1 /* GStreamer
2 * Copyright (C) <2005> Julien Moutte <julien@moutte.net>
3 *
4 * This library is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU Library General Public
6 * License as published by the Free Software Foundation; either
7 * version 2 of the License, or (at your option) any later version.
8 *
9 * This library is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
12 * Library General Public License for more details.
13 *
14 * You should have received a copy of the GNU Library General Public
15 * License along with this library; if not, write to the
16 * Free Software Foundation, Inc., 51 Franklin St, Fifth Floor,
17 * Boston, MA 02110-1301, USA.
18 */
19
20 #ifdef HAVE_CONFIG_H
21 #include "config.h"
22 #endif
23
24 /* Object header */
25 #include "ximagesink.h"
26
27 /* Debugging category */
28 #include <gst/gstinfo.h>
29
30 /* Helper functions */
31 #include <gst/video/video.h>
32 #include <gst/video/gstvideometa.h>
33 #include <gst/video/gstvideopool.h>
34
35 GST_DEBUG_CATEGORY (gst_debug_x_image_pool);
36 #define GST_CAT_DEFAULT gst_debug_x_image_pool
37
38 /* X11 stuff */
39 static gboolean error_caught = FALSE;
40
41 static int
gst_ximagesink_handle_xerror(Display * display,XErrorEvent * xevent)42 gst_ximagesink_handle_xerror (Display * display, XErrorEvent * xevent)
43 {
44 char error_msg[1024];
45
46 XGetErrorText (display, xevent->error_code, error_msg, 1024);
47 GST_DEBUG ("ximagesink triggered an XError. error: %s", error_msg);
48 error_caught = TRUE;
49 return 0;
50 }
51
52 static GstMemory *
gst_ximage_memory_alloc(GstAllocator * allocator,gsize size,GstAllocationParams * params)53 gst_ximage_memory_alloc (GstAllocator * allocator, gsize size,
54 GstAllocationParams * params)
55 {
56 return NULL;
57 }
58
59 static void
gst_ximage_memory_free(GstAllocator * allocator,GstMemory * gmem)60 gst_ximage_memory_free (GstAllocator * allocator, GstMemory * gmem)
61 {
62 GstXImageMemory *mem = (GstXImageMemory *) gmem;
63 GstXImageSink *ximagesink;
64
65 if (gmem->parent)
66 goto sub_mem;
67
68 ximagesink = mem->sink;
69
70 GST_DEBUG_OBJECT (ximagesink, "free memory %p", mem);
71
72 /* Hold the object lock to ensure the XContext doesn't disappear */
73 GST_OBJECT_LOCK (ximagesink);
74 /* We might have some buffers destroyed after changing state to NULL */
75 if (ximagesink->xcontext == NULL) {
76 GST_DEBUG_OBJECT (ximagesink, "Destroying XImage after XContext");
77 #ifdef HAVE_XSHM
78 /* Need to free the shared memory segment even if the x context
79 * was already cleaned up */
80 if (mem->SHMInfo.shmaddr != ((void *) -1)) {
81 shmdt (mem->SHMInfo.shmaddr);
82 }
83 #endif
84 goto beach;
85 }
86
87 g_mutex_lock (&ximagesink->x_lock);
88
89 #ifdef HAVE_XSHM
90 if (ximagesink->xcontext->use_xshm) {
91 if (mem->SHMInfo.shmaddr != ((void *) -1)) {
92 GST_DEBUG_OBJECT (ximagesink, "XServer ShmDetaching from 0x%x id 0x%lx",
93 mem->SHMInfo.shmid, mem->SHMInfo.shmseg);
94 XShmDetach (ximagesink->xcontext->disp, &mem->SHMInfo);
95 XSync (ximagesink->xcontext->disp, FALSE);
96 shmdt (mem->SHMInfo.shmaddr);
97 mem->SHMInfo.shmaddr = (void *) -1;
98 }
99 if (mem->ximage)
