window: Use new wl_pointer/keyboard_release request
[profile/ivi/weston-ivi-shell.git] / clients / window.c
1 /*
2  * Copyright © 2008 Kristian Høgsberg
3  * Copyright © 2012-2013 Collabora, Ltd.
4  *
5  * Permission to use, copy, modify, distribute, and sell this software and its
6  * documentation for any purpose is hereby granted without fee, provided that
7  * the above copyright notice appear in all copies and that both that copyright
8  * notice and this permission notice appear in supporting documentation, and
9  * that the name of the copyright holders not be used in advertising or
10  * publicity pertaining to distribution of the software without specific,
11  * written prior permission.  The copyright holders make no representations
12  * about the suitability of this software for any purpose.  It is provided "as
13  * is" without express or implied warranty.
14  *
15  * THE COPYRIGHT HOLDERS DISCLAIM ALL WARRANTIES WITH REGARD TO THIS SOFTWARE,
16  * INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN NO
17  * EVENT SHALL THE COPYRIGHT HOLDERS BE LIABLE FOR ANY SPECIAL, INDIRECT OR
18  * CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE,
19  * DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
20  * TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE
21  * OF THIS SOFTWARE.
22  */
23
24 #include "config.h"
25
26 #include <stdint.h>
27 #include <stdio.h>
28 #include <stdlib.h>
29 #include <stdarg.h>
30 #include <string.h>
31 #include <fcntl.h>
32 #include <unistd.h>
33 #include <errno.h>
34 #include <math.h>
35 #include <assert.h>
36 #include <time.h>
37 #include <cairo.h>
38 #include <sys/mman.h>
39 #include <sys/epoll.h>
40 #include <sys/timerfd.h>
41
42 #ifdef HAVE_CAIRO_EGL
43 #include <wayland-egl.h>
44
45 #ifdef USE_CAIRO_GLESV2
46 #include <GLES2/gl2.h>
47 #include <GLES2/gl2ext.h>
48 #else
49 #include <GL/gl.h>
50 #endif
51 #include <EGL/egl.h>
52 #include <EGL/eglext.h>
53
54 #include <cairo-gl.h>
55 #else /* HAVE_CAIRO_EGL */
56 typedef void *EGLDisplay;
57 typedef void *EGLConfig;
58 typedef void *EGLContext;
59 #define EGL_NO_DISPLAY ((EGLDisplay)0)
60 #endif /* no HAVE_CAIRO_EGL */
61
62 #include <xkbcommon/xkbcommon.h>
63 #include <wayland-cursor.h>
64
65 #include <linux/input.h>
66 #include <wayland-client.h>
67 #include "../shared/cairo-util.h"
68 #include "text-cursor-position-client-protocol.h"
69 #include "workspaces-client-protocol.h"
70 #include "../shared/os-compatibility.h"
71
72 #include "window.h"
73
74 struct shm_pool;
75
76 struct global {
77         uint32_t name;
78         char *interface;
79         uint32_t version;
80         struct wl_list link;
81 };
82
83 struct display {
84         struct wl_display *display;
85         struct wl_registry *registry;
86         struct wl_compositor *compositor;
87         struct wl_subcompositor *subcompositor;
88         struct wl_shell *shell;
89         struct wl_shm *shm;
90         struct wl_data_device_manager *data_device_manager;
91         struct text_cursor_position *text_cursor_position;
92         struct workspace_manager *workspace_manager;
93         EGLDisplay dpy;
94         EGLConfig argb_config;
95         EGLContext argb_ctx;
96         cairo_device_t *argb_device;
97         uint32_t serial;
98
99         int display_fd;
100         uint32_t display_fd_events;
101         struct task display_task;
102
103         int epoll_fd;
104         struct wl_list deferred_list;
105
106         int running;
107
108         struct wl_list global_list;
109         struct wl_list window_list;
110         struct wl_list input_list;
111         struct wl_list output_list;
112
113         struct theme *theme;
114
115         struct wl_cursor_theme *cursor_theme;
116         struct wl_cursor **cursors;
117
118         display_output_handler_t output_configure_handler;
119         display_global_handler_t global_handler;
120
121         void *user_data;
122
123         struct xkb_context *xkb_context;
124
125         uint32_t workspace;
126         uint32_t workspace_count;
127
128         /* A hack to get text extents for tooltips */
129         cairo_surface_t *dummy_surface;
130         void *dummy_surface_data;
131
132         int has_rgb565;
133         int seat_version;
134 };
135
136 enum {
137         TYPE_NONE,
138         TYPE_TOPLEVEL,
139         TYPE_FULLSCREEN,
140         TYPE_MAXIMIZED,
141         TYPE_TRANSIENT,
142         TYPE_MENU,
143         TYPE_CUSTOM
144 };
145
146 struct window_output {
147         struct output *output;
148         struct wl_list link;
149 };
150
151 struct toysurface {
152         /*
153          * Prepare the surface for drawing. Makes sure there is a surface
154          * of the right size available for rendering, and returns it.
155          * dx,dy are the x,y of wl_surface.attach.
156          * width,height are the new buffer size.
157          * If flags has SURFACE_HINT_RESIZE set, the user is
158          * doing continuous resizing.
159          * Returns the Cairo surface to draw to.
160          */
161         cairo_surface_t *(*prepare)(struct toysurface *base, int dx, int dy,
162                                     int32_t width, int32_t height, uint32_t flags,
163                                     enum wl_output_transform buffer_transform, int32_t buffer_scale);
164
165         /*
166          * Post the surface to the server, returning the server allocation
167          * rectangle. The Cairo surface from prepare() must be destroyed
168          * after calling this.
169          */
170         void (*swap)(struct toysurface *base,
171                      enum wl_output_transform buffer_transform, int32_t buffer_scale,
172                      struct rectangle *server_allocation);
173
174         /*
175          * Make the toysurface current with the given EGL context.
176          * Returns 0 on success, and negative of failure.
177          */
178         int (*acquire)(struct toysurface *base, EGLContext ctx);
179
180         /*
181          * Release the toysurface from the EGL context, returning control
182          * to Cairo.
183          */
184         void (*release)(struct toysurface *base);
185
186         /*
187          * Destroy the toysurface, including the Cairo surface, any
188          * backing storage, and the Wayland protocol objects.
189          */
190         void (*destroy)(struct toysurface *base);
191 };
192
193 struct surface {
194         struct window *window;
195
196         struct wl_surface *surface;
197         struct wl_subsurface *subsurface;
198         int synchronized;
199         int synchronized_default;
200         struct toysurface *toysurface;
201         struct widget *widget;
202         int redraw_needed;
203         struct wl_callback *frame_cb;
204         uint32_t last_time;
205
206         struct rectangle allocation;
207         struct rectangle server_allocation;
208
209         struct wl_region *input_region;
210         struct wl_region *opaque_region;
211
212         enum window_buffer_type buffer_type;
213         enum wl_output_transform buffer_transform;
214         int32_t buffer_scale;
215
216         cairo_surface_t *cairo_surface;
217
218         struct wl_list link;
219 };
220
221 struct window {
222         struct display *display;
223         struct window *parent;
224         struct wl_list window_output_list;
225         char *title;
226         struct rectangle saved_allocation;
227         struct rectangle min_allocation;
228         struct rectangle pending_allocation;
229         int x, y;
230         int resize_edges;
231         int redraw_needed;
232         int redraw_task_scheduled;
233         struct task redraw_task;
234         int resize_needed;
235         int saved_type;
236         int type;
237         int focus_count;
238
239         int resizing;
240         int fullscreen_method;
241         int configure_requests;
242
243         enum preferred_format preferred_format;
244
245         window_key_handler_t key_handler;
246         window_keyboard_focus_handler_t keyboard_focus_handler;
247         window_data_handler_t data_handler;
248         window_drop_handler_t drop_handler;
249         window_close_handler_t close_handler;
250         window_fullscreen_handler_t fullscreen_handler;
251         window_output_handler_t output_handler;
252
253         struct surface *main_surface;
254         struct wl_shell_surface *shell_surface;
255
256         struct frame *frame;
257
258         /* struct surface::link, contains also main_surface */
259         struct wl_list subsurface_list;
260
261         void *user_data;
262         struct wl_list link;
263 };
264
265 struct widget {
266         struct window *window;
267         struct surface *surface;
268         struct tooltip *tooltip;
269         struct wl_list child_list;
270         struct wl_list link;
271         struct rectangle allocation;
272         widget_resize_handler_t resize_handler;
273         widget_redraw_handler_t redraw_handler;
274         widget_enter_handler_t enter_handler;
275         widget_leave_handler_t leave_handler;
276         widget_motion_handler_t motion_handler;
277         widget_button_handler_t button_handler;
278         widget_touch_down_handler_t touch_down_handler;
279         widget_touch_up_handler_t touch_up_handler;
280         widget_touch_motion_handler_t touch_motion_handler;
281         widget_touch_frame_handler_t touch_frame_handler;
282         widget_touch_cancel_handler_t touch_cancel_handler;
283         widget_axis_handler_t axis_handler;
284         void *user_data;
285         int opaque;
286         int tooltip_count;
287         int default_cursor;
288 };
289
290 struct touch_point {
291         int32_t id;
292         struct widget *widget;
293         struct wl_list link;
294 };
295
296 struct input {
297         struct display *display;
298         struct wl_seat *seat;
299         struct wl_pointer *pointer;
300         struct wl_keyboard *keyboard;
301         struct wl_touch *touch;
302         struct wl_list touch_point_list;
303         struct window *pointer_focus;
304         struct window *keyboard_focus;
305         struct window *touch_focus;
306         int current_cursor;
307         uint32_t cursor_anim_start;
308         struct wl_callback *cursor_frame_cb;
309         struct wl_surface *pointer_surface;
310         uint32_t modifiers;
311         uint32_t pointer_enter_serial;
312         uint32_t cursor_serial;
313         float sx, sy;
314         struct wl_list link;
315
316         struct widget *focus_widget;
317         struct widget *grab;
318         uint32_t grab_button;
319
320         struct wl_data_device *data_device;
321         struct data_offer *drag_offer;
322         struct data_offer *selection_offer;
323
324         struct {
325                 struct xkb_keymap *keymap;
326                 struct xkb_state *state;
327                 xkb_mod_mask_t control_mask;
328                 xkb_mod_mask_t alt_mask;
329                 xkb_mod_mask_t shift_mask;
330         } xkb;
331
332         struct task repeat_task;
333         int repeat_timer_fd;
334         uint32_t repeat_sym;
335         uint32_t repeat_key;
336         uint32_t repeat_time;
337 };
338
339 struct output {
340         struct display *display;
341         struct wl_output *output;
342         struct rectangle allocation;
343         struct wl_list link;
344         int transform;
345         int scale;
346
347         display_output_handler_t destroy_handler;
348         void *user_data;
349 };
350
351 enum frame_button_action {
352         FRAME_BUTTON_NULL = 0,
353         FRAME_BUTTON_ICON = 1,
354         FRAME_BUTTON_CLOSE = 2,
355         FRAME_BUTTON_MINIMIZE = 3,
356         FRAME_BUTTON_MAXIMIZE = 4,
357 };
358
359 enum frame_button_pointer {
360         FRAME_BUTTON_DEFAULT = 0,
361         FRAME_BUTTON_OVER = 1,
362         FRAME_BUTTON_ACTIVE = 2,
363 };
364
365 enum frame_button_align {
366         FRAME_BUTTON_RIGHT = 0,
367         FRAME_BUTTON_LEFT = 1,
368 };
369
370 enum frame_button_decoration {
371         FRAME_BUTTON_NONE = 0,
372         FRAME_BUTTON_FANCY = 1,
373 };
374
375 struct frame_button {
376         struct widget *widget;
377         struct frame *frame;
378         cairo_surface_t *icon;
379         enum frame_button_action type;
380         enum frame_button_pointer state;
381         struct wl_list link;    /* buttons_list */
382         enum frame_button_align align;
383         enum frame_button_decoration decoration;
384 };
385
386 struct frame {
387         struct widget *widget;
388         struct widget *child;
389         struct wl_list buttons_list;
390 };
391
392 struct menu {
393         struct window *window;
394         struct widget *widget;
395         struct input *input;
396         const char **entries;
397         uint32_t time;
398         int current;
399         int count;
400         int release_count;
401         menu_func_t func;
402 };
403
404 struct tooltip {
405         struct widget *parent;
406         struct window *window;
407         struct widget *widget;
408         char *entry;
409         struct task tooltip_task;
410         int tooltip_fd;
411         float x, y;
412 };
413
414 struct shm_pool {
415         struct wl_shm_pool *pool;
416         size_t size;
417         size_t used;
418         void *data;
419 };
420
421 enum {
422         CURSOR_DEFAULT = 100,
423         CURSOR_UNSET
424 };
425
426 enum window_location {
427         WINDOW_INTERIOR = 0,
428         WINDOW_RESIZING_TOP = 1,
429         WINDOW_RESIZING_BOTTOM = 2,
430         WINDOW_RESIZING_LEFT = 4,
431         WINDOW_RESIZING_TOP_LEFT = 5,
432         WINDOW_RESIZING_BOTTOM_LEFT = 6,
433         WINDOW_RESIZING_RIGHT = 8,
434         WINDOW_RESIZING_TOP_RIGHT = 9,
435         WINDOW_RESIZING_BOTTOM_RIGHT = 10,
436         WINDOW_RESIZING_MASK = 15,
437         WINDOW_EXTERIOR = 16,
438         WINDOW_TITLEBAR = 17,
439         WINDOW_CLIENT_AREA = 18,
440 };
441
442 static const cairo_user_data_key_t shm_surface_data_key;
443
444 /* #define DEBUG */
445
446 #ifdef DEBUG
447
448 static void
449 debug_print(void *proxy, int line, const char *func, const char *fmt, ...)
450 __attribute__ ((format (printf, 4, 5)));
451
452 static void
453 debug_print(void *proxy, int line, const char *func, const char *fmt, ...)
454 {
455         va_list ap;
456         struct timeval tv;
457
458         gettimeofday(&tv, NULL);
459         fprintf(stderr, "%8ld.%03ld ",
460                 (long)tv.tv_sec & 0xffff, (long)tv.tv_usec / 1000);
461
462         if (proxy)
463                 fprintf(stderr, "%s@%d ",
464                         wl_proxy_get_class(proxy), wl_proxy_get_id(proxy));
465
466         /*fprintf(stderr, __FILE__ ":%d:%s ", line, func);*/
467         fprintf(stderr, "%s ", func);
468
469         va_start(ap, fmt);
470         vfprintf(stderr, fmt, ap);
471         va_end(ap);
472 }
473
474 #define DBG(fmt, ...) \
475         debug_print(NULL, __LINE__, __func__, fmt, ##__VA_ARGS__)
476
477 #define DBG_OBJ(obj, fmt, ...) \
478         debug_print(obj, __LINE__, __func__, fmt, ##__VA_ARGS__)
479
480 #else
481
482 #define DBG(...) do {} while (0)
483 #define DBG_OBJ(...) do {} while (0)
484
485 #endif
486
487 static void
488 surface_to_buffer_size (enum wl_output_transform buffer_transform, int32_t buffer_scale, int32_t *width, int32_t *height)
489 {
490         int32_t tmp;
491
492         switch (buffer_transform) {
493         case WL_OUTPUT_TRANSFORM_90:
494         case WL_OUTPUT_TRANSFORM_270:
495         case WL_OUTPUT_TRANSFORM_FLIPPED_90:
496         case WL_OUTPUT_TRANSFORM_FLIPPED_270:
497                 tmp = *width;
498                 *width = *height;
499                 *height = tmp;
500                 break;
501         default:
502                 break;
503         }
504
505         *width *= buffer_scale;
506         *height *= buffer_scale;
507 }
508
509 static void
510 buffer_to_surface_size (enum wl_output_transform buffer_transform, int32_t buffer_scale, int32_t *width, int32_t *height)
511 {
512         int32_t tmp;
513
514         switch (buffer_transform) {
515         case WL_OUTPUT_TRANSFORM_90:
516         case WL_OUTPUT_TRANSFORM_270:
517         case WL_OUTPUT_TRANSFORM_FLIPPED_90:
518         case WL_OUTPUT_TRANSFORM_FLIPPED_270:
519                 tmp = *width;
520                 *width = *height;
521                 *height = tmp;
522                 break;
523         default:
524                 break;
525         }
526
527         *width /= buffer_scale;
528         *height /= buffer_scale;
529 }
530
531 #ifdef HAVE_CAIRO_EGL
532
533 struct egl_window_surface {
534         struct toysurface base;
535         cairo_surface_t *cairo_surface;
536         struct display *display;
537         struct wl_surface *surface;
538         struct wl_egl_window *egl_window;
539         EGLSurface egl_surface;
540 };
541
542 static struct egl_window_surface *
543 to_egl_window_surface(struct toysurface *base)
544 {
545         return container_of(base, struct egl_window_surface, base);
546 }
547
548 static cairo_surface_t *
549 egl_window_surface_prepare(struct toysurface *base, int dx, int dy,
550                            int32_t width, int32_t height, uint32_t flags,
551                            enum wl_output_transform buffer_transform, int32_t buffer_scale)
552 {
553         struct egl_window_surface *surface = to_egl_window_surface(base);
554
555         surface_to_buffer_size (buffer_transform, buffer_scale, &width, &height);
556
557         wl_egl_window_resize(surface->egl_window, width, height, dx, dy);
558         cairo_gl_surface_set_size(surface->cairo_surface, width, height);
559
560         return cairo_surface_reference(surface->cairo_surface);
561 }
562
563 static void
564 egl_window_surface_swap(struct toysurface *base,
565                         enum wl_output_transform buffer_transform, int32_t buffer_scale,
566                         struct rectangle *server_allocation)
567 {
568         struct egl_window_surface *surface = to_egl_window_surface(base);
569
570         cairo_gl_surface_swapbuffers(surface->cairo_surface);
571         wl_egl_window_get_attached_size(surface->egl_window,
572                                         &server_allocation->width,
573                                         &server_allocation->height);
574
575         buffer_to_surface_size (buffer_transform, buffer_scale,
576                                 &server_allocation->width,
577                                 &server_allocation->height);
578 }
579
580 static int
581 egl_window_surface_acquire(struct toysurface *base, EGLContext ctx)
582 {
583         struct egl_window_surface *surface = to_egl_window_surface(base);
584         cairo_device_t *device;
585
586         device = cairo_surface_get_device(surface->cairo_surface);
587         if (!device)
588                 return -1;
589
590         if (!ctx) {
591                 if (device == surface->display->argb_device)
592                         ctx = surface->display->argb_ctx;
593                 else
594                         assert(0);
595         }
596
597         cairo_device_flush(device);
598         cairo_device_acquire(device);
599         if (!eglMakeCurrent(surface->display->dpy, surface->egl_surface,
600                             surface->egl_surface, ctx))
601                 fprintf(stderr, "failed to make surface current\n");
602
603         return 0;
604 }
605
606 static void
607 egl_window_surface_release(struct toysurface *base)
608 {
609         struct egl_window_surface *surface = to_egl_window_surface(base);
610         cairo_device_t *device;
611
612         device = cairo_surface_get_device(surface->cairo_surface);
613         if (!device)
614                 return;
615
616         if (!eglMakeCurrent(surface->display->dpy, NULL, NULL,
617                             surface->display->argb_ctx))
618                 fprintf(stderr, "failed to make context current\n");
619
620         cairo_device_release(device);
621 }
622
623 static void
624 egl_window_surface_destroy(struct toysurface *base)
625 {
626         struct egl_window_surface *surface = to_egl_window_surface(base);
627         struct display *d = surface->display;
628
629         cairo_surface_destroy(surface->cairo_surface);
630         eglDestroySurface(d->dpy, surface->egl_surface);
631         wl_egl_window_destroy(surface->egl_window);
632         surface->surface = NULL;
633
634         free(surface);
635 }
636
637 static struct toysurface *
638 egl_window_surface_create(struct display *display,
639                           struct wl_surface *wl_surface,
640                           uint32_t flags,
641                           struct rectangle *rectangle)
642 {
643         struct egl_window_surface *surface;
644
645         if (display->dpy == EGL_NO_DISPLAY)
646                 return NULL;
647
648         surface = calloc(1, sizeof *surface);
649         if (!surface)
650                 return NULL;
651
652         surface->base.prepare = egl_window_surface_prepare;
653         surface->base.swap = egl_window_surface_swap;
654         surface->base.acquire = egl_window_surface_acquire;
655         surface->base.release = egl_window_surface_release;
656         surface->base.destroy = egl_window_surface_destroy;
657
658         surface->display = display;
659         surface->surface = wl_surface;
660
661         surface->egl_window = wl_egl_window_create(surface->surface,
662                                                    rectangle->width,
663                                                    rectangle->height);
664
665         surface->egl_surface = eglCreateWindowSurface(display->dpy,
666                                                       display->argb_config,
667                                                       surface->egl_window,
668                                                       NULL);
669
670         surface->cairo_surface =
671                 cairo_gl_surface_create_for_egl(display->argb_device,
672                                                 surface->egl_surface,
