hold modifications and test card env var
[melted] / src / framework / mlt_consumer.c
1 /*
2 * mlt_consumer.c -- abstraction for all consumer services
3 * Copyright (C) 2003-2004 Ushodaya Enterprises Limited
4 * Author: Charles Yates <charles.yates@pandora.be>
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 "config.h"
22 #include "mlt_consumer.h"
23 #include "mlt_factory.h"
24 #include "mlt_producer.h"
25 #include "mlt_frame.h"
26 #include <stdio.h>
27 #include <string.h>
28 #include <stdlib.h>
29 #include <sys/time.h>
30
31 /** Public final methods
32 */
33
34 int mlt_consumer_init( mlt_consumer this, void *child )
35 {
36 int error = 0;
37 memset( this, 0, sizeof( struct mlt_consumer_s ) );
38 this->child = child;
39 error = mlt_service_init( &this->parent, this );
40 if ( error == 0 )
41 {
42 // Get the properties from the service
43 mlt_properties properties = mlt_service_properties( &this->parent );
44
45 // Get the normalisation preference
46 char *normalisation = mlt_environment( "MLT_NORMALISATION" );
47
48 // Deal with normalisation
49 if ( normalisation == NULL || strcmp( normalisation, "NTSC" ) )
50 {
51 mlt_properties_set( properties, "normalisation", "PAL" );
52 mlt_properties_set_double( properties, "fps", 25.0 );
53 mlt_properties_set_int( properties, "width", 720 );
54 mlt_properties_set_int( properties, "height", 576 );
55 mlt_properties_set_int( properties, "progressive", 0 );
56 mlt_properties_set_double( properties, "aspect_ratio", 128.0 / 117.0 );
57 }
58 else
59 {
60 mlt_properties_set( properties, "normalisation", "NTSC" );
61 mlt_properties_set_double( properties, "fps", 30000.0 / 1001.0 );
62 mlt_properties_set_int( properties, "width", 720 );
63 mlt_properties_set_int( properties, "height", 480 );
64 mlt_properties_set_int( properties, "progressive", 0 );
65 mlt_properties_set_double( properties, "aspect_ratio", 72.0 / 79.0 );
66 }
67
68 // Default rescaler for all consumers
69 mlt_properties_set( properties, "rescale", "bilinear" );
70
71 // Default read ahead buffer size
72 mlt_properties_set_int( properties, "buffer", 25 );
73
74 // Default audio frequency and channels
75 mlt_properties_set_int( properties, "frequency", 48000 );
76 mlt_properties_set_int( properties, "channels", 2 );
77
78 // Default of all consumers is real time
79 mlt_properties_set_int( properties, "real_time", 1 );
80
81 // Default to environment test card
82 mlt_properties_set( properties, "test_card", mlt_environment( "MLT_TEST_CARD" ) );
83
84 // Hmm - default all consumers to yuv422 :-/
85 this->format = mlt_image_yuv422;
86 }
87 return error;
88 }
89
90 /** Create a new consumer.
91 */
92
93 mlt_consumer mlt_consumer_new( )
94 {
95 // Create the memory for the structure
96 mlt_consumer this = malloc( sizeof( struct mlt_consumer_s ) );
97
98 // Initialise it
99 if ( this != NULL )
100 mlt_consumer_init( this, NULL );
101
102 // Return it
103 return this;
104 }
105
106 /** Get the parent service object.
107 */
108
109 mlt_service mlt_consumer_service( mlt_consumer this )
110 {
111 return &this->parent;
112 }
113
114 /** Get the consumer properties.
115 */
116
117 mlt_properties mlt_consumer_properties( mlt_consumer this )
118 {
119 return mlt_service_properties( &this->parent );
120 }
121
122 /** Connect the consumer to the producer.
123 */
124
125 int mlt_consumer_connect( mlt_consumer this, mlt_service producer )
126 {
127 return mlt_service_connect_producer( &this->parent, producer, 0 );
128 }
129
130 /** Start the consumer.
131 */
132
133 int mlt_consumer_start( mlt_consumer this )
134 {
135 // Get the properies
136 mlt_properties properties = mlt_consumer_properties( this );
137
138 // Determine if there's a test card producer
139 char *test_card = mlt_properties_get( properties, "test_card" );
140
141 // Deal with it now.
142 if ( test_card != NULL )
143 {
144 if ( mlt_properties_get_data( properties, "test_card_producer", NULL ) == NULL )
145 {
146 // Create a test card producer
147 // TODO: do we want to use fezzik here?
148 mlt_producer producer = mlt_factory_producer( "fezzik", test_card );
149
150 // Do we have a producer
151 if ( producer != NULL )
152 {
153 // Test card should loop I guess...
