entry_x11.cpp 17 KB

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  1. /*
  2. * Copyright 2011-2015 Branimir Karadzic. All rights reserved.
  3. * License: http://www.opensource.org/licenses/BSD-2-Clause
  4. */
  5. #include "entry_p.h"
  6. #if ENTRY_CONFIG_USE_NATIVE && (BX_PLATFORM_FREEBSD || BX_PLATFORM_LINUX || BX_PLATFORM_RPI)
  7. #define XK_MISCELLANY
  8. #define XK_LATIN1
  9. #include <X11/keysymdef.h>
  10. #include <X11/Xlib.h> // will include X11 which #defines None... Don't mess with order of includes.
  11. #include <bgfxplatform.h>
  12. #undef None
  13. #include <bx/thread.h>
  14. #include <bx/os.h>
  15. #include <bx/handlealloc.h>
  16. #include <string.h> // memset
  17. #include <string>
  18. #include <fcntl.h>
  19. namespace entry
  20. {
  21. #define JS_EVENT_BUTTON 0x01 /* button pressed/released */
  22. #define JS_EVENT_AXIS 0x02 /* joystick moved */
  23. #define JS_EVENT_INIT 0x80 /* initial state of device */
  24. struct JoystickEvent
  25. {
  26. uint32_t time; /* event timestamp in milliseconds */
  27. int16_t value; /* value */
  28. uint8_t type; /* event type */
  29. uint8_t number; /* axis/button number */
  30. };
  31. static Key::Enum s_translateButton[] =
  32. {
  33. Key::GamepadA,
  34. Key::GamepadB,
  35. Key::GamepadX,
  36. Key::GamepadY,
  37. Key::GamepadShoulderL,
  38. Key::GamepadShoulderR,
  39. Key::GamepadBack,
  40. Key::GamepadStart,
  41. Key::GamepadGuide,
  42. Key::GamepadThumbL,
  43. Key::GamepadThumbR,
  44. };
  45. static GamepadAxis::Enum s_translateAxis[] =
  46. {
  47. GamepadAxis::LeftX,
  48. GamepadAxis::LeftY,
  49. GamepadAxis::LeftZ,
  50. GamepadAxis::RightX,
  51. GamepadAxis::RightY,
  52. GamepadAxis::RightZ,
  53. };
  54. struct Joystick
  55. {
  56. void init()
  57. {
  58. m_fd = open("/dev/input/js0", O_RDONLY | O_NONBLOCK);
  59. memset(m_value, 0, sizeof(m_value) );
  60. // Deadzone values from xinput.h
  61. m_deadzone[GamepadAxis::LeftX ] =
  62. m_deadzone[GamepadAxis::LeftY ] = 7849;
  63. m_deadzone[GamepadAxis::RightX] =
  64. m_deadzone[GamepadAxis::RightY] = 8689;
  65. m_deadzone[GamepadAxis::LeftZ ] =
  66. m_deadzone[GamepadAxis::RightZ] = 30;
  67. }
  68. void shutdown()
  69. {
  70. if (0 != m_fd)
  71. {
  72. close(m_fd);
  73. }
  74. }
  75. bool filter(GamepadAxis::Enum _axis, int32_t* _value)
  76. {
  77. const int32_t old = m_value[_axis];
  78. const int32_t deadzone = m_deadzone[_axis];
  79. int32_t value = *_value;
  80. value = value > deadzone || value < -deadzone ? value : 0;
  81. m_value[_axis] = value;
  82. *_value = value;
  83. return old != value;
  84. }
  85. bool update(EventQueue& _eventQueue)
  86. {
  87. if (0 == m_fd)
  88. {
  89. return false;
  90. }
  91. JoystickEvent event;
  92. int32_t bytes = read(m_fd, &event, sizeof(JoystickEvent) );
  93. if (bytes != sizeof(JoystickEvent) )
  94. {
  95. return false;
  96. }
  97. WindowHandle defaultWindow = { 0 };
  98. GamepadHandle handle = { 0 };
  99. if (event.type & JS_EVENT_BUTTON)
