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[vlc] / src / video_output / vout_pictures.c
1 /*****************************************************************************
2  * vout_pictures.c : picture management functions
3  *****************************************************************************
4  * Copyright (C) 2000-2004 the VideoLAN team
5  * $Id$
6  *
7  * Authors: Vincent Seguin <seguin@via.ecp.fr>
8  *          Samuel Hocevar <sam@zoy.org>
9  *
10  * This program is free software; you can redistribute it and/or modify
11  * it under the terms of the GNU General Public License as published by
12  * the Free Software Foundation; either version 2 of the License, or
13  * (at your option) any later version.
14  *
15  * This program is distributed in the hope that it will be useful,
16  * but WITHOUT ANY WARRANTY; without even the implied warranty of
17  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
18  * GNU General Public License for more details.
19  *
20  * You should have received a copy of the GNU General Public License
21  * along with this program; if not, write to the Free Software
22  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston MA 02110-1301, USA.
23  *****************************************************************************/
24
25 /*****************************************************************************
26  * Preamble
27  *****************************************************************************/
28
29 #ifdef HAVE_CONFIG_H
30 # include "config.h"
31 #endif
32
33 #include <vlc_common.h>
34 #include <vlc_vout.h>
35 #include <vlc_osd.h>
36 #include <vlc_filter.h>
37 #include "vout_pictures.h"
38
39 #include <assert.h>
40
41 /**
42  * Display a picture
43  *
44  * Remove the reservation flag of a picture, which will cause it to be ready
45  * for display. The picture won't be displayed until vout_DatePicture has been
46  * called.
47  */
48 void vout_DisplayPicture( vout_thread_t *p_vout, picture_t *p_pic )
49 {
50     vlc_mutex_lock( &p_vout->picture_lock );
51     switch( p_pic->i_status )
52     {
53     case RESERVED_PICTURE:
54         p_pic->i_status = RESERVED_DISP_PICTURE;
55         break;
56     case RESERVED_DATED_PICTURE:
57         p_pic->i_status = READY_PICTURE;
58         break;
59     default:
60         msg_Err( p_vout, "picture to display %p has invalid status %d",
61                          p_pic, p_pic->i_status );
62         break;
63     }
64
65     vlc_mutex_unlock( &p_vout->picture_lock );
66 }
67
68 /**
69  * Date a picture
70  *
71  * Remove the reservation flag of a picture, which will cause it to be ready
72  * for display. The picture won't be displayed until vout_DisplayPicture has
73  * been called.
74  * \param p_vout The vout in question
75  * \param p_pic The picture to date
76  * \param date The date to display the picture
77  */
78 void vout_DatePicture( vout_thread_t *p_vout,
79                        picture_t *p_pic, mtime_t date )
80 {
81     vlc_mutex_lock( &p_vout->picture_lock );
82     p_pic->date = date;
83     switch( p_pic->i_status )
84     {
85     case RESERVED_PICTURE:
86         p_pic->i_status = RESERVED_DATED_PICTURE;
87         break;
88     case RESERVED_DISP_PICTURE:
89         p_pic->i_status = READY_PICTURE;
90         break;
91     default:
92         msg_Err( p_vout, "picture to date %p has invalid status %d",
93                          p_pic, p_pic->i_status );
94         break;
95     }
96
97     vlc_mutex_unlock( &p_vout->picture_lock );
98 }
99
100 /**
101  * Allocate a picture in the video output heap.
102  *
103  * This function creates a reserved image in the video output heap.
104  * A null pointer is returned if the function fails. This method provides an
105  * already allocated zone of memory in the picture data fields.
106  * It needs locking since several pictures can be created by several producers
107  * threads.
108  */
109 int vout_CountPictureAvailable( vout_thread_t *p_vout )
110 {
111     int i_free = 0;
112     int i_pic;
113
114     vlc_mutex_lock( &p_vout->picture_lock );
115     for( i_pic = 0; i_pic < I_RENDERPICTURES; i_pic++ )
116     {
117         picture_t *p_pic = PP_RENDERPICTURE[(p_vout->render.i_last_used_pic + i_pic + 1) % I_RENDERPICTURES];
118
119         switch( p_pic->i_status )
120         {
121             case DESTROYED_PICTURE:
122                 i_free++;
123                 break;
124
125             case FREE_PICTURE:
126                 i_free++;
127                 break;
128
129             default:
130                 break;
131         }
132     }
133     vlc_mutex_unlock( &p_vout->picture_lock );
134
135     return i_free;
136 }
137
138 picture_t *vout_CreatePicture( vout_thread_t *p_vout,
139                                bool b_progressive,
140                                bool b_top_field_first,
141                                unsigned int i_nb_fields )
142 {
143     int         i_pic;                                      /* picture index */
144     picture_t * p_pic;
145     picture_t * p_freepic = NULL;                      /* first free picture */
146
147     /* Get lock */
148     vlc_mutex_lock( &p_vout->picture_lock );
149
150     /*
151      * Look for an empty place in the picture heap.