154 mlt_properties_set( mlt_producer_properties( producer ), "eof", "loop" );
155
156 // Set the test card on the consumer
157 mlt_properties_set_data( properties, "test_card_producer", producer, 0, ( mlt_destructor )mlt_producer_close, NULL );
158 }
159
160 // Check and run an ante command
161 if ( mlt_properties_get( properties, "ante" ) )
162 system( mlt_properties_get( properties, "ante" ) );
163 }
164 }
165 else
166 {
167 // Allow the hash table to speed things up
168 mlt_properties_set_data( properties, "test_card_producer", NULL, 0, NULL, NULL );
169 }
170
171 // Set the real_time preference
172 this->real_time = mlt_properties_get_int( properties, "real_time" );
173
174 // Start the service
175 if ( this->start != NULL )
176 return this->start( this );
177
178 return 0;
179 }
180
181 /** Protected method for consumer to get frames from connected service
182 */
183
184 mlt_frame mlt_consumer_get_frame( mlt_consumer this )
185 {
186 // Frame to return
187 mlt_frame frame = NULL;
188
189 // Get the service assoicated to the consumer
190 mlt_service service = mlt_consumer_service( this );
191
192 // Get the frame
193 if ( mlt_service_get_frame( service, &frame, 0 ) == 0 )
194 {
195 // Get the consumer properties
196 mlt_properties properties = mlt_consumer_properties( this );
197
198 // Get the frame properties
199 mlt_properties frame_properties = mlt_frame_properties( frame );
200
201 // Get the test card producer
202 mlt_producer test_card = mlt_properties_get_data( properties, "test_card_producer", NULL );
203
204 // Attach the test frame producer to it.
205 if ( test_card != NULL )
206 mlt_properties_set_data( frame_properties, "test_card_producer", test_card, 0, NULL, NULL );
207
208 // Attach the rescale property
209 mlt_properties_set( frame_properties, "rescale.interp", mlt_properties_get( properties, "rescale" ) );
210
211 // Aspect ratio and other jiggery pokery
212 mlt_properties_set_double( frame_properties, "consumer_aspect_ratio", mlt_properties_get_double( properties, "aspect_ratio" ) );
213 mlt_properties_set_int( frame_properties, "consumer_progressive", mlt_properties_get_int( properties, "progressive" ) );
214 mlt_properties_set_int( frame_properties, "consumer_deinterlace", mlt_properties_get_int( properties, "deinterlace" ) );
215 }
216
217 // Return the frame
218 return frame;
219 }
220
221 static inline long time_difference( struct timeval *time1 )
222 {
223 struct timeval time2;
224 time2.tv_sec = time1->tv_sec;
225 time2.tv_usec = time1->tv_usec;
226 gettimeofday( time1, NULL );
227 return time1->tv_sec * 1000000 + time1->tv_usec - time2.tv_sec * 1000000 - time2.tv_usec;
228 }
229
230 static void *consumer_read_ahead_thread( void *arg )
231 {
232 // The argument is the consumer
233 mlt_consumer this = arg;
234
235 // Get the properties of the consumer
236 mlt_properties properties = mlt_consumer_properties( this );
237
238 // Get the width and height
239 int width = mlt_properties_get_int( properties, "width" );
240 int height = mlt_properties_get_int( properties, "height" );
241
242 // Get the maximum size of the buffer
243 int buffer = mlt_properties_get_int( properties, "buffer" );
244
245 // General frame variable
246 mlt_frame frame = NULL;
247 uint8_t *image = NULL;
248
249 // Time structures
250 struct timeval ante;
251
252 // Average time for get_frame and get_image
253 int count = 1;
254 int skipped = 0;
255 int64_t time_wait = 0;
256 int64_t time_frame = 0;
257 int64_t time_image = 0;
258
259 // Get the first frame
260 frame = mlt_consumer_get_frame( this );
261
262 // Get the image of the first frame
263 mlt_frame_get_image( frame, &image, &this->format, &width, &height, 0 );
264 mlt_properties_set_int( mlt_frame_properties( frame ), "rendered", 1 );
265
266 // Get the starting time (can ignore the times above)
267 gettimeofday( &ante, NULL );
268
269 // Continue to read ahead
270 while ( this->ahead )
271 {
272 // Put the current frame into the queue
273 pthread_mutex_lock( &this->mutex );
274 while( this->ahead && mlt_deque_count( this->queue ) >= buffer )
275 pthread_cond_wait( &this->cond, &this->mutex );
276 mlt_deque_push_back( this->queue, frame );
277 pthread_cond_broadcast( &this->cond );
278 pthread_mutex_unlock( &this->mutex );
279 time_wait += time_difference( &ante );
280
281 // Get the next frame
282 frame = mlt_consumer_get_frame( this );
283 time_frame += time_difference( &ante );
284
285 // Increment the count
286 count ++;
287
288 // Get the image
289 if ( ( time_frame + time_image ) / count < ( 40000 - ( time_wait / count ) ) )
290 {
291 // Get the image, mark as rendered and time it
