rtkit-0.10/0000775000076400007640000000000011527310575007610 500000000000000rtkit-0.10/Makefile.am0000664000076400007640000000462411435335267011575 00000000000000# This file is part of RealtimeKit. # # Copyright 2009 Lennart Poettering # # RealtimeKit is free software: you can redistribute it and/or modify # it under the terms of the GNU General Public License as published by # the Free Software Foundation, either version 3 of the License, or # (at your option) any later version. # # RealtimeKit 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 RealtimeKit. If not, see . ACLOCAL_AMFLAGS = -I m4 policykitdir = $(datadir)/polkit-1/actions/ dbussystemdir = $(sysconfdir)/dbus-1/system.d/ dbusservicedir = $(datadir)/dbus-1/system-services/ EXTRA_DIST = \ README \ GPL \ LICENSE \ org.freedesktop.RealtimeKit1.policy \ org.freedesktop.RealtimeKit1.conf \ org.freedesktop.RealtimeKit1.service.in \ rtkit-daemon.service.in CLEANFILES = \ org.freedesktop.RealtimeKit1.service \ rtkit-daemon.service libexec_PROGRAMS = \ rtkit-daemon sbin_PROGRAMS = \ rtkitctl noinst_PROGRAMS = \ rtkit-test policykit_DATA = \ org.freedesktop.RealtimeKit1.policy dbussystem_DATA = \ org.freedesktop.RealtimeKit1.conf dbusservice_DATA = \ org.freedesktop.RealtimeKit1.service if HAVE_SYSTEMD systemdsystemunit_DATA = \ rtkit-daemon.service endif rtkit_daemon_SOURCES = \ rtkit-daemon.c rtkit.h \ sd-daemon.c sd-daemon.h rtkit_daemon_LDADD = \ $(DBUS_LIBS) rtkit_daemon_CFLAGS = \ $(DBUS_CFLAGS) rtkitctl_SOURCES = \ rtkitctl.c rtkit.h rtkitctl_LDADD = \ $(DBUS_LIBS) rtkitctl_CFLAGS = \ $(DBUS_CFLAGS) rtkit_test_SOURCES = \ rtkit-test.c rtkit.c rtkit.h rtkit_test_LDADD = \ $(DBUS_LIBS) rtkit_test_CFLAGS = \ $(DBUS_CFLAGS) org.freedesktop.RealtimeKit1.service: org.freedesktop.RealtimeKit1.service.in $(AM_V_GEN)sed -e 's,@LIBEXECDIR\@,$(libexecdir),g' < $< > $@ rtkit-daemon.service: rtkit-daemon.service.in $(AM_V_GEN)sed -e 's,@LIBEXECDIR\@,$(libexecdir),g' < $< > $@ man8_MANS = rtkitctl.8 EXTRA_DIST += \ $(man8_MANS) DISTCHECK_CONFIGURE_FLAGS = \ --with-systemdsystemunitdir=$$dc_install_base/$(systemdsystemunitdir) update-systemd: curl http://cgit.freedesktop.org/systemd/plain/src/sd-daemon.c > sd-daemon.c curl http://cgit.freedesktop.org/systemd/plain/src/sd-daemon.h > sd-daemon.h rtkit-0.10/config.h.in0000664000076400007640000000520411527304612011547 00000000000000/* config.h.in. Generated from configure.ac by autoheader. */ /* Define to 1 if you have the header file. */ #undef HAVE_INTTYPES_H /* Define to 1 if you have the header file. */ #undef HAVE_MEMORY_H /* Define if you have POSIX threads libraries and header files. */ #undef HAVE_PTHREAD /* Define to 1 if you have the header file. */ #undef HAVE_STDINT_H /* Define to 1 if you have the header file. */ #undef HAVE_STDLIB_H /* Define to 1 if you have the header file. */ #undef HAVE_STRINGS_H /* Define to 1 if you have the header file. */ #undef HAVE_STRING_H /* Define to 1 if you have the header file. */ #undef HAVE_SYS_STAT_H /* Define to 1 if you have the header file. */ #undef HAVE_SYS_TYPES_H /* Define to 1 if you have the header file. */ #undef HAVE_UNISTD_H /* Define to 1 if your C compiler doesn't accept -c and -o together. */ #undef NO_MINUS_C_MINUS_O /* Name of package */ #undef PACKAGE /* Define to the address where bug reports for this package should be sent. */ #undef PACKAGE_BUGREPORT /* Define to the full name of this package. */ #undef PACKAGE_NAME /* Define to the full name and version of this package. */ #undef PACKAGE_STRING /* Define to the one symbol short name of this package. */ #undef PACKAGE_TARNAME /* Define to the home page for this package. */ #undef PACKAGE_URL /* Define to the version of this package. */ #undef PACKAGE_VERSION /* Define to necessary symbol if this constant uses a non-standard name on your system. */ #undef PTHREAD_CREATE_JOINABLE /* Define to 1 if you have the ANSI C header files. */ #undef STDC_HEADERS /* Enable extensions on AIX 3, Interix. */ #ifndef _ALL_SOURCE # undef _ALL_SOURCE #endif /* Enable GNU extensions on systems that have them. */ #ifndef _GNU_SOURCE # undef _GNU_SOURCE #endif /* Enable threading extensions on Solaris. */ #ifndef _POSIX_PTHREAD_SEMANTICS # undef _POSIX_PTHREAD_SEMANTICS #endif /* Enable extensions on HP NonStop. */ #ifndef _TANDEM_SOURCE # undef _TANDEM_SOURCE #endif /* Enable general extensions on Solaris. */ #ifndef __EXTENSIONS__ # undef __EXTENSIONS__ #endif /* Version number of package */ #undef VERSION /* Number of bits in a file offset, on hosts where this is settable. */ #undef _FILE_OFFSET_BITS /* Define for large files, on AIX-style hosts. */ #undef _LARGE_FILES /* Define to 1 if on MINIX. */ #undef _MINIX /* Define to 2 if the system does not provide POSIX.1 features except with this defined. */ #undef _POSIX_1_SOURCE /* Define to 1 if you need to in order for `stat' and other things to work. */ #undef _POSIX_SOURCE rtkit-0.10/org.freedesktop.RealtimeKit1.conf0000664000076400007640000000206311435335267015776 00000000000000 rtkit-0.10/README0000664000076400007640000002145411435335267010421 00000000000000REALTIMEKIT Realtime Policy and Watchdog Daemon GIT: git://git.0pointer.de/rtkit.git GITWEB: http://git.0pointer.de/?p=rtkit.git NOTES: RealtimeKit is a D-Bus system service that changes the scheduling policy of user processes/threads to SCHED_RR (i.e. realtime scheduling mode) on request. It is intended to be used as a secure mechanism to allow real-time scheduling to be used by normal user processes. RealtimeKit enforces strict policies when handing out real-time security to user threads: * Only clients with RLIMIT_RTTIME set will get RT scheduling * RT scheduling will only be handed out to processes with SCHED_RESET_ON_FORK set to guarantee that the scheduling settings cannot 'leak' to child processes, thus making sure that 'RT fork bombs' cannot be used to bypass RLIMIT_RTTIME and take the system down. * Limits are enforced on all user controllable resources, only a maximum number of users, processes, threads can request RT scheduling at the same time. * Only a limited number of threads may be made RT in a specific time frame. * Client authorization is verified with PolicyKit RealtimeKit can also be used to hand outh high priority scheduling (i.e. negative nice level) to user processes. In addition to this a-priori policy enforcement, RealtimeKit also provides a-posteriori policy enforcement, i.e. it includes a canary-based watchdog that automatically demotes all real-time threads to SCHED_OTHER should the system overload despite the logic pointed out above. For more information regarding canary-based RT watchdogs, see the Acknowledgments section below. In its duty to manage real-time scheduling *securely* RealtimeKit runs as unpriviliged user, and uses capabalities, resource limits and chroot() to minimize its security impact. RealtimeKit probably has little use in embedded or server use cases, use RLIMIT_RTPRIO tehre instead. WHY: If processes that have real-time scheduling privileges enter a busy loop they can freeze the entire the system. To make sure such run-away processes cannot do this RLIMIT_RTTIME has been introduced. Being a per-process limit it is however easily cirumvented by combining a fork bomb with a busy loop. RealtimeKit hands out RT scheduling to specific threads that ask for it -- but only to those and due to SCHED_RESET_ON_FORK it can be sure that this won't 'leak'. In contrast to RLIMIT_RTPRIO the RealtimeKit logic makes sure that only a certain number of threads can be made realtime, per user, per process and per time interval. CLIENTS: To be able to make use of realtime scheduling clients may request so with a small D-Bus interface that is accessible on the interface org.freedesktop.RealtimeKit1 as object /org/freedesktop/RealtimeKit1 on the service org.freedesktop.RealtimeKit1: void MakeThreadRealtime(u64 thread_id, u32 priority); void MakeThreadHighPriority(u64 thread_id, s32 priority); The thread IDs need to be passed as kernel tids as returned by gettid(), not a pthread_t! Only threads belonging to the calling process can be made realtime/high priority. (Please note that gettid() is not available in glibc, you need to implement that manually using syscall(). Consult the reference client implementation for details.) A BSD-licensed reference implementation of the client is available in rtkit.[ch] as part of the package. You may copy this into your sources if you wish. However given how simple the D-Bus interface is you might choose to implement your own client implementation. It is advisable to try acquiring realtime scheduling with sched_setsheduler() first, so that systems where RLIMIT_RTPRIO is set can be supported. Here's an example using the reference implementation. Replace this: struct sched_param p; memset(&p, 0, sizeof(p)); p.sched_priority = 3; sched_setscheduler(0, SCHED_RR|SCHED_RESET_ON_FORK, &p); by this: struct sched_param p; memset(&p, 0, sizeof(p)); p.sched_priority = 3; if (sched_setscheduler(0, SCHED_RR|SCHED_RESET_ON_FORK, &p) < 0 && errno == EPERM) rtkit_make_realtime(system_bus, 0, p.sched_priority); But of course add more appropriate error checking! Also, falling back to plain SCHED_RR when SCHED_RESET_ON_FORK causes EINVAL migt be advisable). DAEMON: The daemon is automatically started on first use via D-Bus system bus activation. Currently the daemon does not read on any configuration file, however it can be configured with command line parameters. You can edit /usr/share/dbus-1/system-services/org.freedesktop.RealtimeKit1.service to set those. Run /usr/libexec/rtkit-daemon --help to get a quick overview on the supported parameters and their defaults. Many of them should be obvious in their meaning. For the remaining ones see below: --max-realtime-priority= may be used to specify the maximum realtime priority a client can acquire through RealtimeKit. Please note that this value must be smaller than the value passed to --our-realtime-priority=. --our-realtime-priority= may be used to specify the realtime priority of the daemon itself. Please note that this priority is only used for a very short time while processing a client request. Normally the daemon will not be running with a realtime scheduling policy. The real-time priorities handed out to the user must be lower than this value. (see above). --min-nice-level= may be used to specify the minimum nice level a client can acquire through RealtimeKit. --our-nice-level= may be used to specify the nice level the the daemon itself uses most of the time (except when processing requests, see above). It is probably a good idea to set this to a small positive value, to make sure that if the system is overloaded already handing out further RT scheduling will be delayed a bit. --rttime-nsec-max= may be used to control which RLIMIT_RTTIME value clients need to have chosen at minumum before they may acquire RT scheduling through RealtimeKit. --users-max= specifies how many users may acquire RT scheduling at the same time for one or multiple of their processes. --processes-per-user-max= specifies how many processes per user may acquire RT scheduling at the same time. --threads-per-user-max= specifies how many threads per user may acquire RT scheduling at the same time. Of course this value should be set higher than --process-per-user-max=. --actions-burst-sec= may be used to influence the rate limiting logic in RealtimeKit. The daemon will only pass realtime scheduling privileges to a maximum number of threads within this timeframe (see below). --actions-per-burst-max= may be used to influence the rate limiting logic in RealtimeKit. The daemon will only pass realtime scheduling privileges to this number of threads within the time frame configured via --actions-burst-sec=. When this limit is reached clients need to wait until that time passes before requesting RT scheduling again. --canary-cheep-msec= may be used to control how often the canary thread shall cheep. --canary-watchdog-msec= may be used to control how quickly the watchdog thread expects to receive a cheep from the canary thread. This value must be chosen larger than --canary-cheep-msec=. If the former is set 10s and the latter to 7s, then the canary thread can trigger and deliver the cheep with a maximum latency of 3s. ACKNOWLEDGMENTS: The canary watchdog logic is inspired by previous work of Vernon Mauery, Florian Schmidt, Kjetil Matheussen: http://rt.wiki.kernel.org/index.php/RT_Watchdog LICENSE: GPLv3+ for the daemon BSD for the client reference implementation AUTHOR: Lennart Poettering REQUIREMENTS: Linux kernel >= 2.6.31 D-Bus PolicyKit >= 0.92 rtkit-0.10/depcomp0000755000076400007640000004426711527241370011114 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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c-basic-offset: 8; indent-tabs-mode: nil -*-*/ /*** Copyright 2010 Lennart Poettering 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. ***/ #ifndef _GNU_SOURCE #define _GNU_SOURCE #endif #include #include #include #include #include #include #include #include #include #include #include #include #include #include "sd-daemon.h" int sd_listen_fds(int unset_environment) { #if defined(DISABLE_SYSTEMD) || !defined(__linux__) return 0; #else int r, fd; const char *e; char *p = NULL; unsigned long l; if (!(e = getenv("LISTEN_PID"))) { r = 0; goto finish; } errno = 0; l = strtoul(e, &p, 10); if (errno != 0) { r = -errno; goto finish; } if (!p || *p || l <= 0) { r = -EINVAL; goto finish; } /* Is this for us? */ if (getpid() != (pid_t) l) { r = 0; goto finish; } if (!(e = getenv("LISTEN_FDS"))) { r = 0; goto finish; } errno = 0; l = strtoul(e, &p, 10); if (errno != 0) { r = -errno; goto finish; } if (!p || *p) { r = -EINVAL; goto finish; } for (fd = SD_LISTEN_FDS_START; fd < SD_LISTEN_FDS_START + (int) l; fd ++) { int flags; if ((flags = fcntl(fd, F_GETFD)) < 0) { r = -errno; goto finish; } if (flags & FD_CLOEXEC) continue; if (fcntl(fd, F_SETFD, flags | FD_CLOEXEC) < 0) { r = -errno; goto finish; } } r = (int) l; finish: if (unset_environment) { unsetenv("LISTEN_PID"); unsetenv("LISTEN_FDS"); } return r; #endif } int sd_is_fifo(int fd, const char *path) { struct stat st_fd; if (fd < 0) return -EINVAL; memset(&st_fd, 0, sizeof(st_fd)); if (fstat(fd, &st_fd) < 0) return -errno; if (!S_ISFIFO(st_fd.st_mode)) return 0; if (path) { struct stat st_path; memset(&st_path, 0, sizeof(st_path)); if (stat(path, &st_path) < 0) { if (errno == ENOENT || errno == ENOTDIR) return 0; return -errno; } return st_path.st_dev == st_fd.st_dev && st_path.st_ino == st_fd.st_ino; } return 1; } static int sd_is_socket_internal(int fd, int type, int listening) { struct stat st_fd; if (fd < 0 || type < 0) return -EINVAL; if (fstat(fd, &st_fd) < 0) return -errno; if (!S_ISSOCK(st_fd.st_mode)) return 0; if (type != 0) { int other_type = 0; socklen_t l = sizeof(other_type); if (getsockopt(fd, SOL_SOCKET, SO_TYPE, &other_type, &l) < 0) return -errno; if (l != sizeof(other_type)) return -EINVAL; if (other_type != type) return 0; } if (listening >= 0) { int accepting = 0; socklen_t l = sizeof(accepting); if (getsockopt(fd, SOL_SOCKET, SO_ACCEPTCONN, &accepting, &l) < 0) return -errno; if (l != sizeof(accepting)) return -EINVAL; if (!accepting != !listening) return 0; } return 1; } union sockaddr_union { struct sockaddr sa; struct sockaddr_in in4; struct sockaddr_in6 in6; struct sockaddr_un un; struct sockaddr_storage storage; }; int sd_is_socket(int fd, int family, int type, int listening) { int r; if (family < 0) return -EINVAL; if ((r = sd_is_socket_internal(fd, type, listening)) <= 0) return r; if (family > 0) { union sockaddr_union sockaddr; socklen_t l; memset(&sockaddr, 0, sizeof(sockaddr)); l = sizeof(sockaddr); if (getsockname(fd, &sockaddr.sa, &l) < 0) return -errno; if (l < sizeof(sa_family_t)) return -EINVAL; return sockaddr.sa.sa_family == family; } return 1; } int sd_is_socket_inet(int fd, int family, int type, int listening, uint16_t port) { union sockaddr_union sockaddr; socklen_t l; int r; if (family != 0 && family != AF_INET && family != AF_INET6) return -EINVAL; if ((r = sd_is_socket_internal(fd, type, listening)) <= 0) return r; memset(&sockaddr, 0, sizeof(sockaddr)); l = sizeof(sockaddr); if (getsockname(fd, &sockaddr.sa, &l) < 0) return -errno; if (l < sizeof(sa_family_t)) return -EINVAL; if (sockaddr.sa.sa_family != AF_INET && sockaddr.sa.sa_family != AF_INET6) return 0; if (family > 0) if (sockaddr.sa.sa_family != family) return 0; if (port > 0) { if (sockaddr.sa.sa_family == AF_INET) { if (l < sizeof(struct sockaddr_in)) return -EINVAL; return htons(port) == sockaddr.in4.sin_port; } else { if (l < sizeof(struct sockaddr_in6)) return -EINVAL; return htons(port) == sockaddr.in6.sin6_port; } } return 1; } int sd_is_socket_unix(int fd, int type, int listening, const char *path, size_t length) { union sockaddr_union sockaddr; socklen_t l; int r; if ((r = sd_is_socket_internal(fd, type, listening)) <= 0) return r; memset(&sockaddr, 0, sizeof(sockaddr)); l = sizeof(sockaddr); if (getsockname(fd, &sockaddr.sa, &l) < 0) return -errno; if (l < sizeof(sa_family_t)) return -EINVAL; if (sockaddr.sa.sa_family != AF_UNIX) return 0; if (path) { if (length <= 0) length = strlen(path); if (length <= 0) /* Unnamed socket */ return l == offsetof(struct sockaddr_un, sun_path); if (path[0]) /* Normal path socket */ return (l >= offsetof(struct sockaddr_un, sun_path) + length + 1) && memcmp(path, sockaddr.un.sun_path, length+1) == 0; else /* Abstract namespace socket */ return (l == offsetof(struct sockaddr_un, sun_path) + length) && memcmp(path, sockaddr.un.sun_path, length) == 0; } return 1; } int sd_notify(int unset_environment, const char *state) { #if defined(DISABLE_SYSTEMD) || !defined(__linux__) || !defined(SOCK_CLOEXEC) return 0; #else int fd = -1, r; struct msghdr msghdr; struct iovec iovec; union sockaddr_union sockaddr; const char *e; if (!state) { r = -EINVAL; goto finish; } if (!