152      */
153     for( i_pic = 0; i_pic < I_RENDERPICTURES; i_pic++ )
154     {
155         p_pic = PP_RENDERPICTURE[(p_vout->render.i_last_used_pic + i_pic + 1)
156                                  % I_RENDERPICTURES];
157
158         switch( p_pic->i_status )
159         {
160             case DESTROYED_PICTURE:
161                 /* Memory will not be reallocated, and function can end
162                  * immediately - this is the best possible case, since no
163                  * memory allocation needs to be done */
164                 p_pic->i_status   = RESERVED_PICTURE;
165                 p_pic->i_refcount = 0;
166                 p_pic->b_force    = 0;
167
168                 p_pic->b_progressive        = b_progressive;
169                 p_pic->i_nb_fields          = i_nb_fields;
170                 p_pic->b_top_field_first    = b_top_field_first;
171
172                 p_vout->i_heap_size++;
173                 p_vout->render.i_last_used_pic =
174                     ( p_vout->render.i_last_used_pic + i_pic + 1 )
175                     % I_RENDERPICTURES;
176                 vlc_mutex_unlock( &p_vout->picture_lock );
177                 return( p_pic );
178
179             case FREE_PICTURE:
180                 /* Picture is empty and ready for allocation */
181                 p_vout->render.i_last_used_pic =
182                     ( p_vout->render.i_last_used_pic + i_pic + 1 )
183                     % I_RENDERPICTURES;
184                 p_freepic = p_pic;
185                 break;
186
187             default:
188                 break;
189         }
190     }
191
192     /*
193      * Prepare picture
194      */
195     if( p_freepic != NULL )
196     {
197         vout_AllocatePicture( VLC_OBJECT(p_vout),
198                               p_freepic, p_vout->render.i_chroma,
199                               p_vout->render.i_width, p_vout->render.i_height,
200                               p_vout->render.i_aspect );
201
202         if( p_freepic->i_planes )
203         {
204             /* Copy picture information, set some default values */
205             p_freepic->i_status   = RESERVED_PICTURE;
206             p_freepic->i_type     = MEMORY_PICTURE;
207             p_freepic->b_slow     = 0;
208
209             p_freepic->i_refcount = 0;
210             p_freepic->b_force = 0;
211
212             p_freepic->b_progressive        = b_progressive;
213             p_freepic->i_nb_fields          = i_nb_fields;
214             p_freepic->b_top_field_first    = b_top_field_first;
215
216             p_freepic->i_matrix_coefficients = 1;
217
218             p_vout->i_heap_size++;
219         }
220         else
221         {
222             /* Memory allocation failed : set picture as empty */
223             p_freepic->i_status = FREE_PICTURE;
224             p_freepic = NULL;
225
226             msg_Err( p_vout, "picture allocation failed" );
227         }
228
229         vlc_mutex_unlock( &p_vout->picture_lock );
230
231         return( p_freepic );
232     }
233
234     /* No free or destroyed picture could be found, but the decoder
235      * will try again in a while. */
236     vlc_mutex_unlock( &p_vout->picture_lock );
237
238     return( NULL );
239 }
240
241 /**
242  * Remove a permanent or reserved picture from the heap
243  *
244  * This function frees a previously reserved picture or a permanent
245  * picture. It is meant to be used when the construction of a picture aborted.
246  * Note that the picture will be destroyed even if it is linked !
247  */
248 void vout_DestroyPicture( vout_thread_t *p_vout, picture_t *p_pic )
249 {
250     vlc_mutex_lock( &p_vout->picture_lock );
251
252 #ifndef NDEBUG
253     /* Check if picture status is valid */
254     if( (p_pic->i_status != RESERVED_PICTURE) &&
255         (p_pic->i_status != RESERVED_DATED_PICTURE) &&
256         (p_pic->i_status != RESERVED_DISP_PICTURE) )
257     {
258         msg_Err( p_vout, "picture to destroy %p has invalid status %d",
259                          p_pic, p_pic->i_status );
260     }
261 #endif
262
263     p_pic->i_status = DESTROYED_PICTURE;
264     p_vout->i_heap_size--;
265
266     vlc_mutex_unlock( &p_vout->picture_lock );
267 }
268
269 /**
270  * Increment reference counter of a picture
271  *
272  * This function increments the reference counter of a picture in the video
273  * heap. It needs a lock since several producer threads can access the picture.
274  */
275 void vout_LinkPicture( vout_thread_t *p_vout, picture_t *p_pic )
276 {
277     vlc_mutex_lock( &p_vout->picture_lock );
278     p_pic->i_refcount++;
279     vlc_mutex_unlock( &p_vout->picture_lock );
280 }
281
282 /**
283  * Decrement reference counter of a picture
284  *
285  * This function decrement the reference counter of a picture in the video heap
286  */
287 void vout_UnlinkPicture( vout_thread_t *p_vout, picture_t *p_pic )
288 {
289     vlc_mutex_lock( &p_vout->picture_lock );
290     p_pic->i_refcount--;
291
292     if( ( p_pic->i_refcount == 0 ) &&
293         ( p_pic->i_status == DISPLAYED_PICTURE ) )
294     {
295         p_pic->i_status = DESTROYED_PICTURE;
296         p_vout->i_heap_size--;
297     }
298
299     vlc_mutex_unlock( &p_vout->picture_lock );
300 }
301
302 /**
303  * Render a picture
304  *
305  * This function chooses whether the current picture needs to be copied
306  * before rendering, does the subpicture magic, and tells the video output
307  * thread which direct buffer needs to be displayed.
