compositor: Silence a couple of valgrind warnings
[profile/ivi/weston.git] / compositor / compositor.c
1 /*
2  * Copyright © 2010-2011 Intel Corporation
3  * Copyright © 2008-2011 Kristian Høgsberg
4  *
5  * Permission to use, copy, modify, distribute, and sell this software and
6  * its documentation for any purpose is hereby granted without fee, provided
7  * that the above copyright notice appear in all copies and that both that
8  * copyright notice and this permission notice appear in supporting
9  * documentation, and that the name of the copyright holders not be used in
10  * advertising or publicity pertaining to distribution of the software
11  * without specific, written prior permission.  The copyright holders make
12  * no representations about the suitability of this software for any
13  * purpose.  It is provided "as is" without express or implied warranty.
14  *
15  * THE COPYRIGHT HOLDERS DISCLAIM ALL WARRANTIES WITH REGARD TO THIS
16  * SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND
17  * FITNESS, IN NO EVENT SHALL THE COPYRIGHT HOLDERS BE LIABLE FOR ANY
18  * SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER
19  * RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF
20  * CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
21  * CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
22  */
23
24 #define _GNU_SOURCE
25
26 #include "config.h"
27
28 #include <stdio.h>
29 #include <string.h>
30 #include <stdlib.h>
31 #include <stdint.h>
32 #include <limits.h>
33 #include <stdarg.h>
34 #include <assert.h>
35 #include <sys/ioctl.h>
36 #include <sys/wait.h>
37 #include <fcntl.h>
38 #include <unistd.h>
39 #include <math.h>
40 #include <linux/input.h>
41 #include <dlfcn.h>
42 #include <getopt.h>
43 #include <signal.h>
44
45 #include "wayland-server.h"
46 #include "compositor.h"
47
48 /* The plan here is to generate a random anonymous socket name and
49  * advertise that through a service on the session dbus.
50  */
51 static const char *option_socket_name = NULL;
52 static int option_idle_time = 300;
53
54 static struct wl_list child_process_list;
55
56 static int
57 sigchld_handler(int signal_number, void *data)
58 {
59         struct wlsc_process *p;
60         int status;
61         pid_t pid;
62
63         pid = wait(&status);
64         wl_list_for_each(p, &child_process_list, link) {
65                 if (p->pid == pid)
66                         break;
67         }
68
69         if (&p->link == &child_process_list) {
70                 fprintf(stderr, "unknown child process exited\n");
71                 return 1;
72         }
73
74         wl_list_remove(&p->link);
75         p->cleanup(p, status);
76
77         return 1;
78 }
79
80 WL_EXPORT void
81 wlsc_watch_process(struct wlsc_process *process)
82 {
83         wl_list_insert(&child_process_list, &process->link);
84 }
85
86 WL_EXPORT void
87 wlsc_matrix_init(struct wlsc_matrix *matrix)
88 {
89         static const struct wlsc_matrix identity = {
90                 { 1, 0, 0, 0,  0, 1, 0, 0,  0, 0, 1, 0,  0, 0, 0, 1 }
91         };
92
93         memcpy(matrix, &identity, sizeof identity);
94 }
95
96 static void
97 wlsc_matrix_multiply(struct wlsc_matrix *m, const struct wlsc_matrix *n)
98 {
99         struct wlsc_matrix tmp;
100         const GLfloat *row, *column;
101         div_t d;
102         int i, j;
103
104         for (i = 0; i < 16; i++) {
105                 tmp.d[i] = 0;
106                 d = div(i, 4);
107                 row = m->d + d.quot * 4;
108                 column = n->d + d.rem;
109                 for (j = 0; j < 4; j++)
110                         tmp.d[i] += row[j] * column[j * 4];
111         }
112         memcpy(m, &tmp, sizeof tmp);
113 }
114
115 WL_EXPORT void
116 wlsc_matrix_translate(struct wlsc_matrix *matrix, GLfloat x, GLfloat y, GLfloat z)
117 {
118         struct wlsc_matrix translate = {
119                 { 1, 0, 0, 0,  0, 1, 0, 0,  0, 0, 1, 0,  x, y, z, 1 }
120         };
121
122         wlsc_matrix_multiply(matrix, &translate);
123 }
124
125 WL_EXPORT void
126 wlsc_matrix_scale(struct wlsc_matrix *matrix, GLfloat x, GLfloat y, GLfloat z)
127 {
128         struct wlsc_matrix scale = {
129                 { x, 0, 0, 0,  0, y, 0, 0,  0, 0, z, 0,  0, 0, 0, 1 }
130         };
131
132         wlsc_matrix_multiply(matrix, &scale);
133 }
134
135 static void
136 wlsc_matrix_transform(struct wlsc_matrix *matrix, struct wlsc_vector *v)
137 {
138         int i, j;
139         struct wlsc_vector t;
140
141         for (i = 0; i < 4; i++) {
142                 t.f[i] = 0;
143                 for (j = 0; j < 4; j++)
144                         t.f[i] += v->f[j] * matrix->d[i + j * 4];
145         }
146
147         *v = t;
148 }
149
150 WL_EXPORT void
151 wlsc_spring_init(struct wlsc_spring *spring,
152                  double k, double current, double target)
153 {
154         spring->k = k;
155         spring->friction = 100.0;
156         spring->current = current;
157         spring->previous = current;
158         spring->target = target;
159 }
160
161 WL_EXPORT void
162 wlsc_spring_update(struct wlsc_spring *spring, uint32_t msec)
163 {
164         double force, v, current, step;
165
166         step = (msec - spring->timestamp) / 300.0;
167         spring->timestamp = msec;
168
169         current = spring->current;
170         v = current - spring->previous;
171         force = spring->k * (spring->target - current) / 10.0 +
172                 (spring->previous - current) - v * spring->friction;
173
174         spring->current =
175                 current + (current - spring->previous) + force * step * step;
176         spring->previous = current;
177
178 #if 0
179         if (spring->current >= 1.0) {
180 #ifdef TWEENER_BOUNCE
181                 spring->current = 2.0 - spring->current;
182                 spring->previous = 2.0 - spring->previous;
183 #else
184                 spring->current = 1.0;
185                 spring->previous = 1.0;
186 #endif
187         }
188
189         if (spring->current <= 0.0) {
190                 spring->current = 0.0;
191                 spring->previous = 0.0;
192         }
193 #endif
194 }
195
196 WL_EXPORT int
197 wlsc_spring_done(struct wlsc_spring *spring)
198 {
199         return fabs(spring->previous - spring->target) < 0.0002 &&
200                 fabs(spring->current - spring->target) < 0.0002;
201 }
202
203 static void
204 surface_handle_buffer_destroy(struct wl_listener *listener,
205                               struct wl_resource *resource, uint32_t time)
206 {
207         struct wlsc_surface *es = container_of(listener, struct wlsc_surface,
208                                                buffer_destroy_listener);
209         struct wl_buffer *buffer = (struct wl_buffer *) resource;
210
211         wl_list_init(&es->buffer_destroy_listener.link);
212         if (es->buffer == buffer)
213                 es->buffer = NULL;
214 }
215
216 static void
217 output_handle_scanout_buffer_destroy(struct wl_listener *listener,
218                                      struct wl_resource *resource,
219                                      uint32_t time)
220 {
221         struct wlsc_output *output =
222                 container_of(listener, struct wlsc_output,
223                              scanout_buffer_destroy_listener);
224         struct wl_buffer *buffer = (struct wl_buffer *) resource;
225
226         if (output->scanout_buffer == buffer)
227                 output->scanout_buffer = NULL;
228 }
229
230 WL_EXPORT struct wlsc_surface *
231 wlsc_surface_create(struct wlsc_compositor *compositor,
232                     int32_t x, int32_t y, int32_t width, int32_t height)
233 {
234         struct wlsc_surface *surface;
235
236         surface = malloc(sizeof *surface);
237         if (surface == NULL)
238                 return NULL;
239
240         wl_list_init(&surface->link);
241         wl_list_init(&surface->buffer_link);
242         surface->map_type = WLSC_SURFACE_MAP_UNMAPPED;
243
244         glGenTextures(1, &surface->texture);
245         glBindTexture(GL_TEXTURE_2D, surface->texture);
246         glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, GL_CLAMP_TO_EDGE);
247         glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, GL_CLAMP_TO_EDGE);
248
249         surface->surface.resource.client = NULL;
250
251         surface->compositor = compositor;
252         surface->visual = WLSC_NONE_VISUAL;
253         surface->image = EGL_NO_IMAGE_KHR;
254         surface->saved_texture = 0;
255         surface->x = x;
256         surface->y = y;
257         surface->width = width;
258         surface->height = height;
259
260         surface->fullscreen_output = NULL;
261         surface->buffer = NULL;
262         surface->output = NULL;
263
264         pixman_region32_init(&surface->damage);
265         pixman_region32_init(&surface->opaque);
266
267         surface->buffer_destroy_listener.func = surface_handle_buffer_destroy;
268         wl_list_init(&surface->buffer_destroy_listener.link);
269
270         surface->transform = NULL;
271
272         return surface;
273 }
274
275 WL_EXPORT void
276 wlsc_surface_damage_rectangle(struct wlsc_surface *surface,
277                               int32_t x, int32_t y,
278                               int32_t width, int32_t height)
279 {
280         struct wlsc_compositor *compositor = surface->compositor;
281
282         pixman_region32_union_rect(&surface->damage,
283                                    &surface->damage,
284                                    surface->x + x, surface->y + y,
285                                    width, height);
286         wlsc_compositor_schedule_repaint(compositor);
287 }
288
289 WL_EXPORT void
290 wlsc_surface_damage(struct wlsc_surface *surface)
291 {
292         wlsc_surface_damage_rectangle(surface, 0, 0,
293                                       surface->width, surface->height);
294 }
295
296 WL_EXPORT void
297 wlsc_surface_damage_below(struct wlsc_surface *surface)
298 {
299         struct wlsc_surface *below;
300
301         if (surface->link.next == &surface->compositor->surface_list)
302                 return;
303
304         below = container_of(surface->link.next, struct wlsc_surface, link);
305
306         pixman_region32_union_rect(&below->damage,
307                                    &below->damage,