673                                                 rectangle->width,
674                                                 rectangle->height);
675
676         return &surface->base;
677 }
678
679 #else
680
681 static struct toysurface *
682 egl_window_surface_create(struct display *display,
683                           struct wl_surface *wl_surface,
684                           uint32_t flags,
685                           struct rectangle *rectangle)
686 {
687         return NULL;
688 }
689
690 #endif
691
692 struct shm_surface_data {
693         struct wl_buffer *buffer;
694         struct shm_pool *pool;
695 };
696
697 struct wl_buffer *
698 display_get_buffer_for_surface(struct display *display,
699                                cairo_surface_t *surface)
700 {
701         struct shm_surface_data *data;
702
703         data = cairo_surface_get_user_data(surface, &shm_surface_data_key);
704
705         return data->buffer;
706 }
707
708 static void
709 shm_pool_destroy(struct shm_pool *pool);
710
711 static void
712 shm_surface_data_destroy(void *p)
713 {
714         struct shm_surface_data *data = p;
715
716         wl_buffer_destroy(data->buffer);
717         if (data->pool)
718                 shm_pool_destroy(data->pool);
719
720         free(data);
721 }
722
723 static struct wl_shm_pool *
724 make_shm_pool(struct display *display, int size, void **data)
725 {
726         struct wl_shm_pool *pool;
727         int fd;
728
729         fd = os_create_anonymous_file(size);
730         if (fd < 0) {
731                 fprintf(stderr, "creating a buffer file for %d B failed: %m\n",
732                         size);
733                 return NULL;
734         }
735
736         *data = mmap(NULL, size, PROT_READ | PROT_WRITE, MAP_SHARED, fd, 0);
737         if (*data == MAP_FAILED) {
738                 fprintf(stderr, "mmap failed: %m\n");
739                 close(fd);
740                 return NULL;
741         }
742
743         pool = wl_shm_create_pool(display->shm, fd, size);
744
745         close(fd);
746
747         return pool;
748 }
749
750 static struct shm_pool *
751 shm_pool_create(struct display *display, size_t size)
752 {
753         struct shm_pool *pool = malloc(sizeof *pool);
754
755         if (!pool)
756                 return NULL;
757
758         pool->pool = make_shm_pool(display, size, &pool->data);
759         if (!pool->pool) {
760                 free(pool);
761                 return NULL;
762         }
763
764         pool->size = size;
765         pool->used = 0;
766
767         return pool;
768 }
769
770 static void *
771 shm_pool_allocate(struct shm_pool *pool, size_t size, int *offset)
772 {
773         if (pool->used + size > pool->size)
774                 return NULL;
775
776         *offset = pool->used;
777         pool->used += size;
778
779         return (char *) pool->data + *offset;
780 }
781
782 /* destroy the pool. this does not unmap the memory though */
783 static void
784 shm_pool_destroy(struct shm_pool *pool)
785 {
786         munmap(pool->data, pool->size);
787         wl_shm_pool_destroy(pool->pool);
788         free(pool);
789 }
790
791 /* Start allocating from the beginning of the pool again */
792 static void
793 shm_pool_reset(struct shm_pool *pool)
794 {
795         pool->used = 0;
796 }
797
798 static int
799 data_length_for_shm_surface(struct rectangle *rect)
800 {
801         int stride;
802
803         stride = cairo_format_stride_for_width (CAIRO_FORMAT_ARGB32,
804                                                 rect->width);
805         return stride * rect->height;
806 }
807
808 static cairo_surface_t *
809 display_create_shm_surface_from_pool(struct display *display,
810                                      struct rectangle *rectangle,
811                                      uint32_t flags, struct shm_pool *pool)
812 {
813         struct shm_surface_data *data;
814         uint32_t format;
815         cairo_surface_t *surface;
816         cairo_format_t cairo_format;
817         int stride, length, offset;
818         void *map;
819
820         data = malloc(sizeof *data);
821         if (data == NULL)
822                 return NULL;
823
824         if (flags & SURFACE_HINT_RGB565 && display->has_rgb565)
825                 cairo_format = CAIRO_FORMAT_RGB16_565;
826         else
827                 cairo_format = CAIRO_FORMAT_ARGB32;
828
829         stride = cairo_format_stride_for_width (cairo_format, rectangle->width);
830         length = stride * rectangle->height;
831         data->pool = NULL;
832         map = shm_pool_allocate(pool, length, &offset);
833
834         if (!map) {
835                 free(data);
836                 return NULL;
837         }
838
839         surface = cairo_image_surface_create_for_data (map,
840                                                        cairo_format,
841                                                        rectangle->width,
842                                                        rectangle->height,
843                                                        stride);
844
845         cairo_surface_set_user_data(surface, &shm_surface_data_key,
846                                     data, shm_surface_data_destroy);
847
848         if (flags & SURFACE_HINT_RGB565 && display->has_rgb565)
849                 format = WL_SHM_FORMAT_RGB565;
850         else {
851                 if (flags & SURFACE_OPAQUE)
852                         format = WL_SHM_FORMAT_XRGB8888;
853                 else
854                         format = WL_SHM_FORMAT_ARGB8888;
855         }
856
857         data->buffer = wl_shm_pool_create_buffer(pool->pool, offset,
858                                                  rectangle->width,
859                                                  rectangle->height,
860                                                  stride, format);
861
862         return surface;
863 }
864
865 static cairo_surface_t *
866 display_create_shm_surface(struct display *display,
867                            struct rectangle *rectangle, uint32_t flags,
868                            struct shm_pool *alternate_pool,
869                            struct shm_surface_data **data_ret)
870 {
871         struct shm_surface_data *data;
872         struct shm_pool *pool;
873         cairo_surface_t *surface;
874
875         if (alternate_pool) {
876                 shm_pool_reset(alternate_pool);
877                 surface = display_create_shm_surface_from_pool(display,
878                                                                rectangle,
879                                                                flags,
880                                                                alternate_pool);
881                 if (surface) {
882                         data = cairo_surface_get_user_data(surface,
883                                                            &shm_surface_data_key);
884                         goto out;
885                 }
886         }
887
888         pool = shm_pool_create(display,
889                                data_length_for_shm_surface(rectangle));
890         if (!pool)
891                 return NULL;
892
893         surface =
894                 display_create_shm_surface_from_pool(display, rectangle,
895                                                      flags, pool);
896
897         if (!surface) {
898                 shm_pool_destroy(pool);
899                 return NULL;
900         }
901
902         /* make sure we destroy the pool when the surface is destroyed */
903         data = cairo_surface_get_user_data(surface, &shm_surface_data_key);
904         data->pool = pool;
905
906 out:
907         if (data_ret)
908                 *data_ret = data;
909
910         return surface;
911 }
912
913 static int
914 check_size(struct rectangle *rect)
915 {
916         if (rect->width && rect->height)
917                 return 0;
918
919         fprintf(stderr, "tried to create surface of "
920                 "width: %d, height: %d\n", rect->width, rect->height);
921         return -1;
922 }
923
924 cairo_surface_t *
925 display_create_surface(struct display *display,
926                        struct wl_surface *surface,
927                        struct rectangle *rectangle,
928                        uint32_t flags)
929 {
930         if (check_size(rectangle) < 0)
931                 return NULL;
932
933         assert(flags & SURFACE_SHM);
934         return display_create_shm_surface(display, rectangle, flags,
935                                           NULL, NULL);
936 }
937
938 struct shm_surface_leaf {
939         cairo_surface_t *cairo_surface;
940         /* 'data' is automatically destroyed, when 'cairo_surface' is */
941         struct shm_surface_data *data;
942
943         struct shm_pool *resize_pool;
944         int busy;
945 };
946
947 static void
948 shm_surface_leaf_release(struct shm_surface_leaf *leaf)
949 {
950         if (leaf->cairo_surface)
951                 cairo_surface_destroy(leaf->cairo_surface);
952         /* leaf->data already destroyed via cairo private */
953
954         if (leaf->resize_pool)
955                 shm_pool_destroy(leaf->resize_pool);
956
957         memset(leaf, 0, sizeof *leaf);
958 }
959
960 #define MAX_LEAVES 3
961
962 struct shm_surface {
963         struct toysurface base;
964         struct display *display;
965         struct wl_surface *surface;
966         uint32_t flags;
967         int dx, dy;
968
969         struct shm_surface_leaf leaf[MAX_LEAVES];
970         struct shm_surface_leaf *current;
971 };
972
973 static struct shm_surface *
974 to_shm_surface(struct toysurface *base)
975 {
976         return container_of(base, struct shm_surface, base);
977 }
978
979 static void
980 shm_surface_buffer_state_debug(struct shm_surface *surface, const char *msg)
981 {
982 #ifdef DEBUG
983         struct shm_surface_leaf *leaf;
984         char bufs[MAX_LEAVES + 1];
985         int i;
986
987         for (i = 0; i < MAX_LEAVES; i++) {
988                 leaf = &surface->leaf[i];
989
990                 if (leaf->busy)
991                         bufs[i] = 'b';
992                 else if (leaf->cairo_surface)
993                         bufs[i] = 'a';
994                 else
995                         bufs[i] = ' ';
996         }
997
998         bufs[MAX_LEAVES] = '\0';
999         DBG_OBJ(surface->surface, "%s, leaves [%s]\n", msg, bufs);
1000 #endif
1001 }
1002
1003 static void
1004 shm_surface_buffer_release(void *data, struct wl_buffer *buffer)
1005 {
1006         struct shm_surface *surface = data;
1007         struct shm_surface_leaf *leaf;
1008         int i;
1009         int free_found;
1010
1011         shm_surface_buffer_state_debug(surface, "buffer_release before");
1012
1013         for (i = 0; i < MAX_LEAVES; i++) {
1014                 leaf = &surface->leaf[i];
1015                 if (leaf->data && leaf->data->buffer == buffer) {
1016                         leaf->busy = 0;
1017                         break;
1018                 }
1019         }
1020         assert(i < MAX_LEAVES && "unknown buffer released");
1021
1022         /* Leave one free leaf with storage, release others */
1023         free_found = 0;
1024         for (i = 0; i < MAX_LEAVES; i++) {
1025                 leaf = &surface->leaf[i];
1026
1027                 if (!leaf->cairo_surface || leaf->busy)
1028                         continue;
1029
1030                 if (!free_found)
1031                         free_found = 1;
1032                 else
1033                         shm_surface_leaf_release(leaf);
1034         }
1035
1036         shm_surface_buffer_state_debug(surface, "buffer_release  after");
1037 }
1038
1039 static const struct wl_buffer_listener shm_surface_buffer_listener = {
1040         shm_surface_buffer_release
1041 };
1042
1043 static cairo_surface_t *
1044 shm_surface_prepare(struct toysurface *base, int dx, int dy,
1045                     int32_t width, int32_t height, uint32_t flags,
1046                     enum wl_output_transform buffer_transform, int32_t buffer_scale)
1047 {
1048         int resize_hint = !!(flags & SURFACE_HINT_RESIZE);
1049         struct shm_surface *surface = to_shm_surface(base);
1050         struct rectangle rect = { 0};
1051         struct shm_surface_leaf *leaf = NULL;
1052         int i;
1053
1054         surface->dx = dx;
1055         surface->dy = dy;
1056
1057         /* pick a free buffer, preferrably one that already has storage */
1058         for (i = 0; i < MAX_LEAVES; i++) {
1059                 if (surface->leaf[i].busy)
1060                         continue;
1061
1062                 if (!leaf || surface->leaf[i].cairo_surface)
1063                         leaf = &surface->leaf[i];
1064         }
1065         DBG_OBJ(surface->surface, "pick leaf %d\n",
1066                 (int)(leaf - &surface->leaf[0]));
1067
1068         if (!leaf) {
1069                 fprintf(stderr, "%s: all buffers are held by the server.\n",
1070                         __func__);
1071                 exit(1);
1072                 return NULL;
1073         }
1074
1075         if (!resize_hint && leaf->resize_pool) {
1076                 cairo_surface_destroy(leaf->cairo_surface);
1077                 leaf->cairo_surface = NULL;
1078                 shm_pool_destroy(leaf->resize_pool);
1079                 leaf->resize_pool = NULL;
1080         }
1081
1082         surface_to_buffer_size (buffer_transform, buffer_scale, &width, &height);
1083
1084         if (leaf->cairo_surface &&
1085             cairo_image_surface_get_width(leaf->cairo_surface) == width &&
1086             cairo_image_surface_get_height(leaf->cairo_surface) == height)
1087                 goto out;
1088
1089         if (leaf->cairo_surface)
1090                 cairo_surface_destroy(leaf->cairo_surface);
1091
1092 #ifdef USE_RESIZE_POOL
1093         if (resize_hint && !leaf->resize_pool) {
1094                 /* Create a big pool to allocate from, while continuously
1095                  * resizing. Mmapping a new pool in the server
1096                  * is relatively expensive, so reusing a pool performs
1097                  * better, but may temporarily reserve unneeded memory.
1098                  */
1099                 /* We should probably base this number on the output size. */
1100                 leaf->resize_pool = shm_pool_create(surface->display,
1101                                                     6 * 1024 * 1024);
1102         }
1103 #endif
1104
1105         rect.width = width;
1106         rect.height = height;
1107
1108         leaf->cairo_surface =
1109                 display_create_shm_surface(surface->display, &rect,
1110                                            surface->flags,
1111                                            leaf->resize_pool,
1112                                            &leaf->data);
1113         wl_buffer_add_listener(leaf->data->buffer,
1114                                &shm_surface_buffer_listener, surface);
1115
1116 out:
1117         surface->current = leaf;
1118
1119         return cairo_surface_reference(leaf->cairo_surface);
1120 }
1121
1122 static void
1123 shm_surface_swap(struct toysurface *base,
1124                  enum wl_output_transform buffer_transform, int32_t buffer_scale,
1125                  struct rectangle *server_allocation)
1126 {
1127         struct shm_surface *surface = to_shm_surface(base);
1128         struct shm_surface_leaf *leaf = surface->current;
1129
1130         server_allocation->width =
1131                 cairo_image_surface_get_width(leaf->cairo_surface);
1132         server_allocation->height =
1133                 cairo_image_surface_get_height(leaf->cairo_surface);
1134
1135         buffer_to_surface_size (buffer_transform, buffer_scale,
1136                                 &server_allocation->width,
1137                                 &server_allocation->height);
1138
1139         wl_surface_attach(surface->surface, leaf->data->buffer,
1140                           surface->dx, surface->dy);
1141         wl_surface_damage(surface->surface, 0, 0,
1142                           server_allocation->width, server_allocation->height);
1143         wl_surface_commit(surface->surface);
1144
1145         DBG_OBJ(surface->surface, "leaf %d busy\n",
1146                 (int)(leaf - &surface->leaf[0]));
1147
1148         leaf->busy = 1;
1149         surface->current = NULL;
1150 }
1151
1152 static int
1153 shm_surface_acquire(struct toysurface *base, EGLContext ctx)
1154 {
1155         return -1;
1156 }
1157
1158 static void
1159 shm_surface_release(struct toysurface *base)
1160 {
1161 }
1162
1163 static void
1164 shm_surface_destroy(struct toysurface *base)
1165 {
1166         struct shm_surface *surface = to_shm_surface(base);
1167         int i;
1168
1169         for (i = 0; i < MAX_LEAVES; i++)
1170                 shm_surface_leaf_release(&surface->leaf[i]);
1171
1172         free(surface);
1173 }
1174
1175 static struct toysurface *
1176 shm_surface_create(struct display *display, struct wl_surface *wl_surface,
1177                    uint32_t flags, struct rectangle *rectangle)
1178 {
1179         struct shm_surface *surface;
1180         DBG_OBJ(wl_surface, "\n");
1181
1182         surface = xmalloc(sizeof *surface);
1183         memset(surface, 0, sizeof *surface);
1184
1185         if (!surface)
1186                 return NULL;
1187
1188         surface->base.prepare = shm_surface_prepare;
1189         surface->base.swap = shm_surface_swap;
1190         surface->base.acquire = shm_surface_acquire;
1191         surface->base.release = shm_surface_release;
1192         surface->base.destroy = shm_surface_destroy;
1193
1194         surface->display = display;
1195         surface->surface = wl_surface;
1196         surface->flags = flags;
1197
1198         return &surface->base;
1199 }
1200
1201 /*
1202  * The following correspondences between file names and cursors was copied
1203  * from: https://bugs.kde.org/attachment.cgi?id=67313
1204  */
1205
1206 static const char *bottom_left_corners[] = {
1207         "bottom_left_corner",
1208         "sw-resize",
1209         "size_bdiag"
1210 };
1211
1212 static const char *bottom_right_corners[] = {
1213         "bottom_right_corner",
1214         "se-resize",
1215         "size_fdiag"
1216 };
1217
1218 static const char *bottom_sides[] = {
1219         "bottom_side",
1220         "s-resize",
1221         "size_ver"
1222 };
1223
1224 static const char *grabbings[] = {
1225         "grabbing",
1226         "closedhand",
1227         "208530c400c041818281048008011002"
1228 };
1229
1230 static const char *left_ptrs[] = {
1231         "left_ptr",
1232         "default",
1233         "top_left_arrow",
1234         "left-arrow"
1235 };
1236
1237 static const char *left_sides[] = {
1238         "left_side",
1239         "w-resize",
1240         "size_hor"
1241 };
1242
1243 static const char *right_sides[] = {
1244         "right_side",
1245         "e-resize",
1246         "size_hor"
1247 };
1248
1249 static const char *top_left_corners[] = {
1250         "top_left_corner",
1251         "nw-resize",
1252         "size_fdiag"
1253 };
1254
1255 static const char *top_right_corners[] = {
1256         "top_right_corner",
1257         "ne-resize",
1258         "size_bdiag"
1259 };
1260
1261 static const char *top_sides[] = {
1262         "top_side",
1263         "n-resize",
1264         "size_ver"
1265 };
1266
1267 static const char *xterms[] = {
1268         "xterm",
1269         "ibeam",
1270         "text"
1271 };
1272
1273 static const char *hand1s[] = {
1274         "hand1",
1275         "pointer",
1276         "pointing_hand",
1277         "e29285e634086352946a0e7090d73106"
1278 };
1279
1280 static const char *watches[] = {
1281         "watch",
1282         "wait",
1283         "0426c94ea35c87780ff01dc239897213"
1284 };
1285
1286 struct cursor_alternatives {
1287         const char **names;
1288         size_t count;
1289 };
1290
1291 static const struct cursor_alternatives cursors[] = {
1292         {bottom_left_corners, ARRAY_LENGTH(bottom_left_corners)},
1293         {bottom_right_corners, ARRAY_LENGTH(bottom_right_corners)},
1294         {bottom_sides, ARRAY_LENGTH(bottom_sides)},
1295         {grabbings, ARRAY_LENGTH(grabbings)},
1296         {left_ptrs, ARRAY_LENGTH(left_ptrs)},
1297         {left_sides, ARRAY_LENGTH(left_sides)},
1298         {right_sides, ARRAY_LENGTH(right_sides)},
1299         {top_left_corners, ARRAY_LENGTH(top_left_corners)},
1300         {top_right_corners, ARRAY_LENGTH(top_right_corners)},
1301         {top_sides, ARRAY_LENGTH(top_sides)},
1302         {xterms, ARRAY_LENGTH(xterms)},
1303         {hand1s, ARRAY_LENGTH(hand1s)},
1304         {watches, ARRAY_LENGTH(watches)},
1305 };
1306
1307 static void
1308 create_cursors(struct display *display)
1309 {
1310         int config_fd;
1311         char *theme = NULL;
1312         unsigned int size = 32;
1313         unsigned int i, j;
1314         struct wl_cursor *cursor;
1315         struct config_key shell_keys[] = {
1316                 { "cursor-theme", CONFIG_KEY_STRING, &theme },
1317                 { "cursor-size", CONFIG_KEY_UNSIGNED_INTEGER, &size },
1318         };
1319         struct config_section cs[] = {
1320                 { "shell", shell_keys, ARRAY_LENGTH(shell_keys), NULL },
1321         };
1322
1323         config_fd = open_config_file("weston.ini");
1324         parse_config_file(config_fd, cs, ARRAY_LENGTH(cs), NULL);
1325         close(config_fd);
1326
1327         display->cursor_theme = wl_cursor_theme_load(theme, size, display->shm);
1328         display->cursors =
1329                 xmalloc(ARRAY_LENGTH(cursors) * sizeof display->cursors[0]);
1330
1331         for (i = 0; i < ARRAY_LENGTH(cursors); i++) {
1332                 cursor = NULL;
1333                 for (j = 0; !cursor && j < cursors[i].count; ++j)
1334                         cursor = wl_cursor_theme_get_cursor(
1335                             display->cursor_theme, cursors[i].names[j]);
1336
1337                 if (!cursor)
1338                         fprintf(stderr, "could not load cursor '%s'\n",
