Mercurial > MadButterfly
annotate src/X_supp.c @ 532:5711059b9642 Android_Skia
Add todo
author | Thinker K.F. Li <thinker@branda.to> |
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date | Fri, 25 Dec 2009 12:11:20 +0800 |
parents | 0160cdabaa51 |
children | 49f8f57f184a |
rev | line source |
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77 | 1 #include <stdio.h> |
78 | 2 #include <stdlib.h> |
3 #include <string.h> | |
77 | 4 #include <X11/Xlib.h> |
5 #include <X11/Xutil.h> | |
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6 #include "mb_graph_engine.h" |
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7 #include "mb_redraw_man.h" |
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8 #include "mb_timer.h" |
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9 #include "mb_X_supp.h" |
77 | 10 |
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11 #define ERR -1 |
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12 #define OK 0 |
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13 |
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14 #define ONLY_MOUSE_MOVE_RAW 1 |
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15 |
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16 /*! \ingroup xkb |
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17 * @{ |
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18 */ |
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19 struct _X_kb_info { |
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20 int keycode_min, keycode_max; |
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21 int ksym_per_code; |
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22 KeySym *syms; |
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23 subject_t *kbevents; |
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24 ob_factory_t *ob_factory; |
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25 }; |
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26 |
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27 /* @} */ |
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28 #define MAX_MONITORS 200 |
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29 typedef struct { |
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30 int type; |
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31 int fd; |
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32 mb_eventcb_t f; |
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33 void *arg; |
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34 } monitor_t; |
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35 struct _X_MB_runtime { |
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36 Display *display; |
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37 Window win; |
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38 Visual *visual; |
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39 mbe_surface_t *surface, *backend_surface; |
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40 mbe_pattern_t *surface_ptn; |
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41 mbe_t *cr, *backend_cr; |
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42 redraw_man_t *rdman; |
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43 mb_tman_t *tman; |
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44 mb_img_ldr_t *img_ldr; |
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45 int w, h; |
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46 |
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47 X_kb_info_t kbinfo; |
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48 monitor_t monitors[MAX_MONITORS]; |
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49 int n_monitor; |
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50 |
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51 #ifndef ONLY_MOUSE_MOVE_RAW |
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52 /* States */ |
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53 shape_t *last; |
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54 #endif |
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55 }; |
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56 |
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57 /*! \defgroup xkb X Keyboard Handling |
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58 * |
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59 * Accept keyboard events from X server and delivery it to |
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60 * application through observer pattern. There is a subject, |
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61 * per X-connection, for that. |
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62 * @{ |
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63 */ |
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64 static int keycode2sym(X_kb_info_t *kbinfo, unsigned int keycode) { |
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65 int sym_idx; |
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66 int sym; |
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67 |
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68 sym_idx = kbinfo->ksym_per_code * (keycode - kbinfo->keycode_min); |
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69 sym = kbinfo->syms[sym_idx]; |
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70 return sym; |
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71 } |
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72 |
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73 static int X_kb_init(X_kb_info_t *kbinfo, Display *display, |
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74 redraw_man_t *rdman) { |
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75 int n_syms; |
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76 ob_factory_t *factory; |