308                                    surface->x, surface->y,
309                                    surface->width, surface->height);
310         wlsc_compositor_schedule_repaint(surface->compositor);
311 }
312
313 WL_EXPORT void
314 wlsc_surface_configure(struct wlsc_surface *surface,
315                        int x, int y, int width, int height)
316 {
317         wlsc_surface_damage_below(surface);
318
319         surface->x = x;
320         surface->y = y;
321         surface->width = width;
322         surface->height = height;
323
324         wlsc_surface_assign_output(surface);
325         wlsc_surface_damage(surface);
326
327         pixman_region32_fini(&surface->opaque);
328         if (surface->visual == WLSC_RGB_VISUAL)
329                 pixman_region32_init_rect(&surface->opaque,
330                                           surface->x, surface->y,
331                                           surface->width, surface->height);
332         else
333                 pixman_region32_init(&surface->opaque);
334 }
335
336 WL_EXPORT uint32_t
337 wlsc_compositor_get_time(void)
338 {
339         struct timeval tv;
340
341         gettimeofday(&tv, NULL);
342
343         return tv.tv_sec * 1000 + tv.tv_usec / 1000;
344 }
345
346 static void
347 wlsc_compositor_repick(struct wlsc_compositor *compositor)
348 {
349         struct wlsc_input_device *device;
350         struct wlsc_surface *surface;
351         int32_t sx, sy;
352         uint32_t time;
353
354         time = wlsc_compositor_get_time();
355         wl_list_for_each(device, &compositor->input_device_list, link) {
356                 if (device->input_device.grab)
357                         continue;
358                 surface = pick_surface(&device->input_device, &sx, &sy);
359                 wl_input_device_set_pointer_focus(&device->input_device,
360                                                   &surface->surface,
361                                                   time,
362                                                   device->input_device.x,
363                                                   device->input_device.y,
364                                                   sx, sy);
365         }
366 }
367
368 static void
369 destroy_surface(struct wl_resource *resource)
370 {
371         struct wlsc_surface *surface =
372                 container_of(resource, struct wlsc_surface, surface.resource);
373         struct wlsc_compositor *compositor = surface->compositor;
374
375         wlsc_surface_damage_below(surface);
376
377         wl_list_remove(&surface->link);
378         wlsc_compositor_repick(compositor);
379
380         if (surface->saved_texture == 0)
381                 glDeleteTextures(1, &surface->texture);
382         else
383                 glDeleteTextures(1, &surface->saved_texture);
384
385         if (surface->buffer)
386                 wl_list_remove(&surface->buffer_destroy_listener.link);
387
388         if (surface->image != EGL_NO_IMAGE_KHR)
389                 compositor->destroy_image(compositor->display,
390                                           surface->image);
391
392         wl_list_remove(&surface->buffer_link);
393
394         free(surface);
395 }
396
397 static void
398 wlsc_buffer_attach(struct wl_buffer *buffer, struct wl_surface *surface)
399 {
400         struct wlsc_surface *es = (struct wlsc_surface *) surface;
401         struct wlsc_compositor *ec = es->compositor;
402         struct wl_list *surfaces_attached_to;
403
404         if (es->saved_texture != 0)
405                 es->texture = es->saved_texture;
406
407         glBindTexture(GL_TEXTURE_2D, es->texture);
408
409         if (wl_buffer_is_shm(buffer)) {
410                 /* Unbind any EGLImage texture that may be bound, so we don't
411                  * overwrite it.*/
412                 glTexImage2D(GL_TEXTURE_2D, 0, GL_BGRA_EXT,
413                              0, 0, 0, GL_BGRA_EXT, GL_UNSIGNED_BYTE, NULL);
414                 es->pitch = wl_shm_buffer_get_stride(buffer) / 4;
415                 glTexImage2D(GL_TEXTURE_2D, 0, GL_BGRA_EXT,
416                              es->pitch, buffer->height, 0,
417                              GL_BGRA_EXT, GL_UNSIGNED_BYTE,
418                              wl_shm_buffer_get_data(buffer));
419
420                 switch (wl_shm_buffer_get_format(buffer)) {
421                 case WL_SHM_FORMAT_ARGB32:
422                         es->visual = WLSC_ARGB_VISUAL;
423                         break;
424                 case WL_SHM_FORMAT_PREMULTIPLIED_ARGB32:
425                         es->visual = WLSC_PREMUL_ARGB_VISUAL;
426                         break;
427                 case WL_SHM_FORMAT_XRGB32:
428                         es->visual = WLSC_RGB_VISUAL;
429                         break;
430                 }
431
432                 surfaces_attached_to = buffer->user_data;
433
434                 wl_list_remove(&es->buffer_link);
435                 wl_list_insert(surfaces_attached_to, &es->buffer_link);
436         } else {
437                 if (es->image != EGL_NO_IMAGE_KHR)
438                         ec->destroy_image(ec->display, es->image);
439                 es->image = ec->create_image(ec->display, NULL,
440                                              EGL_WAYLAND_BUFFER_WL,
441                                              buffer, NULL);
442                 
443                 ec->image_target_texture_2d(GL_TEXTURE_2D, es->image);
444
445                 /* FIXME: we need to get the visual from the wl_buffer */
446                 es->visual = WLSC_PREMUL_ARGB_VISUAL;
447                 es->pitch = es->width;
448         }
449 }
450
451 static void
452 wlsc_sprite_attach(struct wlsc_sprite *sprite, struct wl_surface *surface)
453 {
454         struct wlsc_surface *es = (struct wlsc_surface *) surface;
455         struct wlsc_compositor *ec = es->compositor;
456
457         es->pitch = es->width;
458         es->image = sprite->image;
459         if (sprite->image != EGL_NO_IMAGE_KHR) {
460                 glBindTexture(GL_TEXTURE_2D, es->texture);
461                 ec->image_target_texture_2d(GL_TEXTURE_2D, es->image);
462         } else {
463                 if (es->saved_texture == 0)
464                         es->saved_texture = es->texture;
465                 es->texture = sprite->texture;
466         }
467
468         es->visual = sprite->visual;
469
470         if (es->buffer)
471                 es->buffer = NULL;
472 }
473
474 enum sprite_usage {
475         SPRITE_USE_CURSOR = (1 << 0),
476 };
477
478 static struct wlsc_sprite *
479 create_sprite_from_png(struct wlsc_compositor *ec,
480                        const char *filename, uint32_t usage)
481 {
482         uint32_t *pixels;
483         struct wlsc_sprite *sprite;
484         int32_t width, height;
485         uint32_t stride;
486
487         pixels = wlsc_load_image(filename, &width, &height, &stride);
488         if (pixels == NULL)
489                 return NULL;
490
491         sprite = malloc(sizeof *sprite);
492         if (sprite == NULL) {
493                 free(pixels);
494                 return NULL;
495         }
496
497         sprite->visual = WLSC_PREMUL_ARGB_VISUAL;
498         sprite->width = width;
499         sprite->height = height;
500         sprite->image = EGL_NO_IMAGE_KHR;
501
502         if (usage & SPRITE_USE_CURSOR && ec->create_cursor_image != NULL)
503                 sprite->image = ec->create_cursor_image(ec, width, height);
504
505         glGenTextures(1, &sprite->texture);
506         glBindTexture(GL_TEXTURE_2D, sprite->texture);
507         glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, GL_CLAMP_TO_EDGE);
508         glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, GL_CLAMP_TO_EDGE);
509         glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
510         glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_LINEAR);
511
512         if (sprite->image != EGL_NO_IMAGE_KHR) {
513                 ec->image_target_texture_2d(GL_TEXTURE_2D, sprite->image);
514                 glTexSubImage2D(GL_TEXTURE_2D, 0, 0, 0, width, height,
515                                 GL_BGRA_EXT, GL_UNSIGNED_BYTE, pixels);
516         } else {
517                 glTexImage2D(GL_TEXTURE_2D, 0, GL_BGRA_EXT, width, height, 0,
518                              GL_BGRA_EXT, GL_UNSIGNED_BYTE, pixels);
519         }
520
521         free(pixels);
522
523         return sprite;
524 }
525
526 static const struct {
527         const char *filename;
528         int hotspot_x, hotspot_y;
529 } pointer_images[] = {
530         { DATADIR "/wayland/bottom_left_corner.png",     6, 30 },
531         { DATADIR "/wayland/bottom_right_corner.png",   28, 28 },
532         { DATADIR "/wayland/bottom_side.png",           16, 20 },
533         { DATADIR "/wayland/grabbing.png",              20, 17 },
534         { DATADIR "/wayland/left_ptr.png",              10,  5 },
535         { DATADIR "/wayland/left_side.png",             10, 20 },
536         { DATADIR "/wayland/right_side.png",            30, 19 },
537         { DATADIR "/wayland/top_left_corner.png",        8,  8 },
538         { DATADIR "/wayland/top_right_corner.png",      26,  8 },
539         { DATADIR "/wayland/top_side.png",              18,  8 },
540         { DATADIR "/wayland/xterm.png",                 15, 15 }
541 };
542
543 static void
544 create_pointer_images(struct wlsc_compositor *ec)
545 {
546         int i, count;
547
548         count = ARRAY_LENGTH(pointer_images);
549         ec->pointer_sprites = malloc(count * sizeof *ec->pointer_sprites);
550         for (i = 0; i < count; i++) {
551                 ec->pointer_sprites[i] =
552                         create_sprite_from_png(ec,
553                                                pointer_images[i].filename,
554                                                SPRITE_USE_CURSOR);
555         }
556 }
557
558 static int
559 texture_region(struct wlsc_surface *es, pixman_region32_t *region)
560 {
561         struct wlsc_compositor *ec = es->compositor;
562         GLfloat *v, inv_width, inv_height;
563         pixman_box32_t *rectangles;
564         unsigned int *p;
565         int i, n;
566
567         rectangles = pixman_region32_rectangles(region, &n);
568         v = wl_array_add(&ec->vertices, n * 16 * sizeof *v);