1339                                 cursors[i].names[0]);
1340
1341                 display->cursors[i] = cursor;
1342         }
1343 }
1344
1345 static void
1346 destroy_cursors(struct display *display)
1347 {
1348         wl_cursor_theme_destroy(display->cursor_theme);
1349         free(display->cursors);
1350 }
1351
1352 struct wl_cursor_image *
1353 display_get_pointer_image(struct display *display, int pointer)
1354 {
1355         struct wl_cursor *cursor = display->cursors[pointer];
1356
1357         return cursor ? cursor->images[0] : NULL;
1358 }
1359
1360 static void
1361 surface_flush(struct surface *surface)
1362 {
1363         if (!surface->cairo_surface)
1364                 return;
1365
1366         if (surface->opaque_region) {
1367                 wl_surface_set_opaque_region(surface->surface,
1368                                              surface->opaque_region);
1369                 wl_region_destroy(surface->opaque_region);
1370                 surface->opaque_region = NULL;
1371         }
1372
1373         if (surface->input_region) {
1374                 wl_surface_set_input_region(surface->surface,
1375                                             surface->input_region);
1376                 wl_region_destroy(surface->input_region);
1377                 surface->input_region = NULL;
1378         }
1379
1380         surface->toysurface->swap(surface->toysurface,
1381                                   surface->buffer_transform, surface->buffer_scale,
1382                                   &surface->server_allocation);
1383
1384         cairo_surface_destroy(surface->cairo_surface);
1385         surface->cairo_surface = NULL;
1386 }
1387
1388 int
1389 window_has_focus(struct window *window)
1390 {
1391         return window->focus_count > 0;
1392 }
1393
1394 static void
1395 window_flush(struct window *window)
1396 {
1397         struct surface *surface;
1398
1399         if (window->type == TYPE_NONE) {
1400                 window->type = TYPE_TOPLEVEL;
1401                 if (window->shell_surface)
1402                         wl_shell_surface_set_toplevel(window->shell_surface);
1403         }
1404
1405         wl_list_for_each(surface, &window->subsurface_list, link) {
1406                 if (surface == window->main_surface)
1407                         continue;
1408
1409                 surface_flush(surface);
1410         }
1411
1412         surface_flush(window->main_surface);
1413 }
1414
1415 struct display *
1416 window_get_display(struct window *window)
1417 {
1418         return window->display;
1419 }
1420
1421 static void
1422 surface_create_surface(struct surface *surface, int dx, int dy, uint32_t flags)
1423 {
1424         struct display *display = surface->window->display;
1425         struct rectangle allocation = surface->allocation;
1426
1427         if (!surface->toysurface && display->dpy &&
1428             surface->buffer_type == WINDOW_BUFFER_TYPE_EGL_WINDOW) {
1429                 surface->toysurface =
1430                         egl_window_surface_create(display,
1431                                                   surface->surface,
1432                                                   flags,
1433                                                   &allocation);
1434         }
1435
1436         if (!surface->toysurface)
1437                 surface->toysurface = shm_surface_create(display,
1438                                                          surface->surface,
1439                                                          flags, &allocation);
1440
1441         surface->cairo_surface = surface->toysurface->prepare(
1442                 surface->toysurface, dx, dy,
1443                 allocation.width, allocation.height, flags,
1444                 surface->buffer_transform, surface->buffer_scale);
1445 }
1446
1447 static void
1448 window_create_main_surface(struct window *window)
1449 {
1450         struct surface *surface = window->main_surface;
1451         uint32_t flags = 0;
1452         int dx = 0;
1453         int dy = 0;
1454
1455         if (window->resizing)
1456                 flags |= SURFACE_HINT_RESIZE;
1457
1458         if (window->preferred_format == WINDOW_PREFERRED_FORMAT_RGB565)
1459                 flags |= SURFACE_HINT_RGB565;
1460
1461         if (window->resize_edges & WINDOW_RESIZING_LEFT)
1462                 dx = surface->server_allocation.width -
1463                         surface->allocation.width;
1464
1465         if (window->resize_edges & WINDOW_RESIZING_TOP)
1466                 dy = surface->server_allocation.height -
1467                         surface->allocation.height;
1468
1469         window->resize_edges = 0;
1470
1471         surface_create_surface(surface, dx, dy, flags);
1472 }
1473
1474 int
1475 window_get_buffer_transform(struct window *window)
1476 {
1477         return window->main_surface->buffer_transform;
1478 }
1479
1480 void
1481 window_set_buffer_transform(struct window *window,
1482                             enum wl_output_transform transform)
1483 {
1484         window->main_surface->buffer_transform = transform;
1485         wl_surface_set_buffer_transform(window->main_surface->surface,
1486                                         transform);
1487 }
1488
1489 void
1490 window_set_buffer_scale(struct window *window,
1491                         int32_t scale)
1492 {
1493         window->main_surface->buffer_scale = scale;
1494         wl_surface_set_buffer_scale(window->main_surface->surface,
1495                                     scale);
1496 }
1497
1498 uint32_t
1499 window_get_buffer_scale(struct window *window)
1500 {
1501         return window->main_surface->buffer_scale;
1502 }
1503
1504 uint32_t
1505 window_get_output_scale(struct window *window)
1506 {
1507         struct window_output *window_output;
1508         struct window_output *window_output_tmp;
1509         int scale = 1;
1510
1511         wl_list_for_each_safe(window_output, window_output_tmp,
1512                               &window->window_output_list, link) {
1513                 if (window_output->output->scale > scale)
1514                         scale = window_output->output->scale;
1515         }
1516
1517         return scale;
1518 }
1519
1520 static void frame_destroy(struct frame *frame);
1521
1522 static void
1523 surface_destroy(struct surface *surface)
1524 {
1525         if (surface->frame_cb)
1526                 wl_callback_destroy(surface->frame_cb);
1527
1528         if (surface->input_region)
1529                 wl_region_destroy(surface->input_region);
1530
1531         if (surface->opaque_region)
1532                 wl_region_destroy(surface->opaque_region);
1533
1534         if (surface->subsurface)
1535                 wl_subsurface_destroy(surface->subsurface);
1536
1537         wl_surface_destroy(surface->surface);
1538
1539         if (surface->toysurface)
1540                 surface->toysurface->destroy(surface->toysurface);
1541
1542         wl_list_remove(&surface->link);
1543         free(surface);
1544 }
1545
1546 void
1547 window_destroy(struct window *window)
1548 {
1549         struct display *display = window->display;
1550         struct input *input;
1551         struct window_output *window_output;
1552         struct window_output *window_output_tmp;
1553
1554         wl_list_remove(&window->redraw_task.link);
1555
1556         wl_list_for_each(input, &display->input_list, link) {     
1557                 if (input->touch_focus == window)
1558                         input->touch_focus = NULL;
1559                 if (input->pointer_focus == window)
1560                         input->pointer_focus = NULL;
1561                 if (input->keyboard_focus == window)
1562                         input->keyboard_focus = NULL;
1563                 if (input->focus_widget &&
1564                     input->focus_widget->window == window)
1565                         input->focus_widget = NULL;
1566         }
1567
1568         wl_list_for_each_safe(window_output, window_output_tmp,
1569                               &window->window_output_list, link) {
1570                 free (window_output);
1571         }
1572
1573         if (window->frame)
1574                 frame_destroy(window->frame);
1575
1576         if (window->shell_surface)
1577                 wl_shell_surface_destroy(window->shell_surface);
1578
1579         surface_destroy(window->main_surface);
1580
1581         wl_list_remove(&window->link);
1582
1583         free(window->title);
1584         free(window);
1585 }
1586
1587 static struct widget *
1588 widget_find_widget(struct widget *widget, int32_t x, int32_t y)
1589 {
1590         struct widget *child, *target;
1591
1592         wl_list_for_each(child, &widget->child_list, link) {
1593                 target = widget_find_widget(child, x, y);
1594                 if (target)
1595                         return target;
1596         }
1597
1598         if (widget->allocation.x <= x &&
1599             x < widget->allocation.x + widget->allocation.width &&
1600             widget->allocation.y <= y &&
1601             y < widget->allocation.y + widget->allocation.height) {
1602                 return widget;
1603         }
1604
1605         return NULL;
1606 }
1607
1608 static struct widget *
1609 window_find_widget(struct window *window, int32_t x, int32_t y)
1610 {
1611         struct surface *surface;
1612         struct widget *widget;
1613
1614         wl_list_for_each(surface, &window->subsurface_list, link) {
1615                 widget = widget_find_widget(surface->widget, x, y);
1616                 if (widget)
1617                         return widget;
1618         }
1619
1620         return NULL;
1621 }
1622
1623 static struct widget *
1624 widget_create(struct window *window, struct surface *surface, void *data)
1625 {
1626         struct widget *widget;
1627
1628         widget = xzalloc(sizeof *widget);
1629         widget->window = window;
1630         widget->surface = surface;
1631         widget->user_data = data;
1632         widget->allocation = surface->allocation;
1633         wl_list_init(&widget->child_list);
1634         widget->opaque = 0;
1635         widget->tooltip = NULL;
1636         widget->tooltip_count = 0;
1637         widget->default_cursor = CURSOR_LEFT_PTR;
1638
1639         return widget;
1640 }
1641
1642 struct widget *
1643 window_add_widget(struct window *window, void *data)
1644 {
1645         struct widget *widget;
1646
1647         widget = widget_create(window, window->main_surface, data);
1648         wl_list_init(&widget->link);
1649         window->main_surface->widget = widget;
1650
1651         return widget;
1652 }
1653
1654 struct widget *
1655 widget_add_widget(struct widget *parent, void *data)
1656 {
1657         struct widget *widget;
1658
1659         widget = widget_create(parent->window, parent->surface, data);
1660         wl_list_insert(parent->child_list.prev, &widget->link);
1661
1662         return widget;
1663 }
1664
1665 void
1666 widget_destroy(struct widget *widget)
1667 {
1668         struct display *display = widget->window->display;
1669         struct surface *surface = widget->surface;
1670         struct input *input;
1671
1672         /* Destroy the sub-surface along with the root widget */
1673         if (surface->widget == widget && surface->subsurface)
1674                 surface_destroy(widget->surface);
1675
1676         if (widget->tooltip) {
1677                 free(widget->tooltip);
1678                 widget->tooltip = NULL;
1679         }
1680
1681         wl_list_for_each(input, &display->input_list, link) {
1682                 if (input->focus_widget == widget)
1683                         input->focus_widget = NULL;
1684         }
1685
1686         wl_list_remove(&widget->link);
1687         free(widget);
1688 }
1689
1690 void
1691 widget_set_default_cursor(struct widget *widget, int cursor)
1692 {
1693         widget->default_cursor = cursor;
1694 }
1695
1696 void
1697 widget_get_allocation(struct widget *widget, struct rectangle *allocation)
1698 {
1699         *allocation = widget->allocation;
1700 }
1701
1702 void
1703 widget_set_size(struct widget *widget, int32_t width, int32_t height)
1704 {
1705         widget->allocation.width = width;
1706         widget->allocation.height = height;
1707 }
1708
1709 void
1710 widget_set_allocation(struct widget *widget,
1711                       int32_t x, int32_t y, int32_t width, int32_t height)
1712 {
1713         widget->allocation.x = x;
1714         widget->allocation.y = y;
1715         widget_set_size(widget, width, height);
1716 }
1717
1718 void
1719 widget_set_transparent(struct widget *widget, int transparent)
1720 {
1721         widget->opaque = !transparent;
1722 }
1723
1724 void *
1725 widget_get_user_data(struct widget *widget)
1726 {
1727         return widget->user_data;
1728 }
1729
1730 static cairo_surface_t *
1731 widget_get_cairo_surface(struct widget *widget)
1732 {
1733         struct surface *surface = widget->surface;
1734         struct window *window = widget->window;
1735
1736         if (!surface->cairo_surface) {
1737                 if (surface == window->main_surface)
1738                         window_create_main_surface(window);
1739                 else
1740                         surface_create_surface(surface, 0, 0, 0);
1741         }
1742
1743         return surface->cairo_surface;
1744 }
1745
1746 static void
1747 widget_cairo_update_transform(struct widget *widget, cairo_t *cr)
1748 {
1749         struct surface *surface = widget->surface;
1750         double angle;
1751         cairo_matrix_t m;
1752         enum wl_output_transform transform;
1753         int surface_width, surface_height;
1754         int translate_x, translate_y;
1755         int32_t scale;
1756
1757         surface_width = surface->allocation.width;
1758         surface_height = surface->allocation.height;
1759
1760         transform = surface->buffer_transform;
1761         scale = surface->buffer_scale;
1762
1763         switch (transform) {
1764         case WL_OUTPUT_TRANSFORM_FLIPPED:
1765         case WL_OUTPUT_TRANSFORM_FLIPPED_90:
1766         case WL_OUTPUT_TRANSFORM_FLIPPED_180:
1767         case WL_OUTPUT_TRANSFORM_FLIPPED_270:
1768                 cairo_matrix_init(&m, -1, 0, 0, 1, 0, 0);
1769                 break;
1770         default:
1771                 cairo_matrix_init_identity(&m);
1772                 break;
1773         }
1774
1775         switch (transform) {
1776         case WL_OUTPUT_TRANSFORM_NORMAL:
1777         default:
1778                 angle = 0;
1779                 translate_x = 0;
1780                 translate_y = 0;
1781                 break;
1782         case WL_OUTPUT_TRANSFORM_FLIPPED:
1783                 angle = 0;
1784                 translate_x = surface_width;
1785                 translate_y = 0;
1786                 break;
1787         case WL_OUTPUT_TRANSFORM_90:
1788                 angle = M_PI_2;
1789                 translate_x = surface_height;
1790                 translate_y = 0;
1791                 break;
1792         case WL_OUTPUT_TRANSFORM_FLIPPED_90:
1793                 angle = M_PI_2;
1794                 translate_x = surface_height;
1795                 translate_y = surface_width;
1796                 break;
1797         case WL_OUTPUT_TRANSFORM_180:
1798                 angle = M_PI;
1799                 translate_x = surface_width;
1800                 translate_y = surface_height;
1801                 break;
1802         case WL_OUTPUT_TRANSFORM_FLIPPED_180:
1803                 angle = M_PI;
1804                 translate_x = 0;
1805                 translate_y = surface_height;
1806                 break;
1807         case WL_OUTPUT_TRANSFORM_270:
1808                 angle = M_PI + M_PI_2;
1809                 translate_x = 0;
1810                 translate_y = surface_width;
1811                 break;
1812         case WL_OUTPUT_TRANSFORM_FLIPPED_270:
1813                 angle = M_PI + M_PI_2;
1814                 translate_x = 0;
1815                 translate_y = 0;
1816                 break;
1817         }
1818
1819         cairo_scale(cr, scale, scale);
1820         cairo_translate(cr, translate_x, translate_y);
1821         cairo_rotate(cr, angle);
1822         cairo_transform(cr, &m);
1823 }
1824
1825 cairo_t *
1826 widget_cairo_create(struct widget *widget)
1827 {
1828         struct surface *surface = widget->surface;
1829         cairo_surface_t *cairo_surface;
1830         cairo_t *cr;
1831
1832         cairo_surface = widget_get_cairo_surface(widget);
1833         cr = cairo_create(cairo_surface);
1834
1835         widget_cairo_update_transform(widget, cr);
1836
1837         cairo_translate(cr, -surface->allocation.x, -surface->allocation.y);
1838
1839         return cr;
1840 }
1841
1842 struct wl_surface *
1843 widget_get_wl_surface(struct widget *widget)
1844 {
1845         return widget->surface->surface;
1846 }
1847
1848 uint32_t
1849 widget_get_last_time(struct widget *widget)
1850 {
1851         return widget->surface->last_time;
1852 }
1853
1854 void
1855 widget_input_region_add(struct widget *widget, const struct rectangle *rect)
1856 {
1857         struct wl_compositor *comp = widget->window->display->compositor;
1858         struct surface *surface = widget->surface;
1859
1860         if (!surface->input_region)
1861                 surface->input_region = wl_compositor_create_region(comp);
1862
1863         if (rect) {
1864                 wl_region_add(surface->input_region,
1865                               rect->x, rect->y, rect->width, rect->height);
1866         }
1867 }
1868
1869 void
1870 widget_set_resize_handler(struct widget *widget,
1871                           widget_resize_handler_t handler)
1872 {
1873         widget->resize_handler = handler;
1874 }
1875
1876 void
1877 widget_set_redraw_handler(struct widget *widget,
1878                           widget_redraw_handler_t handler)
1879 {
1880         widget->redraw_handler = handler;
1881 }
1882
1883 void
1884 widget_set_enter_handler(struct widget *widget, widget_enter_handler_t handler)
1885 {
1886         widget->enter_handler = handler;
1887 }
1888
1889 void
1890 widget_set_leave_handler(struct widget *widget, widget_leave_handler_t handler)
1891 {
1892         widget->leave_handler = handler;
1893 }
1894
1895 void
1896 widget_set_motion_handler(struct widget *widget,
1897                           widget_motion_handler_t handler)
1898 {
1899         widget->motion_handler = handler;
1900 }
1901
1902 void
1903 widget_set_button_handler(struct widget *widget,
1904                           widget_button_handler_t handler)
1905 {
1906         widget->button_handler = handler;
1907 }
1908
1909 void
1910 widget_set_touch_up_handler(struct widget *widget,
1911                             widget_touch_up_handler_t handler)
1912 {
1913         widget->touch_up_handler = handler;
1914 }
1915
1916 void
1917 widget_set_touch_down_handler(struct widget *widget,
1918                               widget_touch_down_handler_t handler)
1919 {
1920         widget->touch_down_handler = handler;
1921 }
1922
1923 void
1924 widget_set_touch_motion_handler(struct widget *widget,
1925                                 widget_touch_motion_handler_t handler)
1926 {
1927         widget->touch_motion_handler = handler;
1928 }
1929
1930 void
1931 widget_set_touch_frame_handler(struct widget *widget,
1932                                widget_touch_frame_handler_t handler)
1933 {
1934         widget->touch_frame_handler = handler;
1935 }
1936
1937 void
1938 widget_set_touch_cancel_handler(struct widget *widget,
1939                                 widget_touch_cancel_handler_t handler)
1940 {
1941         widget->touch_cancel_handler = handler;
1942 }
1943
1944 void
1945 widget_set_axis_handler(struct widget *widget,
1946                         widget_axis_handler_t handler)
1947 {
1948         widget->axis_handler = handler;
1949 }
1950
1951 static void
1952 window_schedule_redraw_task(struct window *window);
1953
1954 void
1955 widget_schedule_redraw(struct widget *widget)
1956 {
1957         DBG_OBJ(widget->surface->surface, "widget %p\n", widget);
1958         widget->surface->redraw_needed = 1;
1959         window_schedule_redraw_task(widget->window);
1960 }
1961
1962 cairo_surface_t *
1963 window_get_surface(struct window *window)
1964 {
1965         cairo_surface_t *cairo_surface;
1966
1967         cairo_surface = widget_get_cairo_surface(window->main_surface->widget);
1968
1969         return cairo_surface_reference(cairo_surface);
1970 }
1971
1972 struct wl_surface *
1973 window_get_wl_surface(struct window *window)
1974 {
1975         return window->main_surface->surface;
1976 }
1977
1978 struct wl_shell_surface *
1979 window_get_wl_shell_surface(struct window *window)
1980 {
1981         return window->shell_surface;
1982 }
1983
1984 static void
1985 tooltip_redraw_handler(struct widget *widget, void *data)
1986 {
1987         cairo_t *cr;
1988         const int32_t r = 3;
1989         struct tooltip *tooltip = data;
1990         int32_t width, height;
1991
1992         cr = widget_cairo_create(widget);
1993         cairo_set_operator(cr, CAIRO_OPERATOR_SOURCE);
1994         cairo_set_source_rgba(cr, 0.0, 0.0, 0.0, 0.0);
1995         cairo_paint(cr);
1996
1997         width = widget->allocation.width;
1998         height = widget->allocation.height;
1999         rounded_rect(cr, 0, 0, width, height, r);
2000
2001         cairo_set_operator(cr, CAIRO_OPERATOR_OVER);
2002         cairo_set_source_rgba(cr, 0.0, 0.0, 0.4, 0.8);
2003         cairo_fill(cr);
2004
2005         cairo_set_source_rgb(cr, 1.0, 1.0, 1.0);
2006         cairo_move_to(cr, 10, 16);
2007         cairo_show_text(cr, tooltip->entry);
2008         cairo_destroy(cr);
2009 }
2010
2011 static cairo_text_extents_t
2012 get_text_extents(struct tooltip *tooltip)
2013 {
2014         cairo_t *cr;
2015         cairo_text_extents_t extents;
2016
2017         /* Use the dummy_surface because tooltip's surface was not
2018          * created yet, and parent does not have a valid surface
2019          * outside repaint, either.
