Process.cpp 11 KB

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  1. /*
  2. * Copyright (c) 2021, Andreas Kling <andreas@ladybird.org>
  3. * Copyright (c) 2022-2023, MacDue <macdue@dueutil.tech>
  4. * Copyright (c) 2023-2024, Sam Atkins <atkinssj@serenityos.org>
  5. * Copyright (c) 2024, Tim Flynn <trflynn89@serenityos.org>
  6. *
  7. * SPDX-License-Identifier: BSD-2-Clause
  8. */
  9. #include <AK/ByteString.h>
  10. #include <AK/ScopeGuard.h>
  11. #include <AK/String.h>
  12. #include <AK/Vector.h>
  13. #include <LibCore/Environment.h>
  14. #include <LibCore/File.h>
  15. #include <LibCore/Process.h>
  16. #include <LibCore/System.h>
  17. #include <errno.h>
  18. #include <signal.h>
  19. #include <spawn.h>
  20. #include <unistd.h>
  21. #if defined(AK_OS_SERENITY)
  22. # include <serenity.h>
  23. # include <sys/prctl.h>
  24. # include <syscall.h>
  25. #elif defined(AK_OS_BSD_GENERIC) && !defined(AK_OS_SOLARIS)
  26. # include <sys/sysctl.h>
  27. #elif defined(AK_OS_GNU_HURD)
  28. extern "C" {
  29. # include <hurd.h>
  30. }
  31. #endif
  32. #if defined(AK_OS_FREEBSD)
  33. # include <sys/user.h>
  34. #endif
  35. namespace Core {
  36. struct ArgvList {
  37. ByteString m_path;
  38. Vector<char const*, 10> m_argv;
  39. ArgvList(ByteString path, size_t size)
  40. : m_path { path }
  41. {
  42. m_argv.ensure_capacity(size + 2);
  43. m_argv.append(m_path.characters());
  44. }
  45. void append(char const* arg)
  46. {
  47. m_argv.append(arg);
  48. }
  49. Span<char const*> get()
  50. {
  51. if (m_argv.is_empty() || m_argv.last() != nullptr)
  52. m_argv.append(nullptr);
  53. return m_argv;
  54. }
  55. };
  56. Process Process::current()
  57. {
  58. auto p = Process { getpid() };
  59. p.m_should_disown = false;
  60. return p;
  61. }
  62. ErrorOr<Process> Process::spawn(ProcessSpawnOptions const& options)
  63. {
  64. #define CHECK(invocation) \
  65. if (int returned_errno = (invocation)) \
  66. return Error::from_errno(returned_errno);
  67. posix_spawn_file_actions_t spawn_actions;
  68. CHECK(posix_spawn_file_actions_init(&spawn_actions));
  69. ScopeGuard cleanup_spawn_actions = [&] {
  70. posix_spawn_file_actions_destroy(&spawn_actions);
  71. };
  72. if (options.working_directory.has_value()) {
  73. #ifdef AK_OS_SERENITY
  74. CHECK(posix_spawn_file_actions_addchdir(&spawn_actions, options.working_directory->characters()));
  75. #else
  76. // FIXME: Support ProcessSpawnOptions::working_directory n platforms that support it.
  77. TODO();
  78. #endif
  79. }
  80. for (auto const& file_action : options.file_actions) {
  81. TRY(file_action.visit(
  82. [&](FileAction::OpenFile const& action) -> ErrorOr<void> {
  83. CHECK(posix_spawn_file_actions_addopen(
  84. &spawn_actions,
  85. action.fd,
  86. action.path.characters(),
  87. File::open_mode_to_options(action.mode | Core::File::OpenMode::KeepOnExec),
  88. action.permissions));
  89. return {};
  90. },
  91. [&](FileAction::CloseFile const& action) -> ErrorOr<void> {
  92. CHECK(posix_spawn_file_actions_addclose(&spawn_actions, action.fd));
  93. return {};
  94. }));
  95. }
  96. #undef CHECK
  97. ArgvList argv_list(options.executable, options.arguments.size());
  98. for (auto const& argument : options.arguments)
  99. argv_list.append(argument.characters());
  100. pid_t pid;
  101. if (options.search_for_executable_in_path) {
  102. pid = TRY(System::posix_spawnp(options.executable.view(), &spawn_actions, nullptr, const_cast<char**>(argv_list.get().data()), Core::Environment::raw_environ()));
  103. } else {
  104. pid = TRY(System::posix_spawn(options.executable.view(), &spawn_actions, nullptr, const_cast<char**>(argv_list.get().data()), Core::Environment::raw_environ()));
  105. }
  106. return Process { pid };
  107. }
  108. ErrorOr<Process> Process::spawn(StringView path, ReadonlySpan<ByteString> arguments, ByteString working_directory, KeepAsChild keep_as_child)
  109. {
  110. auto process = TRY(spawn({
  111. .executable = path,
  112. .arguments = Vector<ByteString> { arguments },
