seccomp: allow TSYNC and USER_NOTIF together
The restriction introduced in 7a0df7fbc1
("seccomp: Make NEW_LISTENER and
TSYNC flags exclusive") is mostly artificial: there is enough information
in a seccomp user notification to tell which thread triggered a
notification. The reason it was introduced is because TSYNC makes the
syscall return a thread-id on failure, and NEW_LISTENER returns an fd, and
there's no way to distinguish between these two cases (well, I suppose the
caller could check all fds it has, then do the syscall, and if the return
value was an fd that already existed, then it must be a thread id, but
bleh).
Matthew would like to use these two flags together in the Chrome sandbox
which wants to use TSYNC for video drivers and NEW_LISTENER to proxy
syscalls.
So, let's fix this ugliness by adding another flag, TSYNC_ESRCH, which
tells the kernel to just return -ESRCH on a TSYNC error. This way,
NEW_LISTENER (and any subsequent seccomp() commands that want to return
positive values) don't conflict with each other.
Suggested-by: Matthew Denton <mpdenton@google.com>
Signed-off-by: Tycho Andersen <tycho@tycho.ws>
Link: https://lore.kernel.org/r/20200304180517.23867-1-tycho@tycho.ws
Signed-off-by: Kees Cook <keescook@chromium.org>
This commit is contained in:
parent
11a48a5a18
commit
51891498f2
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@ -7,7 +7,8 @@
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#define SECCOMP_FILTER_FLAG_MASK (SECCOMP_FILTER_FLAG_TSYNC | \
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SECCOMP_FILTER_FLAG_LOG | \
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SECCOMP_FILTER_FLAG_SPEC_ALLOW | \
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SECCOMP_FILTER_FLAG_NEW_LISTENER)
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SECCOMP_FILTER_FLAG_NEW_LISTENER | \
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SECCOMP_FILTER_FLAG_TSYNC_ESRCH)
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#ifdef CONFIG_SECCOMP
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@ -22,6 +22,7 @@
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#define SECCOMP_FILTER_FLAG_LOG (1UL << 1)
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#define SECCOMP_FILTER_FLAG_SPEC_ALLOW (1UL << 2)
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#define SECCOMP_FILTER_FLAG_NEW_LISTENER (1UL << 3)
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#define SECCOMP_FILTER_FLAG_TSYNC_ESRCH (1UL << 4)
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/*
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* All BPF programs must return a 32-bit value.
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@ -528,8 +528,12 @@ static long seccomp_attach_filter(unsigned int flags,
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int ret;
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ret = seccomp_can_sync_threads();
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if (ret)
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return ret;
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if (ret) {
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if (flags & SECCOMP_FILTER_FLAG_TSYNC_ESRCH)
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return -ESRCH;
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else
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return ret;
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}
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}
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/* Set log flag, if present. */
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@ -1288,10 +1292,12 @@ static long seccomp_set_mode_filter(unsigned int flags,
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* In the successful case, NEW_LISTENER returns the new listener fd.
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* But in the failure case, TSYNC returns the thread that died. If you
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* combine these two flags, there's no way to tell whether something
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* succeeded or failed. So, let's disallow this combination.
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* succeeded or failed. So, let's disallow this combination if the user
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* has not explicitly requested no errors from TSYNC.
