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@@ -369,4 +369,129 @@ TEST_F(pidfd_info, thread_group)
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EXPECT_EQ(close(pidfd_thread), 0);
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}
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static void *pidfd_info_thread_exec(void *arg)
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{
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pid_t pid_thread = gettid();
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int ipc_socket = *(int *)arg;
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/* Inform the grand-parent what the tid of this thread is. */
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if (write_nointr(ipc_socket, &pid_thread, sizeof(pid_thread)) != sizeof(pid_thread))
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return NULL;
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if (read_nointr(ipc_socket, &pid_thread, sizeof(pid_thread)) != sizeof(pid_thread))
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return NULL;
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close(ipc_socket);
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sys_execveat(AT_FDCWD, "pidfd_exec_helper", NULL, NULL, 0);
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return NULL;
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}
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TEST_F(pidfd_info, thread_group_exec)
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{
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pid_t pid_leader, pid_thread;
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pthread_t thread;
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int nevents, pidfd_leader, pidfd_leader_thread, pidfd_thread, ret;
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int ipc_sockets[2];
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struct pollfd fds = {};
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struct pidfd_info info = {
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.mask = PIDFD_INFO_CGROUPID | PIDFD_INFO_EXIT,
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};
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ret = socketpair(AF_LOCAL, SOCK_STREAM | SOCK_CLOEXEC, 0, ipc_sockets);
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EXPECT_EQ(ret, 0);
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pid_leader = create_child(&pidfd_leader, 0);
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EXPECT_GE(pid_leader, 0);
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if (pid_leader == 0) {
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close(ipc_sockets[0]);
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/* The thread will outlive the thread-group leader. */
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if (pthread_create(&thread, NULL, pidfd_info_thread_exec, &ipc_sockets[1]))
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syscall(__NR_exit, EXIT_FAILURE);
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/* Make the thread-group leader exit prematurely. */
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syscall(__NR_exit, EXIT_SUCCESS);
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}
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/* Retrieve the tid of the thread. */
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EXPECT_EQ(close(ipc_sockets[1]), 0);
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ASSERT_EQ(read_nointr(ipc_sockets[0], &pid_thread, sizeof(pid_thread)), sizeof(pid_thread));
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/* Opening a thread as a PIDFD_THREAD must succeed. */
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pidfd_thread = sys_pidfd_open(pid_thread, PIDFD_THREAD);
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ASSERT_GE(pidfd_thread, 0);
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/* Open a thread-specific pidfd for the thread-group leader. */
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pidfd_leader_thread = sys_pidfd_open(pid_leader, PIDFD_THREAD);
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ASSERT_GE(pidfd_leader_thread, 0);
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/*
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* We can poll and wait for the old thread-group leader to exit
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* using a thread-specific pidfd.
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*
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* This only works until the thread has execed. When the thread
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* has execed it will have taken over the old thread-group
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* leaders struct pid. Calling poll after the thread execed will
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* thus block again because a new thread-group has started (Yes,
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* it's fscked.).
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*/
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fds.events = POLLIN;
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fds.fd = pidfd_leader_thread;
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nevents = poll(&fds, 1, -1);
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ASSERT_EQ(nevents, 1);
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/* The thread-group leader has exited. */
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ASSERT_TRUE(!!(fds.revents & POLLIN));
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/* The thread-group leader hasn't been reaped. */
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ASSERT_FALSE(!!(fds.revents & POLLHUP));
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/* Now that we've opened a thread-specific pidfd the thread can exec. */
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ASSERT_EQ(write_nointr(ipc_sockets[0], &pid_thread, sizeof(pid_thread)), sizeof(pid_thread));
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EXPECT_EQ(close(ipc_sockets[0]), 0);
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/* Wait until the kernel has SIGKILLed the thread. */
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fds.events = POLLHUP;
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fds.fd = pidfd_thread;
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nevents = poll(&fds, 1, -1);
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ASSERT_EQ(nevents, 1);
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/* The thread has been reaped. */
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ASSERT_TRUE(!!(fds.revents & POLLHUP));
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/* Retrieve thread-specific exit info from pidfd. */
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ASSERT_EQ(ioctl(pidfd_thread, PIDFD_GET_INFO, &info), 0);
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ASSERT_FALSE(!!(info.mask & PIDFD_INFO_CREDS));
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ASSERT_TRUE(!!(info.mask & PIDFD_INFO_EXIT));
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/*
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* While the kernel will have SIGKILLed the whole thread-group
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* during exec it will cause the individual threads to exit
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* cleanly.
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*/
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ASSERT_TRUE(WIFEXITED(info.exit_code));
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ASSERT_EQ(WEXITSTATUS(info.exit_code), 0);
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/*
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* The thread-group leader is still alive, the thread has taken
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* over its struct pid and thus its pid number.
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*/
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info.mask = PIDFD_INFO_CGROUPID | PIDFD_INFO_EXIT;
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ASSERT_EQ(ioctl(pidfd_leader, PIDFD_GET_INFO, &info), 0);
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ASSERT_TRUE(!!(info.mask & PIDFD_INFO_CREDS));
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ASSERT_FALSE(!!(info.mask & PIDFD_INFO_EXIT));
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ASSERT_EQ(info.pid, pid_leader);
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/* Take down the thread-group leader. */
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EXPECT_EQ(sys_pidfd_send_signal(pidfd_leader, SIGKILL, NULL, 0), 0);
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EXPECT_EQ(sys_waitid(P_PIDFD, pidfd_leader, NULL, WEXITED), 0);
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/* Retrieve exit information for the thread-group leader. */
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info.mask = PIDFD_INFO_CGROUPID | PIDFD_INFO_EXIT;
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ASSERT_EQ(ioctl(pidfd_leader, PIDFD_GET_INFO, &info), 0);
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ASSERT_FALSE(!!(info.mask & PIDFD_INFO_CREDS));
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ASSERT_TRUE(!!(info.mask & PIDFD_INFO_EXIT));
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EXPECT_EQ(close(pidfd_leader), 0);
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EXPECT_EQ(close(pidfd_thread), 0);
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}
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TEST_HARNESS_MAIN
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