ProcessModel.cpp 6.7 KB

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  1. #include "ProcessModel.h"
  2. #include <LibGUI/GFile.h>
  3. #include <fcntl.h>
  4. #include <stdio.h>
  5. #include <pwd.h>
  6. ProcessModel::ProcessModel()
  7. {
  8. setpwent();
  9. while (auto* passwd = getpwent())
  10. m_usernames.set(passwd->pw_uid, passwd->pw_name);
  11. endpwent();
  12. m_generic_process_icon = GraphicsBitmap::load_from_file("/res/icons/gear16.png");
  13. m_high_priority_icon = GraphicsBitmap::load_from_file("/res/icons/highpriority16.png");
  14. m_low_priority_icon = GraphicsBitmap::load_from_file("/res/icons/lowpriority16.png");
  15. m_normal_priority_icon = GraphicsBitmap::load_from_file("/res/icons/normalpriority16.png");
  16. }
  17. ProcessModel::~ProcessModel()
  18. {
  19. }
  20. int ProcessModel::row_count(const GModelIndex&) const
  21. {
  22. return m_processes.size();
  23. }
  24. int ProcessModel::column_count(const GModelIndex&) const
  25. {
  26. return Column::__Count;
  27. }
  28. String ProcessModel::column_name(int column) const
  29. {
  30. switch (column) {
  31. case Column::Icon: return "";
  32. case Column::PID: return "PID";
  33. case Column::State: return "State";
  34. case Column::User: return "User";
  35. case Column::Priority: return "Pr";
  36. case Column::Linear: return "Linear";
  37. case Column::Physical: return "Physical";
  38. case Column::CPU: return "CPU";
  39. case Column::Name: return "Name";
  40. default: ASSERT_NOT_REACHED();
  41. }
  42. }
  43. GModel::ColumnMetadata ProcessModel::column_metadata(int column) const
  44. {
  45. switch (column) {
  46. case Column::Icon: return { 16, TextAlignment::CenterLeft };
  47. case Column::PID: return { 25, TextAlignment::CenterRight };
  48. case Column::State: return { 75, TextAlignment::CenterLeft };
  49. case Column::Priority: return { 16, TextAlignment::CenterLeft };
  50. case Column::User: return { 50, TextAlignment::CenterLeft };
  51. case Column::Linear: return { 65, TextAlignment::CenterRight };
  52. case Column::Physical: return { 65, TextAlignment::CenterRight };
  53. case Column::CPU: return { 25, TextAlignment::CenterRight };
  54. case Column::Name: return { 140, TextAlignment::CenterLeft };
  55. default: ASSERT_NOT_REACHED();
  56. }
  57. }
  58. static String pretty_byte_size(size_t size)
  59. {
  60. return String::format("%uK", size / 1024);
  61. }
  62. GVariant ProcessModel::data(const GModelIndex& index, Role role) const
  63. {
  64. ASSERT(is_valid(index));
  65. auto it = m_processes.find(m_pids[index.row()]);
  66. auto& process = *(*it).value;
  67. if (role == Role::Sort) {
  68. switch (index.column()) {
  69. case Column::Icon: return 0;
  70. case Column::PID: return process.current_state.pid;
  71. case Column::State: return process.current_state.state;
  72. case Column::User: return process.current_state.user;
  73. case Column::Priority:
  74. if (process.current_state.priority == "Low")
  75. return 0;
  76. if (process.current_state.priority == "Normal")
  77. return 1;
  78. if (process.current_state.priority == "High")
  79. return 2;
  80. ASSERT_NOT_REACHED();
  81. return 3;
  82. case Column::Linear: return (int)process.current_state.linear;
  83. case Column::Physical: return (int)process.current_state.physical;
  84. case Column::CPU: return process.current_state.cpu_percent;
  85. case Column::Name: return process.current_state.name;
  86. }
  87. ASSERT_NOT_REACHED();
  88. return { };
  89. }
  90. if (role == Role::Display) {
  91. switch (index.column()) {
  92. case Column::Icon: return *m_generic_process_icon;
  93. case Column::PID: return process.current_state.pid;
  94. case Column::State: return process.current_state.state;
  95. case Column::User: return process.current_state.user;
  96. case Column::Priority:
  97. if (process.current_state.priority == "High")
  98. return *m_high_priority_icon;
  99. if (process.current_state.priority == "Low")
  100. return *m_low_priority_icon;
  101. if (process.current_state.priority == "Normal")
  102. return *m_normal_priority_icon;
  103. return process.current_state.priority;
  104. case Column::Linear: return pretty_byte_size(process.current_state.linear);
  105. case Column::Physical: return pretty_byte_size(process.current_state.physical);
  106. case Column::CPU: return process.current_state.cpu_percent;
  107. case Column::Name: return process.current_state.name;
  108. }
  109. }
  110. return { };
  111. }
  112. void ProcessModel::update()
  113. {
  114. GFile file("/proc/all");
  115. if (!file.open(GIODevice::ReadOnly)) {
  116. fprintf(stderr, "ProcessManager: Failed to open /proc/all: %s\n", file.error_string());
  117. exit(1);
  118. return;
  119. }
  120. unsigned last_sum_nsched = 0;
  121. for (auto& it : m_processes)
  122. last_sum_nsched += it.value->current_state.nsched;
  123. HashTable<pid_t> live_pids;
  124. unsigned sum_nsched = 0;
  125. for (;;) {
  126. auto line = file.read_line(1024);
  127. if (line.is_empty())
  128. break;
  129. auto parts = String((const char*)line.pointer(), line.size() - 1, Chomp).split(',');
  130. if (parts.size() < 17)
  131. break;
  132. bool ok;
  133. pid_t pid = parts[0].to_uint(ok);
  134. ASSERT(ok);
  135. unsigned nsched = parts[1].to_uint(ok);
  136. ASSERT(ok);
  137. ProcessState state;
  138. state.pid = pid;
  139. state.nsched = nsched;
  140. unsigned uid = parts[5].to_uint(ok);
  141. ASSERT(ok);
  142. {
  143. auto it = m_usernames.find((uid_t)uid);
  144. if (it != m_usernames.end())
  145. state.user = String::format("%s", (*it).value.characters());
  146. else
  147. state.user = String::format("%u", uid);
  148. }
  149. state.priority = parts[16];
  150. state.state = parts[7];
  151. state.name = parts[11];
  152. state.linear = parts[12].to_uint(ok);
  153. ASSERT(ok);
  154. state.physical = parts[13].to_uint(ok);
  155. ASSERT(ok);
  156. sum_nsched += nsched;
  157. {
  158. auto it = m_processes.find(pid);
  159. if (it == m_processes.end())
  160. m_processes.set(pid, make<Process>());
  161. }
  162. auto it = m_processes.find(pid);
  163. ASSERT(it != m_processes.end());
  164. (*it).value->previous_state = (*it).value->current_state;
  165. (*it).value->current_state = state;
  166. live_pids.set(pid);
  167. }
  168. m_pids.clear();
  169. Vector<pid_t> pids_to_remove;
  170. for (auto& it : m_processes) {
  171. if (!live_pids.contains(it.key)) {
  172. pids_to_remove.append(it.key);
  173. continue;
  174. }
  175. auto& process = *it.value;
  176. dword nsched_diff = process.current_state.nsched - process.previous_state.nsched;
  177. process.current_state.cpu_percent = ((float)nsched_diff * 100) / (float)(sum_nsched - last_sum_nsched);
  178. m_pids.append(it.key);
  179. }
  180. for (auto pid : pids_to_remove)
  181. m_processes.remove(pid);
  182. did_update();
  183. }