  100. {
  101. if (event.number < BX_COUNTOF(s_translateButton) )
  102. {
  103. _eventQueue.postKeyEvent(defaultWindow, s_translateButton[event.number], 0, 0 != event.value);
  104. }
  105. }
  106. else if (event.type & JS_EVENT_AXIS)
  107. {
  108. if (event.number < BX_COUNTOF(s_translateAxis) )
  109. {
  110. GamepadAxis::Enum axis = s_translateAxis[event.number];
  111. int32_t value = event.value;
  112. if (filter(axis, &value) )
  113. {
  114. _eventQueue.postAxisEvent(defaultWindow, handle, axis, value);
  115. }
  116. }
  117. }
  118. return true;
  119. }
  120. int m_fd;
  121. int32_t m_value[GamepadAxis::Count];
  122. int32_t m_deadzone[GamepadAxis::Count];
  123. };
  124. static Joystick s_joystick;
  125. static uint8_t s_translateKey[512];
  126. static void initTranslateKey(uint16_t _xk, Key::Enum _key)
  127. {
  128. _xk += 256;
  129. BX_CHECK(_xk < BX_COUNTOF(s_translateKey), "Out of bounds %d.", _xk);
  130. s_translateKey[_xk&0x1ff] = (uint8_t)_key;
  131. }
  132. Key::Enum fromXk(uint16_t _xk)
  133. {
  134. _xk += 256;
  135. return 512 > _xk ? (Key::Enum)s_translateKey[_xk] : Key::None;
  136. }
  137. struct MainThreadEntry
  138. {
  139. int m_argc;
  140. char** m_argv;
  141. static int32_t threadFunc(void* _userData);
  142. };
  143. struct Msg
  144. {
  145. Msg()
  146. : m_x(0)
  147. , m_y(0)
  148. , m_width(0)
  149. , m_height(0)
  150. , m_flags(0)
  151. {
  152. }
  153. int32_t m_x;
  154. int32_t m_y;
  155. uint32_t m_width;
  156. uint32_t m_height;
  157. uint32_t m_flags;
  158. std::string m_title;
  159. };
  160. struct Context
  161. {
  162. Context()
  163. : m_modifiers(Modifier::None)
  164. , m_exit(false)
  165. {
  166. memset(s_translateKey, 0, sizeof(s_translateKey) );
  167. initTranslateKey(XK_Escape, Key::Esc);
  168. initTranslateKey(XK_Return, Key::Return);
  169. initTranslateKey(XK_Tab, Key::Tab);
  170. initTranslateKey(XK_BackSpace, Key::Backspace);
  171. initTranslateKey(XK_space, Key::Space);
  172. initTranslateKey(XK_Up, Key::Up);
  173. initTranslateKey(XK_Down, Key::Down);
  174. initTranslateKey(XK_Left, Key::Left);
  175. initTranslateKey(XK_Right, Key::Right);
  176. initTranslateKey(XK_Page_Up, Key::PageUp);
  177. initTranslateKey(XK_Page_Down, Key::PageUp);
  178. initTranslateKey(XK_Home, Key::Home);
  179. initTranslateKey(XK_KP_End, Key::End);
  180. initTranslateKey(XK_Print, Key::Print);
  181. initTranslateKey(XK_equal, Key::Plus);
  182. initTranslateKey(XK_minus, Key::Minus);
  183. initTranslateKey(XK_F1, Key::F1);
  184. initTranslateKey(XK_F2, Key::F2);
  185. initTranslateKey(XK_F3, Key::F3);
  186. initTranslateKey(XK_F4, Key::F4);
  187. initTranslateKey(XK_F5, Key::F5);
  188. initTranslateKey(XK_F6, Key::F6);
  189. initTranslateKey(XK_F7, Key::F7);
  190. initTranslateKey(XK_F8, Key::F8);
  191. initTranslateKey(XK_F9, Key::F9);
  192. initTranslateKey(XK_F10, Key::F10);
  193. initTranslateKey(XK_F11, Key::F11);
  194. initTranslateKey(XK_F12, Key::F12);
  195. initTranslateKey(XK_KP_Insert, Key::NumPad0);
