KeyboardDevice.cpp 9.7 KB

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  1. /*
  2. * Copyright (c) 2018-2020, Andreas Kling <kling@serenityos.org>
  3. * Copyright (c) 2021-2023, Liav A. <liavalb@hotmail.co.il>
  4. * Copyright (c) 2021, Edwin Hoksberg <mail@edwinhoksberg.nl>
  5. *
  6. * SPDX-License-Identifier: BSD-2-Clause
  7. */
  8. #include <AK/Assertions.h>
  9. #include <AK/Types.h>
  10. #include <Kernel/API/Ioctl.h>
  11. #include <Kernel/API/KeyCode.h>
  12. #include <Kernel/Devices/DeviceManagement.h>
  13. #include <Kernel/Devices/HID/KeyboardDevice.h>
  14. #include <Kernel/Sections.h>
  15. #include <Kernel/TTY/ConsoleManagement.h>
  16. #include <Kernel/TTY/VirtualConsole.h>
  17. #include <Kernel/Tasks/Scheduler.h>
  18. #include <Kernel/Tasks/WorkQueue.h>
  19. namespace Kernel {
  20. static constexpr KeyCode unshifted_key_map[0x80] = {
  21. Key_Invalid,
  22. Key_Escape,
  23. Key_1,
  24. Key_2,
  25. Key_3,
  26. Key_4,
  27. Key_5,
  28. Key_6,
  29. Key_7,
  30. Key_8,
  31. Key_9,
  32. Key_0,
  33. Key_Minus,
  34. Key_Equal,
  35. Key_Backspace,
  36. Key_Tab, // 15
  37. Key_Q,
  38. Key_W,
  39. Key_E,
  40. Key_R,
  41. Key_T,
  42. Key_Y,
  43. Key_U,
  44. Key_I,
  45. Key_O,
  46. Key_P,
  47. Key_LeftBracket,
  48. Key_RightBracket,
  49. Key_Return, // 28
  50. Key_Control, // 29
  51. Key_A,
  52. Key_S,
  53. Key_D,
  54. Key_F,
  55. Key_G,
  56. Key_H,
  57. Key_J,
  58. Key_K,
  59. Key_L,
  60. Key_Semicolon,
  61. Key_Apostrophe,
  62. Key_Backtick,
  63. Key_LeftShift, // 42
  64. Key_Backslash,
  65. Key_Z,
  66. Key_X,
  67. Key_C,
  68. Key_V,
  69. Key_B,
  70. Key_N,
  71. Key_M,
  72. Key_Comma,
  73. Key_Period,
  74. Key_Slash,
  75. Key_RightShift, // 54
  76. Key_Asterisk,
  77. Key_Alt, // 56
  78. Key_Space, // 57
  79. Key_CapsLock, // 58
  80. Key_F1,
  81. Key_F2,
  82. Key_F3,
  83. Key_F4,
  84. Key_F5,
  85. Key_F6,
  86. Key_F7,
  87. Key_F8,
  88. Key_F9,
  89. Key_F10,
  90. Key_NumLock,
  91. Key_Invalid, // 70
  92. Key_Home,
  93. Key_Up,
  94. Key_PageUp,
  95. Key_Minus,
  96. Key_Left,
  97. Key_Invalid,
  98. Key_Right, // 77
  99. Key_Plus,
  100. Key_End,
  101. Key_Down, // 80
  102. Key_PageDown,
  103. Key_Insert,
  104. Key_Delete, // 83
  105. Key_Invalid,
  106. Key_Invalid,
  107. Key_Backslash,
  108. Key_F11,
  109. Key_F12,
  110. Key_Invalid,
  111. Key_Invalid,
  112. Key_Super,
  113. Key_Invalid,
  114. Key_Menu,
  115. };
  116. static constexpr KeyCode shifted_key_map[0x100] = {
  117. Key_Invalid,
  118. Key_Escape,
  119. Key_ExclamationPoint,
  120. Key_AtSign,
  121. Key_Hashtag,
  122. Key_Dollar,
  123. Key_Percent,
  124. Key_Circumflex,
  125. Key_Ampersand,
  126. Key_Asterisk,
  127. Key_LeftParen,
  128. Key_RightParen,
  129. Key_Underscore,
  130. Key_Plus,
  131. Key_Backspace,
  132. Key_Tab,
  133. Key_Q,
  134. Key_W,
  135. Key_E,
  136. Key_R,
  137. Key_T,
  138. Key_Y,
  139. Key_U,
  140. Key_I,
  141. Key_O,
  142. Key_P,