308  */
309 picture_t * vout_RenderPicture( vout_thread_t *p_vout, picture_t *p_pic,
310                                                        subpicture_t *p_subpic )
311 {
312     int i_scale_width, i_scale_height;
313
314     if( p_pic == NULL )
315     {
316         /* XXX: subtitles */
317         return NULL;
318     }
319
320     i_scale_width = p_vout->fmt_out.i_visible_width * 1000 /
321         p_vout->fmt_in.i_visible_width;
322     i_scale_height = p_vout->fmt_out.i_visible_height * 1000 /
323         p_vout->fmt_in.i_visible_height;
324
325     if( p_pic->i_type == DIRECT_PICTURE )
326     {
327         if( !p_vout->render.b_allow_modify_pics || p_pic->i_refcount ||
328             p_pic->b_force )
329         {
330             /* Picture is in a direct buffer and is still in use,
331              * we need to copy it to another direct buffer before
332              * displaying it if there are subtitles. */
333             if( p_subpic != NULL )
334             {
335                 /* We have subtitles. First copy the picture to
336                  * the spare direct buffer, then render the
337                  * subtitles. */
338                 vout_CopyPicture( p_vout, PP_OUTPUTPICTURE[0], p_pic );
339
340                 spu_RenderSubpictures( p_vout->p_spu, &p_vout->fmt_out,
341                                        PP_OUTPUTPICTURE[0], p_pic, p_subpic,
342                                        i_scale_width, i_scale_height );
343
344                 return PP_OUTPUTPICTURE[0];
345             }
346
347             /* No subtitles, picture is in a directbuffer so
348              * we can display it directly even if it is still
349              * in use. */
350             return p_pic;
351         }
352
353         /* Picture is in a direct buffer but isn't used by the
354          * decoder. We can safely render subtitles on it and
355          * display it. */
356         spu_RenderSubpictures( p_vout->p_spu, &p_vout->fmt_out, p_pic, p_pic,
357                                p_subpic, i_scale_width, i_scale_height );
358
359         return p_pic;
360     }
361
362     /* Not a direct buffer. We either need to copy it to a direct buffer,
363      * or render it if the chroma isn't the same. */
364     if( p_vout->b_direct )
365     {
366         /* Picture is not in a direct buffer, but is exactly the
367          * same size as the direct buffers. A memcpy() is enough,
368          * then render the subtitles. */
369
370         if( PP_OUTPUTPICTURE[0]->pf_lock )
371             if( PP_OUTPUTPICTURE[0]->pf_lock( p_vout, PP_OUTPUTPICTURE[0] ) )
372                 return NULL;
373
374         vout_CopyPicture( p_vout, PP_OUTPUTPICTURE[0], p_pic );
375         spu_RenderSubpictures( p_vout->p_spu, &p_vout->fmt_out,
376                                PP_OUTPUTPICTURE[0], p_pic,
377                                p_subpic, i_scale_width, i_scale_height );
378
379         if( PP_OUTPUTPICTURE[0]->pf_unlock )
380             PP_OUTPUTPICTURE[0]->pf_unlock( p_vout, PP_OUTPUTPICTURE[0] );
381
382         return PP_OUTPUTPICTURE[0];
383     }
384
385     /* Picture is not in a direct buffer, and needs to be converted to
386      * another size/chroma. Then the subtitles need to be rendered as
387      * well. This usually means software YUV, or hardware YUV with a
388      * different chroma. */
389
390     if( p_subpic != NULL && p_vout->p_picture[0].b_slow )
391     {
392         /* The picture buffer is in slow memory. We'll use
393          * the "2 * VOUT_MAX_PICTURES + 1" picture as a temporary
394          * one for subpictures rendering. */
395         picture_t *p_tmp_pic = &p_vout->p_picture[2 * VOUT_MAX_PICTURES];
396         if( p_tmp_pic->i_status == FREE_PICTURE )
397         {
398             vout_AllocatePicture( VLC_OBJECT(p_vout),
399                                   p_tmp_pic, p_vout->fmt_out.i_chroma,
400                                   p_vout->fmt_out.i_width,
401                                   p_vout->fmt_out.i_height,
402                                   p_vout->fmt_out.i_aspect );
403             p_tmp_pic->i_type = MEMORY_PICTURE;
404             p_tmp_pic->i_status = RESERVED_PICTURE;
405             /* some modules (such as blend)  needs to know the extra information in picture heap */
406             p_tmp_pic->p_heap = &p_vout->output;
407         }
408
409         /* Convert image to the first direct buffer */
410         p_vout->p_chroma->p_owner = (filter_owner_sys_t *)p_tmp_pic;
411         p_vout->p_chroma->pf_video_filter( p_vout->p_chroma, p_pic );
412
413         /* Render subpictures on the first direct buffer */
414         spu_RenderSubpictures( p_vout->p_spu, &p_vout->fmt_out, p_tmp_pic,
415                                p_tmp_pic, p_subpic,
416                                i_scale_width, i_scale_height );
417
418         if( p_vout->p_picture[0].pf_lock )
419             if( p_vout->p_picture[0].pf_lock( p_vout, &p_vout->p_picture[0] ) )
420                 return NULL;
421
422         vout_CopyPicture( p_vout, &p_vout->p_picture[0], p_tmp_pic );
423     }
424     else
425     {
426         if( p_vout->p_picture[0].pf_lock )
427             if( p_vout->p_picture[0].pf_lock( p_vout, &p_vout->p_picture[0] ) )
428                 return NULL;
429
430         /* Convert image to the first direct buffer */
431         p_vout->p_chroma->p_owner = (filter_owner_sys_t *)&p_vout->p_picture[0];
432         p_vout->p_chroma->pf_video_filter( p_vout->p_chroma, p_pic );
433
434         /* Render subpictures on the first direct buffer */
435         spu_RenderSubpictures( p_vout->p_spu, &p_vout->fmt_out,
436                                &p_vout->p_picture[0], &p_vout->p_picture[0],
437                                p_subpic, i_scale_width, i_scale_height );
438     }
439
440     if( p_vout->p_picture[0].pf_unlock )
441         p_vout->p_picture[0].pf_unlock( p_vout, &p_vout->p_picture[0] );
442
443     return &p_vout->p_picture[0];
444 }
445
446 /**
447  * Calculate image window coordinates
448  *
449  * This function will be accessed by plugins. It calculates the relative
450  * position of the output window and the image window.
