLevel[i]->MemoryResourceRequested * 10) + (*(line + index) - '0'); index++; } index++; } listindex++; } } if(line) { free(line); line = NULL; } free(libname); libname = NULL; fclose(omxregistryfp); DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } 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libomxil-bellagio-0.9.3/src/content_pipe_inet.c0000644000175000017500000002261011513256766016515 00000000000000/** src/content_pipe_inet.c This file implements the support for content pipes related to inet resources. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include "content_pipe_inet.h" /* * Create a socket */ static CPresult Create( CPhandle *hContent, CPstring szURI ) { inet_ContentPipe* pPipe = (inet_ContentPipe*) hContent; CPresult err = 0; int nHostPort; struct sockaddr_in sAddress; /* Internet socket address stuct */ int nAddressSize=sizeof(struct sockaddr_in); DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_inet:%s \n", __func__); if(1 != sscanf(szURI, "inet://%d", &nHostPort)) err = KD_EINVAL; pPipe->sfd = socket(AF_INET, SOCK_STREAM, IPPROTO_TCP); if(SOCKET_ERROR == pPipe->sfd) { printf("\nCould not make a socket\n"); err = KD_EIO; } if(0 == err) { /* fill address struct */ sAddress.sin_addr.s_addr = INADDR_ANY; sAddress.sin_port = htons(nHostPort); sAddress.sin_family = AF_INET; /* bind to a port */ if(SOCKET_ERROR == bind(pPipe->sfd ,(struct sockaddr*) &sAddress, sizeof(sAddress))) { printf("\nCould not connect to host\n"); err = KD_EIO; } } if(0 == err) /* establish listen queue */ if(listen(pPipe->sfd, QUEUE_SIZE) == SOCKET_ERROR) { printf("\nCould not listen\n"); err = KD_EIO; } if(0 == err) /* get the connected socket */ pPipe->cfd = accept(pPipe->sfd, (struct sockaddr*) &sAddress, (socklen_t*) &nAddressSize); return err; } /** Open socket for reading or writing. ** e.g. inet://faex05:2102 */ static CPresult Open( CPhandle* hContent, CPstring szURI, CP_ACCESSTYPE eAccess ) { inet_ContentPipe* pPipe = (inet_ContentPipe*) hContent; CPresult err = 0; char strHostName[80]; int nHostPort = 0; DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_inet:%s \n", __func__); { char *pc = strrchr(szURI, ':'); if(pc != NULL) { strncpy(strHostName, szURI+7, (long) pc - (long) szURI - 7); strHostName[(long) pc - (long) szURI - 7] = '\0'; nHostPort = atoi(++pc); } } /* make a socket */ pPipe->cfd = socket(AF_INET, SOCK_STREAM, IPPROTO_TCP); if(SOCKET_ERROR == pPipe->cfd) { err = KD_EIO; } if(0 == err) { struct hostent* pHostInfo; /* holds info about a machine */ long nHostAddress; struct sockaddr_in sAddress; /* Internet socket address stuct */ /* get IP address from name */ pHostInfo = gethostbyname(strHostName); /* copy address into long */ memcpy(&nHostAddress, pHostInfo->h_addr, pHostInfo->h_length); /* fill address struct */ sAddress.sin_addr.s_addr = nHostAddress; sAddress.sin_port = htons(nHostPort); sAddress.sin_family = AF_INET; /* connect to host */ if(SOCKET_ERROR == connect(pPipe->cfd, (struct sockaddr*) &sAddress, sizeof(sAddress))) { printf("\nCould not connect to host\n"); err = KD_EIO; } } return err; } /** Close socket */ static CPresult Close( CPhandle hContent ) { inet_ContentPipe* pPipe = (inet_ContentPipe*) hContent; CPresult err = 0; DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_inet:%s \n", __func__); /* close socket */ if(SOCKET_ERROR == close(pPipe->cfd)) { printf("\nCould not close client socket\n"); err = KD_EIO; } return err; } /** Check the that specified number of bytes are available for reading or writing (depending on access type).*/ static CPresult CheckAvailableBytes( CPhandle hContent, CPuint nBytesRequested, CP_CHECKBYTESRESULTTYPE *eResult ) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_inet:%s \n", __func__); return KD_EBADF; } /** Seek to certain position in the content relative to the specified origin. */ static CPresult SetPosition( CPhandle hContent, CPint nOffset, CP_ORIGINTYPE eOrigin) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_inet:%s \n", __func__); return KD_EBADF; } /** Retrieve the current position relative to the start of the content. */ static CPresult GetPosition( CPhandle hContent, CPuint *pPosition) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_inet:%s \n", __func__); return KD_EBADF; } /** Retrieve data of the specified size from the content stream (advance content pointer by size of data). Note: pipe client provides pointer. This function is appropriate for small high frequency reads. */ static CPresult Read( CPhandle hContent, CPbyte *pData, CPuint nSize) { inet_ContentPipe* pPipe = (inet_ContentPipe*) hContent; CPresult err = 0; ssize_t count; DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_inet:%s \n", __func__); count = read(pPipe->cfd, (void*) pData, (size_t) nSize); if(count < nSize) { err = KD_EIO; /* ??? */ } else if(count == -1) { err = KD_EIO; /* ??? */ } return err; } /** Retrieve a buffer allocated by the pipe that contains the requested number of bytes. Buffer contains the next block of bytes, as specified by nSize, of the content. nSize also returns the size of the block actually read. Content pointer advances the by the returned size. Note: pipe provides pointer. This function is appropriate for large reads. The client must call ReleaseReadBuffer when done with buffer. In some cases the requested block may not reside in contiguous memory within the pipe implementation. For instance if the pipe leverages a circular buffer then the requested block may straddle the boundary of the circular buffer. By default a pipe implementation performs a copy in this case to provide the block to the pipe client in one contiguous buffer. If, however, the client sets bForbidCopy, then the pipe returns only those bytes preceding the memory boundary. Here the client may retrieve the data in segments over successive calls. */ static CPresult ReadBuffer( CPhandle hContent, CPbyte **ppBuffer, CPuint *nSize, CPbool bForbidCopy) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_inet:%s \n", __func__); return KD_EBADF; } /** Release a buffer obtained by ReadBuffer back to the pipe. */ static CPresult ReleaseReadBuffer(CPhandle hContent, CPbyte *pBuffer) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_inet:%s \n", __func__); return KD_EBADF; } /** Write data of the specified size to the content (advance content pointer by size of data). Note: pipe client provides pointer. This function is appropriate for small high frequency writes. */ static CPresult Write( CPhandle hContent, CPbyte *pData, CPuint nSize) { inet_ContentPipe* pPipe = (inet_ContentPipe*) hContent; CPresult err = 0; ssize_t count; DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_inet:%s \n", __func__); count = write(pPipe->cfd, (void*) pData, (size_t) nSize); if(count < nSize) { err = KD_EIO; /* ??? */ } else if(count == -1) { err = KD_EIO; /* ??? */ } return err; } /** Retrieve a buffer allocated by the pipe used to write data to the content. Client will fill buffer with output data. Note: pipe provides pointer. This function is appropriate for large writes. The client must call WriteBuffer when done it has filled the buffer with data.*/ static CPresult GetWriteBuffer( CPhandle hContent, CPbyte **ppBuffer, CPuint nSize) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_inet:%s \n", __func__); return KD_EBADF; } /** Deliver a buffer obtained via GetWriteBuffer to the pipe. Pipe will write the the contents of the buffer to content and advance content pointer by the size of the buffer */ static CPresult WriteBuffer( CPhandle hContent, CPbyte *pBuffer, CPuint nFilledSize) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_inet:%s \n", __func__); return KD_EBADF; } /** Register a per-handle client callback with the content pipe. */ static CPresult RegisterCallback( CPhandle hContent, CPresult (*ClientCallback)(CP_EVENTTYPE eEvent, CPuint iParam)) { DEBUG(DEB_LEV_FUNCTION_NAME, "content_pipe_inet:%s \n", __func__); return KD_EBADF; } CPresult inet_pipe_Constructor(CP_PIPETYPE **ppPipe, CPstring szURI) { inet_ContentPipe* pPipe; pPipe = (inet_ContentPipe*) calloc(1, sizeof(inet_ContentPipe)); if(NULL != pPipe) { pPipe->pipe.Open = Open; pPipe->pipe.Close = Close; pPipe->pipe.Create = Create; pPipe->pipe.CheckAvailableBytes = CheckAvailableBytes; pPipe->pipe.SetPosition = SetPosition; pPipe->pipe.GetPosition = GetPosition; pPipe->pipe.Read = Read; pPipe->pipe.ReadBuffer = ReadBuffer; pPipe->pipe.ReleaseReadBuffer = ReleaseReadBuffer; pPipe->pipe.Write = Write; pPipe->pipe.GetWriteBuffer = GetWriteBuffer; pPipe->pipe.WriteBuffer = WriteBuffer; pPipe->pipe.RegisterCallback = RegisterCallback; pPipe->sfd = SOCKET_ERROR; /* Server file descriptor */ pPipe->cfd = SOCKET_ERROR; /* Client file descriptor */ *ppPipe = (CP_PIPETYPE*) pPipe; } return 0; } libomxil-bellagio-0.9.3/src/st_static_component_loader.h0000644000175000017500000001132211513256766020417 00000000000000/** src/st_static_component_loader.h ST specific component loader for local components. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __ST_STATIC_COMPONENT_LOADER_H__ #define __ST_STATIC_COMPONENT_LOADER_H__ #include "omxcore.h" #include "extension_struct.h" /** @brief the private data structure handled by the ST static loader that described * an OpenMAX component * * This structure contains all the fields that the loader must use to support * the loading unloading functions of the component, that are not described by the * standard. */ typedef struct stLoaderComponentType{ OMX_VERSIONTYPE componentVersion; /**< the version of the component in the OpenMAX standard format */ char* name; /**< String that represents the name of the component, ruled by the standard */ unsigned int name_specific_length;/**< this field contains the number of roles of the component */ char** name_specific; /**< Strings those represent the names of the specific format components */ char** role_specific; /**< Strings those represent the names of the specific format components */ char* name_requested; /**< This parameter is used to send to the component the string requested by the IL Client */ OMX_ERRORTYPE (*constructor)(OMX_COMPONENTTYPE*,OMX_STRING cComponentName); /**< constructor function pointer for each Linux ST OpenMAX component */ OMX_U32 nqualitylevels;/**< number of available quality levels */ multiResourceDescriptor** multiResourceLevel; } stLoaderComponentType; /** @brief The initialization of the ST specific component loader. */ void st_static_setup_component_loader(BOSA_COMPONENTLOADER * st_static_loader); /** @brief The constructor of the ST specific component loader. * * It is the component loader developed under linux by ST, for local libraries. * It is based on a registry file, like in the case of GStreamer. It reads the * registry file, and allows the components to register themself to the * main list templateList. */ OMX_ERRORTYPE BOSA_ST_InitComponentLoader(BOSA_COMPONENTLOADER *loader); /** @brief The destructor of the ST specific component loader. * * This function deallocates the list of available components. */ OMX_ERRORTYPE BOSA_ST_DeInitComponentLoader(BOSA_COMPONENTLOADER *loader); /** @brief creator of the requested openmax component * * This function searches for the requested component in the internal list. * If the component is found, its constructor is called, * and the standard callback are assigned. * A pointer to a standard openmax component is returned. */ OMX_ERRORTYPE BOSA_ST_CreateComponent( BOSA_COMPONENTLOADER *loader, OMX_HANDLETYPE* pHandle, OMX_STRING cComponentName, OMX_PTR pAppData, OMX_CALLBACKTYPE* pCallBacks); /** @brief destructor of the requested OpenMAX component * */ OMX_ERRORTYPE BOSA_ST_DestroyComponent( BOSA_COMPONENTLOADER *loader, OMX_HANDLETYPE hComponent); /** @brief This function search for the index from 0 to end of the list * * This function searches in the list of ST static components and enumerates * both the class names and the role specific components. */ OMX_ERRORTYPE BOSA_ST_ComponentNameEnum( BOSA_COMPONENTLOADER *loader, OMX_STRING cComponentName, OMX_U32 nNameLength, OMX_U32 nIndex); /** @brief The specific version of OMX_GetRolesOfComponent * * This function replicates exactly the behavior of the * standard OMX_GetRolesOfComponent function for the ST static * component loader */ OMX_ERRORTYPE BOSA_ST_GetRolesOfComponent( BOSA_COMPONENTLOADER *loader, OMX_STRING compName, OMX_U32 *pNumRoles, OMX_U8 **roles); /** @brief The specific version of OMX_GetComponentsOfRole * * This function replicates exactly the behavior of the * standard OMX_GetComponentsOfRole function for the ST static * component loader */ OMX_ERRORTYPE BOSA_ST_GetComponentsOfRole ( BOSA_COMPONENTLOADER *loader, OMX_STRING role, OMX_U32 *pNumComps, OMX_U8 **compNames); #endif libomxil-bellagio-0.9.3/src/components/0000755000175000017500000000000011565425033015077 500000000000000libomxil-bellagio-0.9.3/src/components/videoscheduler/0000755000175000017500000000000011565425034020105 500000000000000libomxil-bellagio-0.9.3/src/components/videoscheduler/omx_video_scheduler_component.c0000644000175000017500000011050411513256766026312 00000000000000/** src/components/videoscheduler/omx_video_scheduler_component.c This component implements a video scheduler Copyright (C) 2008-2009 STMicroelectronics Copyright (C) 2008-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #define DEFAULT_WIDTH 352 #define DEFAULT_HEIGHT 288 #define CLOCKPORT_INDEX 2 /** define the max input buffer size */ #define DEFAULT_VIDEO_INPUT_BUF_SIZE DEFAULT_WIDTH*DEFAULT_HEIGHT*3/2 /** The Constructor * @param openmaxStandComp the component handle to be constructed * @param cComponentName is the name of the constructed component */ OMX_ERRORTYPE omx_video_scheduler_component_Constructor(OMX_COMPONENTTYPE *openmaxStandComp, OMX_STRING cComponentName) { OMX_ERRORTYPE err = OMX_ErrorNone; omx_video_scheduler_component_PrivateType* omx_video_scheduler_component_Private; omx_base_video_PortType *inPort,*outPort; OMX_U32 i; RM_RegisterComponent(VIDEO_SCHEDULER_COMP_NAME, MAX_VIDEOSCHED_COMPONENTS); if (!openmaxStandComp->pComponentPrivate) { DEBUG(DEB_LEV_FUNCTION_NAME, "In %s, allocating component\n", __func__); openmaxStandComp->pComponentPrivate = calloc(1, sizeof(omx_video_scheduler_component_PrivateType)); if(openmaxStandComp->pComponentPrivate == NULL) { return OMX_ErrorInsufficientResources; } } else { DEBUG(DEB_LEV_FUNCTION_NAME, "In %s, Error Component %p Already Allocated\n", __func__, openmaxStandComp->pComponentPrivate); } omx_video_scheduler_component_Private = openmaxStandComp->pComponentPrivate; omx_video_scheduler_component_Private->ports = NULL; /** we could create our own port structures here * fixme maybe the base class could use a "port factory" function pointer? */ err = omx_base_filter_Constructor(openmaxStandComp, cComponentName); omx_video_scheduler_component_Private->sPortTypesParam[OMX_PortDomainVideo].nStartPortNumber = 0; omx_video_scheduler_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts = 2; omx_video_scheduler_component_Private->sPortTypesParam[OMX_PortDomainOther].nStartPortNumber = CLOCKPORT_INDEX; omx_video_scheduler_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts = 1; /** Allocate Ports and call port constructor. */ if ((omx_video_scheduler_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_video_scheduler_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts) && !omx_video_scheduler_component_Private->ports) { omx_video_scheduler_component_Private->ports = calloc((omx_video_scheduler_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_video_scheduler_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts), sizeof(omx_base_PortType *)); if (!omx_video_scheduler_component_Private->ports) { return OMX_ErrorInsufficientResources; } for (i=0; i < omx_video_scheduler_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts; i++) { omx_video_scheduler_component_Private->ports[i] = calloc(1, sizeof(omx_base_video_PortType)); if (!omx_video_scheduler_component_Private->ports[i]) { return OMX_ErrorInsufficientResources; } } base_video_port_Constructor(openmaxStandComp, &omx_video_scheduler_component_Private->ports[OMX_BASE_FILTER_INPUTPORT_INDEX], 0, OMX_TRUE); base_video_port_Constructor(openmaxStandComp, &omx_video_scheduler_component_Private->ports[OMX_BASE_FILTER_OUTPUTPORT_INDEX], 1, OMX_FALSE); omx_video_scheduler_component_Private->ports[CLOCKPORT_INDEX] = calloc(1, sizeof(omx_base_clock_PortType)); if (!omx_video_scheduler_component_Private->ports[CLOCKPORT_INDEX]) { return OMX_ErrorInsufficientResources; } base_clock_port_Constructor(openmaxStandComp, &omx_video_scheduler_component_Private->ports[CLOCKPORT_INDEX], 2, OMX_TRUE); omx_video_scheduler_component_Private->ports[CLOCKPORT_INDEX]->sPortParam.bEnabled = OMX_TRUE; } inPort = (omx_base_video_PortType *) omx_video_scheduler_component_Private->ports[OMX_BASE_FILTER_INPUTPORT_INDEX]; outPort= (omx_base_video_PortType *) omx_video_scheduler_component_Private->ports[OMX_BASE_FILTER_OUTPUTPORT_INDEX]; /** Domain specific section for the ports. */ //input port parameter settings inPort->sVideoParam.eColorFormat = OMX_COLOR_Format24bitRGB888; inPort->sPortParam.format.video.nFrameWidth = DEFAULT_WIDTH; inPort->sPortParam.format.video.nFrameHeight = DEFAULT_HEIGHT; inPort->sPortParam.nBufferSize = DEFAULT_VIDEO_INPUT_BUF_SIZE * 2 ; inPort->sPortParam.format.video.eColorFormat = OMX_COLOR_Format24bitRGB888; outPort->sVideoParam.eColorFormat = OMX_COLOR_Format24bitRGB888; outPort->sPortParam.format.video.nFrameWidth = DEFAULT_WIDTH; outPort->sPortParam.format.video.nFrameHeight = DEFAULT_HEIGHT; outPort->sPortParam.nBufferSize = DEFAULT_VIDEO_INPUT_BUF_SIZE * 2; outPort->sPortParam.format.video.eColorFormat = OMX_COLOR_Format24bitRGB888; omx_video_scheduler_component_Private->destructor = omx_video_scheduler_component_Destructor; omx_video_scheduler_component_Private->BufferMgmtCallback = omx_video_scheduler_component_BufferMgmtCallback; inPort->FlushProcessingBuffers = omx_video_scheduler_component_port_FlushProcessingBuffers; openmaxStandComp->SetParameter = omx_video_scheduler_component_SetParameter; openmaxStandComp->GetParameter = omx_video_scheduler_component_GetParameter; /* resource management special section */ omx_video_scheduler_component_Private->nqualitylevels = VIDEOSCHED_QUALITY_LEVELS; omx_video_scheduler_component_Private->currentQualityLevel = 1; omx_video_scheduler_component_Private->multiResourceLevel = malloc(sizeof(multiResourceDescriptor *) * VIDEOSCHED_QUALITY_LEVELS); for (i = 0; imultiResourceLevel[i] = malloc(sizeof(multiResourceDescriptor)); omx_video_scheduler_component_Private->multiResourceLevel[i]->CPUResourceRequested = videoSchedQualityLevels[i * 2]; omx_video_scheduler_component_Private->multiResourceLevel[i]->MemoryResourceRequested = videoSchedQualityLevels[i * 2 + 1]; } return err; } /** The destructor */ OMX_ERRORTYPE omx_video_scheduler_component_Destructor(OMX_COMPONENTTYPE *openmaxStandComp) { omx_video_scheduler_component_PrivateType* omx_video_scheduler_component_Private = openmaxStandComp->pComponentPrivate; OMX_U32 i; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); /* frees port/s */ if (omx_video_scheduler_component_Private->ports) { for(i=0; i < (omx_video_scheduler_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_video_scheduler_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts); i++) { if(omx_video_scheduler_component_Private->ports[i]) omx_video_scheduler_component_Private->ports[i]->PortDestructor(omx_video_scheduler_component_Private->ports[i]); } free(omx_video_scheduler_component_Private->ports); omx_video_scheduler_component_Private->ports=NULL; } omx_base_filter_Destructor(openmaxStandComp); DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** @brief the entry point for sending buffers to the video scheduler ports * * This function can be called by the EmptyThisBuffer or FillThisBuffer. It depends on * the nature of the port, that can be an input or output port. */ OMX_ERRORTYPE omx_video_scheduler_component_port_SendBufferFunction(omx_base_PortType *openmaxStandPort, OMX_BUFFERHEADERTYPE* pBuffer) { OMX_ERRORTYPE err; int errQue; OMX_U32 portIndex; OMX_COMPONENTTYPE* omxComponent = openmaxStandPort->standCompContainer; omx_base_component_PrivateType* omx_base_component_Private = (omx_base_component_PrivateType*)omxComponent->pComponentPrivate; OMX_BOOL SendFrame; omx_base_clock_PortType* pClockPort; #if NO_GST_OMX_PATCH unsigned int i; #endif portIndex = (openmaxStandPort->sPortParam.eDir == OMX_DirInput)?pBuffer->nInputPortIndex:pBuffer->nOutputPortIndex; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s portIndex %lu\n", __func__, portIndex); if (portIndex != openmaxStandPort->sPortParam.nPortIndex) { DEBUG(DEB_LEV_ERR, "In %s: wrong port for this operation portIndex=%d port->portIndex=%d\n", __func__, (int)portIndex, (int)openmaxStandPort->sPortParam.nPortIndex); return OMX_ErrorBadPortIndex; } if(omx_base_component_Private->state == OMX_StateInvalid) { DEBUG(DEB_LEV_ERR, "In %s: we are in OMX_StateInvalid\n", __func__); return OMX_ErrorInvalidState; } if(omx_base_component_Private->state != OMX_StateExecuting && omx_base_component_Private->state != OMX_StatePause && omx_base_component_Private->state != OMX_StateIdle) { DEBUG(DEB_LEV_ERR, "In %s: we are not in executing/paused/idle state, but in %d\n", __func__, omx_base_component_Private->state); return OMX_ErrorIncorrectStateOperation; } if (!PORT_IS_ENABLED(openmaxStandPort) || (PORT_IS_BEING_DISABLED(openmaxStandPort) && !PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort)) || (omx_base_component_Private->transientState == OMX_TransStateExecutingToIdle && (PORT_IS_TUNNELED(openmaxStandPort) && !PORT_IS_BUFFER_SUPPLIER(openmaxStandPort)))) { DEBUG(DEB_LEV_ERR, "In %s: Port %d is disabled comp = %s \n", __func__, (int)portIndex,omx_base_component_Private->name); return OMX_ErrorIncorrectStateOperation; } /* Temporarily disable this check for gst-openmax */ #if NO_GST_OMX_PATCH { OMX_BOOL foundBuffer = OMX_FALSE; if(pBuffer!=NULL && pBuffer->pBuffer!=NULL) { for(i=0; i < openmaxStandPort->sPortParam.nBufferCountActual; i++){ if (pBuffer->pBuffer == openmaxStandPort->pInternalBufferStorage[i]->pBuffer) { foundBuffer = OMX_TRUE; break; } } } if (!foundBuffer) { return OMX_ErrorBadParameter; } } #endif if ((err = checkHeader(pBuffer, sizeof(OMX_BUFFERHEADERTYPE))) != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s: received wrong buffer header on input port\n", __func__); return err; } pClockPort = (omx_base_clock_PortType*)omx_base_component_Private->ports[CLOCKPORT_INDEX]; if(PORT_IS_TUNNELED(pClockPort) && !PORT_IS_BEING_FLUSHED(openmaxStandPort) && (omx_base_component_Private->transientState != OMX_TransStateExecutingToIdle) && ((pBuffer->nFlags & OMX_BUFFERFLAG_EOS) != OMX_BUFFERFLAG_EOS)){ SendFrame = omx_video_scheduler_component_ClockPortHandleFunction((omx_video_scheduler_component_PrivateType*)omx_base_component_Private, pBuffer); if(!SendFrame) pBuffer->nFilledLen=0; } /* And notify the buffer management thread we have a fresh new buffer to manage */ if(!PORT_IS_BEING_FLUSHED(openmaxStandPort) && !(PORT_IS_BEING_DISABLED(openmaxStandPort) && PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort)) && omx_base_component_Private->transientState != OMX_TransStateExecutingToIdle){ errQue = queue(openmaxStandPort->pBufferQueue, pBuffer); if (errQue) { /* /TODO the queue is full. This can be handled in a fine way with * some retrials, or other checking. For the moment this is a critical error * and simply causes the failure of this call */ return OMX_ErrorInsufficientResources; } tsem_up(openmaxStandPort->pBufferSem); DEBUG(DEB_LEV_FULL_SEQ, "In %s Signalling bMgmtSem Port Index=%d\n",__func__, (int)portIndex); tsem_up(omx_base_component_Private->bMgmtSem); }else if(PORT_IS_BUFFER_SUPPLIER(openmaxStandPort)){ DEBUG(DEB_LEV_FULL_SEQ, "In %s: Comp %s received io:%d buffer\n", __func__,omx_base_component_Private->name,(int)openmaxStandPort->sPortParam.nPortIndex); errQue = queue(openmaxStandPort->pBufferQueue, pBuffer); if (errQue) { /* /TODO the queue is full. This can be handled in a fine way with * some retrials, or other checking. For the moment this is a critical error * and simply causes the failure of this call */ return OMX_ErrorInsufficientResources; } tsem_up(openmaxStandPort->pBufferSem); } else { // If port being flushed and not tunneled then return error DEBUG(DEB_LEV_FULL_SEQ, "In %s \n", __func__); return OMX_ErrorIncorrectStateOperation; } return OMX_ErrorNone; } OMX_BOOL omx_video_scheduler_component_ClockPortHandleFunction( omx_video_scheduler_component_PrivateType* omx_video_scheduler_component_Private, OMX_BUFFERHEADERTYPE* pInputBuffer){ omx_base_clock_PortType *pClockPort; OMX_HANDLETYPE hclkComponent; OMX_BUFFERHEADERTYPE* clockBuffer; OMX_TIME_MEDIATIMETYPE* pMediaTime; OMX_TIME_CONFIG_TIMESTAMPTYPE sClientTimeStamp; OMX_ERRORTYPE err; OMX_BOOL SendFrame; omx_base_video_PortType *pInputPort; pClockPort = (omx_base_clock_PortType*) omx_video_scheduler_component_Private->ports[CLOCKPORT_INDEX]; pInputPort = (omx_base_video_PortType *) omx_video_scheduler_component_Private->ports[0]; hclkComponent = pClockPort->hTunneledComponent; SendFrame = OMX_TRUE; DEBUG(DEB_LEV_FULL_SEQ, "In %s Clock Port is Tunneled. Sending Request\n", __func__); /* if first time stamp is received then notify the clock component */ if((pInputBuffer->nFlags & OMX_BUFFERFLAG_STARTTIME) == OMX_BUFFERFLAG_STARTTIME) { DEBUG(DEB_LEV_FULL_SEQ," In %s first time stamp = %llx \n", __func__,pInputBuffer->nTimeStamp); pInputBuffer->nFlags = 0; hclkComponent = pClockPort->hTunneledComponent; setHeader(&sClientTimeStamp, sizeof(OMX_TIME_CONFIG_TIMESTAMPTYPE)); sClientTimeStamp.nPortIndex = pClockPort->nTunneledPort; sClientTimeStamp.nTimestamp = pInputBuffer->nTimeStamp; err = OMX_SetConfig(hclkComponent, OMX_IndexConfigTimeClientStartTime, &sClientTimeStamp); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR,"Error %08x In OMX_SetConfig in func=%s \n",err,__func__); } tsem_down(pClockPort->pBufferSem); /* wait for state change notification */ /* update the clock state and clock scale info into the fbdev private data */ if(pClockPort->pBufferQueue->nelem > 0) { clockBuffer=dequeue(pClockPort->pBufferQueue); pMediaTime = (OMX_TIME_MEDIATIMETYPE*)clockBuffer->pBuffer; omx_video_scheduler_component_Private->eState = pMediaTime->eState; omx_video_scheduler_component_Private->xScale = pMediaTime->xScale; pClockPort->ReturnBufferFunction((omx_base_PortType*)pClockPort,clockBuffer); } } /* do not send the data to sink and return back, if the clock is not running*/ if(!omx_video_scheduler_component_Private->eState==OMX_TIME_ClockStateRunning){ pInputBuffer->nFilledLen=0; SendFrame = OMX_FALSE; return SendFrame; } /* check for any scale change information from the clock component */ if(pClockPort->pBufferSem->semval>0) { tsem_down(pClockPort->pBufferSem); if(pClockPort->pBufferQueue->nelem > 0) { clockBuffer = dequeue(pClockPort->pBufferQueue); pMediaTime = (OMX_TIME_MEDIATIMETYPE*)clockBuffer->pBuffer; if(pMediaTime->eUpdateType==OMX_TIME_UpdateScaleChanged) { /* On scale change update the media time base */ sClientTimeStamp.nPortIndex = pClockPort->nTunneledPort; sClientTimeStamp.nTimestamp = pInputBuffer->nTimeStamp; err = OMX_SetConfig(hclkComponent, OMX_IndexConfigTimeCurrentVideoReference, &sClientTimeStamp); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR,"Error %08x In OMX_SetConfig in func=%s \n",err,__func__); } omx_video_scheduler_component_Private->frameDropFlag = OMX_TRUE; omx_video_scheduler_component_Private->dropFrameCount = 0; omx_video_scheduler_component_Private->xScale = pMediaTime->xScale; } pClockPort->ReturnBufferFunction((omx_base_PortType*)pClockPort,clockBuffer); } } /* drop next seven frames on scale change and rebase the clock time base */ if(omx_video_scheduler_component_Private->frameDropFlag && omx_video_scheduler_component_Private->dropFrameCount<7) { //TODO - second check cond can be removed verify omx_video_scheduler_component_Private->dropFrameCount ++; if(omx_video_scheduler_component_Private->dropFrameCount==7) { /* rebase the clock time base */ setHeader(&sClientTimeStamp, sizeof(OMX_TIME_CONFIG_TIMESTAMPTYPE)); sClientTimeStamp.nPortIndex = pClockPort->nTunneledPort; sClientTimeStamp.nTimestamp = pInputBuffer->nTimeStamp; err = OMX_SetConfig(hclkComponent, OMX_IndexConfigTimeCurrentVideoReference, &sClientTimeStamp); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR,"Error %08x In OMX_SetConfig in func=%s \n",err,__func__); } omx_video_scheduler_component_Private->frameDropFlag = OMX_FALSE; omx_video_scheduler_component_Private->dropFrameCount = 0; SendFrame = OMX_TRUE; } SendFrame = OMX_FALSE; } /* frame is not to be dropped so send the request for the timestamp for the data delivery */ if(SendFrame){ if(!PORT_IS_BEING_FLUSHED(pInputPort) && !PORT_IS_BEING_FLUSHED(pClockPort) && omx_video_scheduler_component_Private->transientState != OMX_TransStateExecutingToIdle) { setHeader(&pClockPort->sMediaTimeRequest, sizeof(OMX_TIME_CONFIG_MEDIATIMEREQUESTTYPE)); pClockPort->sMediaTimeRequest.nMediaTimestamp = pInputBuffer->nTimeStamp; pClockPort->sMediaTimeRequest.nOffset = 100; /*set the requested offset */ pClockPort->sMediaTimeRequest.nPortIndex = pClockPort->nTunneledPort; pClockPort->sMediaTimeRequest.pClientPrivate = NULL; /* fill the appropriate value */ err = OMX_SetConfig(hclkComponent, OMX_IndexConfigTimeMediaTimeRequest, &pClockPort->sMediaTimeRequest); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR,"Error %08x In OMX_SetConfig in func=%s \n",err,__func__); } if(!PORT_IS_BEING_FLUSHED(pInputPort) && !PORT_IS_BEING_FLUSHED(pClockPort) && omx_video_scheduler_component_Private->transientState != OMX_TransStateExecutingToIdle) { tsem_down(pClockPort->pBufferSem); /* wait for the request fullfillment */ if(pClockPort->pBufferQueue->nelem > 0) { clockBuffer = dequeue(pClockPort->pBufferQueue); pMediaTime = (OMX_TIME_MEDIATIMETYPE*)clockBuffer->pBuffer; if(pMediaTime->eUpdateType==OMX_TIME_UpdateScaleChanged) { /* update the media time base */ setHeader(&sClientTimeStamp, sizeof(OMX_TIME_CONFIG_TIMESTAMPTYPE)); // do not need to setHeader again do once at the top sClientTimeStamp.nPortIndex = pClockPort->nTunneledPort; sClientTimeStamp.nTimestamp = pInputBuffer->nTimeStamp; err = OMX_SetConfig(hclkComponent, OMX_IndexConfigTimeCurrentVideoReference, &sClientTimeStamp); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR,"Error %08x In OMX_SetConfig in func=%s \n",err,__func__); } omx_video_scheduler_component_Private->frameDropFlag = OMX_TRUE; omx_video_scheduler_component_Private->dropFrameCount = 0; omx_video_scheduler_component_Private->xScale = pMediaTime->xScale; } if(pMediaTime->eUpdateType==OMX_TIME_UpdateRequestFulfillment){ if((pMediaTime->nOffset)>0) { SendFrame=OMX_TRUE; }else { SendFrame = OMX_FALSE; } } pClockPort->ReturnBufferFunction((omx_base_PortType *)pClockPort,clockBuffer); } } } } return(SendFrame); } /** @brief Releases buffers under processing. * This function must be implemented in the derived classes, for the * specific processing */ OMX_ERRORTYPE omx_video_scheduler_component_port_FlushProcessingBuffers(omx_base_PortType *openmaxStandPort) { omx_base_component_PrivateType* omx_base_component_Private; omx_video_scheduler_component_PrivateType* omx_video_scheduler_component_Private; OMX_BUFFERHEADERTYPE* pBuffer; omx_base_clock_PortType *pClockPort; int errQue; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); omx_base_component_Private = (omx_base_component_PrivateType*)openmaxStandPort->standCompContainer->pComponentPrivate; omx_video_scheduler_component_Private = ( omx_video_scheduler_component_PrivateType*) omx_base_component_Private; pClockPort = (omx_base_clock_PortType*) omx_video_scheduler_component_Private->ports[CLOCKPORT_INDEX]; if(openmaxStandPort->sPortParam.eDomain!=OMX_PortDomainOther) { /* clock buffers not used in the clients buffer managment function */ pthread_mutex_lock(&omx_base_component_Private->flush_mutex); openmaxStandPort->bIsPortFlushed=OMX_TRUE; /*Signal the buffer management thread of port flush,if it is waiting for buffers*/ if(omx_base_component_Private->bMgmtSem->semval==0) { tsem_up(omx_base_component_Private->bMgmtSem); } if(omx_base_component_Private->state != OMX_StateExecuting ) { /*signal at non-executing state*/ tsem_signal(omx_base_component_Private->bStateSem); } DEBUG(DEB_LEV_FULL_SEQ, "In %s waiting for flush all condition port index =%d\n", __func__,(int)openmaxStandPort->sPortParam.nPortIndex); /* Wait until flush is completed */ pthread_mutex_unlock(&omx_base_component_Private->flush_mutex); /*Dummy signal to clock port*/ if(pClockPort->pBufferSem->semval == 0) { tsem_up(pClockPort->pBufferSem); tsem_reset(pClockPort->pBufferSem); } tsem_down(omx_base_component_Private->flush_all_condition); } tsem_reset(omx_base_component_Private->bMgmtSem); /* Flush all the buffers not under processing */ while (openmaxStandPort->pBufferSem->semval > 0) { DEBUG(DEB_LEV_FULL_SEQ, "In %s TFlag=%x Flusing Port=%d,Semval=%d Qelem=%d\n", __func__,(int)openmaxStandPort->nTunnelFlags,(int)openmaxStandPort->sPortParam.nPortIndex, (int)openmaxStandPort->pBufferSem->semval,(int)openmaxStandPort->pBufferQueue->nelem); tsem_down(openmaxStandPort->pBufferSem); pBuffer = dequeue(openmaxStandPort->pBufferQueue); if (PORT_IS_TUNNELED(openmaxStandPort) && !PORT_IS_BUFFER_SUPPLIER(openmaxStandPort)) { DEBUG(DEB_LEV_FULL_SEQ, "In %s: Comp %s is returning io:%d buffer\n", __func__,omx_base_component_Private->name,(int)openmaxStandPort->sPortParam.nPortIndex); if (openmaxStandPort->sPortParam.eDir == OMX_DirInput) { ((OMX_COMPONENTTYPE*)(openmaxStandPort->hTunneledComponent))->FillThisBuffer(openmaxStandPort->hTunneledComponent, pBuffer); } else { ((OMX_COMPONENTTYPE*)(openmaxStandPort->hTunneledComponent))->EmptyThisBuffer(openmaxStandPort->hTunneledComponent, pBuffer); } } else if (PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort)) { errQue = queue(openmaxStandPort->pBufferQueue,pBuffer); if (errQue) { /* /TODO the queue is full. This can be handled in a fine way with * some retrials, or other checking. For the moment this is a critical error * and simply causes the failure of this call */ return OMX_ErrorInsufficientResources; } } else { (*(openmaxStandPort->BufferProcessedCallback))( openmaxStandPort->standCompContainer, omx_base_component_Private->callbackData, pBuffer); } } /*Port is tunneled and supplier and didn't received all it's buffer then wait for the buffers*/ if (PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort)) { while(openmaxStandPort->pBufferQueue->nelem!