  196. initTranslateKey(XK_KP_End, Key::NumPad1);
  197. initTranslateKey(XK_KP_Down, Key::NumPad2);
  198. initTranslateKey(XK_KP_Page_Down, Key::NumPad3);
  199. initTranslateKey(XK_KP_Left, Key::NumPad4);
  200. initTranslateKey(XK_KP_Begin, Key::NumPad5);
  201. initTranslateKey(XK_KP_Right, Key::NumPad6);
  202. initTranslateKey(XK_KP_Home, Key::NumPad7);
  203. initTranslateKey(XK_KP_Up, Key::NumPad8);
  204. initTranslateKey(XK_KP_Page_Up, Key::NumPad9);
  205. initTranslateKey('0', Key::Key0);
  206. initTranslateKey('1', Key::Key1);
  207. initTranslateKey('2', Key::Key2);
  208. initTranslateKey('3', Key::Key3);
  209. initTranslateKey('4', Key::Key4);
  210. initTranslateKey('5', Key::Key5);
  211. initTranslateKey('6', Key::Key6);
  212. initTranslateKey('7', Key::Key7);
  213. initTranslateKey('8', Key::Key8);
  214. initTranslateKey('9', Key::Key9);
  215. initTranslateKey('a', Key::KeyA);
  216. initTranslateKey('b', Key::KeyB);
  217. initTranslateKey('c', Key::KeyC);
  218. initTranslateKey('d', Key::KeyD);
  219. initTranslateKey('e', Key::KeyE);
  220. initTranslateKey('f', Key::KeyF);
  221. initTranslateKey('g', Key::KeyG);
  222. initTranslateKey('h', Key::KeyH);
  223. initTranslateKey('i', Key::KeyI);
  224. initTranslateKey('j', Key::KeyJ);
  225. initTranslateKey('k', Key::KeyK);
  226. initTranslateKey('l', Key::KeyL);
  227. initTranslateKey('m', Key::KeyM);
  228. initTranslateKey('n', Key::KeyN);
  229. initTranslateKey('o', Key::KeyO);
  230. initTranslateKey('p', Key::KeyP);
  231. initTranslateKey('q', Key::KeyQ);
  232. initTranslateKey('r', Key::KeyR);
  233. initTranslateKey('s', Key::KeyS);
  234. initTranslateKey('t', Key::KeyT);
  235. initTranslateKey('u', Key::KeyU);
  236. initTranslateKey('v', Key::KeyV);
  237. initTranslateKey('w', Key::KeyW);
  238. initTranslateKey('x', Key::KeyX);
  239. initTranslateKey('y', Key::KeyY);
  240. initTranslateKey('z', Key::KeyZ);
  241. m_mx = 0;
  242. m_my = 0;
  243. m_mz = 0;
  244. }
  245. int32_t run(int _argc, char** _argv)
  246. {
  247. XInitThreads();
  248. m_display = XOpenDisplay(0);
  249. int32_t screen = DefaultScreen(m_display);
  250. m_depth = DefaultDepth(m_display, screen);
  251. m_visual = DefaultVisual(m_display, screen);
  252. m_root = RootWindow(m_display, screen);
  253. XSetWindowAttributes windowAttrs;
  254. memset(&windowAttrs, 0, sizeof(windowAttrs) );
  255. windowAttrs.background_pixmap = 0;
  256. windowAttrs.border_pixel = 0;
  257. windowAttrs.event_mask = 0
  258. | ButtonPressMask
  259. | ButtonReleaseMask
  260. | ExposureMask
  261. | KeyPressMask
  262. | KeyReleaseMask
  263. | PointerMotionMask
  264. | StructureNotifyMask
  265. ;
  266. m_windowAlloc.alloc();
  267. m_window[0] = XCreateWindow(m_display
  268. , m_root
  269. , 0, 0
  270. , ENTRY_DEFAULT_WIDTH, ENTRY_DEFAULT_HEIGHT, 0
  271. , m_depth
  272. , InputOutput
  273. , m_visual
  274. , CWBorderPixel|CWEventMask
  275. , &windowAttrs
  276. );
  277. // Clear window to black.