451  */
452 void vout_PlacePicture( vout_thread_t *p_vout,
453                         unsigned int i_width, unsigned int i_height,
454                         unsigned int *pi_x, unsigned int *pi_y,
455                         unsigned int *pi_width, unsigned int *pi_height )
456 {
457     if( (i_width <= 0) || (i_height <=0) )
458     {
459         *pi_width = *pi_height = *pi_x = *pi_y = 0;
460         return;
461     }
462
463     if( p_vout->b_scale )
464     {
465         *pi_width = i_width;
466         *pi_height = i_height;
467     }
468     else
469     {
470         *pi_width = __MIN( i_width, p_vout->fmt_in.i_visible_width );
471         *pi_height = __MIN( i_height, p_vout->fmt_in.i_visible_height );
472     }
473
474      int64_t i_scaled_width = p_vout->fmt_in.i_visible_width * (int64_t)p_vout->fmt_in.i_sar_num *
475                               *pi_height / p_vout->fmt_in.i_visible_height / p_vout->fmt_in.i_sar_den;
476      int64_t i_scaled_height = p_vout->fmt_in.i_visible_height * (int64_t)p_vout->fmt_in.i_sar_den *
477                                *pi_width / p_vout->fmt_in.i_visible_width / p_vout->fmt_in.i_sar_num;
478
479     if( i_scaled_width <= 0 || i_scaled_height <= 0 )
480     {
481         msg_Warn( p_vout, "ignoring broken aspect ratio" );
482         i_scaled_width = *pi_width;
483         i_scaled_height = *pi_height;
484     }
485
486     if( i_scaled_width > *pi_width )
487         *pi_height = i_scaled_height;
488     else
489         *pi_width = i_scaled_width;
490
491     switch( p_vout->i_alignment & VOUT_ALIGN_HMASK )
492     {
493     case VOUT_ALIGN_LEFT:
494         *pi_x = 0;
495         break;
496     case VOUT_ALIGN_RIGHT:
497         *pi_x = i_width - *pi_width;
498         break;
499     default:
500         *pi_x = ( i_width - *pi_width ) / 2;
501     }
502
503     switch( p_vout->i_alignment & VOUT_ALIGN_VMASK )
504     {
505     case VOUT_ALIGN_TOP:
506         *pi_y = 0;
507         break;
508     case VOUT_ALIGN_BOTTOM:
509         *pi_y = i_height - *pi_height;
510         break;
511     default:
512         *pi_y = ( i_height - *pi_height ) / 2;
513     }
514 }
515
516 /**
517  * Allocate a new picture in the heap.
518  *
519  * This function allocates a fake direct buffer in memory, which can be
520  * used exactly like a video buffer. The video output thread then manages
521  * how it gets displayed.
522  */
523 int __vout_AllocatePicture( vlc_object_t *p_this, picture_t *p_pic,
524                             vlc_fourcc_t i_chroma,
525                             int i_width, int i_height, int i_aspect )
526 {
527     int i_bytes, i_index, i_width_aligned, i_height_aligned;
528
529     /* Make sure the real dimensions are a multiple of 16 */
530     i_width_aligned = (i_width + 15) >> 4 << 4;
531     i_height_aligned = (i_height + 15) >> 4 << 4;
532
533     if( vout_InitPicture( p_this, p_pic, i_chroma,
534                           i_width, i_height, i_aspect ) != VLC_SUCCESS )
535     {
536         p_pic->i_planes = 0;
537         return VLC_EGENERIC;
538     }
539
540     /* Calculate how big the new image should be */
541     i_bytes = p_pic->format.i_bits_per_pixel *
542         i_width_aligned * i_height_aligned / 8;
543
544     p_pic->p_data = vlc_memalign( &p_pic->p_data_orig, 16, i_bytes );
545
546     if( p_pic->p_data == NULL )
547     {
548         p_pic->i_planes = 0;
549         return VLC_EGENERIC;
550     }
551
552     /* Fill the p_pixels field for each plane */
553     p_pic->p[ 0 ].p_pixels = p_pic->p_data;
554
555     for( i_index = 1; i_index < p_pic->i_planes; i_index++ )
556     {
557         p_pic->p[i_index].p_pixels = p_pic->p[i_index-1].p_pixels +
558             p_pic->p[i_index-1].i_lines * p_pic->p[i_index-1].i_pitch;
559     }
560
561     return VLC_SUCCESS;
562 }
563
564 /**
565  * Initialise the video format fields given chroma/size.
566  *
567  * This function initializes all the video_frame_format_t fields given the
568  * static properties of a picture (chroma and size).