= openmaxStandPort->nNumAssignedBuffers){ tsem_down(openmaxStandPort->pBufferSem); DEBUG(DEB_LEV_PARAMS, "In %s Got a buffer qelem=%d\n",__func__,openmaxStandPort->pBufferQueue->nelem); } tsem_reset(openmaxStandPort->pBufferSem); } pthread_mutex_lock(&omx_base_component_Private->flush_mutex); openmaxStandPort->bIsPortFlushed=OMX_FALSE; pthread_mutex_unlock(&omx_base_component_Private->flush_mutex); tsem_up(omx_base_component_Private->flush_condition); DEBUG(DEB_LEV_FULL_SEQ, "Out %s Port Index=%d bIsPortFlushed=%d Component %s\n", __func__, (int)openmaxStandPort->sPortParam.nPortIndex,(int)openmaxStandPort->bIsPortFlushed,omx_base_component_Private->name); DEBUG(DEB_LEV_PARAMS, "In %s TFlag=%x Qelem=%d BSem=%d bMgmtsem=%d component=%s\n", __func__, (int)openmaxStandPort->nTunnelFlags, (int)openmaxStandPort->pBufferQueue->nelem, (int)openmaxStandPort->pBufferSem->semval, (int)omx_base_component_Private->bMgmtSem->semval, omx_base_component_Private->name); DEBUG(DEB_LEV_FUNCTION_NAME, "Out %s Port Index=%d\n", __func__,(int)openmaxStandPort->sPortParam.nPortIndex); return OMX_ErrorNone; } /** This function is used to process the input buffer and provide one output buffer */ void omx_video_scheduler_component_BufferMgmtCallback(OMX_COMPONENTTYPE *openmaxStandComp, OMX_BUFFERHEADERTYPE* pInputBuffer, OMX_BUFFERHEADERTYPE* pOutputBuffer) { omx_video_scheduler_component_PrivateType* omx_video_scheduler_component_Private = openmaxStandComp->pComponentPrivate; omx_base_video_PortType *inPort = (omx_base_video_PortType *)omx_video_scheduler_component_Private->ports[OMX_BASE_FILTER_INPUTPORT_INDEX]; omx_base_clock_PortType* pClockPort; OMX_BOOL SendFrame; pClockPort = (omx_base_clock_PortType*)omx_video_scheduler_component_Private->ports[CLOCKPORT_INDEX]; if(PORT_IS_TUNNELED(pClockPort) && !PORT_IS_BEING_FLUSHED(inPort) && (omx_video_scheduler_component_Private->transientState != OMX_TransStateExecutingToIdle) && ((pInputBuffer->nFlags & OMX_BUFFERFLAG_EOS) != OMX_BUFFERFLAG_EOS)){ SendFrame = omx_video_scheduler_component_ClockPortHandleFunction(omx_video_scheduler_component_Private, pInputBuffer); if(!SendFrame) pInputBuffer->nFilledLen = 0; } if((pInputBuffer->pBuffer != pOutputBuffer->pBuffer) && (pInputBuffer->nFilledLen > 0)){ memcpy(pOutputBuffer->pBuffer,pInputBuffer->pBuffer,pInputBuffer->nFilledLen); pOutputBuffer->nOffset = pInputBuffer->nOffset; } pOutputBuffer->nFilledLen = pInputBuffer->nFilledLen; pInputBuffer->nFilledLen=0; } OMX_ERRORTYPE omx_video_scheduler_component_SetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure) { OMX_ERRORTYPE err = OMX_ErrorNone; OMX_PARAM_PORTDEFINITIONTYPE *pPortDef; OMX_VIDEO_PARAM_PORTFORMATTYPE *pVideoPortFormat; OMX_OTHER_PARAM_PORTFORMATTYPE *pOtherPortFormat; OMX_U32 portIndex; OMX_PARAM_COMPONENTROLETYPE *pComponentRole; /* Check which structure we are being fed and make control its header */ OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE *)hComponent; omx_video_scheduler_component_PrivateType* omx_video_scheduler_component_Private = openmaxStandComp->pComponentPrivate; omx_base_video_PortType *pPort; omx_base_clock_PortType *pClockPort; if (ComponentParameterStructure == NULL) { return OMX_ErrorBadParameter; } DEBUG(DEB_LEV_SIMPLE_SEQ, " Setting parameter %i\n", nParamIndex); switch(nParamIndex) { case OMX_IndexParamPortDefinition: pPortDef = (OMX_PARAM_PORTDEFINITIONTYPE*) ComponentParameterStructure; portIndex = pPortDef->nPortIndex; err = omx_base_component_ParameterSanityCheck(hComponent, portIndex, pPortDef, sizeof(OMX_PARAM_PORTDEFINITIONTYPE)); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s Parameter Check Error=%x\n",__func__,err); break; } if(portIndex > (omx_video_scheduler_component_Private->sPortTypesParam[OMX_PortDomainVideo].nPorts + omx_video_scheduler_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts)) { return OMX_ErrorBadPortIndex; } if(portIndex < CLOCKPORT_INDEX) { pPort = (omx_base_video_PortType *) omx_video_scheduler_component_Private->ports[portIndex]; pPort->sPortParam.nBufferCountActual = pPortDef->nBufferCountActual; // Copy stuff from OMX_VIDEO_PORTDEFINITIONTYPE structure if(pPortDef->format.video.cMIMEType != NULL) { strcpy(pPort->sPortParam.format.video.cMIMEType , pPortDef->format.video.cMIMEType); } pPort->sPortParam.format.video.nFrameWidth = pPortDef->format.video.nFrameWidth; pPort->sPortParam.format.video.nFrameHeight = pPortDef->format.video.nFrameHeight; pPort->sPortParam.format.video.nBitrate = pPortDef->format.video.nBitrate; pPort->sPortParam.format.video.xFramerate = pPortDef->format.video.xFramerate; pPort->sPortParam.format.video.bFlagErrorConcealment = pPortDef->format.video.bFlagErrorConcealment; // Figure out stride, slice height, min buffer size pPort->sPortParam.format.video.nStride = pPortDef->format.video.nStride; pPort->sPortParam.format.video.nSliceHeight = pPort->sPortParam.format.video.nFrameHeight; // No support for slices yet // Read-only field by spec pPort->sPortParam.nBufferSize = (OMX_U32) abs(pPort->sPortParam.format.video.nStride) * pPort->sPortParam.format.video.nSliceHeight; } else { pClockPort = (omx_base_clock_PortType *) omx_video_scheduler_component_Private->ports[portIndex]; pClockPort->sPortParam.nBufferCountActual = pPortDef->nBufferCountActual; pClockPort->sPortParam.format.other.eFormat = pPortDef->format.other.eFormat; } break; case OMX_IndexParamVideoPortFormat: // FIXME: How do we handle the nIndex member? pVideoPortFormat = (OMX_VIDEO_PARAM_PORTFORMATTYPE*)ComponentParameterStructure; portIndex = pVideoPortFormat->nPortIndex; err = omx_base_component_ParameterSanityCheck(hComponent, portIndex, pVideoPortFormat, sizeof(OMX_VIDEO_PARAM_PORTFORMATTYPE)); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s Parameter Check Error=%x\n",__func__,err); break; } pPort = (omx_base_video_PortType *) omx_video_scheduler_component_Private->ports[portIndex]; if(portIndex > 1) { return OMX_ErrorBadPortIndex; } if (pVideoPortFormat->eCompressionFormat != OMX_VIDEO_CodingUnused) { // No compression allowed return OMX_ErrorUnsupportedSetting; } pPort->sVideoParam.xFramerate = pVideoPortFormat->xFramerate; pPort->sVideoParam.eCompressionFormat = pVideoPortFormat->eCompressionFormat; pPort->sVideoParam.eColorFormat = pVideoPortFormat->eColorFormat; break; case OMX_IndexParamOtherPortFormat: pOtherPortFormat = (OMX_OTHER_PARAM_PORTFORMATTYPE*)ComponentParameterStructure; portIndex = pOtherPortFormat->nPortIndex; err = omx_base_component_ParameterSanityCheck(hComponent, portIndex, pOtherPortFormat, sizeof(OMX_OTHER_PARAM_PORTFORMATTYPE)); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s Parameter Check Error=%x\n",__func__,err); break; } if(portIndex != CLOCKPORT_INDEX) { return OMX_ErrorBadPortIndex; } pClockPort = (omx_base_clock_PortType *) omx_video_scheduler_component_Private->ports[portIndex]; pClockPort->sOtherParam.eFormat = pOtherPortFormat->eFormat; break; case OMX_IndexParamStandardComponentRole: pComponentRole = (OMX_PARAM_COMPONENTROLETYPE*)ComponentParameterStructure; if (omx_video_scheduler_component_Private->state != OMX_StateLoaded && omx_video_scheduler_component_Private->state != OMX_StateWaitForResources) { DEBUG(DEB_LEV_ERR, "In %s Incorrect State=%x lineno=%d\n",__func__,omx_video_scheduler_component_Private->state,__LINE__); return OMX_ErrorIncorrectStateOperation; } if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PARAM_COMPONENTROLETYPE))) != OMX_ErrorNone) { break; } if (strcmp( (char*) pComponentRole->cRole, VIDEO_SCHEDULER_COMP_ROLE)) { return OMX_ErrorBadParameter; } break; default: /*Call the base component function*/ return omx_base_component_SetParameter(hComponent, nParamIndex, ComponentParameterStructure); } return err; } OMX_ERRORTYPE omx_video_scheduler_component_GetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure) { OMX_VIDEO_PARAM_PORTFORMATTYPE *pVideoPortFormat; OMX_OTHER_PARAM_PORTFORMATTYPE *pOtherPortFormat; OMX_ERRORTYPE err = OMX_ErrorNone; OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE *)hComponent; omx_video_scheduler_component_PrivateType* omx_video_scheduler_component_Private = openmaxStandComp->pComponentPrivate; omx_base_video_PortType *pPort; omx_base_clock_PortType *pClockPort = (omx_base_clock_PortType *) omx_video_scheduler_component_Private->ports[CLOCKPORT_INDEX]; OMX_PARAM_COMPONENTROLETYPE *pComponentRole; if (ComponentParameterStructure == NULL) { return OMX_ErrorBadParameter; } DEBUG(DEB_LEV_SIMPLE_SEQ, " Getting parameter %i\n", nParamIndex); /* Check which structure we are being fed and fill its header */ switch(nParamIndex) { case OMX_IndexParamVideoInit: if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PORT_PARAM_TYPE))) != OMX_ErrorNone) { break; } memcpy(ComponentParameterStructure, &omx_video_scheduler_component_Private->sPortTypesParam[OMX_PortDomainVideo], sizeof(OMX_PORT_PARAM_TYPE)); break; case OMX_IndexParamOtherInit: if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PORT_PARAM_TYPE))) != OMX_ErrorNone) { break; } memcpy(ComponentParameterStructure, &omx_video_scheduler_component_Private->sPortTypesParam[OMX_PortDomainOther], sizeof(OMX_PORT_PARAM_TYPE)); break; case OMX_IndexParamVideoPortFormat: pVideoPortFormat = (OMX_VIDEO_PARAM_PORTFORMATTYPE*)ComponentParameterStructure; pPort = (omx_base_video_PortType *) omx_video_scheduler_component_Private->ports[pVideoPortFormat->nPortIndex]; if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_VIDEO_PARAM_PORTFORMATTYPE))) != OMX_ErrorNone) { break; } if (pVideoPortFormat->nPortIndex < CLOCKPORT_INDEX) { memcpy(pVideoPortFormat, &pPort->sVideoParam, sizeof(OMX_VIDEO_PARAM_PORTFORMATTYPE)); } else { return OMX_ErrorBadPortIndex; } break; case OMX_IndexParamOtherPortFormat: pOtherPortFormat = (OMX_OTHER_PARAM_PORTFORMATTYPE*)ComponentParameterStructure; if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_OTHER_PARAM_PORTFORMATTYPE))) != OMX_ErrorNone) { break; } if (pOtherPortFormat->nPortIndex == CLOCKPORT_INDEX) { memcpy(pOtherPortFormat, &pClockPort->sOtherParam, sizeof(OMX_OTHER_PARAM_PORTFORMATTYPE)); } else { return OMX_ErrorBadPortIndex; } break; case OMX_IndexParamStandardComponentRole: pComponentRole = 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\ -I$(top_srcdir)/src \ -I$(top_srcdir)/src/base libomxil-bellagio-0.9.3/src/components/videoscheduler/omx_video_scheduler_component.h0000644000175000017500000000676611513256766026335 00000000000000/** src/components/videoscheduler/omx_video_scheduler_component.h This component implements a video scheduler Copyright (C) 2008-2009 STMicroelectronics Copyright (C) 2008-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef _OMX_VIDEO_SCHEDULER_H_ #define _OMX_VIDEO_SCHEDULER_H_ #include #include #include #include #include #include #define VIDEO_SCHEDULER_COMP_NAME "OMX.st.video.scheduler" #define VIDEO_SCHEDULER_COMP_ROLE "video.scheduler" #define MAX_VIDEOSCHED_COMPONENTS 10 #define VIDEOSCHED_QUALITY_LEVELS 2 static int videoSchedQualityLevels []={1, 456192, 1, 304128}; /** video scheduler component private structure. * @param xScale the scale of the media clock * @param eState the state of the media clock * @param frameDropFlag the flag active on scale change indicates that frames are to be dropped * @param dropFrameCount counts the number of frames dropped */ DERIVEDCLASS(omx_video_scheduler_component_PrivateType, omx_base_filter_PrivateType) #define omx_video_scheduler_component_PrivateType_FIELDS omx_base_filter_PrivateType_FIELDS \ OMX_S32 xScale; \ OMX_TIME_CLOCKSTATE eState; \ OMX_BOOL frameDropFlag;\ int dropFrameCount; ENDCLASS(omx_video_scheduler_component_PrivateType) /* Component private entry points declaration */ OMX_ERRORTYPE omx_video_scheduler_component_Constructor(OMX_COMPONENTTYPE *openmaxStandComp, OMX_STRING cComponentName); OMX_ERRORTYPE omx_fbdev_sink_component_Init(OMX_COMPONENTTYPE *openmaxStandComp); OMX_ERRORTYPE omx_fbdev_sink_component_Deinit(OMX_COMPONENTTYPE *openmaxStandComp); OMX_ERRORTYPE omx_video_scheduler_component_Destructor(OMX_COMPONENTTYPE *openmaxStandComp); void omx_video_scheduler_component_BufferMgmtCallback( OMX_COMPONENTTYPE *openmaxStandComp, OMX_BUFFERHEADERTYPE* inputbuffer, OMX_BUFFERHEADERTYPE* outputbuffer); OMX_ERRORTYPE omx_video_scheduler_component_GetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure); OMX_ERRORTYPE omx_video_scheduler_component_SetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure); /* to handle the communication at the clock port */ OMX_BOOL omx_video_scheduler_component_ClockPortHandleFunction( omx_video_scheduler_component_PrivateType* omx_video_scheduler_component_Private, OMX_BUFFERHEADERTYPE* inputbuffer); OMX_ERRORTYPE omx_video_scheduler_component_port_SendBufferFunction( omx_base_PortType *openmaxStandPort, OMX_BUFFERHEADERTYPE* pBuffer); OMX_ERRORTYPE omx_video_scheduler_component_port_FlushProcessingBuffers(omx_base_PortType *openmaxStandPort); #endif libomxil-bellagio-0.9.3/src/components/videoscheduler/library_entry_point.c0000644000175000017500000001025311513256766024277 00000000000000/** src/components/videoscheduler/library_entry_point.c The library entry point. It must have the same name for each library of the components loaded by the ST static component loader. This function fills the version, the component name and if existing also the roles and the specific names for each role. This base function is only an explanation. For each library it must be implemented, and it must fill data of any component in the library Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include /** @brief The library entry point. It must have the same name for each * library of the components loaded by the ST static component loader. * * This function fills the version, the component name and if existing also the roles * and the specific names for each role. This base function is only an explanation. * For each library it must be implemented, and it must fill data of any component * in the library. * * @param stComponents pointer to an array of components descriptors.If NULL, the * function will return only the number of components contained in the library * * @return number of components contained in the library */ int omx_component_library_Setup(stLoaderComponentType **stComponents) { int i; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s \n",__func__); if (stComponents == NULL) { DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s \n",__func__); return 1; // Return Number of Components - one for fbdev sink component } stComponents[0]->componentVersion.s.nVersionMajor = 1; stComponents[0]->componentVersion.s.nVersionMinor = 1; stComponents[0]->componentVersion.s.nRevision = 1; stComponents[0]->componentVersion.s.nStep = 1; stComponents[0]->name = calloc(1, OMX_MAX_STRINGNAME_SIZE); if (stComponents[0]->name == NULL) { return OMX_ErrorInsufficientResources; } strcpy(stComponents[0]->name, VIDEO_SCHEDULER_COMP_NAME); stComponents[0]->name_specific_length = 1; stComponents[0]->constructor = omx_video_scheduler_component_Constructor; stComponents[0]->name_specific = calloc(stComponents[0]->name_specific_length,sizeof(char *)); stComponents[0]->role_specific = calloc(stComponents[0]->name_specific_length,sizeof(char *)); for(i=0;iname_specific_length;i++) { stComponents[0]->name_specific[i] = calloc(1, OMX_MAX_STRINGNAME_SIZE); if (stComponents[0]->name_specific[i] == NULL) { return OMX_ErrorInsufficientResources; } } for(i=0;iname_specific_length;i++) { stComponents[0]->role_specific[i] = calloc(1, OMX_MAX_STRINGNAME_SIZE); if (stComponents[0]->role_specific[i] == NULL) { return OMX_ErrorInsufficientResources; } } strcpy(stComponents[0]->name_specific[0], VIDEO_SCHEDULER_COMP_NAME); strcpy(stComponents[0]->role_specific[0], VIDEO_SCHEDULER_COMP_ROLE); stComponents[0]->nqualitylevels = VIDEOSCHED_QUALITY_LEVELS; stComponents[0]->multiResourceLevel = malloc(stComponents[0]->nqualitylevels * sizeof(multiResourceDescriptor *)); for (i=0; inqualitylevels; i++) { stComponents[0]->multiResourceLevel[i] = malloc(sizeof(multiResourceDescriptor)); stComponents[0]->multiResourceLevel[i]->CPUResourceRequested = videoSchedQualityLevels[i * 2]; stComponents[0]->multiResourceLevel[i]->MemoryResourceRequested = videoSchedQualityLevels[i * 2 + 1]; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s \n",__func__); return 1; } libomxil-bellagio-0.9.3/src/components/audio_effects/0000755000175000017500000000000011565425033017677 500000000000000libomxil-bellagio-0.9.3/src/components/audio_effects/omx_audiomixer_component.h0000644000175000017500000000767311513256766025130 00000000000000/** src/components/audio_effects/omx_audiomixer_component.h OpenMAX audio_mixer control component. This component implements a mixer that mixes multiple audio PCM streams and produces a single output stream. Copyright (C) 2008-2009 STMicroelectronics Copyright (C) 2008-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef _OMX_AUDIO_MIXER_COMPONENT_H_ #define _OMX_AUDIO_MIXER_COMPONENT_H_ #include #include #include #include #include #include #define MIXER_COMP_NAME "OMX.st.audio.mixer" #define MIXER_COMP_ROLE "audio.mixer" #define MAX_MIXER_COMPONENTS 5 #define MIXER_QUALITY_LEVELS 1 static int mixerQualityLevels []={50, 60000, 10, 40000}; #define MAX_PORTS 5 // Maximum number of ports supported by the mixer. 4 input and 1 output #define MAX_CHANNEL 6 // Maximum number of channels supported in a single stream 5.1 /** Audio Mixer port structure. */ DERIVEDCLASS(omx_audio_mixer_component_PortType, omx_base_audio_PortType) #define omx_audio_mixer_component_PortType_FIELDS omx_base_audio_PortType_FIELDS \ /** @param pAudioPcmMode Referece to OMX_AUDIO_PARAM_PCMMODETYPE structure*/ \ OMX_AUDIO_PARAM_PCMMODETYPE pAudioPcmMode; \ /** @param gain the audio_mixer gain value */ \ float gain; \ /** @param sVolume Audio Volume adjustment for a port */ \ OMX_AUDIO_CONFIG_VOLUMETYPE sVolume; \ /** @param sChannelVolume Audio Volume adjustment for a channel */ \ OMX_AUDIO_CONFIG_CHANNELVOLUMETYPE sChannelVolume[MAX_CHANNEL]; ENDCLASS(omx_audio_mixer_component_PortType) /** Twoport component private structure. * see the define above */ DERIVEDCLASS(omx_audio_mixer_component_PrivateType, omx_base_filter_PrivateType) #define omx_audio_mixer_component_PrivateType_FIELDS omx_base_filter_PrivateType_FIELDS \ /** This class is empty for the time being */ ENDCLASS(omx_audio_mixer_component_PrivateType) /* Component private entry points declaration */ OMX_ERRORTYPE omx_audio_mixer_component_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,OMX_STRING cComponentName); OMX_ERRORTYPE omx_audio_mixer_component_Destructor(OMX_COMPONENTTYPE *openmaxStandComp); void omx_audio_mixer_component_BufferMgmtCallback( OMX_COMPONENTTYPE *openmaxStandComp, OMX_BUFFERHEADERTYPE* inputbuffer, OMX_BUFFERHEADERTYPE* outputbuffer); OMX_ERRORTYPE omx_audio_mixer_component_GetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure); OMX_ERRORTYPE omx_audio_mixer_component_SetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure); OMX_ERRORTYPE omx_audio_mixer_component_GetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure); OMX_ERRORTYPE omx_audio_mixer_component_SetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure); /** This is the central function for component processing, overridden for audio mixer. It * is executed in a separate thread, is synchronized with * semaphores at each port, those are released each time a new buffer * is available on the given port. */ void* omx_audio_mixer_BufferMgmtFunction (void* param); #endif libomxil-bellagio-0.9.3/src/components/audio_effects/omx_audiomixer_component.c0000644000175000017500000006557211513256766025125 00000000000000/** src/components/audio_effects/omx_audiomixer_component.c OpenMAX audio mixer control component. This component implements a mixer that mixes multiple audio PCM streams and produces a single output stream. Copyright (C) 2008-2009 STMicroelectronics Copyright (C) 2008-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include /* Gain value */ #define GAIN_VALUE 100.0f OMX_ERRORTYPE omx_audio_mixer_component_Constructor(OMX_COMPONENTTYPE *openmaxStandComp, OMX_STRING cComponentName) { OMX_ERRORTYPE err = OMX_ErrorNone; omx_audio_mixer_component_PrivateType* omx_audio_mixer_component_Private; omx_audio_mixer_component_PortType *pPort;//,*inPort1, *outPort; OMX_U32 i; RM_RegisterComponent(MIXER_COMP_NAME, MAX_MIXER_COMPONENTS); if (!openmaxStandComp->pComponentPrivate) { DEBUG(DEB_LEV_FUNCTION_NAME, "In %s, allocating component\n",__func__); openmaxStandComp->pComponentPrivate = calloc(1, sizeof(omx_audio_mixer_component_PrivateType)); if(openmaxStandComp->pComponentPrivate == NULL) { return OMX_ErrorInsufficientResources; } } else { DEBUG(DEB_LEV_FUNCTION_NAME, "In %s, Error Component %p Already Allocated\n", __func__, openmaxStandComp->pComponentPrivate); } omx_audio_mixer_component_Private = openmaxStandComp->pComponentPrivate; omx_audio_mixer_component_Private->ports = NULL; /** Calling base filter constructor */ err = omx_base_filter_Constructor(openmaxStandComp, cComponentName); /*Assuming 4 input and 1 output ports*/ omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio].nStartPortNumber = 0; omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts = MAX_PORTS; /** Allocate Ports and call port constructor. */ if (omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts && !omx_audio_mixer_component_Private->ports) { omx_audio_mixer_component_Private->ports = calloc(omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts, sizeof(omx_base_PortType *)); if (!omx_audio_mixer_component_Private->ports) { return OMX_ErrorInsufficientResources; } for (i=0; i < omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts; i++) { omx_audio_mixer_component_Private->ports[i] = calloc(1, sizeof(omx_audio_mixer_component_PortType)); if (!omx_audio_mixer_component_Private->ports[i]) { return OMX_ErrorInsufficientResources; } } } /* construct all input ports */ for(i=0;isPortTypesParam[OMX_PortDomainAudio].nPorts-1;i++) { base_audio_port_Constructor(openmaxStandComp, &omx_audio_mixer_component_Private->ports[i], i, OMX_TRUE); } /* construct one output port */ base_audio_port_Constructor(openmaxStandComp, &omx_audio_mixer_component_Private->ports[omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts-1], omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts-1, OMX_FALSE); /** Domain specific section for the ports. */ for(i=0;isPortTypesParam[OMX_PortDomainAudio].nPorts;i++) { pPort = (omx_audio_mixer_component_PortType *) omx_audio_mixer_component_Private->ports[i]; pPort->sPortParam.nBufferSize = DEFAULT_OUT_BUFFER_SIZE; pPort->gain = GAIN_VALUE; //100.0f; // default gain setHeader(&pPort->pAudioPcmMode,sizeof(OMX_AUDIO_PARAM_PCMMODETYPE)); pPort->pAudioPcmMode.nPortIndex = i; pPort->pAudioPcmMode.nChannels = 2; pPort->pAudioPcmMode.eNumData = OMX_NumericalDataSigned; pPort->pAudioPcmMode.eEndian = OMX_EndianBig; pPort->pAudioPcmMode.bInterleaved = OMX_TRUE; pPort->pAudioPcmMode.nBitPerSample = 16; pPort->pAudioPcmMode.nSamplingRate = 44100; pPort->pAudioPcmMode.ePCMMode = OMX_AUDIO_PCMModeLinear; setHeader(&pPort->sVolume,sizeof(OMX_AUDIO_CONFIG_VOLUMETYPE)); pPort->sVolume.nPortIndex = i; pPort->sVolume.bLinear = OMX_TRUE; /**< Is the volume to be set in linear (0.100) or logarithmic scale (mB) */ pPort->sVolume.sVolume.nValue = (OMX_S32)GAIN_VALUE; pPort->sVolume.sVolume.nMin = 0; /**< minimum for value (i.e. nValue >= nMin) */ pPort->sVolume.sVolume.nMax = (OMX_S32)GAIN_VALUE; } omx_audio_mixer_component_Private->destructor = omx_audio_mixer_component_Destructor; openmaxStandComp->SetParameter = omx_audio_mixer_component_SetParameter; openmaxStandComp->GetParameter = omx_audio_mixer_component_GetParameter; openmaxStandComp->GetConfig = omx_audio_mixer_component_GetConfig; openmaxStandComp->SetConfig = omx_audio_mixer_component_SetConfig; omx_audio_mixer_component_Private->BufferMgmtCallback = omx_audio_mixer_component_BufferMgmtCallback; omx_audio_mixer_component_Private->BufferMgmtFunction = omx_audio_mixer_BufferMgmtFunction; /* resource management special section */ omx_audio_mixer_component_Private->nqualitylevels = MIXER_QUALITY_LEVELS; omx_audio_mixer_component_Private->currentQualityLevel = 1; omx_audio_mixer_component_Private->multiResourceLevel = malloc(sizeof(multiResourceDescriptor *) * MIXER_QUALITY_LEVELS); for (i = 0; imultiResourceLevel[i] = malloc(sizeof(multiResourceDescriptor)); omx_audio_mixer_component_Private->multiResourceLevel[i]->CPUResourceRequested = mixerQualityLevels[i * 2]; omx_audio_mixer_component_Private->multiResourceLevel[i]->MemoryResourceRequested = mixerQualityLevels[i * 2 + 1]; } return err; } /** The destructor */ OMX_ERRORTYPE omx_audio_mixer_component_Destructor(OMX_COMPONENTTYPE *openmaxStandComp) { omx_audio_mixer_component_PrivateType* omx_audio_mixer_component_Private = openmaxStandComp->pComponentPrivate; OMX_U32 i; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); /* frees port/s */ if (omx_audio_mixer_component_Private->ports) { for (i=0; i < omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts; i++) { if(omx_audio_mixer_component_Private->ports[i]) omx_audio_mixer_component_Private->ports[i]->PortDestructor(omx_audio_mixer_component_Private->ports[i]); } free(omx_audio_mixer_component_Private->ports); omx_audio_mixer_component_Private->ports=NULL; } omx_base_filter_Destructor(openmaxStandComp); DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s\n", __func__); return OMX_ErrorNone; } /** This function is used to process the input buffer and provide one output buffer */ void omx_audio_mixer_component_BufferMgmtCallback(OMX_COMPONENTTYPE *openmaxStandComp, OMX_BUFFERHEADERTYPE* pInBuffer, OMX_BUFFERHEADERTYPE* pOutBuffer) { OMX_S32 denominator=0; OMX_U32 i,sampleCount = pInBuffer->nFilledLen / 2; // signed 16 bit samples assumed omx_audio_mixer_component_PrivateType* omx_audio_mixer_component_Private = openmaxStandComp->pComponentPrivate; omx_audio_mixer_component_PortType* pPort; for(i=0;isPortTypesParam[OMX_PortDomainAudio].nPorts-1;i++) { pPort = (omx_audio_mixer_component_PortType*)omx_audio_mixer_component_Private->ports[i]; if(PORT_IS_ENABLED(pPort)){ denominator+=pPort->sVolume.sVolume.nValue; } } pPort = (omx_audio_mixer_component_PortType*)omx_audio_mixer_component_Private->ports[pInBuffer->nInputPortIndex]; /*Copy the first buffer with appropriate gain*/ if(pOutBuffer->nFilledLen == 0) { memset(pOutBuffer->pBuffer,0,pInBuffer->nFilledLen); for (i = 0; i < sampleCount; i++) { ((OMX_S16*) pOutBuffer->pBuffer)[i] = (OMX_S16) ((((OMX_S16*) pInBuffer->pBuffer)[i] * pPort->sVolume.sVolume.nValue ) / denominator); } } else { // For the second buffer add with the first buffer with gain for (i = 0; i < sampleCount; i++) { ((OMX_S16*) pOutBuffer->pBuffer)[i] += (OMX_S16) ((((OMX_S16*) pInBuffer->pBuffer)[i] * pPort->sVolume.sVolume.nValue ) / denominator); } } pOutBuffer->nFilledLen = pInBuffer->nFilledLen; pInBuffer->nFilledLen=0; } /** setting configurations */ OMX_ERRORTYPE omx_audio_mixer_component_SetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure) { OMX_AUDIO_CONFIG_VOLUMETYPE* pVolume; OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE *)hComponent; omx_audio_mixer_component_PrivateType* omx_audio_mixer_component_Private = openmaxStandComp->pComponentPrivate; omx_audio_mixer_component_PortType * pPort; OMX_ERRORTYPE err = OMX_ErrorNone; switch (nIndex) { case OMX_IndexConfigAudioVolume : pVolume = (OMX_AUDIO_CONFIG_VOLUMETYPE*) pComponentConfigStructure; if(pVolume->sVolume.nValue > 100) { err = OMX_ErrorBadParameter; break; } if (pVolume->nPortIndex <= omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts) { pPort= (omx_audio_mixer_component_PortType *)omx_audio_mixer_component_Private->ports[pVolume->nPortIndex]; DEBUG(DEB_LEV_SIMPLE_SEQ, "Port %i Gain=%d\n",(int)pVolume->nPortIndex,(int)pVolume->sVolume.nValue); memcpy(&pPort->sVolume, pVolume, sizeof(OMX_AUDIO_CONFIG_VOLUMETYPE)); } else { err = OMX_ErrorBadPortIndex; } break; default: // delegate to superclass err = omx_base_component_SetConfig(hComponent, nIndex, pComponentConfigStructure); } return err; } OMX_ERRORTYPE omx_audio_mixer_component_GetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure) { OMX_AUDIO_CONFIG_VOLUMETYPE *pVolume; OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE *)hComponent; omx_audio_mixer_component_PrivateType *omx_audio_mixer_component_Private = openmaxStandComp->pComponentPrivate; omx_audio_mixer_component_PortType *pPort; OMX_ERRORTYPE err = OMX_ErrorNone; switch (nIndex) { case OMX_IndexConfigAudioVolume : pVolume = (OMX_AUDIO_CONFIG_VOLUMETYPE*) pComponentConfigStructure; if (pVolume->nPortIndex <= omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts) { pPort= (omx_audio_mixer_component_PortType *)omx_audio_mixer_component_Private->ports[pVolume->nPortIndex]; memcpy(pVolume,&pPort->sVolume,sizeof(OMX_AUDIO_CONFIG_VOLUMETYPE)); } else { err = OMX_ErrorBadPortIndex; } break; default : err = omx_base_component_GetConfig(hComponent, nIndex, pComponentConfigStructure); } return err; } OMX_ERRORTYPE omx_audio_mixer_component_SetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure) { OMX_ERRORTYPE err = OMX_ErrorNone; OMX_AUDIO_PARAM_PORTFORMATTYPE *pAudioPortFormat; OMX_PARAM_COMPONENTROLETYPE *pComponentRole; OMX_U32 portIndex; omx_audio_mixer_component_PortType *port; /* Check which structure we are being fed and make control its header */ OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE *)hComponent; omx_audio_mixer_component_PrivateType* omx_audio_mixer_component_Private = openmaxStandComp->pComponentPrivate; if (ComponentParameterStructure == NULL) { return OMX_ErrorBadParameter; } DEBUG(DEB_LEV_SIMPLE_SEQ, " Setting parameter %i\n", nParamIndex); switch(nParamIndex) { case OMX_IndexParamAudioPortFormat: pAudioPortFormat = (OMX_AUDIO_PARAM_PORTFORMATTYPE*)ComponentParameterStructure; portIndex = pAudioPortFormat->nPortIndex; err = omx_base_component_ParameterSanityCheck(hComponent, portIndex, pAudioPortFormat, sizeof(OMX_AUDIO_PARAM_PORTFORMATTYPE)); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s Parameter Check Error=%x\n",__func__,err); break; } if (portIndex <= omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts) { port= (omx_audio_mixer_component_PortType *)omx_audio_mixer_component_Private->ports[portIndex]; memcpy(&port->sAudioParam, pAudioPortFormat, sizeof(OMX_AUDIO_PARAM_PORTFORMATTYPE)); } else { err = OMX_ErrorBadPortIndex; } break; case OMX_IndexParamStandardComponentRole: pComponentRole = (OMX_PARAM_COMPONENTROLETYPE*)ComponentParameterStructure; if (omx_audio_mixer_component_Private->state != OMX_StateLoaded && omx_audio_mixer_component_Private->state != OMX_StateWaitForResources) { DEBUG(DEB_LEV_ERR, "In %s Incorrect State=%x lineno=%d\n",__func__,omx_audio_mixer_component_Private->state,__LINE__); return OMX_ErrorIncorrectStateOperation; } if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PARAM_COMPONENTROLETYPE))) != OMX_ErrorNone) { break; } if (strcmp( (char*) pComponentRole->cRole, MIXER_COMP_ROLE)) { return OMX_ErrorBadParameter; } break; default: err = omx_base_component_SetParameter(hComponent, nParamIndex, ComponentParameterStructure); } return err; } OMX_ERRORTYPE omx_audio_mixer_component_GetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure) { OMX_AUDIO_PARAM_PORTFORMATTYPE *pAudioPortFormat; OMX_AUDIO_PARAM_PCMMODETYPE *pAudioPcmMode; OMX_PARAM_COMPONENTROLETYPE *pComponentRole; OMX_ERRORTYPE err = OMX_ErrorNone; omx_audio_mixer_component_PortType *port; OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE *)hComponent; omx_audio_mixer_component_PrivateType *omx_audio_mixer_component_Private = openmaxStandComp->pComponentPrivate; if (ComponentParameterStructure == NULL) { return OMX_ErrorBadParameter; } DEBUG(DEB_LEV_SIMPLE_SEQ, " Getting parameter %i\n", nParamIndex); /* Check which structure we are being fed and fill its header */ switch(nParamIndex) { case OMX_IndexParamAudioInit: if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PORT_PARAM_TYPE))) != OMX_ErrorNone) { break; } memcpy(ComponentParameterStructure, &omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio], sizeof(OMX_PORT_PARAM_TYPE)); break; case OMX_IndexParamAudioPortFormat: pAudioPortFormat = (OMX_AUDIO_PARAM_PORTFORMATTYPE*)ComponentParameterStructure; if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_AUDIO_PARAM_PORTFORMATTYPE))) != OMX_ErrorNone) { break; } if (pAudioPortFormat->nPortIndex <= omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts) { port= (omx_audio_mixer_component_PortType *)omx_audio_mixer_component_Private->ports[pAudioPortFormat->nPortIndex]; memcpy(pAudioPortFormat, &port->sAudioParam, sizeof(OMX_AUDIO_PARAM_PORTFORMATTYPE)); } else { err = OMX_ErrorBadPortIndex; } break; case OMX_IndexParamAudioPcm: pAudioPcmMode = (OMX_AUDIO_PARAM_PCMMODETYPE*)ComponentParameterStructure; if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_AUDIO_PARAM_PCMMODETYPE))) != OMX_ErrorNone) { break; } if (pAudioPcmMode->nPortIndex <= omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts) { port= (omx_audio_mixer_component_PortType *)omx_audio_mixer_component_Private->ports[pAudioPcmMode->nPortIndex]; memcpy(pAudioPcmMode, &port->pAudioPcmMode, sizeof(OMX_AUDIO_PARAM_PCMMODETYPE)); } else { err = OMX_ErrorBadPortIndex; } break; case OMX_IndexParamStandardComponentRole: pComponentRole = (OMX_PARAM_COMPONENTROLETYPE*)ComponentParameterStructure; if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PARAM_COMPONENTROLETYPE))) != OMX_ErrorNone) { break; } strcpy( (char*) pComponentRole->cRole, MIXER_COMP_ROLE); break; default: err = omx_base_component_GetParameter(hComponent, nParamIndex, ComponentParameterStructure); } return err; } int checkAnyPortBeingFlushed(omx_audio_mixer_component_PrivateType* omx_audio_mixer_component_Private) { omx_base_PortType *pPort; int ret = OMX_FALSE,i; if(omx_audio_mixer_component_Private->state == OMX_StateLoaded || omx_audio_mixer_component_Private->state == OMX_StateInvalid) { return 0; } pthread_mutex_lock(&omx_audio_mixer_component_Private->flush_mutex); for (i=0; i < omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts; i++) { pPort = omx_audio_mixer_component_Private->ports[i]; if(PORT_IS_BEING_FLUSHED(pPort)) { ret = OMX_TRUE; break; } } pthread_mutex_unlock(&omx_audio_mixer_component_Private->flush_mutex); return ret; } /** This is the central function for component processing,overridden for audio mixer. It * is executed in a separate thread, is synchronized with * semaphores at each port, those are released each time a new buffer * is available on the given port. */ void* omx_audio_mixer_BufferMgmtFunction (void* param) { OMX_COMPONENTTYPE* openmaxStandComp = (OMX_COMPONENTTYPE*)param; omx_audio_mixer_component_PrivateType* omx_audio_mixer_component_Private = (omx_audio_mixer_component_PrivateType*)openmaxStandComp->pComponentPrivate; omx_base_PortType *pPort[MAX_PORTS]; tsem_t* pSem[MAX_PORTS]; queue_t* pQueue[MAX_PORTS]; OMX_BUFFERHEADERTYPE* pBuffer[MAX_PORTS]; OMX_BOOL isBufferNeeded[MAX_PORTS]; OMX_COMPONENTTYPE* target_component; OMX_U32 nOutputPortIndex,i; for(i=0;isPortTypesParam[OMX_PortDomainAudio].nPorts;i++){ pPort[i] = omx_audio_mixer_component_Private->ports[i]; pSem[i] = pPort[i]->pBufferSem; pQueue[i] = pPort[i]->pBufferQueue; pBuffer[i] = NULL; isBufferNeeded[i] = OMX_TRUE; } nOutputPortIndex = omx_audio_mixer_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts - 1; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); while(omx_audio_mixer_component_Private->state == OMX_StateIdle || omx_audio_mixer_component_Private->state == OMX_StateExecuting || omx_audio_mixer_component_Private->state == OMX_StatePause || omx_audio_mixer_component_Private->transientState == OMX_TransStateLoadedToIdle) { /*Wait till the ports are being flushed*/ while( checkAnyPortBeingFlushed(omx_audio_mixer_component_Private) ) { DEBUG(DEB_LEV_FULL_SEQ, "In %s 1 signalling flush all cond iF=%d,oF=%d iSemVal=%d,oSemval=%d\n", __func__,isBufferNeeded[0],isBufferNeeded[nOutputPortIndex],pSem[0]->semval,pSem[nOutputPortIndex]->semval); for(i=0;isPortTypesParam[OMX_PortDomainAudio].nPorts;i++){ if(isBufferNeeded[i]==OMX_FALSE && PORT_IS_BEING_FLUSHED(pPort[i])) { pPort[i]->ReturnBufferFunction(pPort[i],pBuffer[i]); pBuffer[i]=NULL; isBufferNeeded[i]=OMX_TRUE; DEBUG(DEB_LEV_FULL_SEQ, "Ports are flushing,so returning buffer %i\n",(int)i); } } DEBUG(DEB_LEV_FULL_SEQ, "In %s 2 signalling flush all cond iF=%d,oF=%d iSemVal=%d,oSemval=%d\n", __func__,isBufferNeeded[0],isBufferNeeded[nOutputPortIndex],pSem[0]->semval,pSem[nOutputPortIndex]->semval); tsem_up(omx_audio_mixer_component_Private->flush_all_condition); tsem_down(omx_audio_mixer_component_Private->flush_condition); } if(omx_audio_mixer_component_Private->state == OMX_StateLoaded || omx_audio_mixer_component_Private->state == OMX_StateInvalid) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Buffer Management Thread is exiting\n",__func__); break; } /*No buffer to process. So wait here*/ for(i=0;isPortTypesParam[OMX_PortDomainAudio].nPorts;i++){ if((isBufferNeeded[i]==OMX_TRUE && pSem[i]->semval==0) && (omx_audio_mixer_component_Private->state != OMX_StateLoaded && omx_audio_mixer_component_Private->state != OMX_StateInvalid) && PORT_IS_ENABLED(pPort[i]) && !PORT_IS_BEING_FLUSHED(pPort[i])) { //Signalled from EmptyThisBuffer or FillThisBuffer or some thing else DEBUG(DEB_LEV_FULL_SEQ, "Waiting for next input/output buffer\n"); tsem_down(omx_audio_mixer_component_Private->bMgmtSem); } /*Don't wait for buffers, if any port is flushing*/ if(checkAnyPortBeingFlushed(omx_audio_mixer_component_Private)) { break; } if(omx_audio_mixer_component_Private->state == OMX_StateLoaded || omx_audio_mixer_component_Private->state == OMX_StateInvalid) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Buffer Management Thread is exiting\n",__func__); break; } } for(i=0;isPortTypesParam[OMX_PortDomainAudio].nPorts;i++){ DEBUG(DEB_LEV_SIMPLE_SEQ, "Waiting for buffer %i semval=%d \n",(int)i,pSem[i]->semval); if(pSem[i]->semval>0 && isBufferNeeded[i]==OMX_TRUE && PORT_IS_ENABLED(pPort[i])) { tsem_down(pSem[i]); if(pQueue[i]->nelem>0){ isBufferNeeded[i]=OMX_FALSE; pBuffer[i] = dequeue(pQueue[i]); if(pBuffer[i] == NULL){ DEBUG(DEB_LEV_ERR, "Had NULL input buffer!!\n"); break; } } } } if(isBufferNeeded[nOutputPortIndex]==OMX_FALSE) { if(omx_audio_mixer_component_Private->pMark.hMarkTargetComponent != NULL){ pBuffer[nOutputPortIndex]->hMarkTargetComponent = omx_audio_mixer_component_Private->pMark.hMarkTargetComponent; pBuffer[nOutputPortIndex]->pMarkData = omx_audio_mixer_component_Private->pMark.pMarkData; omx_audio_mixer_component_Private->pMark.hMarkTargetComponent = NULL; omx_audio_mixer_component_Private->pMark.pMarkData = NULL; } for(i=0;isPortTypesParam[OMX_PortDomainAudio].nPorts-1;i++){ if(isBufferNeeded[i]==OMX_FALSE && PORT_IS_ENABLED(pPort[i])) { if(isBufferNeeded[i]==OMX_FALSE) { target_component=(OMX_COMPONENTTYPE*)pBuffer[i]->hMarkTargetComponent; if(target_component==(OMX_COMPONENTTYPE *)openmaxStandComp) { /*Clear the mark and generate an event*/ (*(omx_audio_mixer_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_audio_mixer_component_Private->callbackData, OMX_EventMark, /* The command was completed */ 1, /* The commands was a OMX_CommandStateSet */ 0, /* The state has been changed in message->messageParam2 */ pBuffer[i]->pMarkData); } else if(pBuffer[i]->hMarkTargetComponent!