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h2645_sei.c
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1 /*
2  * Common H.264 and HEVC Supplementary Enhancement Information messages
3  *
4  * Copyright (c) 2003 Michael Niedermayer <michaelni@gmx.at>
5  * Copyright (C) 2012 - 2013 Guillaume Martres
6  * Copyright (C) 2012 - 2013 Gildas Cocherel
7  * Copyright (C) 2013 Vittorio Giovara
8  *
9  * This file is part of FFmpeg.
10  *
11  * FFmpeg is free software; you can redistribute it and/or
12  * modify it under the terms of the GNU Lesser General Public
13  * License as published by the Free Software Foundation; either
14  * version 2.1 of the License, or (at your option) any later version.
15  *
16  * FFmpeg is distributed in the hope that it will be useful,
17  * but WITHOUT ANY WARRANTY; without even the implied warranty of
18  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
19  * Lesser General Public License for more details.
20  *
21  * You should have received a copy of the GNU Lesser General Public
22  * License along with FFmpeg; if not, write to the Free Software
23  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
24  */
25 
26 #include "config_components.h"
27 
29 #include "libavutil/buffer.h"
30 #include "libavutil/display.h"
34 #include "libavutil/mem.h"
35 #include "libavutil/refstruct.h"
36 #include "libavutil/stereo3d.h"
37 
38 #include "atsc_a53.h"
39 #include "avcodec.h"
40 #include "decode.h"
41 #include "dynamic_hdr_vivid.h"
42 #include "get_bits.h"
43 #include "golomb.h"
44 #include "h2645_sei.h"
45 #include "itut35.h"
46 
47 #define IS_H264(codec_id) (CONFIG_H264_SEI && (CONFIG_HEVC_SEI || CONFIG_VVC_SEI ) ? codec_id == AV_CODEC_ID_H264 : CONFIG_H264_SEI)
48 #define IS_HEVC(codec_id) (CONFIG_HEVC_SEI && (CONFIG_H264_SEI || CONFIG_VVC_SEI ) ? codec_id == AV_CODEC_ID_HEVC : CONFIG_HEVC_SEI)
49 #define IS_VVC(codec_id) (CONFIG_VVC_SEI && (CONFIG_H264_SEI || CONFIG_HEVC_SEI) ? codec_id == AV_CODEC_ID_VVC : CONFIG_VVC_SEI )
50 
51 #if CONFIG_HEVC_SEI
52 static int decode_registered_user_data_dynamic_hdr_plus(HEVCSEIDynamicHDRPlus *s,
53  GetByteContext *gb)
54 {
55  size_t meta_size;
56  int err;
58  if (!metadata)
59  return AVERROR(ENOMEM);
60 
63  if (err < 0) {
65  return err;
66  }
67 
68  av_buffer_unref(&s->info);
69  s->info = av_buffer_create((uint8_t *)metadata, meta_size, NULL, NULL, 0);
70  if (!s->info) {
72  return AVERROR(ENOMEM);
73  }
74 
75  return 0;
76 }
77 
78 static int decode_registered_user_data_dynamic_hdr_vivid(HEVCSEIDynamicHDRVivid *s,
79  GetByteContext *gb)
80 {
81  size_t meta_size;
82  int err;
84  if (!metadata)
85  return AVERROR(ENOMEM);
86 
89  if (err < 0) {
91  return err;
92  }
93 
94  av_buffer_unref(&s->info);
95  s->info = av_buffer_create((uint8_t *)metadata, meta_size, NULL, NULL, 0);
96  if (!s->info) {
98  return AVERROR(ENOMEM);
99  }
100 
101  return 0;
102 }
103 #endif
104 
106  GetByteContext *gb)