569  * \param p_format Pointer to the format structure to initialize
570  * \param i_chroma Chroma to set
571  * \param i_width Width to set
572  * \param i_height Height to set
573  * \param i_aspect Aspect ratio
574  */
575 void vout_InitFormat( video_frame_format_t *p_format, vlc_fourcc_t i_chroma,
576                       int i_width, int i_height, int i_aspect )
577 {
578     p_format->i_chroma   = i_chroma;
579     p_format->i_width    = p_format->i_visible_width  = i_width;
580     p_format->i_height   = p_format->i_visible_height = i_height;
581     p_format->i_x_offset = p_format->i_y_offset = 0;
582     p_format->i_aspect   = i_aspect;
583
584 #if 0
585     /* Assume we have square pixels */
586     if( i_width && i_height )
587         p_format->i_aspect = i_width * VOUT_ASPECT_FACTOR / i_height;
588     else
589         p_format->i_aspect = 0;
590 #endif
591
592     switch( i_chroma )
593     {
594         case FOURCC_YUVA:
595             p_format->i_bits_per_pixel = 32;
596             break;
597         case FOURCC_I444:
598         case FOURCC_J444:
599             p_format->i_bits_per_pixel = 24;
600             break;
601         case FOURCC_I422:
602         case FOURCC_YUY2:
603         case FOURCC_UYVY:
604         case FOURCC_J422:
605             p_format->i_bits_per_pixel = 16;
606             break;
607         case FOURCC_I440:
608         case FOURCC_J440:
609             p_format->i_bits_per_pixel = 16;
610             break;
611         case FOURCC_I411:
612         case FOURCC_YV12:
613         case FOURCC_I420:
614         case FOURCC_J420:
615         case FOURCC_IYUV:
616             p_format->i_bits_per_pixel = 12;
617             break;
618         case FOURCC_I410:
619         case FOURCC_YVU9:
620             p_format->i_bits_per_pixel = 9;
621             break;
622         case FOURCC_Y211:
623             p_format->i_bits_per_pixel = 8;
624             break;
625         case FOURCC_YUVP:
626             p_format->i_bits_per_pixel = 8;
627             break;
628
629         case FOURCC_RV32:
630         case FOURCC_RGBA:
631             p_format->i_bits_per_pixel = 32;
632             break;
633         case FOURCC_RV24:
634             p_format->i_bits_per_pixel = 24;
635             break;
636         case FOURCC_RV15:
637         case FOURCC_RV16:
638             p_format->i_bits_per_pixel = 16;
639             break;
640         case FOURCC_RGB2:
641             p_format->i_bits_per_pixel = 8;
642             break;
643
644         case FOURCC_GREY:
645         case FOURCC_Y800:
646         case FOURCC_Y8:
647             p_format->i_bits_per_pixel = 8;
648             break;
649
650         default:
651             p_format->i_bits_per_pixel = 0;
652             break;
653     }
654 }
655
656 /**
657  * Initialise the picture_t fields given chroma/size.
658  *
659  * This function initializes most of the picture_t fields given a chroma and
660  * size. It makes the assumption that stride == width.
661  * \param p_this The calling object
662  * \param p_pic Pointer to the picture to initialize
663  * \param i_chroma The chroma fourcc to set
664  * \param i_width The width of the picture
665  * \param i_height The height of the picture
666  * \param i_aspect The aspect ratio of the picture
667  */
668 int __vout_InitPicture( vlc_object_t *p_this, picture_t *p_pic,
669                         vlc_fourcc_t i_chroma,
670                         int i_width, int i_height, int i_aspect )
671 {
672     int i_index, i_width_aligned, i_height_aligned;
673
674     /* Store default values */
675     for( i_index = 0; i_index < VOUT_MAX_PLANES; i_index++ )
676     {
677         p_pic->p[i_index].p_pixels = NULL;
678         p_pic->p[i_index].i_pixel_pitch = 1;
679     }
680
681     p_pic->pf_release = 0;
682     p_pic->pf_lock = 0;
683     p_pic->pf_unlock = 0;
684     p_pic->i_refcount = 0;
685
686     p_pic->p_q = NULL;
687     p_pic->i_qstride = 0;
688     p_pic->i_qtype = 0;
689
690     vout_InitFormat( &p_pic->format, i_chroma, i_width, i_height, i_aspect );
691
692     /* Make sure the real dimensions are a multiple of 16 */
693     i_width_aligned = (i_width + 15) >> 4 << 4;
694     i_height_aligned = (i_height + 15) >> 4 << 4;
695
696     /* Calculate coordinates */
697     switch( i_chroma )
698     {
699         case FOURCC_I411:
700             p_pic->p[ Y_PLANE ].i_lines = i_height_aligned;
701             p_pic->p[ Y_PLANE ].i_visible_lines = i_height;
702             p_pic->p[ Y_PLANE ].i_pitch = i_width_aligned;
703             p_pic->p[ Y_PLANE ].i_visible_pitch = i_width;
704             p_pic->p[ U_PLANE ].i_lines = i_height_aligned;
705             p_pic->p[ U_PLANE ].i_visible_lines = i_height;
706             p_pic->p[ U_PLANE ].i_pitch = i_width_aligned / 4;
707             p_pic->p[ U_PLANE ].i_visible_pitch = i_width / 4;
708             p_pic->p[ V_PLANE ].i_lines = i_height_aligned;
709             p_pic->p[ V_PLANE ].i_visible_lines = i_height;
710             p_pic->p[ V_PLANE ].i_pitch = i_width_aligned / 4;
711             p_pic->p[ V_PLANE ].i_visible_pitch = i_width / 4;
712             p_pic->i_planes = 3;