100 XDestroyImage (mem->ximage);
101 } else
102 #endif /* HAVE_XSHM */
103 {
104 if (mem->ximage) {
105 XDestroyImage (mem->ximage);
106 }
107 }
108
109 XSync (ximagesink->xcontext->disp, FALSE);
110
111 g_mutex_unlock (&ximagesink->x_lock);
112
113 beach:
114 GST_OBJECT_UNLOCK (ximagesink);
115
116 gst_object_unref (mem->sink);
117
118 sub_mem:
119 g_slice_free (GstXImageMemory, mem);
120 }
121
122 static gpointer
ximage_memory_map(GstXImageMemory * mem,gsize maxsize,GstMapFlags flags)123 ximage_memory_map (GstXImageMemory * mem, gsize maxsize, GstMapFlags flags)
124 {
125 return mem->ximage->data + mem->parent.offset;
126 }
127
128 static gboolean
ximage_memory_unmap(GstXImageMemory * mem)129 ximage_memory_unmap (GstXImageMemory * mem)
130 {
131 return TRUE;
132 }
133
134 static GstXImageMemory *
ximage_memory_share(GstXImageMemory * mem,gssize offset,gsize size)135 ximage_memory_share (GstXImageMemory * mem, gssize offset, gsize size)
136 {
137 GstXImageMemory *sub;
138 GstMemory *parent;
139
140 /* We can only share the complete memory */
141 if (offset != 0)
142 return NULL;
143 if (size != -1 && size != mem->size)
144 return NULL;
145
146 /* find the real parent */
147 if ((parent = mem->parent.parent) == NULL)
148 parent = (GstMemory *) mem;
149
150 if (size == -1)
151 size = mem->parent.size - offset;
152
153 /* the shared memory is always readonly */
154 sub = g_slice_new (GstXImageMemory);
155
156 gst_memory_init (GST_MEMORY_CAST (sub), GST_MINI_OBJECT_FLAGS (parent) |
157 GST_MINI_OBJECT_FLAG_LOCK_READONLY, mem->parent.allocator,
158 &mem->parent, mem->parent.maxsize, mem->parent.align,
159 mem->parent.offset + offset, size);
160 sub->sink = mem->sink;
161 sub->ximage = mem->ximage;
162 #ifdef HAVE_XSHM
163 sub->SHMInfo = mem->SHMInfo;
164 #endif
165 sub->x = mem->x;
166 sub->y = mem->y;
167 sub->width = mem->width;
168 sub->height = mem->height;
169
170 return sub;
171 }
172
173 typedef GstAllocator GstXImageMemoryAllocator;
174 typedef GstAllocatorClass GstXImageMemoryAllocatorClass;
175
176 GType ximage_memory_allocator_get_type (void);
177 G_DEFINE_TYPE (GstXImageMemoryAllocator, ximage_memory_allocator,
178 GST_TYPE_ALLOCATOR);
179
180 #define GST_XIMAGE_ALLOCATOR_NAME "ximage"
181 #define GST_TYPE_XIMAGE_MEMORY_ALLOCATOR (ximage_memory_allocator_get_type())
182 #define GST_IS_XIMAGE_MEMORY_ALLOCATOR(obj) (G_TYPE_CHECK_INSTANCE_TYPE ((obj), GST_TYPE_XIMAGE_MEMORY_ALLOCATOR))
183
184 static void
ximage_memory_allocator_class_init(GstXImageMemoryAllocatorClass * klass)185 ximage_memory_allocator_class_init (GstXImageMemoryAllocatorClass * klass)
186 {
187 GstAllocatorClass *allocator_class;
188
189 allocator_class = (GstAllocatorClass *) klass;
190
191 allocator_class->alloc = gst_ximage_memory_alloc;
192 allocator_class->free = gst_ximage_memory_free;
193 }
194
195 static void
ximage_memory_allocator_init(GstXImageMemoryAllocator * allocator)196 ximage_memory_allocator_init (GstXImageMemoryAllocator * allocator)
197 {
198 GstAllocator *alloc = GST_ALLOCATOR_CAST (allocator);
199
200 alloc->mem_type = GST_XIMAGE_ALLOCATOR_NAME;
201 alloc->mem_map = (GstMemoryMapFunction) ximage_memory_map;