2020          */
2021         cr = cairo_create(tooltip->window->display->dummy_surface);
2022         cairo_text_extents(cr, tooltip->entry, &extents);
2023         cairo_destroy(cr);
2024
2025         return extents;
2026 }
2027
2028 static int
2029 window_create_tooltip(struct tooltip *tooltip)
2030 {
2031         struct widget *parent = tooltip->parent;
2032         struct display *display = parent->window->display;
2033         struct window *window;
2034         const int offset_y = 27;
2035         const int margin = 3;
2036         cairo_text_extents_t extents;
2037
2038         if (tooltip->widget)
2039                 return 0;
2040
2041         window = window_create_transient(display, parent->window, tooltip->x,
2042                                          tooltip->y + offset_y,
2043                                          WL_SHELL_SURFACE_TRANSIENT_INACTIVE);
2044         if (!window)
2045                 return -1;
2046
2047         tooltip->window = window;
2048         tooltip->widget = window_add_widget(tooltip->window, tooltip);
2049
2050         extents = get_text_extents(tooltip);
2051         widget_set_redraw_handler(tooltip->widget, tooltip_redraw_handler);
2052         window_schedule_resize(window, extents.width + 20, 20 + margin * 2);
2053
2054         return 0;
2055 }
2056
2057 void
2058 widget_destroy_tooltip(struct widget *parent)
2059 {
2060         struct tooltip *tooltip = parent->tooltip;
2061
2062         parent->tooltip_count = 0;
2063         if (!tooltip)
2064                 return;
2065
2066         if (tooltip->widget) {
2067                 widget_destroy(tooltip->widget);
2068                 window_destroy(tooltip->window);
2069                 tooltip->widget = NULL;
2070                 tooltip->window = NULL;
2071         }
2072
2073         close(tooltip->tooltip_fd);
2074         free(tooltip->entry);
2075         free(tooltip);
2076         parent->tooltip = NULL;
2077 }
2078
2079 static void
2080 tooltip_func(struct task *task, uint32_t events)
2081 {
2082         struct tooltip *tooltip =
2083                 container_of(task, struct tooltip, tooltip_task);
2084         uint64_t exp;
2085
2086         if (read(tooltip->tooltip_fd, &exp, sizeof (uint64_t)) != sizeof (uint64_t))
2087                 abort();
2088         window_create_tooltip(tooltip);
2089 }
2090
2091 #define TOOLTIP_TIMEOUT 500
2092 static int
2093 tooltip_timer_reset(struct tooltip *tooltip)
2094 {
2095         struct itimerspec its;
2096
2097         its.it_interval.tv_sec = 0;
2098         its.it_interval.tv_nsec = 0;
2099         its.it_value.tv_sec = TOOLTIP_TIMEOUT / 1000;
2100         its.it_value.tv_nsec = (TOOLTIP_TIMEOUT % 1000) * 1000 * 1000;
2101         if (timerfd_settime(tooltip->tooltip_fd, 0, &its, NULL) < 0) {
2102                 fprintf(stderr, "could not set timerfd\n: %m");
2103                 return -1;
2104         }
2105
2106         return 0;
2107 }
2108
2109 int
2110 widget_set_tooltip(struct widget *parent, char *entry, float x, float y)
2111 {
2112         struct tooltip *tooltip = parent->tooltip;
2113
2114         parent->tooltip_count++;
2115         if (tooltip) {
2116                 tooltip->x = x;
2117                 tooltip->y = y;
2118                 tooltip_timer_reset(tooltip);
2119                 return 0;
2120         }
2121
2122         /* the handler might be triggered too fast via input device motion, so
2123          * we need this check here to make sure tooltip is fully initialized */
2124         if (parent->tooltip_count > 1)
2125                 return 0;
2126
2127         tooltip = malloc(sizeof *tooltip);
2128         if (!tooltip)
2129                 return -1;
2130
2131         parent->tooltip = tooltip;
2132         tooltip->parent = parent;
2133         tooltip->widget = NULL;
2134         tooltip->window = NULL;
2135         tooltip->x = x;
2136         tooltip->y = y;
2137         tooltip->entry = strdup(entry);
2138         tooltip->tooltip_fd = timerfd_create(CLOCK_MONOTONIC, TFD_CLOEXEC);
2139         if (tooltip->tooltip_fd < 0) {
2140                 fprintf(stderr, "could not create timerfd\n: %m");
2141                 return -1;
2142         }
2143
2144         tooltip->tooltip_task.run = tooltip_func;
2145         display_watch_fd(parent->window->display, tooltip->tooltip_fd,
2146                          EPOLLIN, &tooltip->tooltip_task);
2147         tooltip_timer_reset(tooltip);
2148
2149         return 0;
2150 }
2151
2152 static void
2153 workspace_manager_state(void *data,
2154                         struct workspace_manager *workspace_manager,
2155                         uint32_t current,
2156                         uint32_t count)
2157 {
2158         struct display *display = data;
2159
2160         display->workspace = current;
2161         display->workspace_count = count;
2162 }
2163
2164 static const struct workspace_manager_listener workspace_manager_listener = {
2165         workspace_manager_state
2166 };
2167
2168 static void
2169 frame_resize_handler(struct widget *widget,
2170                      int32_t width, int32_t height, void *data)
2171 {
2172         struct frame *frame = data;
2173         struct widget *child = frame->child;
2174         struct rectangle allocation;
2175         struct display *display = widget->window->display;
2176         struct surface *surface = widget->surface;
2177         struct frame_button * button;
2178         struct theme *t = display->theme;
2179         int x_l, x_r, y, w, h;
2180         int decoration_width, decoration_height;
2181         int opaque_margin, shadow_margin;
2182
2183         switch (widget->window->type) {
2184         case TYPE_FULLSCREEN:
2185                 decoration_width = 0;
2186                 decoration_height = 0;
2187
2188                 allocation.x = 0;
2189                 allocation.y = 0;
2190                 allocation.width = width;
2191                 allocation.height = height;
2192                 opaque_margin = 0;
2193
2194                 wl_list_for_each(button, &frame->buttons_list, link)
2195                         button->widget->opaque = 1;
2196                 break;
2197         case TYPE_MAXIMIZED:
2198                 decoration_width = t->width * 2;
2199                 decoration_height = t->width + t->titlebar_height;
2200
2201                 allocation.x = t->width;
2202                 allocation.y = t->titlebar_height;
2203                 allocation.width = width - decoration_width;
2204                 allocation.height = height - decoration_height;
2205
2206                 opaque_margin = 0;
2207
2208                 wl_list_for_each(button, &frame->buttons_list, link)
2209                         button->widget->opaque = 0;
2210                 break;
2211         default:
2212                 decoration_width = (t->width + t->margin) * 2;
2213                 decoration_height = t->width +
2214                         t->titlebar_height + t->margin * 2;
2215
2216                 allocation.x = t->width + t->margin;
2217                 allocation.y = t->titlebar_height + t->margin;
2218                 allocation.width = width - decoration_width;
2219                 allocation.height = height - decoration_height;
2220
2221                 opaque_margin = t->margin + t->frame_radius;
2222
2223                 wl_list_for_each(button, &frame->buttons_list, link)
2224                         button->widget->opaque = 0;
2225                 break;
2226         }
2227
2228         widget_set_allocation(child, allocation.x, allocation.y,
2229                               allocation.width, allocation.height);
2230
2231         if (child->resize_handler)
2232                 child->resize_handler(child,
2233                                       allocation.width,
2234                                       allocation.height,
2235                                       child->user_data);
2236
2237         width = child->allocation.width + decoration_width;
2238         height = child->allocation.height + decoration_height;
2239
2240         shadow_margin = widget->window->type == TYPE_MAXIMIZED ? 0 : t->margin;
2241
2242         surface->input_region =
2243                 wl_compositor_create_region(display->compositor);
2244         if (widget->window->type != TYPE_FULLSCREEN) {
2245                 wl_region_add(surface->input_region,
2246                               shadow_margin, shadow_margin,
2247                               width - 2 * shadow_margin,
2248                               height - 2 * shadow_margin);
2249         } else {
2250                 wl_region_add(surface->input_region, 0, 0, width, height);
2251         }
2252
2253         widget_set_allocation(widget, 0, 0, width, height);
2254
2255         if (child->opaque)
2256                 wl_region_add(surface->opaque_region,
2257                               opaque_margin, opaque_margin,
2258                               widget->allocation.width - 2 * opaque_margin,
2259                               widget->allocation.height - 2 * opaque_margin);
2260
2261         /* frame internal buttons */
2262         x_r = frame->widget->allocation.width - t->width - shadow_margin;
2263         x_l = t->width + shadow_margin;
2264         y = t->width + shadow_margin;
2265         wl_list_for_each(button, &frame->buttons_list, link) {
2266                 const int button_padding = 4;
2267                 w = cairo_image_surface_get_width(button->icon);
2268                 h = cairo_image_surface_get_height(button->icon);
2269
2270                 if (button->decoration == FRAME_BUTTON_FANCY)
2271                         w += 10;
2272
2273                 if (button->align == FRAME_BUTTON_LEFT) {
2274                         widget_set_allocation(button->widget,
2275                                               x_l, y , w + 1, h + 1);
2276                         x_l += w;
2277                         x_l += button_padding;
2278                 } else {
2279                         x_r -= w;
2280                         widget_set_allocation(button->widget,
2281                                               x_r, y , w + 1, h + 1);
2282                         x_r -= button_padding;
2283                 }
2284         }
2285 }
2286
2287 static int
2288 frame_button_enter_handler(struct widget *widget,
2289                            struct input *input, float x, float y, void *data)
2290 {
2291         struct frame_button *frame_button = data;
2292
2293         widget_schedule_redraw(frame_button->widget);
2294         frame_button->state = FRAME_BUTTON_OVER;
2295
2296         return CURSOR_LEFT_PTR;
2297 }
2298
2299 static void
2300 frame_button_leave_handler(struct widget *widget, struct input *input, void *data)
2301 {
2302         struct frame_button *frame_button = data;
2303
2304         widget_schedule_redraw(frame_button->widget);
2305         frame_button->state = FRAME_BUTTON_DEFAULT;
2306 }
2307
2308 static void
2309 frame_button_button_handler(struct widget *widget,
2310                             struct input *input, uint32_t time,
2311                             uint32_t button,
2312                             enum wl_pointer_button_state state, void *data)
2313 {
2314         struct frame_button *frame_button = data;
2315         struct window *window = widget->window;
2316         int was_pressed = (frame_button->state == FRAME_BUTTON_ACTIVE);
2317
2318         if (button != BTN_LEFT)
2319                 return;
2320
2321         switch (state) {
2322         case WL_POINTER_BUTTON_STATE_PRESSED:
2323                 frame_button->state = FRAME_BUTTON_ACTIVE;
2324                 widget_schedule_redraw(frame_button->widget);
2325
2326                 if (frame_button->type == FRAME_BUTTON_ICON)
2327                         window_show_frame_menu(window, input, time);
2328                 return;
2329         case WL_POINTER_BUTTON_STATE_RELEASED:
2330                 frame_button->state = FRAME_BUTTON_DEFAULT;
2331                 widget_schedule_redraw(frame_button->widget);
2332                 break;
2333         }
2334
2335         if (!was_pressed)
2336                 return;
2337
2338         switch (frame_button->type) {
2339         case FRAME_BUTTON_CLOSE:
2340                 if (window->close_handler)
2341                         window->close_handler(window->parent,
2342                                               window->user_data);
2343                 else
2344                         display_exit(window->display);
2345                 break;
2346         case FRAME_BUTTON_MINIMIZE:
2347                 fprintf(stderr,"Minimize stub\n");
2348                 break;
2349         case FRAME_BUTTON_MAXIMIZE:
2350                 window_set_maximized(window, window->type != TYPE_MAXIMIZED);
2351                 break;
2352         default:
2353                 /* Unknown operation */
2354                 break;
2355         }
2356 }
2357
2358 static void
2359 frame_button_touch_down_handler(struct widget *widget, struct input *input,
2360                                 uint32_t serial, uint32_t time, int32_t id,
2361                                 float x, float y, void *data)
2362 {
2363         struct frame_button *frame_button = data;
2364         struct window *window = widget->window;
2365
2366         switch (frame_button->type) {
2367         case FRAME_BUTTON_CLOSE:
2368                 if (window->close_handler)
2369                         window->close_handler(window->parent,
2370                                               window->user_data);
2371                 else
2372                         display_exit(window->display);
2373                 break;
2374         case FRAME_BUTTON_MINIMIZE:
2375                 fprintf(stderr,"Minimize stub\n");
2376                 break;
2377         case FRAME_BUTTON_MAXIMIZE:
2378                 window_set_maximized(window, window->type != TYPE_MAXIMIZED);
2379                 break;
2380         default:
2381                 /* Unknown operation */
2382                 break;
2383         }
2384 }
2385
2386
2387 static int
2388 frame_button_motion_handler(struct widget *widget,
2389                             struct input *input, uint32_t time,
2390                             float x, float y, void *data)
2391 {
2392         struct frame_button *frame_button = data;
2393         enum frame_button_pointer previous_button_state = frame_button->state;
2394
2395         /* only track state for a pressed button */
2396         if (input->grab != widget)
2397                 return CURSOR_LEFT_PTR;
2398
2399         if (x > widget->allocation.x &&
2400             x < (widget->allocation.x + widget->allocation.width) &&
2401             y > widget->allocation.y &&
2402             y < (widget->allocation.y + widget->allocation.height)) {
2403                 frame_button->state = FRAME_BUTTON_ACTIVE;
2404         } else {
2405                 frame_button->state = FRAME_BUTTON_DEFAULT;
2406         }
2407
2408         if (frame_button->state != previous_button_state)
2409                 widget_schedule_redraw(frame_button->widget);
2410
2411         return CURSOR_LEFT_PTR;
2412 }
2413
2414 static void
2415 frame_button_redraw_handler(struct widget *widget, void *data)
2416 {
2417         struct frame_button *frame_button = data;
2418         cairo_t *cr;
2419         int width, height, x, y;
2420
2421         x = widget->allocation.x;
2422         y = widget->allocation.y;
2423         width = widget->allocation.width;
2424         height = widget->allocation.height;
2425
2426         if (!width)
2427                 return;
2428         if (!height)
2429                 return;
2430         if (widget->opaque)
2431                 return;
2432
2433         cr = widget_cairo_create(widget);
2434
2435         if (frame_button->decoration == FRAME_BUTTON_FANCY) {
2436                 cairo_set_line_width(cr, 1);
2437
2438                 cairo_set_source_rgb(cr, 0.0, 0.0, 0.0);
2439                 cairo_rectangle (cr, x, y, 25, 16);
2440
2441                 cairo_stroke_preserve(cr);
2442
2443                 switch (frame_button->state) {
2444                 case FRAME_BUTTON_DEFAULT:
2445                         cairo_set_source_rgb(cr, 0.88, 0.88, 0.88);
2446                         break;
2447                 case FRAME_BUTTON_OVER:
2448                         cairo_set_source_rgb(cr, 1.0, 1.0, 1.0);
2449                         break;
2450                 case FRAME_BUTTON_ACTIVE:
2451                         cairo_set_source_rgb(cr, 0.7, 0.7, 0.7);
2452                         break;
2453                 }
2454
2455                 cairo_fill (cr);
2456
2457                 x += 4;
2458         }
2459
2460         cairo_set_source_surface(cr, frame_button->icon, x, y);
2461         cairo_paint(cr);
2462
2463         cairo_destroy(cr);
2464 }
2465
2466 static struct widget *
2467 frame_button_create(struct frame *frame, void *data, enum frame_button_action type,
2468         enum frame_button_align align, enum frame_button_decoration style)
2469 {
2470         struct frame_button *frame_button;
2471         const char *icon = data;
2472
2473         frame_button = xzalloc (sizeof *frame_button);
2474         frame_button->icon = cairo_image_surface_create_from_png(icon);
2475         frame_button->widget = widget_add_widget(frame->widget, frame_button);
2476         frame_button->frame = frame;
2477         frame_button->type = type;
2478         frame_button->align = align;
2479         frame_button->decoration = style;
2480
2481         wl_list_insert(frame->buttons_list.prev, &frame_button->link);
2482
2483         widget_set_redraw_handler(frame_button->widget, frame_button_redraw_handler);
2484         widget_set_enter_handler(frame_button->widget, frame_button_enter_handler);
2485         widget_set_leave_handler(frame_button->widget, frame_button_leave_handler);
2486         widget_set_touch_down_handler(frame_button->widget, frame_button_touch_down_handler);
2487         widget_set_button_handler(frame_button->widget, frame_button_button_handler);
2488         widget_set_motion_handler(frame_button->widget, frame_button_motion_handler);
2489         return frame_button->widget;
2490 }
2491
2492 static void
2493 frame_button_destroy(struct frame_button *frame_button)
2494 {
2495         widget_destroy(frame_button->widget);
2496         wl_list_remove(&frame_button->link);
2497         cairo_surface_destroy(frame_button->icon);
2498         free(frame_button);
2499
2500         return;
2501 }
2502
2503 static void
2504 frame_redraw_handler(struct widget *widget, void *data)
2505 {
2506         cairo_t *cr;
2507         struct window *window = widget->window;
2508         struct theme *t = window->display->theme;
2509         uint32_t flags = 0;
2510
2511         if (window->type == TYPE_FULLSCREEN)
2512                 return;
2513
2514         cr = widget_cairo_create(widget);
2515
2516         if (window->focus_count)
2517                 flags |= THEME_FRAME_ACTIVE;
2518         if (window->type == TYPE_MAXIMIZED)
2519                 flags |= THEME_FRAME_MAXIMIZED;
2520         theme_render_frame(t, cr, widget->allocation.width,
2521                            widget->allocation.height, window->title, flags);
2522
2523         cairo_destroy(cr);
2524 }
2525
2526 static int
2527 frame_get_pointer_image_for_location(struct frame *frame, struct input *input)
2528 {
2529         struct theme *t = frame->widget->window->display->theme;
2530         struct window *window = frame->widget->window;
2531         int location;
2532
2533         if (window->type != TYPE_TOPLEVEL)
2534                 return CURSOR_LEFT_PTR;
2535
2536         location = theme_get_location(t, input->sx, input->sy,
2537                                       frame->widget->allocation.width,
2538                                       frame->widget->allocation.height,
2539                                       window->type == TYPE_MAXIMIZED ?
2540                                       THEME_FRAME_MAXIMIZED : 0);
2541
2542         switch (location) {
2543         case THEME_LOCATION_RESIZING_TOP:
2544                 return CURSOR_TOP;
2545         case THEME_LOCATION_RESIZING_BOTTOM:
2546                 return CURSOR_BOTTOM;
2547         case THEME_LOCATION_RESIZING_LEFT:
2548                 return CURSOR_LEFT;
2549         case THEME_LOCATION_RESIZING_RIGHT:
2550                 return CURSOR_RIGHT;
2551         case THEME_LOCATION_RESIZING_TOP_LEFT:
2552                 return CURSOR_TOP_LEFT;
2553         case THEME_LOCATION_RESIZING_TOP_RIGHT:
2554                 return CURSOR_TOP_RIGHT;
2555         case THEME_LOCATION_RESIZING_BOTTOM_LEFT:
2556                 return CURSOR_BOTTOM_LEFT;
2557         case THEME_LOCATION_RESIZING_BOTTOM_RIGHT:
2558                 return CURSOR_BOTTOM_RIGHT;
2559         case THEME_LOCATION_EXTERIOR:
2560         case THEME_LOCATION_TITLEBAR:
2561         default:
2562                 return CURSOR_LEFT_PTR;
2563         }
2564 }
2565
2566 static void
2567 frame_menu_func(struct window *window, int index, void *data)
2568 {
2569         struct display *display;
2570
2571         switch (index) {
2572         case 0: /* close */
2573                 if (window->close_handler)
2574                         window->close_handler(window->parent,
2575                                               window->user_data);
2576                 else
2577                         display_exit(window->display);
2578                 break;
2579         case 1: /* move to workspace above */
2580                 display = window->display;
2581                 if (display->workspace > 0)
2582                         workspace_manager_move_surface(
2583                                 display->workspace_manager,
2584                                 window->main_surface->surface,
2585                                 display->workspace - 1);
2586                 break;
2587         case 2: /* move to workspace below */
2588                 display = window->display;
2589                 if (display->workspace < display->workspace_count - 1)
2590                         workspace_manager_move_surface(
2591                                 display->workspace_manager,
2592                                 window->main_surface->surface,
2593                                 display->workspace + 1);
2594                 break;
2595         case 3: /* fullscreen */
2596                 /* we don't have a way to get out of fullscreen for now */
2597                 if (window->fullscreen_handler)
2598                         window->fullscreen_handler(window, window->user_data);
2599                 break;
2600         }
2601 }
2602
2603 void
2604 window_show_frame_menu(struct window *window,
2605                        struct input *input, uint32_t time)
2606 {
2607         int32_t x, y;
2608         int count;
2609
2610         static const char *entries[] = {
2611                 "Close",
2612                 "Move to workspace above", "Move to workspace below",
2613                 "Fullscreen"
2614         };
2615
2616         if (window->fullscreen_handler)
2617                 count = ARRAY_LENGTH(entries);
2618         else
2619                 count = ARRAY_LENGTH(entries) - 1;
2620
2621         input_get_position(input, &x, &y);
2622         window_show_menu(window->display, input, time, window,
2623                          x - 10, y - 10, frame_menu_func, entries, count);
2624 }
2625
2626 static int
2627 frame_enter_handler(struct widget *widget,
2628                     struct input *input, float x, float y, void *data)
2629 {
2630         return frame_get_pointer_image_for_location(data, input);
2631 }
2632
2633 static int
2634 frame_motion_handler(struct widget *widget,
2635                      struct input *input, uint32_t time,
2636                      float x, float y, void *data)
2637 {
2638         return frame_get_pointer_image_for_location(data, input);
2639 }
2640
2641 static void
2642 frame_button_handler(struct widget *widget,
2643                      struct input *input, uint32_t time,
2644                      uint32_t button, enum wl_pointer_button_state state,
2645                      void *data)
2646
2647 {
2648         struct frame *frame = data;
2649         struct window *window = widget->window;
2650         struct display *display = window->display;
2651         int location;
2652
2653         if (state != WL_POINTER_BUTTON_STATE_PRESSED)
2654                 return;
2655
2656         location = theme_get_location(display->theme, input->sx, input->sy,
2657                                       frame->widget->allocation.width,
2658                                       frame->widget->allocation.height,
2659                                       window->type == TYPE_MAXIMIZED ?