(e = getenv("NOTIFY_SOCKET"))) return 0; /* Must be an abstract socket, or an absolute path */ if ((e[0] != '@' && e[0] != '/') || e[1] == 0) { r = -EINVAL; goto finish; } if ((fd = socket(AF_UNIX, SOCK_DGRAM|SOCK_CLOEXEC, 0)) < 0) { r = -errno; goto finish; } memset(&sockaddr, 0, sizeof(sockaddr)); sockaddr.sa.sa_family = AF_UNIX; strncpy(sockaddr.un.sun_path, e, sizeof(sockaddr.un.sun_path)); if (sockaddr.un.sun_path[0] == '@') sockaddr.un.sun_path[0] = 0; memset(&iovec, 0, sizeof(iovec)); iovec.iov_base = (char*) state; iovec.iov_len = strlen(state); memset(&msghdr, 0, sizeof(msghdr)); msghdr.msg_name = &sockaddr; msghdr.msg_namelen = offsetof(struct sockaddr_un, sun_path) + strlen(e); if (msghdr.msg_namelen > sizeof(struct sockaddr_un)) msghdr.msg_namelen = sizeof(struct sockaddr_un); msghdr.msg_iov = &iovec; msghdr.msg_iovlen = 1; if (sendmsg(fd, &msghdr, MSG_NOSIGNAL) < 0) { r = -errno; goto finish; } r = 1; finish: if (unset_environment) unsetenv("NOTIFY_SOCKET"); if (fd >= 0) close(fd); return r; #endif } int sd_notifyf(int unset_environment, const char *format, ...) { #if defined(DISABLE_SYSTEMD) || !defined(__linux__) return 0; #else va_list ap; char *p = NULL; int r; va_start(ap, format); r = vasprintf(&p, format, ap); va_end(ap); if (r < 0 || !p) return -ENOMEM; r = sd_notify(unset_environment, p); free(p); return r; #endif } int sd_booted(void) { #if defined(DISABLE_SYSTEMD) || !defined(__linux__) return 0; #else struct stat a, b; /* We simply test whether the systemd cgroup hierarchy is * mounted */ if (lstat("/sys/fs/cgroup", &a) < 0) return 0; if (lstat("/sys/fs/cgroup/systemd", &b) < 0) return 0; return a.st_dev != b.st_dev; #endif } rtkit-0.10/rtkitctl.c0000664000076400007640000001535311435335267011546 00000000000000/*-*- Mode: C; c-basic-offset: 8 -*-*/ /*** This file is part of RealtimeKit. Copyright 2009 Lennart Poettering RealtimeKit is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. RealtimeKit 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 RealtimeKit. If not, see . ***/ #ifdef HAVE_CONFIG_H #include #endif #include #include #include #include "rtkit.h" static char* get_file_name(const char *p) { char *e; if ((e = strrchr(p, '/'))) return e + 1; else return (char*) p; } static void show_help(const char *exe) { printf("%s [options]\n\n" " -h, --help Show this help\n" " --version Show version\n\n" " --reset-known Reset real-time status of known threads\n" " --reset-all Reset real-time status of all threads\n" " --start Start RealtimeKit if it is not running already\n" " -k, --exit Terminate running RealtimeKit daemon\n", exe); } int main (int argc, char*argv[]) { enum { ARG_HELP = 256, ARG_VERSION, ARG_START, ARG_EXIT, ARG_RESET_KNOWN, ARG_RESET_ALL, }; static const struct option long_options[] = { { "help", no_argument, 0, ARG_HELP }, { "version", no_argument, 0, ARG_VERSION }, { "start", no_argument, 0, ARG_START }, { "exit", no_argument, 0, ARG_EXIT }, { "reset-known", no_argument, 0, ARG_RESET_KNOWN }, { "reset-all", no_argument, 0, ARG_RESET_ALL }, { NULL, 0, 0, 0} }; enum { OPERATION_START, OPERATION_EXIT, OPERATION_RESET_KNOWN, OPERATION_RESET_ALL, _OPERATION_MAX }; static const char *method[_OPERATION_MAX] = { [OPERATION_START] = "StartServiceByName", [OPERATION_EXIT] = "Exit", [OPERATION_RESET_KNOWN] = "ResetKnown", [OPERATION_RESET_ALL] = "ResetAll" }; DBusError error; DBusConnection *bus = NULL; int operation = -1; int ret = 1; DBusMessage *m = NULL, *r = NULL; int c; dbus_error_init(&error); while ((c = getopt_long(argc, argv, "hk", long_options, NULL)) >= 0) { switch (c) { case 'h': case ARG_HELP: show_help(get_file_name(argv[0])); ret = 0; goto finish; case ARG_VERSION: printf("%s " PACKAGE_VERSION "\n", get_file_name(argv[0])); ret = 0; goto finish; case ARG_START: operation = OPERATION_START; break; case 'k': case ARG_EXIT: operation = OPERATION_EXIT; break; case ARG_RESET_KNOWN: operation = OPERATION_RESET_KNOWN; break; case ARG_RESET_ALL: operation = OPERATION_RESET_ALL; break; case '?': default: fprintf(stderr, "Unknown command.\n"); goto finish; } } if (optind < argc) { fprintf(stderr, "Too many arguments.\n"); goto finish; } if (operation < 0) { fprintf(stderr, "Need to specify operation.\n"); goto finish; } if (!(bus = dbus_bus_get(DBUS_BUS_SYSTEM, &error))) { fprintf(stderr, "Failed to connect to system bus: %s\n", error.message); goto finish; } if (operation == OPERATION_START) { const char *service = RTKIT_SERVICE_NAME; dbus_uint32_t flags = 0; if (!(m = dbus_message_new_method_call( DBUS_SERVICE_DBUS, DBUS_PATH_DBUS, DBUS_INTERFACE_DBUS, method[operation]))) { fprintf(stderr, "Failed to allocated message.\n"); goto finish; } if (!(dbus_message_append_args( m, DBUS_TYPE_STRING, &service, DBUS_TYPE_UINT32, &flags, DBUS_TYPE_INVALID))) { fprintf(stderr, "Failed to append to message.\n"); goto finish; } } else { if (!(m = dbus_message_new_method_call( RTKIT_SERVICE_NAME, RTKIT_OBJECT_PATH, "org.freedesktop.RealtimeKit1", method[operation]))) { fprintf(stderr, "Failed to allocated message.\n"); goto finish; } } if (!(r = dbus_connection_send_with_reply_and_block(bus, m, -1, &error))) { fprintf(stderr, "Failed to send %s request: %s\n", method[operation], error.message); goto finish; } if (dbus_set_error_from_message(&error, r)) { fprintf(stderr, "%s request failed: %s\n", method[operation], error.message); goto finish; } ret = 0; finish: if (m) dbus_message_unref(m); if (r) dbus_message_unref(r); if (bus) dbus_connection_unref(bus); return ret; } rtkit-0.10/aclocal.m40000664000076400007640000012242111527304576011376 00000000000000# generated automatically by aclocal 1.11.1 -*- Autoconf -*- # Copyright (C) 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004, # 2005, 2006, 2007, 2008, 2009 Free Software Foundation, Inc. # This file is free software; the Free Software Foundation # gives unlimited permission to copy and/or distribute it, # with or without modifications, as long as this notice is preserved. # This program is distributed in the hope that it will be useful, # but WITHOUT ANY WARRANTY, to the extent permitted by law; without # even the implied warranty of MERCHANTABILITY or FITNESS FOR A # PARTICULAR PURPOSE. m4_ifndef([AC_AUTOCONF_VERSION], [m4_copy([m4_PACKAGE_VERSION], [AC_AUTOCONF_VERSION])])dnl m4_if(m4_defn([AC_AUTOCONF_VERSION]), [2.68],, [m4_warning([this file was generated for autoconf 2.68. 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IN NO EVENT SHALL THE # X CONSORTIUM BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN # AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNEC- # TION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. # # Except as contained in this notice, the name of the X Consortium shall not # be used in advertising or otherwise to promote the sale, use or other deal- # ings in this Software without prior written authorization from the X Consor- # tium. # # # FSF changes to this file are in the public domain. # # Calling this script install-sh is preferred over install.sh, to prevent # `make' implicit rules from creating a file called install from it # when there is no Makefile. # # This script is compatible with the BSD install script, but was written # from scratch. nl=' ' IFS=" "" $nl" # set DOITPROG to echo to test this script # Don't use :- since 4.3BSD and earlier shells don't like it. doit=${DOITPROG-} if test -z "$doit"; then doit_exec=exec else doit_exec=$doit fi # Put in absolute file names if you don't have them in your path; # or use environment vars. chgrpprog=${CHGRPPROG-chgrp} chmodprog=${CHMODPROG-chmod} chownprog=${CHOWNPROG-chown} cmpprog=${CMPPROG-cmp} cpprog=${CPPROG-cp} mkdirprog=${MKDIRPROG-mkdir} mvprog=${MVPROG-mv} rmprog=${RMPROG-rm} stripprog=${STRIPPROG-strip} posix_glob='?' initialize_posix_glob=' test "$posix_glob" != "?" || { if (set -f) 2>/dev/null; then posix_glob= else posix_glob=: fi } ' posix_mkdir= # Desired mode of installed file. mode=0755 chgrpcmd= chmodcmd=$chmodprog chowncmd= mvcmd=$mvprog rmcmd="$rmprog -f" stripcmd= src= dst= dir_arg= dst_arg= copy_on_change=false no_target_directory= usage="\ Usage: $0 [OPTION]... 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Environment variables override the default commands: CHGRPPROG CHMODPROG CHOWNPROG CMPPROG CPPROG MKDIRPROG MVPROG RMPROG STRIPPROG " while test $# -ne 0; do case $1 in -c) ;; -C) copy_on_change=true;; -d) dir_arg=true;; -g) chgrpcmd="$chgrpprog $2" shift;; --help) echo "$usage"; exit $?;; -m) mode=$2 case $mode in *' '* | *' '* | *' '* | *'*'* | *'?'* | *'['*) echo "$0: invalid mode: $mode" >&2 exit 1;; esac shift;; -o) chowncmd="$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. Remove it from $@. for arg do if test -n "$dst_arg"; then # $@ is not empty: it contains at least $arg. set fnord "$@" "$dst_arg" shift # fnord fi shift # arg dst_arg=$arg done fi if test $# -eq 0; then if test -z "$dir_arg"; then echo "$0: no input file specified." >&2 exit 1 fi # It's OK to call `install-sh -d' without argument. # This can happen when creating conditional directories. exit 0 fi if test -z "$dir_arg"; then trap '(exit $?); exit' 1 2 13 15 # Set umask so as not to create temps with too-generous modes. # However, 'strip' requires both read and write access to temps. case $mode in # Optimize common cases. *644) cp_umask=133;; *755) cp_umask=22;; *[0-7]) if test -z "$stripcmd"; then u_plus_rw= else u_plus_rw='% 200' fi cp_umask=`expr '(' 777 - $mode % 1000 ')' $u_plus_rw`;; *) if test -z "$stripcmd"; then u_plus_rw= else u_plus_rw=,u+rw fi cp_umask=$mode$u_plus_rw;; esac fi for src do # Protect names starting with `-'. case $src in -*) src=./$src;; esac if test -n "$dir_arg"; then dst=$src dstdir=$dst test -d "$dstdir" dstdir_status=$? else # Waiting for this to be detected by the "$cpprog $src $dsttmp" command # might cause directories to be created, which would be especially bad # if $src (and thus $dsttmp) contains '*'. if test ! -f "$src" && test ! -d "$src"; then echo "$0: $src does not exist." >&2 exit 1 fi if test -z "$dst_arg"; then echo "$0: no destination specified." >&2 exit 1 fi dst=$dst_arg # Protect names starting with `-'. case $dst in -*) dst=./$dst;; esac # If destination is a directory, append the input filename; won't work # if double slashes aren't ignored. if test -d "$dst"; then if test -n "$no_target_directory"; then echo "$0: $dst_arg: Is a directory" >&2 exit 1 fi dstdir=$dst dst=$dstdir/`basename "$src"` dstdir_status=0 else # Prefer dirname, but fall back on a substitute if dirname fails. dstdir=` (dirname "$dst") 2>/dev/null || expr X"$dst" : 'X\(.*[^/]\)//*[^/][^/]*/*$' \| \ X"$dst" : 'X\(//\)[^/]' \| \ X"$dst" : 'X\(//\)$' \| \ X"$dst" : 'X\(/\)' \| . 2>/dev/null || echo X"$dst" | sed '/^X\(.*[^/]\)\/\/*[^/][^/]*\/*$/{ s//\1/ q } /^X\(\/\/\)[^/].*/{ s//\1/ q } /^X\(\/\/\)$/{ s//\1/ q } /^X\(\/\).*/{ s//\1/ q } s/.*/./; q' ` test -d "$dstdir" dstdir_status=$? fi fi obsolete_mkdir_used=false if test $dstdir_status != 0; then case $posix_mkdir in '') # Create intermediate dirs using mode 755 as modified by the umask. # This is like FreeBSD 'install' as of 1997-10-28. umask=`umask` case $stripcmd.$umask in # Optimize common cases. *[2367][2367]) mkdir_umask=$umask;; .*0[02][02] | .[02][02] | .[02]) mkdir_umask=22;; *[0-7]) mkdir_umask=`expr $umask + 22 \ - $umask % 100 % 40 + $umask % 20 \ - $umask % 10 % 4 + $umask % 2 `;; *) mkdir_umask=$umask,go-w;; esac # With -d, create the new directory with the user-specified mode. # Otherwise, rely on $mkdir_umask. if test -n "$dir_arg"; then mkdir_mode=-m$mode else mkdir_mode= fi posix_mkdir=false case $umask in *[123567][0-7][0-7]) # POSIX mkdir -p sets u+wx bits regardless of umask, which # is incompatible with FreeBSD 'install' when (umask & 300) != 0. ;; *) tmpdir=${TMPDIR-/tmp}/ins$RANDOM-$$ trap 'ret=$?; rmdir "$tmpdir/d" "$tmpdir" 2>/dev/null; exit $ret' 0 if (umask $mkdir_umask && exec $mkdirprog $mkdir_mode -p -- "$tmpdir/d") >/dev/null 2>&1 then if test -z "$dir_arg" || { # Check for POSIX incompatibilities with -m. # HP-UX 11.23 and IRIX 6.5 mkdir -m -p sets group- or # other-writeable bit of parent directory when it shouldn't. # FreeBSD 6.1 mkdir -m -p sets mode of existing directory. ls_ld_tmpdir=`ls -ld "$tmpdir"` case $ls_ld_tmpdir in d????-?r-*) different_mode=700;; d????-?--*) different_mode=755;; *) false;; esac && $mkdirprog -m$different_mode -p -- "$tmpdir" && { ls_ld_tmpdir_1=`ls -ld "$tmpdir"` test "$ls_ld_tmpdir" = "$ls_ld_tmpdir_1" } } then posix_mkdir=: fi rmdir "$tmpdir/d" "$tmpdir" else # Remove any dirs left behind by ancient mkdir implementations. rmdir ./$mkdir_mode ./-p ./-- 2>/dev/null fi trap '' 0;; esac;; esac if $posix_mkdir && ( umask $mkdir_umask && $doit_exec $mkdirprog $mkdir_mode -p -- "$dstdir" ) then : else # The umask is ridiculous, or mkdir does not conform to POSIX, # or it failed possibly due to a race condition. Create the # directory the slow way, step by step, checking for races as we go. case $dstdir in /*) prefix='/';; -*) prefix='./';; *) prefix='';; esac eval "$initialize_posix_glob" oIFS=$IFS IFS=/ $posix_glob set -f set fnord $dstdir shift $posix_glob set +f IFS=$oIFS prefixes= for d do test -z "$d" && continue prefix=$prefix$d if test -d "$prefix"; then prefixes= else if $posix_mkdir; then (umask=$mkdir_umask && $doit_exec $mkdirprog $mkdir_mode -p -- "$dstdir") && break # Don't fail if two instances are running concurrently. test -d "$prefix" || exit 1 else case $prefix in *\'*) qprefix=`echo "$prefix" | sed "s/'/'\\\\\\\\''/g"`;; *) qprefix=$prefix;; esac prefixes="$prefixes '$qprefix'" fi fi prefix=$prefix/ done if test -n "$prefixes"; then # Don't fail if two instances are running concurrently. (umask $mkdir_umask && eval "\$doit_exec \$mkdirprog $prefixes") || test -d "$dstdir" || exit 1 obsolete_mkdir_used=true fi fi fi if test -n "$dir_arg"; then { test -z "$chowncmd" || $doit $chowncmd "$dst"; } && { test -z "$chgrpcmd" || $doit $chgrpcmd "$dst"; } && { test "$obsolete_mkdir_used$chowncmd$chgrpcmd" = false || test -z "$chmodcmd" || $doit $chmodcmd $mode "$dst"; } || exit 1 else # Make a couple of temp file names in the proper directory. dsttmp=$dstdir/_inst.$$_ rmtmp=$dstdir/_rm.$$_ # Trap to clean up those temp files at exit. trap 'ret=$?; rm -f "$dsttmp" "$rmtmp" && exit $ret' 0 # Copy the file name to the temp name. (umask $cp_umask && $doit_exec $cpprog "$src" "$dsttmp") && # and set any options; do chmod last to preserve setuid bits. # # If any of these fail, we abort the whole thing. If we want to # ignore errors from any of these, just make sure not to ignore # errors from the above "$doit $cpprog $src $dsttmp" command. # { test -z "$chowncmd" || $doit $chowncmd "$dsttmp"; } && { test -z "$chgrpcmd" || $doit $chgrpcmd "$dsttmp"; } && { test -z "$stripcmd" || $doit $stripcmd "$dsttmp"; } && { test -z "$chmodcmd" || $doit $chmodcmd $mode "$dsttmp"; } && # If -C, don't bother to copy if it wouldn't change the file. if $copy_on_change && old=`LC_ALL=C ls -dlL "$dst" 2>/dev/null` && new=`LC_ALL=C ls -dlL "$dsttmp" 2>/dev/null` && eval "$initialize_posix_glob" && $posix_glob set -f && set X $old && old=:$2:$4:$5:$6 && set X $new && new=:$2:$4:$5:$6 && $posix_glob set +f && test "$old" = "$new" && $cmpprog "$dst" "$dsttmp" >/dev/null 2>&1 then rm -f "$dsttmp" else # Rename the file to the real destination. $doit $mvcmd -f "$dsttmp" "$dst" 2>/dev/null || # The rename failed, perhaps because mv can't rename something else # to itself, or perhaps because mv is so ancient that it does not # support -f. { # Now remove or move aside any old file at destination location. # We try this two ways since rm can't unlink itself on some # systems and the destination file might be busy for other # reasons. In this case, the final cleanup might fail but the new # file should still install successfully. { test ! -f "$dst" || $doit $rmcmd -f "$dst" 2>/dev/null || { $doit $mvcmd -f "$dst" "$rmtmp" 2>/dev/null && { $doit $rmcmd -f "$rmtmp" 2>/dev/null; :; } } || { echo "$0: cannot unlink or rename $dst" >&2 (exit 1); exit 1 } } && # Now rename the file to the real destination. $doit $mvcmd "$dsttmp" "$dst" } fi || exit 1 trap '' 0 fi done # Local variables: # eval: (add-hook 'write-file-hooks 'time-stamp) # time-stamp-start: "scriptversion=" # time-stamp-format: "%:y-%02m-%02d.%02H" # time-stamp-time-zone: "UTC" # time-stamp-end: "; # UTC" # End: rtkit-0.10/rtkit-daemon.service.in0000664000076400007640000000166711527067122014124 00000000000000# This file is part of RealtimeKit. # # Copyright 2010 Lennart Poettering # # RealtimeKit is free software: you can redistribute it and/or modify # it under the terms of the GNU General Public License as published by # the Free Software Foundation, either version 3 of the License, or # (at your option) any later version. # # RealtimeKit 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 RealtimeKit. If not, see . [Unit] Description=RealtimeKit Scheduling Policy Service After=syslog.target [Service] ExecStart=@LIBEXECDIR@/rtkit-daemon Type=dbus BusName=org.freedesktop.RealtimeKit1 NotifyAccess=main ControlGroup=cpu:/ [Install] WantedBy=graphical.target rtkit-0.10/org.freedesktop.RealtimeKit1.service.in0000664000076400007640000000150111435335267017112 00000000000000# This file is part of RealtimeKit. # # Copyright 2009 Lennart Poettering # # RealtimeKit is free software: you can redistribute it and/or modify # it under the terms of the GNU General Public License as published by # the Free Software Foundation, either version 3 of the License, or # (at your option) any later version. # # RealtimeKit 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. 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Copyright (C) This program is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program. If not, see . Also add information on how to contact you by electronic and paper mail. If the program does terminal interaction, make it output a short notice like this when it starts in an interactive mode: Copyright (C) This program comes with ABSOLUTELY NO WARRANTY; for details type `show w'. This is free software, and you are welcome to redistribute it under certain conditions; type `show c' for details. The hypothetical commands `show w' and `show c' should show the appropriate parts of the General Public License. Of course, your program's commands might be different; for a GUI interface, you would use an "about box". You should also get your employer (if you work as a programmer) or school, if any, to sign a "copyright disclaimer" for the program, if necessary. For more information on this, and how to apply and follow the GNU GPL, see . The GNU General Public License does not permit incorporating your program into proprietary programs. If your program is a subroutine library, you may consider it more useful to permit linking proprietary applications with the library. If this is what you want to do, use the GNU Lesser General Public License instead of this License. But first, please read . rtkit-0.10/config.sub0000755000076400007640000010316711527241370011515 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='2009-11-20' # 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 GNU 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. # You can get the latest version of this script from: # http://git.savannah.gnu.org/gitweb/?p=config.git;a=blob_plain;f=config.sub;hb=HEAD # This file is supposed to be the same for all GNU packages # and recognize all the CPU types, system types and aliases # that are meaningful with *any* GNU software. # Each package is responsible for reporting which valid configurations # it does not support. The user should be able to distinguish # a failure to support a valid configuration from a meaningless # configuration. # The goal of this file is to map all the various variations of a given # machine specification into a single specification in the form: # CPU_TYPE-MANUFACTURER-OPERATING_SYSTEM # or in some cases, the newer four-part form: # CPU_TYPE-MANUFACTURER-KERNEL-OPERATING_SYSTEM # It is wrong to echo any other type of specification. me=`echo "$0" | sed -e 's,.