202 alloc->mem_unmap = (GstMemoryUnmapFunction) ximage_memory_unmap;
203 alloc->mem_share = (GstMemoryShareFunction) ximage_memory_share;
204 /* fallback copy and is_span */
205
206 GST_OBJECT_FLAG_SET (allocator, GST_ALLOCATOR_FLAG_CUSTOM_ALLOC);
207 }
208
209 static GstMemory *
ximage_memory_alloc(GstXImageBufferPool * xpool)210 ximage_memory_alloc (GstXImageBufferPool * xpool)
211 {
212 GstXImageSink *ximagesink;
213 int (*handler) (Display *, XErrorEvent *);
214 gboolean success = FALSE;
215 GstXContext *xcontext;
216 gint width, height, align, offset;
217 GstXImageMemory *mem;
218
219 ximagesink = xpool->sink;
220 xcontext = ximagesink->xcontext;
221
222 width = xpool->padded_width;
223 height = xpool->padded_height;
224
225 mem = g_slice_new (GstXImageMemory);
226
227 #ifdef HAVE_XSHM
228 mem->SHMInfo.shmaddr = ((void *) -1);
229 mem->SHMInfo.shmid = -1;
230 #endif
231 mem->x = xpool->align.padding_left;
232 mem->y = xpool->align.padding_top;
233 mem->width = GST_VIDEO_INFO_WIDTH (&xpool->info);
234 mem->height = GST_VIDEO_INFO_HEIGHT (&xpool->info);
235 mem->sink = gst_object_ref (ximagesink);
236
237 GST_DEBUG_OBJECT (ximagesink, "creating image %p (%dx%d)", mem,
238 width, height);
239
240 g_mutex_lock (&ximagesink->x_lock);
241
242 /* Setting an error handler to catch failure */
243 error_caught = FALSE;
244 handler = XSetErrorHandler (gst_ximagesink_handle_xerror);
245
246 #ifdef HAVE_XSHM
247 if (xcontext->use_xshm) {
248 mem->ximage = XShmCreateImage (xcontext->disp,
249 xcontext->visual,
250 xcontext->depth, ZPixmap, NULL, &mem->SHMInfo, width, height);
251 if (!mem->ximage || error_caught) {
252 g_mutex_unlock (&ximagesink->x_lock);
253
254 /* Reset error flag */
255 error_caught = FALSE;
256
257 /* Push a warning */
258 GST_ELEMENT_WARNING (ximagesink, RESOURCE, WRITE,
259 ("Failed to create output image buffer of %dx%d pixels",
260 width, height),
261 ("could not XShmCreateImage a %dx%d image", width, height));
262
263 /* Retry without XShm */
264 ximagesink->xcontext->use_xshm = FALSE;
265
266 /* Hold X mutex again to try without XShm */
267 g_mutex_lock (&ximagesink->x_lock);
268
269 goto no_xshm;
270 }
271
272 /* we have to use the returned bytes_per_line for our shm size */
273 mem->size = mem->ximage->bytes_per_line * mem->ximage->height;
274 GST_LOG_OBJECT (ximagesink,
275 "XShm image size is %" G_GSIZE_FORMAT ", width %d, stride %d",
276 mem->size, width, mem->ximage->bytes_per_line);
277
278 /* get shared memory */
279 align = 0;
280 mem->SHMInfo.shmid =
281 shmget (IPC_PRIVATE, mem->size + align, IPC_CREAT | 0777);
282 if (mem->SHMInfo.shmid == -1)
283 goto shmget_failed;
284
285 /* attach */
286 mem->SHMInfo.shmaddr = shmat (mem->SHMInfo.shmid, NULL, 0);
287 if (mem->SHMInfo.shmaddr == ((void *) -1))
288 goto shmat_failed;
289
290 /* now we can set up the image data */
291 mem->ximage->data = mem->SHMInfo.shmaddr;
292 mem->SHMInfo.readOnly = FALSE;
293
294 if (XShmAttach (xcontext->disp, &mem->SHMInfo) == 0)
295 goto xattach_failed;
296
297 XSync (xcontext->disp, FALSE);
298
299 /* Now that everyone has attached, we can delete the shared memory segment.