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77 int r; |
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78 |
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79 r = XDisplayKeycodes(display, |
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80 &kbinfo->keycode_min, |
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81 &kbinfo->keycode_max); |
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82 if(r == 0) |
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83 return ERR; |
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84 |
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85 n_syms = kbinfo->keycode_max - kbinfo->keycode_min + 1; |
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86 kbinfo->syms = XGetKeyboardMapping(display, kbinfo->keycode_min, |
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87 n_syms, |
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88 &kbinfo->ksym_per_code); |
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89 if(kbinfo->syms == NULL) |
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90 return ERR; |
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91 |
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92 factory = rdman_get_ob_factory(rdman); |
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93 kbinfo->kbevents = subject_new(factory, kbinfo, OBJT_KB); |
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94 if(kbinfo->kbevents == NULL) |
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95 return ERR; |
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96 /*! \todo Make sure ob_factory is still need. */ |
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97 kbinfo->ob_factory = factory; |
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98 |
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99 return OK; |
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100 } |
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101 |
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102 static void X_kb_destroy(X_kb_info_t *kbinfo) { |
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103 subject_free(kbinfo->kbevents); |
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104 XFree(kbinfo->syms); |
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105 } |
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106 |
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107 /*! \brief Accept X keyboard events from handle_x_event() and dispatch it. |
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108 */ |
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109 static void X_kb_handle_event(X_kb_info_t *kbinfo, XKeyEvent *xkey) { |
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110 unsigned int code; |
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111 int sym; |
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112 X_kb_event_t event; |
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113 |
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114 code = xkey->keycode; |
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115 sym = keycode2sym(kbinfo, code); |
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116 if(xkey->type == KeyPress) |
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117 event.event.type = EVT_KB_PRESS; |
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118 else if(xkey->type == KeyRelease) |
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119 event.event.type = EVT_KB_RELEASE; |
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120 event.event.tgt = event.event.cur_tgt = kbinfo->kbevents; |
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121 event.keycode = code; |
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122 event.sym = sym; |
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123 |
192
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124 subject_notify(kbinfo->kbevents, &event.event); |
122
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125 } |
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126 |
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127 /* @} */ |
77 | 128 |
78 | 129 static unsigned int get_button_state(unsigned int state) { |
130 unsigned int but = 0; | |
131 | |
132 if(state & Button1Mask) | |
133 but |= MOUSE_BUT1; | |
134 if(state & Button2Mask) | |
135 but |= MOUSE_BUT2; | |
136 if(state & Button3Mask) | |
137 but |= MOUSE_BUT3; | |
138 | |
139 return but; | |
140 } | |
141 | |
142 static unsigned int get_button(unsigned int button) { | |
143 switch(button) { | |
144 case Button1: | |
145 return MOUSE_BUT1; | |
146 case Button2: | |
147 return MOUSE_BUT2; | |
148 case Button3: | |
149 return MOUSE_BUT3; | |
150 } | |
151 return 0; | |
152 } | |
153 | |
154 /*! \brief Notify observers of the shape at specified | |
155 * position for mouse event. | |
156 * | |
157 * Observers of parent shapes may be called if the subject is not | |
158 * with SUBF_STOP_PROPAGATE flag. The subject of mouse event | |
159 * for a shape is returned by sh_get_mouse_event_subject(). | |
160 */ | |
224
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161 static void notify_coord_or_shape(redraw_man_t *rdman, |
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162 mb_obj_t *obj, |
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163 co_aix x, co_aix y, int etype, |
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164 unsigned int state, |
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165 unsigned int button) { |
78 | 166 mouse_event_t mouse_event; |
167 subject_t *subject; | |
168 | |
169 mouse_event.event.type = etype; | |
170 mouse_event.x = x; | |
171 mouse_event.y = y; | |
172 mouse_event.but_state = state; | |
173 mouse_event.button = button; | |
174 | |
224
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175 if(IS_MBO_SHAPES(obj)) |