*/,,'` usage="\ Usage: $0 [OPTION] CPU-MFR-OPSYS $0 [OPTION] ALIAS Canonicalize a configuration name. Operation modes: -h, --help print this help, then exit -t, --time-stamp print date of last modification, then exit -v, --version print version number, then exit Report bugs and patches to ." version="\ GNU config.sub ($timestamp) Copyright (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 | -microblaze) os= basic_machine=$1 ;; -bluegene*) os=-cnk ;; -sim | -cisco | -oki | -wec | -winbond) os= basic_machine=$1 ;; -scout) ;; -wrs) os=-vxworks basic_machine=$1 ;; -chorusos*) os=-chorusos basic_machine=$1 ;; -chorusrdb) os=-chorusrdb basic_machine=$1 ;; -hiux*) os=-hiuxwe2 ;; -sco6) os=-sco5v6 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco5) os=-sco3.2v5 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco4) os=-sco3.2v4 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco3.2.[4-9]*) os=`echo $os | sed -e 's/sco3.2./sco3.2v/'` basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco3.2v[4-9]*) # Don't forget version if it is 3.2v4 or newer. basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco5v6*) # Don't forget version if it is 3.2v4 or newer. basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco*) os=-sco3.2v2 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -udk*) basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -isc) os=-isc2.2 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -clix*) basic_machine=clipper-intergraph ;; -isc*) basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -lynx*) os=-lynxos ;; -ptx*) basic_machine=`echo $1 | sed -e 's/86-.*/86-sequent/'` ;; -windowsnt*) os=`echo $os | sed -e 's/windowsnt/winnt/'` ;; -psos*) os=-psos ;; -mint | -mint[0-9]*) basic_machine=m68k-atari os=-mint ;; esac # Decode aliases for certain CPU-COMPANY combinations. case $basic_machine in # Recognize the basic CPU types without company name. # Some are omitted here because they have special meanings below. 1750a | 580 \ | a29k \ | alpha | alphaev[4-8] | alphaev56 | alphaev6[78] | alphapca5[67] \ | alpha64 | alpha64ev[4-8] | alpha64ev56 | alpha64ev6[78] | alpha64pca5[67] \ | am33_2.0 \ | arc | arm | arm[bl]e | arme[lb] | armv[2345] | armv[345][lb] | avr | avr32 \ | bfin \ | c4x | clipper \ | d10v | d30v | dlx | dsp16xx \ | fido | fr30 | frv \ | h8300 | h8500 | hppa | hppa1.[01] | hppa2.0 | hppa2.0[nw] | hppa64 \ | i370 | i860 | i960 | ia64 \ | ip2k | iq2000 \ | lm32 \ | m32c | m32r | m32rle | m68000 | m68k | m88k \ | maxq | mb | microblaze | mcore | mep | metag \ | mips | mipsbe | mipseb | mipsel | mipsle \ | mips16 \ | mips64 | mips64el \ | mips64octeon | mips64octeonel \ | mips64orion | mips64orionel \ | mips64r5900 | mips64r5900el \ | mips64vr | mips64vrel \ | mips64vr4100 | mips64vr4100el \ | mips64vr4300 | mips64vr4300el \ | mips64vr5000 | mips64vr5000el \ | mips64vr5900 | mips64vr5900el \ | mipsisa32 | mipsisa32el \ | mipsisa32r2 | mipsisa32r2el \ | mipsisa64 | mipsisa64el \ | mipsisa64r2 | mipsisa64r2el \ | mipsisa64sb1 | mipsisa64sb1el \ | mipsisa64sr71k | mipsisa64sr71kel \ | mipstx39 | mipstx39el \ | mn10200 | mn10300 \ | moxie \ | mt \ | msp430 \ | nios | nios2 \ | ns16k | ns32k \ | or32 \ | pdp10 | pdp11 | pj | pjl \ | powerpc | powerpc64 | powerpc64le | powerpcle | ppcbe \ | pyramid \ | rx \ | score \ | sh | sh[1234] | sh[24]a | sh[24]aeb | sh[23]e | sh[34]eb | sheb | shbe | shle | sh[1234]le | sh3ele \ | sh64 | sh64le \ | sparc | sparc64 | sparc64b | sparc64v | sparc86x | sparclet | sparclite \ | sparcv8 | sparcv9 | sparcv9b | sparcv9v \ | spu | strongarm \ | tahoe | thumb | tic4x | tic80 | tron \ | ubicom32 \ | v850 | v850e \ | we32k \ | x86 | xc16x | xscale | xscalee[bl] | xstormy16 | xtensa \ | z8k | z80) basic_machine=$basic_machine-unknown ;; m6811 | m68hc11 | m6812 | m68hc12 | picochip) # 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-* | microblaze-* \ | mips-* | mipsbe-* | mipseb-* | mipsel-* | mipsle-* \ | mips16-* \ | mips64-* | mips64el-* \ | mips64octeon-* | mips64octeonel-* \ | mips64orion-* | mips64orionel-* \ | mips64r5900-* | mips64r5900el-* \ | mips64vr-* | mips64vrel-* \ | mips64vr4100-* | mips64vr4100el-* \ | mips64vr4300-* | mips64vr4300el-* \ | mips64vr5000-* | mips64vr5000el-* \ | mips64vr5900-* | mips64vr5900el-* \ | mipsisa32-* | mipsisa32el-* \ | mipsisa32r2-* | mipsisa32r2el-* \ | mipsisa64-* | mipsisa64el-* \ | mipsisa64r2-* | mipsisa64r2el-* \ | mipsisa64sb1-* | mipsisa64sb1el-* \ | mipsisa64sr71k-* | mipsisa64sr71kel-* \ | mipstx39-* | mipstx39el-* \ | mmix-* \ | mt-* \ | msp430-* \ | nios-* | nios2-* \ | none-* | np1-* | ns16k-* | ns32k-* \ | orion-* \ | pdp10-* | pdp11-* | pj-* | pjl-* | pn-* | power-* \ | powerpc-* | powerpc64-* | powerpc64le-* | powerpcle-* | ppcbe-* \ | pyramid-* \ | romp-* | rs6000-* | rx-* \ | sh-* | sh[1234]-* | sh[24]a-* | sh[24]aeb-* | sh[23]e-* | sh[34]eb-* | sheb-* | shbe-* \ | shle-* | sh[1234]le-* | sh3ele-* | sh64-* | sh64le-* \ | sparc-* | sparc64-* | sparc64b-* | sparc64v-* | sparc86x-* | sparclet-* \ | sparclite-* \ | sparcv8-* | sparcv9-* | sparcv9b-* | sparcv9v-* | strongarm-* | sv1-* | sx?-* \ | tahoe-* | thumb-* \ | tic30-* | tic4x-* | tic54x-* | tic55x-* | tic6x-* | tic80-* | tile-* \ | tron-* \ | ubicom32-* \ | 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 ;; microblaze) basic_machine=microblaze-xilinx ;; mingw32) basic_machine=i386-pc os=-mingw32 ;; mingw32ce) basic_machine=arm-unknown os=-mingw32ce ;; miniframe) basic_machine=m68000-convergent ;; *mint | -mint[0-9]* | *MiNT | *MiNT[0-9]*) basic_machine=m68k-atari os=-mint ;; mips3*-*) basic_machine=`echo $basic_machine | sed -e 's/mips3/mips64/'` ;; mips3*) basic_machine=`echo $basic_machine | sed -e 's/mips3/mips64/'`-unknown ;; monitor) basic_machine=m68k-rom68k os=-coff ;; morphos) basic_machine=powerpc-unknown os=-morphos ;; msdos) basic_machine=i386-pc os=-msdos ;; ms1-*) basic_machine=`echo $basic_machine | sed -e 's/ms1-/mt-/'` ;; 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 ;; pentiumii | pentium2 | pentiumiii | pentium3) basic_machine=i686-pc ;; pentium4) basic_machine=i786-pc ;; pentium-* | p5-* | k5-* | k6-* | nexgen-* | viac3-*) basic_machine=i586-`echo $basic_machine | sed 's/^[^-]*-//'` ;; pentiumpro-* | p6-* | 6x86-* | athlon-*) basic_machine=i686-`echo $basic_machine | sed 's/^[^-]*-//'` ;; pentiumii-* | pentium2-* | pentiumiii-* | pentium3-*) basic_machine=i686-`echo $basic_machine | sed 's/^[^-]*-//'` ;; pentium4-*) basic_machine=i786-`echo $basic_machine | sed 's/^[^-]*-//'` ;; pn) basic_machine=pn-gould ;; power) basic_machine=power-ibm ;; ppc) basic_machine=powerpc-unknown ;; ppc-*) basic_machine=powerpc-`echo $basic_machine | sed 's/^[^-]*-//'` ;; ppcle | powerpclittle | ppc-le | powerpc-little) basic_machine=powerpcle-unknown ;; ppcle-* | powerpclittle-*) basic_machine=powerpcle-`echo $basic_machine | sed 's/^[^-]*-//'` ;; ppc64) basic_machine=powerpc64-unknown ;; ppc64-*) basic_machine=powerpc64-`echo $basic_machine | sed 's/^[^-]*-//'` ;; ppc64le | powerpc64little | ppc64-le | powerpc64-little) basic_machine=powerpc64le-unknown ;; ppc64le-* | powerpc64little-*) basic_machine=powerpc64le-`echo $basic_machine | sed 's/^[^-]*-//'` ;; ps2) basic_machine=i386-ibm ;; pw32) basic_machine=i586-unknown os=-pw32 ;; rdos) basic_machine=i386-pc os=-rdos ;; rom68k) basic_machine=m68k-rom68k os=-coff ;; rm[46]00) basic_machine=mips-siemens ;; rtpc | rtpc-*) basic_machine=romp-ibm ;; s390 | s390-*) basic_machine=s390-ibm ;; s390x | s390x-*) basic_machine=s390x-ibm ;; sa29200) basic_machine=a29k-amd os=-udi ;; sb1) basic_machine=mipsisa64sb1-unknown ;; sb1el) basic_machine=mipsisa64sb1el-unknown ;; sde) basic_machine=mipsisa32-sde os=-elf ;; sei) basic_machine=mips-sei os=-seiux ;; sequent) basic_machine=i386-sequent ;; sh) basic_machine=sh-hitachi os=-hms ;; sh5el) basic_machine=sh5le-unknown ;; sh64) basic_machine=sh64-unknown ;; sparclite-wrs | simso-wrs) basic_machine=sparclite-wrs os=-vxworks ;; sps7) basic_machine=m68k-bull os=-sysv2 ;; spur) basic_machine=spur-unknown ;; st2000) basic_machine=m68k-tandem ;; stratus) basic_machine=i860-stratus os=-sysv4 ;; sun2) basic_machine=m68000-sun ;; sun2os3) basic_machine=m68000-sun os=-sunos3 ;; sun2os4) basic_machine=m68000-sun os=-sunos4 ;; sun3os3) basic_machine=m68k-sun os=-sunos3 ;; sun3os4) basic_machine=m68k-sun os=-sunos4 ;; sun4os3) basic_machine=sparc-sun os=-sunos3 ;; sun4os4) basic_machine=sparc-sun os=-sunos4 ;; sun4sol2) basic_machine=sparc-sun os=-solaris2 ;; sun3 | sun3-*) basic_machine=m68k-sun ;; sun4) basic_machine=sparc-sun ;; sun386 | sun386i | roadrunner) basic_machine=i386-sun ;; sv1) basic_machine=sv1-cray os=-unicos ;; symmetry) basic_machine=i386-sequent os=-dynix ;; t3e) basic_machine=alphaev5-cray os=-unicos ;; t90) basic_machine=t90-cray os=-unicos ;; tic54x | c54x*) basic_machine=tic54x-unknown os=-coff ;; tic55x | c55x*) basic_machine=tic55x-unknown os=-coff ;; tic6x | c6x*) basic_machine=tic6x-unknown os=-coff ;; tile*) basic_machine=tile-unknown os=-linux-gnu ;; tx39) basic_machine=mipstx39-unknown ;; tx39el) basic_machine=mipstx39el-unknown ;; toad1) basic_machine=pdp10-xkl os=-tops20 ;; tower | tower-32) basic_machine=m68k-ncr ;; tpf) basic_machine=s390x-ibm os=-tpf ;; udi29k) basic_machine=a29k-amd os=-udi ;; ultra3) basic_machine=a29k-nyu os=-sym1 ;; v810 | necv810) basic_machine=v810-nec os=-none ;; vaxv) basic_machine=vax-dec os=-sysv ;; vms) basic_machine=vax-dec os=-vms ;; vpp*|vx|vx-*) basic_machine=f301-fujitsu ;; vxworks960) basic_machine=i960-wrs os=-vxworks ;; vxworks68) basic_machine=m68k-wrs os=-vxworks ;; vxworks29k) basic_machine=a29k-wrs os=-vxworks ;; w65*) basic_machine=w65-wdc os=-none ;; w89k-*) basic_machine=hppa1.1-winbond os=-proelf ;; xbox) basic_machine=i686-pc os=-mingw32 ;; xps | xps100) basic_machine=xps100-honeywell ;; ymp) basic_machine=ymp-cray os=-unicos ;; z8k-*-coff) basic_machine=z8k-unknown os=-sim ;; z80-*-coff) basic_machine=z80-unknown os=-sim ;; none) basic_machine=none-none os=-none ;; # Here we handle the default manufacturer of certain CPU types. It is in # some cases the only manufacturer, in others, it is the most popular. w89k) basic_machine=hppa1.1-winbond ;; op50n) basic_machine=hppa1.1-oki ;; op60c) basic_machine=hppa1.1-oki ;; romp) basic_machine=romp-ibm ;; mmix) basic_machine=mmix-knuth ;; rs6000) basic_machine=rs6000-ibm ;; vax) basic_machine=vax-dec ;; pdp10) # there are many clones, so DEC is not a safe bet basic_machine=pdp10-unknown ;; pdp11) basic_machine=pdp11-dec ;; we32k) basic_machine=we32k-att ;; sh[1234] | sh[24]a | sh[24]aeb | sh[34]eb | sh[1234]le | sh[23]ele) basic_machine=sh-unknown ;; sparc | sparcv8 | sparcv9 | sparcv9b | sparcv9v) basic_machine=sparc-sun ;; cydra) basic_machine=cydra-cydrome ;; orion) basic_machine=orion-highlevel ;; orion105) basic_machine=clipper-highlevel ;; mac | mpw | mac-mpw) basic_machine=m68k-apple ;; pmac | pmac-mpw) basic_machine=powerpc-apple ;; *-unknown) # Make sure to match an already-canonicalized machine name. ;; *) echo Invalid configuration \`$1\': machine \`$basic_machine\' not recognized 1>&2 exit 1 ;; esac # Here we canonicalize certain aliases for manufacturers. case $basic_machine in *-digital*) basic_machine=`echo $basic_machine | sed 's/digital.*/dec/'` ;; *-commodore*) basic_machine=`echo $basic_machine | sed 's/commodore.*/cbm/'` ;; *) ;; esac # Decode manufacturer-specific aliases for certain operating systems. if [ x"$os" != x"" ] then case $os in # First match some system type aliases # that might get confused with valid system types. # -solaris* is a basic system type, with this one exception. -auroraux) os=-auroraux ;; -solaris1 | -solaris1.*) os=`echo $os | sed -e 's|solaris1|sunos4|'` ;; -solaris) os=-solaris2 ;; -svr4*) os=-sysv4 ;; -unixware*) os=-sysv4.2uw ;; -gnu/linux*) os=`echo $os | sed -e 's|gnu/linux|linux-gnu|'` ;; # First accept the basic system types. # The portable systems comes first. # Each alternative MUST END IN A *, to match a version number. # -sysv* is not here because it comes later, after sysvr4. -gnu* | -bsd* | -mach* | -minix* | -genix* | -ultrix* | -irix* \ | -*vms* | -sco* | -esix* | -isc* | -aix* | -cnk* | -sunos | -sunos[34]*\ | -hpux* | -unos* | -osf* | -luna* | -dgux* | -auroraux* | -solaris* \ | -sym* | -kopensolaris* \ | -amigaos* | -amigados* | -msdos* | -newsos* | -unicos* | -aof* \ | -aos* | -aros* \ | -nindy* | -vxsim* | -vxworks* | -ebmon* | -hms* | -mvs* \ | -clix* | -riscos* | -uniplus* | -iris* | -rtu* | -xenix* \ | -hiux* | -386bsd* | -knetbsd* | -mirbsd* | -netbsd* \ | -openbsd* | -solidbsd* \ | -ekkobsd* | -kfreebsd* | -freebsd* | -riscix* | -lynxos* \ | -bosx* | -nextstep* | -cxux* | -aout* | -elf* | -oabi* \ | -ptx* | -coff* | -ecoff* | -winnt* | -domain* | -vsta* \ | -udi* | -eabi* | -lites* | -ieee* | -go32* | -aux* \ | -chorusos* | -chorusrdb* | -cegcc* \ | -cygwin* | -pe* | -psos* | -moss* | -proelf* | -rtems* \ | -mingw32* | -linux-gnu* | -linux-newlib* | -linux-uclibc* \ | -uxpv* | -beos* | -mpeix* | -udk* \ | -interix* | -uwin* | -mks* | -rhapsody* | -darwin* | -opened* \ | -openstep* | -oskit* | -conix* | -pw32* | -nonstopux* \ | -storm-chaos* | -tops10* | -tenex* | -tops20* | -its* \ | -os2* | -vos* | -palmos* | -uclinux* | -nucleus* \ | -morphos* | -superux* | -rtmk* | -rtmk-nova* | -windiss* \ | -powermax* | -dnix* | -nx6 | -nx7 | -sei* | -dragonfly* \ | -skyos* | -haiku* | -rdos* | -toppers* | -drops* | -es*) # Remember, each alternative MUST END IN *, to match a version number. ;; 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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: rtkit-0.10/rtkit.c0000664000076400007640000002152611435335267011042 00000000000000/*-*- Mode: C; c-basic-offset: 8 -*-*/ /*** Copyright 2009 Lennart Poettering Copyright 2010 David Henningsson 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. ***/ #include #include "rtkit.h" #ifdef __linux__ #ifndef _GNU_SOURCE #define _GNU_SOURCE #endif #include #include #include #include static pid_t _gettid(void) { return (pid_t) syscall(SYS_gettid); } static int translate_error(const char *name) { if (strcmp(name, DBUS_ERROR_NO_MEMORY) == 0) return -ENOMEM; if (strcmp(name, DBUS_ERROR_SERVICE_UNKNOWN) == 0 || strcmp(name, DBUS_ERROR_NAME_HAS_NO_OWNER) == 0) return -ENOENT; if (strcmp(name, DBUS_ERROR_ACCESS_DENIED) == 0 || strcmp(name, DBUS_ERROR_AUTH_FAILED) == 0) return -EACCES; return -EIO; } static long long rtkit_get_int_property(DBusConnection *connection, const char* propname, long long* propval) { DBusMessage *m = NULL, *r = NULL; DBusMessageIter iter, subiter; dbus_int64_t i64; dbus_int32_t i32; DBusError error; int current_type; long long ret; const char * interfacestr = "org.freedesktop.RealtimeKit1"; dbus_error_init(&error); if (!(m = dbus_message_new_method_call( RTKIT_SERVICE_NAME, RTKIT_OBJECT_PATH, "org.freedesktop.DBus.Properties", "Get"))) { ret = -ENOMEM; goto finish; } if (!dbus_message_append_args( m, DBUS_TYPE_STRING, &interfacestr, DBUS_TYPE_STRING, &propname, DBUS_TYPE_INVALID)) { ret = -ENOMEM; goto finish; } if (!(r = dbus_connection_send_with_reply_and_block(connection, m, -1, &error))) { ret = translate_error(error.name); goto finish; } if (dbus_set_error_from_message(&error, r)) { ret = translate_error(error.name); goto finish; } ret = -EBADMSG; dbus_message_iter_init(r, &iter); while ((current_type = dbus_message_iter_get_arg_type (&iter)) != DBUS_TYPE_INVALID) { if (current_type == DBUS_TYPE_VARIANT) { dbus_message_iter_recurse(&iter, &subiter); while ((current_type = dbus_message_iter_get_arg_type (&subiter)) != DBUS_TYPE_INVALID) { if (current_type == DBUS_TYPE_INT32) { dbus_message_iter_get_basic(&subiter, &i32); *propval = i32; ret = 0; } if (current_type == DBUS_TYPE_INT64) { dbus_message_iter_get_basic(&subiter, &i64); *propval = i64; ret = 0; } dbus_message_iter_next (&subiter); } } dbus_message_iter_next (&iter); } finish: if (m) dbus_message_unref(m); if (r) dbus_message_unref(r); dbus_error_free(&error); return ret; } int rtkit_get_max_realtime_priority(DBusConnection *connection) { long long retval; int err; err = rtkit_get_int_property(connection, "MaxRealtimePriority", &retval); return err < 0 ? err : retval; } int rtkit_get_min_nice_level(DBusConnection *connection, int* min_nice_level) { long long retval; int err; err = rtkit_get_int_property(connection, "MinNiceLevel", &retval); if (err >= 0) *min_nice_level = retval; return err; } long long rtkit_get_rttime_nsec_max(DBusConnection *connection) { long long retval; int err; err = rtkit_get_int_property(connection, "RTTimeNSecMax", &retval); return err < 0 ? err : retval; } int rtkit_make_realtime(DBusConnection *connection, pid_t thread, int priority) { DBusMessage *m = NULL, *r = NULL; dbus_uint64_t u64; dbus_uint32_t u32; DBusError error; int ret; dbus_error_init(&error); if (thread == 0) thread = _gettid(); if (!(m = dbus_message_new_method_call( RTKIT_SERVICE_NAME, RTKIT_OBJECT_PATH, "org.freedesktop.RealtimeKit1", "MakeThreadRealtime"))) { ret = -ENOMEM; goto finish; } u64 = (dbus_uint64_t) thread; u32 = (dbus_uint32_t) priority; if (!dbus_message_append_args( m, DBUS_TYPE_UINT64, &u64, DBUS_TYPE_UINT32, &u32, DBUS_TYPE_INVALID)) { ret = -ENOMEM; goto finish; } if (!(r = dbus_connection_send_with_reply_and_block(connection, m, -1, &error))) { ret = translate_error(error.name); goto finish; } if (dbus_set_error_from_message(&error, r)) { ret = translate_error(error.name); goto finish; } ret = 0; finish: if (m) dbus_message_unref(m); if (r) dbus_message_unref(r); dbus_error_free(&error); return ret; } int rtkit_make_high_priority(DBusConnection *connection, pid_t thread, int nice_level) { DBusMessage *m = NULL, *r = NULL; dbus_uint64_t u64; dbus_int32_t s32; DBusError error; int ret; dbus_error_init(&error); if (thread == 0) thread = _gettid(); if (!