  278. XSetWindowAttributes attr;
  279. memset(&attr, 0, sizeof(attr) );
  280. XChangeWindowAttributes(m_display, m_window[0], CWBackPixel, &attr);
  281. const char* wmDeleteWindowName = "WM_DELETE_WINDOW";
  282. Atom wmDeleteWindow;
  283. XInternAtoms(m_display, (char **)&wmDeleteWindowName, 1, False, &wmDeleteWindow);
  284. XSetWMProtocols(m_display, m_window[0], &wmDeleteWindow, 1);
  285. XMapWindow(m_display, m_window[0]);
  286. XStoreName(m_display, m_window[0], "BGFX");
  287. //
  288. bgfx::x11SetDisplayWindow(m_display, m_window[0]);
  289. MainThreadEntry mte;
  290. mte.m_argc = _argc;
  291. mte.m_argv = _argv;
  292. bx::Thread thread;
  293. thread.init(mte.threadFunc, &mte);
  294. WindowHandle defaultWindow = { 0 };
  295. m_eventQueue.postSizeEvent(defaultWindow, ENTRY_DEFAULT_WIDTH, ENTRY_DEFAULT_HEIGHT);
  296. s_joystick.init();
  297. while (!m_exit)
  298. {
  299. bool joystick = s_joystick.update(m_eventQueue);
  300. bool xpending = XPending(m_display);
  301. if (!xpending)
  302. {
  303. bx::sleep(joystick ? 8 : 16);
  304. }
  305. else
  306. {
  307. XEvent event;
  308. XNextEvent(m_display, &event);
  309. switch (event.type)
  310. {
  311. case Expose:
  312. break;
  313. case ClientMessage:
  314. if ( (Atom)event.xclient.data.l[0] == wmDeleteWindow)
  315. {
  316. m_eventQueue.postExitEvent();
  317. }
  318. break;
  319. case ButtonPress:
  320. case ButtonRelease:
  321. {
  322. const XButtonEvent& xbutton = event.xbutton;
  323. MouseButton::Enum mb = MouseButton::None;
  324. switch (xbutton.button)
  325. {
  326. case Button1: mb = MouseButton::Left; break;
  327. case Button2: mb = MouseButton::Middle; break;
  328. case Button3: mb = MouseButton::Right; break;
  329. case Button4: ++m_mz; break;
  330. case Button5: --m_mz; break;
  331. }
  332. WindowHandle handle = findHandle(xbutton.window);
  333. if (MouseButton::None != mb)
  334. {
  335. m_eventQueue.postMouseEvent(handle
  336. , xbutton.x
  337. , xbutton.y
  338. , 0
  339. , mb
  340. , event.type == ButtonPress
  341. );
  342. }
  343. else
  344. {
  345. m_eventQueue.postMouseEvent(handle
  346. , m_mx
  347. , m_my
  348. , m_mz
  349. );
  350. }
  351. }
  352. break;
  353. case MotionNotify:
  354. {
  355. const XMotionEvent& xmotion = event.xmotion;
  356. WindowHandle handle = findHandle(xmotion.window);
  357. m_mx = xmotion.x;
  358. m_my = xmotion.y;
  359. m_eventQueue.postMouseEvent(handle
  360. , m_mx
  361. , m_my
  362. , m_mz
  363. );
  364. }
  365. break;
  366. case KeyPress:
  367. case KeyRelease:
  368. {
  369. XKeyEvent& xkey = event.xkey;
  370. KeySym keysym = XLookupKeysym(&xkey, 0);
  371. switch (keysym)
  372. {
  373. case XK_Meta_L: setModifier(Modifier::LeftMeta, KeyPress == event.type); break;
  374. case XK_Meta_R: setModifier(Modifier::RightMeta, KeyPress == event.type); break;
  375. case XK_Control_L: setModifier(Modifier::LeftCtrl, KeyPress == event.type); break;
  376. case XK_Control_R: setModifier(Modifier::RightCtrl, KeyPress == event.type); break;
  377. case XK_Shift_L: setModifier(Modifier::LeftShift, KeyPress == event.type); break;
  378. case XK_Shift_R: setModifier(Modifier::RightShift, KeyPress == event.type); break;