107 {
109 
110  av_buffer_unref(&s->info);
111  s->info = av_buffer_alloc(size);
112  if (!s->info)
113  return AVERROR(ENOMEM);
114 
115  bytestream2_get_bufferu(gb, s->info->data, size);
116  return 0;
117 }
118 
120 {
121  int flag;
122 
123  if (bytestream2_get_bytes_left(gb) <= 0)
124  return AVERROR_INVALIDDATA;
125 
126  flag = !!(bytestream2_get_byteu(gb) & 0x40); // active_format_flag
127 
128  if (flag) {
129  if (bytestream2_get_bytes_left(gb) <= 0)
130  return AVERROR_INVALIDDATA;
131  h->active_format_description = bytestream2_get_byteu(gb) & 0xF;
132  h->present = 1;
133  }
134 
135  return 0;
136 }
137 
139  GetByteContext *gb)
140 {
141  return ff_parse_a53_cc(&h->buf_ref, gb->buffer,
143 }
144 
146  enum AVCodecID codec_id, void *logctx)
147 {
148  int country_code, provider_code;
149 
150  if (bytestream2_get_bytes_left(gb) < 3)
151  return AVERROR_INVALIDDATA;
152 
153  country_code = bytestream2_get_byteu(gb); // itu_t_t35_country_code
154  if (country_code == 0xFF) {
155  if (bytestream2_get_bytes_left(gb) < 3)
156  return AVERROR_INVALIDDATA;
157 
158  bytestream2_skipu(gb, 1); // itu_t_t35_country_code_extension_byte
159  }
160 
161  if (country_code != ITU_T_T35_COUNTRY_CODE_US &&
162  country_code != ITU_T_T35_COUNTRY_CODE_UK &&
163  country_code != ITU_T_T35_COUNTRY_CODE_CN) {
164  av_log(logctx, AV_LOG_VERBOSE,
165  "Unsupported User Data Registered ITU-T T35 SEI message (country_code = %d)\n",
166  country_code);
167  return 0;
168  }
169 
170  /* itu_t_t35_payload_byte follows */
171  provider_code = bytestream2_get_be16u(gb);
172 
173  switch (provider_code) {
175  uint32_t user_identifier;
176 
177  if (bytestream2_get_bytes_left(gb) < 4)
178  return AVERROR_INVALIDDATA;
179 
180  user_identifier = bytestream2_get_be32u(gb);
181  switch (user_identifier) {
182  case MKBETAG('D', 'T', 'G', '1'): // afd_data
183  return decode_registered_user_data_afd(&h->afd, gb);
184  case MKBETAG('G', 'A', '9', '4'): // closed captions
185  return decode_registered_user_data_closed_caption(&h->a53_caption, gb);
186  default:
187  av_log(logctx, AV_LOG_VERBOSE,
188  "Unsupported User Data Registered ITU-T T35 SEI message (atsc user_identifier = 0x%04x)\n",
189  user_identifier);
190  break;
191  }
192  break;
193  }
195  if (bytestream2_get_bytes_left(gb) < 2)
196  return AVERROR_INVALIDDATA;
197 
198  bytestream2_skipu(gb, 1); // user_data_type_code
199  return decode_registered_user_data_lcevc(&h->lcevc, gb);
200  }
201 #if CONFIG_HEVC_SEI
203  const uint16_t cuva_provider_oriented_code = 0x0005;
204  uint16_t provider_oriented_code;
205 
206  if (!IS_HEVC(codec_id))
207  goto unsupported_provider_code;
208 
209  if (bytestream2_get_bytes_left(gb) < 2)
210  return AVERROR_INVALIDDATA;
211 
212  provider_oriented_code = bytestream2_get_be16u(gb);
213  if (provider_oriented_code == cuva_provider_oriented_code) {
214  return decode_registered_user_data_dynamic_hdr_vivid(&h->dynamic_hdr_vivid, gb);