(m = dbus_message_new_method_call( RTKIT_SERVICE_NAME, RTKIT_OBJECT_PATH, "org.freedesktop.RealtimeKit1", "MakeThreadHighPriority"))) { ret = -ENOMEM; goto finish; } u64 = (dbus_uint64_t) thread; s32 = (dbus_int32_t) nice_level; if (!dbus_message_append_args( m, DBUS_TYPE_UINT64, &u64, DBUS_TYPE_INT32, &s32, DBUS_TYPE_INVALID)) { ret = -ENOMEM; goto finish; } if (!(r = dbus_connection_send_with_reply_and_block(connection, m, -1, &error))) { ret = translate_error(error.name); goto finish; } if (dbus_set_error_from_message(&error, r)) { ret = translate_error(error.name); goto finish; } ret = 0; finish: if (m) dbus_message_unref(m); if (r) dbus_message_unref(r); dbus_error_free(&error); return ret; } #else int rtkit_make_realtime(DBusConnection *connection, pid_t thread, int priority) { return -ENOTSUP; } int rtkit_make_high_priority(DBusConnection *connection, pid_t thread, int nice_level) { return -ENOTSUP; } int rtkit_get_max_realtime_priority(DBusConnection *connection) { return -ENOTSUP; } int rtkit_get_min_nice_level(DBusConnection *connection, int* min_nice_level) { return -ENOTSUP; } long long rtkit_get_rttime_nsec_max(DBusConnection *connection) { return -ENOTSUP; } #endif rtkit-0.10/LICENSE0000664000076400007640000000032711435335267010542 00000000000000LICENSES The daemon itself is GPL3 licensed, for more information see the GPL file. The client library is BSD licensed, for more information see the headers of the appropriate files. Lennart Poettering, 2009 rtkit-0.10/configure.ac0000664000076400007640000000722011527304457012021 00000000000000# -*- Autoconf -*- # Process this file with autoconf to produce a configure script. # This file is part of RealtimeKit. # # Copyright 2009 Lennart Poettering # # RealtimeKit is free software: you can redistribute it and/or modify # it under the terms of the GNU General Public License as published by # the Free Software Foundation, either version 3 of the License, or # (at your option) any later version. # # RealtimeKit 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 RealtimeKit. If not, see . AC_PREREQ(2.63) AC_INIT([rtkit], 0.10, [mzegxvg (at) 0pointer (dot) net]) AC_CONFIG_SRCDIR([rtkit-daemon.c]) AC_CONFIG_HEADERS([config.h]) AC_CONFIG_MACRO_DIR(m4) AM_INIT_AUTOMAKE([foreign 1.11 -Wno-portability silent-rules -Wall]) m4_ifdef([AM_SILENT_RULES], [AM_SILENT_RULES([yes])]) AC_SUBST(PACKAGE_URL, [http://git.0pointer.de/?p=rtkit.git]) AC_CANONICAL_HOST if type -p stow > /dev/null && test -d /usr/local/stow ; then AC_MSG_NOTICE([*** Found /usr/local/stow: default install prefix set to /usr/local/stow/${PACKAGE_NAME}-${PACKAGE_VERSION} ***]) ac_default_prefix="/usr/local/stow/${PACKAGE_NAME}-${PACKAGE_VERSION}" fi #### Checks for programs. #### # CC AC_PROG_CC AC_PROG_CC_C99 AM_PROG_CC_C_O AC_PROG_GCC_TRADITIONAL AC_USE_SYSTEM_EXTENSIONS # GCC flags test_gcc_flag() { AC_LANG_CONFTEST([int main(int argc, char*argv[]) {}]) $CC -c conftest.c $CFLAGS "$1" -o conftest.o > /dev/null 2> /dev/null ret=$? rm -f conftest.o return $ret } # If using GCC specify some additional parameters if test "x$GCC" = "xyes" ; then # We use gnu99 instead of c99 because many have interpreted the standard # in a way that int64_t isn't defined on non-64 bit platforms. DESIRED_FLAGS="-std=gnu99 -Wall -W -Wextra -pedantic -pipe -Wformat -Wold-style-definition -Wdeclaration-after-statement -Wfloat-equal -Wmissing-declarations -Wmissing-prototypes -Wstrict-prototypes -Wredundant-decls -Wmissing-noreturn -Wshadow -Wendif-labels -Wpointer-arith -Wcast-align -Wwrite-strings -Winline -Wno-unused-parameter -ffast-math" for flag in $DESIRED_FLAGS ; do AC_MSG_CHECKING([whether $CC accepts $flag]) if test_gcc_flag $flag ; then CFLAGS="$CFLAGS $flag" CXXFLAGS="$CXXFLAGS $flag" AC_MSG_RESULT([yes]) else AC_MSG_RESULT([no]) fi done fi ACX_PTHREAD LIBS="$PTHREAD_LIBS $LIBS" CFLAGS="$CFLAGS $PTHREAD_CFLAGS" CC="$PTHREAD_CC" AC_SYS_LARGEFILE AC_SEARCH_LIBS([sched_setscheduler], [rt]) AC_SEARCH_LIBS([clock_gettime], [rt]) AC_SEARCH_LIBS([cap_init], [cap]) PKG_CHECK_MODULES(DBUS, dbus-1) AC_ARG_WITH([systemdsystemunitdir], AS_HELP_STRING([--with-systemdsystemunitdir=DIR], [Directory for systemd service files]), [], [with_systemdsystemunitdir=$($PKG_CONFIG --variable=systemdsystemunitdir systemd)]) AC_SUBST([systemdsystemunitdir], [$with_systemdsystemunitdir]) AM_CONDITIONAL(HAVE_SYSTEMD, [test -n "$with_systemdsystemunitdir"]) ################################### # Output # ################################### AC_CONFIG_FILES([ Makefile ]) AC_OUTPUT echo " ---{ $PACKAGE_NAME $VERSION }--- prefix: ${prefix} sysconfdir: ${sysconfdir} localstatedir: ${localstatedir} Compiler: ${CC} CFLAGS: ${CFLAGS} systemd unit directory: ${systemdsystemunitdir} " rtkit-0.10/rtkitctl.80000664000076400007640000000274611435335267011475 00000000000000.\" Hey, EMACS: -*- nroff -*- .\" First parameter, NAME, should be all caps .\" Second parameter, SECTION, should be 1-8, maybe w/ subsection .\" other parameters are allowed: see man(7), man(1) .TH RTKITCTL 8 "July 1, 2009" .\" Please adjust this date whenever revising the manpage. .\" .\" Some roff macros, for reference: .\" .nh disable hyphenation .\" .hy enable hyphenation .\" .ad l left justify .\" .ad b justify to both left and right margins .\" .nf disable filling .\" .fi enable filling .\" .br insert line break .\" .sp insert n+1 empty lines .\" for manpage-specific macros, see man(7) .SH NAME rtkitctl \- Realtime Policy and Watchdog daemon control .SH SYNOPSIS .B rtkitctl .RI [ options ] .SH DESCRIPTION .B RealtimeKit is a D-Bus system service that changes the scheduling policy of user processes/threads to SCHED_RR (i.e. realtime scheduling mode) on request. It is intended to be used as a secure mechanism to allow real-time scheduling to be used by normal user processes. .SH OPTIONS .TP .B \-h, \-\-help Show a summary of options. .TP .B \-\-version Show version. .TP .B \-\-reset\-known Reset real-time status of known threads. .TP .B \-\-reset\-all Reset real-time status of all threads. .TP .B \-\-start Start RealtimeKit if it is not running already. .TP .B \-k, \-\-exit Terminate running RealtimeKit daemon. .SH AUTHOR RealtimeKit was written by Lennart Poettering . rtkit-0.10/config.guess0000755000076400007640000012761511527241370012056 00000000000000#! /bin/sh # Attempt to guess a canonical system name. # 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='2009-11-20' # 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. # Originally written by Per Bothner. Please send patches (context # diff format) to and include a ChangeLog # entry. # # This script attempts to guess a canonical system name similar to # config.sub. If it succeeds, it prints the system name on stdout, and # exits with 0. Otherwise, it exits with 1. # # You can get the latest version of this script from: # http://git.savannah.gnu.org/gitweb/?p=config.git;a=blob_plain;f=config.guess;hb=HEAD me=`echo "$0" | sed -e 's,.*/,,'` usage="\ Usage: $0 [OPTION] Output the configuration name of the system \`$me' is run on. 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.guess ($timestamp) Originally written by Per Bothner. Copyright (C) 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008 Free Software Foundation, Inc. This is free software; see the source for copying conditions. There is NO warranty; not even for MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE." help=" Try \`$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" >&2 exit 1 ;; * ) break ;; esac done if test $# != 0; then echo "$me: too many arguments$help" >&2 exit 1 fi trap 'exit 1' 1 2 15 # CC_FOR_BUILD -- compiler used by this script. Note that the use of a # compiler to aid in system detection is discouraged as it requires # temporary files to be created and, as you can see below, it is a # headache to deal with in a portable fashion. # Historically, `CC_FOR_BUILD' used to be named `HOST_CC'. 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The system name ranges from "MiNT" over "FreeMiNT" # to the lowercase version "mint" (or "freemint"). Finally # the system name "TOS" denotes a system which is actually not # MiNT. 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) HP_ARCH=m68000 ;; 9000/[34]?? ) HP_ARCH=m68k ;; 9000/[678][0-9][0-9]) if [ -x /usr/bin/getconf ]; then sc_cpu_version=`/usr/bin/getconf SC_CPU_VERSION 2>/dev/null` sc_kernel_bits=`/usr/bin/getconf SC_KERNEL_BITS 2>/dev/null` case "${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*:*) case ${UNAME_MACHINE} in x86) echo i586-pc-interix${UNAME_RELEASE} exit ;; authenticamd | genuineintel | EM64T) echo x86_64-unknown-interix${UNAME_RELEASE} exit ;; IA64) echo ia64-unknown-interix${UNAME_RELEASE} exit ;; esac ;; [345]86:Windows_95:* | [345]86:Windows_98:* | [345]86:Windows_NT:*) echo i${UNAME_MACHINE}-pc-mks exit ;; 8664:Windows_NT:*) echo x86_64-pc-mks exit ;; i*:Windows_NT*:* | Pentium*:Windows_NT*:*) # How do we know it's Interix rather than the generic POSIX subsystem? # It also conflicts with pre-2.0 versions of AT&T UWIN. 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EV67) UNAME_MACHINE=alphaev67 ;; EV68*) UNAME_MACHINE=alphaev68 ;; esac objdump --private-headers /bin/sh | grep -q ld.so.1 if test "$?" = 0 ; then LIBC="libc1" ; else LIBC="" ; fi echo ${UNAME_MACHINE}-unknown-linux-gnu${LIBC} exit ;; arm*:Linux:*:*) eval $set_cc_for_build if echo __ARM_EABI__ | $CC_FOR_BUILD -E - 2>/dev/null \ | grep -q __ARM_EABI__ then echo ${UNAME_MACHINE}-unknown-linux-gnu else 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 ;; i*86:Linux:*:*) LIBC=gnu eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #ifdef __dietlibc__ LIBC=dietlibc #endif EOF eval `$CC_FOR_BUILD -E $dummy.c 2>/dev/null | grep '^LIBC'` echo "${UNAME_MACHINE}-pc-linux-${LIBC}" exit ;; ia64:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; m32r*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; m68*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; mips:Linux:*:* | mips64:Linux:*:*) eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #undef CPU #undef ${UNAME_MACHINE} #undef ${UNAME_MACHINE}el #if defined(__MIPSEL__) || defined(__MIPSEL) || defined(_MIPSEL) || defined(MIPSEL) CPU=${UNAME_MACHINE}el #else #if defined(__MIPSEB__) || defined(__MIPSEB) || defined(_MIPSEB) || defined(MIPSEB) CPU=${UNAME_MACHINE} #else CPU= #endif #endif EOF eval `$CC_FOR_BUILD -E $dummy.c 2>/dev/null | grep '^CPU'` test x"${CPU}" != x && { echo "${CPU}-unknown-linux-gnu"; exit; } ;; or32:Linux:*:*) echo or32-unknown-linux-gnu exit ;; padre:Linux:*:*) echo sparc-unknown-linux-gnu exit ;; parisc64:Linux:*:* | hppa64:Linux:*:*) echo hppa64-unknown-linux-gnu exit ;; parisc:Linux:*:* | hppa:Linux:*:*) # Look for CPU level case `grep '^cpu[^a-z]*:' /proc/cpuinfo 2>/dev/null | cut -d' ' -f2` in PA7*) echo hppa1.1-unknown-linux-gnu ;; PA8*) echo hppa2.0-unknown-linux-gnu ;; *) echo hppa-unknown-linux-gnu ;; esac exit ;; ppc64:Linux:*:*) echo powerpc64-unknown-linux-gnu exit ;; ppc:Linux:*:*) echo powerpc-unknown-linux-gnu exit ;; s390:Linux:*:* | s390x:Linux:*:*) echo ${UNAME_MACHINE}-ibm-linux exit ;; sh64*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; sh*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; sparc:Linux:*:* | sparc64:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit ;; 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: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 i386) eval $set_cc_for_build if [ "$CC_FOR_BUILD" != 'no_compiler_found' ]; then if (echo '#ifdef __LP64__'; echo IS_64BIT_ARCH; echo '#endif') | \ (CCOPTS= $CC_FOR_BUILD -E - 2>/dev/null) | \ grep IS_64BIT_ARCH >/dev/null then UNAME_PROCESSOR="x86_64" fi fi ;; unknown) UNAME_PROCESSOR=powerpc ;; esac echo ${UNAME_PROCESSOR}-apple-darwin${UNAME_RELEASE} exit ;; *:procnto*:*:* | *:QNX:[0123456789]*:*) UNAME_PROCESSOR=`uname -p` if test "$UNAME_PROCESSOR" = "x86"; then UNAME_PROCESSOR=i386 UNAME_MACHINE=pc fi echo ${UNAME_PROCESSOR}-${UNAME_MACHINE}-nto-qnx${UNAME_RELEASE} exit ;; *:QNX:*:4*) echo i386-pc-qnx exit ;; NSE-?:NONSTOP_KERNEL:*:*) echo nse-tandem-nsk${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". Perhaps BFD should be changed, I don't know.... */ printf ("mips-sony-bsd\n"); exit (0); #else #include printf ("m68k-sony-newsos%s\n", #ifdef NEWSOS4 "4" #else "" #endif ); exit (0); #endif #endif #if defined (__arm) && defined (__acorn) && defined (__unix) printf ("arm-acorn-riscix\n"); exit (0); #endif #if defined (hp300) && !defined (hpux) printf ("m68k-hp-bsd\n"); exit (0); #endif #if defined (NeXT) #if !defined (__ARCHITECTURE__) #define __ARCHITECTURE__ "m68k" #endif int version; version=`(hostinfo | sed -n 's/.*NeXT Mach \([0-9]*\).*/\1/p') 2>/dev/null`; if (version < 4) printf ("%s-next-nextstep%d\n", __ARCHITECTURE__, version); else printf ("%s-next-openstep%d\n", __ARCHITECTURE__, version); exit (0); #endif #if defined (MULTIMAX) || defined (n16) #if defined (UMAXV) printf ("ns32k-encore-sysv\n"); exit (0); #else #if defined (CMU) printf ("ns32k-encore-mach\n"); exit (0); #else printf ("ns32k-encore-bsd\n"); exit (0); #endif #endif #endif #if defined (__386BSD__) printf ("i386-pc-bsd\n"); exit (0); #endif #if defined (sequent) #if defined (i386) printf ("i386-sequent-dynix\n"); exit (0); #endif #if defined (ns32000) printf ("ns32k-sequent-dynix\n"); exit (0); #endif #endif #if defined (_SEQUENT_) struct utsname un; uname(&un); if (strncmp(un.version, "V2", 2) == 0) { printf ("i386-sequent-ptx2\n"); exit (0); } if (strncmp(un.version, "V1", 2) == 0) { /* XXX is V1 correct? */ printf ("i386-sequent-ptx1\n"); exit (0); } printf ("i386-sequent-ptx\n"); exit (0); #endif #if defined (vax) # if !defined (ultrix) # include # if defined (BSD) # if BSD == 43 printf ("vax-dec-bsd4.3\n"); exit (0); # else # if BSD == 199006 printf ("vax-dec-bsd4.3reno\n"); exit (0); # else printf ("vax-dec-bsd\n"); exit (0); # endif # endif # else printf ("vax-dec-bsd\n"); exit (0); # endif # else printf ("vax-dec-ultrix\n"); exit (0); # endif #endif #if defined (alliant) && defined (i860) printf ("i860-alliant-bsd\n"); exit (0); #endif exit (1); } EOF $CC_FOR_BUILD -o $dummy $dummy.c 2>/dev/null && SYSTEM_NAME=`$dummy` && { echo "$SYSTEM_NAME"; exit; } # Apollos put the system type in the environment. test -d /usr/apollo && { echo ${ISP}-apollo-${SYSTYPE}; exit; } # Convex versions that predate uname can use getsysinfo(1) if [ -x /usr/convex/getsysinfo ] then case `getsysinfo -f cpu_type` in c1*) echo c1-convex-bsd exit ;; c2*) if getsysinfo -f scalar_acc then echo c32-convex-bsd else echo c2-convex-bsd fi exit ;; c34*) echo c34-convex-bsd exit ;; c38*) echo c38-convex-bsd exit ;; c4*) echo c4-convex-bsd exit ;; esac fi cat >&2 < in order to provide the needed information to handle your system. config.guess timestamp = $timestamp uname -m = `(uname -m) 2>/dev/null || echo unknown` uname -r = `(uname -r) 2>/dev/null || echo unknown` uname -s = `(uname -s) 2>/dev/null || echo unknown` uname -v = `(uname -v) 2>/dev/null || echo unknown` /usr/bin/uname -p = `(/usr/bin/uname -p) 2>/dev/null` /bin/uname -X = `(/bin/uname -X) 2>/dev/null` hostinfo = `(hostinfo) 2>/dev/null` /bin/universe = `(/bin/universe) 2>/dev/null` /usr/bin/arch -k = `(/usr/bin/arch -k) 2>/dev/null` /bin/arch = `(/bin/arch) 2>/dev/null` /usr/bin/oslevel = `(/usr/bin/oslevel) 2>/dev/null` /usr/convex/getsysinfo = `(/usr/convex/getsysinfo) 2>/dev/null` UNAME_MACHINE = ${UNAME_MACHINE} UNAME_RELEASE = ${UNAME_RELEASE} UNAME_SYSTEM = ${UNAME_SYSTEM} UNAME_VERSION = ${UNAME_VERSION} EOF exit 1 # Local variables: # eval: (add-hook 'write-file-hooks 'time-stamp) # time-stamp-start: "timestamp='" # time-stamp-format: "%:y-%02m-%02d" # time-stamp-end: "'" # End: rtkit-0.10/rtkit-daemon.c0000664000076400007640000025115311435335267012304 00000000000000/*-*- Mode: C; c-basic-offset: 8 -*-*/ /*** This file is part of RealtimeKit. Copyright 2009 Lennart Poettering Copyright 2010 Maarten Lankhorst RealtimeKit is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. RealtimeKit 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 RealtimeKit. If not, see . ***/ #ifdef HAVE_CONFIG_H #include #endif #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include "rtkit.h" #include "sd-daemon.h" #ifndef __linux__ #error "This stuff only works on Linux!" #endif #ifndef SCHED_RESET_ON_FORK /* "Your libc lacks the definition of SCHED_RESET_ON_FORK. We'll now define it ourselves, however make sure your kernel is new enough! */ #define SCHED_RESET_ON_FORK 0x40000000 #endif #ifndef RLIMIT_RTTIME #define RLIMIT_RTTIME 15 #endif #define INTROSPECT_XML \ DBUS_INTROSPECT_1_0_XML_DOCTYPE_DECL_NODE \ "\n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n"\ " " \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ " \n" \ "\n" /* Similar to assert(), but has side effects, and hence shall never be optimized away, regardless of NDEBUG */ #define assert_se(expr) \ do { \ if (__builtin_expect(!(expr), 0)) { \ fprintf(stderr, "Asssertion %s failed at %s:%u, function %s(). Aborting.