1. 07 2月, 2009 1 次提交
    • D
      CRED: Fix SUID exec regression · 0bf2f3ae
      David Howells 提交于
      The patch:
      
      	commit a6f76f23
      	CRED: Make execve() take advantage of copy-on-write credentials
      
      moved the place in which the 'safeness' of a SUID/SGID exec was performed to
      before de_thread() was called.  This means that LSM_UNSAFE_SHARE is now
      calculated incorrectly.  This flag is set if any of the usage counts for
      fs_struct, files_struct and sighand_struct are greater than 1 at the time the
      determination is made.  All of which are true for threads created by the
      pthread library.
      
      However, since we wish to make the security calculation before irrevocably
      damaging the process so that we can return it an error code in the case where
      we decide we want to reject the exec request on this basis, we have to make the
      determination before calling de_thread().
      
      So, instead, we count up the number of threads (CLONE_THREAD) that are sharing
      our fs_struct (CLONE_FS), files_struct (CLONE_FILES) and sighand_structs
      (CLONE_SIGHAND/CLONE_THREAD) with us.  These will be killed by de_thread() and
      so can be discounted by check_unsafe_exec().
      
      We do have to be careful because CLONE_THREAD does not imply FS or FILES.
      
      We _assume_ that there will be no extra references to these structs held by the
      threads we're going to kill.
      
      This can be tested with the attached pair of programs.  Build the two programs
      using the Makefile supplied, and run ./test1 as a non-root user.  If
      successful, you should see something like:
      
      	[dhowells@andromeda tmp]$ ./test1
      	--TEST1--
      	uid=4043, euid=4043 suid=4043
      	exec ./test2
      	--TEST2--
      	uid=4043, euid=0 suid=0
      	SUCCESS - Correct effective user ID
      
      and if unsuccessful, something like:
      
      	[dhowells@andromeda tmp]$ ./test1
      	--TEST1--
      	uid=4043, euid=4043 suid=4043
      	exec ./test2
      	--TEST2--
      	uid=4043, euid=4043 suid=4043
      	ERROR - Incorrect effective user ID!
      
      The non-root user ID you see will depend on the user you run as.
      
      [test1.c]
      #include <stdio.h>
      #include <stdlib.h>
      #include <unistd.h>
      #include <pthread.h>
      
      static void *thread_func(void *arg)
      {
      	while (1) {}
      }
      
      int main(int argc, char **argv)
      {
      	pthread_t tid;
      	uid_t uid, euid, suid;
      
      	printf("--TEST1--\n");
      	getresuid(&uid, &euid, &suid);
      	printf("uid=%d, euid=%d suid=%d\n", uid, euid, suid);
      
      	if (pthread_create(&tid, NULL, thread_func, NULL) < 0) {
      		perror("pthread_create");
      		exit(1);
      	}
      
      	printf("exec ./test2\n");
      	execlp("./test2", "test2", NULL);
      	perror("./test2");
      	_exit(1);
      }
      
      [test2.c]
      #include <stdio.h>
      #include <stdlib.h>
      #include <unistd.h>
      
      int main(int argc, char **argv)
      {
      	uid_t uid, euid, suid;
      
      	getresuid(&uid, &euid, &suid);
      	printf("--TEST2--\n");
      	printf("uid=%d, euid=%d suid=%d\n", uid, euid, suid);
      
      	if (euid != 0) {
      		fprintf(stderr, "ERROR - Incorrect effective user ID!\n");
      		exit(1);
      	}
      	printf("SUCCESS - Correct effective user ID\n");
      	exit(0);
      }
      
      [Makefile]
      CFLAGS = -D_GNU_SOURCE -Wall -Werror -Wunused
      all: test1 test2
      
      test1: test1.c
      	gcc $(CFLAGS) -o test1 test1.c -lpthread
      
      test2: test2.c
      	gcc $(CFLAGS) -o test2 test2.c
      	sudo chown root.root test2
      	sudo chmod +s test2
      Reported-by: NDavid Smith <dsmith@redhat.com>
      Signed-off-by: NDavid Howells <dhowells@redhat.com>
      Acked-by: NDavid Smith <dsmith@redhat.com>
      Signed-off-by: NJames Morris <jmorris@namei.org>
      0bf2f3ae
  2. 14 1月, 2009 1 次提交
  3. 07 1月, 2009 1 次提交
  4. 14 11月, 2008 1 次提交
    • D
      CRED: Make execve() take advantage of copy-on-write credentials · a6f76f23
      David Howells 提交于
      Make execve() take advantage of copy-on-write credentials, allowing it to set
      up the credentials in advance, and then commit the whole lot after the point
      of no return.
      