2660                                       THEME_FRAME_MAXIMIZED : 0);
2661
2662         if (window->display->shell && button == BTN_LEFT &&
2663             window->type == TYPE_TOPLEVEL) {
2664                 switch (location) {
2665                 case THEME_LOCATION_TITLEBAR:
2666                         if (!window->shell_surface)
2667                                 break;
2668                         input_ungrab(input);
2669                         wl_shell_surface_move(window->shell_surface,
2670                                               input_get_seat(input),
2671                                               display->serial);
2672                         break;
2673                 case THEME_LOCATION_RESIZING_TOP:
2674                 case THEME_LOCATION_RESIZING_BOTTOM:
2675                 case THEME_LOCATION_RESIZING_LEFT:
2676                 case THEME_LOCATION_RESIZING_RIGHT:
2677                 case THEME_LOCATION_RESIZING_TOP_LEFT:
2678                 case THEME_LOCATION_RESIZING_TOP_RIGHT:
2679                 case THEME_LOCATION_RESIZING_BOTTOM_LEFT:
2680                 case THEME_LOCATION_RESIZING_BOTTOM_RIGHT:
2681                         if (!window->shell_surface)
2682                                 break;
2683                         input_ungrab(input);
2684
2685                         window->resizing = 1;
2686                         wl_shell_surface_resize(window->shell_surface,
2687                                                 input_get_seat(input),
2688                                                 display->serial, location);
2689                         break;
2690                 }
2691         } else if (button == BTN_RIGHT &&
2692                    (window->type == TYPE_TOPLEVEL ||
2693                     window->type == TYPE_MAXIMIZED)) {
2694                 window_show_frame_menu(window, input, time);
2695         }
2696 }
2697
2698 static void 
2699 frame_touch_down_handler(struct widget *widget, struct input *input,
2700                          uint32_t serial, uint32_t time, int32_t id,
2701                          float x, float y, void *data)
2702 {
2703         struct window *window = widget->window;
2704         struct display *display = window->display;
2705         
2706         wl_shell_surface_move(window->shell_surface,
2707                               input_get_seat(input),
2708                               display->serial);
2709 }
2710
2711 struct widget *
2712 frame_create(struct window *window, void *data)
2713 {
2714         struct frame *frame;
2715
2716         frame = xzalloc(sizeof *frame);
2717         frame->widget = window_add_widget(window, frame);
2718         frame->child = widget_add_widget(frame->widget, data);
2719
2720         widget_set_redraw_handler(frame->widget, frame_redraw_handler);
2721         widget_set_resize_handler(frame->widget, frame_resize_handler);
2722         widget_set_enter_handler(frame->widget, frame_enter_handler);
2723         widget_set_motion_handler(frame->widget, frame_motion_handler);
2724         widget_set_button_handler(frame->widget, frame_button_handler);
2725         widget_set_touch_down_handler(frame->widget, frame_touch_down_handler);
2726
2727         /* Create empty list for frame buttons */
2728         wl_list_init(&frame->buttons_list);
2729
2730         frame_button_create(frame, DATADIR "/weston/icon_window.png",
2731                 FRAME_BUTTON_ICON, FRAME_BUTTON_LEFT, FRAME_BUTTON_NONE);
2732
2733         frame_button_create(frame, DATADIR "/weston/sign_close.png",
2734                 FRAME_BUTTON_CLOSE, FRAME_BUTTON_RIGHT, FRAME_BUTTON_FANCY);
2735
2736         frame_button_create(frame, DATADIR "/weston/sign_maximize.png",
2737                 FRAME_BUTTON_MAXIMIZE, FRAME_BUTTON_RIGHT, FRAME_BUTTON_FANCY);
2738
2739         frame_button_create(frame, DATADIR "/weston/sign_minimize.png",
2740                 FRAME_BUTTON_MINIMIZE, FRAME_BUTTON_RIGHT, FRAME_BUTTON_FANCY);
2741
2742         window->frame = frame;
2743
2744         return frame->child;
2745 }
2746
2747 void
2748 frame_set_child_size(struct widget *widget, int child_width, int child_height)
2749 {
2750         struct display *display = widget->window->display;
2751         struct theme *t = display->theme;
2752         int decoration_width, decoration_height;
2753         int width, height;
2754         int margin = widget->window->type == TYPE_MAXIMIZED ? 0 : t->margin;
2755
2756         if (widget->window->type != TYPE_FULLSCREEN) {
2757                 decoration_width = (t->width + margin) * 2;
2758                 decoration_height = t->width +
2759                         t->titlebar_height + margin * 2;
2760
2761                 width = child_width + decoration_width;
2762                 height = child_height + decoration_height;
2763         } else {
2764                 width = child_width;
2765                 height = child_height;
2766         }
2767
2768         window_schedule_resize(widget->window, width, height);
2769 }
2770
2771 static void
2772 frame_destroy(struct frame *frame)
2773 {
2774         struct frame_button *button, *tmp;
2775
2776         wl_list_for_each_safe(button, tmp, &frame->buttons_list, link)
2777                 frame_button_destroy(button);
2778
2779         /* frame->child must be destroyed by the application */
2780         widget_destroy(frame->widget);
2781         free(frame);
2782 }
2783
2784 static void
2785 input_set_focus_widget(struct input *input, struct widget *focus,
2786                        float x, float y)
2787 {
2788         struct widget *old, *widget;
2789         int cursor;
2790
2791         if (focus == input->focus_widget)
2792                 return;
2793
2794         old = input->focus_widget;
2795         if (old) {
2796                 widget = old;
2797                 if (input->grab)
2798                         widget = input->grab;
2799                 if (widget->leave_handler)
2800                         widget->leave_handler(old, input, widget->user_data);
2801                 input->focus_widget = NULL;
2802         }
2803
2804         if (focus) {
2805                 widget = focus;
2806                 if (input->grab)
2807                         widget = input->grab;
2808                 input->focus_widget = focus;
2809                 if (widget->enter_handler)
2810                         cursor = widget->enter_handler(focus, input, x, y,
2811                                                        widget->user_data);
2812                 else
2813                         cursor = widget->default_cursor;
2814
2815                 input_set_pointer_image(input, cursor);
2816         }
2817 }
2818
2819 void
2820 input_grab(struct input *input, struct widget *widget, uint32_t button)
2821 {
2822         input->grab = widget;
2823         input->grab_button = button;
2824 }
2825
2826 void
2827 input_ungrab(struct input *input)
2828 {
2829         struct widget *widget;
2830
2831         input->grab = NULL;
2832         if (input->pointer_focus) {
2833                 widget = window_find_widget(input->pointer_focus,
2834                                             input->sx, input->sy);
2835                 input_set_focus_widget(input, widget, input->sx, input->sy);
2836         }
2837 }
2838
2839 static void
2840 input_remove_pointer_focus(struct input *input)
2841 {
2842         struct window *window = input->pointer_focus;
2843
2844         if (!window)
2845                 return;
2846
2847         input_set_focus_widget(input, NULL, 0, 0);
2848
2849         input->pointer_focus = NULL;
2850         input->current_cursor = CURSOR_UNSET;
2851 }
2852
2853 static void
2854 pointer_handle_enter(void *data, struct wl_pointer *pointer,
2855                      uint32_t serial, struct wl_surface *surface,
2856                      wl_fixed_t sx_w, wl_fixed_t sy_w)
2857 {
2858         struct input *input = data;
2859         struct window *window;
2860         struct widget *widget;
2861         float sx = wl_fixed_to_double(sx_w);
2862         float sy = wl_fixed_to_double(sy_w);
2863
2864         if (!surface) {
2865                 /* enter event for a window we've just destroyed */
2866                 return;
2867         }
2868
2869         input->display->serial = serial;
2870         input->pointer_enter_serial = serial;
2871         input->pointer_focus = wl_surface_get_user_data(surface);
2872         window = input->pointer_focus;
2873
2874         if (window->resizing) {
2875                 window->resizing = 0;
2876                 /* Schedule a redraw to free the pool */
2877                 window_schedule_redraw(window);
2878         }
2879
2880         input->sx = sx;
2881         input->sy = sy;
2882
2883         widget = window_find_widget(window, sx, sy);
2884         input_set_focus_widget(input, widget, sx, sy);
2885 }
2886
2887 static void
2888 pointer_handle_leave(void *data, struct wl_pointer *pointer,
2889                      uint32_t serial, struct wl_surface *surface)
2890 {
2891         struct input *input = data;
2892
2893         input->display->serial = serial;
2894         input_remove_pointer_focus(input);
2895 }
2896
2897 static void
2898 pointer_handle_motion(void *data, struct wl_pointer *pointer,
2899                       uint32_t time, wl_fixed_t sx_w, wl_fixed_t sy_w)
2900 {
2901         struct input *input = data;
2902         struct window *window = input->pointer_focus;
2903         struct widget *widget;
2904         int cursor;
2905         float sx = wl_fixed_to_double(sx_w);
2906         float sy = wl_fixed_to_double(sy_w);
2907
2908         input->sx = sx;
2909         input->sy = sy;
2910
2911         if (!window)
2912                 return;
2913
2914         /* when making the window smaller - e.g. after a unmaximise we might
2915          * still have a pending motion event that the compositor has picked
2916          * based on the old surface dimensions
2917          */
2918         if (sx > window->main_surface->allocation.width ||
2919             sy > window->main_surface->allocation.height)
2920                 return;
2921
2922         if (!(input->grab && input->grab_button)) {
2923                 widget = window_find_widget(window, sx, sy);
2924                 input_set_focus_widget(input, widget, sx, sy);
2925         }
2926
2927         if (input->grab)
2928                 widget = input->grab;
2929         else
2930                 widget = input->focus_widget;
2931         if (widget) {
2932                 if (widget->motion_handler)
2933                         cursor = widget->motion_handler(input->focus_widget,
2934                                                         input, time, sx, sy,
2935                                                         widget->user_data);
2936                 else
2937                         cursor = widget->default_cursor;
2938         } else
2939                 cursor = CURSOR_LEFT_PTR;
2940
2941         input_set_pointer_image(input, cursor);
2942 }
2943
2944 static void
2945 pointer_handle_button(void *data, struct wl_pointer *pointer, uint32_t serial,
2946                       uint32_t time, uint32_t button, uint32_t state_w)
2947 {
2948         struct input *input = data;
2949         struct widget *widget;
2950         enum wl_pointer_button_state state = state_w;
2951
2952         input->display->serial = serial;
2953         if (input->focus_widget && input->grab == NULL &&
2954             state == WL_POINTER_BUTTON_STATE_PRESSED)
2955                 input_grab(input, input->focus_widget, button);
2956
2957         widget = input->grab;
2958         if (widget && widget->button_handler)
2959                 (*widget->button_handler)(widget,
2960                                           input, time,
2961                                           button, state,
2962                                           input->grab->user_data);
2963
2964         if (input->grab && input->grab_button == button &&
2965             state == WL_POINTER_BUTTON_STATE_RELEASED)
2966                 input_ungrab(input);
2967 }
2968
2969 static void
2970 pointer_handle_axis(void *data, struct wl_pointer *pointer,
2971                     uint32_t time, uint32_t axis, wl_fixed_t value)
2972 {
2973         struct input *input = data;
2974         struct widget *widget;
2975
2976         widget = input->focus_widget;
2977         if (input->grab)
2978                 widget = input->grab;
2979         if (widget && widget->axis_handler)
2980                 (*widget->axis_handler)(widget,
2981                                         input, time,
2982                                         axis, value,
2983                                         widget->user_data);
2984 }
2985
2986 static const struct wl_pointer_listener pointer_listener = {
2987         pointer_handle_enter,
2988         pointer_handle_leave,
2989         pointer_handle_motion,
2990         pointer_handle_button,
2991         pointer_handle_axis,
2992 };
2993
2994 static void
2995 input_remove_keyboard_focus(struct input *input)
2996 {
2997         struct window *window = input->keyboard_focus;
2998         struct itimerspec its;
2999
3000         its.it_interval.tv_sec = 0;
3001         its.it_interval.tv_nsec = 0;
3002         its.it_value.tv_sec = 0;
3003         its.it_value.tv_nsec = 0;
3004         timerfd_settime(input->repeat_timer_fd, 0, &its, NULL);
3005
3006         if (!window)
3007                 return;
3008
3009         window->focus_count--;
3010         if (window->keyboard_focus_handler)
3011                 (*window->keyboard_focus_handler)(window, NULL,
3012                                                   window->user_data);
3013
3014         input->keyboard_focus = NULL;
3015 }
3016
3017 static void
3018 keyboard_repeat_func(struct task *task, uint32_t events)
3019 {
3020         struct input *input =
3021                 container_of(task, struct input, repeat_task);
3022         struct window *window = input->keyboard_focus;
3023         uint64_t exp;
3024
3025         if (read(input->repeat_timer_fd, &exp, sizeof exp) != sizeof exp)
3026                 /* If we change the timer between the fd becoming
3027                  * readable and getting here, there'll be nothing to
3028                  * read and we get EAGAIN. */
3029                 return;
3030
3031         if (window && window->key_handler) {
3032                 (*window->key_handler)(window, input, input->repeat_time,
3033                                        input->repeat_key, input->repeat_sym,
3034                                        WL_KEYBOARD_KEY_STATE_PRESSED,
3035                                        window->user_data);
3036         }
3037 }
3038
3039 static void
3040 keyboard_handle_keymap(void *data, struct wl_keyboard *keyboard,
3041                        uint32_t format, int fd, uint32_t size)
3042 {
3043         struct input *input = data;
3044         char *map_str;
3045
3046         if (!data) {
3047                 close(fd);
3048                 return;
3049         }
3050
3051         if (format != WL_KEYBOARD_KEYMAP_FORMAT_XKB_V1) {
3052                 close(fd);
3053                 return;
3054         }
3055
3056         map_str = mmap(NULL, size, PROT_READ, MAP_SHARED, fd, 0);
3057         if (map_str == MAP_FAILED) {
3058                 close(fd);
3059                 return;
3060         }
3061
3062         input->xkb.keymap = xkb_map_new_from_string(input->display->xkb_context,
3063                                                     map_str,
3064                                                     XKB_KEYMAP_FORMAT_TEXT_V1,
3065                                                     0);
3066         munmap(map_str, size);
3067         close(fd);
3068
3069         if (!input->xkb.keymap) {
3070                 fprintf(stderr, "failed to compile keymap\n");
3071                 return;
3072         }
3073
3074         input->xkb.state = xkb_state_new(input->xkb.keymap);
3075         if (!input->xkb.state) {
3076                 fprintf(stderr, "failed to create XKB state\n");
3077                 xkb_map_unref(input->xkb.keymap);
3078                 input->xkb.keymap = NULL;
3079                 return;
3080         }
3081
3082         input->xkb.control_mask =
3083                 1 << xkb_map_mod_get_index(input->xkb.keymap, "Control");
3084         input->xkb.alt_mask =
3085                 1 << xkb_map_mod_get_index(input->xkb.keymap, "Mod1");
3086         input->xkb.shift_mask =
3087                 1 << xkb_map_mod_get_index(input->xkb.keymap, "Shift");
3088 }
3089
3090 static void
3091 keyboard_handle_enter(void *data, struct wl_keyboard *keyboard,
3092                       uint32_t serial, struct wl_surface *surface,
3093                       struct wl_array *keys)
3094 {
3095         struct input *input = data;
3096         struct window *window;
3097
3098         input->display->serial = serial;
3099         input->keyboard_focus = wl_surface_get_user_data(surface);
3100
3101         window = input->keyboard_focus;
3102         window->focus_count++;
3103         if (window->keyboard_focus_handler)
3104                 (*window->keyboard_focus_handler)(window,
3105                                                   input, window->user_data);
3106 }
3107
3108 static void
3109 keyboard_handle_leave(void *data, struct wl_keyboard *keyboard,
3110                       uint32_t serial, struct wl_surface *surface)
3111 {
3112         struct input *input = data;
3113
3114         input->display->serial = serial;
3115         input_remove_keyboard_focus(input);
3116 }
3117
3118 static void
3119 keyboard_handle_key(void *data, struct wl_keyboard *keyboard,
3120                     uint32_t serial, uint32_t time, uint32_t key,
3121                     uint32_t state_w)
3122 {
3123         struct input *input = data;
3124         struct window *window = input->keyboard_focus;
3125         uint32_t code, num_syms;
3126         enum wl_keyboard_key_state state = state_w;
3127         const xkb_keysym_t *syms;
3128         xkb_keysym_t sym;
3129         struct itimerspec its;
3130
3131         input->display->serial = serial;
3132         code = key + 8;
3133         if (!window || !input->xkb.state)
3134                 return;
3135
3136         num_syms = xkb_key_get_syms(input->xkb.state, code, &syms);
3137
3138         sym = XKB_KEY_NoSymbol;
3139         if (num_syms == 1)
3140                 sym = syms[0];
3141
3142         if (sym == XKB_KEY_F5 && input->modifiers == MOD_ALT_MASK) {
3143                 if (state == WL_KEYBOARD_KEY_STATE_PRESSED)
3144                         window_set_maximized(window,
3145                                              window->type != TYPE_MAXIMIZED);
3146         } else if (sym == XKB_KEY_F11 &&
3147                    window->fullscreen_handler &&
3148                    state == WL_KEYBOARD_KEY_STATE_PRESSED) {
3149                 window->fullscreen_handler(window, window->user_data);
3150         } else if (sym == XKB_KEY_F4 &&
3151                    input->modifiers == MOD_ALT_MASK &&
3152                    state == WL_KEYBOARD_KEY_STATE_PRESSED) {
3153                 if (window->close_handler)
3154                         window->close_handler(window->parent,
3155                                               window->user_data);
3156                 else
3157                         display_exit(window->display);
3158         } else if (window->key_handler) {
3159                 (*window->key_handler)(window, input, time, key,
3160                                        sym, state, window->user_data);
3161         }
3162
3163         if (state == WL_KEYBOARD_KEY_STATE_RELEASED &&
3164             key == input->repeat_key) {
3165                 its.it_interval.tv_sec = 0;
3166                 its.it_interval.tv_nsec = 0;
3167                 its.it_value.tv_sec = 0;
3168                 its.it_value.tv_nsec = 0;
3169                 timerfd_settime(input->repeat_timer_fd, 0, &its, NULL);
3170         } else if (state == WL_KEYBOARD_KEY_STATE_PRESSED) {
3171                 input->repeat_sym = sym;
3172                 input->repeat_key = key;
3173                 input->repeat_time = time;
3174                 its.it_interval.tv_sec = 0;
3175                 its.it_interval.tv_nsec = 25 * 1000 * 1000;
3176                 its.it_value.tv_sec = 0;
3177                 its.it_value.tv_nsec = 400 * 1000 * 1000;
3178                 timerfd_settime(input->repeat_timer_fd, 0, &its, NULL);
3179         }
3180 }
3181
3182 static void
3183 keyboard_handle_modifiers(void *data, struct wl_keyboard *keyboard,
3184                           uint32_t serial, uint32_t mods_depressed,
3185                           uint32_t mods_latched, uint32_t mods_locked,
3186                           uint32_t group)
3187 {
3188         struct input *input = data;
3189         xkb_mod_mask_t mask;
3190
3191         /* If we're not using a keymap, then we don't handle PC-style modifiers */
3192         if (!input->xkb.keymap)
3193                 return;
3194
3195         xkb_state_update_mask(input->xkb.state, mods_depressed, mods_latched,
3196                               mods_locked, 0, 0, group);
3197         mask = xkb_state_serialize_mods(input->xkb.state,
3198                                         XKB_STATE_DEPRESSED |
3199                                         XKB_STATE_LATCHED);
3200         input->modifiers = 0;
3201         if (mask & input->xkb.control_mask)
3202                 input->modifiers |= MOD_CONTROL_MASK;
3203         if (mask & input->xkb.alt_mask)
3204                 input->modifiers |= MOD_ALT_MASK;
3205         if (mask & input->xkb.shift_mask)
3206                 input->modifiers |= MOD_SHIFT_MASK;
3207 }
3208
3209 static const struct wl_keyboard_listener keyboard_listener = {
3210         keyboard_handle_keymap,
3211         keyboard_handle_enter,
3212         keyboard_handle_leave,
3213         keyboard_handle_key,
3214         keyboard_handle_modifiers,
3215 };
3216
3217 static void
3218 touch_handle_down(void *data, struct wl_touch *wl_touch,
3219                   uint32_t serial, uint32_t time, struct wl_surface *surface,
3220                   int32_t id, wl_fixed_t x_w, wl_fixed_t y_w)
3221 {
3222         struct input *input = data;
3223         struct widget *widget;
3224         float sx = wl_fixed_to_double(x_w);
3225         float sy = wl_fixed_to_double(y_w);
3226
3227         input->display->serial = serial;
3228         input->touch_focus = wl_surface_get_user_data(surface);
3229         if (!input->touch_focus) {
3230                 DBG("Failed to find to touch focus for surface %p\n", surface);
3231                 return;
3232         }
3233
3234         widget = window_find_widget(input->touch_focus,
3235                                     wl_fixed_to_double(x_w),
3236                                     wl_fixed_to_double(y_w));
3237         if (widget) {
3238                 struct touch_point *tp = xmalloc(sizeof *tp);
3239                 if (tp) {
3240                         tp->id = id;
3241                         tp->widget = widget;
3242                         wl_list_insert(&input->touch_point_list, &tp->link);
3243
3244                         if (widget->touch_down_handler)
3245                                 (*widget->touch_down_handler)(widget, input, 
3246                                                               serial, time, id,
3247                                                               sx, sy,
3248                                                               widget->user_data);
3249                 }
3250         }
3251 }
3252
3253 static void
3254 touch_handle_up(void *data, struct wl_touch *wl_touch,
3255                 uint32_t serial, uint32_t time, int32_t id)
3256 {
3257         struct input *input = data;
3258         struct touch_point *tp, *tmp;
3259
3260         if (!input->touch_focus) {
3261                 DBG("No touch focus found for touch up event!\n");
3262                 return;
3263         }
3264
3265         wl_list_for_each_safe(tp, tmp, &input->touch_point_list, link) {
3266                 if (tp->id != id)
3267                         continue;
3268
3269                 if (tp->widget->touch_up_handler)
3270                         (*tp->widget->touch_up_handler)(tp->widget, input, serial,
3271                                                         time, id,
3272                                                         tp->widget->user_data);
3273
3274                 wl_list_remove(&tp->link);
3275                 free(tp);
3276
3277                 return;
3278         }
3279 }
3280
3281 static void
3282 touch_handle_motion(void *data, struct wl_touch *wl_touch,
3283                     uint32_t time, int32_t id, wl_fixed_t x_w, wl_fixed_t y_w)
3284 {
3285         struct input *input = data;
3286         struct touch_point *tp;
3287         float sx = wl_fixed_to_double(x_w);
3288         float sy = wl_fixed_to_double(y_w);
3289
3290         DBG("touch_handle_motion: %i %i\n", id, wl_list_length(&input->touch_point_list));
3291
3292         if (!input->touch_focus) {
3293                 DBG("No touch focus found for touch motion event!\n");
3294                 return;
3295         }
3296
3297         wl_list_for_each(tp, &input->touch_point_list, link) {
3298                 if (tp->id != id)
3299                         continue;
3300
3301                 if (tp->widget->touch_motion_handler)
3302                         (*tp->widget->touch_motion_handler)(tp->widget, input, time,
3303                                                             id, sx, sy,
3304                                                             tp->widget->user_data);
3305                 return;
3306         }
3307 }
3308
3309 static void
3310 touch_handle_frame(void *data, struct wl_touch *wl_touch)
3311 {
3312         struct input *input = data;
3313         struct touch_point *tp, *tmp;
3314
3315         DBG("touch_handle_frame\n");
3316
3317         if (!input->touch_focus) {
3318                 DBG("No touch focus found for touch frame event!\n");
3319                 return;
3320         }
3321
3322         wl_list_for_each_safe(tp, tmp, &input->touch_point_list, link) {
3323                 if (tp->widget->touch_frame_handler)
3324                         (*tp->widget->touch_frame_handler)(tp->widget, input, 
3325                                                            tp->widget->user_data);
3326
3327                 wl_list_remove(&tp->link);
3328                 free(tp);
3329         }
3330 }
3331
3332 static void
3333 touch_handle_cancel(void *data, struct wl_touch *wl_touch)
3334 {
3335         struct input *input = data;
3336         struct touch_point *tp, *tmp;
3337
3338         DBG("touch_handle_cancel\n");
3339
3340         if (!input->touch_focus) {
3341                 DBG("No touch focus found for touch cancel event!\n");
3342                 return;
3343         }
3344
3345         wl_list_for_each_safe(tp, tmp, &input->touch_point_list, link) {