\n", #expr, __FILE__, __LINE__, __PRETTY_FUNCTION__); \ abort(); \ } \ } while(0) #define ELEMENTSOF(x) (sizeof(x)/sizeof(x[0])) #define TIMESPEC_MSEC(ts) (((int64_t) (ts).tv_sec * 1000LL) + ((int64_t) (ts).tv_nsec / 1000000LL)) /* If we actually execute a request we temporarily upgrade our realtime priority to this level */ static unsigned our_realtime_priority = 21; /* Normally we run at this nice level */ static int our_nice_level = 1; /* The maximum realtime priority to hand out */ static unsigned max_realtime_priority = 20; /* The minimum nice level to hand out */ static int min_nice_level = -15; /* Username we shall run under */ static const char *username = "rtkit"; /* Enforce that clients have RLIMIT_RTTIME set to a value <= this */ static unsigned long long rttime_nsec_max = 200000000ULL; /* 200 ms */ /* How many users do we supervise at max? */ static unsigned users_max = 2048; /* How many processes of a single user do we supervise at max? */ static unsigned processes_per_user_max = 15; /* How many threads of a single user do we supervise at max? */ static unsigned threads_per_user_max = 25; /* Refuse further requests if one user issues more than ACTIONS_PER_BURST_MAX in this time */ static unsigned actions_burst_sec = 20; /* Refuse further requests if one user issues more than this many in ACTIONS_BURST_SEC time */ static unsigned actions_per_burst_max = 25; /* Drop privileges */ static bool do_drop_privileges = TRUE; /* Change root directory to /proc */ static bool do_chroot = TRUE; /* Limit resources */ static bool do_limit_resources = TRUE; /* Run a canary watchdog */ static bool do_canary = TRUE; /* Canary cheep interval */ static unsigned canary_cheep_msec = 5000; /* 5s */ /* Canary watchdog interval */ static unsigned canary_watchdog_msec = 10000; /* 10s */ /* Watchdog realtime priority */ static unsigned canary_watchdog_realtime_priority = 99; /* How long after the canary died shall we refuse further RT requests? */ static unsigned canary_refusal_sec = 5*60; /* Demote root processes? */ static bool canary_demote_root = FALSE; /* Demote unknown processes? */ static bool canary_demote_unknown = FALSE; /* Log to stderr? */ static bool log_stderr = FALSE; /* Scheduling policy to use */ static int sched_policy = SCHED_RR; struct thread { /* We use the thread id plus its starttime as a unique identifier for threads */ pid_t pid; unsigned long long starttime; struct thread *next; }; struct process { /* We use the process id plus its starttime as a unique identifier for processes */ pid_t pid; unsigned long long starttime; struct thread *threads; struct process *next; }; struct rtkit_user { uid_t uid; time_t timestamp; unsigned n_actions; struct process *processes; unsigned n_processes; unsigned n_threads; struct rtkit_user *next; }; static struct rtkit_user *users = NULL; static unsigned n_users = 0; static unsigned n_total_processes = 0; static unsigned n_total_threads = 0; static const char *proc = NULL; static int quit_fd = -1, canary_fd = -1; static pthread_t canary_thread_id = 0, watchdog_thread_id = 0; static volatile uint32_t refuse_until = 0; static const char *get_proc_path(void) { /* Useful for chroot environments */ if (proc) return proc; return "/proc"; } static char* get_user_name(uid_t uid, char *user, size_t len) { struct passwd *pw; if ((pw = getpwuid(uid))) { strncpy(user, pw->pw_name, len-1); user[len-1] = 0; return user; } snprintf(user, len-1, "%llu", (unsigned long long) uid); user[len-1] = 0; return user; } static int read_starttime(pid_t pid, pid_t tid, unsigned long long *st) { char fn[128], line[256], *p; int r; FILE *f; if (tid != 0) assert_se(snprintf(fn, sizeof(fn)-1, "%s/%llu/task/%llu/stat", get_proc_path(), (unsigned long long) pid, (unsigned long long) tid) < (int) (sizeof(fn)-1)); else assert_se(snprintf(fn, sizeof(fn)-1, "%s/%llu/stat", get_proc_path(), (unsigned long long) pid) < (int) (sizeof(fn)-1)); fn[sizeof(fn)-1] = 0; if (!(f = fopen(fn, "r"))) return -errno; if (!(fgets(line, sizeof(line), f))) { r = -errno; fclose(f); return r; } fclose(f); /* Let's skip the pid and comm fields. The latter is enclosed * in () but does not escape any () in its value, so let's * skip over it manually */ if (!(p = strrchr(line, ')'))) return -EIO; p++; if (sscanf(p, " " "%*c " /* state */ "%*d " /* ppid */ "%*d " /* pgrp */ "%*d " /* session */ "%*d " /* tty_nr */ "%*d " /* tpgid */ "%*u " /* flags */ "%*u " /* minflt */ "%*u " /* cminflt */ "%*u " /* majflt */ "%*u " /* cmajflt */ "%*u " /* utime */ "%*u " /* stime */ "%*d " /* cutime */ "%*d " /* cstime */ "%*d " /* priority */ "%*d " /* nice */ "%*d " /* num_threads */ "%*d " /* itrealvalue */ "%llu " /* starttime */, st) != 1) return -EIO; return 0; } static void free_thread(struct thread *t) { free(t); } static void free_process(struct process *p) { struct thread *t; while ((t = p->threads)) { p->threads = t->next; free_thread(t); } free(p); } static void free_user(struct rtkit_user *u) { struct process *p; while ((p = u->processes)) { u->processes = p->next; free_process(p); } free(u); } static bool user_in_burst(struct rtkit_user *u) { time_t now = time(NULL); return now < u->timestamp + (time_t) actions_burst_sec; } static bool verify_burst(struct rtkit_user *u) { if (!user_in_burst(u)) { /* Restart burst phase */ time(&u->timestamp); u->n_actions = 0; return true; } if (u->n_actions >= actions_per_burst_max) { char user[64]; syslog(LOG_WARNING, "Warning: Reached burst limit for user '%s', denying request.\n", get_user_name(u->uid, user, sizeof(user))); return false; } u->n_actions++; return true; } static int find_user(struct rtkit_user **_u, uid_t uid) { struct rtkit_user *u; for (u = users; u; u = u->next) if (u->uid == uid) { *_u = u; return 0; } if (n_users >= users_max) { syslog(LOG_WARNING, "Warning: Reached maximum concurrent user limit, denying request.\n"); return -EBUSY; } if (!(u = malloc(sizeof(struct rtkit_user)))) return -ENOMEM; u->uid = uid; u->timestamp = time(NULL); u->n_actions = 0; u->processes = NULL; u->n_processes = u->n_threads = 0; u->next = users; users = u; n_users++; *_u = u; return 0; } static int find_process(struct process** _p, struct rtkit_user *u, pid_t pid, unsigned long long starttime) { struct process *p; for (p = u->processes; p; p = p->next) if (p->pid == pid && p->starttime == starttime) { *_p = p; return 0; } if (u->n_processes >= processes_per_user_max) { char user[64]; syslog(LOG_WARNING, "Warning: Reached maximum concurrent process limit for user '%s', denying request.\n", get_user_name(u->uid, user, sizeof(user))); return -EBUSY; } if (!(p = malloc(sizeof(struct process)))) return -ENOMEM; p->pid = pid; p->starttime = starttime; p->threads = NULL; p->next = u->processes; u->processes = p; u->n_processes++; n_total_processes++; *_p = p; return 0; } static int find_thread(struct thread** _t, struct rtkit_user *u, struct process *p, pid_t pid, unsigned long long starttime) { struct thread *t; for (t = p->threads; t; t = t->next) if (t->pid == pid && t->starttime == starttime) { *_t = t; return 0; } if (u->n_threads >= threads_per_user_max) { char user[64]; syslog(LOG_WARNING, "Warning: Reached maximum concurrent threads limit for user '%s', denying request.\n", get_user_name(u->uid, user, sizeof(user))); return -EBUSY; } if (!(t = malloc(sizeof(struct thread)))) return -ENOMEM; t->pid = pid; t->starttime = starttime; t->next = p->threads; p->threads = t; u->n_threads++; n_total_threads++; *_t = t; return 0; } static bool thread_relevant(struct process *p, struct thread *t) { unsigned long long st; int r; /* This checks if a thread still matters to us, i.e. if its * PID still refers to the same thread and if it is still high * priority or real time */ if ((r = read_starttime(p->pid, t->pid, &st)) < 0) { /* Did the thread die? */ if (r == -ENOENT) return FALSE; syslog(LOG_WARNING, "Warning: failed to read start time: %s\n", strerror(-r)); return FALSE; } /* Did the thread get replaced by another thread? */ if (st != t->starttime) return FALSE; if ((r = sched_getscheduler(t->pid)) < 0) { /* Maybe it died right now? */ if (errno == ESRCH) return FALSE; syslog(LOG_WARNING, "Warning: failed to read scheduler policy: %s\n", strerror(errno)); return FALSE; } /* Is this a realtime thread? */ r &= ~SCHED_RESET_ON_FORK; if (r == SCHED_RR || r == SCHED_FIFO) return TRUE; errno = 0; r = getpriority(PRIO_PROCESS, t->pid); if (errno != 0) { /* Maybe it died right now? */ if (errno == ESRCH) return FALSE; syslog(LOG_WARNING, "Warning: failed to read nice level: %s\n", strerror(errno)); return FALSE; } /* Is this a high priority thread? */ if (r < 0) return TRUE; return FALSE; } static void thread_gc(struct rtkit_user *u, struct process *p) { struct thread *t, *n, *l; /* Cleanup dead theads of a specific user we don't need to keep track about anymore */ for (l = NULL, t = p->threads; t; t = n) { n = t->next; if (!thread_relevant(p, t)) { free_thread(t); if (l) l->next = n; else p->threads = n; assert(u->n_threads >= 1); u->n_threads--; assert(n_total_threads >= 1); n_total_threads--; } else l = t; } assert(!p->threads || u->n_threads); } static void process_gc(struct rtkit_user *u) { struct process *p, *n, *l; /* Cleanup dead processes of a specific user we don't need to keep track about anymore */ for (l = NULL, p = u->processes; p; p = n) { n = p->next; thread_gc(u, p); if (!p->threads) { free_process(p); if (l) l->next = n; else u->processes = n; assert(u->n_processes >= 1); u->n_processes--; assert(n_total_processes >= 1); n_total_processes--; } else l = p; } assert(!u->processes == !u->n_processes); } static void user_gc(void) { struct rtkit_user *u, *n, *l; /* Cleanup all users we don't need to keep track about anymore */ for (l = NULL, u = users; u; u = n) { n = u->next; process_gc(u); if (!u->processes && !user_in_burst(u)) { free_user(u); if (l) l->next = n; else users = n; assert(n_users >= 1); n_users--; } else l = u; } assert(!users == !n_users); } static bool startswith(const char *s, const char *prefix) { return strncmp(s, prefix, strlen(prefix)) == 0; } static int self_set_realtime(unsigned priority) { struct sched_param param; int r; memset(¶m, 0, sizeof(param)); param.sched_priority = priority; if (sched_setscheduler(0, sched_policy|SCHED_RESET_ON_FORK, ¶m) < 0) { r = -errno; syslog(LOG_ERR, "Failed to make ourselves RT: %s\n", strerror(errno)); goto finish; } r = 0; finish: return r; } static void self_drop_realtime(int nice_level) { struct sched_param param; memset(¶m, 0, sizeof(param)); if (sched_setscheduler(0, SCHED_OTHER, ¶m) < 0) syslog(LOG_WARNING, "Warning: Failed to reset scheduling to SCHED_OTHER: %s\n", strerror(errno)); if (setpriority(PRIO_PROCESS, 0, nice_level) < 0) syslog(LOG_WARNING, "Warning: Failed to reset nice level to %u: %s\n", our_nice_level, strerror(errno)); } /* Verifies that RLIMIT_RTTIME is set for the specified process */ static int verify_process_rttime(struct process *p) { char fn[128]; FILE *f; int r; bool good = false; assert_se(snprintf(fn, sizeof(fn)-1, "%s/%llu/limits", get_proc_path(), (unsigned long long) p->pid) < (int) (sizeof(fn)-1)); fn[sizeof(fn)-1] = 0; if (!(f = fopen(fn, "r"))) { r = -errno; syslog(LOG_ERR, "Failed to open '%s': %s\n", fn, strerror(errno)); return r; } for (;;) { char line[128]; char soft[32], hard[32]; unsigned long long rttime; char *e = NULL; if (!fgets(line, sizeof(line), f)) break; if (!startswith(line, "Max realtime timeout")) continue; if (sscanf(line + 20, "%s %s", soft, hard) != 2) { syslog(LOG_WARNING, "Warning: parse failure in %s.\n", fn); break; } errno = 0; rttime = strtoll(hard, &e, 10); if (errno != 0 || !e || *e != 0) break; if (rttime <= rttime_nsec_max) good = true; break; } fclose(f); return good ? 0 : -EPERM; } static int verify_process_user(struct rtkit_user *u, struct process *p) { char fn[128]; int r; struct stat st; assert_se(snprintf(fn, sizeof(fn)-1, "%s/%llu", get_proc_path(), (unsigned long long) p->pid) < (int) (sizeof(fn)-1)); fn[sizeof(fn)-1] = 0; memset(&st, 0, sizeof(st)); if (stat(fn, &st) < 0) { r = -errno; if (r != -ENOENT) syslog(LOG_WARNING, "Warning: Failed to stat() file '%s': %s\n", fn, strerror(-r)); return r; } return st.st_uid == u->uid ? 0 : -EPERM; } static int verify_process_starttime(struct process *p) { unsigned long long st; int r; if ((r = read_starttime(p->pid, 0, &st)) < 0) { if (r != -ENOENT) syslog(LOG_WARNING, "Warning: Failed to read start time of process %llu: %s\n", (unsigned long long) p->pid, strerror(-r)); return r; } return st == p->starttime ? 0 : -EPERM; } static int verify_thread_starttime(struct process *p, struct thread *t) { unsigned long long st; int r; if ((r = read_starttime(p->pid, t->pid, &st)) < 0) { if (r != -ENOENT) syslog(LOG_WARNING, "Warning: Failed to read start time of thread %llu: %s\n", (unsigned long long) t->pid, strerror(-r)); return r; } return st == t->starttime ? 0 : -EPERM; } static int thread_reset(pid_t tid) { struct sched_param param; int r = 0; memset(¶m, 0, sizeof(param)); param.sched_priority = 0; if (sched_setscheduler(tid, SCHED_OTHER, ¶m) < 0) { if (errno != ESRCH) syslog(LOG_WARNING, "Warning: Failed to reset scheduling to SCHED_OTHER for thread %llu: %s\n", (unsigned long long) tid, strerror(errno)); r = -1; } if (setpriority(PRIO_PROCESS, tid, 0) < 0) { if (errno != ESRCH) syslog(LOG_WARNING, "Warning: Failed to reset nice level to 0 for thread %llu: %s\n", (unsigned long long) tid, strerror(errno)); r = -1; } return r; } static char* get_exe_name(pid_t pid, char *exe, size_t len) { char fn[128]; ssize_t n; assert_se(snprintf(fn, sizeof(fn)-1, "%s/%llu/exe", get_proc_path(), (unsigned long long) pid) < (int) (sizeof(fn)-1)); fn[sizeof(fn)-1] = 0; if ((n = readlink(fn, exe, len-1)) < 0) { snprintf(exe, len-1, "n/a"); exe[len-1] = 0; } else exe[n] = 0; return exe; } static int process_set_realtime(struct rtkit_user *u, struct process *p, struct thread *t, unsigned priority) { int r; struct sched_param param; char user[64], exe[128]; if ((int) priority < sched_get_priority_min(sched_policy) || (int) priority > sched_get_priority_max(sched_policy)) return -EINVAL; /* We always want to be able to get a higher RT priority than * the client */ if (priority >= our_realtime_priority || priority > max_realtime_priority) return -EPERM; /* Make sure users don't flood us with requests */ if (!verify_burst(u)) return -EBUSY; /* Temporarily become a realtime process. We do this to make * sure that our verification code is not preempted by an evil * client's code which might have gotten RT through * us. */ if ((r = self_set_realtime(our_realtime_priority)) < 0) return r; /* Let's make sure that everything is alright before we make * the process realtime */ if ((r = verify_process_user(u, p)) < 0 || (r = verify_process_starttime(p)) < 0 || (r = verify_process_rttime(p)) < 0 || (r = verify_thread_starttime(p, t)) < 0) goto finish; /* Ok, everything seems to be in order, now, let's do it */ memset(¶m, 0, sizeof(param)); param.sched_priority = (int) priority; if (sched_setscheduler(t->pid, sched_policy|SCHED_RESET_ON_FORK, ¶m) < 0) { r = -errno; syslog(LOG_ERR, "Failed to make thread %llu RT: %s\n", (unsigned long long) t->pid, strerror(errno)); goto finish; } /* We do some sanity checks afterwards, to verify that the * caller didn't play games with us and replaced the process * behind the PID */ if ((r = verify_thread_starttime(p, t)) < 0 || (r = verify_process_rttime(p)) < 0 || (r = verify_process_starttime(p)) < 0 || (r = verify_process_user(u, p)) < 0) { thread_reset(t->pid); goto finish; } syslog(LOG_INFO, "Successfully made thread %llu of process %llu (%s) owned by '%s' RT at priority %u.\n", (unsigned long long) t->pid, (unsigned long long) p->pid, get_exe_name(p->pid, exe, sizeof(exe)), get_user_name(u->uid, user, sizeof(user)), priority); r = 0; finish: self_drop_realtime(our_nice_level); return r; } static int process_set_high_priority(struct rtkit_user *u, struct process *p, struct thread *t, int priority) { int r; struct sched_param param; char user[64], exe[128]; if (priority < PRIO_MIN || priority >= PRIO_MAX) return -EINVAL; if (priority < min_nice_level) return -EPERM; /* Make sure users don't flood us with requests */ if (!verify_burst(u)) return -EBUSY; /* Temporarily become a realtime process */ if ((r = self_set_realtime(our_realtime_priority)) < 0) return r; /* Let's make sure that everything is alright before we make * the process high priority */ if ((r = verify_process_user(u, p)) < 0 || (r = verify_process_starttime(p)) < 0 || (r = verify_thread_starttime(p, t)) < 0) goto finish; /* Ok, everything seems to be in order, now, let's do it */ memset(¶m, 0, sizeof(param)); param.sched_priority = 0; if (sched_setscheduler(t->pid, SCHED_OTHER|SCHED_RESET_ON_FORK, ¶m) < 0) { r = -errno; syslog(LOG_ERR, "Failed to make process %llu SCHED_NORMAL: %s\n", (unsigned long long) t->pid, strerror(errno)); goto finish; } if (setpriority(PRIO_PROCESS, t->pid, priority) < 0) { r = -errno; syslog(LOG_ERR, "Failed to set nice level of process %llu to %i: %s\n", (unsigned long long) t->pid, priority, strerror(errno)); goto finish; } if ((r = verify_thread_starttime(p, t)) < 0 || (r = verify_process_starttime(p)) < 0 || (r = verify_process_user(u, p)) < 0) { thread_reset(t->pid); goto finish; } syslog(LOG_INFO, "Successfully made thread %llu of process %llu (%s) owned by '%s' high priority at nice level %i.\n", (unsigned long long) t->pid, (unsigned long long) p->pid, get_exe_name(p->pid, exe, sizeof(exe)), get_user_name(u->uid, user, sizeof(user)), priority); r = 0; finish: self_drop_realtime(our_nice_level); return r; } static void reset_known(void) { struct rtkit_user *u; struct process *p; struct thread *t; unsigned n_demoted = 0; syslog(LOG_INFO, "Demoting known real-time threads.\n"); for (u = users; u; u = u->next) for (p = u->processes; p; p = p->next) for (t = p->threads; t; t = t->next) if (verify_process_user(u, p) >= 0 && verify_process_starttime(p) >= 0 && verify_thread_starttime(p, t) >= 0) if (thread_reset(t->pid) >= 0) { char exe[64]; syslog(LOG_NOTICE, "Successfully demoted thread %llu of process %llu (%s).\n", (unsigned long long) t->pid, (unsigned long long) p->pid, get_exe_name(p->pid, exe, sizeof(exe))); n_demoted++; } syslog(LOG_NOTICE, "Demoted %u threads.\n", n_demoted); } static int reset_all(void) { DIR *pd; int r; unsigned n_demoted = 0; /* Goes through /proc and demotes *all* threads to * SCHED_OTHER */ syslog(LOG_INFO, "Demoting known and unknown real-time threads.\n"); if (!(pd = opendir(get_proc_path()))) { r = -errno; syslog(LOG_ERR, "opendir(%s) failed: %s\n", get_proc_path(), strerror(errno)); return r; } for (;;) { const struct dirent *pde; char *e = NULL; unsigned long long pid; char fn[128]; DIR *td; struct stat st; if (!(pde = readdir(pd))) break; if (!(pde->d_type & DT_DIR)) continue; errno = 0; pid = strtoull(pde->d_name, &e, 10); if (errno != 0 || !e || *e != 0) continue; if ((pid_t) pid == getpid() || pid == 1) continue; assert_se(snprintf(fn, sizeof(fn)-1, "%s/%llu", get_proc_path(), pid) < (int) (sizeof(fn)-1)); fn[sizeof(fn)-1] = 0; if (stat(fn, &st) < 0) { if (errno != ENOENT) syslog(LOG_WARNING, "Warning: stat(%s) failed: %s\n", fn, strerror(errno)); continue; } if (!S_ISDIR(st.st_mode)) continue; if (!canary_demote_root && st.st_uid == 0) continue; assert_se(snprintf(fn, sizeof(fn)-1, "%s/%llu/task", get_proc_path(), pid) < (int) (sizeof(fn)-1)); fn[sizeof(fn)-1] = 0; if (!(td = opendir(fn))) continue; for (;;) { const struct dirent *tde; unsigned long long tid; if (!(tde = readdir(td))) break; if (!(tde->d_type & DT_DIR)) continue; e = NULL; errno = 0; tid = strtoull(tde->d_name, &e, 10); if (errno != 0 || !e || *e != 0) continue; if ((r = sched_getscheduler(tid)) < 0) { if (errno != ESRCH) syslog(LOG_WARNING, "Warning: sched_getscheduler() failed: %s\n", strerror(errno)); continue; } if (r == SCHED_FIFO || r == SCHED_RR || r == (SCHED_FIFO|SCHED_RESET_ON_FORK) || r == (SCHED_RR|SCHED_RESET_ON_FORK)) if (thread_reset((pid_t) tid) >= 0) { char exe[64]; syslog(LOG_NOTICE, "Successfully demoted thread %llu of process %llu (%s).\n", (unsigned long long) tid, (unsigned long long) pid, get_exe_name(pid, exe, sizeof(exe))); n_demoted++; } } closedir(td); } closedir(pd); syslog(LOG_NOTICE, "Demoted %u threads.