      This patch and the preceding patches have been tested with the LTP SELinux
      testsuite.
      
      This patch makes several logical sets of alteration:
      
       (1) execve().
      
           The credential bits from struct linux_binprm are, for the most part,
           replaced with a single credentials pointer (bprm->cred).  This means that
           all the creds can be calculated in advance and then applied at the point
           of no return with no possibility of failure.
      
           I would like to replace bprm->cap_effective with:
      
      	cap_isclear(bprm->cap_effective)
      
           but this seems impossible due to special behaviour for processes of pid 1
           (they always retain their parent's capability masks where normally they'd
           be changed - see cap_bprm_set_creds()).
      
           The following sequence of events now happens:
      
           (a) At the start of do_execve, the current task's cred_exec_mutex is
           	 locked to prevent PTRACE_ATTACH from obsoleting the calculation of
           	 creds that we make.
      
           (a) prepare_exec_creds() is then called to make a copy of the current
           	 task's credentials and prepare it.  This copy is then assigned to
           	 bprm->cred.
      
        	 This renders security_bprm_alloc() and security_bprm_free()
           	 unnecessary, and so they've been removed.
      
           (b) The determination of unsafe execution is now performed immediately
           	 after (a) rather than later on in the code.  The result is stored in
           	 bprm->unsafe for future reference.
      
           (c) prepare_binprm() is called, possibly multiple times.
      
           	 (i) This applies the result of set[ug]id binaries to the new creds
           	     attached to bprm->cred.  Personality bit clearance is recorded,
           	     but now deferred on the basis that the exec procedure may yet
           	     fail.
      
               (ii) This then calls the new security_bprm_set_creds().  This should
      	     calculate the new LSM and capability credentials into *bprm->cred.
      
      	     This folds together security_bprm_set() and parts of
      	     security_bprm_apply_creds() (these two have been removed).
      	     Anything that might fail must be done at this point.
      
               (iii) bprm->cred_prepared is set to 1.
      
      	     bprm->cred_prepared is 0 on the first pass of the security
      	     calculations, and 1 on all subsequent passes.  This allows SELinux
      	     in (ii) to base its calculations only on the initial script and
      	     not on the interpreter.
      
           (d) flush_old_exec() is called to commit the task to execution.  This
           	 performs the following steps with regard to credentials:
      
      	 (i) Clear pdeath_signal and set dumpable on certain circumstances that
      	     may not be covered by commit_creds().
      
               (ii) Clear any bits in current->personality that were deferred from
                   (c.i).
      
           (e) install_exec_creds() [compute_creds() as was] is called to install the
           	 new credentials.  This performs the following steps with regard to
           	 credentials:
      
               (i) Calls security_bprm_committing_creds() to apply any security
                   requirements, such as flushing unauthorised files in SELinux, that
                   must be done before the credentials are changed.
      
      	     This is made up of bits of security_bprm_apply_creds() and
      	     security_bprm_post_apply_creds(), both of which have been removed.
      	     This function is not allowed to fail; anything that might fail
      	     must have been done in (c.ii).
      
               (ii) Calls commit_creds() to apply the new credentials in a single
                   assignment (more or less).  Possibly pdeath_signal and dumpable
                   should be part of struct creds.
      
      	 (iii) Unlocks the task's cred_replace_mutex, thus allowing
      	     PTRACE_ATTACH to take place.
      
               (iv) Clears The bprm->cred pointer as the credentials it was holding
                   are now immutable.
      
               (v) Calls security_bprm_committed_creds() to apply any security
                   alterations that must be done after the creds have been changed.
                   SELinux uses this to flush signals and signal handlers.
      
           (f) If an error occurs before (d.i), bprm_free() will call abort_creds()
           	 to destroy the proposed new credentials and will then unlock
           	 cred_replace_mutex.  No changes to the credentials will have been
           	 made.
      
       (2) LSM interface.
      