300 * This way, it will be deleted as soon as we detach later, and not
301 * leaked if we crash. */
302 shmctl (mem->SHMInfo.shmid, IPC_RMID, NULL);
303
304 GST_DEBUG_OBJECT (ximagesink, "XServer ShmAttached to 0x%x, id 0x%lx",
305 mem->SHMInfo.shmid, mem->SHMInfo.shmseg);
306 } else
307 no_xshm:
308 #endif /* HAVE_XSHM */
309 {
310 guint allocsize;
311
312 mem->ximage = XCreateImage (xcontext->disp,
313 xcontext->visual,
314 xcontext->depth, ZPixmap, 0, NULL, width, height, xcontext->bpp, 0);
315 if (!mem->ximage || error_caught)
316 goto create_failed;
317
318 /* upstream will assume that rowstrides are multiples of 4, but this
319 * doesn't always seem to be the case with XCreateImage() */
320 if ((mem->ximage->bytes_per_line % 4) != 0) {
321 GST_WARNING_OBJECT (ximagesink, "returned stride not a multiple of 4 as "
322 "usually assumed");
323 }
324
325 /* we have to use the returned bytes_per_line for our image size */
326 mem->size = mem->ximage->bytes_per_line * mem->ximage->height;
327
328 /* alloc a bit more for unexpected strides to avoid crashes upstream.
329 * FIXME: if we get an unrounded stride, the image will be displayed
330 * distorted, since all upstream elements assume a rounded stride */
331 allocsize =
332 GST_ROUND_UP_4 (mem->ximage->bytes_per_line) * mem->ximage->height;
333
334 /* we want 16 byte aligned memory, g_malloc may only give 8 */
335 align = 15;
336 mem->ximage->data = g_malloc (allocsize + align);
337 GST_LOG_OBJECT (ximagesink,
338 "non-XShm image size is %" G_GSIZE_FORMAT " (allocated: %u), width %d, "
339 "stride %d", mem->size, allocsize, width, mem->ximage->bytes_per_line);
340
341 XSync (xcontext->disp, FALSE);
342 }
343
344 if ((offset = ((guintptr) mem->ximage->data & align)))
345 offset = (align + 1) - offset;
346
347 GST_DEBUG_OBJECT (ximagesink, "memory %p, align %d, offset %d",
348 mem->ximage->data, align, offset);
349
350 /* Reset error handler */
351 error_caught = FALSE;
352 XSetErrorHandler (handler);
353
354 gst_memory_init (GST_MEMORY_CAST (mem), GST_MEMORY_FLAG_NO_SHARE,
355 xpool->allocator, NULL, mem->size + align, align, offset, mem->size);
356
357 g_mutex_unlock (&ximagesink->x_lock);
358
359 success = TRUE;
360
361 beach:
362 if (!success) {
363 g_slice_free (GstXImageMemory, mem);
364 mem = NULL;
365 }
366
367 return GST_MEMORY_CAST (mem);
368
369 /* ERRORS */
370 create_failed:
371 {
372 g_mutex_unlock (&ximagesink->x_lock);
373 /* Reset error handler */
374 error_caught = FALSE;
375 XSetErrorHandler (handler);
376 /* Push an error */
377 GST_ELEMENT_ERROR (ximagesink, RESOURCE, WRITE,
378 ("Failed to create output image buffer of %dx%d pixels",
379 width, height),
380 ("could not XShmCreateImage a %dx%d image", width, height));
381 goto beach;
382 }
383 #ifdef HAVE_XSHM
384 shmget_failed:
385 {
386 g_mutex_unlock (&ximagesink->x_lock);
387 GST_ELEMENT_ERROR (ximagesink, RESOURCE, WRITE,
388 ("Failed to create output image buffer of %dx%d pixels",
389 width, height),
390 ("could not get shared memory of %" G_GSIZE_FORMAT " bytes",
391 mem->size));
392 goto beach;