  379. case XK_Alt_L: setModifier(Modifier::LeftAlt, KeyPress == event.type); break;
  380. case XK_Alt_R: setModifier(Modifier::RightAlt, KeyPress == event.type); break;
  381. default:
  382. {
  383. Key::Enum key = fromXk(keysym);
  384. if (Key::None != key)
  385. {
  386. WindowHandle handle = findHandle(xkey.window);
  387. m_eventQueue.postKeyEvent(handle, key, m_modifiers, KeyPress == event.type);
  388. }
  389. }
  390. break;
  391. }
  392. }
  393. break;
  394. case ConfigureNotify:
  395. {
  396. const XConfigureEvent& xev = event.xconfigure;
  397. WindowHandle handle = findHandle(xev.window);
  398. if (isValid(handle) )
  399. {
  400. m_eventQueue.postSizeEvent(handle, xev.width, xev.height);
  401. }
  402. }
  403. break;
  404. }
  405. }
  406. }
  407. thread.shutdown();
  408. s_joystick.shutdown();
  409. XUnmapWindow(m_display, m_window[0]);
  410. XDestroyWindow(m_display, m_window[0]);
  411. return EXIT_SUCCESS;
  412. }
  413. void setModifier(Modifier::Enum _modifier, bool _set)
  414. {
  415. m_modifiers &= ~_modifier;
  416. m_modifiers |= _set ? _modifier : 0;
  417. }
  418. void createWindow(WindowHandle _handle, Msg* msg)
  419. {
  420. XSetWindowAttributes windowAttrs;
  421. memset(&windowAttrs, 0, sizeof(windowAttrs) );
  422. windowAttrs.background_pixmap = 0;
  423. windowAttrs.border_pixel = 0;
  424. windowAttrs.event_mask = 0
  425. | ButtonPressMask
  426. | ButtonReleaseMask
  427. | ExposureMask
  428. | KeyPressMask
  429. | KeyReleaseMask
  430. | PointerMotionMask
  431. | ResizeRedirectMask
  432. | StructureNotifyMask
  433. ;
  434. Window window = XCreateWindow(m_display
  435. , m_root
  436. , msg->m_x
  437. , msg->m_y
  438. , msg->m_width
  439. , msg->m_height
  440. , 0
  441. , m_depth
  442. , InputOutput
  443. , m_visual
  444. , CWBorderPixel|CWEventMask
  445. , &windowAttrs
  446. );
  447. m_window[_handle.idx] = window;
  448. // Clear window to black.
  449. XSetWindowAttributes attr;
  450. memset(&attr, 0, sizeof(attr) );
  451. XChangeWindowAttributes(m_display, window, CWBackPixel, &attr);
  452. const char* wmDeleteWindowName = "WM_DELETE_WINDOW";
  453. Atom wmDeleteWindow;
  454. XInternAtoms(m_display, (char **)&wmDeleteWindowName, 1, False, &wmDeleteWindow);
  455. XSetWMProtocols(m_display, window, &wmDeleteWindow, 1);
  456. XMapWindow(m_display, window);
  457. XStoreName(m_display, window, msg->m_title.c_str() );
  458. m_eventQueue.postSizeEvent(_handle, msg->m_width, msg->m_height);
  459. union cast
  460. {
  461. void* p;
  462. ::Window w;
  463. };
  464. cast c;
  465. c.w = window;
  466. m_eventQueue.postWindowEvent(_handle, c.p);
  467. delete msg;
  468. }
  469. WindowHandle findHandle(Window _window)
  470. {
  471. bx::LwMutexScope scope(m_lock);
  472. for (uint32_t ii = 0, num = m_windowAlloc.getNumHandles(); ii < num; ++ii)
  473. {
  474. uint16_t idx = m_windowAlloc.getHandleAt(ii);
  475. if (_window == m_window[idx])
  476. {
  477. WindowHandle handle = { idx };
  478. return handle;
  479. }
  480. }
  481. WindowHandle invalid = { UINT16_MAX };
  482. return invalid;
  483. }
  484. uint8_t m_modifiers;
  485. bool m_exit;
  486. int32_t m_mx;