292 mlt_frame_get_image( frame, &image, &this->format, &width, &height, 0 );
293 mlt_properties_set_int( mlt_frame_properties( frame ), "rendered", 1 );
294 time_image += time_difference( &ante );
295
296 // Reset the skipped count
297 skipped = 0;
298 }
299 else
300 {
301 // Increment the number of sequentially skipped frames
302 skipped ++;
303
304 // If we've reached an unacceptable level, reset everything
305 if ( skipped > 10 )
306 {
307 skipped = 0;
308 time_frame = 0;
309 time_image = 0;
310 time_wait = 0;
311 count = 0;
312 }
313 }
314 }
315
316 // Remove the last frame
317 mlt_frame_close( frame );
318
319 return NULL;
320 }
321
322 static void consumer_read_ahead_start( mlt_consumer this )
323 {
324 pthread_attr_t thread_attributes;
325
326 // We're running now
327 this->ahead = 1;
328
329 // Create the frame queue
330 this->queue = mlt_deque_init( );
331
332 // Create the mutex
333 pthread_mutex_init( &this->mutex, NULL );
334
335 // Create the condition
336 pthread_cond_init( &this->cond, NULL );
337
338 // Inherit the scheduling priority
339 pthread_attr_init( &thread_attributes );
340 pthread_attr_setinheritsched( &thread_attributes, PTHREAD_INHERIT_SCHED );
341
342 // Create the read ahead
343 pthread_create( &this->ahead_thread, &thread_attributes, consumer_read_ahead_thread, this );
344
345 }
346
347 static void consumer_read_ahead_stop( mlt_consumer this )
348 {
349 // Make sure we're running
350 if ( this->ahead )
351 {
352 // Inform thread to stop
353 this->ahead = 0;
354
355 // Broadcast to the condition in case it's waiting
356 pthread_mutex_lock( &this->mutex );
357 pthread_cond_broadcast( &this->cond );
358 pthread_mutex_unlock( &this->mutex );
359
360 // Join the thread
361 pthread_join( this->ahead_thread, NULL );
362
363 // Destroy the mutex
364 pthread_mutex_destroy( &this->mutex );
365
366 // Destroy the condition
367 pthread_cond_destroy( &this->cond );
368
369 // Wipe the queue
370 while ( mlt_deque_count( this->queue ) )
371 mlt_frame_close( mlt_deque_pop_back( this->queue ) );
372 }
373 }
374
375 mlt_frame mlt_consumer_rt_frame( mlt_consumer this )
376 {
377 // Frame to return
378 mlt_frame frame = NULL;
379
380 // Get the properties
381 mlt_properties properties = mlt_consumer_properties( this );
382
383 // Check if the user has requested real time or not
384 if ( this->real_time )
385 {
386 int size = 1;
387
388 // Is the read ahead running?
389 if ( this->ahead == 0 )
390 {
391 int buffer = mlt_properties_get_int( properties, "buffer" );
392 consumer_read_ahead_start( this );
393 if ( buffer > 1 )
394 size = buffer / 2;
395 }
396
397 // Get frame from queue
398 pthread_mutex_lock( &this->mutex );
399 while( this->ahead && mlt_deque_count( this->queue ) < size )
400 pthread_cond_wait( &this->cond, &this->mutex );
401 frame = mlt_deque_pop_front( this->queue );
402 pthread_cond_broadcast( &this->cond );
403 pthread_mutex_unlock( &this->mutex );
404 }
405 else
406 {
407 // Get the frame in non real time
408 frame = mlt_consumer_get_frame( this );
409
410 // This isn't true, but from the consumers perspective it is
411 mlt_properties_set_int( mlt_frame_properties( frame ), "rendered", 1 );
412 }
413
414 return frame;
415 }
416
417 /** Stop the consumer.
418 */
419
420 int mlt_consumer_stop( mlt_consumer this )
421 {
422 // Get the properies
423 mlt_properties properties = mlt_consumer_properties( this );
424
425 // Stop the consumer
426 if ( this->stop != NULL )
427 this->stop( this );
428
429 // Check if the user has requested real time or not and stop if necessary
430 if ( mlt_properties_get_int( properties, "real_time" ) )
431 consumer_read_ahead_stop( this );
432
433 // Kill the test card
434 mlt_properties_set_data( properties, "test_card_producer", NULL, 0, NULL, NULL );
435
436 // Check and run a post command
437 if ( mlt_properties_get( properties, "post" ) )
438 system( mlt_properties_get( properties, "post" ) );
439
440 return 0;
441 }
442
443 /** Determine if the consumer is stopped.
444 */
445
446 int mlt_consumer_is_stopped( mlt_consumer this )
447 {
448 // Check if the consumer is stopped
449 if ( this->is_stopped != NULL )
450 return this->is_stopped( this );
451
452 return 0;
453 }
454
455 /** Close the consumer.
456 */
457
458 void mlt_consumer_close( mlt_consumer this )
459 {
460 // Get the childs close function
461 void ( *consumer_close )( ) = this->close;
462
463 // Make sure it only gets called once
464 this->close = NULL;
465
466 // Call the childs close if available
467 if ( consumer_close != NULL )
468 consumer_close( this );
469 else
470 mlt_service_close( &this->parent );
471 }