569         p = wl_array_add(&ec->indices, n * 6 * sizeof *p);
570         inv_width = 1.0 / es->pitch;
571         inv_height = 1.0 / es->height;
572
573         for (i = 0; i < n; i++, v += 16, p += 6) {
574                 v[ 0] = rectangles[i].x1;
575                 v[ 1] = rectangles[i].y1;
576                 v[ 2] = (GLfloat) (rectangles[i].x1 - es->x) * inv_width;
577                 v[ 3] = (GLfloat) (rectangles[i].y1 - es->y) * inv_height;
578
579                 v[ 4] = rectangles[i].x1;
580                 v[ 5] = rectangles[i].y2;
581                 v[ 6] = v[ 2];
582                 v[ 7] = (GLfloat) (rectangles[i].y2 - es->y) * inv_height;
583
584                 v[ 8] = rectangles[i].x2;
585                 v[ 9] = rectangles[i].y1;
586                 v[10] = (GLfloat) (rectangles[i].x2 - es->x) * inv_width;
587                 v[11] = v[ 3];
588
589                 v[12] = rectangles[i].x2;
590                 v[13] = rectangles[i].y2;
591                 v[14] = v[10];
592                 v[15] = v[ 7];
593
594                 p[0] = i * 4 + 0;
595                 p[1] = i * 4 + 1;
596                 p[2] = i * 4 + 2;
597                 p[3] = i * 4 + 2;
598                 p[4] = i * 4 + 1;
599                 p[5] = i * 4 + 3;
600         }
601
602         return n;
603 }
604
605 static void
606 transform_vertex(struct wlsc_surface *surface,
607                  GLfloat x, GLfloat y, GLfloat u, GLfloat v, GLfloat *r)
608 {
609         struct wlsc_vector t;
610
611         t.f[0] = x;
612         t.f[1] = y;
613         t.f[2] = 0.0;
614         t.f[3] = 1.0;
615
616         wlsc_matrix_transform(&surface->transform->matrix, &t);
617
618         r[ 0] = t.f[0];
619         r[ 1] = t.f[1];
620         r[ 2] = u;
621         r[ 3] = v;
622 }
623
624 static int
625 texture_transformed_surface(struct wlsc_surface *es)
626 {
627         struct wlsc_compositor *ec = es->compositor;
628         GLfloat *v;
629         unsigned int *p;
630
631         v = wl_array_add(&ec->vertices, 16 * sizeof *v);
632         p = wl_array_add(&ec->indices, 6 * sizeof *p);
633
634         transform_vertex(es, es->x, es->y, 0.0, 0.0, &v[0]);
635         transform_vertex(es, es->x, es->y + es->height, 0.0, 1.0, &v[4]);
636         transform_vertex(es, es->x + es->width, es->y, 1.0, 0.0, &v[8]);
637         transform_vertex(es, es->x + es->width, es->y + es->height,
638                          1.0, 1.0, &v[12]);
639
640         p[0] = 0;
641         p[1] = 1;
642         p[2] = 2;
643         p[3] = 2;
644         p[4] = 1;
645         p[5] = 3;
646
647         return 1;
648 }
649
650 static void
651 wlsc_surface_draw(struct wlsc_surface *es,
652                   struct wlsc_output *output, pixman_region32_t *clip)
653 {
654         struct wlsc_compositor *ec = es->compositor;
655         GLfloat *v;
656         pixman_region32_t repaint;
657         GLint filter;
658         int n;
659
660         pixman_region32_init_rect(&repaint,
661                                   es->x, es->y, es->width, es->height);
662         pixman_region32_intersect(&repaint, &repaint, clip);
663         if (!pixman_region32_not_empty(&repaint))
664                 return;
665
666         switch (es->visual) {
667         case WLSC_ARGB_VISUAL:
668                 glBlendFunc(GL_SRC_ALPHA, GL_ONE_MINUS_SRC_ALPHA);
669                 glEnable(GL_BLEND);
670                 break;
671         case WLSC_PREMUL_ARGB_VISUAL:
672                 glBlendFunc(GL_ONE, GL_ONE_MINUS_SRC_ALPHA);
673                 glEnable(GL_BLEND);
674                 break;
675         case WLSC_RGB_VISUAL:
676                 glDisable(GL_BLEND);
677                 break;
678         default:
679                 fprintf(stderr, "bogus visual\n");
680                 break;
681         }
682
683         if (es->transform == NULL) {
684                 filter = GL_NEAREST;
685                 n = texture_region(es, &repaint);
686         } else {
687                 filter = GL_LINEAR;
688                 n = texture_transformed_surface(es);
689         }
690
691         glBindTexture(GL_TEXTURE_2D, es->texture);
692         glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, filter);
693         glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, filter);
694
695         v = ec->vertices.data;
696         glVertexAttribPointer(0, 2, GL_FLOAT, GL_FALSE, 4 * sizeof *v, &v[0]);
697         glVertexAttribPointer(1, 2, GL_FLOAT, GL_FALSE, 4 * sizeof *v, &v[2]);
698         glEnableVertexAttribArray(0);
699         glEnableVertexAttribArray(1);
700         glDrawElements(GL_TRIANGLES, n * 6, GL_UNSIGNED_INT, ec->indices.data);
701
702         ec->vertices.size = 0;
703         ec->indices.size = 0;
704         pixman_region32_fini(&repaint);
705 }
706
707 static void
708 wlsc_surface_raise(struct wlsc_surface *surface)
709 {
710         struct wlsc_compositor *compositor = surface->compositor;
711
712         wl_list_remove(&surface->link);
713         wl_list_insert(&compositor->surface_list, &surface->link);
714         wlsc_compositor_repick(compositor);
715         wlsc_surface_damage(surface);
716 }
717
718 WL_EXPORT void
719 wlsc_compositor_damage_all(struct wlsc_compositor *compositor)
720 {
721         struct wlsc_output *output;
722
723         wl_list_for_each(output, &compositor->output_list, link)
724                 wlsc_output_damage(output);
725 }
726
727 static inline void
728 wlsc_buffer_post_release(struct wl_buffer *buffer)
729 {
730         if (buffer == NULL || --buffer->busy_count > 0)
731                 return;
732
733         assert(buffer->resource.client != NULL);
734         wl_resource_post_event(&buffer->resource, WL_BUFFER_RELEASE);
735 }
736
737 WL_EXPORT void
738 wlsc_output_damage(struct wlsc_output *output)
739 {
740         struct wlsc_compositor *compositor = output->compositor;
741
742         pixman_region32_union(&compositor->damage,
743                               &compositor->damage, &output->region);
744         wlsc_compositor_schedule_repaint(compositor);
745 }
746
747 static void
748 fade_frame(struct wlsc_animation *animation,
749            struct wlsc_output *output, uint32_t msecs)
750 {
751         struct wlsc_compositor *compositor =
752                 container_of(animation,
753                              struct wlsc_compositor, fade.animation);
754
755         wlsc_spring_update(&compositor->fade.spring, msecs);
756         if (wlsc_spring_done(&compositor->fade.spring)) {
757                 if (compositor->fade.spring.current > 0.999) {
758                         compositor->state = WLSC_COMPOSITOR_SLEEPING;
759                         compositor->shell->lock(compositor->shell);
760                 }
761                 compositor->fade.spring.current =
762                         compositor->fade.spring.target;
763                 wl_list_remove(&animation->link);
764                 wl_list_init(&animation->link);
765         }
766
767         wlsc_output_damage(output);
768 }
769
770 static void
771 fade_output(struct wlsc_output *output,
772             GLfloat tint, pixman_region32_t *region)
773 {
774         struct wlsc_compositor *compositor = output->compositor;
775         struct wlsc_surface surface;
776         GLfloat color[4] = { 0.0, 0.0, 0.0, tint };
777
778         surface.compositor = compositor;
779         surface.x = output->x;
780         surface.y = output->y;
781         surface.pitch = output->current->width;
782         surface.width = output->current->width;
783         surface.height = output->current->height;
784         surface.texture = GL_NONE;
785         surface.transform = NULL;
786
787         if (tint <= 1.0)
788                 surface.visual = WLSC_PREMUL_ARGB_VISUAL;
789         else
790                 surface.visual = WLSC_RGB_VISUAL;
791
792         glUseProgram(compositor->solid_shader.program);
793         glUniformMatrix4fv(compositor->solid_shader.proj_uniform,
794                            1, GL_FALSE, output->matrix.d);
795         glUniform4fv(compositor->solid_shader.color_uniform, 1, color);
796         wlsc_surface_draw(&surface, output, region);
797 }
798
799 static void
800 wlsc_output_set_cursor(struct wlsc_output *output,
801                        struct wl_input_device *dev, int force_sw)
802 {
803         struct wlsc_compositor *ec = output->compositor;
804         struct wlsc_input_device *device = (struct wlsc_input_device *) dev;
805         pixman_region32_t cursor_region;
806         int use_hardware_cursor = 1, prior_was_hardware;
807
808         pixman_region32_init_rect(&cursor_region,
809                                   device->sprite->x, device->sprite->y,
810                                   device->sprite->width,
811                                   device->sprite->height);
812
813         pixman_region32_intersect(&cursor_region, &cursor_region, &output->region);
814
815         if (!pixman_region32_not_empty(&cursor_region)) {
816                 output->set_hardware_cursor(output, NULL);
817                 goto out;
818         }
819
820         prior_was_hardware = wl_list_empty(&device->sprite->link);
821         if (force_sw || output->set_hardware_cursor(output, device) < 0) {
822                 if (prior_was_hardware) {
823                         wlsc_surface_damage(device->sprite);
824                         output->set_hardware_cursor(output, NULL);
825                 }
826                 use_hardware_cursor = 0;
827         } else if (!prior_was_hardware) {
828                 wlsc_surface_damage_below(device->sprite);
829         }
830
831         /* Remove always to be on top. */
832         wl_list_remove(&device->sprite->link);
833         if (!use_hardware_cursor && ec->focus)
834                 wl_list_insert(&ec->surface_list, &device->sprite->link);
835         else
836                 wl_list_init(&device->sprite->link);
837
838 out:
839         pixman_region32_fini(&cursor_region);
840 }
841
842 static void
843 wlsc_output_repaint(struct wlsc_output *output)
844 {
845         struct wlsc_compositor *ec = output->compositor;
846         struct wlsc_surface *es;
847         pixman_region32_t opaque, new_damage, total_damage, repaint;
848
849         output->prepare_render(output);
850
851         glViewport(0, 0, output->current->width, output->current->height);
852
853         glUseProgram(ec->texture_shader.program);