3346                 if (tp->widget->touch_cancel_handler)
3347                         (*tp->widget->touch_cancel_handler)(tp->widget, input,
3348                                                             tp->widget->user_data);
3349
3350                 wl_list_remove(&tp->link);
3351                 free(tp);
3352         }
3353 }
3354
3355 static const struct wl_touch_listener touch_listener = {
3356         touch_handle_down,
3357         touch_handle_up,
3358         touch_handle_motion,
3359         touch_handle_frame,
3360         touch_handle_cancel,
3361 };
3362
3363 static void
3364 seat_handle_capabilities(void *data, struct wl_seat *seat,
3365                          enum wl_seat_capability caps)
3366 {
3367         struct input *input = data;
3368
3369         if ((caps & WL_SEAT_CAPABILITY_POINTER) && !input->pointer) {
3370                 input->pointer = wl_seat_get_pointer(seat);
3371                 wl_pointer_set_user_data(input->pointer, input);
3372                 wl_pointer_add_listener(input->pointer, &pointer_listener,
3373                                         input);
3374         } else if (!(caps & WL_SEAT_CAPABILITY_POINTER) && input->pointer) {
3375                 wl_pointer_destroy(input->pointer);
3376                 input->pointer = NULL;
3377         }
3378
3379         if ((caps & WL_SEAT_CAPABILITY_KEYBOARD) && !input->keyboard) {
3380                 input->keyboard = wl_seat_get_keyboard(seat);
3381                 wl_keyboard_set_user_data(input->keyboard, input);
3382                 wl_keyboard_add_listener(input->keyboard, &keyboard_listener,
3383                                          input);
3384         } else if (!(caps & WL_SEAT_CAPABILITY_KEYBOARD) && input->keyboard) {
3385                 wl_keyboard_destroy(input->keyboard);
3386                 input->keyboard = NULL;
3387         }
3388
3389         if ((caps & WL_SEAT_CAPABILITY_TOUCH) && !input->touch) {
3390                 input->touch = wl_seat_get_touch(seat);
3391                 wl_touch_set_user_data(input->touch, input);
3392                 wl_touch_add_listener(input->touch, &touch_listener, input);
3393         } else if (!(caps & WL_SEAT_CAPABILITY_TOUCH) && input->touch) {
3394                 wl_touch_destroy(input->touch);
3395                 input->touch = NULL;
3396         }
3397 }
3398
3399 static void
3400 seat_handle_name(void *data, struct wl_seat *seat,
3401                  const char *name)
3402 {
3403
3404 }
3405
3406 static const struct wl_seat_listener seat_listener = {
3407         seat_handle_capabilities,
3408         seat_handle_name
3409 };
3410
3411 void
3412 input_get_position(struct input *input, int32_t *x, int32_t *y)
3413 {
3414         *x = input->sx;
3415         *y = input->sy;
3416 }
3417
3418 struct display *
3419 input_get_display(struct input *input)
3420 {
3421         return input->display;
3422 }
3423
3424 struct wl_seat *
3425 input_get_seat(struct input *input)
3426 {
3427         return input->seat;
3428 }
3429
3430 uint32_t
3431 input_get_modifiers(struct input *input)
3432 {
3433         return input->modifiers;
3434 }
3435
3436 struct widget *
3437 input_get_focus_widget(struct input *input)
3438 {
3439         return input->focus_widget;
3440 }
3441
3442 struct data_offer {
3443         struct wl_data_offer *offer;
3444         struct input *input;
3445         struct wl_array types;
3446         int refcount;
3447
3448         struct task io_task;
3449         int fd;
3450         data_func_t func;
3451         int32_t x, y;
3452         void *user_data;
3453 };
3454
3455 static void
3456 data_offer_offer(void *data, struct wl_data_offer *wl_data_offer, const char *type)
3457 {
3458         struct data_offer *offer = data;
3459         char **p;
3460
3461         p = wl_array_add(&offer->types, sizeof *p);
3462         *p = strdup(type);
3463 }
3464
3465 static const struct wl_data_offer_listener data_offer_listener = {
3466         data_offer_offer,
3467 };
3468
3469 static void
3470 data_offer_destroy(struct data_offer *offer)
3471 {
3472         char **p;
3473
3474         offer->refcount--;
3475         if (offer->refcount == 0) {
3476                 wl_data_offer_destroy(offer->offer);
3477                 for (p = offer->types.data; *p; p++)
3478                         free(*p);
3479                 wl_array_release(&offer->types);
3480                 free(offer);
3481         }
3482 }
3483
3484 static void
3485 data_device_data_offer(void *data,
3486                        struct wl_data_device *data_device,
3487                        struct wl_data_offer *_offer)
3488 {
3489         struct data_offer *offer;
3490
3491         offer = xmalloc(sizeof *offer);
3492
3493         wl_array_init(&offer->types);
3494         offer->refcount = 1;
3495         offer->input = data;
3496         offer->offer = _offer;
3497         wl_data_offer_add_listener(offer->offer,
3498                                    &data_offer_listener, offer);
3499 }
3500
3501 static void
3502 data_device_enter(void *data, struct wl_data_device *data_device,
3503                   uint32_t serial, struct wl_surface *surface,
3504                   wl_fixed_t x_w, wl_fixed_t y_w,
3505                   struct wl_data_offer *offer)
3506 {
3507         struct input *input = data;
3508         struct window *window;
3509         void *types_data;
3510         float x = wl_fixed_to_double(x_w);
3511         float y = wl_fixed_to_double(y_w);
3512         char **p;
3513
3514         input->pointer_enter_serial = serial;
3515         window = wl_surface_get_user_data(surface);
3516         input->pointer_focus = window;
3517
3518         if (offer) {
3519                 input->drag_offer = wl_data_offer_get_user_data(offer);
3520
3521                 p = wl_array_add(&input->drag_offer->types, sizeof *p);
3522                 *p = NULL;
3523
3524                 types_data = input->drag_offer->types.data;
3525         } else {
3526                 input->drag_offer = NULL;
3527                 types_data = NULL;
3528         }
3529
3530         window = input->pointer_focus;
3531         if (window->data_handler)
3532                 window->data_handler(window, input, x, y, types_data,
3533                                      window->user_data);
3534 }
3535
3536 static void
3537 data_device_leave(void *data, struct wl_data_device *data_device)
3538 {
3539         struct input *input = data;
3540
3541         if (input->drag_offer) {
3542                 data_offer_destroy(input->drag_offer);
3543                 input->drag_offer = NULL;
3544         }
3545 }
3546
3547 static void
3548 data_device_motion(void *data, struct wl_data_device *data_device,
3549                    uint32_t time, wl_fixed_t x_w, wl_fixed_t y_w)
3550 {
3551         struct input *input = data;
3552         struct window *window = input->pointer_focus;
3553         float x = wl_fixed_to_double(x_w);
3554         float y = wl_fixed_to_double(y_w);
3555         void *types_data;
3556
3557         input->sx = x;
3558         input->sy = y;
3559
3560         if (input->drag_offer)
3561                 types_data = input->drag_offer->types.data;
3562         else
3563                 types_data = NULL;
3564
3565         if (window->data_handler)
3566                 window->data_handler(window, input, x, y, types_data,
3567                                      window->user_data);
3568 }
3569
3570 static void
3571 data_device_drop(void *data, struct wl_data_device *data_device)
3572 {
3573         struct input *input = data;
3574         struct window *window = input->pointer_focus;
3575
3576         if (window->drop_handler)
3577                 window->drop_handler(window, input,
3578                                      input->sx, input->sy, window->user_data);
3579 }
3580
3581 static void
3582 data_device_selection(void *data,
3583                       struct wl_data_device *wl_data_device,
3584                       struct wl_data_offer *offer)
3585 {
3586         struct input *input = data;
3587         char **p;
3588
3589         if (input->selection_offer)
3590                 data_offer_destroy(input->selection_offer);
3591
3592         if (offer) {
3593                 input->selection_offer = wl_data_offer_get_user_data(offer);
3594                 p = wl_array_add(&input->selection_offer->types, sizeof *p);
3595                 *p = NULL;
3596         } else {
3597                 input->selection_offer = NULL;
3598         }
3599 }
3600
3601 static const struct wl_data_device_listener data_device_listener = {
3602         data_device_data_offer,
3603         data_device_enter,
3604         data_device_leave,
3605         data_device_motion,
3606         data_device_drop,
3607         data_device_selection
3608 };
3609
3610 static void
3611 input_set_pointer_image_index(struct input *input, int index)
3612 {
3613         struct wl_buffer *buffer;
3614         struct wl_cursor *cursor;
3615         struct wl_cursor_image *image;
3616
3617         if (!input->pointer)
3618                 return;
3619
3620         cursor = input->display->cursors[input->current_cursor];
3621         if (!cursor)
3622                 return;
3623
3624         if (index >= (int) cursor->image_count) {
3625                 fprintf(stderr, "cursor index out of range\n");
3626                 return;
3627         }
3628
3629         image = cursor->images[index];
3630         buffer = wl_cursor_image_get_buffer(image);
3631         if (!buffer)
3632                 return;
3633
3634         wl_pointer_set_cursor(input->pointer, input->pointer_enter_serial,
3635                               input->pointer_surface,
3636                               image->hotspot_x, image->hotspot_y);
3637         wl_surface_attach(input->pointer_surface, buffer, 0, 0);
3638         wl_surface_damage(input->pointer_surface, 0, 0,
3639                           image->width, image->height);
3640         wl_surface_commit(input->pointer_surface);
3641 }
3642
3643 static const struct wl_callback_listener pointer_surface_listener;
3644
3645 static void
3646 pointer_surface_frame_callback(void *data, struct wl_callback *callback,
3647                                uint32_t time)
3648 {
3649         struct input *input = data;
3650         struct wl_cursor *cursor;
3651         int i;
3652
3653         if (callback) {
3654                 assert(callback == input->cursor_frame_cb);
3655                 wl_callback_destroy(callback);
3656                 input->cursor_frame_cb = NULL;
3657         }
3658
3659         if (!input->pointer)
3660                 return;
3661
3662         if (input->current_cursor == CURSOR_BLANK) {
3663                 wl_pointer_set_cursor(input->pointer,
3664                                       input->pointer_enter_serial,
3665                                       NULL, 0, 0);
3666                 return;
3667         }
3668
3669         if (input->current_cursor == CURSOR_UNSET)
3670                 return;
3671         cursor = input->display->cursors[input->current_cursor];
3672         if (!cursor)
3673                 return;
3674
3675         /* FIXME We don't have the current time on the first call so we set
3676          * the animation start to the time of the first frame callback. */
3677         if (time == 0)
3678                 input->cursor_anim_start = 0;
3679         else if (input->cursor_anim_start == 0)
3680                 input->cursor_anim_start = time;
3681
3682         if (time == 0 || input->cursor_anim_start == 0)
3683                 i = 0;
3684         else
3685                 i = wl_cursor_frame(cursor, time - input->cursor_anim_start);
3686
3687         if (cursor->image_count > 1) {
3688                 input->cursor_frame_cb =
3689                         wl_surface_frame(input->pointer_surface);
3690                 wl_callback_add_listener(input->cursor_frame_cb,
3691                                          &pointer_surface_listener, input);
3692         }
3693
3694         input_set_pointer_image_index(input, i);
3695 }
3696
3697 static const struct wl_callback_listener pointer_surface_listener = {
3698         pointer_surface_frame_callback
3699 };
3700
3701 void
3702 input_set_pointer_image(struct input *input, int pointer)
3703 {
3704         int force = 0;
3705
3706         if (!input->pointer)
3707                 return;
3708
3709         if (input->pointer_enter_serial > input->cursor_serial)
3710                 force = 1;
3711
3712         if (!force && pointer == input->current_cursor)
3713                 return;
3714
3715         input->current_cursor = pointer;
3716         input->cursor_serial = input->pointer_enter_serial;
3717         if (!input->cursor_frame_cb)
3718                 pointer_surface_frame_callback(input, NULL, 0);
3719         else if (force) {
3720                 /* The current frame callback may be stuck if, for instance,
3721                  * the set cursor request was processed by the server after
3722                  * this client lost the focus. In this case the cursor surface
3723                  * might not be mapped and the frame callback wouldn't ever
3724                  * complete. Send a set_cursor and attach to try to map the
3725                  * cursor surface again so that the callback will finish */
3726                 input_set_pointer_image_index(input, 0);
3727         }
3728 }
3729
3730 struct wl_data_device *
3731 input_get_data_device(struct input *input)
3732 {
3733         return input->data_device;
3734 }
3735
3736 void
3737 input_set_selection(struct input *input,
3738                     struct wl_data_source *source, uint32_t time)
3739 {
3740         wl_data_device_set_selection(input->data_device, source, time);
3741 }
3742
3743 void
3744 input_accept(struct input *input, const char *type)
3745 {
3746         wl_data_offer_accept(input->drag_offer->offer,
3747                              input->pointer_enter_serial, type);
3748 }
3749
3750 static void
3751 offer_io_func(struct task *task, uint32_t events)
3752 {
3753         struct data_offer *offer =
3754                 container_of(task, struct data_offer, io_task);
3755         unsigned int len;
3756         char buffer[4096];
3757
3758         len = read(offer->fd, buffer, sizeof buffer);
3759         offer->func(buffer, len,
3760                     offer->x, offer->y, offer->user_data);
3761
3762         if (len == 0) {
3763                 close(offer->fd);
3764                 data_offer_destroy(offer);
3765         }
3766 }
3767
3768 static void
3769 data_offer_receive_data(struct data_offer *offer, const char *mime_type,
3770                         data_func_t func, void *user_data)
3771 {
3772         int p[2];
3773
3774         if (pipe2(p, O_CLOEXEC) == -1)
3775                 return;
3776
3777         wl_data_offer_receive(offer->offer, mime_type, p[1]);
3778         close(p[1]);
3779
3780         offer->io_task.run = offer_io_func;
3781         offer->fd = p[0];
3782         offer->func = func;
3783         offer->refcount++;
3784         offer->user_data = user_data;
3785
3786         display_watch_fd(offer->input->display,
3787                          offer->fd, EPOLLIN, &offer->io_task);
3788 }
3789
3790 void
3791 input_receive_drag_data(struct input *input, const char *mime_type,
3792                         data_func_t func, void *data)
3793 {
3794         data_offer_receive_data(input->drag_offer, mime_type, func, data);
3795         input->drag_offer->x = input->sx;
3796         input->drag_offer->y = input->sy;
3797 }
3798
3799 int
3800 input_receive_selection_data(struct input *input, const char *mime_type,
3801                              data_func_t func, void *data)
3802 {
3803         char **p;
3804
3805         if (input->selection_offer == NULL)
3806                 return -1;
3807
3808         for (p = input->selection_offer->types.data; *p; p++)
3809                 if (strcmp(mime_type, *p) == 0)
3810                         break;
3811
3812         if (*p == NULL)
3813                 return -1;
3814
3815         data_offer_receive_data(input->selection_offer,
3816                                 mime_type, func, data);
3817         return 0;
3818 }
3819
3820 int
3821 input_receive_selection_data_to_fd(struct input *input,
3822                                    const char *mime_type, int fd)
3823 {
3824         if (input->selection_offer)
3825                 wl_data_offer_receive(input->selection_offer->offer,
3826                                       mime_type, fd);
3827
3828         return 0;
3829 }
3830
3831 void
3832 window_move(struct window *window, struct input *input, uint32_t serial)
3833 {
3834         if (!window->shell_surface)
3835                 return;
3836
3837         wl_shell_surface_move(window->shell_surface, input->seat, serial);
3838 }
3839
3840 void
3841 window_touch_move(struct window *window, struct input *input, uint32_t serial)
3842 {
3843         if (!window->shell_surface)
3844                 return;
3845
3846         wl_shell_surface_move(window->shell_surface, input->seat, 
3847                               window->display->serial);
3848 }
3849
3850 static void
3851 surface_set_synchronized(struct surface *surface)
3852 {
3853         if (!surface->subsurface)
3854                 return;
3855
3856         if (surface->synchronized)
3857                 return;
3858
3859         wl_subsurface_set_sync(surface->subsurface);
3860         surface->synchronized = 1;
3861 }
3862
3863 static void
3864 surface_set_synchronized_default(struct surface *surface)
3865 {
3866         if (!surface->subsurface)
3867                 return;
3868
3869         if (surface->synchronized == surface->synchronized_default)
3870                 return;
3871
3872         if (surface->synchronized_default)
3873                 wl_subsurface_set_sync(surface->subsurface);
3874         else
3875                 wl_subsurface_set_desync(surface->subsurface);
3876
3877         surface->synchronized = surface->synchronized_default;
3878 }
3879
3880 static void
3881 surface_resize(struct surface *surface)
3882 {
3883         struct widget *widget = surface->widget;
3884         struct wl_compositor *compositor = widget->window->display->compositor;
3885
3886         if (surface->input_region) {
3887                 wl_region_destroy(surface->input_region);
3888                 surface->input_region = NULL;
3889         }
3890
3891         if (surface->opaque_region)
3892                 wl_region_destroy(surface->opaque_region);
3893
3894         surface->opaque_region = wl_compositor_create_region(compositor);
3895
3896         if (widget->resize_handler)
3897                 widget->resize_handler(widget,
3898                                        widget->allocation.width,
3899                                        widget->allocation.height,
3900                                        widget->user_data);
3901
3902         if (surface->subsurface &&
3903             (surface->allocation.x != widget->allocation.x ||
3904              surface->allocation.y != widget->allocation.y)) {
3905                 wl_subsurface_set_position(surface->subsurface,
3906                                            widget->allocation.x,
3907                                            widget->allocation.y);
3908         }
3909         if (surface->allocation.width != widget->allocation.width ||
3910             surface->allocation.height != widget->allocation.height) {
3911                 window_schedule_redraw(widget->window);
3912         }
3913         surface->allocation = widget->allocation;
3914
3915         if (widget->opaque)
3916                 wl_region_add(surface->opaque_region, 0, 0,
3917                               widget->allocation.width,
3918                               widget->allocation.height);
3919 }
3920
3921 static void
3922 hack_prevent_EGL_sub_surface_deadlock(struct window *window)
3923 {
3924         /*
3925          * This hack should be removed, when EGL respects
3926          * eglSwapInterval(0).
3927          *
3928          * If this window has sub-surfaces, especially a free-running
3929          * EGL-widget, we need to post the parent surface once with
3930          * all the old state to guarantee, that the EGL-widget will
3931          * receive its frame callback soon. Otherwise, a forced call
3932          * to eglSwapBuffers may end up blocking, waiting for a frame
3933          * event that will never come, because we will commit the parent
3934          * surface with all new state only after eglSwapBuffers returns.
3935          *
3936          * This assumes, that:
3937          * 1. When the EGL widget's resize hook is called, it pauses.
3938          * 2. When the EGL widget's redraw hook is called, it forces a
3939          *    repaint and a call to eglSwapBuffers(), and maybe resumes.
3940          * In a single threaded application condition 1 is a no-op.
3941          *
3942          * XXX: This should actually be after the surface_resize() calls,
3943          * but cannot, because then it would commit the incomplete state
3944          * accumulated from the widget resize hooks.
3945          */
3946         if (window->subsurface_list.next != &window->main_surface->link ||
3947             window->subsurface_list.prev != &window->main_surface->link)
3948                 wl_surface_commit(window->main_surface->surface);
3949 }
3950
3951 static void
3952 idle_resize(struct window *window)
3953 {
3954         struct surface *surface;
3955
3956         window->resize_needed = 0;
3957         window->redraw_needed = 1;
3958
3959         DBG("from %dx%d to %dx%d\n",
3960             window->main_surface->server_allocation.width,
3961             window->main_surface->server_allocation.height,
3962             window->pending_allocation.width,
3963             window->pending_allocation.height);
3964
3965         hack_prevent_EGL_sub_surface_deadlock(window);
3966
3967         widget_set_allocation(window->main_surface->widget,
3968                               window->pending_allocation.x,
3969                               window->pending_allocation.y,
3970                               window->pending_allocation.width,
3971                               window->pending_allocation.height);
3972
3973         surface_resize(window->main_surface);
3974
3975         /* The main surface is in the list, too. Main surface's
3976          * resize_handler is responsible for calling widget_set_allocation()
3977          * on all sub-surface root widgets, so they will be resized
3978          * properly.
3979          */
3980         wl_list_for_each(surface, &window->subsurface_list, link) {
3981                 if (surface == window->main_surface)
3982                         continue;
3983
3984                 surface_set_synchronized(surface);
3985                 surface_resize(surface);
3986         }
3987 }
3988
3989 void
3990 window_schedule_resize(struct window *window, int width, int height)
3991 {
3992         window->pending_allocation.x = 0;
3993         window->pending_allocation.y = 0;
3994         window->pending_allocation.width = width;
3995         window->pending_allocation.height = height;
3996
3997         if (window->min_allocation.width == 0)
3998                 window->min_allocation = window->pending_allocation;
3999         if (window->pending_allocation.width < window->min_allocation.width)
4000                 window->pending_allocation.width = window->min_allocation.width;
4001         if (window->pending_allocation.height < window->min_allocation.height)
4002                 window->pending_allocation.height = window->min_allocation.height;
4003
4004         window->resize_needed = 1;
4005         window_schedule_redraw(window);
4006 }
4007
4008 void
4009 widget_schedule_resize(struct widget *widget, int32_t width, int32_t height)
4010 {
4011         window_schedule_resize(widget->window, width, height);
4012 }
4013
4014 static void
4015 handle_ping(void *data, struct wl_shell_surface *shell_surface,
4016                                                         uint32_t serial)
4017 {
4018         wl_shell_surface_pong(shell_surface, serial);
4019 }
4020
4021 static void
4022 handle_configure(void *data, struct wl_shell_surface *shell_surface,
4023                  uint32_t edges, int32_t width, int32_t height)
4024 {
4025         struct window *window = data;
4026
4027         window->resize_edges = edges;
4028         window_schedule_resize(window, width, height);
4029 }
4030
4031 static void
4032 menu_destroy(struct menu *menu)
4033 {
4034         widget_destroy(menu->widget);
4035         window_destroy(menu->window);
4036         free(menu);
4037 }
4038
4039 static void
4040 handle_popup_done(void *data, struct wl_shell_surface *shell_surface)
4041 {
4042         struct window *window = data;
4043         struct menu *menu = window->main_surface->widget->user_data;
4044
4045         /* FIXME: Need more context in this event, at least the input
4046          * device.  Or just use wl_callback.  And this really needs to
4047          * be a window vfunc that the menu can set.  And we need the
4048          * time. */
4049
4050         input_ungrab(menu->input);
4051         menu_destroy(menu);
4052 }
4053
4054 static const struct wl_shell_surface_listener shell_surface_listener = {
4055         handle_ping,
4056         handle_configure,
4057         handle_popup_done
4058 };
4059
4060 void
4061 window_get_allocation(struct window *window,
4062                       struct rectangle *allocation)
4063 {
4064         *allocation = window->main_surface->allocation;
4065 }
4066
4067 static void
4068 widget_redraw(struct widget *widget)
4069 {
4070         struct widget *child;
4071
4072         if (widget->redraw_handler)
4073                 widget->redraw_handler(widget, widget->user_data);
4074         wl_list_for_each(child, &widget->child_list, link)
4075                 widget_redraw(child);
4076 }
4077
4078 static void
4079 frame_callback(void *data, struct wl_callback *callback, uint32_t time)
4080 {
4081         struct surface *surface = data;
4082
4083         assert(callback == surface->frame_cb);
4084         DBG_OBJ(callback, "done\n");
4085         wl_callback_destroy(callback);
4086         surface->frame_cb = NULL;
4087
4088         surface->last_time = time;
4089
4090         if (surface->redraw_needed || surface->window->redraw_needed) {
4091                 DBG_OBJ(surface->surface, "window_schedule_redraw_task\n");
4092                 window_schedule_redraw_task(surface->window);
4093         }
4094 }
4095
4096 static const struct wl_callback_listener listener = {
4097         frame_callback
4098 };
4099
4100 static void
4101 surface_redraw(struct surface *surface)
4102 {
4103         DBG_OBJ(surface->surface, "begin\n");
4104
4105         if (!surface->window->redraw_needed && !surface->redraw_needed)
4106                 return;
4107
4108         /* Whole-window redraw forces a redraw even if the previous has
4109          * not yet hit the screen.
