aspect ratio and locking
[melted] / src / modules / sdl / consumer_sdl.c
1 /*
2 * consumer_sdl.c -- A Simple DirectMedia Layer consumer
3 * Copyright (C) 2003-2004 Ushodaya Enterprises Limited
4 * Author: Dan Dennedy <dan@dennedy.org>
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software Foundation,
18 * Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
19 */
20
21 #include "consumer_sdl.h"
22 #include <framework/mlt_frame.h>
23 #include <framework/mlt_deque.h>
24 #include <stdio.h>
25 #include <stdlib.h>
26 #include <string.h>
27 #include <pthread.h>
28 #include <SDL/SDL.h>
29 #include <SDL/SDL_syswm.h>
30 #include <sys/time.h>
31
32 /** This classes definition.
33 */
34
35 typedef struct consumer_sdl_s *consumer_sdl;
36
37 struct consumer_sdl_s
38 {
39 struct mlt_consumer_s parent;
40 mlt_properties properties;
41 mlt_deque queue;
42 pthread_t thread;
43 int running;
44 uint8_t audio_buffer[ 4096 * 10 ];
45 int audio_avail;
46 pthread_mutex_t audio_mutex;
47 pthread_cond_t audio_cond;
48 pthread_mutex_t video_mutex;
49 pthread_cond_t video_cond;
50 int window_width;
51 int window_height;
52 float aspect_ratio;
53 float display_aspect;
54 double last_frame_aspect;
55 int width;
56 int height;
57 int playing;
58 int sdl_flags;
59 SDL_Surface *sdl_screen;
60 SDL_Overlay *sdl_overlay;
61 SDL_Rect rect;
62 uint8_t *buffer;
63 };
64
65 /** Forward references to static functions.
66 */
67
68 static int consumer_start( mlt_consumer parent );
69 static int consumer_stop( mlt_consumer parent );
70 static int consumer_is_stopped( mlt_consumer parent );
71 static void consumer_close( mlt_consumer parent );
72 static void *consumer_thread( void * );
73 static int consumer_get_dimensions( int *width, int *height );
74
75 /** This is what will be called by the factory - anything can be passed in
76 via the argument, but keep it simple.
77 */
78
79 mlt_consumer consumer_sdl_init( char *arg )
80 {
81 // Create the consumer object
82 consumer_sdl this = calloc( sizeof( struct consumer_sdl_s ), 1 );
83
84 // If no malloc'd and consumer init ok
85 if ( this != NULL && mlt_consumer_init( &this->parent, this ) == 0 )
86 {
87 // Create the queue
88 this->queue = mlt_deque_init( );
89
90 // Get the parent consumer object
91 mlt_consumer parent = &this->parent;
92
93 // We have stuff to clean up, so override the close method
94 parent->close = consumer_close;
95
96 // get a handle on properties
97 mlt_service service = mlt_consumer_service( parent );
98 this->properties = mlt_service_properties( service );
99
100 // Set the default volume
101 mlt_properties_set_double( this->properties, "volume", 1.0 );
102
103 // This is the initialisation of the consumer
104 pthread_mutex_init( &this->audio_mutex, NULL );
105 pthread_cond_init( &this->audio_cond, NULL);
106 pthread_mutex_init( &this->video_mutex, NULL );
107 pthread_cond_init( &this->video_cond, NULL);
108
109 // Default scaler (for now we'll use nearest)
110 mlt_properties_set( this->properties, "rescale", "nearest" );
111
112 // Default buffer for low latency
113 mlt_properties_set_int( this->properties, "buffer", 1 );
114
115 // Default progressive true
116 mlt_properties_set_int( this->properties, "progressive", 0 );
117
118 // Default audio buffer
119 mlt_properties_set_int( this->properties, "audio_buffer", 1024 );
120
121 // Get sample aspect ratio
122 this->aspect_ratio = mlt_properties_get_double( this->properties, "aspect_ratio" );
123
124 // Default display aspect ratio
125 this->display_aspect = 4.0 / 3.0;
126
127 // process actual param