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176 subject = sh_get_mouse_event_subject((shape_t *)obj); |
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177 else |
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178 subject = coord_get_mouse_event((coord_t *)obj); |
78 | 179 |
192
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180 subject_notify(subject, (event_t *)&mouse_event); |
78 | 181 } |
182 | |
183 /*! \brief Dispatch all X events in the queue. | |
77 | 184 */ |
83 | 185 static void handle_x_event(X_MB_runtime_t *rt) { |
186 Display *display = rt->display; | |
187 redraw_man_t *rdman = rt->rdman; | |
350
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188 XEvent evt, peek_evt; |
77 | 189 XMotionEvent *mevt; |
78 | 190 XButtonEvent *bevt; |
81 | 191 XExposeEvent *eevt; |
122
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192 XKeyEvent *xkey; |
81 | 193 co_aix x, y, w, h; |
194 | |
195 int eflag = 0; | |
82 | 196 int ex1=0, ey1=0, ex2=0, ey2=0; |
81 | 197 |
84
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198 shape_t *shape; |
224
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199 coord_t *root; |
84
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200 |
78 | 201 unsigned int state, button; |
84
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202 int in_stroke; |
77 | 203 int r; |
204 | |
529 | 205 /* XXX: For some unknown reason, it causes a segmentation fault to |
206 * called XEventsQueued() after receiving first Expose event | |
207 * and before redraw for the event. | |
208 */ | |
77 | 209 while(XEventsQueued(display, QueuedAfterReading) > 0) { |
210 r = XNextEvent(display, &evt); | |
211 if(r == -1) | |
212 break; | |
213 | |
214 switch(evt.type) { | |
78 | 215 case ButtonPress: |
216 bevt = (XButtonEvent *)&evt; | |
217 x = bevt->x; | |
218 y = bevt->y; | |
219 state = get_button_state(bevt->state); | |
220 button = get_button(bevt->button); | |
221 | |
84
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222 shape = find_shape_at_pos(rdman, x, y, |
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223 &in_stroke); |
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224 if(shape) |
224
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225 notify_coord_or_shape(rdman, (mb_obj_t *)shape, |
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226 x, y, EVT_MOUSE_BUT_PRESS, |
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227 state, button); |
78 | 228 break; |
229 | |
230 case ButtonRelease: | |
231 bevt = (XButtonEvent *)&evt; | |
232 x = bevt->x; | |
233 y = bevt->y; | |
234 state = get_button_state(bevt->state); | |
235 button = get_button(bevt->button); | |
236 | |
84
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237 shape = find_shape_at_pos(rdman, x, y, |
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238 &in_stroke); |
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239 if(shape) |
224
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240 notify_coord_or_shape(rdman, (mb_obj_t *)shape, |
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241 x, y, EVT_MOUSE_BUT_RELEASE, |
84
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242 state, button); |
78 | 243 break; |
244 | |
77 | 245 case MotionNotify: |
350
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246 while(XEventsQueued(display, QueuedAfterReading) > 0) { |
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247 r = XPeekEvent(display, &peek_evt); |
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248 if(r == -1) |
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249 break; |
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250 if(peek_evt.type != MotionNotify) |
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251 break; |
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252 XNextEvent(display, &evt); |
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253 } |
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254 if(r == -1) |
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255 break; |
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256 |
77 | 257 mevt = (XMotionEvent *)&evt; |
258 x = mevt->x; | |
259 y = mevt->y; | |
78 | 260 state = get_button_state(mevt->state); |
77 | 261 |
84
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262 shape = find_shape_at_pos(rdman, x, y, |
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263 &in_stroke); |
224
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264 #ifdef ONLY_MOUSE_MOVE_RAW |
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265 if(shape != NULL) { |
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266 notify_coord_or_shape(rdman, (mb_obj_t *)shape, |
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267 x, y, EVT_MOUSE_MOVE_RAW, state, 0); |
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268 } else { |
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269 root = rdman_get_root(rdman); |
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270 notify_coord_or_shape(rdman, (mb_obj_t *)root, |
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271 x, y, EVT_MOUSE_MOVE_RAW, state, 0); |
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272 } |
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273 #else |
84
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274 if(shape != NULL) { |
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275 if(rt->last != shape) { |
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276 if(rt->last) |
224
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277 notify_coord_or_shape(rdman, rt->last, x, y, |
84
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278 EVT_MOUSE_OUT, state, 0); |
224
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279 notify_coord_or_shape(rdman, shape, x, y, |
84