854         glUniformMatrix4fv(ec->texture_shader.proj_uniform,
855                            1, GL_FALSE, output->matrix.d);
856         glUniform1i(ec->texture_shader.tex_uniform, 0);
857
858         wlsc_output_set_cursor(output, ec->input_device,
859                                ec->fade.spring.current >= 0.001);
860
861         pixman_region32_init(&new_damage);
862         pixman_region32_copy(&new_damage, &ec->damage);
863         pixman_region32_init(&opaque);
864                                 
865         wl_list_for_each(es, &ec->surface_list, link) {
866                 pixman_region32_subtract(&es->damage, &es->damage, &opaque);
867                 pixman_region32_union(&new_damage, &new_damage, &es->damage);
868                 pixman_region32_union(&opaque, &opaque, &es->opaque);
869         }
870
871         pixman_region32_subtract(&ec->damage, &ec->damage, &output->region);
872
873         pixman_region32_init(&total_damage);
874         pixman_region32_union(&total_damage, &new_damage,
875                               &output->previous_damage);
876         pixman_region32_intersect(&output->previous_damage,
877                                   &new_damage, &output->region);
878
879         pixman_region32_fini(&opaque);
880         pixman_region32_fini(&new_damage);
881
882         es = container_of(ec->surface_list.next, struct wlsc_surface, link);
883
884         if (es->visual == WLSC_RGB_VISUAL &&
885             output->prepare_scanout_surface(output, es) == 0) {
886                 /* We're drawing nothing now,
887                  * draw the damaged regions later. */
888                 pixman_region32_union(&ec->damage, &ec->damage, &total_damage);
889
890                 output->scanout_buffer = es->buffer;
891                 output->scanout_buffer->busy_count++;
892
893                 wl_list_remove(&output->scanout_buffer_destroy_listener.link);
894                 wl_list_insert(output->scanout_buffer->resource.destroy_listener_list.prev,
895                                &output->scanout_buffer_destroy_listener.link);
896
897                 return;
898         }
899
900         if (es->fullscreen_output == output) {
901                 if (es->width < output->current->width ||
902                     es->height < output->current->height)
903                         glClear(GL_COLOR_BUFFER_BIT);
904                 wlsc_surface_draw(es, output, &total_damage);
905         } else {
906                 wl_list_for_each(es, &ec->surface_list, link) {
907                         pixman_region32_copy(&es->damage, &total_damage);
908                         pixman_region32_subtract(&total_damage, &total_damage, &es->opaque);
909                 }
910
911                 wl_list_for_each_reverse(es, &ec->surface_list, link) {
912                         pixman_region32_init(&repaint);
913                         pixman_region32_intersect(&repaint, &output->region,
914                                                   &es->damage);
915                         wlsc_surface_draw(es, output, &repaint);
916                         pixman_region32_subtract(&es->damage,
917                                                  &es->damage, &output->region);
918                 }
919         }
920
921         if (ec->fade.spring.current > 0.001)
922                 fade_output(output, ec->fade.spring.current, &total_damage);
923 }
924
925 struct wlsc_frame_callback {
926         struct wl_resource resource;
927         struct wl_list link;
928 };
929
930 static void
931 repaint(void *data, int msecs)
932 {
933         struct wlsc_output *output = data;
934         struct wlsc_compositor *compositor = output->compositor;
935         struct wlsc_animation *animation, *next;
936         struct wlsc_frame_callback *cb, *cnext;
937
938         wlsc_output_repaint(output);
939         output->repaint_needed = 0;
940         output->repaint_scheduled = 1;
941         output->present(output);
942
943         wl_list_for_each_safe(cb, cnext, &output->frame_callback_list, link) {
944                 wl_resource_post_event(&cb->resource, WL_CALLBACK_DONE, msecs);
945                 wl_resource_destroy(&cb->resource, 0);
946         }
947
948         wl_list_for_each_safe(animation, next,
949                               &compositor->animation_list, link)
950                 animation->frame(animation, output, msecs);
951 }
952
953 static void
954 idle_repaint(void *data)
955 {
956         repaint(data, wlsc_compositor_get_time());
957 }
958
959 WL_EXPORT void
960 wlsc_output_finish_frame(struct wlsc_output *output, int msecs)
961 {
962         wlsc_buffer_post_release(output->scanout_buffer);
963         output->scanout_buffer = NULL;
964         output->repaint_scheduled = 0;
965
966         if (output->repaint_needed)
967                 repaint(output, msecs);
968 }
969
970 WL_EXPORT void
971 wlsc_compositor_schedule_repaint(struct wlsc_compositor *compositor)
972 {
973         struct wlsc_output *output;
974         struct wl_event_loop *loop;
975
976         if (compositor->state == WLSC_COMPOSITOR_SLEEPING)
977                 return;
978
979         loop = wl_display_get_event_loop(compositor->wl_display);
980         wl_list_for_each(output, &compositor->output_list, link) {
981                 output->repaint_needed = 1;
982                 if (output->repaint_scheduled)
983                         continue;
984
985                 wl_event_loop_add_idle(loop, idle_repaint, output);
986                 output->repaint_scheduled = 1;
987         }
988 }
989
990 WL_EXPORT void
991 wlsc_compositor_fade(struct wlsc_compositor *compositor, float tint)
992 {
993         int done;
994
995         done = wlsc_spring_done(&compositor->fade.spring);
996         compositor->fade.spring.target = tint;
997         if (wlsc_spring_done(&compositor->fade.spring))
998                 return;
999
1000         if (done)
1001                 compositor->fade.spring.timestamp =
1002                         wlsc_compositor_get_time();
1003
1004         wlsc_compositor_damage_all(compositor);
1005         if (wl_list_empty(&compositor->fade.animation.link))
1006                 wl_list_insert(compositor->animation_list.prev,
1007                                &compositor->fade.animation.link);
1008 }
1009
1010 static void
1011 surface_destroy(struct wl_client *client, struct wl_resource *resource)
1012 {
1013         wl_resource_destroy(resource, wlsc_compositor_get_time());
1014 }
1015
1016 WL_EXPORT void
1017 wlsc_surface_assign_output(struct wlsc_surface *es)
1018 {
1019         struct wlsc_compositor *ec = es->compositor;
1020         struct wlsc_output *output;
1021         pixman_region32_t region;
1022         uint32_t max, area;
1023         pixman_box32_t *e;
1024
1025         max = 0;
1026         wl_list_for_each(output, &ec->output_list, link) {
1027                 pixman_region32_init_rect(&region,
1028                                           es->x, es->y, es->width, es->height);
1029                 pixman_region32_intersect(&region, &region, &output->region);
1030
1031                 e = pixman_region32_extents(&region);
1032                 area = (e->x2 - e->x1) * (e->y2 - e->y1);
1033
1034                 if (area >= max) {
1035                         es->output = output;
1036                         max = area;
1037                 }
1038         }
1039 }
1040
1041 static void
1042 surface_attach(struct wl_client *client,
1043                struct wl_resource *resource,
1044                struct wl_resource *buffer_resource, int32_t x, int32_t y)
1045 {
1046         struct wlsc_surface *es = resource->data;
1047         struct wl_buffer *buffer = buffer_resource->data;
1048         int repick = 0;
1049
1050         buffer->busy_count++;
1051         wlsc_buffer_post_release(es->buffer);
1052
1053         es->buffer = buffer;
1054         wl_list_remove(&es->buffer_destroy_listener.link);
1055         wl_list_insert(es->buffer->resource.destroy_listener_list.prev,
1056                        &es->buffer_destroy_listener.link);
1057
1058         if (es->visual == WLSC_NONE_VISUAL) {
1059                 wl_list_insert(&es->compositor->surface_list, &es->link);
1060                 repick = 1;
1061         }
1062
1063         if (x != 0 || y != 0 ||
1064             es->width != buffer->width || es->height != buffer->height) {
1065                 wlsc_surface_configure(es, es->x + x, es->y + y,
1066                                        buffer->width, buffer->height);
1067                 repick = 1;
1068         }
1069
1070         wlsc_buffer_attach(buffer, &es->surface);
1071
1072         es->compositor->shell->attach(es->compositor->shell, es);
1073
1074         if (repick)
1075                 wlsc_compositor_repick(es->compositor);
1076 }
1077
1078 static void
1079 surface_damage(struct wl_client *client,
1080                struct wl_resource *resource,
1081                int32_t x, int32_t y, int32_t width, int32_t height)
1082 {
1083         struct wlsc_surface *es = resource->data;
1084
1085         wlsc_surface_damage_rectangle(es, x, y, width, height);
1086 }
1087
1088 static void
1089 destroy_frame_callback(struct wl_resource *resource)
1090 {
1091         struct wlsc_frame_callback *cb = resource->data;
1092
1093         wl_list_remove(&cb->link);
1094         free(resource);
1095 }
1096
1097 static void
1098 surface_frame(struct wl_client *client,
1099               struct wl_resource *resource, uint32_t callback)
1100 {
1101         struct wlsc_frame_callback *cb;
1102         struct wlsc_surface *es = resource->data;
1103
1104         cb = malloc(sizeof *cb);
1105         if (cb == NULL) {
1106                 wl_resource_post_no_memory(resource);
1107                 return;
1108         }
1109                 
1110         cb->resource.object.interface = &wl_callback_interface;
1111         cb->resource.object.id = callback;
1112         cb->resource.destroy = destroy_frame_callback;
1113         cb->resource.client = client;
1114         cb->resource.data = cb;
1115
1116         wl_client_add_resource(client, &cb->resource);
1117
1118         if (es->output) {
1119                 wl_list_insert(es->output->frame_callback_list.prev,
1120                                &cb->link);
1121         } else {
1122                 wl_list_init(&cb->link);