393 }
394 shmat_failed:
395 {
396 g_mutex_unlock (&ximagesink->x_lock);
397 GST_ELEMENT_ERROR (ximagesink, RESOURCE, WRITE,
398 ("Failed to create output image buffer of %dx%d pixels",
399 width, height), ("Failed to shmat: %s", g_strerror (errno)));
400 /* Clean up the shared memory segment */
401 shmctl (mem->SHMInfo.shmid, IPC_RMID, NULL);
402 goto beach;
403 }
404 xattach_failed:
405 {
406 /* Clean up the shared memory segment */
407 shmctl (mem->SHMInfo.shmid, IPC_RMID, NULL);
408 g_mutex_unlock (&ximagesink->x_lock);
409
410 GST_ELEMENT_ERROR (ximagesink, RESOURCE, WRITE,
411 ("Failed to create output image buffer of %dx%d pixels",
412 width, height), ("Failed to XShmAttach"));
413 goto beach;
414 }
415 #endif
416 }
417
418 #ifdef HAVE_XSHM
419 /* This function checks that it is actually really possible to create an image
420 using XShm */
421 gboolean
gst_x_image_sink_check_xshm_calls(GstXImageSink * ximagesink,GstXContext * xcontext)422 gst_x_image_sink_check_xshm_calls (GstXImageSink * ximagesink,
423 GstXContext * xcontext)
424 {
425 XImage *ximage;
426 XShmSegmentInfo SHMInfo;
427 size_t size;
428 int (*handler) (Display *, XErrorEvent *);
429 gboolean result = FALSE;
430 gboolean did_attach = FALSE;
431
432 g_return_val_if_fail (xcontext != NULL, FALSE);
433
434 /* Sync to ensure any older errors are already processed */
435 XSync (xcontext->disp, FALSE);
436
437 /* Set defaults so we don't free these later unnecessarily */
438 SHMInfo.shmaddr = ((void *) -1);
439 SHMInfo.shmid = -1;
440
441 /* Setting an error handler to catch failure */
442 error_caught = FALSE;
443 handler = XSetErrorHandler (gst_ximagesink_handle_xerror);
444
445 /* Trying to create a 1x1 ximage */
446 GST_DEBUG ("XShmCreateImage of 1x1");
447
448 ximage = XShmCreateImage (xcontext->disp, xcontext->visual,
449 xcontext->depth, ZPixmap, NULL, &SHMInfo, 1, 1);
450
451 /* Might cause an error, sync to ensure it is noticed */
452 XSync (xcontext->disp, FALSE);
453 if (!ximage || error_caught) {
454 GST_WARNING ("could not XShmCreateImage a 1x1 image");
455 goto beach;
456 }
457 size = ximage->height * ximage->bytes_per_line;
458
459 SHMInfo.shmid = shmget (IPC_PRIVATE, size, IPC_CREAT | 0777);
460 if (SHMInfo.shmid == -1) {
461 GST_WARNING ("could not get shared memory of %" G_GSIZE_FORMAT " bytes",
462 size);
463 goto beach;
464 }
465
466 SHMInfo.shmaddr = shmat (SHMInfo.shmid, NULL, 0);
467 if (SHMInfo.shmaddr == ((void *) -1)) {
468 GST_WARNING ("Failed to shmat: %s", g_strerror (errno));
469 /* Clean up the shared memory segment */
470 shmctl (SHMInfo.shmid, IPC_RMID, NULL);
471 goto beach;
472 }
473
474 ximage->data = SHMInfo.shmaddr;
475 SHMInfo.readOnly = FALSE;
476
477 if (XShmAttach (xcontext->disp, &SHMInfo) == 0) {
478 GST_WARNING ("Failed to XShmAttach");
479 /* Clean up the shared memory segment */
480 shmctl (SHMInfo.shmid, IPC_RMID, NULL);
481 goto beach;
482 }
483
484 /* Sync to ensure we see any errors we caused */
485 XSync (xcontext->disp, FALSE);
486
487 /* Delete the shared memory segment as soon as everyone is attached.