=NULL){ /*If this is not the target component then pass the mark*/ pBuffer[nOutputPortIndex]->hMarkTargetComponent = pBuffer[i]->hMarkTargetComponent; pBuffer[nOutputPortIndex]->pMarkData = pBuffer[i]->pMarkData; pBuffer[i]->pMarkData=NULL; } pBuffer[nOutputPortIndex]->nTimeStamp = pBuffer[i]->nTimeStamp; } if((pBuffer[i]->nFlags & OMX_BUFFERFLAG_EOS) == OMX_BUFFERFLAG_EOS && pBuffer[i]->nFilledLen==0) { DEBUG(DEB_LEV_FULL_SEQ, "Detected EOS flags in input buffer %p of %i filled len=%d\n", pBuffer[i], (int)i, (int)pBuffer[i]->nFilledLen); pBuffer[nOutputPortIndex]->nFlags = pBuffer[i]->nFlags; pBuffer[i]->nFlags=0; (*(omx_audio_mixer_component_Private->callbacks->EventHandler)) (openmaxStandComp, omx_audio_mixer_component_Private->callbackData, OMX_EventBufferFlag, /* The command was completed */ nOutputPortIndex, /* The commands was a OMX_CommandStateSet */ pBuffer[nOutputPortIndex]->nFlags, /* The state has been changed in message->messageParam2 */ NULL); } //TBD: To be verified if(omx_audio_mixer_component_Private->state == OMX_StateExecuting) { if (omx_audio_mixer_component_Private->BufferMgmtCallback && pBuffer[i]->nFilledLen != 0) { (*(omx_audio_mixer_component_Private->BufferMgmtCallback))(openmaxStandComp, pBuffer[i], pBuffer[nOutputPortIndex]); } else { /*It no buffer management call back the explicitly consume input buffer*/ pBuffer[i]->nFilledLen = 0; } } else { DEBUG(DEB_LEV_ERR, "In %s Received Buffer in non-Executing State(%x)\n", __func__, (int)omx_audio_mixer_component_Private->state); if(OMX_TransStateExecutingToIdle == omx_audio_mixer_component_Private->transientState || OMX_TransStatePauseToIdle == omx_audio_mixer_component_Private->transientState) { pBuffer[i]->nFilledLen = 0; } } /*Input Buffer has been completely consumed. So, get new input buffer*/ if(pBuffer[i]->nFilledLen==0) { isBufferNeeded[i] = OMX_TRUE; } } } if(omx_audio_mixer_component_Private->state==OMX_StatePause && !(checkAnyPortBeingFlushed(omx_audio_mixer_component_Private))) { /*Waiting at paused state*/ tsem_wait(omx_audio_mixer_component_Private->bStateSem); } /*If EOS and Input buffer Filled Len Zero then Return output buffer immediately*/ if(pBuffer[nOutputPortIndex]->nFilledLen!=0 || (pBuffer[nOutputPortIndex]->nFlags & OMX_BUFFERFLAG_EOS) == OMX_BUFFERFLAG_EOS){ DEBUG(DEB_LEV_SIMPLE_SEQ, "Returning output buffer \n"); pPort[nOutputPortIndex]->ReturnBufferFunction(pPort[nOutputPortIndex],pBuffer[nOutputPortIndex]); pBuffer[nOutputPortIndex]=NULL; isBufferNeeded[nOutputPortIndex]=OMX_TRUE; } } DEBUG(DEB_LEV_FULL_SEQ, "Input buffer arrived\n"); if(omx_audio_mixer_component_Private->state==OMX_StatePause && !(checkAnyPortBeingFlushed(omx_audio_mixer_component_Private))) { /*Waiting at paused state*/ tsem_wait(omx_audio_mixer_component_Private->bStateSem); } /*Input Buffer has been completely consumed. So, return input buffer*/ for(i=0;isPortTypesParam[OMX_PortDomainAudio].nPorts-1;i++){ if(isBufferNeeded[i] == OMX_TRUE && pBuffer[i]!=NULL && PORT_IS_ENABLED(pPort[i])) { pPort[i]->ReturnBufferFunction(pPort[i],pBuffer[i]); pBuffer[i]=NULL; } } } DEBUG(DEB_LEV_SIMPLE_SEQ,"Exiting Buffer Management Thread\n"); return NULL; } libomxil-bellagio-0.9.3/src/components/audio_effects/omx_volume_component.c0000644000175000017500000003336011513256766024254 00000000000000/** src/components/audio_effects/omx_volume_component.c OpenMAX volume control component. This component implements a filter that controls the volume level of the audio PCM stream. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include /* gain value */ #define GAIN_VALUE 100.0f OMX_ERRORTYPE omx_volume_component_Constructor(OMX_COMPONENTTYPE *openmaxStandComp, OMX_STRING cComponentName) { OMX_ERRORTYPE err; omx_volume_component_PrivateType* omx_volume_component_Private; OMX_U32 i; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n",__func__); RM_RegisterComponent(VOLUME_COMP_NAME, MAX_VOLUME_COMPONENTS); if (!openmaxStandComp->pComponentPrivate) { openmaxStandComp->pComponentPrivate = calloc(1, sizeof(omx_volume_component_PrivateType)); DEBUG(DEB_LEV_FUNCTION_NAME, "In %s allocated private structure %p for std component %p\n", __func__, openmaxStandComp->pComponentPrivate, openmaxStandComp); if(openmaxStandComp->pComponentPrivate == NULL) { return OMX_ErrorInsufficientResources; } } else { DEBUG(DEB_LEV_ERR, "In %s, Error Component %p Already Allocated\n", __func__, openmaxStandComp->pComponentPrivate); return OMX_ErrorUndefined; } omx_volume_component_Private = openmaxStandComp->pComponentPrivate; omx_volume_component_Private->ports = NULL; /** Calling base filter constructor */ err = omx_base_filter_Constructor(openmaxStandComp, cComponentName); if (err != OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s failed base class constructor\n", __func__); return err; } omx_volume_component_Private->sPortTypesParam[OMX_PortDomainAudio].nStartPortNumber = 0; omx_volume_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts = 2; /** Allocate Ports and call port constructor. */ if (omx_volume_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts && !omx_volume_component_Private->ports) { omx_volume_component_Private->ports = calloc(omx_volume_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts, sizeof(omx_base_PortType *)); if (!omx_volume_component_Private->ports) { return OMX_ErrorInsufficientResources; } for (i=0; i < omx_volume_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts; i++) { omx_volume_component_Private->ports[i] = calloc(1, sizeof(omx_base_audio_PortType)); if (!omx_volume_component_Private->ports[i]) { return OMX_ErrorInsufficientResources; } } } err = base_audio_port_Constructor(openmaxStandComp, &omx_volume_component_Private->ports[0], 0, OMX_TRUE); if (err != OMX_ErrorNone) { return OMX_ErrorInsufficientResources; } err = base_audio_port_Constructor(openmaxStandComp, &omx_volume_component_Private->ports[1], 1, OMX_FALSE); if (err != OMX_ErrorNone) { return OMX_ErrorInsufficientResources; } /** Domain specific section for the ports. */ omx_volume_component_Private->ports[OMX_BASE_FILTER_INPUTPORT_INDEX]->sPortParam.nBufferSize = DEFAULT_OUT_BUFFER_SIZE; omx_volume_component_Private->ports[OMX_BASE_FILTER_OUTPUTPORT_INDEX]->sPortParam.nBufferSize = DEFAULT_OUT_BUFFER_SIZE; omx_volume_component_Private->gain = GAIN_VALUE; //100.0f; // default gain omx_volume_component_Private->destructor = omx_volume_component_Destructor; openmaxStandComp->SetParameter = omx_volume_component_SetParameter; openmaxStandComp->GetParameter = omx_volume_component_GetParameter; openmaxStandComp->GetConfig = omx_volume_component_GetConfig; openmaxStandComp->SetConfig = omx_volume_component_SetConfig; omx_volume_component_Private->BufferMgmtCallback = omx_volume_component_BufferMgmtCallback; /* resource management special section */ omx_volume_component_Private->nqualitylevels = VOLUME_QUALITY_LEVELS; omx_volume_component_Private->currentQualityLevel = 1; omx_volume_component_Private->multiResourceLevel = malloc(sizeof(multiResourceDescriptor *) * VOLUME_QUALITY_LEVELS); for (i = 0; imultiResourceLevel[i] = malloc(sizeof(multiResourceDescriptor)); omx_volume_component_Private->multiResourceLevel[i]->CPUResourceRequested = volumeQualityLevels[i * 2]; omx_volume_component_Private->multiResourceLevel[i]->MemoryResourceRequested = volumeQualityLevels[i * 2 + 1]; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, openmaxStandComp); return OMX_ErrorNone; } /** The destructor */ OMX_ERRORTYPE omx_volume_component_Destructor(OMX_COMPONENTTYPE *openmaxStandComp) { omx_volume_component_PrivateType* omx_volume_component_Private = openmaxStandComp->pComponentPrivate; OMX_U32 i; /* frees port/s */ DEBUG(DEB_LEV_FUNCTION_NAME, "In %s for component %p\n", __func__, openmaxStandComp); if (omx_volume_component_Private->ports) { for (i=0; i < omx_volume_component_Private->sPortTypesParam[OMX_PortDomainAudio].nPorts; i++) { if(omx_volume_component_Private->ports[i]) { omx_volume_component_Private->ports[i]->PortDestructor(omx_volume_component_Private->ports[i]); } } free(omx_volume_component_Private->ports); omx_volume_component_Private->ports=NULL; } omx_base_filter_Destructor(openmaxStandComp); DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s for component %p\n", __func__, openmaxStandComp); return OMX_ErrorNone; } /** This function is used to process the input buffer and provide one output buffer */ void omx_volume_component_BufferMgmtCallback(OMX_COMPONENTTYPE *openmaxStandComp, OMX_BUFFERHEADERTYPE* pInputBuffer, OMX_BUFFERHEADERTYPE* pOutputBuffer) { int i; int sampleCount = pInputBuffer->nFilledLen / 2; // signed 16 bit samples assumed omx_volume_component_PrivateType* omx_volume_component_Private = openmaxStandComp->pComponentPrivate; if(omx_volume_component_Private->gain != GAIN_VALUE) { for (i = 0; i < sampleCount; i++) { ((OMX_S16*) pOutputBuffer->pBuffer)[i] = (OMX_S16) (((OMX_S16*) pInputBuffer->pBuffer)[i] * (omx_volume_component_Private->gain / 100.0f)); } } else { memcpy(pOutputBuffer->pBuffer,pInputBuffer->pBuffer,pInputBuffer->nFilledLen); } pOutputBuffer->nFilledLen = pInputBuffer->nFilledLen; pInputBuffer->nFilledLen=0; } /** setting configurations */ OMX_ERRORTYPE omx_volume_component_SetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure) { OMX_AUDIO_CONFIG_VOLUMETYPE* pVolume; OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE *)hComponent; omx_volume_component_PrivateType* omx_volume_component_Private = openmaxStandComp->pComponentPrivate; OMX_ERRORTYPE err = OMX_ErrorNone; switch (nIndex) { case OMX_IndexConfigAudioVolume : pVolume = (OMX_AUDIO_CONFIG_VOLUMETYPE*) pComponentConfigStructure; if(pVolume->sVolume.nValue > 100) { err = OMX_ErrorBadParameter; break; } omx_volume_component_Private->gain = pVolume->sVolume.nValue; err = OMX_ErrorNone; break; default: // delegate to superclass err = omx_base_component_SetConfig(hComponent, nIndex, pComponentConfigStructure); } return err; } OMX_ERRORTYPE omx_volume_component_GetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure) { OMX_AUDIO_CONFIG_VOLUMETYPE* pVolume; OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE *)hComponent; omx_volume_component_PrivateType* omx_volume_component_Private = openmaxStandComp->pComponentPrivate; OMX_ERRORTYPE err = OMX_ErrorNone; switch (nIndex) { case OMX_IndexConfigAudioVolume : pVolume = (OMX_AUDIO_CONFIG_VOLUMETYPE*) pComponentConfigStructure; setHeader(pVolume,sizeof(OMX_AUDIO_CONFIG_VOLUMETYPE)); pVolume->sVolume.nValue = omx_volume_component_Private->gain; pVolume->sVolume.nMin = 0; pVolume->sVolume.nMax = 100; pVolume->bLinear = OMX_TRUE; err = OMX_ErrorNone; break; default : err = omx_base_component_GetConfig(hComponent, nIndex, pComponentConfigStructure); } return err; } OMX_ERRORTYPE omx_volume_component_SetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure) { OMX_ERRORTYPE err = OMX_ErrorNone; OMX_AUDIO_PARAM_PORTFORMATTYPE *pAudioPortFormat; OMX_PARAM_COMPONENTROLETYPE *pComponentRole; OMX_U32 portIndex; omx_base_audio_PortType *port; /* Check which structure we are being fed and make control its header */ OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE *)hComponent; omx_volume_component_PrivateType* omx_volume_component_Private = openmaxStandComp->pComponentPrivate; if (ComponentParameterStructure == NULL) { return OMX_ErrorBadParameter; } DEBUG(DEB_LEV_SIMPLE_SEQ, " Setting parameter %i\n", nParamIndex); switch(nParamIndex) { case OMX_IndexParamAudioPortFormat: pAudioPortFormat = (OMX_AUDIO_PARAM_PORTFORMATTYPE*)ComponentParameterStructure; portIndex = pAudioPortFormat->nPortIndex; err = omx_base_component_ParameterSanityCheck(hComponent, portIndex, pAudioPortFormat, sizeof(OMX_AUDIO_PARAM_PORTFORMATTYPE)); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s Parameter Check Error=%x\n",__func__,err); break; } if (portIndex <= 1) { port= (omx_base_audio_PortType *)omx_volume_component_Private->ports[portIndex]; memcpy(&port->sAudioParam, pAudioPortFormat, sizeof(OMX_AUDIO_PARAM_PORTFORMATTYPE)); } else { err = OMX_ErrorBadPortIndex; } break; case OMX_IndexParamStandardComponentRole: pComponentRole = (OMX_PARAM_COMPONENTROLETYPE*)ComponentParameterStructure; if (omx_volume_component_Private->state != OMX_StateLoaded && omx_volume_component_Private->state != OMX_StateWaitForResources) { DEBUG(DEB_LEV_ERR, "In %s Incorrect State=%x lineno=%d\n",__func__,omx_volume_component_Private->state,__LINE__); return OMX_ErrorIncorrectStateOperation; } if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PARAM_COMPONENTROLETYPE))) != OMX_ErrorNone) { break; } if (strcmp( (char*) pComponentRole->cRole, VOLUME_COMP_ROLE)) { return OMX_ErrorBadParameter; } break; default: err = omx_base_component_SetParameter(hComponent, nParamIndex, ComponentParameterStructure); } return err; } OMX_ERRORTYPE omx_volume_component_GetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure) { OMX_AUDIO_PARAM_PORTFORMATTYPE *pAudioPortFormat; OMX_AUDIO_PARAM_PCMMODETYPE *pAudioPcmMode; OMX_PARAM_COMPONENTROLETYPE *pComponentRole; OMX_ERRORTYPE err = OMX_ErrorNone; omx_base_audio_PortType *port; OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE *)hComponent; omx_volume_component_PrivateType* omx_volume_component_Private = openmaxStandComp->pComponentPrivate; if (ComponentParameterStructure == NULL) { return OMX_ErrorBadParameter; } DEBUG(DEB_LEV_SIMPLE_SEQ, " Getting parameter %i\n", nParamIndex); /* Check which structure we are being fed and fill its header */ switch(nParamIndex) { case OMX_IndexParamAudioInit: if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PORT_PARAM_TYPE))) != OMX_ErrorNone) { break; } memcpy(ComponentParameterStructure, &omx_volume_component_Private->sPortTypesParam[OMX_PortDomainAudio], sizeof(OMX_PORT_PARAM_TYPE)); break; case OMX_IndexParamAudioPortFormat: pAudioPortFormat = (OMX_AUDIO_PARAM_PORTFORMATTYPE*)ComponentParameterStructure; if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_AUDIO_PARAM_PORTFORMATTYPE))) != OMX_ErrorNone) { break; } if (pAudioPortFormat->nPortIndex <= 1) { port= (omx_base_audio_PortType *)omx_volume_component_Private->ports[pAudioPortFormat->nPortIndex]; memcpy(pAudioPortFormat, &port->sAudioParam, sizeof(OMX_AUDIO_PARAM_PORTFORMATTYPE)); } else { err = OMX_ErrorBadPortIndex; } break; case OMX_IndexParamAudioPcm: pAudioPcmMode = (OMX_AUDIO_PARAM_PCMMODETYPE*)ComponentParameterStructure; if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_AUDIO_PARAM_PCMMODETYPE))) != OMX_ErrorNone) { break; } if (pAudioPcmMode->nPortIndex > 1) { return OMX_ErrorBadPortIndex; } pAudioPcmMode->nChannels = 2; pAudioPcmMode->eNumData = OMX_NumericalDataSigned; pAudioPcmMode->eEndian = OMX_EndianBig; pAudioPcmMode->bInterleaved = OMX_TRUE; pAudioPcmMode->nBitPerSample = 16; pAudioPcmMode->nSamplingRate = 0; pAudioPcmMode->ePCMMode = OMX_AUDIO_PCMModeLinear; break; case OMX_IndexParamStandardComponentRole: pComponentRole = (OMX_PARAM_COMPONENTROLETYPE*)ComponentParameterStructure; if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PARAM_COMPONENTROLETYPE))) != OMX_ErrorNone) { break; } strcpy( (char*) pComponentRole->cRole, VOLUME_COMP_ROLE); break; default: err = omx_base_component_GetParameter(hComponent, nParamIndex, ComponentParameterStructure); } return err; } libomxil-bellagio-0.9.3/src/components/audio_effects/omx_volume_component.h0000644000175000017500000000530611513256766024260 00000000000000/** src/components/audio_effects/omx_volume_component.h OpenMAX volume control component. This component implements a filter that controls the volume level of the audio PCM stream. Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef _OMX_VOLUME_COMPONENT_H_ #define _OMX_VOLUME_COMPONENT_H_ #include #include #include #include #include #define VOLUME_COMP_NAME "OMX.st.volume.component" #define VOLUME_COMP_ROLE "volume.component" #define MAX_VOLUME_COMPONENTS 10 #define VOLUME_QUALITY_LEVELS 2 static int volumeQualityLevels []={1, 65536, 1, 32768}; /** Twoport component private structure. * see the define above */ DERIVEDCLASS(omx_volume_component_PrivateType, omx_base_filter_PrivateType) #define omx_volume_component_PrivateType_FIELDS omx_base_filter_PrivateType_FIELDS \ /** @param gain the volume gain value */ \ float gain; ENDCLASS(omx_volume_component_PrivateType) /* Component private entry points declaration */ OMX_ERRORTYPE omx_volume_component_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,OMX_STRING cComponentName); OMX_ERRORTYPE omx_volume_component_Destructor(OMX_COMPONENTTYPE *openmaxStandComp); void omx_volume_component_BufferMgmtCallback( OMX_COMPONENTTYPE *openmaxStandComp, OMX_BUFFERHEADERTYPE* inputbuffer, OMX_BUFFERHEADERTYPE* outputbuffer); OMX_ERRORTYPE omx_volume_component_GetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure); OMX_ERRORTYPE omx_volume_component_SetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure); OMX_ERRORTYPE omx_volume_component_GetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure); OMX_ERRORTYPE omx_volume_component_SetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure); #endif libomxil-bellagio-0.9.3/src/components/audio_effects/Makefile.in0000644000175000017500000005273711565413754021711 00000000000000# Makefile.in generated by automake 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install-strip installcheck \ installcheck-am installdirs maintainer-clean \ maintainer-clean-generic mostlyclean mostlyclean-compile \ mostlyclean-generic mostlyclean-libtool pdf pdf-am ps ps-am \ tags uninstall uninstall-am \ uninstall-omxaudio_effectsLTLIBRARIES # 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: libomxil-bellagio-0.9.3/src/components/audio_effects/Makefile.am0000644000175000017500000000077011513256766021667 00000000000000omxaudio_effectsdir = $(plugindir) omxaudio_effects_LTLIBRARIES = libomxaudio_effects.la libomxaudio_effects_la_SOURCES = omx_volume_component.c omx_volume_component.h \ omx_audiomixer_component.c omx_audiomixer_component.h \ library_entry_point.c libomxaudio_effects_la_LIBADD = $(top_builddir)/src/libomxil-bellagio.la libomxaudio_effects_la_CFLAGS = -I$(top_srcdir)/include \ -I$(top_srcdir)/src \ -I$(top_srcdir)/src/base libomxil-bellagio-0.9.3/src/components/audio_effects/library_entry_point.c0000644000175000017500000001414511513256766024076 00000000000000/** src/components/audio_effects/library_entry_point.c The library entry point. It must have the same name for each library of the components loaded by the ST static component loader. This function fills the version, the component name and if existing also the roles and the specific names for each role. This base function is only an explanation. For each library it must be implemented, and it must fill data of any component in the library Copyright (C) 2007-2009 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include /** @brief The library entry point. It must have the same name for each * library of the components loaded by the ST static component