  487. int32_t m_my;
  488. int32_t m_mz;
  489. EventQueue m_eventQueue;
  490. bx::LwMutex m_lock;
  491. bx::HandleAllocT<ENTRY_CONFIG_MAX_WINDOWS> m_windowAlloc;
  492. int32_t m_depth;
  493. Visual* m_visual;
  494. Window m_root;
  495. Display* m_display;
  496. Window m_window[ENTRY_CONFIG_MAX_WINDOWS];
  497. uint32_t m_flags[ENTRY_CONFIG_MAX_WINDOWS];
  498. };
  499. static Context s_ctx;
  500. int32_t MainThreadEntry::threadFunc(void* _userData)
  501. {
  502. MainThreadEntry* self = (MainThreadEntry*)_userData;
  503. int32_t result = main(self->m_argc, self->m_argv);
  504. s_ctx.m_exit = true;
  505. return result;
  506. }
  507. const Event* poll()
  508. {
  509. return s_ctx.m_eventQueue.poll();
  510. }
  511. const Event* poll(WindowHandle _handle)
  512. {
  513. return s_ctx.m_eventQueue.poll(_handle);
  514. }
  515. void release(const Event* _event)
  516. {
  517. s_ctx.m_eventQueue.release(_event);
  518. }
  519. WindowHandle createWindow(int32_t _x, int32_t _y, uint32_t _width, uint32_t _height, uint32_t _flags, const char* _title)
  520. {
  521. bx::LwMutexScope scope(s_ctx.m_lock);
  522. WindowHandle handle = { s_ctx.m_windowAlloc.alloc() };
  523. if (isValid(handle) )
  524. {
  525. Msg* msg = new Msg;
  526. msg->m_x = _x;
  527. msg->m_y = _y;
  528. msg->m_width = _width;
  529. msg->m_height = _height;
  530. msg->m_title = _title;
  531. msg->m_flags = _flags;
  532. s_ctx.createWindow(handle, msg);
  533. }
  534. return handle;
  535. }
  536. void destroyWindow(WindowHandle _handle)
  537. {
  538. if (isValid(_handle) )
  539. {
  540. s_ctx.m_eventQueue.postWindowEvent(_handle, NULL);
  541. XUnmapWindow(s_ctx.m_display, s_ctx.m_window[_handle.idx]);
  542. XDestroyWindow(s_ctx.m_display, s_ctx.m_window[_handle.idx]);
  543. bx::LwMutexScope scope(s_ctx.m_lock);
  544. s_ctx.m_windowAlloc.free(_handle.idx);
  545. }
  546. }
  547. void setWindowPos(WindowHandle _handle, int32_t _x, int32_t _y)
  548. {
  549. BX_UNUSED(_handle, _x, _y);
  550. }
  551. void setWindowSize(WindowHandle _handle, uint32_t _width, uint32_t _height)
  552. {
  553. BX_UNUSED(_handle);
  554. XResizeRequestEvent ev;
  555. ev.type = ResizeRequest;
  556. ev.serial = 0;
  557. ev.send_event = true;
  558. ev.display = s_ctx.m_display;
  559. ev.window = s_ctx.m_window[0];
  560. ev.width = (int)_width;
  561. ev.height = (int)_height;
  562. XSendEvent(s_ctx.m_display, s_ctx.m_window[0], false, ResizeRedirectMask, (XEvent*)&ev);
  563. }
  564. void setWindowTitle(WindowHandle _handle, const char* _title)
  565. {
  566. XStoreName(s_ctx.m_display, s_ctx.m_window[_handle.idx], _title);
  567. }
  568. void toggleWindowFrame(WindowHandle _handle)
  569. {
  570. BX_UNUSED(_handle);
  571. }
  572. void toggleFullscreen(WindowHandle _handle)
  573. {
  574. BX_UNUSED(_handle);
  575. }
  576. void setMouseLock(WindowHandle _handle, bool _lock)
  577. {
  578. BX_UNUSED(_handle, _lock);
  579. }
  580. } // namespace entry
  581. int main(int _argc, char** _argv)
  582. {
  583. using namespace entry;
  584. return s_ctx.run(_argc, _argv);
  585. }
  586. #endif // ENTRY_CONFIG_USE_NATIVE && (BX_PLATFORM_FREEBSD || BX_PLATFORM_LINUX || BX_PLATFORM_RPI)