\n", n_demoted); return 0; } /* This mimics dbus_bus_get_unix_user() */ static unsigned long get_unix_process_id( DBusConnection *connection, const char *name, DBusError *error) { DBusMessage *m, *r; uint32_t pid = (uint32_t) -1; assert_se(m = dbus_message_new_method_call( DBUS_SERVICE_DBUS, DBUS_PATH_DBUS, DBUS_INTERFACE_DBUS, "GetConnectionUnixProcessID")); assert_se(dbus_message_append_args( m, DBUS_TYPE_STRING, &name, DBUS_TYPE_INVALID)); r = dbus_connection_send_with_reply_and_block(connection, m, -1, error); dbus_message_unref (m); if (!r) goto finish; if (dbus_set_error_from_message(error, r)) goto finish; if (!dbus_message_get_args( r, error, DBUS_TYPE_UINT32, &pid, DBUS_TYPE_INVALID)) { pid = (uint32_t) -1; goto finish; } finish: if (r) dbus_message_unref(r); return (unsigned long) pid; } static int lookup_client( struct rtkit_user **_u, struct process **_p, struct thread **_t, DBusConnection *c, DBusMessage *m, pid_t pid, pid_t tid) { DBusError error; int r; unsigned long uid; unsigned long long starttime; struct rtkit_user *u; struct process *p; struct thread *t; dbus_error_init(&error); /* Determine caller credentials */ if ((uid = dbus_bus_get_unix_user(c, dbus_message_get_sender(m), &error)) == (unsigned long) -1) { syslog(LOG_ERR, "dbus_message_get_unix_user() failed: %s\n", error.message); r = -EIO; goto fail; } if (pid == (pid_t) -1 && (pid = get_unix_process_id(c, dbus_message_get_sender(m), &error)) == (pid_t) -1) { syslog(LOG_ERR, "get_unix_process_id() failed: %s\n", error.message); r = -EIO; goto fail; } /* Find or create user structure */ if ((r = find_user(&u, (uid_t) uid) < 0)) goto fail; /* Find or create process structure */ if ((r = read_starttime((pid_t) pid, 0, &starttime)) < 0) goto fail; if ((r = find_process(&p, u, (pid_t) pid, starttime)) < 0) goto fail; /* Find or create thread structure */ if (tid == 0) tid = p->pid; if ((r = read_starttime(p->pid, tid, &starttime)) < 0) goto fail; if ((r = find_thread(&t, u, p, (pid_t) tid, starttime)) < 0) goto fail; *_u = u; *_p = p; *_t = t; return 0; fail: dbus_error_free(&error); return r; } static const char *translate_error_forward(int error) { switch (error) { case -EPERM: case -EACCES: case -EBUSY: return DBUS_ERROR_ACCESS_DENIED; case -ENOMEM: return DBUS_ERROR_NO_MEMORY; default: return DBUS_ERROR_FAILED; } } static int translate_error_backwards(const char *name) { if (strcmp(name, DBUS_ERROR_NO_MEMORY) == 0) return -ENOMEM; if (strcmp(name, DBUS_ERROR_SERVICE_UNKNOWN) == 0 || strcmp(name, DBUS_ERROR_NAME_HAS_NO_OWNER) == 0) return -ENOENT; if (strcmp(name, DBUS_ERROR_ACCESS_DENIED) == 0 || strcmp(name, DBUS_ERROR_AUTH_FAILED) == 0) return -EACCES; return -EIO; } static int verify_polkit(DBusConnection *c, struct rtkit_user *u, struct process *p, const char *action) { DBusError error; DBusMessage *m = NULL, *r = NULL; const char *unix_process = "unix-process"; const char *pid = "pid"; const char *start_time = "start-time"; const char *cancel_id = ""; uint32_t flags = 0; uint32_t pid_u32 = p->pid; uint64_t start_time_u64 = p->starttime; DBusMessageIter iter_msg, iter_struct, iter_array, iter_dict, iter_variant; int ret; dbus_bool_t authorized = FALSE; dbus_error_init(&error); assert_se(m = dbus_message_new_method_call( "org.freedesktop.PolicyKit1", "/org/freedesktop/PolicyKit1/Authority", "org.freedesktop.PolicyKit1.Authority", "CheckAuthorization")); dbus_message_iter_init_append(m, &iter_msg); assert_se(dbus_message_iter_open_container(&iter_msg, DBUS_TYPE_STRUCT, NULL, &iter_struct)); assert_se(dbus_message_iter_append_basic(&iter_struct, DBUS_TYPE_STRING, &unix_process)); assert_se(dbus_message_iter_open_container(&iter_struct, DBUS_TYPE_ARRAY, "{sv}", &iter_array)); assert_se(dbus_message_iter_open_container(&iter_array, DBUS_TYPE_DICT_ENTRY, NULL, &iter_dict)); assert_se(dbus_message_iter_append_basic(&iter_dict, DBUS_TYPE_STRING, &pid)); assert_se(dbus_message_iter_open_container(&iter_dict, DBUS_TYPE_VARIANT, "u", &iter_variant)); assert_se(dbus_message_iter_append_basic(&iter_variant, DBUS_TYPE_UINT32, &pid_u32)); assert_se(dbus_message_iter_close_container(&iter_dict, &iter_variant)); assert_se(dbus_message_iter_close_container(&iter_array, &iter_dict)); assert_se(dbus_message_iter_open_container(&iter_array, DBUS_TYPE_DICT_ENTRY, NULL, &iter_dict)); assert_se(dbus_message_iter_append_basic(&iter_dict, DBUS_TYPE_STRING, &start_time)); assert_se(dbus_message_iter_open_container(&iter_dict, DBUS_TYPE_VARIANT, "t", &iter_variant)); assert_se(dbus_message_iter_append_basic(&iter_variant, DBUS_TYPE_UINT64, &start_time_u64)); assert_se(dbus_message_iter_close_container(&iter_dict, &iter_variant)); assert_se(dbus_message_iter_close_container(&iter_array, &iter_dict)); assert_se(dbus_message_iter_close_container(&iter_struct, &iter_array)); assert_se(dbus_message_iter_close_container(&iter_msg, &iter_struct)); assert_se(dbus_message_iter_append_basic(&iter_msg, DBUS_TYPE_STRING, &action)); assert_se(dbus_message_iter_open_container(&iter_msg, DBUS_TYPE_ARRAY, "{ss}", &iter_array)); assert_se(dbus_message_iter_close_container(&iter_msg, &iter_array)); assert_se(dbus_message_iter_append_basic(&iter_msg, DBUS_TYPE_UINT32, &flags)); assert_se(dbus_message_iter_append_basic(&iter_msg, DBUS_TYPE_STRING, &cancel_id)); if (!(r = dbus_connection_send_with_reply_and_block(c, m, -1, &error))) { ret = translate_error_backwards(error.name); goto finish; } if (dbus_set_error_from_message(&error, r)) { ret = translate_error_backwards(error.name); goto finish; } if (!dbus_message_iter_init(r, &iter_msg) || dbus_message_iter_get_arg_type(&iter_msg) != DBUS_TYPE_STRUCT) { ret = -EIO; goto finish; } dbus_message_iter_recurse(&iter_msg, &iter_struct); if (dbus_message_iter_get_arg_type(&iter_struct) != DBUS_TYPE_BOOLEAN) { ret = -EIO; goto finish; } dbus_message_iter_get_basic(&iter_struct, &authorized); ret = authorized ? 0 : -EPERM; finish: if (m) dbus_message_unref(m); if (r) dbus_message_unref(r); if (error.message) syslog(LOG_WARNING, "Warning: PolicyKit call failed: %s\n", error.message); dbus_error_free(&error); return ret; } static int verify_canary_refusal(void) { struct timespec now; assert_se(clock_gettime(CLOCK_MONOTONIC, &now) == 0); if (now.tv_sec < (time_t) refuse_until) { syslog(LOG_WARNING, "Recovering from system lockup, not allowing further RT threads.\n"); return -EPERM; } return 0; } static void add_variant( DBusMessage *m, int type, const void *data) { DBusMessageIter iter, sub; char t[2]; t[0] = (char) type; t[1] = 0; dbus_message_iter_init_append(m, &iter); assert_se(dbus_message_iter_open_container(&iter, DBUS_TYPE_VARIANT, t, &sub)); assert_se(dbus_message_iter_append_basic(&sub, type, data)); assert_se(dbus_message_iter_close_container(&iter, &sub)); } static int handle_dbus_prop_get(const char* property, DBusMessage *r) { if (strcmp(property, "RTTimeNSecMax") == 0) add_variant(r, DBUS_TYPE_INT64, &rttime_nsec_max); else if (strcmp(property, "MaxRealtimePriority") == 0) add_variant(r, DBUS_TYPE_INT32, &max_realtime_priority); else if (strcmp(property, "MinNiceLevel") == 0) add_variant(r, DBUS_TYPE_INT32, &min_nice_level); else return -1; return 0; } static DBusHandlerResult dbus_handler(DBusConnection *c, DBusMessage *m, void *userdata) { DBusError error; DBusMessage *r = NULL; int is2 = 0; dbus_error_init(&error); /* We garbage collect on every user call */ user_gc(); if (dbus_message_is_method_call(m, "org.freedesktop.RealtimeKit1", "MakeThreadRealtime") || (is2 = dbus_message_is_method_call(m, "org.freedesktop.RealtimeKit1", "MakeThreadRealtimeWithPID"))) { uint64_t thread, process = (uint64_t) -1; uint32_t priority; struct rtkit_user *u; struct process *p; struct thread *t; int ret; if ((ret = verify_canary_refusal()) < 0) { assert_se(r = dbus_message_new_error_printf(m, translate_error_forward(ret), strerror(-ret))); goto finish; } if (is2) ret = dbus_message_get_args(m, &error, DBUS_TYPE_UINT64, &process, DBUS_TYPE_UINT64, &thread, DBUS_TYPE_UINT32, &priority, DBUS_TYPE_INVALID); else ret = dbus_message_get_args(m, &error, DBUS_TYPE_UINT64, &thread, DBUS_TYPE_UINT32, &priority, DBUS_TYPE_INVALID); if (!ret) { syslog(LOG_DEBUG, "Failed to parse MakeThreadRealtime() method call: %s\n", error.message); assert_se(r = dbus_message_new_error(m, error.name, error.message)); goto finish; } if ((ret = lookup_client(&u, &p, &t, c, m, (pid_t)process, (pid_t) thread)) < 0) { syslog(LOG_DEBUG, "Failed to look up client: %s\n", strerror(-ret)); assert_se(r = dbus_message_new_error_printf(m, translate_error_forward(ret), strerror(-ret))); goto finish; } if ((ret = verify_polkit(c, u, p, "org.freedesktop.RealtimeKit1.acquire-real-time")) < 0) { assert_se(r = dbus_message_new_error_printf(m, translate_error_forward(ret), strerror(-ret))); goto finish; } if ((ret = process_set_realtime(u, p, t, priority))) { assert_se(r = dbus_message_new_error_printf(m, translate_error_forward(ret), strerror(-ret))); goto finish; } assert_se(r = dbus_message_new_method_return(m)); } else if (dbus_message_is_method_call(m, "org.freedesktop.RealtimeKit1", "MakeThreadHighPriority") || (is2 = dbus_message_is_method_call(m, "org.freedesktop.RealtimeKit1", "MakeThreadHighPriorityWithPID"))) { uint64_t thread, process = (uint64_t) -1; int32_t priority; struct rtkit_user *u; struct process *p; struct thread *t; int ret; if ((ret = verify_canary_refusal()) < 0) { assert_se(r = dbus_message_new_error_printf(m, translate_error_forward(ret), strerror(-ret))); goto finish; } if (is2) ret = dbus_message_get_args(m, &error, DBUS_TYPE_UINT64, &process, DBUS_TYPE_UINT64, &thread, DBUS_TYPE_INT32, &priority, DBUS_TYPE_INVALID); else ret = dbus_message_get_args(m, &error, DBUS_TYPE_UINT64, &thread, DBUS_TYPE_INT32, &priority, DBUS_TYPE_INVALID); if (!ret) { syslog(LOG_DEBUG, "Failed to parse MakeThreadHighPriority() method call: %s\n", error.message); assert_se(r = dbus_message_new_error(m, error.name, error.message)); goto finish; } if ((ret = lookup_client(&u, &p, &t, c, m, (pid_t)process, (pid_t) thread)) < 0) { syslog(LOG_DEBUG, "Failed to look up client: %s\n", strerror(-ret)); assert_se(r = dbus_message_new_error_printf(m, translate_error_forward(ret), strerror(-ret))); goto finish; } if ((ret = verify_polkit(c, u, p, "org.freedesktop.RealtimeKit1.acquire-high-priority")) < 0) { assert_se(r = dbus_message_new_error_printf(m, translate_error_forward(ret), strerror(-ret))); goto finish; } if ((ret = process_set_high_priority(u, p, t, priority))) { assert_se(r = dbus_message_new_error_printf(m, translate_error_forward(ret), strerror(-ret))); goto finish; } assert_se(r = dbus_message_new_method_return(m)); } else if (dbus_message_is_method_call(m, "org.freedesktop.RealtimeKit1", "ResetAll")) { reset_all(); user_gc(); assert_se(r = dbus_message_new_method_return(m)); } else if (dbus_message_is_method_call(m, "org.freedesktop.RealtimeKit1", "ResetKnown")) { reset_known(); user_gc(); assert_se(r = dbus_message_new_method_return(m)); } else if (dbus_message_is_method_call(m, "org.freedesktop.RealtimeKit1", "Exit")) { assert_se(r = dbus_message_new_method_return(m)); assert_se(dbus_connection_send(c, r, NULL)); dbus_message_unref(r); r = NULL; dbus_connection_close(c); } else if (dbus_message_is_method_call(m, "org.freedesktop.DBus.Properties", "Get")) { const char *interface, *property; if (!dbus_message_get_args(m, &error, DBUS_TYPE_STRING, &interface, DBUS_TYPE_STRING, &property, DBUS_TYPE_INVALID)) { syslog(LOG_DEBUG, "Failed to parse property get call: %s\n", error.message); assert_se(r = dbus_message_new_error(m, error.name, error.message)); goto finish; } if (strcmp(interface, "org.freedesktop.RealtimeKit1") == 0) { assert_se(r = dbus_message_new_method_return(m)); if (!handle_dbus_prop_get(property, r) < 0) { dbus_message_unref(r); assert_se(r = dbus_message_new_error_printf( m, DBUS_ERROR_UNKNOWN_METHOD, "Unknown property %s", property)); } } else return DBUS_HANDLER_RESULT_NOT_YET_HANDLED; } else if (dbus_message_is_method_call(m, "org.freedesktop.DBus.Introspectable", "Introspect")) { const char *xml = INTROSPECT_XML; assert_se(r = dbus_message_new_method_return(m)); assert_se(dbus_message_append_args( r, DBUS_TYPE_STRING, &xml, DBUS_TYPE_INVALID)); } else return DBUS_HANDLER_RESULT_NOT_YET_HANDLED; syslog(LOG_DEBUG, "Supervising %u threads of %u processes of %u users.\n", n_total_threads, n_total_processes, n_users); sd_notifyf(0, "STATUS=Supervising %u threads of %u processes of %u users.", n_total_threads, n_total_processes, n_users); finish: if (r) { assert_se(dbus_connection_send(c, r, NULL)); dbus_message_unref(r); } dbus_error_free(&error); return DBUS_HANDLER_RESULT_HANDLED; } static int setup_dbus(DBusConnection **c) { static const DBusObjectPathVTable vtable = { .message_function = dbus_handler, }; DBusError error; dbus_error_init(&error); if (!(*c = dbus_bus_get_private(DBUS_BUS_SYSTEM, &error))) { syslog(LOG_ERR, "Failed to connect to system bus: %s\n", error.message); goto fail; } if (dbus_bus_request_name(*c, RTKIT_SERVICE_NAME, DBUS_NAME_FLAG_DO_NOT_QUEUE, &error) < 0) { syslog(LOG_ERR, "Failed to register name on bus: %s\n", error.message); goto fail; } assert_se(dbus_connection_register_object_path(*c, RTKIT_OBJECT_PATH, &vtable, NULL)); return 0; fail: dbus_error_free(&error); return -EIO; } static void block_all_signals(void) { sigset_t set; assert_se(sigfillset(&set) == 0); assert_se(pthread_sigmask(SIG_BLOCK, &set, NULL) == 0); } static void* canary_thread(void *data) { struct timespec last_cheep, now; struct pollfd pollfd; assert(canary_fd >= 0); assert(quit_fd >= 0); /* Make sure we are not disturbed by any signal */ block_all_signals(); self_drop_realtime(0); memset(&pollfd, 0, sizeof(pollfd)); pollfd.fd = quit_fd; pollfd.events = POLLIN; assert_se(clock_gettime(CLOCK_MONOTONIC, &now) == 0); last_cheep = now; syslog(LOG_DEBUG, "Canary thread running.\n"); for (;;) { int r; int64_t msec; msec = TIMESPEC_MSEC(last_cheep) + canary_cheep_msec - TIMESPEC_MSEC(now); if (msec < 0) msec = 0; r = poll(&pollfd, 1, (int) msec); assert_se(clock_gettime(CLOCK_MONOTONIC, &now) == 0); if (r < 0) { if (errno == EINTR || errno == EAGAIN) continue; syslog(LOG_ERR, "poll() failed: %s\n", strerror(errno)); break; } if (pollfd.revents) { syslog(LOG_DEBUG, "Exiting canary thread.\n"); break; } if (TIMESPEC_MSEC(last_cheep) + canary_cheep_msec <= TIMESPEC_MSEC(now)) { eventfd_t value = 1; if (eventfd_write(canary_fd, value) < 0) { syslog(LOG_ERR, "eventfd_write() failed: %s\n", strerror(errno)); break; } last_cheep = now; continue; } } return NULL; } static void* watchdog_thread(void *data) { enum { POLLFD_CANARY, POLLFD_QUIT, _POLLFD_MAX }; struct timespec last_cheep, now; struct pollfd pollfd[_POLLFD_MAX]; assert(canary_fd >= 0); assert(quit_fd >= 0); /* Make sure we are not disturbed by any signal */ block_all_signals(); self_set_realtime(canary_watchdog_realtime_priority); memset(pollfd, 0, sizeof(pollfd)); pollfd[POLLFD_CANARY].fd = canary_fd; pollfd[POLLFD_CANARY].events = POLLIN; pollfd[POLLFD_QUIT].fd = quit_fd; pollfd[POLLFD_QUIT].events = POLLIN; assert_se(clock_gettime(CLOCK_MONOTONIC, &now) == 0); last_cheep = now; syslog(LOG_DEBUG, "Watchdog thread running.\n"); for (;;) { int r; int64_t msec; msec = TIMESPEC_MSEC(last_cheep) + canary_watchdog_msec - TIMESPEC_MSEC(now); if (msec < 0) msec = 0; r = poll(pollfd, _POLLFD_MAX, (int) msec); assert_se(clock_gettime(CLOCK_MONOTONIC, &now) == 0); if (r < 0) { if (errno == EINTR || errno == EAGAIN) continue; syslog(LOG_ERR, "poll() failed: %s\n", strerror(errno)); break; } if (pollfd[POLLFD_QUIT].revents) { syslog(LOG_DEBUG, "Exiting watchdog thread.\n"); break; } if (pollfd[POLLFD_CANARY].revents) { eventfd_t value; if (eventfd_read(canary_fd, &value) < 0) { syslog(LOG_ERR, "eventfd_read() failed: %s\n", strerror(errno)); break; } last_cheep = now; continue; } if (TIMESPEC_MSEC(last_cheep) + canary_watchdog_msec <= TIMESPEC_MSEC(now)) { last_cheep = now; syslog(LOG_WARNING, "The canary thread is apparently starving. Taking action.\n"); refuse_until = (uint32_t) now.tv_sec + canary_refusal_sec; __sync_synchronize(); if (canary_demote_unknown) reset_all(); else reset_known(); continue; } } return NULL; } static void stop_canary(void) { int r; if (quit_fd >= 0) { eventfd_t value = 1; if (eventfd_write(quit_fd, value) < 0) syslog(LOG_WARNING, "Warning: eventfd_write() failed: %s\n", strerror(errno)); } if (canary_thread_id != 0) { if ((r = pthread_join(canary_thread_id, NULL)) != 0) syslog(LOG_WARNING, "Warning: pthread_join() failed: %s\n", strerror(r)); canary_thread_id = 0; } if (watchdog_thread_id != 0) { if ((r = pthread_join(watchdog_thread_id, NULL)) != 0) syslog(LOG_WARNING, "Warning: pthread_join() failed: %s\n", strerror(r)); watchdog_thread_id = 0; } if (canary_fd >= 0) { close(canary_fd); canary_fd = -1; } if (quit_fd >= 0) { close(quit_fd); quit_fd = -1; } } static int start_canary(void) { int r; if (!do_canary) return 0; if ((canary_fd = eventfd(0, EFD_NONBLOCK|EFD_CLOEXEC)) < 0 || (quit_fd = eventfd(0, EFD_NONBLOCK|EFD_CLOEXEC)) < 0) { r = -errno; syslog(LOG_ERR, "eventfd() failed: %s\n", strerror(errno)); goto fail; } if ((r = -pthread_create(&canary_thread_id, NULL, canary_thread, NULL)) < 0 || (r = -pthread_create(&watchdog_thread_id, NULL, watchdog_thread, NULL)) < 0) { syslog(LOG_ERR, "pthread_create failed: %s\n", strerror(-r)); goto fail; } return 0; fail: stop_canary(); return r; } static int drop_privileges(void) { struct passwd *pw = NULL; int r; if (do_drop_privileges) { /* First, get user data */ if (!(pw = getpwnam(username))) { syslog(LOG_ERR, "Failed to find user '%s'.\n", username); return -ENOENT; } } if (do_chroot) { /* Second, chroot() */ if (chroot("/proc") < 0 || chdir("/") < 0) { r = -errno; syslog(LOG_ERR, "Failed to chroot() to /proc: %s\n", strerror(errno)); return r; } proc = "/"; syslog(LOG_DEBUG, "Successfully called chroot.\n"); } if (do_drop_privileges) { cap_t caps; const cap_value_t cap_values[] = { CAP_SYS_NICE, /* Needed for obvious reasons */ CAP_DAC_READ_SEARCH, /* Needed so that we can verify resource limits */ CAP_SYS_PTRACE /* Needed so that we can read /proc/$$/exe. Linux is weird. */ }; /* Third, say that we want to keep caps */ if (prctl(PR_SET_KEEPCAPS, 1) < 0) { r = -errno; syslog(LOG_ERR, "PR_SET_KEEPCAPS failed: %s\n", strerror(errno)); return r; } /* Fourth, drop privs */ if (setresgid(pw->pw_gid, pw->pw_gid, pw->pw_gid) < 0 || setresuid(pw->pw_uid, pw->pw_uid, pw->pw_uid) < 0) { r = -errno; syslog(LOG_ERR, "Failed to become %s: %s\n", username, strerror(errno)); return r; } /* Fifth, reset caps flag */ if (prctl(PR_SET_KEEPCAPS, 0) < 0) { r = -errno; syslog(LOG_ERR, "PR_SET_KEEPCAPS failed: %s\n", strerror(errno)); return r; } /* Sixth, reduce caps */ assert_se(caps = cap_init()); assert_se(cap_clear(caps) == 0); assert_se(cap_set_flag(caps, CAP_EFFECTIVE, ELEMENTSOF(cap_values), cap_values, CAP_SET) == 0); assert_se(cap_set_flag(caps, CAP_PERMITTED, ELEMENTSOF(cap_values), cap_values, CAP_SET) == 0); if (cap_set_proc(caps) < 0) { r = -errno; syslog(LOG_ERR, "cap_set_proc() failed: %s\n", strerror(errno)); return r; } assert_se(cap_free(caps) == 0); /* Seventh, update environment */ setenv("USER", username, 1); setenv("USERNAME", username, 1); setenv("LOGNAME", username, 1); setenv("HOME", get_proc_path(), 1); syslog(LOG_DEBUG, "Successfully dropped privileges.