128 if ( arg == NULL || sscanf( arg, "%dx%d", &this->width, &this->height ) != 2 )
129 {
130 this->width = mlt_properties_get_int( this->properties, "width" );
131 this->height = mlt_properties_get_int( this->properties, "height" );
132
133 // Default window size
134 this->window_width = ( float )this->height * this->display_aspect + 0.5;
135 this->window_height = this->height;
136 }
137 else
138 {
139 if ( (int)( ( float )this->width / this->height * 1000 ) !=
140 (int)( this->display_aspect * 1000 ) )
141 {
142 // Override these
143 this->display_aspect = ( float )this->width / this->height;
144 this->aspect_ratio = 1.0;
145 mlt_properties_set_double( this->properties, "aspect_ratio", this->aspect_ratio );
146 }
147
148 // Set window size
149 this->window_width = this->width;
150 this->window_height = this->height;
151 }
152
153 // Set the sdl flags
154 this->sdl_flags = SDL_HWSURFACE | SDL_ASYNCBLIT | SDL_HWACCEL | SDL_RESIZABLE | SDL_DOUBLEBUF;
155
156 // Allow thread to be started/stopped
157 parent->start = consumer_start;
158 parent->stop = consumer_stop;
159 parent->is_stopped = consumer_is_stopped;
160
161 // Return the consumer produced
162 return parent;
163 }
164
165 // malloc or consumer init failed
166 free( this );
167
168 // Indicate failure
169 return NULL;
170 }
171
172 int consumer_start( mlt_consumer parent )
173 {
174 consumer_sdl this = parent->child;
175
176 if ( !this->running )
177 {
178 pthread_attr_t thread_attributes;
179
180 this->running = 1;
181
182 // Allow the user to force resizing to window size
183 if ( mlt_properties_get_int( this->properties, "resize" ) )
184 {
185 mlt_properties_set_int( this->properties, "width", this->width );
186 mlt_properties_set_int( this->properties, "height", this->height );
187 }
188
189 // Inherit the scheduling priority
190 pthread_attr_init( &thread_attributes );
191 pthread_attr_setinheritsched( &thread_attributes, PTHREAD_INHERIT_SCHED );
192
193 pthread_create( &this->thread, &thread_attributes, consumer_thread, this );
194 }
195
196 return 0;
197 }
198
199 int consumer_stop( mlt_consumer parent )
200 {
201 // Get the actual object
202 consumer_sdl this = parent->child;
203
204 if ( this->running )
205 {
206 // Kill the thread and clean up
207 this->running = 0;
208
209 pthread_mutex_lock( &this->audio_mutex );
210 pthread_cond_broadcast( &this->audio_cond );
211 pthread_mutex_unlock( &this->audio_mutex );
212
213 pthread_join( this->thread, NULL );
214 }
215
216 return 0;
217 }
218
219 int consumer_is_stopped( mlt_consumer parent )
220 {
221 consumer_sdl this = parent->child;
222 return !this->running;
223 }
224
225 static int sdl_lock_display( )
226 {
227 SDL_Surface *screen = SDL_GetVideoSurface( );
228 return screen != NULL && ( !SDL_MUSTLOCK( screen ) || SDL_LockSurface( screen ) >= 0 );
229 }
230
231 static void sdl_unlock_display( )
232 {
233 SDL_Surface *screen = SDL_GetVideoSurface( );
234 if ( screen != NULL && SDL_MUSTLOCK( screen ) )
235 SDL_UnlockSurface( screen );
236 }
237
238 static void sdl_fill_audio( void *udata, uint8_t *stream, int len )
239 {
240 consumer_sdl this = udata;
241
242 // Get the volume
243 float volume = mlt_properties_get_double( this->properties, "volume" );
244
245 pthread_mutex_lock( &this->audio_mutex );
246
247 // Block until audio received
248 while ( this->running && len > this->audio_avail )
249 pthread_cond_wait( &this->audio_cond, &this->audio_mutex );
250
251 if ( this->audio_avail >= len )
252 {
253 // Place in the audio buffer
254 memcpy( stream, this->audio_buffer, len );
255
256 // Remove len from the audio available