4110          */
4111         if (surface->frame_cb) {
4112                 if (!surface->window->redraw_needed)
4113                         return;
4114
4115                 DBG_OBJ(surface->frame_cb, "cancelled\n");
4116                 wl_callback_destroy(surface->frame_cb);
4117         }
4118
4119         surface->frame_cb = wl_surface_frame(surface->surface);
4120         wl_callback_add_listener(surface->frame_cb, &listener, surface);
4121         DBG_OBJ(surface->frame_cb, "new\n");
4122
4123         surface->redraw_needed = 0;
4124         DBG_OBJ(surface->surface, "-> widget_redraw\n");
4125         widget_redraw(surface->widget);
4126         DBG_OBJ(surface->surface, "done\n");
4127 }
4128
4129 static void
4130 idle_redraw(struct task *task, uint32_t events)
4131 {
4132         struct window *window = container_of(task, struct window, redraw_task);
4133         struct surface *surface;
4134
4135         DBG(" --------- \n");
4136
4137         wl_list_init(&window->redraw_task.link);
4138         window->redraw_task_scheduled = 0;
4139
4140         if (window->resize_needed) {
4141                 /* throttle resizing to the main surface display */
4142                 if (window->main_surface->frame_cb) {
4143                         DBG_OBJ(window->main_surface->frame_cb, "pending\n");
4144                         return;
4145                 }
4146
4147                 idle_resize(window);
4148         }
4149
4150         wl_list_for_each(surface, &window->subsurface_list, link)
4151                 surface_redraw(surface);
4152
4153         window->redraw_needed = 0;
4154         window_flush(window);
4155
4156         wl_list_for_each(surface, &window->subsurface_list, link)
4157                 surface_set_synchronized_default(surface);
4158 }
4159
4160 static void
4161 window_schedule_redraw_task(struct window *window)
4162 {
4163         if (window->configure_requests)
4164                 return;
4165         if (!window->redraw_task_scheduled) {
4166                 window->redraw_task.run = idle_redraw;
4167                 display_defer(window->display, &window->redraw_task);
4168                 window->redraw_task_scheduled = 1;
4169         }
4170 }
4171
4172 void
4173 window_schedule_redraw(struct window *window)
4174 {
4175         struct surface *surface;
4176
4177         DBG_OBJ(window->main_surface->surface, "window %p\n", window);
4178
4179         wl_list_for_each(surface, &window->subsurface_list, link)
4180                 surface->redraw_needed = 1;
4181
4182         window_schedule_redraw_task(window);
4183 }
4184
4185 int
4186 window_is_fullscreen(struct window *window)
4187 {
4188         return window->type == TYPE_FULLSCREEN;
4189 }
4190
4191 static void
4192 configure_request_completed(void *data, struct wl_callback *callback, uint32_t  time)
4193 {
4194         struct window *window = data;
4195
4196         wl_callback_destroy(callback);
4197         window->configure_requests--;
4198
4199         if (!window->configure_requests)
4200                 window_schedule_redraw(window);
4201 }
4202
4203 static struct wl_callback_listener configure_request_listener = {
4204         configure_request_completed,
4205 };
4206
4207 static void
4208 window_defer_redraw_until_configure(struct window* window)
4209 {
4210         struct wl_callback *callback;
4211
4212         if (window->redraw_task_scheduled) {
4213                 wl_list_remove(&window->redraw_task.link);
4214                 window->redraw_task_scheduled = 0;
4215         }
4216
4217         callback = wl_display_sync(window->display->display);
4218         wl_callback_add_listener(callback, &configure_request_listener, window);
4219         window->configure_requests++;
4220 }
4221
4222 void
4223 window_set_fullscreen(struct window *window, int fullscreen)
4224 {
4225         if (!window->display->shell)
4226                 return;
4227
4228         if ((window->type == TYPE_FULLSCREEN) == fullscreen)
4229                 return;
4230
4231         if (fullscreen) {
4232                 window->saved_type = window->type;
4233                 if (window->type == TYPE_TOPLEVEL) {
4234                         window->saved_allocation = window->main_surface->allocation;
4235                 }
4236                 window->type = TYPE_FULLSCREEN;
4237                 wl_shell_surface_set_fullscreen(window->shell_surface,
4238                                                 window->fullscreen_method,
4239                                                 0, NULL);
4240                 window_defer_redraw_until_configure (window);
4241         } else {
4242                 if (window->saved_type == TYPE_MAXIMIZED) {
4243                         window_set_maximized(window, 1);
4244                 } else {
4245                         window->type = TYPE_TOPLEVEL;
4246                         wl_shell_surface_set_toplevel(window->shell_surface);
4247                         window_schedule_resize(window,
4248                                                    window->saved_allocation.width,
4249                                                    window->saved_allocation.height);
4250                 }
4251
4252         }
4253 }
4254
4255 void
4256 window_set_fullscreen_method(struct window *window,
4257                              enum wl_shell_surface_fullscreen_method method)
4258 {
4259         window->fullscreen_method = method;
4260 }
4261
4262 int
4263 window_is_maximized(struct window *window)
4264 {
4265         return window->type == TYPE_MAXIMIZED;
4266 }
4267
4268 void
4269 window_set_maximized(struct window *window, int maximized)
4270 {
4271         if (!window->display->shell)
4272                 return;
4273
4274         if ((window->type == TYPE_MAXIMIZED) == maximized)
4275                 return;
4276
4277         if (window->type == TYPE_TOPLEVEL) {
4278                 window->saved_allocation = window->main_surface->allocation;
4279                 wl_shell_surface_set_maximized(window->shell_surface, NULL);
4280                 window->type = TYPE_MAXIMIZED;
4281                 window_defer_redraw_until_configure(window);
4282         } else if (window->type == TYPE_FULLSCREEN) {
4283                 wl_shell_surface_set_maximized(window->shell_surface, NULL);
4284                 window->type = TYPE_MAXIMIZED;
4285                 window_defer_redraw_until_configure(window);
4286         } else {
4287                 wl_shell_surface_set_toplevel(window->shell_surface);
4288                 window->type = TYPE_TOPLEVEL;
4289                 window_schedule_resize(window,
4290                                        window->saved_allocation.width,
4291                                        window->saved_allocation.height);
4292         }
4293 }
4294
4295 void
4296 window_set_user_data(struct window *window, void *data)
4297 {
4298         window->user_data = data;
4299 }
4300
4301 void *
4302 window_get_user_data(struct window *window)
4303 {
4304         return window->user_data;
4305 }
4306
4307 void
4308 window_set_key_handler(struct window *window,
4309                        window_key_handler_t handler)
4310 {
4311         window->key_handler = handler;
4312 }
4313
4314 void
4315 window_set_keyboard_focus_handler(struct window *window,
4316                                   window_keyboard_focus_handler_t handler)
4317 {
4318         window->keyboard_focus_handler = handler;
4319 }
4320
4321 void
4322 window_set_data_handler(struct window *window, window_data_handler_t handler)
4323 {
4324         window->data_handler = handler;
4325 }
4326
4327 void
4328 window_set_drop_handler(struct window *window, window_drop_handler_t handler)
4329 {
4330         window->drop_handler = handler;
4331 }
4332
4333 void
4334 window_set_close_handler(struct window *window,
4335                          window_close_handler_t handler)
4336 {
4337         window->close_handler = handler;
4338 }
4339
4340 void
4341 window_set_fullscreen_handler(struct window *window,
4342                               window_fullscreen_handler_t handler)
4343 {
4344         window->fullscreen_handler = handler;
4345 }
4346
4347 void
4348 window_set_output_handler(struct window *window,
4349                           window_output_handler_t handler)
4350 {
4351         window->output_handler = handler;
4352 }
4353
4354 void
4355 window_set_title(struct window *window, const char *title)
4356 {
4357         free(window->title);
4358         window->title = strdup(title);
4359         if (window->shell_surface)
4360                 wl_shell_surface_set_title(window->shell_surface, title);
4361 }
4362
4363 const char *
4364 window_get_title(struct window *window)
4365 {
4366         return window->title;
4367 }
4368
4369 void
4370 window_set_text_cursor_position(struct window *window, int32_t x, int32_t y)
4371 {
4372         struct text_cursor_position *text_cursor_position =
4373                                         window->display->text_cursor_position;
4374
4375         if (!text_cursor_position)
4376                 return;
4377
4378         text_cursor_position_notify(text_cursor_position,
4379                                     window->main_surface->surface,
4380                                     wl_fixed_from_int(x),
4381                                     wl_fixed_from_int(y));
4382 }
4383
4384 void
4385 window_damage(struct window *window, int32_t x, int32_t y,
4386               int32_t width, int32_t height)
4387 {
4388         wl_surface_damage(window->main_surface->surface, x, y, width, height);
4389 }
4390
4391 static void
4392 surface_enter(void *data,
4393               struct wl_surface *wl_surface, struct wl_output *wl_output)
4394 {
4395         struct window *window = data;
4396         struct output *output;
4397         struct output *output_found = NULL;
4398         struct window_output *window_output;
4399
4400         wl_list_for_each(output, &window->display->output_list, link) {
4401                 if (output->output == wl_output) {
4402                         output_found = output;
4403                         break;
4404                 }
4405         }
4406
4407         if (!output_found)
4408                 return;
4409
4410         window_output = xmalloc(sizeof *window_output);
4411         window_output->output = output_found;
4412
4413         wl_list_insert (&window->window_output_list, &window_output->link);
4414
4415         if (window->output_handler)
4416                 window->output_handler(window, output_found, 1,
4417                                        window->user_data);
4418 }
4419
4420 static void
4421 surface_leave(void *data,
4422               struct wl_surface *wl_surface, struct wl_output *output)
4423 {
4424         struct window *window = data;
4425         struct window_output *window_output;
4426         struct window_output *window_output_found = NULL;
4427
4428         wl_list_for_each(window_output, &window->window_output_list, link) {
4429                 if (window_output->output->output == output) {
4430                         window_output_found = window_output;
4431                         break;
4432                 }
4433         }
4434
4435         if (window_output_found) {
4436                 wl_list_remove(&window_output_found->link);
4437
4438                 if (window->output_handler)
4439                         window->output_handler(window, window_output->output,
4440                                                0, window->user_data);
4441
4442                 free(window_output_found);
4443         }
4444 }
4445
4446 static const struct wl_surface_listener surface_listener = {
4447         surface_enter,
4448         surface_leave
4449 };
4450
4451 static struct surface *
4452 surface_create(struct window *window)
4453 {
4454         struct display *display = window->display;
4455         struct surface *surface;
4456
4457         surface = xmalloc(sizeof *surface);
4458         memset(surface, 0, sizeof *surface);
4459         if (!surface)
4460                 return NULL;
4461
4462         surface->window = window;
4463         surface->surface = wl_compositor_create_surface(display->compositor);
4464         surface->buffer_scale = 1;
4465         wl_surface_add_listener(surface->surface, &surface_listener, window);
4466
4467         wl_list_insert(&window->subsurface_list, &surface->link);
4468
4469         return surface;
4470 }
4471
4472 static struct window *
4473 window_create_internal(struct display *display,
4474                        struct window *parent, int type)
4475 {
4476         struct window *window;
4477         struct surface *surface;
4478
4479         window = xzalloc(sizeof *window);
4480         wl_list_init(&window->subsurface_list);
4481         window->display = display;
4482         window->parent = parent;
4483
4484         surface = surface_create(window);
4485         window->main_surface = surface;
4486
4487         if (type != TYPE_CUSTOM && display->shell) {
4488                 window->shell_surface =
4489                         wl_shell_get_shell_surface(display->shell,
4490                                                    surface->surface);
4491                 fail_on_null(window->shell_surface);
4492         }
4493
4494         window->type = type;
4495         window->fullscreen_method = WL_SHELL_SURFACE_FULLSCREEN_METHOD_DEFAULT;
4496         window->configure_requests = 0;
4497         window->preferred_format = WINDOW_PREFERRED_FORMAT_NONE;
4498
4499         if (display->argb_device)
4500 #ifdef HAVE_CAIRO_EGL
4501                 surface->buffer_type = WINDOW_BUFFER_TYPE_EGL_WINDOW;
4502 #else
4503                 surface->buffer_type = WINDOW_BUFFER_TYPE_SHM;
4504 #endif
4505         else
4506                 surface->buffer_type = WINDOW_BUFFER_TYPE_SHM;
4507
4508         wl_surface_set_user_data(surface->surface, window);
4509         wl_list_insert(display->window_list.prev, &window->link);
4510         wl_list_init(&window->redraw_task.link);
4511
4512         if (window->shell_surface) {
4513                 wl_shell_surface_set_user_data(window->shell_surface, window);
4514                 wl_shell_surface_add_listener(window->shell_surface,
4515                                               &shell_surface_listener, window);
4516         }
4517
4518         wl_list_init (&window->window_output_list);
4519
4520         return window;
4521 }
4522
4523 struct window *
4524 window_create(struct display *display)
4525 {
4526         return window_create_internal(display, NULL, TYPE_NONE);
4527 }
4528
4529 struct window *
4530 window_create_custom(struct display *display)
4531 {
4532         return window_create_internal(display, NULL, TYPE_CUSTOM);
4533 }
4534
4535 struct window *
4536 window_create_transient(struct display *display, struct window *parent,
4537                         int32_t x, int32_t y, uint32_t flags)
4538 {
4539         struct window *window;
4540
4541         window = window_create_internal(parent->display,
4542                                         parent, TYPE_TRANSIENT);
4543
4544         window->x = x;
4545         window->y = y;
4546
4547         if (display->shell)
4548                 wl_shell_surface_set_transient(
4549                         window->shell_surface,
4550                         window->parent->main_surface->surface,
4551                         window->x, window->y, flags);
4552
4553         return window;
4554 }
4555
4556 static void
4557 menu_set_item(struct menu *menu, int sy)
4558 {
4559         int next;
4560
4561         next = (sy - 8) / 20;
4562         if (menu->current != next) {
4563                 menu->current = next;
4564                 widget_schedule_redraw(menu->widget);
4565         }
4566 }
4567
4568 static int
4569 menu_motion_handler(struct widget *widget,
4570                     struct input *input, uint32_t time,
4571                     float x, float y, void *data)
4572 {
4573         struct menu *menu = data;
4574
4575         if (widget == menu->widget)
4576                 menu_set_item(data, y);
4577
4578         return CURSOR_LEFT_PTR;
4579 }
4580
4581 static int
4582 menu_enter_handler(struct widget *widget,
4583                    struct input *input, float x, float y, void *data)
4584 {
4585         struct menu *menu = data;
4586
4587         if (widget == menu->widget)
4588                 menu_set_item(data, y);
4589
4590         return CURSOR_LEFT_PTR;
4591 }
4592
4593 static void
4594 menu_leave_handler(struct widget *widget, struct input *input, void *data)
4595 {
4596         struct menu *menu = data;
4597
4598         if (widget == menu->widget)
4599                 menu_set_item(data, -200);
4600 }
4601
4602 static void
4603 menu_button_handler(struct widget *widget,
4604                     struct input *input, uint32_t time,
4605                     uint32_t button, enum wl_pointer_button_state state,
4606                     void *data)
4607
4608 {
4609         struct menu *menu = data;
4610
4611         if (state == WL_POINTER_BUTTON_STATE_RELEASED &&
4612             (menu->release_count > 0 || time - menu->time > 500)) {
4613                 /* Either relase after press-drag-release or
4614                  * click-motion-click. */
4615                 menu->func(menu->window->parent, 
4616                            menu->current, menu->window->parent->user_data);
4617                 input_ungrab(input);
4618                 menu_destroy(menu);
4619         } else if (state == WL_POINTER_BUTTON_STATE_RELEASED) {
4620                 menu->release_count++;
4621         }
4622 }
4623
4624 static void
4625 menu_redraw_handler(struct widget *widget, void *data)
4626 {
4627         cairo_t *cr;
4628         const int32_t r = 3, margin = 3;
4629         struct menu *menu = data;
4630         int32_t width, height, i;
4631
4632         cr = widget_cairo_create(widget);
4633         cairo_set_operator(cr, CAIRO_OPERATOR_SOURCE);
4634         cairo_set_source_rgba(cr, 0.0, 0.0, 0.0, 0.0);
4635         cairo_paint(cr);
4636
4637         width = widget->allocation.width;
4638         height = widget->allocation.height;
4639         rounded_rect(cr, 0, 0, width, height, r);
4640
4641         cairo_set_operator(cr, CAIRO_OPERATOR_OVER);
4642         cairo_set_source_rgba(cr, 0.0, 0.0, 0.4, 0.8);
4643         cairo_fill(cr);
4644
4645         for (i = 0; i < menu->count; i++) {
4646                 if (i == menu->current) {
4647                         cairo_set_source_rgb(cr, 1.0, 1.0, 1.0);
4648                         cairo_rectangle(cr, margin, i * 20 + margin,
4649                                         width - 2 * margin, 20);
4650                         cairo_fill(cr);
4651                         cairo_set_source_rgb(cr, 0.0, 0.0, 0.0);
4652                         cairo_move_to(cr, 10, i * 20 + 16);
4653                         cairo_show_text(cr, menu->entries[i]);
4654                 } else {
4655                         cairo_set_source_rgb(cr, 1.0, 1.0, 1.0);
4656                         cairo_move_to(cr, 10, i * 20 + 16);
4657                         cairo_show_text(cr, menu->entries[i]);
4658                 }
4659         }
4660
4661         cairo_destroy(cr);
4662 }
4663
4664 void
4665 window_show_menu(struct display *display,
4666                  struct input *input, uint32_t time, struct window *parent,
4667                  int32_t x, int32_t y,
4668                  menu_func_t func, const char **entries, int count)
4669 {
4670         struct window *window;
4671         struct menu *menu;
4672         const int32_t margin = 3;
4673
4674         menu = malloc(sizeof *menu);
4675         if (!menu)
4676                 return;
4677
4678         window = window_create_internal(parent->display, parent, TYPE_MENU);
4679         if (!window) {
4680                 free(menu);
4681                 return;
4682         }
4683
4684         menu->window = window;
4685         menu->widget = window_add_widget(menu->window, menu);
4686         window_set_buffer_scale (menu->window, window_get_buffer_scale (parent));
4687         window_set_buffer_transform (menu->window, window_get_buffer_transform (parent));
4688         menu->entries = entries;
4689         menu->count = count;
4690         menu->release_count = 0;
4691         menu->current = -1;
4692         menu->time = time;
4693         menu->func = func;
4694         menu->input = input;
4695         window->type = TYPE_MENU;
4696         window->x = x;
4697         window->y = y;
4698
4699         input_ungrab(input);
4700         wl_shell_surface_set_popup(window->shell_surface, input->seat,
4701                                    display_get_serial(window->display),
4702                                    window->parent->main_surface->surface,
4703                                    window->x, window->y, 0);
4704
4705         widget_set_redraw_handler(menu->widget, menu_redraw_handler);
4706         widget_set_enter_handler(menu->widget, menu_enter_handler);
4707         widget_set_leave_handler(menu->widget, menu_leave_handler);
4708         widget_set_motion_handler(menu->widget, menu_motion_handler);
4709         widget_set_button_handler(menu->widget, menu_button_handler);
4710
4711         input_grab(input, menu->widget, 0);
4712         window_schedule_resize(window, 200, count * 20 + margin * 2);
4713 }
4714
4715 void
4716 window_set_buffer_type(struct window *window, enum window_buffer_type type)
4717 {
4718         window->main_surface->buffer_type = type;
4719 }
4720
4721 void
4722 window_set_preferred_format(struct window *window,
4723                             enum preferred_format format)
4724 {
4725         window->preferred_format = format;
4726 }
4727
4728 struct widget *
4729 window_add_subsurface(struct window *window, void *data,
4730                       enum subsurface_mode default_mode)
4731 {
4732         struct widget *widget;
4733         struct surface *surface;
4734         struct wl_surface *parent;
4735         struct wl_subcompositor *subcompo = window->display->subcompositor;
4736
4737         surface = surface_create(window);
4738         widget = widget_create(window, surface, data);
4739         wl_list_init(&widget->link);
4740         surface->widget = widget;
4741
4742         parent = window->main_surface->surface;
4743         surface->subsurface = wl_subcompositor_get_subsurface(subcompo,
4744                                                               surface->surface,
4745                                                               parent);
4746         surface->synchronized = 1;
4747
4748         switch (default_mode) {
4749         case SUBSURFACE_SYNCHRONIZED:
4750                 surface->synchronized_default = 1;
4751                 break;
4752         case SUBSURFACE_DESYNCHRONIZED:
4753                 surface->synchronized_default = 0;
4754                 break;
4755         default:
4756                 assert(!"bad enum subsurface_mode");
4757         }
4758
4759         return widget;
4760 }
4761
4762 static void
4763 display_handle_geometry(void *data,
4764                         struct wl_output *wl_output,
4765                         int x, int y,
4766                         int physical_width,
4767                         int physical_height,
4768                         int subpixel,
4769                         const char *make,
4770                         const char *model,
4771                         int transform)
4772 {
4773         struct output *output = data;
4774
4775         output->allocation.x = x;
4776         output->allocation.y = y;
4777         output->transform = transform;
4778 }
4779
4780 static void
4781 display_handle_done(void *data,
4782                      struct wl_output *wl_output)
4783 {
4784 }
4785
4786 static void
4787 display_handle_scale(void *data,
4788                      struct wl_output *wl_output,
4789                      int32_t scale)
4790 {
4791         struct output *output = data;
4792
4793         output->scale = scale;
4794 }
4795
4796 static void
4797 display_handle_mode(void *data,
4798                     struct wl_output *wl_output,
4799                     uint32_t flags,
4800                     int width,
4801                     int height,
4802                     int refresh)
4803 {
4804         struct output *output = data;
4805         struct display *display = output->display;
4806
4807         if (flags & WL_OUTPUT_MODE_CURRENT) {
4808                 output->allocation.width = width;
4809                 output->allocation.height = height;
4810                 if (display->output_configure_handler)
4811                         (*display->output_configure_handler)(
4812                                                 output, display->user_data);
4813         }
4814 }
4815
4816 static const struct wl_output_listener output_listener = {
4817         display_handle_geometry,
4818         display_handle_mode,
4819         display_handle_done,
4820         display_handle_scale
4821 };
4822
4823 static void
4824 display_add_output(struct display *d, uint32_t id)
4825 {
4826         struct output *output;
4827
4828         output = xzalloc(sizeof *output);
4829         output->display = d;
4830         output->scale = 1;
4831         output->output =
4832                 wl_registry_bind(d->registry, id, &wl_output_interface, 2);
4833         wl_list_insert(d->output_list.prev, &output->link);
4834
4835         wl_output_add_listener(output->output, &output_listener, output);
4836 }
4837
4838 static void
4839 output_destroy(struct output *output)
4840 {
4841         if (output->destroy_handler)
4842                 (*output->destroy_handler)(output, output->user_data);
4843
4844         wl_output_destroy(output->output);
4845         wl_list_remove(&output->link);
4846         free(output);
4847 }
4848
4849 void