  113. .working_directory = working_directory.is_empty() ? Optional<ByteString> {} : Optional<ByteString> { working_directory },
  114. }));
  115. if (keep_as_child == KeepAsChild::No)
  116. TRY(process.disown());
  117. return process;
  118. }
  119. ErrorOr<Process> Process::spawn(StringView path, ReadonlySpan<StringView> arguments, ByteString working_directory, KeepAsChild keep_as_child)
  120. {
  121. Vector<ByteString> backing_strings;
  122. backing_strings.ensure_capacity(arguments.size());
  123. for (auto const& argument : arguments)
  124. backing_strings.append(argument);
  125. auto process = TRY(spawn({
  126. .executable = path,
  127. .arguments = backing_strings,
  128. .working_directory = working_directory.is_empty() ? Optional<ByteString> {} : Optional<ByteString> { working_directory },
  129. }));
  130. if (keep_as_child == KeepAsChild::No)
  131. TRY(process.disown());
  132. return process;
  133. }
  134. ErrorOr<String> Process::get_name()
  135. {
  136. #if defined(AK_OS_SERENITY)
  137. char buffer[BUFSIZ];
  138. int rc = get_process_name(buffer, BUFSIZ);
  139. if (rc != 0)
  140. return Error::from_syscall("get_process_name"sv, -rc);
  141. return String::from_utf8(StringView { buffer, strlen(buffer) });
  142. #elif defined(AK_LIBC_GLIBC) || (defined(AK_OS_LINUX) && !defined(AK_OS_ANDROID))
  143. return String::from_utf8(StringView { program_invocation_name, strlen(program_invocation_name) });
  144. #elif defined(AK_OS_BSD_GENERIC) || defined(AK_OS_HAIKU)
  145. auto const* progname = getprogname();
  146. return String::from_utf8(StringView { progname, strlen(progname) });
  147. #else
  148. // FIXME: Implement Process::get_name() for other platforms.
  149. return "???"_string;
  150. #endif
  151. }
  152. ErrorOr<void> Process::set_name([[maybe_unused]] StringView name, [[maybe_unused]] SetThreadName set_thread_name)
  153. {
  154. #if defined(AK_OS_SERENITY)
  155. int rc = set_process_name(name.characters_without_null_termination(), name.length());
  156. if (rc != 0)
  157. return Error::from_syscall("set_process_name"sv, -rc);
  158. if (set_thread_name == SetThreadName::No)
  159. return {};
  160. rc = prctl(PR_SET_THREAD_NAME, gettid(), name.characters_without_null_termination(), name.length());
  161. if (rc != 0)
  162. return Error::from_syscall("set_thread_name"sv, -rc);
  163. return {};
  164. #else
  165. // FIXME: Implement Process::set_name() for other platforms.
  166. return {};
  167. #endif
  168. }
  169. ErrorOr<bool> Process::is_being_debugged()
  170. {
  171. #if defined(AK_OS_LINUX)
  172. auto unbuffered_status_file = TRY(Core::File::open("/proc/self/status"sv, Core::File::OpenMode::Read));
  173. auto status_file = TRY(Core::InputBufferedFile::create(move(unbuffered_status_file)));
  174. auto buffer = TRY(ByteBuffer::create_uninitialized(4096));
  175. while (TRY(status_file->can_read_line())) {
  176. auto line = TRY(status_file->read_line(buffer));
  177. auto const parts = line.split_view(':');
  178. if (parts.size() < 2 || parts[0] != "TracerPid"sv)
  179. continue;
  180. auto tracer_pid = parts[1].to_number<u32>();
  181. return (tracer_pid != 0UL);
  182. }
  183. return false;
  184. #elif defined(AK_OS_GNU_HURD)
  185. process_t proc = getproc();
  186. if (!MACH_PORT_VALID(proc))
  187. return Error::from_syscall("getproc"sv, -errno);
  188. int flags = PI_FETCH_TASKINFO;
  189. // We're going to ask the proc server for the info about our process,
  190. // and it is going to reply, placing the info into a buffer. It can
  191. // either fill in (overwrite) the buffer we provide to it (called pi_buffer
  192. // below), or allocate (as if with mmap or vm_allocate) a new buffer.
  193. // The buffer is really of type struct procinfo[], but it's transferred
  194. // over IPC as int[]. We pass in a double pointer (int** pi_array) that
  195. // initially points to our pi_buffer, but the call will update it to
  196. // point to the newly allocated buffer if it ends up making one.