loader. * * This function fills the version, the component name and if existing also the roles * and the specific names for each role. This base function is only an explanation. * For each library it must be implemented, and it must fill data of any component * in the library * * @param stComponents pointer to an array of components descriptors.If NULL, the * function will return only the number of components contained in the library * * @return number of components contained in the library */ int omx_component_library_Setup(stLoaderComponentType **stComponents) { unsigned int i; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s \n",__func__); if (stComponents == NULL) { DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s \n",__func__); return 2; // Return Number of Components - one for audio volume component } /** component 1 - volume component */ stComponents[0]->componentVersion.s.nVersionMajor = 1; stComponents[0]->componentVersion.s.nVersionMinor = 1; stComponents[0]->componentVersion.s.nRevision = 1; stComponents[0]->componentVersion.s.nStep = 1; stComponents[0]->name = calloc(1, OMX_MAX_STRINGNAME_SIZE); if (stComponents[0]->name == NULL) { return OMX_ErrorInsufficientResources; } strcpy(stComponents[0]->name, VOLUME_COMP_NAME); stComponents[0]->name_specific_length = 1; stComponents[0]->constructor = omx_volume_component_Constructor; stComponents[0]->name_specific = calloc(stComponents[0]->name_specific_length,sizeof(char *)); stComponents[0]->role_specific = calloc(stComponents[0]->name_specific_length,sizeof(char *)); for(i=0;iname_specific_length;i++) { stComponents[0]->name_specific[i] = calloc(1, OMX_MAX_STRINGNAME_SIZE); if (stComponents[0]->name_specific[i] == NULL) { return OMX_ErrorInsufficientResources; } } for(i=0;iname_specific_length;i++) { stComponents[0]->role_specific[i] = calloc(1, OMX_MAX_STRINGNAME_SIZE); if (stComponents[0]->role_specific[i] == NULL) { return OMX_ErrorInsufficientResources; } } strcpy(stComponents[0]->name_specific[0], VOLUME_COMP_NAME); strcpy(stComponents[0]->role_specific[0], VOLUME_COMP_ROLE); stComponents[0]->nqualitylevels = VOLUME_QUALITY_LEVELS; stComponents[0]->multiResourceLevel = malloc(stComponents[0]->nqualitylevels * sizeof(multiResourceDescriptor *)); for (i=0; inqualitylevels; i++) { stComponents[0]->multiResourceLevel[i] = malloc(sizeof(multiResourceDescriptor)); stComponents[0]->multiResourceLevel[i]->CPUResourceRequested = volumeQualityLevels[i * 2]; stComponents[0]->multiResourceLevel[i]->MemoryResourceRequested = volumeQualityLevels[i * 2 + 1]; } /** component 2 - audio mixer component */ stComponents[1]->componentVersion.s.nVersionMajor = 1; stComponents[1]->componentVersion.s.nVersionMinor = 1; stComponents[1]->componentVersion.s.nRevision = 1; stComponents[1]->componentVersion.s.nStep = 1; stComponents[1]->name = calloc(1, OMX_MAX_STRINGNAME_SIZE); if (stComponents[1]->name == NULL) { return OMX_ErrorInsufficientResources; } strcpy(stComponents[1]->name, MIXER_COMP_NAME); stComponents[1]->name_specific_length = 1; stComponents[1]->constructor = omx_audio_mixer_component_Constructor; stComponents[1]->name_specific = calloc(stComponents[0]->name_specific_length,sizeof(char *)); stComponents[1]->role_specific = calloc(stComponents[0]->name_specific_length,sizeof(char *)); for(i=0;iname_specific_length;i++) { stComponents[1]->name_specific[i] = calloc(1, OMX_MAX_STRINGNAME_SIZE); if (stComponents[1]->name_specific[i] == NULL) { return OMX_ErrorInsufficientResources; } } for(i=0;iname_specific_length;i++) { stComponents[1]->role_specific[i] = calloc(1, OMX_MAX_STRINGNAME_SIZE); if (stComponents[1]->role_specific[i] == NULL) { return OMX_ErrorInsufficientResources; } } strcpy(stComponents[1]->name_specific[0], MIXER_COMP_NAME); strcpy(stComponents[1]->role_specific[0], MIXER_COMP_ROLE); stComponents[1]->nqualitylevels = MIXER_QUALITY_LEVELS; stComponents[1]->multiResourceLevel = malloc(stComponents[1]->nqualitylevels * sizeof(multiResourceDescriptor *)); for (i=0; inqualitylevels; i++) { stComponents[1]->multiResourceLevel[i] = malloc(sizeof(multiResourceDescriptor)); stComponents[1]->multiResourceLevel[i]->CPUResourceRequested = mixerQualityLevels[i * 2]; stComponents[1]->multiResourceLevel[i]->MemoryResourceRequested = mixerQualityLevels[i * 2 + 1]; } DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s \n",__func__); return 2; } libomxil-bellagio-0.9.3/src/components/clocksrc/0000755000175000017500000000000011565425033016702 500000000000000libomxil-bellagio-0.9.3/src/components/clocksrc/omx_clocksrc_component.h0000644000175000017500000001033511513256766023555 00000000000000/** src/components/clocksrc/omx_clocksrc_component.h OpenMAX clocksrc_component component. This component does not perform any multimedia processing. It is provides the media and the reference clock for all the clients connected to it. Copyright (C) 2008-2009 STMicroelectronics Copyright (C) 2008-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef _OMX_CLOCKSRC_COMPONENT_H_ #define _OMX_CLOCKSRC_COMPONENT_H_ #include #include #include #include #include #include #include #define CLOCK_COMP_NAME "OMX.st.clocksrc" #define CLOCK_COMP_ROLE "clocksrc" #define MAX_CLOCK_COMPONENTS 20 /** Maximum number of clock ports */ #define MAX_CLOCK_PORTS 8 /** Clock component private structure. * see the define above * @param sClockState This structure holds the state of the clock * @param startTimeSem the semaphore that coordinates the arrival of start times from all clients * @param clockEventSem the semaphore that coordinates clock event received from the client * @param clockEventCompleteSem the semaphore that coordinates clock event sent to the client * @param WallTimeBase the wall time at which the clock was started * @param MediaTimeBase the Media time at which the clock was started * @param eUpdateType indicates the type of update received from the clock src component * @param sMinStartTime keeps the minimum starttime of the clients * @param sConfigScale Representing the current media time scale factor */ DERIVEDCLASS(omx_clocksrc_component_PrivateType, omx_base_source_PrivateType) #define omx_clocksrc_component_PrivateType_FIELDS omx_base_source_PrivateType_FIELDS \ OMX_TIME_CONFIG_CLOCKSTATETYPE sClockState; \ OMX_TIME_CONFIG_ACTIVEREFCLOCKTYPE sRefClock; \ tsem_t* startTimeSem; \ tsem_t* clockEventSem; \ tsem_t* clockEventCompleteSem; \ OMX_TICKS WallTimeBase; \ OMX_TICKS MediaTimeBase; \ OMX_TIME_UPDATETYPE eUpdateType; \ OMX_TIME_CONFIG_TIMESTAMPTYPE sMinStartTime; \ OMX_TIME_CONFIG_SCALETYPE sConfigScale; ENDCLASS(omx_clocksrc_component_PrivateType) /* Component private entry points declaration */ OMX_ERRORTYPE omx_clocksrc_component_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,OMX_STRING cComponentName); OMX_ERRORTYPE omx_clocksrc_component_Destructor(OMX_COMPONENTTYPE *openmaxStandComp); void omx_clocksrc_component_BufferMgmtCallback( OMX_COMPONENTTYPE *openmaxStandComp, OMX_BUFFERHEADERTYPE* inputbuffer); OMX_ERRORTYPE omx_clocksrc_component_GetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure); OMX_ERRORTYPE omx_clocksrc_component_SetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure); OMX_ERRORTYPE omx_clocksrc_component_SetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure); OMX_ERRORTYPE omx_clocksrc_component_GetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure); void* omx_clocksrc_BufferMgmtFunction (void* param); OMX_ERRORTYPE omx_clocksrc_component_SendCommand( OMX_HANDLETYPE hComponent, OMX_COMMANDTYPE Cmd, OMX_U32 nParam, OMX_PTR pCmdData); OMX_ERRORTYPE clocksrc_port_FlushProcessingBuffers(omx_base_PortType *openmaxStandPort); #endif libomxil-bellagio-0.9.3/src/components/clocksrc/omx_clocksrc_component.c0000644000175000017500000013213011513256766023546 00000000000000/** src/components/clocksrc/omx_clocksrc_component.c OpenMAX clocksrc_component component. This component does not perform any multimedia processing. It is provides the media and the reference clock for all the clients connected to it. Copyright (C) 2008-2009 STMicroelectronics Copyright (C) 2008-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include /** The Constructor */ OMX_ERRORTYPE omx_clocksrc_component_Constructor(OMX_COMPONENTTYPE *openmaxStandComp,OMX_STRING cComponentName) { int omxErr; omx_clocksrc_component_PrivateType* omx_clocksrc_component_Private; OMX_U32 i; RM_RegisterComponent(CLOCK_COMP_NAME, MAX_CLOCK_COMPONENTS); if (!openmaxStandComp->pComponentPrivate) { openmaxStandComp->pComponentPrivate = calloc(1, sizeof(omx_clocksrc_component_PrivateType)); if(openmaxStandComp->pComponentPrivate==NULL) { return OMX_ErrorInsufficientResources; } } omx_clocksrc_component_Private = openmaxStandComp->pComponentPrivate; omx_clocksrc_component_Private->ports = NULL; omxErr = omx_base_source_Constructor(openmaxStandComp,cComponentName); if (omxErr != OMX_ErrorNone) { return OMX_ErrorInsufficientResources; } omx_clocksrc_component_Private->sPortTypesParam[OMX_PortDomainOther].nStartPortNumber = 0; omx_clocksrc_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts = 3; /** Allocate Ports and call port constructor. */ if (omx_clocksrc_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts && !omx_clocksrc_component_Private->ports) { omx_clocksrc_component_Private->ports = calloc(omx_clocksrc_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts, sizeof(omx_base_PortType *)); if (!omx_clocksrc_component_Private->ports) { return OMX_ErrorInsufficientResources; } for (i=0; i < omx_clocksrc_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts; i++) { omx_clocksrc_component_Private->ports[i] = calloc(1, sizeof(omx_base_clock_PortType)); if (!omx_clocksrc_component_Private->ports[i]) { return OMX_ErrorInsufficientResources; } base_clock_port_Constructor(openmaxStandComp, &omx_clocksrc_component_Private->ports[i], i, OMX_FALSE); omx_clocksrc_component_Private->ports[i]->FlushProcessingBuffers = clocksrc_port_FlushProcessingBuffers; } } /* initializing the OMX_TIME_CONFIG_CLOCKSTATETYPE */ setHeader(&omx_clocksrc_component_Private->sClockState, sizeof(OMX_TIME_CONFIG_CLOCKSTATETYPE)); omx_clocksrc_component_Private->sClockState.eState = OMX_TIME_ClockStateStopped; omx_clocksrc_component_Private->sClockState.nStartTime = 0; omx_clocksrc_component_Private->sClockState.nOffset = 0; omx_clocksrc_component_Private->sClockState.nWaitMask = 0xFF; setHeader(&omx_clocksrc_component_Private->sMinStartTime, sizeof(OMX_TIME_CONFIG_TIMESTAMPTYPE)); omx_clocksrc_component_Private->sMinStartTime.nTimestamp = 0; omx_clocksrc_component_Private->sMinStartTime.nPortIndex = 0; setHeader(&omx_clocksrc_component_Private->sConfigScale, sizeof(OMX_TIME_CONFIG_SCALETYPE)); omx_clocksrc_component_Private->sConfigScale.xScale = 1<<16; /* normal play mode */ setHeader(&omx_clocksrc_component_Private->sRefClock, sizeof(OMX_TIME_CONFIG_ACTIVEREFCLOCKTYPE)); omx_clocksrc_component_Private->sRefClock.eClock = OMX_TIME_RefClockNone; omx_clocksrc_component_Private->eUpdateType = OMX_TIME_UpdateMax; if(!omx_clocksrc_component_Private->clockEventSem) { omx_clocksrc_component_Private->clockEventSem = calloc(1,sizeof(tsem_t)); tsem_init(omx_clocksrc_component_Private->clockEventSem, 0); } if(!omx_clocksrc_component_Private->clockEventCompleteSem) { omx_clocksrc_component_Private->clockEventCompleteSem = calloc(1,sizeof(tsem_t)); tsem_init(omx_clocksrc_component_Private->clockEventCompleteSem, 0); } omx_clocksrc_component_Private->BufferMgmtCallback = omx_clocksrc_component_BufferMgmtCallback; omx_clocksrc_component_Private->destructor = omx_clocksrc_component_Destructor; omx_clocksrc_component_Private->BufferMgmtFunction = omx_clocksrc_BufferMgmtFunction; openmaxStandComp->SetParameter = omx_clocksrc_component_SetParameter; openmaxStandComp->GetParameter = omx_clocksrc_component_GetParameter; openmaxStandComp->SetConfig = omx_clocksrc_component_SetConfig; openmaxStandComp->GetConfig = omx_clocksrc_component_GetConfig; openmaxStandComp->SendCommand = omx_clocksrc_component_SendCommand; return OMX_ErrorNone; } /** The Destructor */ OMX_ERRORTYPE omx_clocksrc_component_Destructor(OMX_COMPONENTTYPE *openmaxStandComp) { omx_clocksrc_component_PrivateType* omx_clocksrc_component_Private = openmaxStandComp->pComponentPrivate; OMX_U32 i; omx_clocksrc_component_Private->sClockState.eState = OMX_TIME_ClockStateMax; /*Deinitialize and free message semaphore*/ if(omx_clocksrc_component_Private->clockEventSem) { tsem_deinit(omx_clocksrc_component_Private->clockEventSem); free(omx_clocksrc_component_Private->clockEventSem); omx_clocksrc_component_Private->clockEventSem=NULL; } if(omx_clocksrc_component_Private->clockEventCompleteSem) { tsem_deinit(omx_clocksrc_component_Private->clockEventCompleteSem); free(omx_clocksrc_component_Private->clockEventCompleteSem); omx_clocksrc_component_Private->clockEventCompleteSem=NULL; } /* frees port/s */ if (omx_clocksrc_component_Private->ports) { for (i=0; i < omx_clocksrc_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts; i++) { if(omx_clocksrc_component_Private->ports[i]) omx_clocksrc_component_Private->ports[i]->PortDestructor(omx_clocksrc_component_Private->ports[i]); } free(omx_clocksrc_component_Private->ports); omx_clocksrc_component_Private->ports=NULL; } return omx_base_source_Destructor(openmaxStandComp); } OMX_ERRORTYPE omx_clocksrc_component_GetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure) { OMX_ERRORTYPE err = OMX_ErrorNone; OMX_OTHER_PARAM_PORTFORMATTYPE *pOtherPortFormat; OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE*)hComponent; omx_clocksrc_component_PrivateType* omx_clocksrc_component_Private = openmaxStandComp->pComponentPrivate; omx_base_clock_PortType* pPort; // = (omx_base_clock_PortType *) omx_clocksrc_component_Private->ports[OMX_BASE_SOURCE_OUTPUTPORT_INDEX]; OMX_PARAM_COMPONENTROLETYPE *pComponentRole; if (ComponentParameterStructure == NULL) { return OMX_ErrorBadParameter; } DEBUG(DEB_LEV_SIMPLE_SEQ, " Getting parameter %i\n", nParamIndex); /* Check which structure we are being fed and fill its header */ switch(nParamIndex) { case OMX_IndexParamOtherInit: if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PORT_PARAM_TYPE))) != OMX_ErrorNone) { break; } memcpy(ComponentParameterStructure, &omx_clocksrc_component_Private->sPortTypesParam[OMX_PortDomainOther], sizeof(OMX_PORT_PARAM_TYPE)); break; case OMX_IndexParamOtherPortFormat: pOtherPortFormat = (OMX_OTHER_PARAM_PORTFORMATTYPE*)ComponentParameterStructure; if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_OTHER_PARAM_PORTFORMATTYPE))) != OMX_ErrorNone) { break; } if (pOtherPortFormat->nPortIndex < omx_clocksrc_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts) { pPort = (omx_base_clock_PortType *) omx_clocksrc_component_Private->ports[pOtherPortFormat->nPortIndex]; memcpy(pOtherPortFormat, &pPort->sOtherParam, sizeof(OMX_OTHER_PARAM_PORTFORMATTYPE)); } else { return OMX_ErrorBadPortIndex; } break; case OMX_IndexParamStandardComponentRole: pComponentRole = (OMX_PARAM_COMPONENTROLETYPE*)ComponentParameterStructure; if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PARAM_COMPONENTROLETYPE))) != OMX_ErrorNone) { break; } strcpy( (char*) pComponentRole->cRole, ""); break; default: /*Call the base component function*/ return omx_base_component_GetParameter(hComponent, nParamIndex, ComponentParameterStructure); } return err; } OMX_ERRORTYPE omx_clocksrc_component_SetParameter( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nParamIndex, OMX_PTR ComponentParameterStructure) { OMX_ERRORTYPE err = OMX_ErrorNone; OMX_OTHER_PARAM_PORTFORMATTYPE *pOtherPortFormat; OMX_COMPONENTTYPE *openmaxStandComp = (OMX_COMPONENTTYPE*)hComponent; omx_clocksrc_component_PrivateType* omx_clocksrc_component_Private = openmaxStandComp->pComponentPrivate; omx_base_clock_PortType* pPort; OMX_PARAM_COMPONENTROLETYPE *pComponentRole; if (ComponentParameterStructure == NULL) { return OMX_ErrorBadParameter; } DEBUG(DEB_LEV_SIMPLE_SEQ, " Setting parameter %i\n", nParamIndex); /* Check which structure we are being fed and fill its header */ switch(nParamIndex) { case OMX_IndexParamOtherPortFormat: pOtherPortFormat = (OMX_OTHER_PARAM_PORTFORMATTYPE*)ComponentParameterStructure; /*Check Structure Header and verify component state*/ err = omx_base_component_ParameterSanityCheck(hComponent, pOtherPortFormat->nPortIndex, pOtherPortFormat, sizeof(OMX_OTHER_PARAM_PORTFORMATTYPE)); if(err!