           A number of functions have been changed, added or removed:
      
           (*) security_bprm_alloc(), ->bprm_alloc_security()
           (*) security_bprm_free(), ->bprm_free_security()
      
           	 Removed in favour of preparing new credentials and modifying those.
      
           (*) security_bprm_apply_creds(), ->bprm_apply_creds()
           (*) security_bprm_post_apply_creds(), ->bprm_post_apply_creds()
      
           	 Removed; split between security_bprm_set_creds(),
           	 security_bprm_committing_creds() and security_bprm_committed_creds().
      
           (*) security_bprm_set(), ->bprm_set_security()
      
           	 Removed; folded into security_bprm_set_creds().
      
           (*) security_bprm_set_creds(), ->bprm_set_creds()
      
           	 New.  The new credentials in bprm->creds should be checked and set up
           	 as appropriate.  bprm->cred_prepared is 0 on the first call, 1 on the
           	 second and subsequent calls.
      
           (*) security_bprm_committing_creds(), ->bprm_committing_creds()
           (*) security_bprm_committed_creds(), ->bprm_committed_creds()
      
           	 New.  Apply the security effects of the new credentials.  This
           	 includes closing unauthorised files in SELinux.  This function may not
           	 fail.  When the former is called, the creds haven't yet been applied
           	 to the process; when the latter is called, they have.
      
       	 The former may access bprm->cred, the latter may not.
      
       (3) SELinux.
      
           SELinux has a number of changes, in addition to those to support the LSM
           interface changes mentioned above:
      
           (a) The bprm_security_struct struct has been removed in favour of using
           	 the credentials-under-construction approach.
      
           (c) flush_unauthorized_files() now takes a cred pointer and passes it on
           	 to inode_has_perm(), file_has_perm() and dentry_open().
      Signed-off-by: NDavid Howells <dhowells@redhat.com>
      Acked-by: NJames Morris <jmorris@namei.org>
      Acked-by: NSerge Hallyn <serue@us.ibm.com>
      Signed-off-by: NJames Morris <jmorris@namei.org>
      a6f76f23
  5. 27 10月, 2008 1 次提交
  6. 23 10月, 2008 1 次提交
  7. 17 10月, 2008 2 次提交
  8. 06 9月, 2008 2 次提交
  9. 25 8月, 2008 1 次提交
  10. 27 7月, 2008 1 次提交
    • A
      [PATCH] sanitize __user_walk_fd() et.al. · 2d8f3038
      Al Viro 提交于
      * do not pass nameidata; struct path is all the callers want.
      * switch to new helpers:
      	user_path_at(dfd, pathname, flags, &path)
      	user_path(pathname, &path)
      	user_lpath(pathname, &path)
      	user_path_dir(pathname, &path)  (fail if not a directory)
        The last 3 are trivial macro wrappers for the first one.
      * remove nameidata in callers.
      Signed-off-by: NAl Viro <viro@zeniv.linux.org.uk>
      2d8f3038
  11. 25 7月, 2008 2 次提交
    • U
      flag parameters: signalfd · 9deb27ba
      Ulrich Drepper 提交于
      This patch adds the new signalfd4 syscall.  It extends the old signalfd
      syscall by one parameter which is meant to hold a flag value.  In this
      patch the only flag support is SFD_CLOEXEC which causes the close-on-exec
      flag for the returned file descriptor to be set.
      
      A new name SFD_CLOEXEC is introduced which in this implementation must
      have the same value as O_CLOEXEC.
      
      The following test must be adjusted for architectures other than x86 and
      x86-64 and in case the syscall numbers changed.
      
      ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
      #include <fcntl.h>
      #include <signal.h>
      #include <stdio.h>
      #include <unistd.h>
      #include <sys/syscall.h>
      
      #ifndef __NR_signalfd4
      # ifdef __x86_64__
      #  define __NR_signalfd4 289
      # elif defined __i386__
      #  define __NR_signalfd4 327
      # else
      #  error "need __NR_signalfd4"
      # endif
      #endif
      