  197. struct procinfo pi_buffer = {};
  198. int* pi_array = reinterpret_cast<int*>(&pi_buffer);
  199. mach_msg_type_number_t pi_array_len = sizeof(pi_buffer) / sizeof(int);
  200. data_t waits = nullptr;
  201. mach_msg_type_number_t waits_len = 0;
  202. kern_return_t err = proc_getprocinfo(proc, getpid(), &flags, &pi_array, &pi_array_len, &waits, &waits_len);
  203. mach_port_deallocate(mach_task_self(), proc);
  204. if (err) {
  205. __hurd_fail(static_cast<error_t>(err));
  206. return Error::from_syscall("proc_getprocinfo"sv, -errno);
  207. }
  208. // Now cast the returned buffer pointer back to struct procinfo, and
  209. // read the info we're interested in (the PI_TRACED flag) from there.
  210. VERIFY(pi_array_len >= sizeof(struct procinfo));
  211. struct procinfo* procinfo = reinterpret_cast<struct procinfo*>(pi_array);
  212. bool traced = procinfo->state & PI_TRACED;
  213. // If the returned buffer is not the one we allocated on the stack,
  214. // we should unmap it.
  215. if (procinfo != &pi_buffer)
  216. (void)System::munmap(pi_array, pi_array_len * sizeof(int));
  217. if (waits)
  218. (void)System::munmap(waits, waits_len);
  219. return traced;
  220. #elif defined(AK_OS_MACOS) || defined(AK_OS_FREEBSD)
  221. // https://developer.apple.com/library/archive/qa/qa1361/_index.html
  222. int mib[4] = {};
  223. struct kinfo_proc info = {};
  224. size_t size = sizeof(info);
  225. // Initialize mib, which tells sysctl the info we want, in this case
  226. // we're looking for information about a specific process ID.
  227. mib[0] = CTL_KERN;
  228. mib[1] = KERN_PROC;
  229. mib[2] = KERN_PROC_PID;
  230. mib[3] = getpid();
  231. if (sysctl(mib, sizeof(mib) / sizeof(*mib), &info, &size, NULL, 0) < 0)
  232. return Error::from_syscall("sysctl"sv, -errno);
  233. // We're being debugged if the P_TRACED flag is set.
  234. # if defined(AK_OS_MACOS)
  235. return ((info.kp_proc.p_flag & P_TRACED) != 0);
  236. # elif defined(AK_OS_FREEBSD)
  237. return ((info.ki_flag & P_TRACED) != 0);
  238. # endif
  239. #endif
  240. // FIXME: Implement this for more platforms.
  241. return Error::from_string_literal("Platform does not support checking for debugger");
  242. }
  243. // Forces the process to sleep until a debugger is attached, then breaks.
  244. void Process::wait_for_debugger_and_break()
  245. {
  246. bool should_print_process_info { true };
  247. for (;;) {
  248. auto check = Process::is_being_debugged();
  249. if (check.is_error()) {
  250. dbgln("Cannot wait for debugger: {}. Continuing.", check.release_error());
  251. return;
  252. }
  253. if (check.value()) {
  254. kill(getpid(), SIGTRAP);
  255. return;
  256. }
  257. if (should_print_process_info) {
  258. dbgln("Process {} with pid {} is sleeping, waiting for debugger.", Process::get_name(), getpid());
  259. should_print_process_info = false;
  260. }
  261. ::usleep(100 * 1000);
  262. }
  263. }
  264. ErrorOr<void> Process::disown()
  265. {
  266. if (m_pid != 0 && m_should_disown) {
  267. #ifdef AK_OS_SERENITY
  268. TRY(System::disown(m_pid));
  269. #else
  270. // FIXME: Support disown outside Serenity.
  271. #endif
  272. m_should_disown = false;
  273. return {};
  274. } else {
  275. return Error::from_errno(EINVAL);
  276. }
  277. }
  278. ErrorOr<bool> Process::wait_for_termination()
  279. {
  280. VERIFY(m_pid > 0);
  281. bool exited_with_code_0 = true;
  282. int status;
  283. if (waitpid(m_pid, &status, 0) == -1)
  284. return Error::from_syscall("waitpid"sv, errno);
  285. if (WIFEXITED(status)) {
  286. exited_with_code_0 &= WEXITSTATUS(status) == 0;
  287. } else if (WIFSIGNALED(status)) {
  288. exited_with_code_0 = false;
  289. } else if (WIFSTOPPED(status)) {
  290. // This is only possible if the child process is being traced by us.
  291. VERIFY_NOT_REACHED();
  292. } else {
  293. VERIFY_NOT_REACHED();
  294. }
  295. m_should_disown = false;
  296. return exited_with_code_0;
  297. }
  298. }