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280 EVT_MOUSE_OVER, state, 0); |
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281 rt->last = shape; |
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282 } else |
224
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283 notify_coord_or_shape(rdman, shape, x, y, |
84
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284 EVT_MOUSE_MOVE, state, 0); |
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285 } else { |
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286 if(rt->last) { |
224
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287 notify_coord_or_shape(rdman, rt->last, x, y, |
84
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288 EVT_MOUSE_OUT, state, 0); |
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289 rt->last = NULL; |
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290 } |
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291 } |
224
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292 #endif |
77 | 293 break; |
294 | |
122
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295 case KeyPress: |
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296 case KeyRelease: |
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297 xkey = &evt.xkey; |
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298 X_kb_handle_event(&rt->kbinfo, xkey); |
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299 break; |
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300 |
77 | 301 case Expose: |
81 | 302 eevt = &evt.xexpose; |
303 x = eevt->x; | |
304 y = eevt->y; | |
305 w = eevt->width; | |
306 h = eevt->height; | |
307 | |
308 if(eflag) { | |
309 if(x < ex1) | |
310 ex1 = x; | |
311 if(y < ey1) | |
312 ey1 = y; | |
313 if((x + w) > ex2) | |
314 ex2 = x + w; | |
315 if((y + h) > ey2) | |
316 ey2 = y + h; | |
317 } else { | |
318 ex1 = x; | |
319 ey1 = y; | |
320 ex2 = x + w; | |
321 ey2 = y + h; | |
322 eflag = 1; | |
323 } | |
77 | 324 break; |
325 } | |
326 } | |
81 | 327 if(eflag) { |
328 rdman_redraw_area(rdman, ex1, ey1, (ex2 - ex1), (ey2 - ey1)); | |
329 eflag = 0; | |
330 } | |
77 | 331 XFlush(display); |
332 } | |
333 | |
334 /*! \brief Handle connection coming data and timeout of timers. | |
78 | 335 * |
336 * \param display is a Display returned by XOpenDisplay(). | |
337 * \param rdman is a redraw manager. | |
338 * \param tman is a timer manager. | |
339 * | |
340 * The display is managed by specified rdman and tman. rdman draws | |
341 * on the display, and tman trigger actions according timers. | |
77 | 342 */ |
462
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343 void X_MB_handle_connection(void *be) { |
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344 X_MB_runtime_t *rt = (X_MB_runtime_t *) be; |
83 | 345 Display *display = rt->display; |
346 redraw_man_t *rdman = rt->rdman; | |
347 mb_tman_t *tman = rt->tman; | |
77 | 348 int fd; |
349 mb_timeval_t now, tmo; | |
350 struct timeval tv; | |
462
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351 fd_set rfds,wfds; |
77 | 352 int nfds; |
462
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353 int r, r1,i; |
77 | 354 |
142
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355 handle_x_event(rt); |
78 | 356 |
77 | 357 fd = XConnectionNumber(display); |
358 nfds = fd + 1; | |
359 while(1) { | |
360 FD_ZERO(&rfds); | |
462
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361 FD_ZERO(&wfds); |
77 | 362 FD_SET(fd, &rfds); |
462
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363 for(i=0;i<rt->n_monitor;i++) { |
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364 if (rt->monitors[i].type == MONITOR_READ) |
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365 FD_SET(rt->monitors[i].fd, &rfds); |
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366 else if (rt->monitors[i].type == MONITOR_WRITE) |
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367 FD_SET(rt->monitors[i].fd, &wfds); |
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368 } |
77 | 369 |
370 get_now(&now); | |
371 r = mb_tman_next_timeout(tman, &now, &tmo); | |
372 | |
373 if(r == 0) { | |
374 tv.tv_sec = MB_TIMEVAL_SEC(&tmo); | |
375 tv.tv_usec = MB_TIMEVAL_USEC(&tmo); | |
120 | 376 r1 = select(nfds, &rfds, NULL, NULL, &tv); |
77 | 377 } else |
120 | 378 r1 = select(nfds, &rfds, NULL, NULL, NULL); |
77 | 379 |
120 | 380 if(r1 == -1) { |
77 | 381 perror("select"); |
382 break; | |
383 } | |
384 | |
120 | 385 if(r1 == 0) { |
77 | 386 get_now(&now); |
387 mb_tman_handle_timeout(tman, &now); | |
388 rdman_redraw_changed(rdman); | |
389 XFlush(display); | |
390 } else if(FD_ISSET(fd, &rfds)){ | |
83 | 391 handle_x_event(rt); |
462
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392 } else { |
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393 for(i=0;i<rt->n_monitor;i++) { |
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394 if (rt->monitors[i].type == MONITOR_READ) |
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395 if (FD_ISSET(rt->monitors[i].fd, &rfds)) |
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396 rt->monitors[i].f(rt->monitors[i].fd,rt->monitors[i].arg); |
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397 else if (rt->monitors[i].type == MONITOR_WRITE) |
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398 if (FD_ISSET(rt->monitors[i].fd, &wfds)) |
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399 rt->monitors[i].f(rt->monitors[i].fd,rt->monitors[i].arg); |
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400 } |
77 | 401 } |
402 } | |
403 } | |
78 | 404 |
405 #define ERR -1 | |
406 #define OK 0 | |
407 | |
408 static int X_init_connection(const char *display_name, | |
409 int w, int h, | |
410 Display **displayp, | |
411 Visual **visualp, | |
412 Window *winp) { | |
413 Display *display; | |
414 Window root, win; | |
415 Visual *visual; | |
416 int screen; | |