1123                 wl_resource_destroy(&cb->resource, 0);
1124         }
1125 }
1126
1127 const static struct wl_surface_interface surface_interface = {
1128         surface_destroy,
1129         surface_attach,
1130         surface_damage,
1131         surface_frame
1132 };
1133
1134 static void
1135 wlsc_input_device_attach(struct wlsc_input_device *device,
1136                          int x, int y, int width, int height)
1137 {
1138         wlsc_surface_damage_below(device->sprite);
1139
1140         device->hotspot_x = x;
1141         device->hotspot_y = y;
1142
1143         device->sprite->x = device->input_device.x - device->hotspot_x;
1144         device->sprite->y = device->input_device.y - device->hotspot_y;
1145         device->sprite->width = width;
1146         device->sprite->height = height;
1147
1148         wlsc_surface_damage(device->sprite);
1149 }
1150
1151 static void
1152 wlsc_input_device_attach_buffer(struct wlsc_input_device *device,
1153                                 struct wl_buffer *buffer, int x, int y)
1154 {
1155         wlsc_buffer_attach(buffer, &device->sprite->surface);
1156         wlsc_input_device_attach(device, x, y, buffer->width, buffer->height);
1157 }
1158
1159 static void
1160 wlsc_input_device_attach_sprite(struct wlsc_input_device *device,
1161                                 struct wlsc_sprite *sprite, int x, int y)
1162 {
1163         wlsc_sprite_attach(sprite, &device->sprite->surface);
1164         wlsc_input_device_attach(device, x, y, sprite->width, sprite->height);
1165 }
1166
1167 WL_EXPORT void
1168 wlsc_input_device_set_pointer_image(struct wlsc_input_device *device,
1169                                     enum wlsc_pointer_type type)
1170 {
1171         struct wlsc_compositor *compositor =
1172                 (struct wlsc_compositor *) device->input_device.compositor;
1173
1174         wlsc_input_device_attach_sprite(device,
1175                                         compositor->pointer_sprites[type],
1176                                         pointer_images[type].hotspot_x,
1177                                         pointer_images[type].hotspot_y);
1178 }
1179
1180 static void
1181 compositor_create_surface(struct wl_client *client,
1182                           struct wl_resource *resource, uint32_t id)
1183 {
1184         struct wlsc_compositor *ec = resource->data;
1185         struct wlsc_surface *surface;
1186
1187         surface = wlsc_surface_create(ec, 0, 0, 0, 0);
1188         if (surface == NULL) {
1189                 wl_resource_post_no_memory(resource);
1190                 return;
1191         }
1192
1193         surface->surface.resource.destroy = destroy_surface;
1194
1195         surface->surface.resource.object.id = id;
1196         surface->surface.resource.object.interface = &wl_surface_interface;
1197         surface->surface.resource.object.implementation =
1198                 (void (**)(void)) &surface_interface;
1199         surface->surface.resource.data = surface;
1200
1201         wl_client_add_resource(client, &surface->surface.resource);
1202 }
1203
1204 const static struct wl_compositor_interface compositor_interface = {
1205         compositor_create_surface,
1206 };
1207
1208 static void
1209 wlsc_surface_transform(struct wlsc_surface *surface,
1210                        int32_t x, int32_t y, int32_t *sx, int32_t *sy)
1211 {
1212         *sx = x - surface->x;
1213         *sy = y - surface->y;
1214 }
1215
1216 WL_EXPORT struct wlsc_surface *
1217 pick_surface(struct wl_input_device *device, int32_t *sx, int32_t *sy)
1218 {
1219         struct wlsc_compositor *ec =
1220                 (struct wlsc_compositor *) device->compositor;
1221         struct wlsc_surface *es;
1222
1223         wl_list_for_each(es, &ec->surface_list, link) {
1224                 if (es->surface.resource.client == NULL)
1225                         continue;
1226                 wlsc_surface_transform(es, device->x, device->y, sx, sy);
1227                 if (0 <= *sx && *sx < es->width &&
1228                     0 <= *sy && *sy < es->height)
1229                         return es;
1230         }
1231
1232         return NULL;
1233 }
1234
1235
1236 static void
1237 implicit_grab_motion(struct wl_grab *grab,
1238                      uint32_t time, int32_t x, int32_t y)
1239 {
1240         struct wlsc_input_device *device =
1241                 (struct wlsc_input_device *) grab->input_device;
1242         struct wlsc_surface *es =
1243                 (struct wlsc_surface *) device->input_device.pointer_focus;
1244         int32_t sx, sy;
1245         struct wl_resource *resource;
1246
1247         resource = grab->input_device->pointer_focus_resource;
1248         if (resource) {
1249                 wlsc_surface_transform(es, x, y, &sx, &sy);
1250                 wl_resource_post_event(resource, WL_INPUT_DEVICE_MOTION,
1251                                        time, x, y, sx, sy);
1252         }
1253 }
1254
1255 static void
1256 implicit_grab_button(struct wl_grab *grab,
1257                      uint32_t time, int32_t button, int32_t state)
1258 {
1259         struct wl_resource *resource;
1260
1261         resource = grab->input_device->pointer_focus_resource;
1262         if (resource)
1263                 wl_resource_post_event(resource, WL_INPUT_DEVICE_BUTTON,
1264                                        time, button, state);
1265 }
1266
1267 static void
1268 implicit_grab_end(struct wl_grab *grab, uint32_t time)
1269 {
1270 }
1271
1272 static const struct wl_grab_interface implicit_grab_interface = {
1273         implicit_grab_motion,
1274         implicit_grab_button,
1275         implicit_grab_end
1276 };
1277
1278 WL_EXPORT void
1279 wlsc_compositor_wake(struct wlsc_compositor *compositor)
1280 {
1281         if (compositor->idle_inhibit)
1282                 return;
1283
1284         wlsc_compositor_fade(compositor, 0.0);
1285         compositor->state = WLSC_COMPOSITOR_ACTIVE;
1286
1287         wl_event_source_timer_update(compositor->idle_source,
1288                                      option_idle_time * 1000);
1289 }
1290
1291 static void
1292 wlsc_compositor_idle_inhibit(struct wlsc_compositor *compositor)
1293 {
1294         wlsc_compositor_wake(compositor);
1295         compositor->idle_inhibit++;
1296 }
1297
1298 static void
1299 wlsc_compositor_idle_release(struct wlsc_compositor *compositor)
1300 {
1301         compositor->idle_inhibit--;
1302         wlsc_compositor_wake(compositor);
1303 }
1304
1305 static int
1306 idle_handler(void *data)
1307 {
1308         struct wlsc_compositor *compositor = data;
1309
1310         if (compositor->idle_inhibit)
1311                 return 1;
1312
1313         wlsc_compositor_fade(compositor, 1.0);
1314
1315         return 1;
1316 }
1317
1318 WL_EXPORT void
1319 notify_motion(struct wl_input_device *device, uint32_t time, int x, int y)
1320 {
1321         struct wlsc_surface *es;
1322         struct wlsc_compositor *ec =
1323                 (struct wlsc_compositor *) device->compositor;
1324         struct wlsc_output *output;
1325         const struct wl_grab_interface *interface;
1326         struct wlsc_input_device *wd = (struct wlsc_input_device *) device;
1327         int32_t sx, sy;
1328         int x_valid = 0, y_valid = 0;
1329         int min_x = INT_MAX, min_y = INT_MAX, max_x = INT_MIN, max_y = INT_MIN;
1330
1331         wlsc_compositor_wake(ec);
1332
1333         wl_list_for_each(output, &ec->output_list, link) {
1334                 if (output->x <= x && x <= output->x + output->current->width)
1335                         x_valid = 1;
1336
1337                 if (output->y <= y && y <= output->y + output->current->height)
1338                         y_valid = 1;
1339
1340                 /* FIXME: calculate this only on output addition/deletion */
1341                 if (output->x < min_x)
1342                         min_x = output->x;
1343                 if (output->y < min_y)
1344                         min_y = output->y;
1345
1346                 if (output->x + output->current->width > max_x)
1347                         max_x = output->x + output->current->width;
1348                 if (output->y + output->current->height > max_y)
1349                         max_y = output->y + output->current->height;
1350         }
1351         
1352         if (!x_valid) {
1353                 if (x < min_x)
1354                         x = min_x;
1355                 else if (x >= max_x)
1356                         x = max_x;
1357         }
1358         if (!y_valid) {
1359                 if (y < min_y)
1360                         y = min_y;
1361                 else  if (y >= max_y)
1362                         y = max_y;
1363         }
1364
1365         device->x = x;
1366         device->y = y;
1367
1368         if (device->grab) {
1369                 interface = device->grab->interface;
1370                 interface->motion(device->grab, time, x, y);
1371         } else {
1372                 es = pick_surface(device, &sx, &sy);
1373                 wl_input_device_set_pointer_focus(device,
1374                                                   &es->surface,
1375                                                   time, x, y, sx, sy);
1376                 if (device->pointer_focus_resource)
1377                         wl_resource_post_event(device->pointer_focus_resource,
1378                                                WL_INPUT_DEVICE_MOTION,
1379                                                time, x, y, sx, sy);
1380         }
1381
1382         wlsc_surface_damage_below(wd->sprite);
1383
1384         wd->sprite->x = device->x - wd->hotspot_x;
1385         wd->sprite->y = device->y - wd->hotspot_y;
1386
1387         wlsc_surface_damage(wd->sprite);
1388 }
1389
1390 WL_EXPORT void
1391 wlsc_surface_activate(struct wlsc_surface *surface,
1392                       struct wlsc_input_device *device, uint32_t time)
1393 {
1394         struct wlsc_shell *shell = surface->compositor->shell;
1395
1396         wlsc_surface_raise(surface);
1397         if (device->selection)
1398                 shell->set_selection_focus(shell,
1399                                            device->selection,
1400                                            &surface->surface, time);
1401
1402         wl_input_device_set_keyboard_focus(&device->input_device,