257 this->audio_avail -= len;
258
259 // Remove the samples
260 memmove( this->audio_buffer, this->audio_buffer + len, this->audio_avail );
261 }
262 else
263 {
264 // Just to be safe, wipe the stream first
265 memset( stream, 0, len );
266
267 // Copy what we have into the stream
268 memcpy( stream, this->audio_buffer, this->audio_avail );
269
270 // Mix the audio
271 SDL_MixAudio( stream, stream, len, ( int )( ( float )SDL_MIX_MAXVOLUME * volume ) );
272
273 // No audio left
274 this->audio_avail = 0;
275 }
276
277 // We're definitely playing now
278 this->playing = 1;
279
280 pthread_cond_broadcast( &this->audio_cond );
281 pthread_mutex_unlock( &this->audio_mutex );
282 }
283
284 static int consumer_play_audio( consumer_sdl this, mlt_frame frame, int init_audio, int *duration )
285 {
286 // Get the properties of this consumer
287 mlt_properties properties = this->properties;
288 mlt_audio_format afmt = mlt_audio_pcm;
289
290 // Set the preferred params of the test card signal
291 int channels = mlt_properties_get_int( properties, "channels" );
292 int frequency = mlt_properties_get_int( properties, "frequency" );
293 static int counter = 0;
294
295 int samples = mlt_sample_calculator( mlt_properties_get_double( this->properties, "fps" ), frequency, counter++ );
296
297 int16_t *pcm;
298 int bytes;
299
300 mlt_frame_get_audio( frame, &pcm, &afmt, &frequency, &channels, &samples );
301 *duration = ( ( samples * 1000 ) / frequency );
302
303 if ( mlt_properties_get_int( properties, "audio_off" ) )
304 {
305 this->playing = 1;
306 init_audio = 1;
307 return init_audio;
308 }
309
310 if ( init_audio == 1 )
311 {
312 SDL_AudioSpec request;
313 SDL_AudioSpec got;
314
315 int audio_buffer = mlt_properties_get_int( properties, "audio_buffer" );
316
317 // specify audio format
318 memset( &request, 0, sizeof( SDL_AudioSpec ) );
319 this->playing = 0;
320 request.freq = frequency;
321 request.format = AUDIO_S16;
322 request.channels = channels;
323 request.samples = audio_buffer;
324 request.callback = sdl_fill_audio;
325 request.userdata = (void *)this;
326 if ( SDL_OpenAudio( &request, &got ) != 0 )
327 {
328 fprintf( stderr, "SDL failed to open audio: %s\n", SDL_GetError() );
329 init_audio = 2;
330 }
331 else if ( got.size != 0 )
332 {
333 SDL_PauseAudio( 0 );
334 init_audio = 0;
335 }
336 }
337
338 if ( init_audio == 0 )
339 {
340 mlt_properties properties = mlt_frame_properties( frame );
341 bytes = ( samples * channels * 2 );
342 pthread_mutex_lock( &this->audio_mutex );
343 while ( bytes > ( sizeof( this->audio_buffer) - this->audio_avail ) )
344 pthread_cond_wait( &this->audio_cond, &this->audio_mutex );
345 if ( mlt_properties_get_double( properties, "_speed" ) == 1 )
346 memcpy( &this->audio_buffer[ this->audio_avail ], pcm, bytes );
347 else
348 memset( &this->audio_buffer[ this->audio_avail ], 0, bytes );
349 this->audio_avail += bytes;
350 pthread_cond_broadcast( &this->audio_cond );
351 pthread_mutex_unlock( &this->audio_mutex );
352 }
353 else
354 {
355 this->playing = 1;
356 }
357
358 return init_audio;
359 }
360
361 static int consumer_play_video( consumer_sdl this, mlt_frame frame )
362 {
363 // Get the properties of this consumer
364 mlt_properties properties = this->properties;
365
366 mlt_image_format vfmt = mlt_image_yuv422;
367 int width = this->width, height = this->height;
368 uint8_t *image;
369 int changed = 0;
370
371 if ( mlt_properties_get_int( properties, "video_off" ) == 0 )
372 {
373 // Get the image, width and height
374 mlt_frame_get_image( frame, &image, &vfmt, &width, &height, 0 );