  143. Key_LeftBrace,
  144. Key_RightBrace,
  145. Key_Return,
  146. Key_Control,
  147. Key_A,
  148. Key_S,
  149. Key_D,
  150. Key_F,
  151. Key_G,
  152. Key_H,
  153. Key_J,
  154. Key_K,
  155. Key_L,
  156. Key_Colon,
  157. Key_DoubleQuote,
  158. Key_Tilde,
  159. Key_LeftShift, // 42
  160. Key_Pipe,
  161. Key_Z,
  162. Key_X,
  163. Key_C,
  164. Key_V,
  165. Key_B,
  166. Key_N,
  167. Key_M,
  168. Key_LessThan,
  169. Key_GreaterThan,
  170. Key_QuestionMark,
  171. Key_RightShift, // 54
  172. Key_Asterisk,
  173. Key_Alt,
  174. Key_Space, // 57
  175. Key_CapsLock, // 58
  176. Key_F1,
  177. Key_F2,
  178. Key_F3,
  179. Key_F4,
  180. Key_F5,
  181. Key_F6,
  182. Key_F7,
  183. Key_F8,
  184. Key_F9,
  185. Key_F10,
  186. Key_NumLock,
  187. Key_Invalid, // 70
  188. Key_Home,
  189. Key_Up,
  190. Key_PageUp,
  191. Key_Minus,
  192. Key_Left,
  193. Key_Invalid,
  194. Key_Right, // 77
  195. Key_Plus,
  196. Key_End,
  197. Key_Down, // 80
  198. Key_PageDown,
  199. Key_Insert,
  200. Key_Delete, // 83
  201. Key_Invalid,
  202. Key_Invalid,
  203. Key_Pipe,
  204. Key_F11,
  205. Key_F12,
  206. Key_Invalid,
  207. Key_Invalid,
  208. Key_Super,
  209. Key_Invalid,
  210. Key_Menu,
  211. };
  212. void KeyboardDevice::handle_scan_code_input_event(ScanCodeEvent event)
  213. {
  214. m_entropy_source.add_random_event(event.scan_code_value);
  215. switch (event.scan_code_value) {
  216. case 0x38:
  217. if (event.e0_prefix)
  218. update_modifier(Mod_AltGr, event.pressed);
  219. else
  220. update_modifier(Mod_Alt, event.pressed);
  221. break;
  222. case 0x1d:
  223. update_modifier(Mod_Ctrl, event.pressed);
  224. break;
  225. case 0x5b:
  226. m_left_super_pressed = event.pressed;
  227. update_modifier(Mod_Super, m_left_super_pressed || m_right_super_pressed);
  228. break;
  229. case 0x5c:
  230. m_right_super_pressed = event.pressed;
  231. update_modifier(Mod_Super, m_left_super_pressed || m_right_super_pressed);
  232. break;
  233. case 0x2a:
  234. m_left_shift_pressed = event.pressed;
  235. update_modifier(Mod_Shift, m_left_shift_pressed || m_right_shift_pressed);
  236. break;
  237. case 0x36:
  238. m_right_shift_pressed = event.pressed;
  239. update_modifier(Mod_Shift, m_left_shift_pressed || m_right_shift_pressed);
  240. break;
  241. }
  242. KeyCode key = (m_modifiers & Mod_Shift) ? shifted_key_map[event.scan_code_value] : unshifted_key_map[event.scan_code_value];
  243. if ((m_modifiers == (Mod_Alt | Mod_Shift) || m_modifiers == (Mod_Ctrl | Mod_Alt | Mod_Shift)) && key == Key_F12) {
  244. // Alt+Shift+F12 pressed, dump some kernel state to the debug console.
  245. ConsoleManagement::the().switch_to_debug();
  246. Scheduler::dump_scheduler_state(m_modifiers == (Mod_Ctrl | Mod_Alt | Mod_Shift));
  247. }
  248. if ((m_modifiers & Mod_Alt) != 0 && key >= Key_1 && key <= Key_1 + ConsoleManagement::s_max_virtual_consoles + 1) {
  249. // FIXME: Do something sanely here if we can't allocate a work queue?