=OMX_ErrorNone) { DEBUG(DEB_LEV_ERR, "In %s Parameter Check Error=%x\n", __func__, err); break; } if (pOtherPortFormat->nPortIndex < omx_clocksrc_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts) { pPort = (omx_base_clock_PortType *) omx_clocksrc_component_Private->ports[pOtherPortFormat->nPortIndex]; memcpy(&pPort->sOtherParam,pOtherPortFormat,sizeof(OMX_OTHER_PARAM_PORTFORMATTYPE)); } else { return OMX_ErrorBadPortIndex; } break; case OMX_IndexParamStandardComponentRole: pComponentRole = (OMX_PARAM_COMPONENTROLETYPE*)ComponentParameterStructure; if (omx_clocksrc_component_Private->state != OMX_StateLoaded && omx_clocksrc_component_Private->state != OMX_StateWaitForResources) { DEBUG(DEB_LEV_ERR, "In %s Incorrect State=%x lineno=%d\n",__func__, omx_clocksrc_component_Private->state, __LINE__); return OMX_ErrorIncorrectStateOperation; } if ((err = checkHeader(ComponentParameterStructure, sizeof(OMX_PARAM_COMPONENTROLETYPE))) != OMX_ErrorNone) { break; } if (strcmp( (char*) pComponentRole->cRole, "")) { return OMX_ErrorBadParameter; } break; default: /*Call the base component function*/ return omx_base_component_SetParameter(hComponent, nParamIndex, ComponentParameterStructure); } return err; } OMX_ERRORTYPE omx_clocksrc_component_SendCommand( OMX_HANDLETYPE hComponent, OMX_COMMANDTYPE Cmd, OMX_U32 nParam, OMX_PTR pCmdData) { OMX_COMPONENTTYPE* omxComponent = (OMX_COMPONENTTYPE*)hComponent; omx_clocksrc_component_PrivateType* omx_clocksrc_component_Private = (omx_clocksrc_component_PrivateType*)omxComponent->pComponentPrivate; OMX_U32 nMask; switch (Cmd) { case OMX_CommandPortDisable: if (nParam >= omx_clocksrc_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts && nParam != OMX_ALL) { return OMX_ErrorBadPortIndex; } if(nParam == OMX_ALL) { nMask = 0xFF; } else { nMask = 0x1 << nParam; } omx_clocksrc_component_Private->sClockState.nWaitMask &= (~nMask); DEBUG(DEB_LEV_SIMPLE_SEQ,"In %s nWaitMask =%08x Musk=%x\n",__func__, (int)omx_clocksrc_component_Private->sClockState.nWaitMask,(int)(~nMask)); break; case OMX_CommandPortEnable: if (nParam >= omx_clocksrc_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts && nParam != OMX_ALL) { return OMX_ErrorBadPortIndex; } if(nParam == OMX_ALL) { nMask = 0xFF; } else { nMask = 0x1 << nParam; } omx_clocksrc_component_Private->sClockState.nWaitMask &= nMask; DEBUG(DEB_LEV_SIMPLE_SEQ,"In %s nWaitMask =%08x Musk=%x\n",__func__, (int)omx_clocksrc_component_Private->sClockState.nWaitMask,(int)nMask); break; case OMX_CommandStateSet: if ((nParam == OMX_StateLoaded) && (omx_clocksrc_component_Private->state == OMX_StateIdle)) { omx_clocksrc_component_Private->transientState = OMX_TransStateIdleToLoaded; /*Signal buffer management thread to exit*/ tsem_up(omx_clocksrc_component_Private->clockEventSem); } else if ((nParam == OMX_StateExecuting) && (omx_clocksrc_component_Private->state == OMX_StatePause)) { /*Dummy signal to the clock buffer management function*/ omx_clocksrc_component_Private->transientState = OMX_TransStatePauseToExecuting; tsem_up(omx_clocksrc_component_Private->clockEventSem); } else if (nParam == OMX_StateInvalid) { omx_clocksrc_component_Private->transientState = OMX_TransStateInvalid; /*Signal buffer management thread to exit*/ tsem_up(omx_clocksrc_component_Private->clockEventSem); } break; default: break; } DEBUG(DEB_LEV_SIMPLE_SEQ,"In %s calling omx_base_component_SendCommand\n",__func__); return omx_base_component_SendCommand(hComponent,Cmd,nParam,pCmdData); } OMX_ERRORTYPE omx_clocksrc_component_GetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure) { OMX_COMPONENTTYPE* omxComponent = (OMX_COMPONENTTYPE*)hComponent; omx_clocksrc_component_PrivateType* omx_clocksrc_component_Private = (omx_clocksrc_component_PrivateType*)omxComponent->pComponentPrivate; OMX_TIME_CONFIG_CLOCKSTATETYPE* clockstate; OMX_TIME_CONFIG_TIMESTAMPTYPE* timestamp; OMX_TIME_CONFIG_SCALETYPE *pConfigScale; OMX_TIME_CONFIG_ACTIVEREFCLOCKTYPE *pRefClock; struct timeval tv; struct timezone zv; switch (nIndex) { case OMX_IndexConfigTimeClockState : clockstate = (OMX_TIME_CONFIG_CLOCKSTATETYPE*) pComponentConfigStructure; memcpy(clockstate, &omx_clocksrc_component_Private->sClockState, sizeof(OMX_TIME_CONFIG_CLOCKSTATETYPE)); break; case OMX_IndexConfigTimeCurrentWallTime : timestamp = (OMX_TIME_CONFIG_TIMESTAMPTYPE*) pComponentConfigStructure; gettimeofday(&tv,&zv); timestamp->nTimestamp = (tv.tv_sec)*1000+tv.tv_usec; // converting the time read from gettimeofday into microseconds DEBUG(DEB_LEV_SIMPLE_SEQ,"wall time obtained in %s =%x\n",__func__,(int)timestamp->nTimestamp); break; case OMX_IndexConfigTimeCurrentMediaTime : DEBUG(DEB_LEV_SIMPLE_SEQ," TBD portindex to be returned is OMX_ALL, OMX_IndexConfigTimeCurrentMediaTime in %s \n",__func__); break; case OMX_IndexConfigTimeScale: pConfigScale = (OMX_TIME_CONFIG_SCALETYPE*) pComponentConfigStructure; memcpy(pConfigScale, &omx_clocksrc_component_Private->sConfigScale, sizeof(OMX_TIME_CONFIG_SCALETYPE)); break; case OMX_IndexConfigTimeActiveRefClock : pRefClock = (OMX_TIME_CONFIG_ACTIVEREFCLOCKTYPE*) pComponentConfigStructure; memcpy(pRefClock,&omx_clocksrc_component_Private->sRefClock, sizeof(OMX_TIME_CONFIG_ACTIVEREFCLOCKTYPE)); break; default: return OMX_ErrorBadParameter; break; } return OMX_ErrorNone; } OMX_ERRORTYPE omx_clocksrc_component_SetConfig( OMX_HANDLETYPE hComponent, OMX_INDEXTYPE nIndex, OMX_PTR pComponentConfigStructure) { OMX_COMPONENTTYPE* omxComponent = (OMX_COMPONENTTYPE*)hComponent; omx_clocksrc_component_PrivateType* omx_clocksrc_component_Private = (omx_clocksrc_component_PrivateType*)omxComponent->pComponentPrivate; OMX_TIME_CONFIG_CLOCKSTATETYPE* clockstate; OMX_TIME_CONFIG_TIMESTAMPTYPE* sRefTimeStamp; OMX_TIME_CONFIG_ACTIVEREFCLOCKTYPE* pRefClock; OMX_U32 portIndex; omx_base_clock_PortType *pPort; OMX_TIME_CONFIG_SCALETYPE *pConfigScale; OMX_U32 nMask; OMX_TIME_CONFIG_MEDIATIMEREQUESTTYPE* sMediaTimeRequest; int i; struct timeval tv; struct timezone zv; OMX_TICKS walltime, mediatime, mediaTimediff, wallTimediff; OMX_S32 Scale; unsigned int sleeptime; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); switch (nIndex) { case OMX_IndexConfigTimeClockState : { clockstate = (OMX_TIME_CONFIG_CLOCKSTATETYPE*) pComponentConfigStructure; switch (clockstate->eState) { case OMX_TIME_ClockStateRunning: if(omx_clocksrc_component_Private->sClockState.eState == OMX_TIME_ClockStateRunning) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Received OMX_TIME_ClockStateRunning again\n",__func__); } DEBUG(DEB_LEV_SIMPLE_SEQ,"in %s ...set to OMX_TIME_ClockStateRunning\n",__func__); memcpy(&omx_clocksrc_component_Private->sClockState, clockstate, sizeof(OMX_TIME_CONFIG_CLOCKSTATETYPE)); omx_clocksrc_component_Private->eUpdateType = OMX_TIME_UpdateClockStateChanged; /* update the state change in all port */ for(i=0;isPortTypesParam[OMX_PortDomainOther].nPorts;i++) { pPort = (omx_base_clock_PortType*)omx_clocksrc_component_Private->ports[i]; pPort->sMediaTime.eUpdateType = OMX_TIME_UpdateClockStateChanged; pPort->sMediaTime.eState = OMX_TIME_ClockStateRunning; pPort->sMediaTime.xScale = omx_clocksrc_component_Private->sConfigScale.xScale; } /*Signal Buffer Management Thread*/ tsem_up(omx_clocksrc_component_Private->clockEventSem); DEBUG(DEB_LEV_SIMPLE_SEQ, "Waiting for Clock Running Event for all ports\n"); tsem_down(omx_clocksrc_component_Private->clockEventCompleteSem); break; case OMX_TIME_ClockStateWaitingForStartTime: if(omx_clocksrc_component_Private->sClockState.eState == OMX_TIME_ClockStateRunning) { return OMX_ErrorIncorrectStateTransition; } else if(omx_clocksrc_component_Private->sClockState.eState == OMX_TIME_ClockStateWaitingForStartTime) { return OMX_ErrorSameState; } DEBUG(DEB_LEV_SIMPLE_SEQ," in %s ...set to OMX_TIME_ClockStateWaitingForStartTime mask sent=%d\n",__func__,(int)clockstate->nWaitMask); memcpy(&omx_clocksrc_component_Private->sClockState, clockstate, sizeof(OMX_TIME_CONFIG_CLOCKSTATETYPE)); break; case OMX_TIME_ClockStateStopped: DEBUG(DEB_LEV_SIMPLE_SEQ," in %s ...set to OMX_TIME_ClockStateStopped\n",__func__); memcpy(&omx_clocksrc_component_Private->sClockState, clockstate, sizeof(OMX_TIME_CONFIG_CLOCKSTATETYPE)); omx_clocksrc_component_Private->eUpdateType = OMX_TIME_UpdateClockStateChanged; /* update the state change in all port */ for(i=0;isPortTypesParam[OMX_PortDomainOther].nPorts;i++) { pPort = (omx_base_clock_PortType*)omx_clocksrc_component_Private->ports[i]; pPort->sMediaTime.eUpdateType = OMX_TIME_UpdateClockStateChanged; pPort->sMediaTime.eState = OMX_TIME_ClockStateStopped; pPort->sMediaTime.xScale = omx_clocksrc_component_Private->sConfigScale.xScale; } /*Signal Buffer Management Thread*/ tsem_up(omx_clocksrc_component_Private->clockEventSem); DEBUG(DEB_LEV_SIMPLE_SEQ, "Waiting for Clock Stop Event for all ports\n"); tsem_down(omx_clocksrc_component_Private->clockEventCompleteSem); break; default: break; } } break; case OMX_IndexConfigTimeClientStartTime: sRefTimeStamp = (OMX_TIME_CONFIG_TIMESTAMPTYPE*) pComponentConfigStructure; portIndex = sRefTimeStamp->nPortIndex; if(portIndex > omx_clocksrc_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts) { return OMX_ErrorBadPortIndex; } pPort = (omx_base_clock_PortType*)omx_clocksrc_component_Private->ports[portIndex]; if(!PORT_IS_ENABLED(pPort)) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Port is disabled \n",__func__); return OMX_ErrorBadParameter; } memcpy(&pPort->sTimeStamp, sRefTimeStamp, sizeof(OMX_TIME_CONFIG_TIMESTAMPTYPE)); /* update the nWaitMask to clear the flag for the client which has sent its start time */ if(omx_clocksrc_component_Private->sClockState.nWaitMask) { DEBUG(DEB_LEV_SIMPLE_SEQ,"refTime set is =%x \n",(int)pPort->sTimeStamp.nTimestamp); nMask = ~(0x1 << portIndex); omx_clocksrc_component_Private->sClockState.nWaitMask = omx_clocksrc_component_Private->sClockState.nWaitMask & nMask; if(omx_clocksrc_component_Private->sMinStartTime.nTimestamp >= pPort->sTimeStamp.nTimestamp){ omx_clocksrc_component_Private->sMinStartTime.nTimestamp = pPort->sTimeStamp.nTimestamp; omx_clocksrc_component_Private->sMinStartTime.nPortIndex = pPort->sTimeStamp.nPortIndex; } } if(!omx_clocksrc_component_Private->sClockState.nWaitMask && omx_clocksrc_component_Private->sClockState.eState == OMX_TIME_ClockStateWaitingForStartTime) { omx_clocksrc_component_Private->sClockState.eState = OMX_TIME_ClockStateRunning; omx_clocksrc_component_Private->sClockState.nStartTime = omx_clocksrc_component_Private->sMinStartTime.nTimestamp; omx_clocksrc_component_Private->MediaTimeBase = omx_clocksrc_component_Private->sMinStartTime.nTimestamp; gettimeofday(&tv,&zv); walltime = ((OMX_TICKS)tv.tv_sec)*1000000 + ((OMX_TICKS)tv.tv_usec); omx_clocksrc_component_Private->WallTimeBase = walltime; DEBUG(DEB_LEV_SIMPLE_SEQ,"Mediatimebase=%llx walltimebase=%llx \n",omx_clocksrc_component_Private->MediaTimeBase,omx_clocksrc_component_Private->WallTimeBase); omx_clocksrc_component_Private->eUpdateType = OMX_TIME_UpdateClockStateChanged; /* update the state change in all port */ for(i=0;isPortTypesParam[OMX_PortDomainOther].nPorts;i++) { pPort = (omx_base_clock_PortType*)omx_clocksrc_component_Private->ports[i]; pPort->sMediaTime.eUpdateType = OMX_TIME_UpdateClockStateChanged; pPort->sMediaTime.eState = OMX_TIME_ClockStateRunning; pPort->sMediaTime.xScale = omx_clocksrc_component_Private->sConfigScale.xScale; } /*Signal Buffer Management Thread*/ tsem_up(omx_clocksrc_component_Private->clockEventSem); DEBUG(DEB_LEV_SIMPLE_SEQ,"setting the state to running from %s \n",__func__); DEBUG(DEB_LEV_SIMPLE_SEQ,"Waiting for Clock Running Event for all ports in case OMX_IndexConfigTimeClientStartTime\n"); tsem_down(omx_clocksrc_component_Private->clockEventCompleteSem); } break; case OMX_IndexConfigTimeActiveRefClock : pRefClock = (OMX_TIME_CONFIG_ACTIVEREFCLOCKTYPE*) pComponentConfigStructure; memcpy(&omx_clocksrc_component_Private->sRefClock, pRefClock, sizeof(OMX_TIME_CONFIG_ACTIVEREFCLOCKTYPE)); break; case OMX_IndexConfigTimeCurrentAudioReference: sRefTimeStamp = (OMX_TIME_CONFIG_TIMESTAMPTYPE*) pComponentConfigStructure; portIndex = sRefTimeStamp->nPortIndex; if(portIndex > omx_clocksrc_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts) { return OMX_ErrorBadPortIndex; } pPort = (omx_base_clock_PortType*)omx_clocksrc_component_Private->ports[portIndex]; memcpy(&pPort->sTimeStamp, sRefTimeStamp, sizeof(OMX_TIME_CONFIG_TIMESTAMPTYPE)); gettimeofday(&tv,&zv); walltime = ((OMX_TICKS)tv.tv_sec)*1000000 + ((OMX_TICKS)tv.tv_usec); omx_clocksrc_component_Private->WallTimeBase = walltime; omx_clocksrc_component_Private->MediaTimeBase = sRefTimeStamp->nTimestamp; /* set the mediatime base of the received time stamp*/ break; case OMX_IndexConfigTimeCurrentVideoReference: sRefTimeStamp = (OMX_TIME_CONFIG_TIMESTAMPTYPE*) pComponentConfigStructure; portIndex = sRefTimeStamp->nPortIndex; if(portIndex > omx_clocksrc_component_Private->sPortTypesParam[OMX_PortDomainOther].nPorts) { return OMX_ErrorBadPortIndex; } pPort = (omx_base_clock_PortType*)omx_clocksrc_component_Private->ports[portIndex]; memcpy(&pPort->sTimeStamp, sRefTimeStamp, sizeof(OMX_TIME_CONFIG_TIMESTAMPTYPE)); gettimeofday(&tv,&zv); walltime = ((OMX_TICKS)tv.tv_sec)*1000000 + ((OMX_TICKS)tv.tv_usec); omx_clocksrc_component_Private->WallTimeBase = walltime; omx_clocksrc_component_Private->MediaTimeBase = sRefTimeStamp->nTimestamp; /* set the mediatime base of the received time stamp*/ break; case OMX_IndexConfigTimeScale: /* update the mediatime base and walltime base using the current scale value*/ Scale = omx_clocksrc_component_Private->sConfigScale.xScale >> 16; //* the scale currently in use, right shifted as Q16 format is used for the scale gettimeofday(&tv,&zv); walltime = ((OMX_TICKS)tv.tv_sec)*1000000 + ((OMX_TICKS)tv.tv_usec); mediatime = omx_clocksrc_component_Private->MediaTimeBase + Scale*(walltime - omx_clocksrc_component_Private->WallTimeBase); omx_clocksrc_component_Private->WallTimeBase = walltime; // suitable start time to be used here omx_clocksrc_component_Private->MediaTimeBase = mediatime; // TODO - needs to be checked /* update the new scale value */ pConfigScale = (OMX_TIME_CONFIG_SCALETYPE*) pComponentConfigStructure; memcpy( &omx_clocksrc_component_Private->sConfigScale,pConfigScale, sizeof(OMX_TIME_CONFIG_SCALETYPE)); omx_clocksrc_component_Private->eUpdateType = OMX_TIME_UpdateScaleChanged; /* update the scale change in all ports */ for(i=0;isPortTypesParam[OMX_PortDomainOther].nPorts;i++) { pPort = (omx_base_clock_PortType*)omx_clocksrc_component_Private->ports[i]; pPort->sMediaTime.eUpdateType = OMX_TIME_UpdateScaleChanged; pPort->sMediaTime.eState = OMX_TIME_ClockStateRunning; pPort->sMediaTime.xScale = omx_clocksrc_component_Private->sConfigScale.xScale; pPort->sMediaTime.nMediaTimestamp = omx_clocksrc_component_Private->MediaTimeBase; pPort->sMediaTime.nWallTimeAtMediaTime = omx_clocksrc_component_Private->WallTimeBase; } /*Signal Buffer Management Thread*/ tsem_up(omx_clocksrc_component_Private->clockEventSem); DEBUG(DEB_LEV_SIMPLE_SEQ, "Waiting for Scale Change Event for all ports\n"); tsem_down(omx_clocksrc_component_Private->clockEventCompleteSem); break; case OMX_IndexConfigTimeMediaTimeRequest: Scale = omx_clocksrc_component_Private->sConfigScale.xScale >> 16; if(omx_clocksrc_component_Private->sClockState.eState != OMX_TIME_ClockStateStopped && Scale != 0) {//TODO- what happens if request comes in pause mode sMediaTimeRequest = (OMX_TIME_CONFIG_MEDIATIMEREQUESTTYPE*) pComponentConfigStructure; portIndex = sMediaTimeRequest->nPortIndex; pPort = (omx_base_clock_PortType*)omx_clocksrc_component_Private->ports[portIndex]; memcpy(&pPort->sMediaTimeRequest, sMediaTimeRequest, sizeof(OMX_TIME_CONFIG_MEDIATIMEREQUESTTYPE)); gettimeofday(&tv,&zv); walltime = ((OMX_TICKS)tv.tv_sec)*1000000 + ((OMX_TICKS)tv.tv_usec); mediatime = omx_clocksrc_component_Private->MediaTimeBase + Scale*(walltime - omx_clocksrc_component_Private->WallTimeBase); int thresh=2000; // TODO - what is a good threshold to use mediaTimediff = (sMediaTimeRequest->nMediaTimestamp - (sMediaTimeRequest->nOffset*Scale)) - mediatime; DEBUG(DEB_LEV_SIMPLE_SEQ," pI=%d MTD=%lld MT=%lld RT=%lld offset=%lld, Scale=%d\n", (int)portIndex,mediaTimediff,mediatime,sMediaTimeRequest->nMediaTimestamp,sMediaTimeRequest->nOffset,(int)Scale); if((mediaTimediff<0 && Scale>0) || (mediaTimediff>0 && Scale<0)) { /* if mediatime has already elapsed then request can not be fullfilled */ DEBUG(DEB_LEV_SIMPLE_SEQ," pI=%d RNF MTD<0 MB=%lld WB=%lld MT=%lld RT=%lld WT=%lld offset=%lld, Scale=%d\n", (int)portIndex,omx_clocksrc_component_Private->MediaTimeBase,omx_clocksrc_component_Private->WallTimeBase, mediatime,sMediaTimeRequest->nMediaTimestamp,walltime,sMediaTimeRequest->nOffset,(int)Scale); pPort->sMediaTime.eUpdateType = OMX_TIME_UpdateRequestFulfillment; // TODO : to be checked pPort->sMediaTime.nMediaTimestamp = sMediaTimeRequest->nMediaTimestamp; pPort->sMediaTime.nOffset = 0xFFFFFFFF; }else{ wallTimediff = mediaTimediff/Scale; if(mediaTimediff){ if(wallTimediff>thresh) { sleeptime = (unsigned int) (wallTimediff-thresh); usleep(sleeptime); wallTimediff = thresh; // ask : can I use this as the new walltimediff gettimeofday(&tv,&zv); walltime = ((OMX_TICKS)tv.tv_sec)*1000000 + ((OMX_TICKS)tv.tv_usec); mediatime = omx_clocksrc_component_Private->MediaTimeBase + Scale*(walltime - omx_clocksrc_component_Private->WallTimeBase); } //pPort->sMediaTime.nMediaTimestamp = mediatime; pPort->sMediaTime.nMediaTimestamp = sMediaTimeRequest->nMediaTimestamp; ///???? pPort->sMediaTime.nWallTimeAtMediaTime = walltime + wallTimediff; //?????? pPort->sMediaTime.nOffset = wallTimediff; //???? pPort->sMediaTime.xScale = Scale; pPort->sMediaTime.eUpdateType = OMX_TIME_UpdateRequestFulfillment; DEBUG(DEB_LEV_SIMPLE_SEQ,"pI=%d MB=%lld WB=%lld MT=%lld RT=%lld WT=%lld \n",(int)portIndex, omx_clocksrc_component_Private->MediaTimeBase,omx_clocksrc_component_Private->WallTimeBase, mediatime,sMediaTimeRequest->nMediaTimestamp,walltime); } } /*Signal Buffer Management Thread*/ tsem_up(omx_clocksrc_component_Private->clockEventSem); DEBUG(DEB_LEV_SIMPLE_SEQ, "Waiting for Scale Change Event for all ports\n"); tsem_down(omx_clocksrc_component_Private->clockEventCompleteSem); } else { DEBUG(DEB_LEV_ERR,"In %s Clock State=%x Scale=%x Line=%d \n", __func__,(int)omx_clocksrc_component_Private->sClockState.eState,(int)Scale,__LINE__); } break; default: return OMX_ErrorBadParameter; break; } return OMX_ErrorNone; } /** * This function plays the input buffer. When fully consumed it returns. */ void omx_clocksrc_component_BufferMgmtCallback(OMX_COMPONENTTYPE *openmaxStandComp, OMX_BUFFERHEADERTYPE* outputbuffer) { omx_clocksrc_component_PrivateType* omx_clocksrc_component_Private = openmaxStandComp->pComponentPrivate; omx_base_clock_PortType *pPort = (omx_base_clock_PortType*)omx_clocksrc_component_Private->ports[outputbuffer->nOutputPortIndex]; memcpy(outputbuffer->pBuffer,&pPort->sMediaTime,sizeof(OMX_TIME_MEDIATIMETYPE)); outputbuffer->nFilledLen = sizeof(OMX_TIME_MEDIATIMETYPE); pPort->sMediaTime.eUpdateType = OMX_TIME_UpdateMax; /* clear the update type */ } /** This is the central function for buffer processing of a two port source component. * It is executed in a separate thread, is synchronized with * semaphores at each port, those are released each time a new buffer * is available on the given port. */ void* omx_clocksrc_BufferMgmtFunction (void* param) { OMX_COMPONENTTYPE* openmaxStandComp = (OMX_COMPONENTTYPE*)param; omx_base_component_PrivateType* omx_base_component_Private=(omx_base_component_PrivateType*)openmaxStandComp->pComponentPrivate; omx_clocksrc_component_PrivateType* omx_clocksrc_component_Private = (omx_clocksrc_component_PrivateType*)omx_base_component_Private; omx_base_clock_PortType *pOutPort[MAX_CLOCK_PORTS]; tsem_t* pOutputSem[MAX_CLOCK_PORTS]; queue_t* pOutputQueue[MAX_CLOCK_PORTS]; OMX_BUFFERHEADERTYPE* pOutputBuffer[MAX_CLOCK_PORTS]; OMX_BOOL isOutputBufferNeeded[MAX_CLOCK_PORTS],bPortsBeingFlushed = OMX_FALSE; int i,j,outBufExchanged[MAX_CLOCK_PORTS]; for(i=0;isPortTypesParam[OMX_PortDomainOther].nPorts;i++) { pOutPort[i] = (omx_base_clock_PortType *)omx_clocksrc_component_Private->ports[i]; pOutputSem[i] = pOutPort[i]->pBufferSem; pOutputQueue[i] = pOutPort[i]->pBufferQueue; pOutputBuffer[i] = NULL; isOutputBufferNeeded[i] = OMX_TRUE; outBufExchanged[i] = 0; } DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); while(omx_clocksrc_component_Private->state == OMX_StateIdle || omx_clocksrc_component_Private->state == OMX_StateExecuting || omx_clocksrc_component_Private->state == OMX_StatePause || omx_clocksrc_component_Private->transientState == OMX_TransStateLoadedToIdle){ /*Wait till the ports are being flushed*/ pthread_mutex_lock(&omx_clocksrc_component_Private->flush_mutex); for(i=0;isPortTypesParam[OMX_PortDomainOther].nPorts;i++) { bPortsBeingFlushed |= PORT_IS_BEING_FLUSHED(pOutPort[i]); } while(bPortsBeingFlushed) { pthread_mutex_unlock(&omx_clocksrc_component_Private->flush_mutex); for(i=0;isPortTypesParam[OMX_PortDomainOther].nPorts;i++) { if(isOutputBufferNeeded[i]==OMX_FALSE && PORT_IS_BEING_FLUSHED(pOutPort[i])) { pOutPort[i]->ReturnBufferFunction((omx_base_PortType*)pOutPort[i],pOutputBuffer[i]); outBufExchanged[i]--; pOutputBuffer[1]=NULL; isOutputBufferNeeded[i]=OMX_TRUE; DEBUG(DEB_LEV_FULL_SEQ, "Ports are flushing,so returning output buffer for port %i\n",i); } } tsem_up(omx_clocksrc_component_Private->flush_all_condition); tsem_down(omx_clocksrc_component_Private->flush_condition); pthread_mutex_lock(&omx_clocksrc_component_Private->flush_mutex); bPortsBeingFlushed = OMX_FALSE; for(i=0;isPortTypesParam[OMX_PortDomainOther].nPorts;i++) { bPortsBeingFlushed |= PORT_IS_BEING_FLUSHED(pOutPort[i]); } } pthread_mutex_unlock(&omx_clocksrc_component_Private->flush_mutex); /*Wait for clock state event*/ DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Waiting for clock event\n",__func__); tsem_down(omx_clocksrc_component_Private->clockEventSem); DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s clock event occured semval=%d \n",__func__,omx_clocksrc_component_Private->clockEventSem->semval); /*If port is not tunneled then simply return the buffer except paused state*/ if(omx_clocksrc_component_Private->transientState == OMX_TransStatePauseToExecuting) { for(i=0;isPortTypesParam[OMX_PortDomainOther].nPorts;i++) { if(!PORT_IS_TUNNELED(pOutPort[i])) { if(pOutputSem[i]->semval>0 && isOutputBufferNeeded[i]==OMX_TRUE ) { tsem_down(pOutputSem[i]); if(pOutputQueue[i]->nelem>0){ outBufExchanged[i]++; isOutputBufferNeeded[i]=OMX_FALSE; pOutputBuffer[i] = dequeue(pOutputQueue[i]); if(pOutputBuffer[i] == NULL){ DEBUG(DEB_LEV_ERR, "Had NULL output buffer!!