375
376 // Handle events
377 if ( this->sdl_screen != NULL )
378 {
379 SDL_Event event;
380
381 changed = consumer_get_dimensions( &this->window_width, &this->window_height );
382
383 while ( SDL_PollEvent( &event ) )
384 {
385 switch( event.type )
386 {
387 case SDL_VIDEORESIZE:
388 this->window_width = event.resize.w;
389 this->window_height = event.resize.h;
390 changed = 1;
391 break;
392 case SDL_QUIT:
393 this->running = 0;
394 break;
395 case SDL_KEYDOWN:
396 {
397 mlt_producer producer = mlt_properties_get_data( properties, "transport_producer", NULL );
398 char keyboard[ 2 ] = " ";
399 void (*callback)( mlt_producer, char * ) = mlt_properties_get_data( properties, "transport_callback", NULL );
400 if ( callback != NULL && producer != NULL && event.key.keysym.unicode < 0x80 && event.key.keysym.unicode > 0 )
401 {
402 keyboard[ 0 ] = ( char )event.key.keysym.unicode;
403 callback( producer, keyboard );
404 }
405 }
406 break;
407 }
408 }
409 }
410
411 if ( width != this->width || height != this->height || this->last_frame_aspect != mlt_frame_get_aspect_ratio( frame ) )
412 {
413 this->width = width;
414 this->height = height;
415 this->last_frame_aspect = mlt_frame_get_aspect_ratio( frame );
416 changed = 1;
417 }
418
419 if ( this->sdl_screen == NULL || changed )
420 {
421 // Determine frame's display aspect ratio
422 float frame_aspect = mlt_frame_get_aspect_ratio( frame ) * this->width / this->height;
423
424 // Determine window's new display aspect ratio
425 float this_aspect = ( float )this->window_width / this->window_height;
426
427 // If using hardware scaler
428 if ( mlt_properties_get( properties, "rescale" ) != NULL &&
429 !strcmp( mlt_properties_get( properties, "rescale" ), "none" ) )
430 {
431 // Special case optimisation to negate odd effect of sample aspect ratio
432 // not corresponding exactly with image resolution.
433 if ( ( (int)( this_aspect * 1000 ) == (int)( this->display_aspect * 1000 ) ) &&
434 ( (int)( mlt_frame_get_aspect_ratio( frame ) * 1000 ) == (int)( this->aspect_ratio * 1000 ) ) )
435 {
436 this->rect.w = this->window_width;
437 this->rect.h = this->window_height;
438 }
439 else
440 {
441 // Use hardware scaler to normalise display aspect ratio
442 this->rect.w = frame_aspect / this_aspect * this->window_width;
443 this->rect.h = this->window_height;
444 if ( this->rect.w > this->window_width )
445 {
446 this->rect.w = this->window_width;
447 this->rect.h = this_aspect / frame_aspect * this->window_height + 0.5;
448 }
449 }
450 }
451 // Special case optimisation to negate odd effect of sample aspect ratio
452 // not corresponding exactly with image resolution.
453 else if ( (int)( this_aspect * 1000 ) == (int)( this->display_aspect * 1000 ) )
454 {
455 this->rect.w = this->window_width;
456 this->rect.h = this->window_height;
457 }
458 // Use hardware scaler to normalise sample aspect ratio
459 else if ( this->window_height * this->display_aspect > this->window_width )
460 {
461 this->rect.w = this->window_width;
462 this->rect.h = this->window_width / this->display_aspect + 0.5;
463 }
464 else
465 {
466 this->rect.w = this->window_height * this->display_aspect + 0.5;
467 this->rect.h = this->window_height;
468 }
469
470 this->rect.x = ( this->window_width - this->rect.w ) / 2;
471 this->rect.y = ( this->window_height - this->rect.h ) / 2;
472
473 // Force an overlay recreation
474 if ( this->sdl_overlay != NULL )
475 SDL_FreeYUVOverlay( this->sdl_overlay );
476
477 // open SDL window with video overlay, if possible
478 sdl_lock_display();