417 XSetWindowAttributes wattr; | |
418 int depth; | |
419 int x, y; | |
420 int r; | |
421 | |
422 display = XOpenDisplay(display_name); | |
423 if(display == NULL) | |
424 return ERR; | |
425 | |
426 screen = DefaultScreen(display); | |
427 root = DefaultRootWindow(display); | |
428 visual = DefaultVisual(display, screen); | |
429 depth = DefaultDepth(display, screen); | |
430 wattr.override_redirect = False; | |
431 x = 10; | |
432 y = 10; | |
433 win = XCreateWindow(display, root, | |
434 x, y, | |
435 w, h, | |
436 1, depth, InputOutput, visual, | |
437 CWOverrideRedirect, &wattr); | |
438 r = XMapWindow(display, win); | |
439 if(r == -1) { | |
440 XCloseDisplay(display); | |
441 return ERR; | |
442 } | |
443 | |
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444 XSelectInput(display, win, PointerMotionMask | ExposureMask | |
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445 ButtonPressMask | ButtonReleaseMask | |
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446 KeyPressMask | KeyReleaseMask); |
78 | 447 XFlush(display); |
448 | |
449 *displayp = display; | |
450 *visualp = visual; | |
451 *winp = win; | |
452 | |
453 return OK; | |
454 } | |
455 | |
456 /*! \brief Initialize a MadButterfy runtime for Xlib. | |
457 * | |
458 * It setups a runtime environment to run MadButterfly with Xlib. | |
459 * Users should specify width and height of the opening window. | |
460 */ | |
122
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461 static int X_MB_init(const char *display_name, |
78 | 462 int w, int h, X_MB_runtime_t *xmb_rt) { |
265
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463 mb_img_ldr_t *img_ldr; |
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464 |
78 | 465 memset(xmb_rt, 0, sizeof(X_MB_runtime_t)); |
466 | |
467 xmb_rt->w = w; | |
468 xmb_rt->h = h; | |
469 X_init_connection(display_name, w, h, &xmb_rt->display, | |
470 &xmb_rt->visual, &xmb_rt->win); | |
471 | |
472 xmb_rt->surface = | |
450
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473 mbe_image_surface_create(MB_IFMT_ARGB32, w, h); |
471
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474 |
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475 xmb_rt->surface_ptn = |
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476 mbe_pattern_create_for_surface(xmb_rt->surface); |
78 | 477 |
478 xmb_rt->backend_surface = | |
448
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479 mbe_xlib_surface_create(xmb_rt->display, |
78 | 480 xmb_rt->win, |
481 xmb_rt->visual, | |
482 w, h); | |
483 | |
448
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484 xmb_rt->cr = mbe_create(xmb_rt->surface); |
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485 xmb_rt->backend_cr = mbe_create(xmb_rt->backend_surface); |
78 | 486 |
471
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487 mbe_set_source(xmb_rt->backend_cr, xmb_rt->surface_ptn); |
78 | 488 |
489 xmb_rt->rdman = (redraw_man_t *)malloc(sizeof(redraw_man_t)); | |
490 redraw_man_init(xmb_rt->rdman, xmb_rt->cr, xmb_rt->backend_cr); | |
249
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491 // FIXME: This is a wired loopback reference. This is inly required when we need |
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492 // to get the xmb_rt->tman for the animation. We should relocate the tman |
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493 // to the redraw_man_t instead. |
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494 xmb_rt->rdman->rt = xmb_rt; |
270
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495 xmb_rt->rdman->w = w; |
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496 xmb_rt->rdman->h = h; |
78 | 497 |
498 xmb_rt->tman = mb_tman_new(); | |
499 | |
346
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500 img_ldr = simple_mb_img_ldr_new(""); |
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501 xmb_rt->img_ldr = img_ldr; |
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502 rdman_set_img_ldr(xmb_rt->rdman, img_ldr); |
462
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503 memset(xmb_rt->monitors,0,sizeof(xmb_rt->monitors)); |
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504 |
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505 #ifndef ONLY_MOUSE_MOVE_RAW |
83 | 506 xmb_rt->last = NULL; |
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507 #endif |
83 | 508 |
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509 X_kb_init(&xmb_rt->kbinfo, xmb_rt->display, xmb_rt->rdman); |
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510 |
78 | 511 return OK; |
512 } | |
513 | |
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514 static void X_MB_destroy(X_MB_runtime_t *xmb_rt) { |
78 | 515 if(xmb_rt->rdman) { |
516 redraw_man_destroy(xmb_rt->rdman); | |
517 free(xmb_rt->rdman); | |
518 } | |
519 | |
520 if(xmb_rt->tman) | |
521 mb_tman_free(xmb_rt->tman); | |
522 | |
259
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523 if(xmb_rt->img_ldr) |
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524 MB_IMG_LDR_FREE(xmb_rt->img_ldr); |
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525 |
78 | 526 if(xmb_rt->cr) |
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527 mbe_destroy(xmb_rt->cr); |
78 | 528 if(xmb_rt->backend_cr) |
448
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529 mbe_destroy(xmb_rt->backend_cr); |
78 | 530 |
531 if(xmb_rt->surface) | |
448
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532 mbe_surface_destroy(xmb_rt->surface); |
471
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533 if(xmb_rt->surface_ptn) |
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534 mbe_pattern_destroy(xmb_rt->surface_ptn); |
78 | 535 if(xmb_rt->backend_surface) |
448
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Replace Cairo with a abstract layer mb_graph_engine.