1403                                            &surface->surface,
1404                                            time);
1405 }
1406
1407 struct wlsc_binding {
1408         uint32_t key;
1409         uint32_t button;
1410         uint32_t modifier;
1411         wlsc_binding_handler_t handler;
1412         void *data;
1413         struct wl_list link;
1414 };
1415
1416 WL_EXPORT void
1417 notify_button(struct wl_input_device *device,
1418               uint32_t time, int32_t button, int32_t state)
1419 {
1420         struct wlsc_input_device *wd = (struct wlsc_input_device *) device;
1421         struct wlsc_compositor *compositor =
1422                 (struct wlsc_compositor *) device->compositor;
1423         struct wlsc_binding *b;
1424         struct wlsc_surface *surface =
1425                 (struct wlsc_surface *) device->pointer_focus;
1426         int32_t sx, sy;
1427
1428         if (state)
1429                 wlsc_compositor_idle_inhibit(compositor);
1430         else
1431                 wlsc_compositor_idle_release(compositor);
1432
1433         if (state && surface && device->grab == NULL) {
1434                 compositor->shell->activate(compositor->shell,
1435                                             surface, wd, time);
1436                 wl_input_device_start_grab(device,
1437                                            &device->implicit_grab,
1438                                            button, time);
1439         }
1440
1441         wl_list_for_each(b, &compositor->binding_list, link) {
1442                 if (b->button == button &&
1443                     b->modifier == wd->modifier_state && state) {
1444                         b->handler(&wd->input_device,
1445                                    time, 0, button, state, b->data);
1446                         break;
1447                 }
1448         }
1449
1450         if (device->grab)
1451                 device->grab->interface->button(device->grab, time,
1452                                                 button, state);
1453
1454         if (!state && device->grab && device->grab_button == button) {
1455                 wl_input_device_end_grab(device, time);
1456                 surface = pick_surface(device, &sx, &sy);
1457                 wl_input_device_set_pointer_focus(device, &surface->surface,
1458                                                   time, device->x, device->y,
1459                                                   sx, sy);
1460         }
1461 }
1462
1463 static void
1464 terminate_binding(struct wl_input_device *device, uint32_t time,
1465                   uint32_t key, uint32_t button, uint32_t state, void *data)
1466 {
1467         struct wlsc_compositor *compositor = data;
1468
1469         if (state)
1470                 wl_display_terminate(compositor->wl_display);
1471 }
1472
1473 WL_EXPORT struct wlsc_binding *
1474 wlsc_compositor_add_binding(struct wlsc_compositor *compositor,
1475                             uint32_t key, uint32_t button, uint32_t modifier,
1476                             wlsc_binding_handler_t handler, void *data)
1477 {
1478         struct wlsc_binding *binding;
1479
1480         binding = malloc(sizeof *binding);
1481         if (binding == NULL)
1482                 return NULL;
1483
1484         binding->key = key;
1485         binding->button = button;
1486         binding->modifier = modifier;
1487         binding->handler = handler;
1488         binding->data = data;
1489         wl_list_insert(compositor->binding_list.prev, &binding->link);
1490
1491         return binding;
1492 }
1493
1494 WL_EXPORT void
1495 wlsc_binding_destroy(struct wlsc_binding *binding)
1496 {
1497         wl_list_remove(&binding->link);
1498         free(binding);
1499 }
1500
1501 static void
1502 update_modifier_state(struct wlsc_input_device *device,
1503                       uint32_t key, uint32_t state)
1504 {
1505         uint32_t modifier;
1506
1507         switch (key) {
1508         case KEY_LEFTCTRL:
1509         case KEY_RIGHTCTRL:
1510                 modifier = MODIFIER_CTRL;
1511                 break;
1512
1513         case KEY_LEFTALT:
1514         case KEY_RIGHTALT:
1515                 modifier = MODIFIER_ALT;
1516                 break;
1517
1518         case KEY_LEFTMETA:
1519         case KEY_RIGHTMETA:
1520                 modifier = MODIFIER_SUPER;
1521                 break;
1522
1523         default:
1524                 modifier = 0;
1525                 break;
1526         }
1527
1528         if (state)
1529                 device->modifier_state |= modifier;
1530         else
1531                 device->modifier_state &= ~modifier;
1532 }
1533
1534 WL_EXPORT void
1535 notify_key(struct wl_input_device *device,
1536            uint32_t time, uint32_t key, uint32_t state)
1537 {
1538         struct wlsc_input_device *wd = (struct wlsc_input_device *) device;
1539         struct wlsc_compositor *compositor =
1540                 (struct wlsc_compositor *) device->compositor;
1541         uint32_t *k, *end;
1542         struct wlsc_binding *b;
1543
1544         if (state)
1545                 wlsc_compositor_idle_inhibit(compositor);
1546         else
1547                 wlsc_compositor_idle_release(compositor);
1548
1549         wl_list_for_each(b, &compositor->binding_list, link) {
1550                 if (b->key == key &&
1551                     b->modifier == wd->modifier_state) {
1552                         b->handler(&wd->input_device,
1553                                    time, key, 0, state, b->data);
1554                         break;
1555                 }
1556         }
1557
1558         update_modifier_state(wd, key, state);
1559         end = device->keys.data + device->keys.size;
1560         for (k = device->keys.data; k < end; k++) {
1561                 if (*k == key)
1562                         *k = *--end;
1563         }
1564         device->keys.size = (void *) end - device->keys.data;
1565         if (state) {
1566                 k = wl_array_add(&device->keys, sizeof *k);
1567                 *k = key;
1568         }
1569
1570         if (device->keyboard_focus_resource)
1571                 wl_resource_post_event(device->keyboard_focus_resource,
1572                                        WL_INPUT_DEVICE_KEY, time, key, state);
1573 }
1574
1575 WL_EXPORT void
1576 notify_pointer_focus(struct wl_input_device *device,
1577                      uint32_t time, struct wlsc_output *output,
1578                      int32_t x, int32_t y)
1579 {
1580         struct wlsc_input_device *wd = (struct wlsc_input_device *) device;
1581         struct wlsc_compositor *compositor =
1582                 (struct wlsc_compositor *) device->compositor;
1583         struct wlsc_surface *es;
1584         int32_t sx, sy;
1585
1586         if (output) {
1587                 device->x = x;
1588                 device->y = y;
1589                 es = pick_surface(device, &sx, &sy);
1590                 wl_input_device_set_pointer_focus(device,
1591                                                   &es->surface,
1592                                                   time, x, y, sx, sy);
1593
1594                 compositor->focus = 1;
1595
1596                 wd->sprite->x = device->x - wd->hotspot_x;
1597                 wd->sprite->y = device->y - wd->hotspot_y;
1598         } else {
1599                 wl_input_device_set_pointer_focus(device, NULL,
1600                                                   time, 0, 0, 0, 0);
1601                 compositor->focus = 0;
1602         }
1603
1604         wlsc_surface_damage(wd->sprite);
1605 }
1606
1607 WL_EXPORT void
1608 notify_keyboard_focus(struct wl_input_device *device,
1609                       uint32_t time, struct wlsc_output *output,
1610                       struct wl_array *keys)
1611 {
1612         struct wlsc_input_device *wd =
1613                 (struct wlsc_input_device *) device;
1614         struct wlsc_compositor *compositor =
1615                 (struct wlsc_compositor *) device->compositor;
1616         struct wlsc_surface *es;
1617         uint32_t *k, *end;
1618
1619         if (!wl_list_empty(&compositor->surface_list))
1620                 es = container_of(compositor->surface_list.next,
1621                                   struct wlsc_surface, link);
1622         else
1623                 es = NULL;
1624
1625         if (output) {
1626                 wl_array_copy(&wd->input_device.keys, keys);
1627                 wd->modifier_state = 0;
1628                 end = device->keys.data + device->keys.size;
1629                 for (k = device->keys.data; k < end; k++) {
1630                         wlsc_compositor_idle_inhibit(compositor);
1631                         update_modifier_state(wd, *k, 1);
1632                 }
1633
1634                 if (es && es->surface.resource.client)
1635                         wl_input_device_set_keyboard_focus(&wd->input_device,
1636                                                            &es->surface, time);
1637         } else {
1638                 end = device->keys.data + device->keys.size;
1639                 for (k = device->keys.data; k < end; k++)
1640                         wlsc_compositor_idle_release(compositor);
1641
1642                 wd->modifier_state = 0;
1643                 wl_input_device_set_keyboard_focus(&wd->input_device,
1644                                                    NULL, time);
1645         }
1646 }
1647
1648
1649 static void
1650 input_device_attach(struct wl_client *client,
1651                     struct wl_resource *resource,
1652                     uint32_t time,
1653                     struct wl_resource *buffer_resource, int32_t x, int32_t y)
1654 {
1655         struct wlsc_input_device *device = resource->data;
1656         struct wl_buffer *buffer;
1657
1658         if (time < device->input_device.pointer_focus_time)
1659                 return;
1660         if (device->input_device.pointer_focus == NULL)
1661                 return;
1662         if (device->input_device.pointer_focus->resource.client != client)
1663                 return;
1664
1665         if (buffer_resource) {
1666                 buffer = buffer_resource->data;
1667                 wlsc_input_device_attach_buffer(device, buffer, x, y);
1668         } else {
1669                 wlsc_input_device_set_pointer_image(device,