      #define SFD_CLOEXEC O_CLOEXEC
      
      int
      main (void)
      {
        sigset_t ss;
        sigemptyset (&ss);
        sigaddset (&ss, SIGUSR1);
        int fd = syscall (__NR_signalfd4, -1, &ss, 8, 0);
        if (fd == -1)
          {
            puts ("signalfd4(0) failed");
            return 1;
          }
        int coe = fcntl (fd, F_GETFD);
        if (coe == -1)
          {
            puts ("fcntl failed");
            return 1;
          }
        if (coe & FD_CLOEXEC)
          {
            puts ("signalfd4(0) set close-on-exec flag");
            return 1;
          }
        close (fd);
      
        fd = syscall (__NR_signalfd4, -1, &ss, 8, SFD_CLOEXEC);
        if (fd == -1)
          {
            puts ("signalfd4(SFD_CLOEXEC) failed");
            return 1;
          }
        coe = fcntl (fd, F_GETFD);
        if (coe == -1)
          {
            puts ("fcntl failed");
            return 1;
          }
        if ((coe & FD_CLOEXEC) == 0)
          {
            puts ("signalfd4(SFD_CLOEXEC) does not set close-on-exec flag");
            return 1;
          }
        close (fd);
      
        puts ("OK");
      
        return 0;
      }
      ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
      
      [akpm@linux-foundation.org: add sys_ni stub]
      Signed-off-by: NUlrich Drepper <drepper@redhat.com>
      Acked-by: NDavide Libenzi <davidel@xmailserver.org>
      Cc: Michael Kerrisk <mtk.manpages@googlemail.com>
      Cc: <linux-arch@vger.kernel.org>
      Signed-off-by: NAndrew Morton <akpm@linux-foundation.org>
      Signed-off-by: NLinus Torvalds <torvalds@linux-foundation.org>
      9deb27ba
    • J
      fs: check for statfs overflow · f4a67cce
      Jon Tollefson 提交于
      Adds a check for an overflow in the filesystem size so if someone is
      checking with statfs() on a 16G blocksize hugetlbfs in a 32bit binary that
      it will report back EOVERFLOW instead of a size of 0.
      Acked-by: NNishanth Aravamudan <nacc@us.ibm.com>
      Signed-off-by: NJon Tollefson <kniht@linux.vnet.ibm.com>
      Signed-off-by: NNick Piggin <npiggin@suse.de>
      Signed-off-by: NAndrew Morton <akpm@linux-foundation.org>
      Signed-off-by: NLinus Torvalds <torvalds@linux-foundation.org>
      f4a67cce
  12. 17 5月, 2008 1 次提交
  13. 02 5月, 2008 1 次提交
  14. 30 4月, 2008 2 次提交
  15. 15 2月, 2008 2 次提交
  16. 14 2月, 2008 1 次提交
  17. 07 2月, 2008 1 次提交
  18. 06 2月, 2008 1 次提交
    • D
      timerfd: new timerfd API · 4d672e7a
      Davide Libenzi 提交于
      This is the new timerfd API as it is implemented by the following patch:
      
      int timerfd_create(int clockid, int flags);
      int timerfd_settime(int ufd, int flags,
      		    const struct itimerspec *utmr,
      		    struct itimerspec *otmr);
      int timerfd_gettime(int ufd, struct itimerspec *otmr);
      
      The timerfd_create() API creates an un-programmed timerfd fd.  The "clockid"
      parameter can be either CLOCK_MONOTONIC or CLOCK_REALTIME.
      
      The timerfd_settime() API give new settings by the timerfd fd, by optionally
      retrieving the previous expiration time (in case the "otmr" parameter is not
      NULL).
      
      The time value specified in "utmr" is absolute, if the TFD_TIMER_ABSTIME bit
      is set in the "flags" parameter.  Otherwise it's a relative time.
      
      The timerfd_gettime() API returns the next expiration time of the timer, or
      {0, 0} if the timerfd has not been set yet.
      
      Like the previous timerfd API implementation, read(2) and poll(2) are
      supported (with the same interface).  Here's a simple test program I used to
      exercise the new timerfd APIs:
      