Thinker K.F. Li <thinker@branda.to>
parents:
350
diff
changeset
|
536 mbe_surface_destroy(xmb_rt->backend_surface); |
78 | 537 |
538 if(xmb_rt->display) | |
539 XCloseDisplay(xmb_rt->display); | |
122
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Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
540 |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
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diff
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|
541 X_kb_destroy(&xmb_rt->kbinfo); |
78 | 542 } |
543 | |
462
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
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|
544 void *X_MB_new(const char *display_name, int w, int h) { |
122
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Encapsulate X_MB_runtime_t and support X keyboard events.
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parents:
120
diff
changeset
|
545 X_MB_runtime_t *rt; |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
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parents:
120
diff
changeset
|
546 int r; |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
547 |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
548 rt = O_ALLOC(X_MB_runtime_t); |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
549 if(rt == NULL) |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
550 return NULL; |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
551 |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
552 r = X_MB_init(display_name, w, h, rt); |
528
d687d3395264
Clear variables and draw root coord.
Thinker K.F. Li <thinker@branda.to>
parents:
471
diff
changeset
|
553 if(r != OK) { |
d687d3395264
Clear variables and draw root coord.
Thinker K.F. Li <thinker@branda.to>
parents:
471
diff
changeset
|
554 free(rt); |
122
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Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
555 return NULL; |
528
d687d3395264
Clear variables and draw root coord.
Thinker K.F. Li <thinker@branda.to>
parents:
471
diff
changeset
|
556 } |
122
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Encapsulate X_MB_runtime_t and support X keyboard events.
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parents:
120
diff
changeset
|
557 |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
558 return rt; |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
559 } |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
560 |
462
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
561 void X_MB_free(void *rt) { |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
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|
562 X_MB_destroy((X_MB_runtime_t *) rt); |
122
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Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
563 free(rt); |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
564 } |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
565 |
462
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
566 subject_t *X_MB_kbevents(void *rt) { |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
567 X_MB_runtime_t *xmb_rt = (X_MB_runtime_t *) rt; |
122
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Encapsulate X_MB_runtime_t and support X keyboard events.
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parents:
120
diff
changeset
|
568 return xmb_rt->kbinfo.kbevents; |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
569 } |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
570 |
462
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
571 redraw_man_t *X_MB_rdman(void *rt) { |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
572 X_MB_runtime_t *xmb_rt = (X_MB_runtime_t *) rt; |
122
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
573 return xmb_rt->rdman; |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
574 } |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
575 |
462
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
576 mb_tman_t *X_MB_tman(void *rt) { |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
577 X_MB_runtime_t *xmb_rt = (X_MB_runtime_t *) rt; |
122
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
578 return xmb_rt->tman; |
17e97e92b76e
Encapsulate X_MB_runtime_t and support X keyboard events.