215  }
216  break;
217  }
219  // A/341 Amendment - 2094-40
220  const uint16_t smpte2094_40_provider_oriented_code = 0x0001;
221  const uint8_t smpte2094_40_application_identifier = 0x04;
222  uint16_t provider_oriented_code;
223  uint8_t application_identifier;
224 
225  if (!IS_HEVC(codec_id))
226  goto unsupported_provider_code;
227 
228  if (bytestream2_get_bytes_left(gb) < 3)
229  return AVERROR_INVALIDDATA;
230 
231  provider_oriented_code = bytestream2_get_be16u(gb);
232  application_identifier = bytestream2_get_byteu(gb);
233  if (provider_oriented_code == smpte2094_40_provider_oriented_code &&
234  application_identifier == smpte2094_40_application_identifier) {
235  return decode_registered_user_data_dynamic_hdr_plus(&h->dynamic_hdr_plus, gb);
236  }
237  break;
238  }
239  case 0x5890: { // aom_provider_code
240  const uint16_t aom_grain_provider_oriented_code = 0x0001;
241  uint16_t provider_oriented_code;
242 
243  if (!IS_HEVC(codec_id))
244  goto unsupported_provider_code;
245 
246  if (bytestream2_get_bytes_left(gb) < 2)
247  return AVERROR_INVALIDDATA;
248 
249  provider_oriented_code = bytestream2_get_byteu(gb);
250  if (provider_oriented_code == aom_grain_provider_oriented_code) {
251  return ff_aom_parse_film_grain_sets(&h->aom_film_grain,
252  gb->buffer,
254  }
255  break;
256  }
257  unsupported_provider_code:
258 #endif
259  default:
260  av_log(logctx, AV_LOG_VERBOSE,
261  "Unsupported User Data Registered ITU-T T35 SEI message (provider_code = %d)\n",
262  provider_code);
263  break;
264  }
265 
266  return 0;
267 }
268 
270  GetByteContext *gb,
271  enum AVCodecID codec_id)
272 {
273  uint8_t *user_data;
275  AVBufferRef *buf_ref, **tmp;
276 
277  if (size < 16 || size >= INT_MAX - 1)
278  return AVERROR_INVALIDDATA;
279 
280  tmp = av_realloc_array(h->buf_ref, h->nb_buf_ref + 1, sizeof(*h->buf_ref));
281  if (!tmp)
282  return AVERROR(ENOMEM);
283  h->buf_ref = tmp;
284 
285  buf_ref = av_buffer_alloc(size + 1);
286  if (!buf_ref)
287  return AVERROR(ENOMEM);
288  user_data = buf_ref->data;
289 
291  user_data[size] = 0;
292  buf_ref->size = size;
293  h->buf_ref[h->nb_buf_ref++] = buf_ref;
294 
295  if (IS_H264(codec_id)) {
296  int e, build;
297  e = sscanf(user_data + 16, "x264 - core %d", &build);
298  if (e == 1 && build > 0)
299  h->x264_build = build;
300  if (e == 1 && build == 1 && !strncmp(user_data+16, "x264 - core 0000", 16))
301  h->x264_build = 67;
302  }
303 
304  return 0;
305 }
306 
308  GetBitContext *gb)
309 {
310  h->present = !get_bits1(gb); // display_orientation_cancel_flag
311 
312  if (h->present) {
313  h->hflip = get_bits1(gb); // hor_flip
314  h->vflip = get_bits1(gb); // ver_flip
315 
316  h->anticlockwise_rotation = get_bits(gb, 16);
317  // This is followed by display_orientation_repetition_period
318  // and display_orientation_extension_flag for H.264
319  // and by display_orientation_persistence_flag for HEVC.