713             break;
714
715         case FOURCC_I410:
716         case FOURCC_YVU9:
717             p_pic->p[ Y_PLANE ].i_lines = i_height_aligned;
718             p_pic->p[ Y_PLANE ].i_visible_lines = i_height;
719             p_pic->p[ Y_PLANE ].i_pitch = i_width_aligned;
720             p_pic->p[ Y_PLANE ].i_visible_pitch = i_width;
721             p_pic->p[ U_PLANE ].i_lines = i_height_aligned / 4;
722             p_pic->p[ U_PLANE ].i_visible_lines = i_height / 4;
723             p_pic->p[ U_PLANE ].i_pitch = i_width_aligned / 4;
724             p_pic->p[ U_PLANE ].i_visible_pitch = i_width / 4;
725             p_pic->p[ V_PLANE ].i_lines = i_height_aligned / 4;
726             p_pic->p[ V_PLANE ].i_visible_lines = i_height / 4;
727             p_pic->p[ V_PLANE ].i_pitch = i_width_aligned / 4;
728             p_pic->p[ V_PLANE ].i_visible_pitch = i_width / 4;
729             p_pic->i_planes = 3;
730             break;
731
732         case FOURCC_YV12:
733         case FOURCC_I420:
734         case FOURCC_IYUV:
735         case FOURCC_J420:
736             p_pic->p[ Y_PLANE ].i_lines = i_height_aligned;
737             p_pic->p[ Y_PLANE ].i_visible_lines = i_height;
738             p_pic->p[ Y_PLANE ].i_pitch = i_width_aligned;
739             p_pic->p[ Y_PLANE ].i_visible_pitch = i_width;
740             p_pic->p[ U_PLANE ].i_lines = i_height_aligned / 2;
741             p_pic->p[ U_PLANE ].i_visible_lines = i_height / 2;
742             p_pic->p[ U_PLANE ].i_pitch = i_width_aligned / 2;
743             p_pic->p[ U_PLANE ].i_visible_pitch = i_width / 2;
744             p_pic->p[ V_PLANE ].i_lines = i_height_aligned / 2;
745             p_pic->p[ V_PLANE ].i_visible_lines = i_height / 2;
746             p_pic->p[ V_PLANE ].i_pitch = i_width_aligned / 2;
747             p_pic->p[ V_PLANE ].i_visible_pitch = i_width / 2;
748             p_pic->i_planes = 3;
749             break;
750
751         case FOURCC_I422:
752         case FOURCC_J422:
753             p_pic->p[ Y_PLANE ].i_lines = i_height_aligned;
754             p_pic->p[ Y_PLANE ].i_visible_lines = i_height;
755             p_pic->p[ Y_PLANE ].i_pitch = i_width_aligned;
756             p_pic->p[ Y_PLANE ].i_visible_pitch = i_width;
757             p_pic->p[ U_PLANE ].i_lines = i_height_aligned;
758             p_pic->p[ U_PLANE ].i_visible_lines = i_height;
759             p_pic->p[ U_PLANE ].i_pitch = i_width_aligned / 2;
760             p_pic->p[ U_PLANE ].i_visible_pitch = i_width / 2;
761             p_pic->p[ V_PLANE ].i_lines = i_height_aligned;
762             p_pic->p[ V_PLANE ].i_visible_lines = i_height;
763             p_pic->p[ V_PLANE ].i_pitch = i_width_aligned / 2;
764             p_pic->p[ V_PLANE ].i_visible_pitch = i_width / 2;
765             p_pic->i_planes = 3;
766             break;
767
768         case FOURCC_I440:
769         case FOURCC_J440:
770             p_pic->p[ Y_PLANE ].i_lines = i_height_aligned;
771             p_pic->p[ Y_PLANE ].i_visible_lines = i_height;
772             p_pic->p[ Y_PLANE ].i_pitch = i_width_aligned;
773             p_pic->p[ Y_PLANE ].i_visible_pitch = i_width;
774             p_pic->p[ U_PLANE ].i_lines = i_height_aligned / 2;
775             p_pic->p[ U_PLANE ].i_visible_lines = i_height / 2;
776             p_pic->p[ U_PLANE ].i_pitch = i_width_aligned;
777             p_pic->p[ U_PLANE ].i_visible_pitch = i_width;
778             p_pic->p[ V_PLANE ].i_lines = i_height_aligned / 2;
779             p_pic->p[ V_PLANE ].i_visible_lines = i_height / 2;
780             p_pic->p[ V_PLANE ].i_pitch = i_width_aligned;
781             p_pic->p[ V_PLANE ].i_visible_pitch = i_width;
782             p_pic->i_planes = 3;
783             break;
784
785         case FOURCC_I444:
786         case FOURCC_J444:
787             p_pic->p[ Y_PLANE ].i_lines = i_height_aligned;
788             p_pic->p[ Y_PLANE ].i_visible_lines = i_height;
789             p_pic->p[ Y_PLANE ].i_pitch = i_width_aligned;
790             p_pic->p[ Y_PLANE ].i_visible_pitch = i_width;
791             p_pic->p[ U_PLANE ].i_lines = i_height_aligned;
792             p_pic->p[ U_PLANE ].i_visible_lines = i_height;
793             p_pic->p[ U_PLANE ].i_pitch = i_width_aligned;
794             p_pic->p[ U_PLANE ].i_visible_pitch = i_width;
795             p_pic->p[ V_PLANE ].i_lines = i_height_aligned;
796             p_pic->p[ V_PLANE ].i_visible_lines = i_height;
797             p_pic->p[ V_PLANE ].i_pitch = i_width_aligned;
798             p_pic->p[ V_PLANE ].i_visible_pitch = i_width;
799             p_pic->i_planes = 3;
800             break;
801
802         case FOURCC_YUVA:
803             p_pic->p[ Y_PLANE ].i_lines = i_height_aligned;
804             p_pic->p[ Y_PLANE ].i_visible_lines = i_height;
805             p_pic->p[ Y_PLANE ].i_pitch = i_width_aligned;
806             p_pic->p[ Y_PLANE ].i_visible_pitch = i_width;
807             p_pic->p[ U_PLANE ].i_lines = i_height_aligned;
808             p_pic->p[ U_PLANE ].i_visible_lines = i_height;
809             p_pic->p[ U_PLANE ].i_pitch = i_width_aligned;
810             p_pic->p[ U_PLANE ].i_visible_pitch = i_width;