479 this->sdl_screen = SDL_SetVideoMode( this->window_width, this->window_height, 0, this->sdl_flags );
480 sdl_unlock_display();
481
482 if ( this->sdl_screen != NULL )
483 {
484 SDL_SetClipRect( this->sdl_screen, &this->rect );
485 sdl_lock_display();
486 this->sdl_overlay = SDL_CreateYUVOverlay( this->width, this->height, SDL_YUY2_OVERLAY, this->sdl_screen );
487 sdl_unlock_display();
488 }
489 }
490
491 if ( mlt_properties_get_int( properties, "changed" ) )
492 {
493 sdl_lock_display();
494 this->sdl_screen = SDL_SetVideoMode( this->window_width, this->window_height, 0, this->sdl_flags );
495 SDL_SetClipRect( this->sdl_screen, &this->rect );
496 SDL_Flip( this->sdl_screen );
497 sdl_unlock_display();
498 mlt_properties_set_int( properties, "changed", 0 );
499 }
500
501 if ( this->sdl_screen != NULL && this->sdl_overlay != NULL )
502 {
503 this->buffer = this->sdl_overlay->pixels[ 0 ];
504 sdl_lock_display();
505 if ( SDL_LockYUVOverlay( this->sdl_overlay ) >= 0 )
506 {
507 if ( image != NULL )
508 memcpy( this->buffer, image, width * height * 2 );
509 SDL_UnlockYUVOverlay( this->sdl_overlay );
510 SDL_DisplayYUVOverlay( this->sdl_overlay, &this->sdl_screen->clip_rect );
511 }
512 sdl_unlock_display();
513 }
514 }
515
516 return 0;
517 }
518
519 static void *video_thread( void *arg )
520 {
521 // Identify the arg
522 consumer_sdl this = arg;
523
524 // Obtain time of thread start
525 struct timeval now;
526 int64_t start = 0;
527 int64_t elapsed = 0;
528 struct timespec tm;
529 mlt_frame next = NULL;
530 mlt_properties properties = NULL;
531 double speed = 0;
532
533 // Get the current time
534 gettimeofday( &now, NULL );
535
536 // Determine start time
537 start = ( int64_t )now.tv_sec * 1000000 + now.tv_usec;
538
539 while ( this->running )
540 {
541 // Pop the next frame
542 pthread_mutex_lock( &this->video_mutex );
543 while ( ( next = mlt_deque_pop_front( this->queue ) ) == NULL && this->running )
544 pthread_cond_wait( &this->video_cond, &this->video_mutex );
545 pthread_mutex_unlock( &this->video_mutex );
546
547 // Get the properties
548 properties = mlt_frame_properties( next );
549
550 // Get the speed of the frame
551 speed = mlt_properties_get_double( properties, "_speed" );
552
553 // Get the current time
554 gettimeofday( &now, NULL );
555
556 // Get the elapsed time
557 elapsed = ( ( int64_t )now.tv_sec * 1000000 + now.tv_usec ) - start;
558
559 // See if we have to delay the display of the current frame
560 if ( mlt_properties_get_int( properties, "rendered" ) == 1 && this->running )
561 {
562 // Obtain the scheduled playout time
563 mlt_position scheduled = mlt_properties_get_position( properties, "playtime" );
564
565 // Determine the difference between the elapsed time and the scheduled playout time
566 mlt_position difference = scheduled - elapsed;
567
568 // Smooth playback a bit
569 if ( difference > 20000 && speed == 1.0 )
570 {
571 tm.tv_sec = difference / 1000000;
572 tm.tv_nsec = ( difference % 1000000 ) * 500;
573 nanosleep( &tm, NULL );
574 }
575
576 // Show current frame if not too old
577 if ( difference > -10000 || speed != 1.0 || mlt_deque_count( this->queue ) < 2 )
578 consumer_play_video( this, next );
579
580 // If the queue is empty, recalculate start to allow build up again
581 if ( mlt_deque_count( this->queue ) == 0 && speed == 1.0 )
582 {
583 gettimeofday( &now, NULL );
584 start = ( ( int64_t )now.tv_sec * 1000000 + now.tv_usec ) - scheduled + 20000;
585 }
586 }
587
588 // This frame can now be closed
589 mlt_frame_close( next );
590 }
591
592 return NULL;
593 }
594
595 /** Threaded wrapper for pipe.