1670                                                     WLSC_POINTER_LEFT_PTR);
1671                 return;
1672         }
1673 }
1674
1675 const static struct wl_input_device_interface input_device_interface = {
1676         input_device_attach,
1677 };
1678
1679 static void unbind_input_device(struct wl_resource *resource)
1680 {
1681         wl_list_remove(&resource->link);
1682         free(resource);
1683 }
1684
1685 static void
1686 bind_input_device(struct wl_client *client,
1687                   void *data, uint32_t version, uint32_t id)
1688 {
1689         struct wl_input_device *device = data;
1690         struct wl_resource *resource;
1691
1692         resource = wl_client_add_object(client, &wl_input_device_interface,
1693                                         &input_device_interface, id, data);
1694         wl_list_insert(&device->resource_list, &resource->link);
1695         resource->destroy = unbind_input_device;
1696 }
1697
1698 WL_EXPORT void
1699 wlsc_input_device_init(struct wlsc_input_device *device,
1700                        struct wlsc_compositor *ec)
1701 {
1702         wl_input_device_init(&device->input_device, &ec->compositor);
1703
1704         wl_display_add_global(ec->wl_display, &wl_input_device_interface,
1705                               device, bind_input_device);
1706
1707         device->sprite = wlsc_surface_create(ec,
1708                                              device->input_device.x,
1709                                              device->input_device.y, 32, 32);
1710         wl_list_insert(&ec->surface_list, &device->sprite->link);
1711
1712         device->hotspot_x = 16;
1713         device->hotspot_y = 16;
1714         device->modifier_state = 0;
1715
1716         device->input_device.implicit_grab.interface = &implicit_grab_interface;
1717
1718         wl_list_insert(ec->input_device_list.prev, &device->link);
1719
1720         wlsc_input_device_set_pointer_image(device, WLSC_POINTER_LEFT_PTR);
1721 }
1722
1723 static void
1724 bind_output(struct wl_client *client,
1725             void *data, uint32_t version, uint32_t id)
1726 {
1727         struct wlsc_output *output = data;
1728         struct wlsc_mode *mode;
1729         struct wl_resource *resource;
1730
1731         resource = wl_client_add_object(client,
1732                                         &wl_output_interface, NULL, id, data);
1733
1734         wl_resource_post_event(resource,
1735                                WL_OUTPUT_GEOMETRY,
1736                                output->x,
1737                                output->y,
1738                                output->mm_width,
1739                                output->mm_height,
1740                                output->subpixel,
1741                                output->make, output->model);
1742
1743         wl_list_for_each (mode, &output->mode_list, link) {
1744                 wl_resource_post_event(resource,
1745                                        WL_OUTPUT_MODE,
1746                                        mode->flags,
1747                                        mode->width,
1748                                        mode->height,
1749                                        mode->refresh);
1750         }
1751 }
1752
1753 static const char vertex_shader[] =
1754         "uniform mat4 proj;\n"
1755         "attribute vec2 position;\n"
1756         "attribute vec2 texcoord;\n"
1757         "varying vec2 v_texcoord;\n"
1758         "void main()\n"
1759         "{\n"
1760         "   gl_Position = proj * vec4(position, 0.0, 1.0);\n"
1761         "   v_texcoord = texcoord;\n"
1762         "}\n";
1763
1764 static const char texture_fragment_shader[] =
1765         "precision mediump float;\n"
1766         "varying vec2 v_texcoord;\n"
1767         "uniform sampler2D tex;\n"
1768         "void main()\n"
1769         "{\n"
1770         "   gl_FragColor = texture2D(tex, v_texcoord)\n;"
1771         "}\n";
1772
1773 static const char solid_fragment_shader[] =
1774         "precision mediump float;\n"
1775         "uniform vec4 color;\n"
1776         "void main()\n"
1777         "{\n"
1778         "   gl_FragColor = color\n;"
1779         "}\n";
1780
1781 static int
1782 compile_shader(GLenum type, const char *source)
1783 {
1784         GLuint s;
1785         char msg[512];
1786         GLint status;
1787
1788         s = glCreateShader(type);
1789         glShaderSource(s, 1, &source, NULL);
1790         glCompileShader(s);
1791         glGetShaderiv(s, GL_COMPILE_STATUS, &status);
1792         if (!status) {
1793                 glGetShaderInfoLog(s, sizeof msg, NULL, msg);
1794                 fprintf(stderr, "shader info: %s\n", msg);
1795                 return GL_NONE;
1796         }
1797
1798         return s;
1799 }
1800
1801 static int
1802 wlsc_shader_init(struct wlsc_shader *shader,
1803                  const char *vertex_source, const char *fragment_source)
1804 {
1805         char msg[512];
1806         GLint status;
1807
1808         shader->vertex_shader =
1809                 compile_shader(GL_VERTEX_SHADER, vertex_source);
1810         shader->fragment_shader =
1811                 compile_shader(GL_FRAGMENT_SHADER, fragment_source);
1812
1813         shader->program = glCreateProgram();
1814         glAttachShader(shader->program, shader->vertex_shader);
1815         glAttachShader(shader->program, shader->fragment_shader);
1816         glBindAttribLocation(shader->program, 0, "position");
1817         glBindAttribLocation(shader->program, 1, "texcoord");
1818
1819         glLinkProgram(shader->program);
1820         glGetProgramiv(shader->program, GL_LINK_STATUS, &status);
1821         if (!status) {
1822                 glGetProgramInfoLog(shader->program, sizeof msg, NULL, msg);
1823                 fprintf(stderr, "link info: %s\n", msg);
1824                 return -1;
1825         }
1826
1827         shader->proj_uniform = glGetUniformLocation(shader->program, "proj");
1828         shader->tex_uniform = glGetUniformLocation(shader->program, "tex");
1829
1830         return 0;
1831 }
1832
1833 static int
1834 init_solid_shader(struct wlsc_shader *shader,
1835                   GLuint vertex_shader, const char *fragment_source)
1836 {
1837         GLint status;
1838         char msg[512];
1839
1840         shader->vertex_shader = vertex_shader;
1841         shader->fragment_shader =
1842                 compile_shader(GL_FRAGMENT_SHADER, fragment_source);
1843
1844         shader->program = glCreateProgram();
1845         glAttachShader(shader->program, shader->vertex_shader);
1846         glAttachShader(shader->program, shader->fragment_shader);
1847         glBindAttribLocation(shader->program, 0, "position");
1848         glBindAttribLocation(shader->program, 1, "texcoord");
1849
1850         glLinkProgram(shader->program);
1851         glGetProgramiv(shader->program, GL_LINK_STATUS, &status);
1852         if (!status) {
1853                 glGetProgramInfoLog(shader->program, sizeof msg, NULL, msg);
1854                 fprintf(stderr, "link info: %s\n", msg);
1855                 return -1;
1856         }
1857  
1858         shader->proj_uniform = glGetUniformLocation(shader->program, "proj");
1859         shader->color_uniform = glGetUniformLocation(shader->program, "color");
1860
1861         return 0;
1862 }
1863
1864 WL_EXPORT void
1865 wlsc_output_destroy(struct wlsc_output *output)
1866 {
1867         pixman_region32_fini(&output->region);
1868         pixman_region32_fini(&output->previous_damage);
1869 }
1870
1871 WL_EXPORT void
1872 wlsc_output_move(struct wlsc_output *output, int x, int y)
1873 {
1874         struct wlsc_compositor *c = output->compositor;
1875         int flip;
1876
1877         output->x = x;
1878         output->y = y;
1879
1880         pixman_region32_init(&output->previous_damage);
1881         pixman_region32_init_rect(&output->region, x, y, 
1882                                   output->current->width,
1883                                   output->current->height);
1884
1885         wlsc_matrix_init(&output->matrix);
1886         wlsc_matrix_translate(&output->matrix,
1887                               -output->x - output->current->width / 2.0,
1888                               -output->y - output->current->height / 2.0, 0);
1889
1890         flip = (output->flags & WL_OUTPUT_FLIPPED) ? -1 : 1;
1891         wlsc_matrix_scale(&output->matrix,
1892                           2.0 / output->current->width,
1893                           flip * 2.0 / output->current->height, 1);
1894
1895         pixman_region32_union(&c->damage, &c->damage, &output->region);
1896 }
1897
1898 WL_EXPORT void
1899 wlsc_output_init(struct wlsc_output *output, struct wlsc_compositor *c,
1900                  int x, int y, int width, int height, uint32_t flags)
1901 {
1902         output->compositor = c;
1903         output->x = x;
1904         output->y = y;
1905         output->mm_width = width;
1906         output->mm_height = height;
1907
1908         output->flags = flags;
1909         wlsc_output_move(output, x, y);
1910
1911         output->scanout_buffer_destroy_listener.func =
1912                 output_handle_scanout_buffer_destroy;
1913         wl_list_init(&output->scanout_buffer_destroy_listener.link);
1914         wl_list_init(&output->frame_callback_list);
1915
1916         output->resource.object.interface = &wl_output_interface;
1917         wl_display_add_global(c->wl_display,
1918                               &wl_output_interface, output, bind_output);
1919 }
1920
1921 static void
1922 shm_buffer_created(struct wl_buffer *buffer)
1923 {
1924         struct wl_list *surfaces_attached_to;
1925
1926         surfaces_attached_to = malloc(sizeof *surfaces_attached_to);
1927         if (!surfaces_attached_to) {
1928                 buffer->user_data = NULL;
1929                 return;
1930         }
1931
1932         wl_list_init(surfaces_attached_to);
1933
1934         buffer->user_data = surfaces_attached_to;
1935 }
1936
1937 static void
1938 shm_buffer_damaged(struct wl_buffer *buffer,
1939                    int32_t x, int32_t y, int32_t width, int32_t height)
1940 {
1941         struct wl_list *surfaces_attached_to = buffer->user_data;
1942         struct wlsc_surface *es;
1943         GLsizei tex_width = wl_shm_buffer_get_stride(buffer) / 4;