488 * This way, it will be deleted as soon as we detach later, and not
489 * leaked if we crash. */
490 shmctl (SHMInfo.shmid, IPC_RMID, NULL);
491
492 if (!error_caught) {
493 GST_DEBUG ("XServer ShmAttached to 0x%x, id 0x%lx", SHMInfo.shmid,
494 SHMInfo.shmseg);
495
496 did_attach = TRUE;
497 /* store whether we succeeded in result */
498 result = TRUE;
499 } else {
500 GST_WARNING ("MIT-SHM extension check failed at XShmAttach. "
501 "Not using shared memory.");
502 }
503
504 beach:
505 /* Sync to ensure we swallow any errors we caused and reset error_caught */
506 XSync (xcontext->disp, FALSE);
507
508 error_caught = FALSE;
509 XSetErrorHandler (handler);
510
511 if (did_attach) {
512 GST_DEBUG ("XServer ShmDetaching from 0x%x id 0x%lx",
513 SHMInfo.shmid, SHMInfo.shmseg);
514 XShmDetach (xcontext->disp, &SHMInfo);
515 XSync (xcontext->disp, FALSE);
516 }
517 if (SHMInfo.shmaddr != ((void *) -1))
518 shmdt (SHMInfo.shmaddr);
519 if (ximage)
520 XDestroyImage (ximage);
521 return result;
522 }
523 #endif /* HAVE_XSHM */
524
525 /* bufferpool */
526 static void gst_ximage_buffer_pool_finalize (GObject * object);
527
528 #define gst_ximage_buffer_pool_parent_class parent_class
529 G_DEFINE_TYPE (GstXImageBufferPool, gst_ximage_buffer_pool,
530 GST_TYPE_BUFFER_POOL);
531
532 static const gchar **
ximage_buffer_pool_get_options(GstBufferPool * pool)533 ximage_buffer_pool_get_options (GstBufferPool * pool)
534 {
535 static const gchar *options[] = { GST_BUFFER_POOL_OPTION_VIDEO_META,
536 GST_BUFFER_POOL_OPTION_VIDEO_ALIGNMENT, NULL
537 };
538
539 return options;
540 }
541
542 static gboolean
ximage_buffer_pool_set_config(GstBufferPool * pool,GstStructure * config)543 ximage_buffer_pool_set_config (GstBufferPool * pool, GstStructure * config)
544 {
545 GstXImageBufferPool *xpool = GST_XIMAGE_BUFFER_POOL_CAST (pool);
546 GstVideoInfo info;
547 GstCaps *caps;
548 guint size, min_buffers, max_buffers;
549
550 if (!gst_buffer_pool_config_get_params (config, &caps, &size, &min_buffers,
551 &max_buffers))
552 goto wrong_config;
553
554 if (caps == NULL)
555 goto no_caps;
556
557 /* now parse the caps from the config */
558 if (!gst_video_info_from_caps (&info, caps))
559 goto wrong_caps;
560
561 GST_LOG_OBJECT (pool, "%dx%d, caps %" GST_PTR_FORMAT, info.width, info.height,
562 caps);
563
564 /* keep track of the width and height and caps */
565 if (xpool->caps)
566 gst_caps_unref (xpool->caps);
567 xpool->caps = gst_caps_ref (caps);
568
569 /* check for the configured metadata */
570 xpool->add_metavideo =
571 gst_buffer_pool_config_has_option (config,
572 GST_BUFFER_POOL_OPTION_VIDEO_META);
573
574 /* parse extra alignment info */
575 xpool->need_alignment = gst_buffer_pool_config_has_option (config,
576 GST_BUFFER_POOL_OPTION_VIDEO_ALIGNMENT);
577
578 if (xpool->need_alignment) {
579 gst_buffer_pool_config_get_video_alignment (config, &xpool->align);
580
581 GST_LOG_OBJECT (pool, "padding %u-%ux%u-%u", xpool->align.padding_top,
582 xpool->align.padding_left, xpool->align.padding_left,
583 xpool->align.padding_bottom);
584
585 /* do padding and alignment */
586 gst_video_info_align (&info, &xpool->align);
587
588 gst_buffer_pool_config_set_video_alignment (config, &xpool->align);
589
590 /* we need the video metadata too now */
591 xpool->add_metavideo = TRUE;
592 } else {
593 gst_video_alignment_reset (&xpool->align);
594 }
595
596 /* add the padding */
597 xpool->padded_width =
598 GST_VIDEO_INFO_WIDTH (&info) + xpool->align.padding_left +
599 xpool->align.padding_right;
600 xpool->padded_height =
601 GST_VIDEO_INFO_HEIGHT (&info) + xpool->align.padding_top +
602 xpool->align.padding_bottom;
603
604 xpool->info = info;
605
606 gst_buffer_pool_config_set_params (config, caps, info.size, min_buffers,