  250. MUST(g_io_work->try_queue([key]() {
  251. ConsoleManagement::the().switch_to(key - Key_1);
  252. }));
  253. }
  254. if (key == Key_NumLock && event.pressed)
  255. m_num_lock_on = !m_num_lock_on;
  256. if (m_num_lock_on && !event.e0_prefix) {
  257. if (event.scan_code_value >= 0x47 && event.scan_code_value <= 0x53) {
  258. u8 index = event.scan_code_value - 0x47;
  259. constexpr KeyCode numpad_key_map[13] = { Key_7, Key_8, Key_9, Key_Invalid, Key_4, Key_5, Key_6, Key_Invalid, Key_1, Key_2, Key_3, Key_0, Key_Comma };
  260. KeyCode newKey = numpad_key_map[index];
  261. if (newKey != Key_Invalid) {
  262. key = newKey;
  263. }
  264. }
  265. }
  266. Event queued_event;
  267. queued_event.key = key;
  268. queued_event.scancode = event.e0_prefix ? 0xe000 + event.scan_code_value : event.scan_code_value;
  269. queued_event.flags = m_modifiers;
  270. queued_event.e0_prefix = event.e0_prefix;
  271. queued_event.caps_lock_on = m_caps_lock_on;
  272. queued_event.code_point = HIDManagement::the().get_char_from_character_map(queued_event);
  273. // If using a non-QWERTY layout, queued_event.key needs to be updated to be the same as event.code_point
  274. KeyCode mapped_key = code_point_to_key_code(queued_event.code_point);
  275. if (mapped_key != KeyCode::Key_Invalid) {
  276. queued_event.key = mapped_key;
  277. key = mapped_key;
  278. }
  279. if (!g_caps_lock_remapped_to_ctrl && key == Key_CapsLock && event.pressed)
  280. m_caps_lock_on = !m_caps_lock_on;
  281. if (g_caps_lock_remapped_to_ctrl && key == Key_CapsLock) {
  282. m_caps_lock_to_ctrl_pressed = event.pressed;
  283. update_modifier(Mod_Ctrl, m_caps_lock_to_ctrl_pressed);
  284. }
  285. if (event.pressed)
  286. queued_event.flags |= Is_Press;
  287. {
  288. SpinlockLocker locker(HIDManagement::the().m_client_lock);
  289. if (HIDManagement::the().m_client)
  290. HIDManagement::the().m_client->on_key_pressed(queued_event);
  291. }
  292. {
  293. SpinlockLocker lock(m_queue_lock);
  294. m_queue.enqueue(queued_event);
  295. }
  296. evaluate_block_conditions();
  297. }
  298. ErrorOr<NonnullRefPtr<KeyboardDevice>> KeyboardDevice::try_to_initialize()
  299. {
  300. return *TRY(DeviceManagement::try_create_device<KeyboardDevice>());
  301. }
  302. // FIXME: UNMAP_AFTER_INIT is fine for now, but for hot-pluggable devices
  303. // like USB keyboards, we need to remove this
  304. UNMAP_AFTER_INIT KeyboardDevice::KeyboardDevice()
  305. : HIDDevice(85, HIDManagement::the().generate_minor_device_number_for_keyboard())
  306. {
  307. }
  308. // FIXME: UNMAP_AFTER_INIT is fine for now, but for hot-pluggable devices
  309. // like USB keyboards, we need to remove this
  310. UNMAP_AFTER_INIT KeyboardDevice::~KeyboardDevice() = default;
  311. bool KeyboardDevice::can_read(OpenFileDescription const&, u64) const
  312. {
  313. return !m_queue.is_empty();
  314. }
  315. ErrorOr<size_t> KeyboardDevice::read(OpenFileDescription&, u64, UserOrKernelBuffer& buffer, size_t size)
  316. {
  317. size_t nread = 0;
  318. SpinlockLocker lock(m_queue_lock);
  319. while (nread < size) {
  320. if (m_queue.is_empty())
  321. break;
  322. // Don't return partial data frames.
  323. if (size - nread < sizeof(Event))
  324. break;
  325. auto event = m_queue.dequeue();
  326. lock.unlock();
  327. auto result = TRY(buffer.write_buffered<sizeof(Event)>(sizeof(Event), [&](Bytes bytes) {
  328. memcpy(bytes.data(), &event, sizeof(Event));
  329. return bytes.size();
  330. }));
  331. VERIFY(result == sizeof(Event));
  332. nread += sizeof(Event);
  333. lock.lock();
  334. }
  335. return nread;
  336. }
  337. ErrorOr<void> KeyboardDevice::ioctl(OpenFileDescription&, unsigned request, Userspace<void*> arg)
  338. {
  339. switch (request) {
  340. case KEYBOARD_IOCTL_GET_NUM_LOCK: {
  341. auto output = static_ptr_cast<bool*>(arg);
  342. return copy_to_user(output, &m_num_lock_on);
  343. }
  344. case KEYBOARD_IOCTL_SET_NUM_LOCK: {
  345. // In this case we expect the value to be a boolean and not a pointer.
  346. auto num_lock_value = static_cast<u8>(arg.ptr());
  347. if (num_lock_value != 0 && num_lock_value != 1)
  348. return EINVAL;
  349. m_num_lock_on = !!num_lock_value;
  350. return {};
  351. }
  352. case KEYBOARD_IOCTL_GET_CAPS_LOCK: {
  353. auto output = static_ptr_cast<bool*>(arg);
  354. return copy_to_user(output, &m_caps_lock_on);
  355. }
  356. case KEYBOARD_IOCTL_SET_CAPS_LOCK: {
  357. auto caps_lock_value = static_cast<u8>(arg.ptr());
  358. if (caps_lock_value != 0 && caps_lock_value != 1)
  359. return EINVAL;
  360. m_caps_lock_on = !!caps_lock_value;
  361. return {};
  362. }
  363. default:
  364. return EINVAL;
  365. };
  366. }
  367. }