811             p_pic->p[ V_PLANE ].i_lines = i_height_aligned;
812             p_pic->p[ V_PLANE ].i_visible_lines = i_height;
813             p_pic->p[ V_PLANE ].i_pitch = i_width_aligned;
814             p_pic->p[ V_PLANE ].i_visible_pitch = i_width;
815             p_pic->p[ A_PLANE ].i_lines = i_height_aligned;
816             p_pic->p[ A_PLANE ].i_visible_lines = i_height;
817             p_pic->p[ A_PLANE ].i_pitch = i_width_aligned;
818             p_pic->p[ A_PLANE ].i_visible_pitch = i_width;
819             p_pic->i_planes = 4;
820             break;
821
822         case FOURCC_YUVP:
823             p_pic->p->i_lines = i_height_aligned;
824             p_pic->p->i_visible_lines = i_height;
825             p_pic->p->i_pitch = i_width_aligned;
826             p_pic->p->i_visible_pitch = i_width;
827             p_pic->p->i_pixel_pitch = 8;
828             p_pic->i_planes = 1;
829             break;
830
831         case FOURCC_Y211:
832             p_pic->p->i_lines = i_height_aligned;
833             p_pic->p->i_visible_lines = i_height;
834             p_pic->p->i_pitch = i_width_aligned;
835             p_pic->p->i_visible_pitch = i_width;
836             p_pic->p->i_pixel_pitch = 4;
837             p_pic->i_planes = 1;
838             break;
839
840         case FOURCC_UYVY:
841         case FOURCC_YUY2:
842             p_pic->p->i_lines = i_height_aligned;
843             p_pic->p->i_visible_lines = i_height;
844             p_pic->p->i_pitch = i_width_aligned * 2;
845             p_pic->p->i_visible_pitch = i_width * 2;
846             p_pic->p->i_pixel_pitch = 4;
847             p_pic->i_planes = 1;
848             break;
849
850         case FOURCC_RGB2:
851             p_pic->p->i_lines = i_height_aligned;
852             p_pic->p->i_visible_lines = i_height;
853             p_pic->p->i_pitch = i_width_aligned;
854             p_pic->p->i_visible_pitch = i_width;
855             p_pic->p->i_pixel_pitch = 1;
856             p_pic->i_planes = 1;
857             break;
858
859         case FOURCC_RV15:
860             p_pic->p->i_lines = i_height_aligned;
861             p_pic->p->i_visible_lines = i_height;
862             p_pic->p->i_pitch = i_width_aligned * 2;
863             p_pic->p->i_visible_pitch = i_width * 2;
864             p_pic->p->i_pixel_pitch = 2;
865             p_pic->i_planes = 1;
866             break;
867
868         case FOURCC_RV16:
869             p_pic->p->i_lines = i_height_aligned;
870             p_pic->p->i_visible_lines = i_height;
871             p_pic->p->i_pitch = i_width_aligned * 2;
872             p_pic->p->i_visible_pitch = i_width * 2;
873             p_pic->p->i_pixel_pitch = 2;
874             p_pic->i_planes = 1;
875             break;
876
877         case FOURCC_RV24:
878             p_pic->p->i_lines = i_height_aligned;
879             p_pic->p->i_visible_lines = i_height;
880             p_pic->p->i_pitch = i_width_aligned * 3;
881             p_pic->p->i_visible_pitch = i_width * 3;
882             p_pic->p->i_pixel_pitch = 3;
883             p_pic->i_planes = 1;
884             break;
885
886         case FOURCC_RV32:
887         case FOURCC_RGBA:
888             p_pic->p->i_lines = i_height_aligned;
889             p_pic->p->i_visible_lines = i_height;
890             p_pic->p->i_pitch = i_width_aligned * 4;
891             p_pic->p->i_visible_pitch = i_width * 4;
892             p_pic->p->i_pixel_pitch = 4;
893             p_pic->i_planes = 1;
894             break;
895
896         case FOURCC_GREY:
897         case FOURCC_Y800:
898         case FOURCC_Y8:
899             p_pic->p->i_lines = i_height_aligned;
900             p_pic->p->i_visible_lines = i_height;
901             p_pic->p->i_pitch = i_width_aligned;
902             p_pic->p->i_visible_pitch = i_width;
903             p_pic->p->i_pixel_pitch = 1;
904             p_pic->i_planes = 1;
905             break;
906
907         default:
908             if( p_this )
909                 msg_Err( p_this, "unknown chroma type 0x%.8x (%4.4s)",
910                                  i_chroma, (char*)&i_chroma );
911             p_pic->i_planes = 0;
912             return VLC_EGENERIC;
913     }
914
915     return VLC_SUCCESS;
916 }
917
918 /**
919  * Compare two chroma values
920  *
921  * This function returns 1 if the two fourcc values given as argument are
922  * the same format (eg. UYVY/UYNV) or almost the same format (eg. I420/YV12)
923  */
924 int vout_ChromaCmp( vlc_fourcc_t i_chroma, vlc_fourcc_t i_amorhc )
925 {
926     /* If they are the same, they are the same ! */
927     if( i_chroma == i_amorhc )
928     {
929         return 1;
930     }
931
932     /* Check for equivalence classes */
933     switch( i_chroma )
934     {
935         case FOURCC_I420:
936         case FOURCC_IYUV:
937         case FOURCC_YV12:
938             switch( i_amorhc )
939             {
940                 case FOURCC_I420:
941                 case FOURCC_IYUV:
942                 case FOURCC_YV12:
943                     return 1;
944
945                 default:
946                     return 0;
947             }
948
949         case FOURCC_UYVY:
950         case FOURCC_UYNV:
951         case FOURCC_Y422:
952             switch( i_amorhc )
953             {
954                 case FOURCC_UYVY:
955                 case FOURCC_UYNV:
956                 case FOURCC_Y422:
957                     return 1;
958
959                 default:
960                     return 0;
961             }
962
963         case FOURCC_YUY2:
964         case FOURCC_YUNV:
965             switch( i_amorhc )
966             {
967                 case FOURCC_YUY2:
968                 case FOURCC_YUNV:
969                     return 1;
970
971                 default:
972                     return 0;
973             }
974
975         case FOURCC_GREY:
976         case FOURCC_Y800:
977         case FOURCC_Y8:
978             switch( i_amorhc )
979             {
980                 case FOURCC_GREY:
981                 case FOURCC_Y800:
982                 case FOURCC_Y8:
983                     return 1;
984
985                 default:
986                     return 0;
987             }
988
989         default:
990             return 0;
991     }
992 }
993
994 /*****************************************************************************
995  * vout_CopyPicture: copy a picture to another one
996  *****************************************************************************
997  * This function takes advantage of the image format, and reduces the
998  * number of calls to memcpy() to the minimum. Source and destination
999  * images must have same width (hence i_visible_pitch), height, and chroma.
1000  *****************************************************************************/
1001 void __vout_CopyPicture( vlc_object_t *p_this,
1002                          picture_t *p_dest, picture_t *p_src )
1003 {
1004     VLC_UNUSED(p_this);
1005     picture_Copy( p_dest, p_src );
1006 }
1007
1008 /*****************************************************************************
1009  *
1010  *****************************************************************************/
1011 static void PictureReleaseCallback( picture_t *p_picture )
1012 {
1013     if( --p_picture->i_refcount > 0 )
1014         return;
1015     picture_Delete( p_picture );
1016 }
1017 /*****************************************************************************
1018  *
1019  *****************************************************************************/
1020 picture_t *picture_New( vlc_fourcc_t i_chroma, int i_width, int i_height, int i_aspect )
1021 {
1022     picture_t *p_picture = malloc( sizeof(*p_picture) );
1023
1024     if( !p_picture )
1025         return NULL;
1026
1027     memset( p_picture, 0, sizeof(*p_picture) );
1028     if( __vout_AllocatePicture( NULL, p_picture,
1029                                 i_chroma, i_width, i_height, i_aspect ) )
1030     {
1031         free( p_picture );
1032         return NULL;
1033     }
1034
1035     p_picture->i_refcount = 1;
1036     p_picture->pf_release = PictureReleaseCallback;
1037     p_picture->i_status = RESERVED_PICTURE;
1038
1039     return p_picture;
1040 }
1041
1042 /*****************************************************************************
1043  *
1044  *****************************************************************************/
1045 void picture_Delete( picture_t *p_picture )
1046 {
1047     assert( p_picture && p_picture->i_refcount == 0 );
1048
1049     free( p_picture->p_data_orig );
1050     free( p_picture->p_sys );
1051     free( p_picture );
1052 }
1053
1054 /*****************************************************************************
1055  *
1056  *****************************************************************************/
1057 void picture_CopyPixels( picture_t *p_dst, const picture_t *p_src )
1058 {
1059     int i;
1060
1061     for( i = 0; i < p_src->i_planes ; i++ )
1062         plane_CopyPixels( p_dst->p+i, p_src->p+i );
1063 }
1064
1065 void plane_CopyPixels( plane_t *p_dst, const plane_t *p_src )
1066 {
1067     const unsigned i_width  = __MIN( p_dst->i_visible_pitch,
1068                                      p_src->i_visible_pitch );
1069     const unsigned i_height = __MIN( p_dst->i_visible_lines,
1070                                      p_src->i_visible_lines );
1071
1072     if( p_src->i_pitch == p_dst->i_pitch )
1073     {
1074         /* There are margins, but with the same width : perfect ! */
1075         vlc_memcpy( p_dst->p_pixels, p_src->p_pixels,
1076                     p_src->i_pitch * i_height );
1077     }
1078     else
1079     {
1080         /* We need to proceed line by line */
1081         uint8_t *p_in = p_src->p_pixels;
1082         uint8_t *p_out = p_dst->p_pixels;
1083         int i_line;
1084
1085         assert( p_in );
1086         assert( p_out );
1087
1088         for( i_line = i_height; i_line--; )
1089         {
1090             vlc_memcpy( p_out, p_in, i_width );
1091             p_in += p_src->i_pitch;
1092             p_out += p_dst->i_pitch;
1093         }
1094     }
1095 }
1096
1097 /*****************************************************************************
1098  *
1099  *****************************************************************************/
1100
1101