SDL_ggievents.c
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上传日期:2007-02-02
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文件大小:8k
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流媒体/Mpeg4/MP4

开发平台:

Visual C++

  1. /*
  2. SDL - Simple DirectMedia Layer
  3. Copyright (C) 1997, 1998, 1999, 2000, 2001, 2002  Sam Lantinga
  4. This library is free software; you can redistribute it and/or
  5. modify it under the terms of the GNU Library General Public
  6. License as published by the Free Software Foundation; either
  7. version 2 of the License, or (at your option) any later version.
  8. This library is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
  11. Library General Public License for more details.
  12. You should have received a copy of the GNU Library General Public
  13. License along with this library; if not, write to the Free
  14. Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
  15. Sam Lantinga
  16. slouken@libsdl.org
  17. */
  18. #ifdef SAVE_RCSID
  19. static char rcsid =
  20.  "@(#) $Id: SDL_ggievents.c,v 1.4 2002/04/22 21:38:05 wmay Exp $";
  21. #endif
  22. /* Handle the event stream, converting GGI events into SDL events */
  23. #include <sys/types.h>
  24. #include <sys/time.h>
  25. #include <stdlib.h>
  26. #include <stdio.h>
  27. #include <unistd.h>
  28. #include <fcntl.h>
  29. #include <termios.h>
  30. #include <ggi/keyboard.h>
  31. #include "SDL_ggikeys.h"
  32. #include "SDL.h"
  33. #include "SDL_sysevents.h"
  34. #include "SDL_sysvideo.h"
  35. #include "SDL_events_c.h"
  36. #include "SDL_ggivideo.h"
  37. #include "SDL_ggievents_c.h"
  38. /* The translation tables from a GGI keycode to a SDL keysym */
  39. static SDLKey keymap[128];
  40. static SDL_keysym *GGI_TranslateKey(ggi_event *ev, SDL_keysym *keysym);
  41. static int posted = 0;
  42. void GGI_PumpEvents(_THIS)
  43. {
  44. struct timeval *tvp, tv = { 0, 0 };
  45. ggi_event ev;
  46. tvp = &tv;
  47. /* ggiFlush(VIS); */
  48. while (ggiEventPoll(VIS, emAll, tvp))
  49. /* while (ggiEventPoll(VIS, (emKeyboard | emPointer | emCommand), tvp)) */
  50. {
  51. int queueevent_mouse = 0, queueevent_kbd = 0;
  52. static int buttons = 0;
  53. static int mouse_x = 0, mouse_y = 0, mouse_z = 0;
  54. int x = 0, y = 0, z = 0, rx = 0, ry = 0, rz = 0;
  55. uint32 sym;
  56. int pressed_mouse, pressed_kbd;
  57. SDL_keysym keysym;
  58. posted = 0;
  59. /* FIXME: We do not actually want all events, only
  60.  * mouse and keyboard events.  Having to handle all
  61.                  * events will slow things down.  */
  62. ggiEventRead(VIS, &ev, emAll);
  63. /* ggiEventRead(VIS, &ev, (emKeyboard | emPointer | emCommand)); */
  64. switch (ev.any.type)
  65. {
  66. case evPtrRelative:
  67. x = ev.pmove.x;
  68. y = ev.pmove.y;
  69. z = ev.pmove.wheel;
  70. posted += SDL_PrivateMouseMotion(0, 1, x, y);
  71. break;
  72. case evPtrAbsolute:
  73. if (mouse_x != ev.pmove.x || mouse_y != ev.pmove.y || mouse_z != ev.pmove.wheel)
  74. {
  75. x = ev.pmove.x - mouse_x;
  76. y = ev.pmove.y - mouse_y;
  77. z = ev.pmove.wheel - mouse_z;
  78. mouse_x = ev.pmove.x;
  79. mouse_y = ev.pmove.y;
  80. mouse_z = ev.pmove.wheel;