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*/
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if ((flags & SECCOMP_FILTER_FLAG_TSYNC) &&
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(flags & SECCOMP_FILTER_FLAG_NEW_LISTENER))
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(flags & SECCOMP_FILTER_FLAG_NEW_LISTENER) &&
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((flags & SECCOMP_FILTER_FLAG_TSYNC_ESRCH) == 0))
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return -EINVAL;
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/* Prepare the new filter before holding any locks. */
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@ -212,6 +212,10 @@ struct seccomp_notif_sizes {
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#define SECCOMP_USER_NOTIF_FLAG_CONTINUE 0x00000001
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#endif
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#ifndef SECCOMP_FILTER_FLAG_TSYNC_ESRCH
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#define SECCOMP_FILTER_FLAG_TSYNC_ESRCH (1UL << 4)
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#endif
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#ifndef seccomp
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int seccomp(unsigned int op, unsigned int flags, void *args)
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{
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@ -2187,7 +2191,8 @@ TEST(detect_seccomp_filter_flags)
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unsigned int flags[] = { SECCOMP_FILTER_FLAG_TSYNC,
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SECCOMP_FILTER_FLAG_LOG,
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SECCOMP_FILTER_FLAG_SPEC_ALLOW,
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SECCOMP_FILTER_FLAG_NEW_LISTENER };
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SECCOMP_FILTER_FLAG_NEW_LISTENER,
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SECCOMP_FILTER_FLAG_TSYNC_ESRCH };
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unsigned int exclusive[] = {
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SECCOMP_FILTER_FLAG_TSYNC,
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SECCOMP_FILTER_FLAG_NEW_LISTENER };
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@ -2645,6 +2650,55 @@ TEST_F(TSYNC, two_siblings_with_one_divergence)
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EXPECT_EQ(SIBLING_EXIT_UNKILLED, (long)status);
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}
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TEST_F(TSYNC, two_siblings_with_one_divergence_no_tid_in_err)
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{
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long ret, flags;
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void *status;
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ASSERT_EQ(0, prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0)) {
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TH_LOG("Kernel does not support PR_SET_NO_NEW_PRIVS!");
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}
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ret = seccomp(SECCOMP_SET_MODE_FILTER, 0, &self->root_prog);
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ASSERT_NE(ENOSYS, errno) {
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TH_LOG("Kernel does not support seccomp syscall!");
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}
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ASSERT_EQ(0, ret) {
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TH_LOG("Kernel does not support SECCOMP_SET_MODE_FILTER!");
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}
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self->sibling[0].diverge = 1;
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tsync_start_sibling(&self->sibling[0]);
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tsync_start_sibling(&self->sibling[1]);
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while (self->sibling_count < TSYNC_SIBLINGS) {
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sem_wait(&self->started);
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self->sibling_count++;
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}
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flags = SECCOMP_FILTER_FLAG_TSYNC | \
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SECCOMP_FILTER_FLAG_TSYNC_ESRCH;
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ret = seccomp(SECCOMP_SET_MODE_FILTER, flags, &self->apply_prog);
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ASSERT_EQ(ESRCH, errno) {
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TH_LOG("Did not return ESRCH for diverged sibling.");
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}
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ASSERT_EQ(-1, ret) {
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TH_LOG("Did not fail on diverged sibling.");
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}
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/* Wake the threads */
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pthread_mutex_lock(&self->mutex);
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ASSERT_EQ(0, pthread_cond_broadcast(&self->cond)) {
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TH_LOG("cond broadcast non-zero");
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}
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pthread_mutex_unlock(&self->mutex);
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/* Ensure they are both unkilled. */
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PTHREAD_JOIN(self->sibling[0].tid, &status);
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EXPECT_EQ(SIBLING_EXIT_UNKILLED, (long)status);
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PTHREAD_JOIN(self->sibling[1].tid, &status);
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EXPECT_EQ(SIBLING_EXIT_UNKILLED, (long)status);
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}
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TEST_F(TSYNC, two_siblings_not_under_filter)
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{
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long ret, sib;
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EXPECT_EQ(0, WEXITSTATUS(status));
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}
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TEST(user_notification_with_tsync)
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{
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int ret;
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unsigned int flags;
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/* these were exclusive */
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flags = SECCOMP_FILTER_FLAG_NEW_LISTENER |
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SECCOMP_FILTER_FLAG_TSYNC;
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ASSERT_EQ(-1, user_trap_syscall(__NR_getppid, flags));
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ASSERT_EQ(EINVAL, errno);
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/* but now they're not */
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flags |= SECCOMP_FILTER_FLAG_TSYNC_ESRCH;
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ret = user_trap_syscall(__NR_getppid, flags);
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close(ret);
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ASSERT_LE(0, ret);
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}
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TEST(user_notification_kill_in_middle)
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{
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pid_t pid;
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