\n"); } return 0; } static int set_resource_limits(void) { static struct { int id; const char *name; rlim_t value; } table[] = { { .id = RLIMIT_FSIZE, .name = "RLIMIT_FSIZE", .value = 0 }, { .id = RLIMIT_MEMLOCK, .name = "RLIMIT_MEMLOCK", .value = 0 }, { .id = RLIMIT_MSGQUEUE, .name = "RLIMIT_MSGQUEUE", .value = 0 }, { .id = RLIMIT_NICE, .name = "RLIMIT_NICE", .value = 20 }, { .id = RLIMIT_NOFILE, .name = "RLIMIT_NOFILE", .value = 50 }, { .id = RLIMIT_NPROC, .name = "RLIMIT_NPROC", .value = 3 }, { .id = RLIMIT_RTPRIO, .name = "RLIMIT_RTPRIO", .value = 0 }, /* Since we have CAP_SYS_NICE we don't need this */ { .id = RLIMIT_RTTIME, .name = "RLIMIT_RTTIME", .value = 0 } }; unsigned u; int r; assert(table[7].id == RLIMIT_RTTIME); table[7].value = rttime_nsec_max; /* Do as I say AND do as I do */ if (!do_limit_resources) return 0; for (u = 0; u < ELEMENTSOF(table); u++) { struct rlimit rlim; if (getrlimit(table[u].id, &rlim) < 0) { r = -errno; syslog(LOG_ERR, "Failed to get %s: %s\n", table[u].name, strerror(errno)); return r; } if (rlim.rlim_max < table[u].value) continue; rlim.rlim_cur = rlim.rlim_max = table[u].value; if (setrlimit(table[u].id, &rlim) < 0) { r = -errno; syslog(LOG_ERR, "Failed to set %s: %s\n", table[u].name, strerror(errno)); return r; } } syslog(LOG_DEBUG, "Successfully limited resources.\n"); return 0; } enum { ARG_HELP = 256, ARG_VERSION, ARG_SCHEDULING_POLICY, ARG_OUR_REALTIME_PRIORITY, ARG_OUR_NICE_LEVEL, ARG_MAX_REALTIME_PRIORITY, ARG_MIN_NICE_LEVEL, ARG_USER_NAME, ARG_RTTIME_NSEC_MAX, ARG_USERS_MAX, ARG_PROCESSES_PER_USER_MAX, ARG_THREADS_PER_USER_MAX, ARG_ACTIONS_BURST_SEC, ARG_ACTIONS_PER_BURST_MAX, ARG_NO_DROP_PRIVILEGES, ARG_NO_CHROOT, ARG_NO_LIMIT_RESOURCES, ARG_NO_CANARY, ARG_CANARY_CHEEP_MSEC, ARG_CANARY_WATCHDOG_MSEC, ARG_CANARY_DEMOTE_ROOT, ARG_CANARY_DEMOTE_UNKNOWN, ARG_CANARY_REFUSE_SEC, ARG_STDERR, ARG_INTROSPECT }; /* Table for getopt_long() */ static const struct option long_options[] = { { "help", no_argument, 0, ARG_HELP }, { "version", no_argument, 0, ARG_VERSION }, { "scheduling-policy", required_argument, 0, ARG_SCHEDULING_POLICY }, { "our-realtime-priority", required_argument, 0, ARG_OUR_REALTIME_PRIORITY }, { "our-nice-level", required_argument, 0, ARG_OUR_NICE_LEVEL }, { "max-realtime-priority", required_argument, 0, ARG_MAX_REALTIME_PRIORITY }, { "min-nice-level", required_argument, 0, ARG_MIN_NICE_LEVEL }, { "user-name", required_argument, 0, ARG_USER_NAME }, { "rttime-nsec-max", required_argument, 0, ARG_RTTIME_NSEC_MAX }, { "users-max", required_argument, 0, ARG_USERS_MAX }, { "processes-per-user-max", required_argument, 0, ARG_PROCESSES_PER_USER_MAX }, { "threads-per-user-max", required_argument, 0, ARG_THREADS_PER_USER_MAX }, { "actions-burst-sec", required_argument, 0, ARG_ACTIONS_BURST_SEC }, { "actions-per-burst-max", required_argument, 0, ARG_ACTIONS_PER_BURST_MAX }, { "no-drop-privileges", no_argument, 0, ARG_NO_DROP_PRIVILEGES }, { "no-chroot", no_argument, 0, ARG_NO_CHROOT }, { "no-limit-resources", no_argument, 0, ARG_NO_LIMIT_RESOURCES }, { "no-canary", no_argument, 0, ARG_NO_CANARY }, { "canary-cheep-msec", required_argument, 0, ARG_CANARY_CHEEP_MSEC }, { "canary-watchdog-msec", required_argument, 0, ARG_CANARY_WATCHDOG_MSEC }, { "canary-demote-root", no_argument, 0, ARG_CANARY_DEMOTE_ROOT }, { "canary-demote-unknown", no_argument, 0, ARG_CANARY_DEMOTE_UNKNOWN }, { "canary-refuse-sec", required_argument, 0, ARG_CANARY_REFUSE_SEC }, { "stderr", no_argument, 0, ARG_STDERR }, { "introspect", no_argument, 0, ARG_INTROSPECT }, { NULL, 0, 0, 0} }; static char* get_file_name(const char *p) { char *e; if ((e = strrchr(p, '/'))) return e + 1; else return (char*) p; } static void show_help(const char *exe) { static const char * const sp_names[] = { [SCHED_OTHER] = "OTHER", [SCHED_BATCH] = "BATCH", [SCHED_FIFO] = "FIFO", [SCHED_RR] = "RR" }; printf("%s [options]\n\n" "COMMANDS:\n" " -h, --help Show this help\n" " --version Show version\n\n" "OPTIONS:\n" " --stderr Log to STDERR in addition to syslog\n" " --user-name=USER Run daemon as user (%s)\n\n" " --scheduling-policy=(RR|FIFO) Choose scheduling policy (%s)\n" " --our-realtime-priority=[%i..%i] Realtime priority for the daemon (%u)\n" " --our-nice-level=[%i..%i] Nice level for the daemon (%i)\n" " --max-realtime-priority=[%i..%i] Max realtime priority for clients (%u)\n" " --min-nice-level=[%i..%i] Min nice level for clients (%i)\n\n" " --rttime-nsec-max=NSEC Require clients to have set RLIMIT_RTTIME\n" " not greater than this (%llu)\n\n" " --users-max=INT How many users this daemon will serve at\n" " max at the same time (%u)\n" " --processes-per-user-max=INT How many processes this daemon will serve\n" " at max per user at the same time (%u)\n" " --threads-per-user-max=INT How many threads this daemon will serve\n" " at max per user at the same time (%u)\n\n" " --actions-burst-sec=SEC Enforce requests limits in this time (%u)\n" " --actions-per-burst-max=INT Allow this many requests per burst (%u)\n\n" " --canary-cheep-msec=MSEC Canary cheep interval (%u)\n" " --canary-watchdog-msec=MSEC Watchdog action delay (%u)\n" " --canary-demote-unknown When the canary dies demote unknown\n" " processes too?\n" " --canary-demote-root When the canary dies demote root\n" " processes too?\n" " --canary-refuse-sec=SEC How long to refuse further requests\n" " after the canary died (%u)\n\n" " --no-canary Don't run a canary-based RT watchdog\n\n" " --no-drop-privileges Don't drop privileges\n" " --no-chroot Don't chroot\n" " --no-limit-resources Don't limit daemon's resources\n", exe, username, sp_names[sched_policy], sched_get_priority_min(sched_policy), sched_get_priority_max(sched_policy), our_realtime_priority, PRIO_MIN, PRIO_MAX-1, our_nice_level, sched_get_priority_min(sched_policy), sched_get_priority_max(sched_policy), max_realtime_priority, PRIO_MIN, PRIO_MAX-1, min_nice_level, rttime_nsec_max, users_max, processes_per_user_max, threads_per_user_max, actions_burst_sec, actions_per_burst_max, canary_cheep_msec, canary_watchdog_msec, canary_refusal_sec); } static int parse_command_line(int argc, char *argv[], int *ret) { int c; while ((c = getopt_long(argc, argv, "h", long_options, NULL)) >= 0) { switch (c) { case 'h': case ARG_HELP: show_help(get_file_name(argv[0])); *ret = 0; return 0; case ARG_VERSION: printf("%s " PACKAGE_VERSION "\n", get_file_name(argv[0])); *ret = 0; return 0; case ARG_USER_NAME: username = optarg; break; case ARG_SCHEDULING_POLICY: { if (strcasecmp(optarg, "rr") == 0) sched_policy = SCHED_RR; else if (strcasecmp(optarg, "fifo") == 0) sched_policy = SCHED_FIFO; else { fprintf(stderr, "--scheduling-policy parameter invalid.\n"); return -1; } break; } case ARG_OUR_REALTIME_PRIORITY: { char *e = NULL; unsigned long u; errno = 0; u = strtoul(optarg, &e, 0); if (errno != 0 || !e || *e || u < (unsigned) sched_get_priority_min(sched_policy) || u > (unsigned) sched_get_priority_max(sched_policy)) { fprintf(stderr, "--our-realtime-priority parameter invalid.\n"); return -1; } our_realtime_priority = u; break; } case ARG_OUR_NICE_LEVEL: { char *e = NULL; long i; errno = 0; i = strtol(optarg, &e, 0); if (errno != 0 || !e || *e || i < PRIO_MIN || i > PRIO_MAX*2) { fprintf(stderr, "--our-nice-level parameter invalid.\n"); return -1; } our_nice_level = i; break; } case ARG_MAX_REALTIME_PRIORITY: { char *e = NULL; unsigned long u; errno = 0; u = strtoul(optarg, &e, 0); if (errno != 0 || !e || *e || u < (unsigned) sched_get_priority_min(sched_policy) || u > (unsigned) sched_get_priority_max(sched_policy)) { fprintf(stderr, "--max-realtime-priority parameter invalid.\n"); return -1; } max_realtime_priority = u; break; } case ARG_MIN_NICE_LEVEL: { char *e = NULL; long i; errno = 0; i = strtol(optarg, &e, 0); if (errno != 0 || !e || *e || i < PRIO_MIN || i >= PRIO_MAX) { fprintf(stderr, "--min-nice-level parameter invalid.\n"); return -1; } min_nice_level = i; break; } case ARG_RTTIME_NSEC_MAX: { char *e = NULL; errno = 0; rttime_nsec_max = strtoull(optarg, &e, 0); if (errno != 0 || !e || *e || rttime_nsec_max <= 0) { fprintf(stderr, "--rttime-nsec-max parameter invalid.\n"); return -1; } break; } case ARG_USERS_MAX: { char *e = NULL; unsigned long u; errno = 0; u = strtoul(optarg, &e, 0); if (errno != 0 || !e || *e || u <= 0) { fprintf(stderr, "--users-max parameter invalid.\n"); return -1; } users_max = u; break; } case ARG_PROCESSES_PER_USER_MAX: { char *e = NULL; unsigned long u; errno = 0; u = strtoul(optarg, &e, 0); if (errno != 0 || !e || *e || u <= 0) { fprintf(stderr, "--processes-per-user-max parameter invalid.\n"); return -1; } processes_per_user_max = u; break; } case ARG_THREADS_PER_USER_MAX: { char *e = NULL; unsigned long u; errno = 0; u = strtoul(optarg, &e, 0); if (errno != 0 || !e || *e || u <= 0) { fprintf(stderr, "--threads-per-user-max parameter invalid.\n"); return -1; } threads_per_user_max = u; break; } case ARG_ACTIONS_BURST_SEC: { char *e = NULL; unsigned long u; errno = 0; u = strtoul(optarg, &e, 0); if (errno != 0 || !e || *e || u <= 0) { fprintf(stderr, "--actions-burst-sec parameter invalid.\n"); return -1; } actions_burst_sec = u; break; } case ARG_ACTIONS_PER_BURST_MAX: { char *e = NULL; unsigned long u; errno = 0; u = strtoul(optarg, &e, 0); if (errno != 0 || !e || *e || u <= 0) { fprintf(stderr, "--actions-per-burst-max parameter invalid.\n"); return -1; } actions_per_burst_max = u; break; } case ARG_NO_DROP_PRIVILEGES: do_drop_privileges = FALSE; break; case ARG_NO_CHROOT: do_chroot = FALSE; break; case ARG_NO_LIMIT_RESOURCES: do_limit_resources = FALSE; break; case ARG_NO_CANARY: do_canary = FALSE; break; case ARG_CANARY_WATCHDOG_MSEC: { char *e = NULL; unsigned long u; errno = 0; u = strtoul(optarg, &e, 0); if (errno != 0 || !e || *e || u <= 0) { fprintf(stderr, "--canary-watchdog-msec parameter invalid.\n"); return -1; } canary_watchdog_msec = u; break; } case ARG_CANARY_CHEEP_MSEC: { char *e = NULL; unsigned long u; errno = 0; u = strtoul(optarg, &e, 0); if (errno != 0 || !e || *e || u <= 0) { fprintf(stderr, "--canary-cheep-msec parameter invalid.\n"); return -1; } canary_cheep_msec = u; break; } case ARG_CANARY_DEMOTE_ROOT: canary_demote_root = TRUE; break; case ARG_CANARY_DEMOTE_UNKNOWN: canary_demote_unknown = TRUE; break; case ARG_CANARY_REFUSE_SEC: { char *e = NULL; unsigned long u; errno = 0; u = strtoul(optarg, &e, 0); if (errno != 0 || !e || *e) { fprintf(stderr, "--canary-refuse-sec parameter invalid.\n"); return -1; } canary_refusal_sec = (uint32_t) u; break; } case ARG_STDERR: log_stderr = TRUE; break; case ARG_INTROSPECT: fputs(INTROSPECT_XML, stdout); *ret = 0; return 0; case '?': default: fprintf(stderr, "Unknown command.\n"); return -1; } } if (optind < argc) { fprintf(stderr, "Too many arguments.\n"); return -1; } if (max_realtime_priority >= our_realtime_priority) { fprintf(stderr, "The maximum realtime priority (%u) handed out to clients cannot be higher then our own (%u).\n", max_realtime_priority, our_realtime_priority); return -1; } if (canary_cheep_msec >= canary_watchdog_msec) { fprintf(stderr, "The canary watchdog interval must be larger than the cheep interval.\n"); return -1; } assert(our_realtime_priority >= (unsigned) sched_get_priority_min(sched_policy)); assert(our_realtime_priority <= (unsigned) sched_get_priority_max(sched_policy)); assert(max_realtime_priority >= (unsigned) sched_get_priority_min(sched_policy)); assert(max_realtime_priority <= (unsigned) sched_get_priority_max(sched_policy)); assert(canary_watchdog_realtime_priority >= (unsigned) sched_get_priority_min(sched_policy)); assert(canary_watchdog_realtime_priority <= (unsigned) sched_get_priority_max(sched_policy)); assert(our_nice_level >= PRIO_MIN); assert(our_nice_level < PRIO_MAX); assert(min_nice_level >= PRIO_MIN); assert(min_nice_level < PRIO_MAX); return 1; } int main(int argc, char *argv[]) { DBusConnection *bus = NULL; int ret = 1; struct rtkit_user *u; unsigned long slack_ns; if (parse_command_line(argc, argv, &ret) <= 0) goto finish; if (getuid() != 0) { fprintf(stderr, "Need to be run as root.\n"); goto finish; } openlog(get_file_name(argv[0]), LOG_NDELAY|LOG_PID|(log_stderr ? LOG_PERROR : 0), LOG_DAEMON); /* Raise our timer slack, we don't really need to be woken up * on time. */ slack_ns = (((unsigned long) canary_watchdog_msec - (unsigned long) canary_cheep_msec) / 2UL) * 1000000UL; if (prctl(PR_SET_TIMERSLACK, slack_ns) < 0) syslog(LOG_WARNING, "PRT_SET_TIMERSLACK failed: %s\n", strerror(errno)); self_drop_realtime(our_nice_level); if (setup_dbus(&bus) < 0) goto finish; if (drop_privileges() < 0) goto finish; if (set_resource_limits() < 0) goto finish; if (start_canary() < 0) goto finish; umask(0777); syslog(LOG_DEBUG, "Running.\n"); sd_notify(0, "STATUS=Running."); dbus_connection_set_exit_on_disconnect(bus, FALSE); while (dbus_connection_read_write_dispatch(bus, -1)) ; ret = 0; syslog(LOG_DEBUG, "Exiting cleanly.\n"); finish: if (bus) { if (dbus_connection_get_is_connected(bus)) dbus_connection_close(bus); dbus_connection_unref(bus); } reset_known(); while ((u = users)) { users = u->next; free_user(u); } stop_canary(); dbus_shutdown(); return ret; } rtkit-0.10/sd-daemon.h0000664000076400007640000002411711527310436011551 00000000000000/*-*- Mode: C; c-basic-offset: 8; indent-tabs-mode: nil -*-*/ #ifndef foosddaemonhfoo #define foosddaemonhfoo /*** Copyright 2010 Lennart Poettering 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. ***/ #include #include #ifdef __cplusplus extern "C" { #endif /* Reference implementation of a few systemd related interfaces for writing daemons. These interfaces are trivial to implement. To simplify porting we provide this reference implementation. Applications are welcome to reimplement the algorithms described here if they do not want to include these two source files. The following functionality is provided: - Support for logging with log levels on stderr - File descriptor passing for socket-based activation - Daemon startup and status notification - Detection of systemd boots You may compile this with -DDISABLE_SYSTEMD to disable systemd support. This makes all those calls NOPs that are directly related to systemd (i.e. only sd_is_xxx() will stay useful). Since this is drop-in code we don't want any of our symbols to be exported in any case. Hence we declare hidden visibility for all of them. You may find an up-to-date version of these source files online: http://cgit.freedesktop.org/systemd/plain/src/sd-daemon.h http://cgit.freedesktop.org/systemd/plain/src/sd-daemon.c This should compile on non-Linux systems, too, but with the exception of the sd_is_xxx() calls all functions will become NOPs. See sd-daemon(7) for more information. */ #ifndef _sd_printf_attr_ #if __GNUC__ >= 4 #define _sd_printf_attr_(a,b) __attribute__ ((format (printf, a, b))) #else #define _sd_printf_attr_(a,b) #endif #endif #ifndef _sd_hidden_ #if (__GNUC__ >= 4) && !defined(SD_EXPORT_SYMBOLS) #define _sd_hidden_ __attribute__ ((visibility("hidden"))) #else #define _sd_hidden_ #endif #endif /* Log levels for usage on stderr: fprintf(stderr, SD_NOTICE "Hello World!\n"); This is similar to printk() usage in the kernel. */ #define SD_EMERG "<0>" /* system is unusable */ #define SD_ALERT "<1>" /* action must be taken immediately */ #define SD_CRIT "<2>" /* critical conditions */ #define SD_ERR "<3>" /* error conditions */ #define SD_WARNING "<4>" /* warning conditions */ #define SD_NOTICE "<5>" /* normal but significant condition */ #define SD_INFO "<6>" /* informational */ #define SD_DEBUG "<7>" /* debug-level messages */ /* The first passed file descriptor is fd 3 */ #define SD_LISTEN_FDS_START 3 /* Returns how many file descriptors have been passed, or a negative errno code on failure. Optionally, removes the $LISTEN_FDS and $LISTEN_PID file descriptors from the environment (recommended, but problematic in threaded environments). If r is the return value of this function you'll find the file descriptors passed as fds SD_LISTEN_FDS_START to SD_LISTEN_FDS_START+r-1. Returns a negative errno style error code on failure. This function call ensures that the FD_CLOEXEC flag is set for the passed file descriptors, to make sure they are not passed on to child processes. If FD_CLOEXEC shall not be set, the caller needs to unset it after this call for all file descriptors that are used. See sd_listen_fds(3) for more information. */ int sd_listen_fds(int unset_environment) _sd_hidden_; /* Helper call for identifying a passed file descriptor. Returns 1 if the file descriptor is a FIFO in the file system stored under the specified path, 0 otherwise. If path is NULL a path name check will not be done and the call only verifies if the file descriptor refers to a FIFO. Returns a negative errno style error code on failure. See sd_is_fifo(3) for more information. */ int sd_is_fifo(int fd, const char *path) _sd_hidden_; /* Helper call for identifying a passed file descriptor. Returns 1 if the file descriptor is a socket of the specified family (AF_INET, ...) and type (SOCK_DGRAM, SOCK_STREAM, ...), 0 otherwise. If family is 0 a socket family check will not be done. If type is 0 a socket type check will not be done and the call only verifies if the file descriptor refers to a socket. If listening is > 0 it is verified that the socket is in listening mode. (i.e. listen() has been called) If listening is == 0 it is verified that the socket is not in listening mode. If listening is < 0 no listening mode check is done. Returns a negative errno style error code on failure. See sd_is_socket(3) for more information. */ int sd_is_socket(int fd, int family, int type, int listening) _sd_hidden_; /* Helper call for identifying a passed file descriptor. Returns 1 if the file descriptor is an Internet socket, of the specified family (either AF_INET or AF_INET6) and the specified type (SOCK_DGRAM, SOCK_STREAM, ...), 0 otherwise. If version is 0 a protocol version check is not done. If type is 0 a socket type check will not be done. If port is 0 a socket port check will not be done. The listening flag is used the same way as in