  81. posted += SDL_PrivateMouseMotion(0, 1, x, y);
  82. break;
  83. case evPtrButtonPress:
  84. posted += SDL_PrivateMouseButton(SDL_PRESSED, ev.pbutton.button, 0, 0);
  85. break;
  86. case evPtrButtonRelease:
  87. posted += SDL_PrivateMouseButton(SDL_RELEASED, ev.pbutton.button, 0, 0);
  88. break;
  89. case evKeyPress:
  90. case evKeyRepeat:
  91. posted += SDL_PrivateKeyboard(SDL_PRESSED, GGI_TranslateKey(&ev, &keysym));
  92. break;
  93. case evKeyRelease:
  94. posted += SDL_PrivateKeyboard(SDL_RELEASED, GGI_TranslateKey(&ev, &keysym));
  95. break;
  96. case evCommand:
  97. fprintf(stderr, "Command event %x recievedn", ev.cmd.code);
  98. break;
  99.   default:
  100. fprintf(stderr, "Unhandled event type %dn", ev.any.type);
  101. break;
  102. }
  103. }
  104. }
  105. void GGI_InitOSKeymap(_THIS)
  106. {
  107. int i;
  108. /* Initialize the GGI key translation table */
  109. for ( i=0; i<SDL_TABLESIZE(keymap); ++i )
  110. keymap[i] = SDLK_UNKNOWN;
  111. keymap[SCANCODE_ESCAPE] = SDLK_ESCAPE;
  112. keymap[SCANCODE_1] = SDLK_1;
  113. keymap[SCANCODE_2] = SDLK_2;
  114. keymap[SCANCODE_3] = SDLK_3;
  115. keymap[SCANCODE_4] = SDLK_4;
  116. keymap[SCANCODE_5] = SDLK_5;
  117. keymap[SCANCODE_6] = SDLK_6;
  118. keymap[SCANCODE_7] = SDLK_7;
  119. keymap[SCANCODE_8] = SDLK_8;
  120. keymap[SCANCODE_9] = SDLK_9;
  121. keymap[SCANCODE_0] = SDLK_0;
  122. keymap[SCANCODE_MINUS] = SDLK_MINUS;
  123. keymap[SCANCODE_EQUAL] = SDLK_EQUALS;
  124. keymap[SCANCODE_BACKSPACE] = SDLK_BACKSPACE;
  125. keymap[SCANCODE_TAB] = SDLK_TAB;
  126. keymap[SCANCODE_Q] = SDLK_q;
  127. keymap[SCANCODE_W] = SDLK_w;
  128. keymap[SCANCODE_E] = SDLK_e;
  129. keymap[SCANCODE_R] = SDLK_r;
  130. keymap[SCANCODE_T] = SDLK_t;
  131. keymap[SCANCODE_Y] = SDLK_y;
  132. keymap[SCANCODE_U] = SDLK_u;
  133. keymap[SCANCODE_I] = SDLK_i;
  134. keymap[SCANCODE_O] = SDLK_o;
  135. keymap[SCANCODE_P] = SDLK_p;
  136. keymap[SCANCODE_BRACKET_LEFT] = SDLK_LEFTBRACKET;
  137. keymap[SCANCODE_BRACKET_RIGHT] = SDLK_RIGHTBRACKET;
  138. keymap[SCANCODE_ENTER] = SDLK_RETURN;
  139. keymap[SCANCODE_LEFTCONTROL] = SDLK_LCTRL;
  140. keymap[SCANCODE_A] = SDLK_a;
  141. keymap[SCANCODE_S] = SDLK_s;
  142. keymap[SCANCODE_D] = SDLK_d;
  143. keymap[SCANCODE_F] = SDLK_f;
  144. keymap[SCANCODE_G] = SDLK_g;
  145. keymap[SCANCODE_H] = SDLK_h;
  146. keymap[SCANCODE_J] = SDLK_j;
  147. keymap[SCANCODE_K] = SDLK_k;
  148. keymap[SCANCODE_L] = SDLK_l;
  149. keymap[SCANCODE_SEMICOLON] = SDLK_SEMICOLON;
  150. keymap[SCANCODE_APOSTROPHE] = SDLK_QUOTE;
  151. keymap[SCANCODE_GRAVE] = SDLK_BACKQUOTE;
  152. keymap[SCANCODE_LEFTSHIFT] = SDLK_LSHIFT;
  153. keymap[SCANCODE_BACKSLASH] = SDLK_BACKSLASH;
  154. keymap[SCANCODE_Z] = SDLK_z;
  155. keymap[SCANCODE_X] = SDLK_x;
  156. keymap[SCANCODE_C] = SDLK_c;
  157. keymap[SCANCODE_V] = SDLK_v;
  158. keymap[SCANCODE_B] = SDLK_b;
  159. keymap[SCANCODE_N] = SDLK_n;
  160. keymap[SCANCODE_M] = SDLK_m;
  161. keymap[SCANCODE_COMMA] = SDLK_COMMA;
  162. keymap[SCANCODE_PERIOD] = SDLK_PERIOD;
  163. keymap[SCANCODE_SLASH] = SDLK_SLASH;
  164. keymap[SCANCODE_RIGHTSHIFT] = SDLK_RSHIFT;
  165. keymap[SCANCODE_KEYPADMULTIPLY] = SDLK_KP_MULTIPLY;
  166. keymap[SCANCODE_LEFTALT] = SDLK_LALT;