4850 display_set_global_handler(struct display *display,
4851                            display_global_handler_t handler)
4852 {
4853         struct global *global;
4854
4855         display->global_handler = handler;
4856         if (!handler)
4857                 return;
4858
4859         wl_list_for_each(global, &display->global_list, link)
4860                 display->global_handler(display,
4861                                         global->name, global->interface,
4862                                         global->version, display->user_data);
4863 }
4864
4865 void
4866 display_set_output_configure_handler(struct display *display,
4867                                      display_output_handler_t handler)
4868 {
4869         struct output *output;
4870
4871         display->output_configure_handler = handler;
4872         if (!handler)
4873                 return;
4874
4875         wl_list_for_each(output, &display->output_list, link) {
4876                 if (output->allocation.width == 0 &&
4877                     output->allocation.height == 0)
4878                         continue;
4879
4880                 (*display->output_configure_handler)(output,
4881                                                      display->user_data);
4882         }
4883 }
4884
4885 void
4886 output_set_user_data(struct output *output, void *data)
4887 {
4888         output->user_data = data;
4889 }
4890
4891 void *
4892 output_get_user_data(struct output *output)
4893 {
4894         return output->user_data;
4895 }
4896
4897 void
4898 output_set_destroy_handler(struct output *output,
4899                            display_output_handler_t handler)
4900 {
4901         output->destroy_handler = handler;
4902         /* FIXME: implement this, once we have way to remove outputs */
4903 }
4904
4905 void
4906 output_get_allocation(struct output *output, struct rectangle *base)
4907 {
4908         struct rectangle allocation = output->allocation;
4909
4910         switch (output->transform) {
4911         case WL_OUTPUT_TRANSFORM_90:
4912         case WL_OUTPUT_TRANSFORM_270:
4913         case WL_OUTPUT_TRANSFORM_FLIPPED_90:
4914         case WL_OUTPUT_TRANSFORM_FLIPPED_270:
4915                 /* Swap width and height */
4916                 allocation.width = output->allocation.height;
4917                 allocation.height = output->allocation.width;
4918                 break;
4919         }
4920
4921         *base = allocation;
4922 }
4923
4924 struct wl_output *
4925 output_get_wl_output(struct output *output)
4926 {
4927         return output->output;
4928 }
4929
4930 enum wl_output_transform
4931 output_get_transform(struct output *output)
4932 {
4933         return output->transform;
4934 }
4935
4936 uint32_t
4937 output_get_scale(struct output *output)
4938 {
4939         return output->scale;
4940 }
4941
4942 static void
4943 fini_xkb(struct input *input)
4944 {
4945         xkb_state_unref(input->xkb.state);
4946         xkb_map_unref(input->xkb.keymap);
4947 }
4948
4949 #define MAX(a,b) ((a) > (b) ? a : b)
4950
4951 static void
4952 display_add_input(struct display *d, uint32_t id)
4953 {
4954         struct input *input;
4955
4956         input = xzalloc(sizeof *input);
4957         input->display = d;
4958         input->seat = wl_registry_bind(d->registry, id, &wl_seat_interface,
4959                                        MAX(d->seat_version, 3));
4960         input->touch_focus = NULL;
4961         input->pointer_focus = NULL;
4962         input->keyboard_focus = NULL;
4963         wl_list_init(&input->touch_point_list);
4964         wl_list_insert(d->input_list.prev, &input->link);
4965
4966         wl_seat_add_listener(input->seat, &seat_listener, input);
4967         wl_seat_set_user_data(input->seat, input);
4968
4969         input->data_device =
4970                 wl_data_device_manager_get_data_device(d->data_device_manager,
4971                                                        input->seat);
4972         wl_data_device_add_listener(input->data_device, &data_device_listener,
4973                                     input);
4974
4975         input->pointer_surface = wl_compositor_create_surface(d->compositor);
4976
4977         input->repeat_timer_fd = timerfd_create(CLOCK_MONOTONIC,
4978                                                 TFD_CLOEXEC | TFD_NONBLOCK);
4979         input->repeat_task.run = keyboard_repeat_func;
4980         display_watch_fd(d, input->repeat_timer_fd,
4981                          EPOLLIN, &input->repeat_task);
4982 }
4983
4984 static void
4985 input_destroy(struct input *input)
4986 {
4987         input_remove_keyboard_focus(input);
4988         input_remove_pointer_focus(input);
4989
4990         if (input->drag_offer)
4991                 data_offer_destroy(input->drag_offer);
4992
4993         if (input->selection_offer)
4994                 data_offer_destroy(input->selection_offer);
4995
4996         wl_data_device_destroy(input->data_device);
4997
4998         if (input->display->seat_version >= 3) {
4999                 if (input->pointer)
5000                         wl_pointer_release(input->pointer);
5001                 if (input->keyboard)
5002                         wl_keyboard_release(input->keyboard);
5003         }
5004
5005         fini_xkb(input);
5006
5007         wl_surface_destroy(input->pointer_surface);
5008
5009         wl_list_remove(&input->link);
5010         wl_seat_destroy(input->seat);
5011         close(input->repeat_timer_fd);
5012         free(input);
5013 }
5014
5015 static void
5016 init_workspace_manager(struct display *d, uint32_t id)
5017 {
5018         d->workspace_manager =
5019                 wl_registry_bind(d->registry, id,
5020                                  &workspace_manager_interface, 1);
5021         if (d->workspace_manager != NULL)
5022                 workspace_manager_add_listener(d->workspace_manager,
5023                                                &workspace_manager_listener,
5024                                                d);
5025 }
5026
5027 static void
5028 shm_format(void *data, struct wl_shm *wl_shm, uint32_t format)
5029 {
5030         struct display *d = data;
5031
5032         if (format == WL_SHM_FORMAT_RGB565)
5033                 d->has_rgb565 = 1;
5034 }
5035
5036 struct wl_shm_listener shm_listener = {
5037         shm_format
5038 };
5039
5040 static void
5041 registry_handle_global(void *data, struct wl_registry *registry, uint32_t id,
5042                        const char *interface, uint32_t version)
5043 {
5044         struct display *d = data;
5045         struct global *global;
5046
5047         global = xmalloc(sizeof *global);
5048         global->name = id;
5049         global->interface = strdup(interface);
5050         global->version = version;
5051         wl_list_insert(d->global_list.prev, &global->link);
5052
5053         if (strcmp(interface, "wl_compositor") == 0) {
5054                 d->compositor = wl_registry_bind(registry, id,
5055                                                  &wl_compositor_interface, 3);
5056         } else if (strcmp(interface, "wl_output") == 0) {
5057                 display_add_output(d, id);
5058         } else if (strcmp(interface, "wl_seat") == 0) {
5059                 d->seat_version = version;
5060                 display_add_input(d, id);
5061         } else if (strcmp(interface, "wl_shell") == 0) {
5062                 d->shell = wl_registry_bind(registry,
5063                                             id, &wl_shell_interface, 1);
5064         } else if (strcmp(interface, "wl_shm") == 0) {
5065                 d->shm = wl_registry_bind(registry, id, &wl_shm_interface, 1);
5066                 wl_shm_add_listener(d->shm, &shm_listener, d);
5067         } else if (strcmp(interface, "wl_data_device_manager") == 0) {
5068                 d->data_device_manager =
5069                         wl_registry_bind(registry, id,
5070                                          &wl_data_device_manager_interface, 1);
5071         } else if (strcmp(interface, "text_cursor_position") == 0) {
5072                 d->text_cursor_position =
5073                         wl_registry_bind(registry, id,
5074                                          &text_cursor_position_interface, 1);
5075         } else if (strcmp(interface, "workspace_manager") == 0) {
5076                 init_workspace_manager(d, id);
5077         } else if (strcmp(interface, "wl_subcompositor") == 0) {
5078                 d->subcompositor =
5079                         wl_registry_bind(registry, id,
5080                                          &wl_subcompositor_interface, 1);
5081         }
5082
5083         if (d->global_handler)
5084                 d->global_handler(d, id, interface, version, d->user_data);
5085 }
5086
5087 static void
5088 registry_handle_global_remove(void *data, struct wl_registry *registry,
5089                               uint32_t name)
5090 {
5091         struct display *d = data;
5092         struct global *global;
5093         struct global *tmp;
5094
5095         wl_list_for_each_safe(global, tmp, &d->global_list, link) {
5096                 if (global->name != name)
5097                         continue;
5098
5099                 /* XXX: Should destroy bound globals, and call
5100                  * the counterpart of display::global_handler
5101                  */
5102                 wl_list_remove(&global->link);
5103                 free(global->interface);
5104                 free(global);
5105         }
5106 }
5107
5108 void *
5109 display_bind(struct display *display, uint32_t name,
5110              const struct wl_interface *interface, uint32_t version)
5111 {
5112         return wl_registry_bind(display->registry, name, interface, version);
5113 }
5114
5115 static const struct wl_registry_listener registry_listener = {
5116         registry_handle_global,
5117         registry_handle_global_remove
5118 };
5119
5120 #ifdef HAVE_CAIRO_EGL
5121 static int
5122 init_egl(struct display *d)
5123 {
5124         EGLint major, minor;
5125         EGLint n;
5126
5127 #ifdef USE_CAIRO_GLESV2
5128 #  define GL_BIT EGL_OPENGL_ES2_BIT
5129 #else
5130 #  define GL_BIT EGL_OPENGL_BIT
5131 #endif
5132
5133         static const EGLint argb_cfg_attribs[] = {
5134                 EGL_SURFACE_TYPE, EGL_WINDOW_BIT,
5135                 EGL_RED_SIZE, 1,
5136                 EGL_GREEN_SIZE, 1,
5137                 EGL_BLUE_SIZE, 1,
5138                 EGL_ALPHA_SIZE, 1,
5139                 EGL_DEPTH_SIZE, 1,
5140                 EGL_RENDERABLE_TYPE, GL_BIT,
5141                 EGL_NONE
5142         };
5143
5144 #ifdef USE_CAIRO_GLESV2
5145         static const EGLint context_attribs[] = {
5146                 EGL_CONTEXT_CLIENT_VERSION, 2,
5147                 EGL_NONE
5148         };
5149         EGLint api = EGL_OPENGL_ES_API;
5150 #else
5151         EGLint *context_attribs = NULL;
5152         EGLint api = EGL_OPENGL_API;
5153 #endif
5154
5155         d->dpy = eglGetDisplay(d->display);
5156         if (!eglInitialize(d->dpy, &major, &minor)) {
5157                 fprintf(stderr, "failed to initialize EGL\n");
5158                 return -1;
5159         }
5160
5161         if (!eglBindAPI(api)) {
5162                 fprintf(stderr, "failed to bind EGL client API\n");
5163                 return -1;
5164         }
5165
5166         if (!eglChooseConfig(d->dpy, argb_cfg_attribs,
5167                              &d->argb_config, 1, &n) || n != 1) {
5168                 fprintf(stderr, "failed to choose argb EGL config\n");
5169                 return -1;
5170         }
5171
5172         d->argb_ctx = eglCreateContext(d->dpy, d->argb_config,
5173                                        EGL_NO_CONTEXT, context_attribs);
5174         if (d->argb_ctx == NULL) {
5175                 fprintf(stderr, "failed to create EGL context\n");
5176                 return -1;
5177         }
5178
5179         d->argb_device = cairo_egl_device_create(d->dpy, d->argb_ctx);
5180         if (cairo_device_status(d->argb_device) != CAIRO_STATUS_SUCCESS) {
5181                 fprintf(stderr, "failed to get cairo EGL argb device\n");
5182                 return -1;
5183         }
5184
5185         return 0;
5186 }
5187
5188 static void
5189 fini_egl(struct display *display)
5190 {
5191         cairo_device_destroy(display->argb_device);
5192
5193         eglMakeCurrent(display->dpy, EGL_NO_SURFACE, EGL_NO_SURFACE,
5194                        EGL_NO_CONTEXT);
5195
5196         eglTerminate(display->dpy);
5197         eglReleaseThread();
5198 }
5199 #endif
5200
5201 static void
5202 init_dummy_surface(struct display *display)
5203 {
5204         int len;
5205         void *data;
5206
5207         len = cairo_format_stride_for_width(CAIRO_FORMAT_ARGB32, 1);
5208         data = malloc(len);
5209         display->dummy_surface =
5210                 cairo_image_surface_create_for_data(data, CAIRO_FORMAT_ARGB32,
5211                                                     1, 1, len);
5212         display->dummy_surface_data = data;
5213 }
5214
5215 static void
5216 handle_display_data(struct task *task, uint32_t events)
5217 {
5218         struct display *display =
5219                 container_of(task, struct display, display_task);
5220         struct epoll_event ep;
5221         int ret;
5222
5223         display->display_fd_events = events;
5224
5225         if (events & EPOLLERR || events & EPOLLHUP) {
5226                 display_exit(display);
5227                 return;
5228         }
5229
5230         if (events & EPOLLIN) {
5231                 ret = wl_display_dispatch(display->display);
5232                 if (ret == -1) {
5233                         display_exit(display);
5234                         return;
5235                 }
5236         }
5237
5238         if (events & EPOLLOUT) {
5239                 ret = wl_display_flush(display->display);
5240                 if (ret == 0) {
5241                         ep.events = EPOLLIN | EPOLLERR | EPOLLHUP;
5242                         ep.data.ptr = &display->display_task;
5243                         epoll_ctl(display->epoll_fd, EPOLL_CTL_MOD,
5244                                   display->display_fd, &ep);
5245                 } else if (ret == -1 && errno != EAGAIN) {
5246                         display_exit(display);
5247                         return;
5248                 }
5249         }
5250 }
5251
5252 static void
5253 log_handler(const char *format, va_list args)
5254 {
5255         vfprintf(stderr, format, args);
5256 }
5257
5258 struct display *
5259 display_create(int *argc, char *argv[])
5260 {
5261         struct display *d;
5262
5263         wl_log_set_handler_client(log_handler);
5264
5265         d = zalloc(sizeof *d);
5266         if (d == NULL)
5267                 return NULL;
5268
5269         d->display = wl_display_connect(NULL);
5270         if (d->display == NULL) {
5271                 fprintf(stderr, "failed to connect to Wayland display: %m\n");
5272                 free(d);
5273                 return NULL;
5274         }
5275
5276         d->xkb_context = xkb_context_new(0);
5277         if (d->xkb_context == NULL) {
5278                 fprintf(stderr, "Failed to create XKB context\n");
5279                 free(d);
5280                 return NULL;
5281         }
5282
5283         d->epoll_fd = os_epoll_create_cloexec();
5284         d->display_fd = wl_display_get_fd(d->display);
5285         d->display_task.run = handle_display_data;
5286         display_watch_fd(d, d->display_fd, EPOLLIN | EPOLLERR | EPOLLHUP,
5287                          &d->display_task);
5288
5289         wl_list_init(&d->deferred_list);
5290         wl_list_init(&d->input_list);
5291         wl_list_init(&d->output_list);
5292         wl_list_init(&d->global_list);
5293
5294         d->workspace = 0;
5295         d->workspace_count = 1;
5296
5297         d->registry = wl_display_get_registry(d->display);
5298         wl_registry_add_listener(d->registry, &registry_listener, d);
5299
5300         if (wl_display_dispatch(d->display) < 0) {
5301                 fprintf(stderr, "Failed to process Wayland connection: %m\n");
5302                 return NULL;
5303         }
5304
5305 #ifdef HAVE_CAIRO_EGL
5306         if (init_egl(d) < 0)
5307                 fprintf(stderr, "EGL does not seem to work, "
5308                         "falling back to software rendering and wl_shm.\n");
5309 #endif
5310
5311         create_cursors(d);
5312
5313         d->theme = theme_create();
5314
5315         wl_list_init(&d->window_list);
5316
5317         init_dummy_surface(d);
5318
5319         return d;
5320 }
5321
5322 static void
5323 display_destroy_outputs(struct display *display)
5324 {
5325         struct output *tmp;
5326         struct output *output;
5327
5328         wl_list_for_each_safe(output, tmp, &display->output_list, link)
5329                 output_destroy(output);
5330 }
5331
5332 static void
5333 display_destroy_inputs(struct display *display)
5334 {
5335         struct input *tmp;
5336         struct input *input;
5337
5338         wl_list_for_each_safe(input, tmp, &display->input_list, link)
5339                 input_destroy(input);
5340 }
5341
5342 void
5343 display_destroy(struct display *display)
5344 {
5345         if (!wl_list_empty(&display->window_list))
5346                 fprintf(stderr, "toytoolkit warning: %d windows exist.\n",
5347                         wl_list_length(&display->window_list));
5348
5349         if (!wl_list_empty(&display->deferred_list))
5350                 fprintf(stderr, "toytoolkit warning: deferred tasks exist.\n");
5351
5352         cairo_surface_destroy(display->dummy_surface);
5353         free(display->dummy_surface_data);
5354
5355         display_destroy_outputs(display);
5356         display_destroy_inputs(display);
5357
5358         xkb_context_unref(display->xkb_context);
5359
5360         theme_destroy(display->theme);
5361         destroy_cursors(display);
5362
5363 #ifdef HAVE_CAIRO_EGL
5364         if (display->argb_device)
5365                 fini_egl(display);
5366 #endif
5367
5368         if (display->subcompositor)
5369                 wl_subcompositor_destroy(display->subcompositor);
5370
5371         if (display->shell)
5372                 wl_shell_destroy(display->shell);
5373
5374         if (display->shm)
5375                 wl_shm_destroy(display->shm);
5376
5377         if (display->data_device_manager)
5378                 wl_data_device_manager_destroy(display->data_device_manager);
5379
5380         wl_compositor_destroy(display->compositor);
5381         wl_registry_destroy(display->registry);
5382
5383         close(display->epoll_fd);
5384
5385         if (!(display->display_fd_events & EPOLLERR) &&
5386             !(display->display_fd_events & EPOLLHUP))
5387                 wl_display_flush(display->display);
5388
5389         wl_display_disconnect(display->display);
5390         free(display);
5391 }
5392
5393 void
5394 display_set_user_data(struct display *display, void *data)
5395 {
5396         display->user_data = data;
5397 }
5398
5399 void *
5400 display_get_user_data(struct display *display)
5401 {
5402         return display->user_data;
5403 }
5404
5405 struct wl_display *
5406 display_get_display(struct display *display)
5407 {
5408         return display->display;
5409 }
5410
5411 int
5412 display_has_subcompositor(struct display *display)
5413 {
5414         if (display->subcompositor)
5415                 return 1;
5416
5417         wl_display_roundtrip(display->display);
5418
5419         return display->subcompositor != NULL;
5420 }
5421
5422 cairo_device_t *
5423 display_get_cairo_device(struct display *display)
5424 {
5425         return display->argb_device;
5426 }
5427
5428 struct output *
5429 display_get_output(struct display *display)
5430 {
5431         return container_of(display->output_list.next, struct output, link);
5432 }
5433
5434 struct wl_compositor *
5435 display_get_compositor(struct display *display)
5436 {
5437         return display->compositor;
5438 }
5439
5440 uint32_t
5441 display_get_serial(struct display *display)
5442 {
5443         return display->serial;
5444 }
5445
5446 EGLDisplay
5447 display_get_egl_display(struct display *d)
5448 {
5449         return d->dpy;
5450 }
5451
5452 struct wl_data_source *
5453 display_create_data_source(struct display *display)
5454 {
5455         return wl_data_device_manager_create_data_source(display->data_device_manager);
5456 }
5457
5458 EGLConfig
5459 display_get_argb_egl_config(struct display *d)
5460 {
5461         return d->argb_config;
5462 }
5463
5464 struct wl_shell *
5465 display_get_shell(struct display *display)
5466 {
5467         return display->shell;
5468 }
5469
5470 int
5471 display_acquire_window_surface(struct display *display,
5472                                struct window *window,
5473                                EGLContext ctx)
5474 {
5475         struct surface *surface = window->main_surface;
5476
5477         if (surface->buffer_type != WINDOW_BUFFER_TYPE_EGL_WINDOW)
5478                 return -1;
5479
5480         widget_get_cairo_surface(window->main_surface->widget);
5481         return surface->toysurface->acquire(surface->toysurface, ctx);
5482 }
5483
5484 void
5485 display_release_window_surface(struct display *display,
5486                                struct window *window)
5487 {
5488         struct surface *surface = window->main_surface;
5489
5490         if (surface->buffer_type != WINDOW_BUFFER_TYPE_EGL_WINDOW)
5491                 return;
5492
5493         surface->toysurface->release(surface->toysurface);
5494 }
5495
5496 void
5497 display_defer(struct display *display, struct task *task)
5498 {
5499         wl_list_insert(&display->deferred_list, &task->link);
5500 }
5501
5502 void
5503 display_watch_fd(struct display *display,
5504                  int fd, uint32_t events, struct task *task)
5505 {
5506         struct epoll_event ep;
5507
5508         ep.events = events;
5509         ep.data.ptr = task;
5510         epoll_ctl(display->epoll_fd, EPOLL_CTL_ADD, fd, &ep);
5511 }
5512
5513 void
5514 display_unwatch_fd(struct display *display, int fd)
5515 {
5516         epoll_ctl(display->epoll_fd, EPOLL_CTL_DEL, fd, NULL);
5517 }
5518
5519 void
5520 display_run(struct display *display)
5521 {
5522         struct task *task;
5523         struct epoll_event ep[16];
5524         int i, count, ret;
5525
5526         display->running = 1;
5527         while (1) {
5528                 while (!wl_list_empty(&display->deferred_list)) {
5529                         task = container_of(display->deferred_list.prev,
5530                                             struct task, link);
5531                         wl_list_remove(&task->link);
5532                         task->run(task, 0);
5533                 }
5534
5535                 wl_display_dispatch_pending(display->display);
5536
5537                 if (!display->running)
5538                         break;
5539
5540                 ret = wl_display_flush(display->display);
5541                 if (ret < 0 && errno == EAGAIN) {
5542                         ep[0].events =
5543                                 EPOLLIN | EPOLLOUT | EPOLLERR | EPOLLHUP;
5544                         ep[0].data.ptr = &display->display_task;
5545
5546                         epoll_ctl(display->epoll_fd, EPOLL_CTL_MOD,
5547                                   display->display_fd, &ep[0]);
5548                 } else if (ret < 0) {
5549                         break;
5550                 }
5551
5552                 count = epoll_wait(display->epoll_fd,
5553                                    ep, ARRAY_LENGTH(ep), -1);
5554                 for (i = 0; i < count; i++) {
5555                         task = ep[i].data.ptr;
5556                         task->run(task, ep[i].events);
5557                 }
5558         }
5559 }
5560
5561 void
5562 display_exit(struct display *display)
5563 {
5564         display->running = 0;
5565 }
5566
5567 void
5568 keysym_modifiers_add(struct wl_array *modifiers_map,
5569                      const char *name)
5570 {
5571         size_t len = strlen(name) + 1;
5572         char *p;
5573
5574         p = wl_array_add(modifiers_map, len);
5575
5576         if (p == NULL)
5577                 return;
5578
5579         strncpy(p, name, len);
5580 }
5581
5582 static xkb_mod_index_t
5583 keysym_modifiers_get_index(struct wl_array *modifiers_map,
5584                            const char *name)
5585 {
5586         xkb_mod_index_t index = 0;
5587         char *p = modifiers_map->data;
5588
5589         while ((const char *)p < (const char *)(modifiers_map->data + modifiers_map->size)) {
5590                 if (strcmp(p, name) == 0)
5591                         return index;
5592
5593                 index++;
5594                 p += strlen(p) + 1;
5595         }
5596
5597         return XKB_MOD_INVALID;
5598 }
5599
5600 xkb_mod_mask_t
5601 keysym_modifiers_get_mask(struct wl_array *modifiers_map,
5602                           const char *name)
5603 {
5604         xkb_mod_index_t index = keysym_modifiers_get_index(modifiers_map, name);
5605
5606         if (index == XKB_MOD_INVALID)
5607                 return XKB_MOD_INVALID;
5608
5609         return 1 << index;
5610 }
5611
5612 void *
5613 fail_on_null(void *p)
5614 {
5615         if (p == NULL) {
5616                 fprintf(stderr, "%s: out of memory\n", program_invocation_short_name);
5617                 exit(EXIT_FAILURE);
5618         }
5619
5620         return p;
5621 }
5622
5623 void *
5624 xmalloc(size_t s)
5625 {
5626         return fail_on_null(malloc(s));
5627 }
5628
5629 void *
5630 xzalloc(size_t s)
5631 {
5632         return fail_on_null(zalloc(s));
5633 }
5634
5635 char *
5636 xstrdup(const char *s)
5637 {
5638         return fail_on_null(strdup(s));
5639 }