1944
1945         wl_list_for_each(es, surfaces_attached_to, buffer_link) {
1946                 glBindTexture(GL_TEXTURE_2D, es->texture);
1947                 glTexImage2D(GL_TEXTURE_2D, 0, GL_BGRA_EXT,
1948                              tex_width, buffer->height, 0,
1949                              GL_BGRA_EXT, GL_UNSIGNED_BYTE,
1950                              wl_shm_buffer_get_data(buffer));
1951                 /* Hmm, should use glTexSubImage2D() here but GLES2 doesn't
1952                  * support any unpack attributes except GL_UNPACK_ALIGNMENT. */
1953         }
1954 }
1955
1956 static void
1957 shm_buffer_destroyed(struct wl_buffer *buffer)
1958 {
1959         struct wl_list *surfaces_attached_to = buffer->user_data;
1960         struct wlsc_surface *es, *next;
1961
1962         wl_list_for_each_safe(es, next, surfaces_attached_to, buffer_link) {
1963                 wl_list_remove(&es->buffer_link);
1964                 wl_list_init(&es->buffer_link);
1965         }
1966
1967         free(surfaces_attached_to);
1968 }
1969
1970 const static struct wl_shm_callbacks shm_callbacks = {
1971         shm_buffer_created,
1972         shm_buffer_damaged,
1973         shm_buffer_destroyed
1974 };
1975
1976 WL_EXPORT int
1977 wlsc_compositor_init(struct wlsc_compositor *ec, struct wl_display *display)
1978 {
1979         struct wl_event_loop *loop;
1980         const char *extensions;
1981
1982         ec->wl_display = display;
1983
1984         wl_compositor_init(&ec->compositor, &compositor_interface, display);
1985
1986         ec->shm = wl_shm_init(display, &shm_callbacks);
1987
1988         ec->image_target_texture_2d =
1989                 (void *) eglGetProcAddress("glEGLImageTargetTexture2DOES");
1990         ec->image_target_renderbuffer_storage = (void *)
1991                 eglGetProcAddress("glEGLImageTargetRenderbufferStorageOES");
1992         ec->create_image = (void *) eglGetProcAddress("eglCreateImageKHR");
1993         ec->destroy_image = (void *) eglGetProcAddress("eglDestroyImageKHR");
1994         ec->bind_display =
1995                 (void *) eglGetProcAddress("eglBindWaylandDisplayWL");
1996         ec->unbind_display =
1997                 (void *) eglGetProcAddress("eglUnbindWaylandDisplayWL");
1998
1999         extensions = (const char *) glGetString(GL_EXTENSIONS);
2000         if (!strstr(extensions, "GL_EXT_texture_format_BGRA8888")) {
2001                 fprintf(stderr,
2002                         "GL_EXT_texture_format_BGRA8888 not available\n");
2003                 return -1;
2004         }
2005
2006         extensions =
2007                 (const char *) eglQueryString(ec->display, EGL_EXTENSIONS);
2008         if (strstr(extensions, "EGL_WL_bind_wayland_display"))
2009                 ec->has_bind_display = 1;
2010         if (ec->has_bind_display)
2011                 ec->bind_display(ec->display, ec->wl_display);
2012
2013         wl_list_init(&ec->surface_list);
2014         wl_list_init(&ec->input_device_list);
2015         wl_list_init(&ec->output_list);
2016         wl_list_init(&ec->binding_list);
2017         wl_list_init(&ec->animation_list);
2018         wlsc_spring_init(&ec->fade.spring, 0.8, 0.0, 0.0);
2019         ec->fade.animation.frame = fade_frame;
2020         wl_list_init(&ec->fade.animation.link);
2021
2022         wlsc_compositor_add_binding(ec, KEY_BACKSPACE, 0,
2023                                     MODIFIER_CTRL | MODIFIER_ALT,
2024                                     terminate_binding, ec);
2025
2026         create_pointer_images(ec);
2027
2028         screenshooter_create(ec);
2029
2030         glActiveTexture(GL_TEXTURE0);
2031
2032         if (wlsc_shader_init(&ec->texture_shader,
2033                              vertex_shader, texture_fragment_shader) < 0)
2034                 return -1;
2035         if (init_solid_shader(&ec->solid_shader,
2036                               ec->texture_shader.vertex_shader,
2037                               solid_fragment_shader) < 0)
2038                 return -1;
2039
2040         loop = wl_display_get_event_loop(ec->wl_display);
2041         ec->idle_source = wl_event_loop_add_timer(loop, idle_handler, ec);
2042         wl_event_source_timer_update(ec->idle_source, option_idle_time * 1000);
2043
2044         pixman_region32_init(&ec->damage);
2045         wlsc_compositor_schedule_repaint(ec);
2046
2047         return 0;
2048 }
2049
2050 WL_EXPORT void
2051 wlsc_compositor_shutdown(struct wlsc_compositor *ec)
2052 {
2053         struct wlsc_output *output;
2054
2055         /* Destroy all outputs associated with this compositor */
2056         wl_list_for_each(output, &ec->output_list, link)
2057                 output->destroy(output);
2058 }
2059
2060 static int on_term_signal(int signal_number, void *data)
2061 {
2062         struct wl_display *display = data;
2063
2064         fprintf(stderr, "caught signal %d\n", signal_number);
2065         wl_display_terminate(display);
2066
2067         return 1;
2068 }
2069
2070 static void *
2071 load_module(const char *name, const char *entrypoint, void **handle)
2072 {
2073         char path[PATH_MAX];
2074         void *module, *init;
2075
2076         if (name[0] != '/')
2077                 snprintf(path, sizeof path, MODULEDIR "/%s", name);
2078         else
2079                 snprintf(path, sizeof path, "%s", name);
2080
2081         module = dlopen(path, RTLD_LAZY);
2082         if (!module) {
2083                 fprintf(stderr,
2084                         "failed to load module: %s\n", dlerror());
2085                 return NULL;
2086         }
2087
2088         init = dlsym(module, entrypoint);
2089         if (!init) {
2090                 fprintf(stderr,
2091                         "failed to lookup init function: %s\n", dlerror());
2092                 return NULL;
2093         }
2094
2095         return init;
2096 }
2097
2098 int main(int argc, char *argv[])
2099 {
2100         struct wl_display *display;
2101         struct wlsc_compositor *ec;
2102         struct wl_event_loop *loop;
2103         int o, xserver = 0;
2104         void *shell_module, *backend_module;
2105         int (*shell_init)(struct wlsc_compositor *ec);
2106         struct wlsc_compositor
2107                 *(*backend_init)(struct wl_display *display, char *options);
2108         char *backend = NULL;
2109         char *backend_options = "";
2110         char *shell = NULL;
2111         char *p;
2112
2113         static const char opts[] = "B:b:o:S:i:s:x";
2114         static const struct option longopts[ ] = {
2115                 { "backend", 1, NULL, 'B' },
2116                 { "backend-options", 1, NULL, 'o' },
2117                 { "socket", 1, NULL, 'S' },
2118                 { "idle-time", 1, NULL, 'i' },
2119                 { "shell", 1, NULL, 's' },
2120                 { "xserver", 0, NULL, 'x' },
2121                 { NULL, }
2122         };
2123
2124         while (o = getopt_long(argc, argv, opts, longopts, &o), o > 0) {
2125                 switch (o) {
2126                 case 'B':
2127                         backend = optarg;
2128                         break;
2129                 case 'o':
2130                         backend_options = optarg;
2131                         break;
2132                 case 'S':
2133                         option_socket_name = optarg;
2134                         break;
2135                 case 'i':
2136                         option_idle_time = strtol(optarg, &p, 0);
2137                         if (*p != '\0') {
2138                                 fprintf(stderr,
2139                                         "invalid idle time option: %s\n",
2140                                         optarg);
2141                                 exit(EXIT_FAILURE);
2142                         }
2143                         break;
2144                 case 's':
2145                         shell = optarg;
2146                         break;
2147                 case 'x':
2148                         xserver = 1;
2149                         break;
2150                 }
2151         }
2152
2153         display = wl_display_create();
2154
2155         loop = wl_display_get_event_loop(display);
2156         wl_event_loop_add_signal(loop, SIGTERM, on_term_signal, display);
2157         wl_event_loop_add_signal(loop, SIGINT, on_term_signal, display);
2158         wl_event_loop_add_signal(loop, SIGQUIT, on_term_signal, display);
2159
2160         wl_list_init(&child_process_list);
2161         wl_event_loop_add_signal(loop, SIGCHLD, sigchld_handler, NULL);
2162
2163         if (!backend) {
2164                 if (getenv("WAYLAND_DISPLAY"))
2165                         backend = "wayland-backend.so";
2166                 else if (getenv("DISPLAY"))
2167                         backend = "x11-backend.so";
2168                 else if (getenv("OPENWFD"))
2169                         backend = "openwfd-backend.so";
2170                 else
2171                         backend = "drm-backend.so";
2172         }
2173
2174         if (!shell)
2175                 shell = "desktop-shell.so";
2176
2177         backend_init = load_module(backend, "backend_init", &backend_module);
2178         if (!backend_init)
2179                 exit(EXIT_FAILURE);
2180
2181         shell_init = load_module(shell, "shell_init", &shell_module);
2182         if (!shell_init)
2183                 exit(EXIT_FAILURE);
2184
2185         ec = backend_init(display, backend_options);
2186         if (ec == NULL) {
2187                 fprintf(stderr, "failed to create compositor\n");
2188                 exit(EXIT_FAILURE);
2189         }
2190
2191         if (shell_init(ec) < 0)
2192                 exit(EXIT_FAILURE);
2193
2194         if (xserver)
2195                 wlsc_xserver_init(ec);
2196
2197         if (wl_display_add_socket(display, option_socket_name)) {
2198                 fprintf(stderr, "failed to add socket: %m\n");
2199                 exit(EXIT_FAILURE);
2200         }
2201
2202         wl_display_run(display);
2203
2204         if (xserver)
2205                 wlsc_xserver_destroy(ec);
2206
2207         if (ec->has_bind_display)
2208                 ec->unbind_display(ec->display, display);
2209         wl_display_destroy(display);
2210
2211         ec->destroy(ec);
2212
2213         return 0;
2214 }