  167. keymap[SCANCODE_SPACE] = SDLK_SPACE;
  168. keymap[SCANCODE_CAPSLOCK] = SDLK_CAPSLOCK;
  169. keymap[SCANCODE_F1] = SDLK_F1;
  170. keymap[SCANCODE_F2] = SDLK_F2;
  171. keymap[SCANCODE_F3] = SDLK_F3;
  172. keymap[SCANCODE_F4] = SDLK_F4;
  173. keymap[SCANCODE_F5] = SDLK_F5;
  174. keymap[SCANCODE_F6] = SDLK_F6;
  175. keymap[SCANCODE_F7] = SDLK_F7;
  176. keymap[SCANCODE_F8] = SDLK_F8;
  177. keymap[SCANCODE_F9] = SDLK_F9;
  178. keymap[SCANCODE_F10] = SDLK_F10;
  179. keymap[SCANCODE_NUMLOCK] = SDLK_NUMLOCK;
  180. keymap[SCANCODE_SCROLLLOCK] = SDLK_SCROLLOCK;
  181. keymap[SCANCODE_KEYPAD7] = SDLK_KP7;
  182. keymap[SCANCODE_CURSORUPLEFT] = SDLK_KP7;
  183. keymap[SCANCODE_KEYPAD8] = SDLK_KP8;
  184. keymap[SCANCODE_CURSORUP] = SDLK_KP8;
  185. keymap[SCANCODE_KEYPAD9] = SDLK_KP9;
  186. keymap[SCANCODE_CURSORUPRIGHT] = SDLK_KP9;
  187. keymap[SCANCODE_KEYPADMINUS] = SDLK_KP_MINUS;
  188. keymap[SCANCODE_KEYPAD4] = SDLK_KP4;
  189. keymap[SCANCODE_CURSORLEFT] = SDLK_KP4;
  190. keymap[SCANCODE_KEYPAD5] = SDLK_KP5;
  191. keymap[SCANCODE_KEYPAD6] = SDLK_KP6;
  192. keymap[SCANCODE_CURSORRIGHT] = SDLK_KP6;
  193. keymap[SCANCODE_KEYPADPLUS] = SDLK_KP_PLUS;
  194. keymap[SCANCODE_KEYPAD1] = SDLK_KP1;
  195. keymap[SCANCODE_CURSORDOWNLEFT] = SDLK_KP1;
  196. keymap[SCANCODE_KEYPAD2] = SDLK_KP2;
  197. keymap[SCANCODE_CURSORDOWN] = SDLK_KP2;
  198. keymap[SCANCODE_KEYPAD3] = SDLK_KP3;
  199. keymap[SCANCODE_CURSORDOWNRIGHT] = SDLK_KP3;
  200. keymap[SCANCODE_KEYPAD0] = SDLK_KP0;
  201. keymap[SCANCODE_KEYPADPERIOD] = SDLK_KP_PERIOD;
  202. keymap[SCANCODE_LESS] = SDLK_LESS;
  203. keymap[SCANCODE_F11] = SDLK_F11;
  204. keymap[SCANCODE_F12] = SDLK_F12;
  205. keymap[SCANCODE_KEYPADENTER] = SDLK_KP_ENTER;
  206. keymap[SCANCODE_RIGHTCONTROL] = SDLK_RCTRL;
  207. keymap[SCANCODE_CONTROL] = SDLK_RCTRL;
  208. keymap[SCANCODE_KEYPADDIVIDE] = SDLK_KP_DIVIDE;
  209. keymap[SCANCODE_PRINTSCREEN] = SDLK_PRINT;
  210. keymap[SCANCODE_RIGHTALT] = SDLK_RALT;
  211. keymap[SCANCODE_BREAK] = SDLK_BREAK;
  212. keymap[SCANCODE_BREAK_ALTERNATIVE] = SDLK_UNKNOWN;
  213. keymap[SCANCODE_HOME] = SDLK_HOME;
  214. keymap[SCANCODE_CURSORBLOCKUP] = SDLK_UP;
  215. keymap[SCANCODE_PAGEUP] = SDLK_PAGEUP;
  216. keymap[SCANCODE_CURSORBLOCKLEFT] = SDLK_LEFT;
  217. keymap[SCANCODE_CURSORBLOCKRIGHT] = SDLK_RIGHT;
  218. keymap[SCANCODE_END] = SDLK_END;
  219. keymap[SCANCODE_CURSORBLOCKDOWN] = SDLK_DOWN;
  220. keymap[SCANCODE_PAGEDOWN] = SDLK_PAGEDOWN;
  221. keymap[SCANCODE_INSERT] = SDLK_INSERT;
  222. keymap[SCANCODE_REMOVE] = SDLK_DELETE;
  223. keymap[119] = SDLK_PAUSE;
  224. keymap[SCANCODE_RIGHTWIN] = SDLK_RSUPER;
  225. keymap[SCANCODE_LEFTWIN] = SDLK_LSUPER;
  226. keymap[127] = SDLK_MENU;
  227. }
  228. static SDL_keysym *GGI_TranslateKey(gii_event *ev, SDL_keysym *keysym)
  229. {
  230. /* Set the keysym information */
  231. keysym->scancode = ev->key.button;
  232. keysym->sym = keymap[ev->key.button];
  233. keysym->mod = KMOD_NONE;
  234. /* If UNICODE is on, get the UNICODE value for the key */
  235. keysym->unicode = 0;
  236. if (SDL_TranslateUNICODE) 
  237. {
  238. keysym->unicode = GII_UNICODE(ev->key.sym);
  239. }
  240. return keysym;
  241. }