Thinker K.F. Li <thinker@branda.to>
parents:
120
diff
changeset
|
579 } |
131
6a8588df68af
Tank can change direction and navigate on the mud area
Thinker K.F. Li <thinker@branda.to>
parents:
122
diff
changeset
|
580 |
462
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
581 ob_factory_t *X_MB_ob_factory(void *rt) { |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
582 X_MB_runtime_t *xmb_rt = (X_MB_runtime_t *) rt; |
131
6a8588df68af
Tank can change direction and navigate on the mud area
Thinker K.F. Li <thinker@branda.to>
parents:
122
diff
changeset
|
583 ob_factory_t *factory; |
6a8588df68af
Tank can change direction and navigate on the mud area
Thinker K.F. Li <thinker@branda.to>
parents:
122
diff
changeset
|
584 |
6a8588df68af
Tank can change direction and navigate on the mud area
Thinker K.F. Li <thinker@branda.to>
parents:
122
diff
changeset
|
585 factory = rdman_get_ob_factory(xmb_rt->rdman); |
6a8588df68af
Tank can change direction and navigate on the mud area
Thinker K.F. Li <thinker@branda.to>
parents:
122
diff
changeset
|
586 return factory; |
6a8588df68af
Tank can change direction and navigate on the mud area
Thinker K.F. Li <thinker@branda.to>
parents:
122
diff
changeset
|
587 } |
259
e8a784a306d0
Initialize an image loader for X runtime
Thinker K.F. Li <thinker@branda.to>
parents:
249
diff
changeset
|
588 |
462
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
589 mb_img_ldr_t *X_MB_img_ldr(void *rt) { |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
590 X_MB_runtime_t *xmb_rt = (X_MB_runtime_t *) rt; |
259
e8a784a306d0
Initialize an image loader for X runtime
Thinker K.F. Li <thinker@branda.to>
parents:
249
diff
changeset
|
591 X_MB_runtime_t *img_ldr; |
e8a784a306d0
Initialize an image loader for X runtime
Thinker K.F. Li <thinker@branda.to>
parents:
249
diff
changeset
|
592 |
e8a784a306d0
Initialize an image loader for X runtime
Thinker K.F. Li <thinker@branda.to>
parents:
249
diff
changeset
|
593 img_ldr = xmb_rt->img_ldr; |
e8a784a306d0
Initialize an image loader for X runtime
Thinker K.F. Li <thinker@branda.to>
parents:
249
diff
changeset
|
594 |
e8a784a306d0
Initialize an image loader for X runtime
Thinker K.F. Li <thinker@branda.to>
parents:
249
diff
changeset
|
595 return img_ldr; |
e8a784a306d0
Initialize an image loader for X runtime
Thinker K.F. Li <thinker@branda.to>
parents:
249
diff
changeset
|
596 } |
462
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
597 |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
598 void X_add_event(void *rt, int type, int fd, mb_eventcb_t f,void *arg) |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
599 { |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
600 X_MB_runtime_t *xmb_rt = (X_MB_runtime_t *) rt; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
601 int i; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
602 |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
603 for(i=0;i<xmb_rt->n_monitor;i++) { |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
604 if (xmb_rt->monitors[i].type == type && xmb_rt->monitors[i].fd == fd) { |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
605 xmb_rt->monitors[i].f = f; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
606 xmb_rt->monitors[i].arg = arg; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
607 return; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
608 } |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
609 } |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
610 for(i=0;i<xmb_rt->n_monitor;i++) { |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
611 if (xmb_rt->monitors[i].type == 0) { |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
612 xmb_rt->monitors[i].type = type; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
613 xmb_rt->monitors[i].fd = fd; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
614 xmb_rt->monitors[i].f = f; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
615 xmb_rt->monitors[i].arg = arg; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
616 return; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
617 } |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
618 } |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
619 if (i == MAX_MONITORS) return; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
620 xmb_rt->monitors[i].type = type; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
621 xmb_rt->monitors[i].fd = fd; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
622 xmb_rt->monitors[i].f = f; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
623 xmb_rt->monitors[i].arg = arg; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
624 i++; |
af4b506ad56f
Add backend layer to seperate the backend with the MBAF. Currently, X is the only backend. If we have more than one backend, we need to modify the Makefile to sleect the backend or implement a backend selection mechanism in the runtime.
wycc@122-116-38-188.HINET-IP.hinet.net
parents:
451
diff
changeset
|
625 xmb_rt->n_monitor=i; |
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626 } |
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627 |
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628 void X_remove_event(void *rt, int type, int fd) |
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629 { |
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630 X_MB_runtime_t *xmb_rt = (X_MB_runtime_t *) rt; |
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631 int i; |
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632 for(i=0;i<xmb_rt->n_monitor;i++) { |
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633 if (xmb_rt->monitors[i].type == type && xmb_rt->monitors[i].fd == fd) { |
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634 xmb_rt->monitors[i].type = 0; |
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635 return; |
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636 } |
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637 } |
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638 } |
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639 mb_backend_t backend = { X_MB_new, |
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640 X_MB_free, |
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641 X_add_event, |
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642 X_remove_event, |
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643 X_MB_handle_connection, |
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644 X_MB_kbevents, |
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645 X_MB_rdman, |
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646 X_MB_tman, |
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647 X_MB_ob_factory, |
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648 X_MB_img_ldr |
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649 }; |
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650 |