596 */
597
598 static void *consumer_thread( void *arg )
599 {
600 // Identify the arg
601 consumer_sdl this = arg;
602
603 // Get the consumer
604 mlt_consumer consumer = &this->parent;
605
606 // Video thread
607 pthread_t thread;
608
609 // internal intialization
610 int init_audio = 1;
611 int init_video = 1;
612 mlt_frame frame = NULL;
613 mlt_properties properties = NULL;
614 int duration = 0;
615 int64_t playtime = 0;
616
617 if ( SDL_Init( SDL_INIT_VIDEO | SDL_INIT_AUDIO | SDL_INIT_NOPARACHUTE ) < 0 )
618 {
619 fprintf( stderr, "Failed to initialize SDL: %s\n", SDL_GetError() );
620 return NULL;
621 }
622
623 SDL_EnableKeyRepeat( SDL_DEFAULT_REPEAT_DELAY, SDL_DEFAULT_REPEAT_INTERVAL );
624 SDL_EnableUNICODE( 1 );
625
626 // Loop until told not to
627 while( this->running )
628 {
629 // Get a frame from the attached producer
630 frame = mlt_consumer_rt_frame( consumer );
631
632 // Ensure that we have a frame
633 if ( frame != NULL )
634 {
635 // Get the frame properties
636 properties = mlt_frame_properties( frame );
637
638 // Play audio
639 init_audio = consumer_play_audio( this, frame, init_audio, &duration );
640
641 // Determine the start time now
642 if ( this->playing && init_video )
643 {
644 // Create the video thread
645 pthread_create( &thread, NULL, video_thread, this );
646
647 // Video doesn't need to be initialised any more
648 init_video = 0;
649 }
650
651 // Set playtime for this frame
652 mlt_properties_set_position( properties, "playtime", playtime );
653
654 // Push this frame to the back of the queue
655 pthread_mutex_lock( &this->video_mutex );
656 mlt_deque_push_back( this->queue, frame );
657 pthread_cond_broadcast( &this->video_cond );
658 pthread_mutex_unlock( &this->video_mutex );
659
660 // Calculate the next playtime
661 playtime += ( duration * 1000 );
662 }
663 }
664
665 // Kill the video thread
666 if ( init_video == 0 )
667 {
668 pthread_mutex_lock( &this->video_mutex );
669 pthread_cond_broadcast( &this->video_cond );
670 pthread_mutex_unlock( &this->video_mutex );
671 pthread_join( thread, NULL );
672 }
673
674 // internal cleanup
675 if ( this->sdl_overlay != NULL )
676 SDL_FreeYUVOverlay( this->sdl_overlay );
677 SDL_Quit( );
678
679 while( mlt_deque_count( this->queue ) )
680 mlt_frame_close( mlt_deque_pop_back( this->queue ) );
681
682 this->sdl_screen = NULL;
683 this->sdl_overlay = NULL;
684 this->audio_avail = 0;
685
686 return NULL;
687 }
688
689 static int consumer_get_dimensions( int *width, int *height )
690 {
691 int changed = 0;
692
693 // SDL windows manager structure
694 SDL_SysWMinfo wm;
695
696 // Specify the SDL Version
697 SDL_VERSION( &wm.version );
698
699 // Lock the display
700 sdl_lock_display();
701
702 // Get the wm structure
703 if ( SDL_GetWMInfo( &wm ) == 1 )
704 {
705 // Check that we have the X11 wm
706 if ( wm.subsystem == SDL_SYSWM_X11 )
707 {
708 // Get the SDL window
709 Window window = wm.info.x11.window;
710
711 // Get the display session
712 Display *display = wm.info.x11.display;
713
714 // Get the window attributes
715 XWindowAttributes attr;
716 XGetWindowAttributes( display, window, &attr );
717
718 // Determine whether window has changed
719 changed = *width != attr.width || *height != attr.height;
720
721 // Return width and height
722 *width = attr.width;
723 *height = attr.height;
724 }
725 }
726
727 // Unlock the display
728 sdl_lock_display();
729
730 return changed;
731 }
732
733 /** Callback to allow override of the close method.
734 */
735
736 static void consumer_close( mlt_consumer parent )
737 {
738 // Get the actual object
739 consumer_sdl this = parent->child;
740
741 // Stop the consumer
742 mlt_consumer_stop( parent );
743
744 // Close the queue
745 mlt_deque_close( this->queue );
746
747 // Destroy mutexes
748 pthread_mutex_destroy( &this->audio_mutex );
749 pthread_cond_destroy( &this->audio_cond );
750
751 // Now clean up the rest
752 mlt_consumer_close( parent );
753
754 // Finally clean up this
755 free( this );
756 }