ProcessModel.cpp 20 KB

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  1. /*
  2. * Copyright (c) 2018-2021, Andreas Kling <kling@serenityos.org>
  3. * Copyright (c) 2022, the SerenityOS developers.
  4. *
  5. * SPDX-License-Identifier: BSD-2-Clause
  6. */
  7. #include "ProcessModel.h"
  8. #include <AK/JsonObject.h>
  9. #include <AK/JsonValue.h>
  10. #include <AK/NonnullRefPtr.h>
  11. #include <AK/NumberFormat.h>
  12. #include <LibCore/File.h>
  13. #include <LibCore/ProcessStatisticsReader.h>
  14. #include <LibGUI/FileIconProvider.h>
  15. #include <LibGUI/Icon.h>
  16. #include <LibGUI/ModelIndex.h>
  17. #include <LibGUI/ModelRole.h>
  18. #include <unistd.h>
  19. static ProcessModel* s_the;
  20. ProcessModel& ProcessModel::the()
  21. {
  22. VERIFY(s_the);
  23. return *s_the;
  24. }
  25. ProcessModel::ProcessModel()
  26. {
  27. VERIFY(!s_the);
  28. s_the = this;
  29. auto file = Core::File::construct("/proc/cpuinfo");
  30. if (file->open(Core::OpenMode::ReadOnly)) {
  31. auto buffer = file->read_all();
  32. auto json = JsonValue::from_string({ buffer });
  33. auto cpuinfo_array = json.value().as_array();
  34. cpuinfo_array.for_each([&](auto& value) {
  35. auto& cpu_object = value.as_object();
  36. auto cpu_id = cpu_object.get("processor").as_u32();
  37. m_cpus.append(make<CpuInfo>(cpu_id));
  38. });
  39. }
  40. if (m_cpus.is_empty())
  41. m_cpus.append(make<CpuInfo>(0));
  42. m_kernel_process_icon = GUI::Icon::default_icon("gear");
  43. }
  44. int ProcessModel::row_count(GUI::ModelIndex const& index) const
  45. {
  46. if (!index.is_valid())
  47. return m_processes.size();
  48. // Anything in the second level (threads of processes) doesn't have children.
  49. // This way, we don't get infinitely recursing main threads without having to handle that special case elsewhere.
  50. if (index.parent().is_valid())
  51. return 0;
  52. auto const& thread = *static_cast<Thread const*>(index.internal_data());
  53. // Only the main thread has the other threads as its children.
  54. // Also, if there's not more than one thread, we won't draw that.
  55. if (thread.is_main_thread() && thread.current_state.process.threads.size() > 1)
  56. return thread.current_state.process.threads.size() - 1;
  57. return 0;
  58. }
  59. int ProcessModel::column_count(GUI::ModelIndex const&) const
  60. {
  61. return Column::__Count;
  62. }
  63. String ProcessModel::column_name(int column) const
  64. {
  65. switch (column) {
  66. case Column::Icon:
  67. return "";
  68. case Column::PID:
  69. return "PID";
  70. case Column::TID:
  71. return "TID";
  72. case Column::PPID:
  73. return "PPID";
  74. case Column::PGID:
  75. return "PGID";
  76. case Column::SID:
  77. return "SID";
  78. case Column::State:
  79. return "State";
  80. case Column::User:
  81. return "User";
  82. case Column::Priority:
  83. return "Pr";
  84. case Column::Virtual:
  85. return "Virtual";
  86. case Column::Physical:
  87. return "Physical";
  88. case Column::DirtyPrivate:
  89. return "Private";
  90. case Column::CleanInode:
  91. return "CleanI";
  92. case Column::PurgeableVolatile:
  93. return "Purg:V";
  94. case Column::PurgeableNonvolatile:
  95. return "Purg:N";
  96. case Column::CPU:
  97. return "CPU";
  98. case Column::Processor:
  99. return "Processor";
  100. case Column::Name:
  101. return "Name";
  102. case Column::Syscalls:
  103. return "Syscalls";
  104. case Column::InodeFaults:
  105. return "F:Inode";
  106. case Column::ZeroFaults:
  107. return "F:Zero";
  108. case Column::CowFaults:
  109. return "F:CoW";
  110. case Column::IPv4SocketReadBytes:
  111. return "IPv4 In";
  112. case Column::IPv4SocketWriteBytes:
  113. return "IPv4 Out";
  114. case Column::UnixSocketReadBytes:
  115. return "Unix In";
  116. case Column::UnixSocketWriteBytes:
  117. return "Unix Out";
  118. case Column::FileReadBytes:
  119. return "File In";
  120. case Column::FileWriteBytes:
  121. return "File Out";
  122. case Column::Pledge:
  123. return "Pledge";
  124. case Column::Veil:
  125. return "Veil";
  126. default:
  127. VERIFY_NOT_REACHED();
  128. }
  129. }
  130. GUI::Variant ProcessModel::data(GUI::ModelIndex const& index, GUI::ModelRole role) const
  131. {
  132. VERIFY(is_within_range(index));
  133. if (role == GUI::ModelRole::TextAlignment) {
  134. switch (index.column()) {
  135. case Column::Icon:
  136. case Column::Name:
  137. case Column::State:
  138. case Column::User:
  139. case Column::Pledge:
  140. case Column::Veil:
  141. return Gfx::TextAlignment::CenterLeft;
  142. case Column::PID:
  143. case Column::TID:
  144. case Column::PPID:
  145. case Column::PGID:
  146. case Column::SID:
  147. case Column::Priority:
  148. case Column::Virtual:
  149. case Column::Physical:
  150. case Column::DirtyPrivate:
  151. case Column::CleanInode:
  152. case Column::PurgeableVolatile:
  153. case Column::PurgeableNonvolatile:
  154. case Column::CPU:
  155. case Column::Processor:
  156. case Column::Syscalls:
  157. case Column::InodeFaults:
  158. case Column::ZeroFaults:
  159. case Column::CowFaults:
  160. case Column::FileReadBytes:
  161. case Column::FileWriteBytes:
  162. case Column::UnixSocketReadBytes:
  163. case Column::UnixSocketWriteBytes:
  164. case Column::IPv4SocketReadBytes:
  165. case Column::IPv4SocketWriteBytes:
  166. return Gfx::TextAlignment::CenterRight;
  167. default:
  168. VERIFY_NOT_REACHED();
  169. }
  170. }
  171. auto const& thread = *static_cast<Thread const*>(index.internal_data());
  172. if (role == GUI::ModelRole::Sort) {
  173. switch (index.column()) {
  174. case Column::Icon:
  175. return 0;
  176. case Column::PID:
  177. return thread.current_state.pid;
  178. case Column::TID:
  179. return thread.current_state.tid;
  180. case Column::PPID:
  181. return thread.current_state.ppid;
  182. case Column::PGID:
  183. return thread.current_state.pgid;
  184. case Column::SID:
  185. return thread.current_state.sid;
  186. case Column::State:
  187. return thread.current_state.state;
  188. case Column::User:
  189. return thread.current_state.user;
  190. case Column::Priority:
  191. return thread.current_state.priority;
  192. case Column::Virtual:
  193. return (int)thread.current_state.amount_virtual;
  194. case Column::Physical:
  195. return (int)thread.current_state.amount_resident;
  196. case Column::DirtyPrivate:
  197. return (int)thread.current_state.amount_dirty_private;
  198. case Column::CleanInode:
  199. return (int)thread.current_state.amount_clean_inode;
  200. case Column::PurgeableVolatile:
  201. return (int)thread.current_state.amount_purgeable_volatile;
  202. case Column::PurgeableNonvolatile:
  203. return (int)thread.current_state.amount_purgeable_nonvolatile;
  204. case Column::CPU:
  205. return thread.current_state.cpu_percent;
  206. case Column::Processor:
  207. return thread.current_state.cpu;
  208. case Column::Name:
  209. return thread.current_state.name;
  210. case Column::Syscalls:
  211. return thread.current_state.syscall_count;
  212. case Column::InodeFaults:
  213. return thread.current_state.inode_faults;
  214. case Column::ZeroFaults:
  215. return thread.current_state.zero_faults;
  216. case Column::CowFaults:
  217. return thread.current_state.cow_faults;
  218. case Column::IPv4SocketReadBytes:
  219. return thread.current_state.ipv4_socket_read_bytes;
  220. case Column::IPv4SocketWriteBytes:
  221. return thread.current_state.ipv4_socket_write_bytes;
  222. case Column::UnixSocketReadBytes:
  223. return thread.current_state.unix_socket_read_bytes;
  224. case Column::UnixSocketWriteBytes:
  225. return thread.current_state.unix_socket_write_bytes;
  226. case Column::FileReadBytes:
  227. return thread.current_state.file_read_bytes;
  228. case Column::FileWriteBytes:
  229. return thread.current_state.file_write_bytes;
  230. case Column::Pledge:
  231. return thread.current_state.pledge;
  232. case Column::Veil:
  233. return thread.current_state.veil;
  234. }
  235. VERIFY_NOT_REACHED();
  236. }
  237. if (role == GUI::ModelRole::Display) {
  238. switch (index.column()) {
  239. case Column::Icon:
  240. return icon_for(thread);
  241. case Column::PID:
  242. return thread.current_state.pid;
  243. case Column::TID:
  244. return thread.current_state.tid;
  245. case Column::PPID:
  246. return thread.current_state.ppid;
  247. case Column::PGID:
  248. return thread.current_state.pgid;
  249. case Column::SID:
  250. return thread.current_state.sid;
  251. case Column::State:
  252. return thread.current_state.state;
  253. case Column::User:
  254. return thread.current_state.user;
  255. case Column::Priority:
  256. return thread.current_state.priority;
  257. case Column::Virtual:
  258. return human_readable_size(thread.current_state.amount_virtual);
  259. case Column::Physical:
  260. return human_readable_size(thread.current_state.amount_resident);
  261. case Column::DirtyPrivate:
  262. return human_readable_size(thread.current_state.amount_dirty_private);
  263. case Column::CleanInode:
  264. return human_readable_size(thread.current_state.amount_clean_inode);
  265. case Column::PurgeableVolatile:
  266. return human_readable_size(thread.current_state.amount_purgeable_volatile);
  267. case Column::PurgeableNonvolatile:
  268. return human_readable_size(thread.current_state.amount_purgeable_nonvolatile);
  269. case Column::CPU:
  270. return String::formatted("{:.2}", thread.current_state.cpu_percent);
  271. case Column::Processor:
  272. return thread.current_state.cpu;
  273. case Column::Name:
  274. if (thread.current_state.kernel)
  275. return String::formatted("{} (*)", thread.current_state.name);
  276. return thread.current_state.name;
  277. case Column::Syscalls:
  278. return thread.current_state.syscall_count;
  279. case Column::InodeFaults:
  280. return thread.current_state.inode_faults;
  281. case Column::ZeroFaults:
  282. return thread.current_state.zero_faults;
  283. case Column::CowFaults:
  284. return thread.current_state.cow_faults;
  285. case Column::IPv4SocketReadBytes:
  286. return thread.current_state.ipv4_socket_read_bytes;
  287. case Column::IPv4SocketWriteBytes:
  288. return thread.current_state.ipv4_socket_write_bytes;
  289. case Column::UnixSocketReadBytes:
  290. return thread.current_state.unix_socket_read_bytes;
  291. case Column::UnixSocketWriteBytes:
  292. return thread.current_state.unix_socket_write_bytes;
  293. case Column::FileReadBytes:
  294. return thread.current_state.file_read_bytes;
  295. case Column::FileWriteBytes:
  296. return thread.current_state.file_write_bytes;
  297. case Column::Pledge:
  298. return thread.current_state.pledge;
  299. case Column::Veil:
  300. return thread.current_state.veil;
  301. }
  302. }
  303. if (role == GUI::ModelRole::Icon)
  304. return icon_for(thread);
  305. if (role == GUI::ModelRole::IconOpacity) {
  306. if (thread.current_state.uid != getuid())
  307. return 0.5f;
  308. return {};
  309. }
  310. return {};
  311. }
  312. GUI::Icon ProcessModel::icon_for(Thread const& thread) const
  313. {
  314. if (thread.current_state.kernel)
  315. return m_kernel_process_icon;
  316. return GUI::FileIconProvider::icon_for_executable(thread.current_state.executable);
  317. }
  318. GUI::ModelIndex ProcessModel::index(int row, int column, GUI::ModelIndex const& parent) const
  319. {
  320. if (row < 0 || column < 0)
  321. return {};
  322. // Process index; we display the main thread here.
  323. if (!parent.is_valid()) {
  324. if (row >= static_cast<int>(m_processes.size()))
  325. return {};
  326. auto corresponding_thread = m_processes[row].main_thread();
  327. if (!corresponding_thread.has_value())
  328. return {};
  329. return create_index(row, column, corresponding_thread.release_value().ptr());
  330. }
  331. // Thread under process.