607 max_buffers);
608
609 return GST_BUFFER_POOL_CLASS (parent_class)->set_config (pool, config);
610
611 /* ERRORS */
612 wrong_config:
613 {
614 GST_WARNING_OBJECT (pool, "invalid config");
615 return FALSE;
616 }
617 no_caps:
618 {
619 GST_WARNING_OBJECT (pool, "no caps in config");
620 return FALSE;
621 }
622 wrong_caps:
623 {
624 GST_WARNING_OBJECT (pool,
625 "failed getting geometry from caps %" GST_PTR_FORMAT, caps);
626 return FALSE;
627 }
628 }
629
630 /* This function handles GstXImageBuffer creation depending on XShm availability */
631 static GstFlowReturn
ximage_buffer_pool_alloc(GstBufferPool * pool,GstBuffer ** buffer,GstBufferPoolAcquireParams * params)632 ximage_buffer_pool_alloc (GstBufferPool * pool, GstBuffer ** buffer,
633 GstBufferPoolAcquireParams * params)
634 {
635 GstXImageBufferPool *xpool = GST_XIMAGE_BUFFER_POOL_CAST (pool);
636 GstVideoInfo *info;
637 GstBuffer *ximage;
638 GstMemory *mem;
639
640 info = &xpool->info;
641
642 ximage = gst_buffer_new ();
643 mem = ximage_memory_alloc (xpool);
644 if (mem == NULL) {
645 gst_buffer_unref (ximage);
646 goto no_buffer;
647 }
648 gst_buffer_append_memory (ximage, mem);
649
650 if (xpool->add_metavideo) {
651 GstVideoMeta *meta;
652
653 GST_DEBUG_OBJECT (pool, "adding GstVideoMeta");
654 /* these are just the defaults for now */
655 meta = gst_buffer_add_video_meta_full (ximage, GST_VIDEO_FRAME_FLAG_NONE,
656 GST_VIDEO_INFO_FORMAT (info), GST_VIDEO_INFO_WIDTH (info),
657 GST_VIDEO_INFO_HEIGHT (info), GST_VIDEO_INFO_N_PLANES (info),
658 info->offset, info->stride);
659
660 gst_video_meta_set_alignment (meta, xpool->align);
661 }
662 *buffer = ximage;
663
664 return GST_FLOW_OK;
665
666 /* ERROR */
667 no_buffer:
668 {
669 GST_WARNING_OBJECT (pool, "can't create image");
670 return GST_FLOW_ERROR;
671 }
672 }
673
674 GstBufferPool *
gst_ximage_buffer_pool_new(GstXImageSink * ximagesink)675 gst_ximage_buffer_pool_new (GstXImageSink * ximagesink)
676 {
677 GstXImageBufferPool *pool;
678
679 g_return_val_if_fail (GST_IS_X_IMAGE_SINK (ximagesink), NULL);
680
681 pool = g_object_new (GST_TYPE_XIMAGE_BUFFER_POOL, NULL);
682 gst_object_ref_sink (pool);
683 pool->sink = gst_object_ref (ximagesink);
684 pool->allocator = g_object_new (GST_TYPE_XIMAGE_MEMORY_ALLOCATOR, NULL);
685 gst_object_ref_sink (pool->allocator);
686
687 GST_LOG_OBJECT (pool, "new XImage buffer pool %p", pool);
688
689 return GST_BUFFER_POOL_CAST (pool);
690 }
691
692 static void
gst_ximage_buffer_pool_class_init(GstXImageBufferPoolClass * klass)693 gst_ximage_buffer_pool_class_init (GstXImageBufferPoolClass * klass)
694 {
695 GObjectClass *gobject_class = (GObjectClass *) klass;
696 GstBufferPoolClass *gstbufferpool_class = (GstBufferPoolClass *) klass;
697
698 gobject_class->finalize = gst_ximage_buffer_pool_finalize;
699
700 gstbufferpool_class->get_options = ximage_buffer_pool_get_options;
701 gstbufferpool_class->set_config = ximage_buffer_pool_set_config;
702 gstbufferpool_class->alloc_buffer = ximage_buffer_pool_alloc;
703 }
704
705 static void
gst_ximage_buffer_pool_init(GstXImageBufferPool * pool)706 gst_ximage_buffer_pool_init (GstXImageBufferPool * pool)
707 {
708 /* nothing to do here */
709 }
710
711 static void
gst_ximage_buffer_pool_finalize(GObject * object)712 gst_ximage_buffer_pool_finalize (GObject * object)
713 {
714 GstXImageBufferPool *pool = GST_XIMAGE_BUFFER_POOL_CAST (object);
715
716 GST_LOG_OBJECT (pool, "finalize XImage buffer pool %p", pool);
717
718 if (pool->caps)
719 gst_caps_unref (pool->caps);
720 gst_object_unref (pool->sink);
721 gst_object_unref (pool->allocator);
722
723 G_OBJECT_CLASS (gst_ximage_buffer_pool_parent_class)->finalize (object);
724 }
725