      http://www.xmailserver.org/timerfd-test2.c
      
      [akpm@linux-foundation.org: coding-style cleanups]
      [akpm@linux-foundation.org: fix ia64 build]
      [akpm@linux-foundation.org: fix m68k build]
      [akpm@linux-foundation.org: fix mips build]
      [akpm@linux-foundation.org: fix alpha, arm, blackfin, cris, m68k, s390, sparc and sparc64 builds]
      [heiko.carstens@de.ibm.com: fix s390]
      [akpm@linux-foundation.org: fix powerpc build]
      [akpm@linux-foundation.org: fix sparc64 more]
      Signed-off-by: NDavide Libenzi <davidel@xmailserver.org>
      Cc: Michael Kerrisk <mtk-manpages@gmx.net>
      Cc: Thomas Gleixner <tglx@linutronix.de>
      Cc: Davide Libenzi <davidel@xmailserver.org>
      Cc: Michael Kerrisk <mtk-manpages@gmx.net>
      Cc: Martin Schwidefsky <schwidefsky@de.ibm.com>
      Signed-off-by: NHeiko Carstens <heiko.carstens@de.ibm.com>
      Cc: Michael Kerrisk <mtk.manpages@gmail.com>
      Cc: Davide Libenzi <davidel@xmailserver.org>
      Signed-off-by: NAndrew Morton <akpm@linux-foundation.org>
      Signed-off-by: NLinus Torvalds <torvalds@linux-foundation.org>
      4d672e7a
  19. 25 1月, 2008 1 次提交
  20. 20 7月, 2007 1 次提交
  21. 24 5月, 2007 1 次提交
  22. 17 5月, 2007 1 次提交
  23. 11 5月, 2007 2 次提交
  24. 09 5月, 2007 3 次提交
    • U
      utimensat implementation · 1c710c89
      Ulrich Drepper 提交于
      Implement utimensat(2) which is an extension to futimesat(2) in that it
      
      a) supports nano-second resolution for the timestamps
      b) allows to selectively ignore the atime/mtime value
      c) allows to selectively use the current time for either atime or mtime
      d) supports changing the atime/mtime of a symlink itself along the lines
         of the BSD lutimes(3) functions
      
      For this change the internally used do_utimes() functions was changed to
      accept a timespec time value and an additional flags parameter.
      
      Additionally the sys_utime function was changed to match compat_sys_utime
      which already use do_utimes instead of duplicating the work.
      
      Also, the completely missing futimensat() functionality is added.  We have
      such a function in glibc but we have to resort to using /proc/self/fd/* which
      not everybody likes (chroot etc).
      
      Test application (the syscall number will need per-arch editing):
      
      #include <errno.h>
      #include <fcntl.h>
      #include <time.h>
      #include <sys/time.h>
      #include <stddef.h>
      #include <syscall.h>
      
      #define __NR_utimensat 280
      
      #define UTIME_NOW       ((1l << 30) - 1l)
      #define UTIME_OMIT      ((1l << 30) - 2l)
      
      int
      main(void)
      {
        int status = 0;
      
        int fd = open("ttt", O_RDWR|O_CREAT|O_EXCL, 0666);
        if (fd == -1)
          error (1, errno, "failed to create test file \"ttt\"");
      
        struct stat64 st1;
        if (fstat64 (fd, &st1) != 0)
          error (1, errno, "fstat failed");
      
        struct timespec t[2];
        t[0].tv_sec = 0;
        t[0].tv_nsec = 0;
        t[1].tv_sec = 0;
        t[1].tv_nsec = 0;
        if (syscall(__NR_utimensat, AT_FDCWD, "ttt", t, 0) != 0)
          error (1, errno, "utimensat failed");
      
        struct stat64 st2;
        if (fstat64 (fd, &st2) != 0)
          error (1, errno, "fstat failed");
      
        if (st2.st_atim.tv_sec != 0 || st2.st_atim.tv_nsec != 0)
          {
            puts ("atim not reset to zero");
            status = 1;
          }
        if (st2.st_mtim.tv_sec != 0 || st2.st_mtim.tv_nsec != 0)
          {
            puts ("mtim not reset to zero");
            status = 1;
          }
        if (status != 0)
          goto out;
      
        t[0] = st1.st_atim;
        t[1].tv_sec = 0;
        t[1].tv_nsec = UTIME_OMIT;
        if (syscall(__NR_utimensat, AT_FDCWD, "ttt", t, 0) != 0)
          error (1, errno, "utimensat failed");
      
        if (fstat64 (fd, &st2) != 0)
          error (1, errno, "fstat failed");
      
        if (st2.st_atim.tv_sec != st1.st_atim.tv_sec
            || st2.st_atim.tv_nsec != st1.st_atim.tv_nsec)
          {
            puts ("atim not set");
            status = 1;
          }
        if (st2.st_mtim.tv_sec != 0 || st2.st_mtim.tv_nsec != 0)
          {
            puts ("mtim changed from zero");
            status = 1;
          }
        if (status != 0)
          goto out;
      