  332. auto const& parent_thread = *static_cast<Thread const*>(parent.internal_data());
  333. auto const& process = parent_thread.current_state.process;
  334. // dbgln("Getting thread model index in process {} for col {} row {}", process.pid, column, row);
  335. if (row >= static_cast<int>(process.threads.size()))
  336. return {};
  337. return create_index(row, column, &process.non_main_thread(row));
  338. }
  339. int ProcessModel::thread_model_row(Thread const& thread) const
  340. {
  341. auto const& process = thread.current_state.process;
  342. // A process's main thread uses the global process index.
  343. if (process.pid == thread.current_state.pid)
  344. return m_processes.find_first_index(process).value_or(0);
  345. return process.threads.find_first_index(thread).value_or(0);
  346. }
  347. GUI::ModelIndex ProcessModel::parent_index(GUI::ModelIndex const& index) const
  348. {
  349. if (!index.is_valid())
  350. return {};
  351. auto const& thread = *static_cast<Thread*>(index.internal_data());
  352. // There's no parent for the main thread.
  353. if (thread.current_state.pid == thread.current_state.tid)
  354. return {};
  355. // FIXME: We can't use first_matching here (not even a const version) because Optional cannot contain references.
  356. auto const& parent = thread.current_state.process;
  357. if (!parent.main_thread().has_value())
  358. return {};
  359. return create_index(m_processes.find_first_index(parent).release_value(), index.column(), parent.main_thread().value().ptr());
  360. }
  361. Vector<GUI::ModelIndex> ProcessModel::matches(StringView searching, unsigned flags, GUI::ModelIndex const&)
  362. {
  363. Vector<GUI::ModelIndex> found_indices;
  364. for (auto const& thread : m_threads) {
  365. if (string_matches(thread.value->current_state.name, searching, flags)) {
  366. auto tid_row = thread_model_row(thread.value);
  367. found_indices.append(create_index(tid_row, Column::Name, reinterpret_cast<void const*>(thread.value.ptr())));
  368. if (flags & FirstMatchOnly)
  369. break;
  370. }
  371. }
  372. return found_indices;
  373. }
  374. void ProcessModel::update()
  375. {
  376. auto previous_tid_count = m_threads.size();
  377. auto all_processes = Core::ProcessStatisticsReader::get_all(m_proc_all);
  378. HashTable<int> live_tids;
  379. u64 total_time_scheduled_diff = 0;
  380. if (all_processes.has_value()) {
  381. if (m_has_total_scheduled_time)
  382. total_time_scheduled_diff = all_processes->total_time_scheduled - m_total_time_scheduled;
  383. m_total_time_scheduled = all_processes->total_time_scheduled;
  384. m_total_time_scheduled_kernel = all_processes->total_time_scheduled_kernel;
  385. m_has_total_scheduled_time = true;
  386. for (size_t i = 0; i < all_processes->processes.size(); ++i) {
  387. auto const& process = all_processes->processes[i];
  388. NonnullOwnPtr<Process>* process_state = nullptr;
  389. for (size_t i = 0; i < m_processes.size(); ++i) {
  390. auto* other_process = &m_processes.ptr_at(i);
  391. if ((*other_process)->pid == process.pid) {
  392. process_state = other_process;
  393. break;
  394. }
  395. }
  396. if (!process_state) {
  397. m_processes.append(make<Process>());
  398. process_state = &m_processes.ptr_at(m_processes.size() - 1);
  399. }
  400. (*process_state)->pid = process.pid;
  401. for (auto& thread : process.threads) {
  402. ThreadState state(**process_state);
  403. state.tid = thread.tid;
  404. state.pid = process.pid;
  405. state.ppid = process.ppid;
  406. state.pgid = process.pgid;
  407. state.sid = process.sid;
  408. state.time_user = thread.time_user;
  409. state.time_kernel = thread.time_kernel;
  410. state.kernel = process.kernel;
  411. state.executable = process.executable;
  412. state.name = thread.name;
  413. state.uid = process.uid;
  414. state.state = thread.state;
  415. state.user = process.username;