sd_is_socket(). Returns a negative errno style error code on failure. See sd_is_socket_inet(3) for more information. */ int sd_is_socket_inet(int fd, int family, int type, int listening, uint16_t port) _sd_hidden_; /* Helper call for identifying a passed file descriptor. Returns 1 if the file descriptor is an AF_UNIX socket of the specified type (SOCK_DGRAM, SOCK_STREAM, ...) and path, 0 otherwise. If type is 0 a socket type check will not be done. If path is NULL a socket path check will not be done. For normal AF_UNIX sockets set length to 0. For abstract namespace sockets set length to the length of the socket name (including the initial 0 byte), and pass the full socket path in path (including the initial 0 byte). The listening flag is used the same way as in sd_is_socket(). Returns a negative errno style error code on failure. See sd_is_socket_unix(3) for more information. */ int sd_is_socket_unix(int fd, int type, int listening, const char *path, size_t length) _sd_hidden_; /* Informs systemd about changed daemon state. This takes a number of newline separated environment-style variable assignments in a string. The following variables are known: READY=1 Tells systemd that daemon startup is finished (only relevant for services of Type=notify). The passed argument is a boolean "1" or "0". Since there is little value in signalling non-readiness the only value daemons should send is "READY=1". STATUS=... Passes a single-line status string back to systemd that describes the daemon state. This is free-from and can be used for various purposes: general state feedback, fsck-like programs could pass completion percentages and failing programs could pass a human readable error message. Example: "STATUS=Completed 66% of file system check..." ERRNO=... If a daemon fails, the errno-style error code, formatted as string. Example: "ERRNO=2" for ENOENT. BUSERROR=... If a daemon fails, the D-Bus error-style error code. Example: "BUSERROR=org.freedesktop.DBus.Error.TimedOut" MAINPID=... The main pid of a daemon, in case systemd did not fork off the process itself. Example: "MAINPID=4711" Daemons can choose to send additional variables. However, it is recommened to prefix variable names not listed above with X_. Returns a negative errno-style error code on failure. Returns > 0 if systemd could be notified, 0 if it couldn't possibly because systemd is not running. Example: When a daemon finished starting up, it could issue this call to notify systemd about it: sd_notify(0, "READY=1"); See sd_notifyf() for more complete examples. See sd_notify(3) for more information. */ int sd_notify(int unset_environment, const char *state) _sd_hidden_; /* Similar to sd_notify() but takes a format string. Example 1: A daemon could send the following after initialization: sd_notifyf(0, "READY=1\n" "STATUS=Processing requests...\n" "MAINPID=%lu", (unsigned long) getpid()); Example 2: A daemon could send the following shortly before exiting, on failure: sd_notifyf(0, "STATUS=Failed to start up: %s\n" "ERRNO=%i", strerror(errno), errno); See sd_notifyf(3) for more information. */ int sd_notifyf(int unset_environment, const char *format, ...) _sd_printf_attr_(2,3) _sd_hidden_; /* Returns > 0 if the system was booted with systemd. Returns < 0 on error. Returns 0 if the system was not booted with systemd. Note that all of the functions above handle non-systemd boots just fine. You should NOT protect them with a call to this function. Also note that this function checks whether the system, not the user session is controlled by systemd. However the functions above work for both user and system services. See sd_booted(3) for more information. */ int sd_booted(void) _sd_hidden_; #ifdef __cplusplus } #endif #endif rtkit-0.10/org.freedesktop.RealtimeKit1.policy0000664000076400007640000000272111435335267016351 00000000000000 Lennart Poettering Grant high priority scheduling to a user process Bir sürece yüksek öncelikli çalışabilme yetkisi ver Authentication is required to grant an application high priority scheduling Sürecin yüksek öncelikli çalıştırılabilmesi için yetki gerekiyor no yes yes Grant realtime scheduling to a user process Bir sürece gerçek zamanlı çalışabilme yetkisi ver Authentication is required to grant an application realtime scheduling Sürecin gerçek zamanlı çalıştırılabilmesi için yetki gerekiyor no yes yes rtkit-0.10/rtkit-test.c0000664000076400007640000001035611435335267012016 00000000000000/*-*- Mode: C; c-basic-offset: 8 -*-*/ /*** This file is part of RealtimeKit. Copyright 2009 Lennart Poettering RealtimeKit is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. RealtimeKit 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 RealtimeKit. If not, see . ***/ #include #include #include #include #include #include #include "rtkit.h" #ifndef SCHED_RESET_ON_FORK #define SCHED_RESET_ON_FORK 0x40000000 #endif #ifndef RLIMIT_RTTIME #define RLIMIT_RTTIME 15 #endif static void print_status(const char *t) { int ret; if ((ret = sched_getscheduler(0)) < 0) { fprintf(stderr, "sched_getscheduler() failed: %s\n", strerror(errno)); return; } printf("%s:\n" "\tSCHED_RESET_ON_FORK: %s\n", t, (ret & SCHED_RESET_ON_FORK) ? "yes" : "no"); if ((ret & ~SCHED_RESET_ON_FORK) == SCHED_RR) { struct sched_param param; if (sched_getparam(0, ¶m) < 0) { fprintf(stderr, "sched_getschedparam() failed: %s\n", strerror(errno)); return; } printf("\tSCHED_RR with priority %i\n", param.sched_priority); } else if ((ret & ~SCHED_RESET_ON_FORK) == SCHED_OTHER) { errno = 0; ret = getpriority(PRIO_PROCESS, 0); if (errno != 0) { fprintf(stderr, "getpriority() failed: %s\n", strerror(errno)); return; } printf("\tSCHED_OTHER with nice level: %i\n", ret); } else fprintf(stderr, "Neither SCHED_RR nor SCHED_OTHER.\n"); } int main(int argc, char *argv[]) { DBusError error; DBusConnection *bus; int r, max_realtime_priority, min_nice_level; long long rttime_nsec_max; struct rlimit rlim; dbus_error_init(&error); if (!(bus = dbus_bus_get(DBUS_BUS_SYSTEM, &error))) { fprintf(stderr, "Failed to connect to system bus: %s\n", error.message); return 1; } if ((max_realtime_priority = rtkit_get_max_realtime_priority(bus)) < 0) fprintf(stderr, "Failed to retrieve max realtime priority: %s\n", strerror(-max_realtime_priority)); else printf("Max realtime priority is: %d\n", max_realtime_priority); if ((r = rtkit_get_min_nice_level(bus, &min_nice_level))) fprintf(stderr, "Failed to retrieve min nice level: %s\n", strerror(-r)); else printf("Min nice level is: %d\n", min_nice_level); if ((rttime_nsec_max = rtkit_get_rttime_nsec_max(bus)) < 0) fprintf(stderr, "Failed to retrieve rttime limit: %s\n", strerror(-rttime_nsec_max)); else printf("Rttime limit is: %lld ns\n", rttime_nsec_max); memset(&rlim, 0, sizeof(rlim)); rlim.rlim_cur = rlim.rlim_max = 100000000ULL; /* 100ms */ if ((setrlimit(RLIMIT_RTTIME, &rlim) < 0)) fprintf(stderr, "Failed to set RLIMIT_RTTIME: %s\n", strerror(errno)); print_status("before"); if ((r = rtkit_make_high_priority(bus, 0, -10)) < 0) fprintf(stderr, "Failed to become high priority: %s\n", strerror(-r)); else printf("Successfully became high priority.\n"); print_status("after high priority"); if ((r = rtkit_make_realtime(bus, 0, 10)) < 0) fprintf(stderr, "Failed to become realtime: %s\n", strerror(-r)); else printf("Successfully became realtime.\n"); print_status("after realtime"); dbus_connection_unref(bus); return 0; } rtkit-0.10/m4/0000775000076400007640000000000011527310575010130 500000000000000rtkit-0.10/m4/acx_pthread.m40000664000076400007640000002542311435335267012605 00000000000000# =========================================================================== # http://www.nongnu.org/autoconf-archive/acx_pthread.html # =========================================================================== # # SYNOPSIS # # ACX_PTHREAD([ACTION-IF-FOUND[, ACTION-IF-NOT-FOUND]]) # # DESCRIPTION # # This macro figures out how to build C programs using POSIX threads. It # sets the PTHREAD_LIBS output variable to the threads library and linker # flags, and the PTHREAD_CFLAGS output variable to any special C compiler # flags that are needed. (The user can also force certain compiler # flags/libs to be tested by setting these environment variables.) # # Also sets PTHREAD_CC to any special C compiler that is needed for # multi-threaded programs (defaults to the value of CC otherwise). (This # is necessary on AIX to use the special cc_r compiler alias.) # # NOTE: You are assumed to not only compile your program with these flags, # but also link it with them as well. e.g. you should link with # $PTHREAD_CC $CFLAGS $PTHREAD_CFLAGS $LDFLAGS ... $PTHREAD_LIBS $LIBS # # If you are only building threads programs, you may wish to use these # variables in your default LIBS, CFLAGS, and CC: # # LIBS="$PTHREAD_LIBS $LIBS" # CFLAGS="$CFLAGS $PTHREAD_CFLAGS" # CC="$PTHREAD_CC" # # In addition, if the PTHREAD_CREATE_JOINABLE thread-attribute constant # has a nonstandard name, defines PTHREAD_CREATE_JOINABLE to that name # (e.g. PTHREAD_CREATE_UNDETACHED on AIX). # # ACTION-IF-FOUND is a list of shell commands to run if a threads library # is found, and ACTION-IF-NOT-FOUND is a list of commands to run it if it # is not found. If ACTION-IF-FOUND is not specified, the default action # will define HAVE_PTHREAD. # # Please let the authors know if this macro fails on any platform, or if # you have any other suggestions or comments. This macro was based on work # by SGJ on autoconf scripts for FFTW (http://www.fftw.org/) (with help # from M. Frigo), as well as ac_pthread and hb_pthread macros posted by # Alejandro Forero Cuervo to the autoconf macro repository. We are also # grateful for the helpful feedback of numerous users. # # LICENSE # # Copyright (c) 2008 Steven G. Johnson # # This program is free software: you can redistribute it and/or modify it # under the terms of the GNU General Public License as published by the # Free Software Foundation, either version 3 of the License, or (at your # option) any later version. # # This program is distributed in the hope that it will be useful, but # WITHOUT ANY WARRANTY; without even the implied warranty of # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General # Public License for more details. # # You should have received a copy of the GNU General Public License along # with this program. If not, see . # # As a special exception, the respective Autoconf Macro's copyright owner # gives unlimited permission to copy, distribute and modify the configure # scripts that are the output of Autoconf when processing the Macro. You # need not follow the terms of the GNU General Public License when using # or distributing such scripts, even though portions of the text of the # Macro appear in them. The GNU General Public License (GPL) does govern # all other use of the material that constitutes the Autoconf Macro. # # This special exception to the GPL applies to versions of the Autoconf # Macro released by the Autoconf Archive. When you make and distribute a # modified version of the Autoconf Macro, you may extend this special # exception to the GPL to apply to your modified version as well. 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="$save_CFLAGS" # More AIX lossage: must compile with xlc_r or cc_r if test x"$GCC" != xyes; then AC_CHECK_PROGS(PTHREAD_CC, xlc_r cc_r, ${CC}) else PTHREAD_CC=$CC fi 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; then ifelse([$1],,AC_DEFINE(HAVE_PTHREAD,1,[Define if you have POSIX threads libraries and header files.]),[$1]) : else acx_pthread_ok=no $2 fi AC_LANG_RESTORE ])dnl ACX_PTHREAD rtkit-0.10/missing0000755000076400007640000002623311527241370011127 00000000000000#! /bin/sh # Common stub for a few missing GNU programs while installing. scriptversion=2009-04-28.21; # UTC # Copyright (C) 1996, 1997, 1999, 2000, 2002, 2003, 2004, 2005, 2006, # 2008, 2009 Free Software Foundation, Inc. # Originally by Fran,cois Pinard , 1996. # 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. if test $# -eq 0; then echo 1>&2 "Try \`$0 --help' for more information" exit 1 fi run=: sed_output='s/.* --output[ =]\([^ ]*\).*/\1/p' sed_minuso='s/.* -o \([^ ]*\).*/\1/p' # In the cases where this matters, `missing' is being run in the # srcdir already. if test -f configure.ac; then configure_ac=configure.ac else configure_ac=configure.in fi msg="missing on your system" case $1 in --run) # Try to run requested program, and just exit if it succeeds. run= shift "$@" && exit 0 # Exit code 63 means version mismatch. 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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. ***/ #include #include #ifdef __cplusplus extern "C" { #endif /* This is the reference implementation for a client for * RealtimeKit. You don't have to use this, but if do, just copy these * sources into your repository */ #define RTKIT_SERVICE_NAME "org.freedesktop.RealtimeKit1" #define RTKIT_OBJECT_PATH "/org/freedesktop/RealtimeKit1" /* This is mostly equivalent to sched_setparam(thread, SCHED_RR, { * .sched_priority = priority }). 'thread' needs to be a kernel thread * id as returned by gettid(), not a pthread_t! 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" >&6; } if ${ac_cv_sys_largefile_CC+:} false; then : $as_echo_n "(cached) " >&6 else ac_cv_sys_largefile_CC=no if test "$GCC" != yes; then ac_save_CC=$CC while :; do # IRIX 6.2 and later do not support large files by default, # so use the C compiler's -n32 option if that helps. cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ #include /* Check that off_t can represent 2**63 - 1 correctly. We can't simply define LARGE_OFF_T to be 9223372036854775807, since some C++ compilers masquerading as C compilers incorrectly reject 9223372036854775807. */ #define LARGE_OFF_T (((off_t) 1 << 62) - 1 + ((off_t) 1 << 62)) int off_t_is_large[(LARGE_OFF_T % 2147483629 == 721 && LARGE_OFF_T % 2147483647 == 1) ? 1 : -1]; int main () { ; return 0; } _ACEOF if ac_fn_c_try_compile "$LINENO"; then : break fi rm -f core conftest.err conftest.$ac_objext CC="$CC -n32" if ac_fn_c_try_compile "$LINENO"; then : ac_cv_sys_largefile_CC=' -n32'; break fi rm -f core conftest.err conftest.$ac_objext break done CC=$ac_save_CC rm -f conftest.$ac_ext fi fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_cv_sys_largefile_CC" >&5 $as_echo "$ac_cv_sys_largefile_CC" >&6; } if test "$ac_cv_sys_largefile_CC" != no; then CC=$CC$ac_cv_sys_largefile_CC fi { $as_echo "$as_me:${as_lineno-$LINENO}: checking for _FILE_OFFSET_BITS value needed for large files" >&5 $as_echo_n "checking for _FILE_OFFSET_BITS value needed for large files... " >&6; } if ${ac_cv_sys_file_offset_bits+:} false; then : $as_echo_n "(cached) " >&6 else while :; do cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ #include /* Check that off_t can represent 2**63 - 1 correctly. We can't simply define LARGE_OFF_T to be 9223372036854775807, since some C++ compilers masquerading as C compilers incorrectly reject 9223372036854775807. */ #define LARGE_OFF_T (((off_t) 1 << 62) - 1 + ((off_t) 1 << 62)) int off_t_is_large[(LARGE_OFF_T % 2147483629 == 721 && LARGE_OFF_T % 2147483647 == 1) ? 1 : -1]; int main () { ; return 0; } _ACEOF if ac_fn_c_try_compile "$LINENO"; then : ac_cv_sys_file_offset_bits=no; break fi rm -f core conftest.err conftest.$ac_objext conftest.$ac_ext cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ #define _FILE_OFFSET_BITS 64 #include /* Check that off_t can represent 2**63 - 1 correctly. We can't simply define LARGE_OFF_T to be 9223372036854775807, since some C++ compilers masquerading as C compilers incorrectly reject 9223372036854775807. */ #define LARGE_OFF_T (((off_t) 1 << 62) - 1 + ((off_t) 1 << 62)) int off_t_is_large[(LARGE_OFF_T % 2147483629 == 721 && LARGE_OFF_T % 2147483647 == 1) ? 1 : -1]; int main () { ; return 0; } _ACEOF if ac_fn_c_try_compile "$LINENO"; then : ac_cv_sys_file_offset_bits=64; break fi rm -f core conftest.err conftest.$ac_objext conftest.$ac_ext ac_cv_sys_file_offset_bits=unknown break done fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_cv_sys_file_offset_bits" >&5 $as_echo "$ac_cv_sys_file_offset_bits" >&6; } case $ac_cv_sys_file_offset_bits in #( no | unknown) ;; *) cat >>confdefs.h <<_ACEOF #define _FILE_OFFSET_BITS $ac_cv_sys_file_offset_bits _ACEOF ;; esac rm -rf conftest* if test $ac_cv_sys_file_offset_bits = unknown; then { $as_echo "$as_me:${as_lineno-$LINENO}: checking for _LARGE_FILES value needed for large files" >&5 $as_echo_n "checking for _LARGE_FILES value needed for large files... " >&6; } if ${ac_cv_sys_large_files+:} false; then : $as_echo_n "(cached) " >&6 else while :; do cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ #include /* Check that off_t can represent 2**63 - 1 correctly. We can't simply define LARGE_OFF_T to be 9223372036854775807, since some C++ compilers masquerading as C compilers incorrectly reject 9223372036854775807. */ #define LARGE_OFF_T (((off_t) 1 << 62) - 1 + ((off_t) 1 << 62)) int off_t_is_large[(LARGE_OFF_T % 2147483629 == 721 && LARGE_OFF_T % 2147483647 == 1) ? 1 : -1]; int main () { ; return 0; } _ACEOF if ac_fn_c_try_compile "$LINENO"; then : ac_cv_sys_large_files=no; break fi rm -f core conftest.err conftest.$ac_objext conftest.$ac_ext cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ #define _LARGE_FILES 1 #include /* Check that off_t can represent 2**63 - 1 correctly. We can't simply define LARGE_OFF_T to be 9223372036854775807, since some C++ compilers masquerading as C compilers incorrectly reject 9223372036854775807. */ #define LARGE_OFF_T (((off_t) 1 << 62) - 1 + ((off_t) 1 << 62)) int off_t_is_large[(LARGE_OFF_T % 2147483629 == 721 && LARGE_OFF_T % 2147483647 == 1) ? 1 : -1]; int main () { ; return 0; } _ACEOF if ac_fn_c_try_compile "$LINENO"; then : ac_cv_sys_large_files=1; break fi rm -f core conftest.err conftest.$ac_objext conftest.$ac_ext ac_cv_sys_large_files=unknown break done fi { $as_echo "$as_me:${as_lineno-$LINENO}: result: $ac_cv_sys_large_files" >&5 $as_echo "$ac_cv_sys_large_files" >&6; } case $ac_cv_sys_large_files in #( no | unknown) ;; *) cat >>confdefs.h <<_ACEOF #define _LARGE_FILES $ac_cv_sys_large_files _ACEOF ;; esac rm -rf conftest* fi fi { $as_echo "$as_me:${as_lineno-$LINENO}: checking for library containing sched_setscheduler" >&5 $as_echo_n "checking for library containing sched_setscheduler... " >&6; } if ${ac_cv_search_sched_setscheduler+:} false; then : $as_echo_n "(cached) " >&6 else ac_func_search_save_LIBS=$LIBS cat confdefs.h - <<_ACEOF >conftest.$ac_ext /* end confdefs.h. */ /* Override any GCC internal prototype to avoid an error. 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