        t[0].tv_sec = 0;
        t[0].tv_nsec = UTIME_OMIT;
        t[1] = st1.st_mtim;
        if (syscall(__NR_utimensat, AT_FDCWD, "ttt", t, 0) != 0)
          error (1, errno, "utimensat failed");
      
        if (fstat64 (fd, &st2) != 0)
          error (1, errno, "fstat failed");
      
        if (st2.st_atim.tv_sec != st1.st_atim.tv_sec
            || st2.st_atim.tv_nsec != st1.st_atim.tv_nsec)
          {
            puts ("mtim changed from original time");
            status = 1;
          }
        if (st2.st_mtim.tv_sec != st1.st_mtim.tv_sec
            || st2.st_mtim.tv_nsec != st1.st_mtim.tv_nsec)
          {
            puts ("mtim not set");
            status = 1;
          }
        if (status != 0)
          goto out;
      
        sleep (2);
      
        t[0].tv_sec = 0;
        t[0].tv_nsec = UTIME_NOW;
        t[1].tv_sec = 0;
        t[1].tv_nsec = UTIME_NOW;
        if (syscall(__NR_utimensat, AT_FDCWD, "ttt", t, 0) != 0)
          error (1, errno, "utimensat failed");
      
        if (fstat64 (fd, &st2) != 0)
          error (1, errno, "fstat failed");
      
        struct timeval tv;
        gettimeofday(&tv,NULL);
      
        if (st2.st_atim.tv_sec <= st1.st_atim.tv_sec
            || st2.st_atim.tv_sec > tv.tv_sec)
          {
            puts ("atim not set to NOW");
            status = 1;
          }
        if (st2.st_mtim.tv_sec <= st1.st_mtim.tv_sec
            || st2.st_mtim.tv_sec > tv.tv_sec)
          {
            puts ("mtim not set to NOW");
            status = 1;
          }
      
        if (symlink ("ttt", "tttsym") != 0)
          error (1, errno, "cannot create symlink");
      
        t[0].tv_sec = 0;
        t[0].tv_nsec = 0;
        t[1].tv_sec = 0;
        t[1].tv_nsec = 0;
        if (syscall(__NR_utimensat, AT_FDCWD, "tttsym", t, AT_SYMLINK_NOFOLLOW) != 0)
          error (1, errno, "utimensat failed");
      
        if (lstat64 ("tttsym", &st2) != 0)
          error (1, errno, "lstat failed");
      
        if (st2.st_atim.tv_sec != 0 || st2.st_atim.tv_nsec != 0)
          {
            puts ("symlink atim not reset to zero");
            status = 1;
          }
        if (st2.st_mtim.tv_sec != 0 || st2.st_mtim.tv_nsec != 0)
          {
            puts ("symlink mtim not reset to zero");
            status = 1;
          }
        if (status != 0)
          goto out;
      
        t[0].tv_sec = 1;
        t[0].tv_nsec = 0;
        t[1].tv_sec = 1;
        t[1].tv_nsec = 0;
        if (syscall(__NR_utimensat, fd, NULL, t, 0) != 0)
          error (1, errno, "utimensat failed");
      
        if (fstat64 (fd, &st2) != 0)
          error (1, errno, "fstat failed");
      
        if (st2.st_atim.tv_sec != 1 || st2.st_atim.tv_nsec != 0)
          {
            puts ("atim not reset to one");
            status = 1;
          }
        if (st2.st_mtim.tv_sec != 1 || st2.st_mtim.tv_nsec != 0)
          {
            puts ("mtim not reset to one");
            status = 1;
          }
      
        if (status == 0)
           puts ("all OK");
      
       out:
        close (fd);
        unlink ("ttt");
        unlink ("tttsym");
      