  416. state.pledge = process.pledge;
  417. state.veil = process.veil;
  418. state.cpu = thread.cpu;
  419. state.priority = thread.priority;
  420. state.amount_virtual = process.amount_virtual;
  421. state.amount_resident = process.amount_resident;
  422. state.amount_dirty_private = process.amount_dirty_private;
  423. state.amount_clean_inode = process.amount_clean_inode;
  424. state.amount_purgeable_volatile = process.amount_purgeable_volatile;
  425. state.amount_purgeable_nonvolatile = process.amount_purgeable_nonvolatile;
  426. state.syscall_count = thread.syscall_count;
  427. state.inode_faults = thread.inode_faults;
  428. state.zero_faults = thread.zero_faults;
  429. state.cow_faults = thread.cow_faults;
  430. state.unix_socket_read_bytes = thread.unix_socket_read_bytes;
  431. state.unix_socket_write_bytes = thread.unix_socket_write_bytes;
  432. state.ipv4_socket_read_bytes = thread.ipv4_socket_read_bytes;
  433. state.ipv4_socket_write_bytes = thread.ipv4_socket_write_bytes;
  434. state.file_read_bytes = thread.file_read_bytes;
  435. state.file_write_bytes = thread.file_write_bytes;
  436. state.cpu_percent = 0;
  437. auto thread_data = m_threads.ensure(thread.tid, [&] { return make_ref_counted<Thread>(**process_state); });
  438. thread_data->previous_state = move(thread_data->current_state);
  439. thread_data->current_state = move(state);
  440. if (auto maybe_thread_index = (*process_state)->threads.find_first_index(thread_data); maybe_thread_index.has_value()) {
  441. (*process_state)->threads.ptr_at(maybe_thread_index.value()) = thread_data;
  442. } else {
  443. (*process_state)->threads.append(thread_data);
  444. }
  445. live_tids.set(thread.tid);
  446. }
  447. }
  448. }
  449. for (auto& c : m_cpus) {
  450. c.total_cpu_percent = 0.0;
  451. c.total_cpu_percent_kernel = 0.0;
  452. }
  453. Vector<int, 16> tids_to_remove;
  454. for (auto& it : m_threads) {
  455. if (!live_tids.contains(it.key)) {
  456. tids_to_remove.append(it.key);
  457. continue;
  458. }
  459. auto& thread = *it.value;
  460. u64 time_scheduled_diff = (thread.current_state.time_user + thread.current_state.time_kernel)
  461. - (thread.previous_state.time_user + thread.previous_state.time_kernel);
  462. u64 time_scheduled_diff_kernel = thread.current_state.time_kernel - thread.previous_state.time_kernel;
  463. thread.current_state.cpu_percent = total_time_scheduled_diff > 0 ? (float)((time_scheduled_diff * 1000) / total_time_scheduled_diff) / 10.0f : 0;
  464. thread.current_state.cpu_percent_kernel = total_time_scheduled_diff > 0 ? (float)((time_scheduled_diff_kernel * 1000) / total_time_scheduled_diff) / 10.0f : 0;
  465. if (it.value->current_state.pid != 0) {
  466. auto& cpu_info = m_cpus[thread.current_state.cpu];
  467. cpu_info.total_cpu_percent += thread.current_state.cpu_percent;
  468. cpu_info.total_cpu_percent_kernel += thread.current_state.cpu_percent_kernel;
  469. }
  470. }
  471. // FIXME: Also remove dead threads from processes
  472. for (auto tid : tids_to_remove) {
  473. m_threads.remove(tid);
  474. for (size_t i = 0; i < m_processes.size(); ++i) {
  475. auto& process = m_processes[i];
  476. process.threads.remove_all_matching([&](auto const& thread) { return thread->current_state.tid == tid; });
  477. if (process.threads.size() == 0) {
  478. m_processes.remove(i);
  479. --i;
  480. }
  481. }
  482. }
  483. if (on_cpu_info_change)
  484. on_cpu_info_change(m_cpus);
  485. if (on_state_update)
  486. on_state_update(all_processes.has_value() ? all_processes->processes.size() : 0, m_threads.size());
  487. // FIXME: This is a rather hackish way of invalidating indices.
  488. // It would be good if GUI::Model had a way to orchestrate removal/insertion while preserving indices.
  489. did_update(previous_tid_count == m_threads.size() ? GUI::Model::UpdateFlag::DontInvalidateIndices : GUI::Model::UpdateFlag::InvalidateAllIndices);
  490. }