\n"); break; } } } if(isOutputBufferNeeded[i]==OMX_FALSE) { /*Output Buffer has been produced or EOS. So, return output buffer and get new buffer*/ if(pOutputBuffer[i]->nFilledLen!=0) { DEBUG(DEB_LEV_ERR, "In %s Returning Output nFilledLen=%d (line=%d)\n", __func__,(int)pOutputBuffer[i]->nFilledLen,__LINE__); pOutPort[i]->ReturnBufferFunction((omx_base_PortType*)pOutPort[i],pOutputBuffer[i]); outBufExchanged[i]--; pOutputBuffer[i]=NULL; isOutputBufferNeeded[i]=OMX_TRUE; } } } } omx_clocksrc_component_Private->transientState = OMX_TransStateMax; } if(omx_clocksrc_component_Private->state == OMX_StateLoaded || omx_clocksrc_component_Private->state == OMX_StateInvalid || omx_clocksrc_component_Private->transientState == OMX_TransStateIdleToLoaded || omx_clocksrc_component_Private->transientState == OMX_TransStateInvalid) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Buffer Management Thread is exiting (line %d)\n",__func__,__LINE__); break; } for(i=0;isPortTypesParam[OMX_PortDomainOther].nPorts;i++) { if(pOutPort[i]->sMediaTime.eUpdateType == OMX_TIME_UpdateClockStateChanged || pOutPort[i]->sMediaTime.eUpdateType == OMX_TIME_UpdateScaleChanged || pOutPort[i]->sMediaTime.eUpdateType == OMX_TIME_UpdateRequestFulfillment) { if((isOutputBufferNeeded[i]==OMX_TRUE && pOutputSem[i]->semval==0) && (omx_clocksrc_component_Private->state != OMX_StateLoaded && omx_clocksrc_component_Private->state != OMX_StateInvalid) && PORT_IS_ENABLED(pOutPort[i])) { //Signalled from EmptyThisBuffer or FillThisBuffer or some where else DEBUG(DEB_LEV_FULL_SEQ, "Waiting for next output buffer %i\n",i); tsem_down(omx_clocksrc_component_Private->bMgmtSem); } if(omx_clocksrc_component_Private->state == OMX_StateLoaded || omx_clocksrc_component_Private->state == OMX_StateInvalid || omx_clocksrc_component_Private->transientState == OMX_TransStateIdleToLoaded || omx_clocksrc_component_Private->transientState == OMX_TransStateInvalid) { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Buffer Management Thread is exiting (line %d)\n",__func__,__LINE__); break; } if(pOutputSem[i]->semval>0 && isOutputBufferNeeded[i]==OMX_TRUE ) { tsem_down(pOutputSem[i]); if(pOutputQueue[i]->nelem>0){ outBufExchanged[i]++; isOutputBufferNeeded[i]=OMX_FALSE; pOutputBuffer[i] = dequeue(pOutputQueue[i]); if(pOutputBuffer[i] == NULL){ DEBUG(DEB_LEV_ERR, "Had NULL output buffer!!\n"); break; } } } else { DEBUG(DEB_LEV_SIMPLE_SEQ, "In %s Output buffer not available Port %d (line=%d)\n",__func__,(int)i,__LINE__); /*Check if any dummy bMgmtSem signal and ports are flushing*/ pthread_mutex_lock(&omx_clocksrc_component_Private->flush_mutex); bPortsBeingFlushed = OMX_FALSE; for(j=0;jsPortTypesParam[OMX_PortDomainOther].nPorts;j++) { bPortsBeingFlushed |= PORT_IS_BEING_FLUSHED(pOutPort[j]); } pthread_mutex_unlock(&omx_clocksrc_component_Private->flush_mutex); if(bPortsBeingFlushed) { DEBUG(DEB_LEV_ERR, "In %s Ports are being flushed - breaking (line %d)\n",__func__,__LINE__); break; } } /*Process Output buffer of Port i */ if(isOutputBufferNeeded[i]==OMX_FALSE) { if (omx_clocksrc_component_Private->BufferMgmtCallback) { (*(omx_clocksrc_component_Private->BufferMgmtCallback))(openmaxStandComp, pOutputBuffer[i]); } else { /*If no buffer management call back then don't produce any output buffer*/ pOutputBuffer[i]->nFilledLen = 0; } /*Output Buffer has been produced or EOS. So, return output buffer and get new buffer*/ if(pOutputBuffer[i]->nFilledLen!=0) { pOutPort[i]->ReturnBufferFunction((omx_base_PortType*)pOutPort[i],pOutputBuffer[i]); outBufExchanged[i]--; pOutputBuffer[i]=NULL; isOutputBufferNeeded[i]=OMX_TRUE; } } } } DEBUG(DEB_LEV_SIMPLE_SEQ, "Sent Clock Event for all ports\n"); tsem_up(omx_clocksrc_component_Private->clockEventCompleteSem); } DEBUG(DEB_LEV_SIMPLE_SEQ,"Exiting Buffer Management Thread\n"); return NULL; } /** @brief Releases buffers under processing. * This function must be implemented in the derived classes, for the * specific processing */ OMX_ERRORTYPE clocksrc_port_FlushProcessingBuffers(omx_base_PortType *openmaxStandPort) { omx_clocksrc_component_PrivateType* omx_clocksrc_component_Private; OMX_BUFFERHEADERTYPE* pBuffer; int errQue; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s\n", __func__); omx_clocksrc_component_Private = (omx_clocksrc_component_PrivateType*)openmaxStandPort->standCompContainer->pComponentPrivate; pthread_mutex_lock(&omx_clocksrc_component_Private->flush_mutex); openmaxStandPort->bIsPortFlushed=OMX_TRUE; /*Signal the buffer management thread of port flush,if it is waiting for buffers*/ if(omx_clocksrc_component_Private->bMgmtSem->semval==0) { tsem_up(omx_clocksrc_component_Private->bMgmtSem); } tsem_up(omx_clocksrc_component_Private->clockEventSem); tsem_up(omx_clocksrc_component_Private->clockEventCompleteSem); if(omx_clocksrc_component_Private->state==OMX_StatePause ) { /*Waiting at paused state*/ tsem_signal(omx_clocksrc_component_Private->bStateSem); } DEBUG(DEB_LEV_FULL_SEQ, "In %s waiting for flush all condition port index =%d\n", __func__,(int)openmaxStandPort->sPortParam.nPortIndex); /* Wait until flush is completed */ pthread_mutex_unlock(&omx_clocksrc_component_Private->flush_mutex); tsem_down(omx_clocksrc_component_Private->flush_all_condition); tsem_reset(omx_clocksrc_component_Private->bMgmtSem); tsem_reset(omx_clocksrc_component_Private->clockEventSem); /* Flush all the buffers not under processing */ while (openmaxStandPort->pBufferSem->semval > 0) { DEBUG(DEB_LEV_FULL_SEQ, "In %s TFlag=%x Flusing Port=%d,Semval=%d Qelem=%d\n", __func__,(int)openmaxStandPort->nTunnelFlags,(int)openmaxStandPort->sPortParam.nPortIndex, (int)openmaxStandPort->pBufferSem->semval,(int)openmaxStandPort->pBufferQueue->nelem); tsem_down(openmaxStandPort->pBufferSem); pBuffer = dequeue(openmaxStandPort->pBufferQueue); if (PORT_IS_TUNNELED(openmaxStandPort) && !PORT_IS_BUFFER_SUPPLIER(openmaxStandPort)) { DEBUG(DEB_LEV_FULL_SEQ, "In %s: Comp %s is returning io:%d buffer\n", __func__,omx_clocksrc_component_Private->name,(int)openmaxStandPort->sPortParam.nPortIndex); if (openmaxStandPort->sPortParam.eDir == OMX_DirInput) { ((OMX_COMPONENTTYPE*)(openmaxStandPort->hTunneledComponent))->FillThisBuffer(openmaxStandPort->hTunneledComponent, pBuffer); } else { ((OMX_COMPONENTTYPE*)(openmaxStandPort->hTunneledComponent))->EmptyThisBuffer(openmaxStandPort->hTunneledComponent, pBuffer); } } else if (PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort)) { errQue = queue(openmaxStandPort->pBufferQueue,pBuffer); if (errQue) { /* /TODO the queue is full. This can be handled in a fine way with * some retrials, or other checking. For the moment this is a critical error * and simply causes the failure of this call */ return OMX_ErrorInsufficientResources; } } else { (*(openmaxStandPort->BufferProcessedCallback))( openmaxStandPort->standCompContainer, omx_clocksrc_component_Private->callbackData, pBuffer); } } /*Port is tunneled and supplier and didn't received all it's buffer then wait for the buffers*/ if (PORT_IS_TUNNELED_N_BUFFER_SUPPLIER(openmaxStandPort)) { while(openmaxStandPort->pBufferQueue->nelem!= openmaxStandPort->nNumAssignedBuffers){ tsem_down(openmaxStandPort->pBufferSem); DEBUG(DEB_LEV_PARAMS, "In %s Got a buffer qelem=%d\n",__func__,openmaxStandPort->pBufferQueue->nelem); } tsem_reset(openmaxStandPort->pBufferSem); } pthread_mutex_lock(&omx_clocksrc_component_Private->flush_mutex); openmaxStandPort->bIsPortFlushed=OMX_FALSE; pthread_mutex_unlock(&omx_clocksrc_component_Private->flush_mutex); tsem_up(omx_clocksrc_component_Private->flush_condition); DEBUG(DEB_LEV_FULL_SEQ, "Out %s Port Index=%d bIsPortFlushed=%d Component %s\n", __func__, (int)openmaxStandPort->sPortParam.nPortIndex,(int)openmaxStandPort->bIsPortFlushed,omx_clocksrc_component_Private->name); DEBUG(DEB_LEV_PARAMS, "In %s TFlag=%x Qelem=%d BSem=%d bMgmtsem=%d component=%s\n", __func__, (int)openmaxStandPort->nTunnelFlags, (int)openmaxStandPort->pBufferQueue->nelem, (int)openmaxStandPort->pBufferSem->semval, (int)omx_clocksrc_component_Private->bMgmtSem->semval, omx_clocksrc_component_Private->name); DEBUG(DEB_LEV_FUNCTION_NAME, "Out %s Port Index=%d\n", __func__,(int)openmaxStandPort->sPortParam.nPortIndex); return OMX_ErrorNone; } libomxil-bellagio-0.9.3/src/components/clocksrc/Makefile.in0000644000175000017500000004730511565413754020707 00000000000000# Makefile.in generated by automake 1.11.1 from Makefile.am. # @configure_input@ # Copyright (C) 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, # 2003, 2004, 2005, 2006, 2007, 2008, 2009 Free Software Foundation, # Inc. # This Makefile.in is free software; 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libomxil-bellagio-0.9.3/src/components/clocksrc/library_entry_point.c0000644000175000017500000000717511513256766023106 00000000000000/** src/components/clocksrc/library_entry_point.c The library entry point. It must have the same name for each library of the components loaded by the ST static component loader. This function fills the version, the component name and if existing also the roles and the specific names for each role. This base function is only an explanation. For each library it must be implemented, and it must fill data of any component in the library Copyright (C) 2008-2009 STMicroelectronics Copyright (C) 2008-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include /** @brief The library entry point. It must have the same name for each * library for the components loaded by the ST static component loader. * * This function fills the version, the component name and if existing also the roles * and the specific names for each role. This base function is only an explanation. * For each library it must be implemented, and it must fill data of any component * in the library * * @param stComponents pointer to an array of components descriptors.If NULL, the * function will return only the number of components contained in the library * * @return number of components contained in the library */ int omx_component_library_Setup(stLoaderComponentType **stComponents) { OMX_U32 i; DEBUG(DEB_LEV_FUNCTION_NAME, "In %s \n",__func__); if (stComponents == NULL) { DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s \n",__func__); return 1; // Return Number of Component/s } stComponents[0]->componentVersion.s.nVersionMajor = 1; stComponents[0]->componentVersion.s.nVersionMinor = 1; stComponents[0]->componentVersion.s.nRevision = 1; stComponents[0]->componentVersion.s.nStep = 1; stComponents[0]->name = calloc(1,OMX_MAX_STRINGNAME_SIZE); if (stComponents[0]->name == NULL) { return OMX_ErrorInsufficientResources; } strcpy(stComponents[0]->name, CLOCK_COMP_NAME); stComponents[0]->name_specific_length = 1; stComponents[0]->constructor = omx_clocksrc_component_Constructor; stComponents[0]->name_specific = calloc(stComponents[0]->name_specific_length,sizeof(char *)); stComponents[0]->role_specific = calloc(stComponents[0]->name_specific_length,sizeof(char *)); for(i=0;iname_specific_length;i++) { stComponents[0]->name_specific[i] = calloc(1, OMX_MAX_STRINGNAME_SIZE); if (stComponents[0]->name_specific[i] == NULL) { return OMX_ErrorInsufficientResources; } } for(i=0;iname_specific_length;i++) { stComponents[0]->role_specific[i] = calloc(1, OMX_MAX_STRINGNAME_SIZE); if (stComponents[0]->role_specific[i] == NULL) { return OMX_ErrorInsufficientResources; } } strcpy(stComponents[0]->name_specific[0], CLOCK_COMP_NAME); strcpy(stComponents[0]->role_specific[0], CLOCK_COMP_ROLE); DEBUG(DEB_LEV_FUNCTION_NAME, "Out of %s \n",__func__); return 1; } libomxil-bellagio-0.9.3/src/components/Makefile.in0000644000175000017500000004166011565413754017102 00000000000000# Makefile.in generated by automake 1.11.1 from Makefile.am. # @configure_input@ # Copyright (C) 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, # 2003, 2004, 2005, 2006, 2007, 2008, 2009 Free Software Foundation, # Inc. # This Makefile.in is free software; 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This library implements the OpenMAX core responsible for environment setup, component tunneling and communication. Copyright (C) 2007-2011 STMicroelectronics Copyright (C) 2007-2009 Nokia Corporation and/or its subsidiary(-ies). This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. 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 St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef __COMMON_H__ #define __COMMON_H__ #define MAX_LINE_LENGTH 2048 int makedir(const char *newdir); char *componentsRegistryGetFilename(void); char* loadersRegistryGetFilename(char* registry_name); int exists(const char* fname); typedef struct nameList { char* name; struct nameList *next; } nameList; #endif libomxil-bellagio-0.9.3/ChangeLog0000644000175000017500000000720611565233445013626 00000000000000Changes in 0.9.3: - Added support for dynamic loading of components Changes in 0.9.2.1: - Added optional support to components quality levels The global setting of quality level for a component has been added. Optionally a component can provide support for Set/GetQualityLevel functions. These functions will globally set a group of Parameters that represents a certain quality level. If this setting causes a change in any output port parameter the PortSettingsChange event is generated. The quality levels allow the IL Client to handle the resource usage of components given a quality of service policy. This change is not part of the OpenMAX standard and it is an optional feature of the Bellagio components. The old components are still compatible with new version of Bellagio. Changes in 0.9.2: - Moved all the components in a separate package. The actual version contains only few reference components that do not depend from any external library - Added an internal abstract resource manager to emulate the correct behavior for WaitForResources status - Removed all the symbian support - added an error return to the queuing functions Changes in 0.9.1: Added omx_base_image_port base class Added symbian support skipped in the last delivery Added a jpeg encoder/decoder component Added some tests Changes in 0.9.0: The main additions to this delivery are: - The symbian version of bellagio with a new component loader, several components and all the needed infrastructure has been added - Audio video synchronization support, with the addition of a new Clock component - Enhancement in the build system - New naming for the bellagio library. Now it is named libomxil-bellagio Changes in 0.3.4: added several components: - audio source based on alsa - audiomixer: simpel mixer with constant rate - 3gp audio/video parser based on ffmpeg - video source based on Video4Linux Added new domain specific base ports Difference 0.3.2 -> 0.3.3: - Added AAC format to the audio decoder based on ffmpeg - The all makefile system has been updated - It is possible to compile from a different directory - Added a directory for all the common functionalities of the tests - Updated OpenMAX header files to the 1.1.1 version - Added simple support to UseEGLImage function (video color converter component) - Updated component loader interface: - added the function DestroyComponent - changed the loader self reference - Added port construction function pointer - Removed CHECK_ERROR and CHECK_HEADER macros - Added optional installation of Bellagio internal header files for new components development outside Bellagio source tree. configure option --enable-install-devel WARNING! the version of ffmpeg used has been changed, since the AAC is supported only by the most recent version of ffmpeg, 0.4.9-0.37.20070503 Difference 0.3.1 -> 0.3.2: - Some bug fixed - improved code style - added SetHeader functionality for many parameters - removed destructor from function pointers exposed to ST static loader - removed empty functions from final components - removed unnecessary library dependencies - enhanced test applications Full list of components: Audio: - ogg decoder based on libvorbis (stand alone components, and multiple roles component) - mp3 decoder based on mad decoder - mp3,aac,ogg decoder based on ffmpeg (multiple roles component) - volume component - alsa audio sink - ffmpeg audio file reader (to be used with mp3 ffmpeg decoder) Video: - MPEG4 decoder based on ffmpeg (multiple roles component) - H.264 decoder based on ffmpeg (multiple roles component) - Color converter based on ffmpeg - video renderer based on devFB libomxil-bellagio-0.9.3/libomxil-bellagio.pc.in0000644000175000017500000000044211513256766016377 00000000000000prefix=@prefix@ exec_prefix=@exec_prefix@ libdir=@libdir@ includedir=@includedir@ toolsdir=@bindir@ pluginsdir=@plugindir@ Name: libomxil Description: OpenMAX Integration Layer library Version: @VERSION@ Libs: -L${libdir} -lomxil-bellagio Cflags: -I${includedir} -I${includedir}/bellagio