        return status;
      }
      
      [akpm@linux-foundation.org: add missing i386 syscall table entry]
      Signed-off-by: NUlrich Drepper <drepper@redhat.com>
      Cc: Alexey Dobriyan <adobriyan@openvz.org>
      Cc: Michael Kerrisk <mtk-manpages@gmx.net>
      Cc: <linux-arch@vger.kernel.org>
      Signed-off-by: NAndrew Morton <akpm@linux-foundation.org>
      Signed-off-by: NLinus Torvalds <torvalds@linux-foundation.org>
      1c710c89
    • C
      cleanup compat ioctl handling · 6272e266
      Christoph Hellwig 提交于
      Merge all compat ioctl handling into compat_ioctl.c instead of splitting it
      over compat.c and compat_ioctl.c.  This also allows to get rid of ioctl32.h
      Signed-off-by: NChristoph Hellwig <hch@lst.de>
      Looks-good-to: Andi Kleen <ak@suse.de>
      Acked-by: NArnd Bergmann <arnd@arndb.de>
      Signed-off-by: NAndrew Morton <akpm@linux-foundation.org>
      Signed-off-by: NLinus Torvalds <torvalds@linux-foundation.org>
      6272e266
    • M
      ROUND_UP macro cleanup in fs/(select|compat|readdir).c · 022a1692
      Milind Arun Choudhary 提交于
      ROUND_UP macro cleanup use,ALIGN or DIV_ROUND_UP where ever appropriate.
      Signed-off-by: NMilind Arun Choudhary <milindchoudhary@gmail.com>
      Signed-off-by: NAndrew Morton <akpm@linux-foundation.org>
      Signed-off-by: NLinus Torvalds <torvalds@linux-foundation.org>
      022a1692
  25. 03 5月, 2007 1 次提交
  26. 08 3月, 2007 1 次提交
    • D
      [PATCH] Add epoll compat_ code to fs/compat.c · f6dfb4fd
      Davide Libenzi 提交于
      IA64 and ARM-OABI are currently using their own version of epoll compat_
      code.
      
      An architecture needs epoll_event translation if alignof(u64) in 32 bit
      mode is different from alignof(u64) in 64 bit mode.  If an architecture
      needs epoll_event translation, it must define struct compat_epoll_event in
      asm/compat.h and set CONFIG_HAVE_COMPAT_EPOLL_EVENT and use
      compat_sys_epoll_ctl and compat_sys_epoll_wait.
      
      All 64 bit architecture should use compat_sys_epoll_pwait.
      
      [sfr: restructure and move to fs/compat.c, remove MIPS version
      of compat_sys_epoll_pwait, use __put_user_unaligned]
      Signed-off-by: NStephen Rothwell <sfr@canb.auug.org.au>
      Cc: David Woodhouse <dwmw2@infradead.org>
      Cc: Russell King <rmk@arm.linux.org.uk>
      Cc: "Luck, Tony" <tony.luck@intel.com>
      Cc: "David S. Miller" <davem@davemloft.net>
      Signed-off-by: NAndrew Morton <akpm@linux-foundation.org>
      Signed-off-by: NLinus Torvalds <torvalds@linux-foundation.org>
      f6dfb4fd
  27. 11 12月, 2006 1 次提交
    • V
      [PATCH] fdtable: Make fdarray and fdsets equal in size · bbea9f69
      Vadim Lobanov 提交于
      Currently, each fdtable supports three dynamically-sized arrays of data: the
      fdarray and two fdsets.  The code allows the number of fds supported by the
      fdarray (fdtable->max_fds) to differ from the number of fds supported by each
      of the fdsets (fdtable->max_fdset).
      
      In practice, it is wasteful for these two sizes to differ: whenever we hit a
      limit on the smaller-capacity structure, we will reallocate the entire fdtable
      and all the dynamic arrays within it, so any delta in the memory used by the
      larger-capacity structure will never be touched at all.
      
      Rather than hogging this excess, we shouldn't even allocate it in the first
      place, and keep the capacities of the fdarray and the fdsets equal.  This
      patch removes fdtable->max_fdset.  As an added bonus, most of the supporting
      code becomes simpler.
      Signed-off-by: NVadim Lobanov <vlobanov@speakeasy.net>
      Cc: Christoph Hellwig <hch@lst.de>
      Cc: Al Viro <viro@zeniv.linux.org.uk>
      Cc: Dipankar Sarma <dipankar@in.ibm.com>
      Signed-off-by: NAndrew Morton <akpm@osdl.org>
      Signed-off-by: NLinus Torvalds <torvalds@osdl.org>
      bbea9f69
  28. 09 12月, 2006 1 次提交
  29. 08 12月, 2006 2 次提交
  30. 04 12月, 2006 2 次提交