320  }
321 
322  return 0;
323 }
324 
326  GetBitContext *gb,
327  enum AVCodecID codec_id)
328 {
329  h->arrangement_id = get_ue_golomb_long(gb);
330  h->arrangement_cancel_flag = get_bits1(gb);
331  h->present = !h->arrangement_cancel_flag;
332 
333  if (h->present) {
334  h->arrangement_type = get_bits(gb, 7);
335  h->quincunx_sampling_flag = get_bits1(gb);
336  h->content_interpretation_type = get_bits(gb, 6);
337 
338  // spatial_flipping_flag, frame0_flipped_flag, field_views_flag
339  skip_bits(gb, 3);
340  h->current_frame_is_frame0_flag = get_bits1(gb);
341  // frame0_self_contained_flag, frame1_self_contained_flag
342  skip_bits(gb, 2);
343 
344  if (!h->quincunx_sampling_flag && h->arrangement_type != 5)
345  skip_bits(gb, 16); // frame[01]_grid_position_[xy]
346  skip_bits(gb, 8); // frame_packing_arrangement_reserved_byte
347  if (IS_H264(codec_id))
348  h->arrangement_repetition_period = get_ue_golomb_long(gb);
349  else
350  skip_bits1(gb); // frame_packing_arrangement_persistence_flag
351  }
352  // H.264: frame_packing_arrangement_extension_flag,
353  // HEVC: upsampled_aspect_ratio_flag
354  skip_bits1(gb);
355 
356  return 0;
357 }
358 
360  GetByteContext *gb)
361 {
362  if (bytestream2_get_bytes_left(gb) < 1)
363  return AVERROR_INVALIDDATA;
364 
365  s->present = 1;
366  s->preferred_transfer_characteristics = bytestream2_get_byteu(gb);
367 
368  return 0;
369 }
370 
372  GetByteContext *gb)
373 {
374  static const uint16_t max_ambient_light_value = 50000;
375 
376  if (bytestream2_get_bytes_left(gb) < 8)
377  return AVERROR_INVALIDDATA;
378 
379  s->ambient_illuminance = bytestream2_get_be32u(gb);
380  if (!s->ambient_illuminance)
381  return AVERROR_INVALIDDATA;
382 
383  s->ambient_light_x = bytestream2_get_be16u(gb);
384  if (s->ambient_light_x > max_ambient_light_value)
385  return AVERROR_INVALIDDATA;
386 
387  s->ambient_light_y = bytestream2_get_be16u(gb);
388  if (s->ambient_light_y > max_ambient_light_value)
389  return AVERROR_INVALIDDATA;
390 
391  s->present = 1;
392 
393  return 0;
394 }
395 
397  enum AVCodecID codec_id, GetBitContext *gb)
398 {
399  h->present = !get_bits1(gb); // film_grain_characteristics_cancel_flag
400 
401  if (h->present) {
402  memset(h, 0, sizeof(*h));
403  h->model_id = get_bits(gb, 2);
404  h->separate_colour_description_present_flag = get_bits1(gb);
405  if (h->separate_colour_description_present_flag) {
406  h->bit_depth_luma = get_bits(gb, 3) + 8;
407  h->bit_depth_chroma = get_bits(gb, 3) + 8;
408  h->full_range = get_bits1(gb);
409  h->color_primaries = get_bits(gb, 8);
410  h->transfer_characteristics = get_bits(gb, 8);
411  h->matrix_coeffs = get_bits(gb, 8);
412  }
413  h->blending_mode_id = get_bits(gb, 2);
414  h->log2_scale_factor = get_bits(gb, 4);
415  for (int c = 0; c < 3; c++)
416  h->comp_model_present_flag[c] = get_bits1(gb);
417  for (int c = 0; c < 3; c++) {
418  if (h->comp_model_present_flag[c]) {
419  h->num_intensity_intervals[c] = get_bits(gb, 8) + 1;
420  h->num_model_values[c] = get_bits(gb, 3) + 1;
421  if (h->num_model_values[c] > 6)
422  return AVERROR_INVALIDDATA;
423  for (int i = 0; i < h->num_intensity_intervals[c]; i++) {
424  h->intensity_interval_lower_bound[c][i] = get_bits(gb, 8);
425  h->intensity_interval_upper_bound[c][i] = get_bits(gb, 8);
426  for (int j = 0; j < h->num_model_values[c]; j++)
427  h->comp_model_value[c][i][j] = get_se_golomb_long(gb);
428  }
429  }
430  }
431  if (!IS_H264(codec_id))
432  h->persistence_flag = get_bits1(gb);
433  else
434  h->repetition_period = get_ue_golomb_long(gb);
435 
436  h->present = 1;
437  }
438 
439  return 0;
440 }
441 
443  GetByteContext *gb)
444 {
445  int i;
446 
447  if (bytestream2_get_bytes_left(gb) < 24)
448  return AVERROR_INVALIDDATA;
449 
450  // Mastering primaries
451  for (i = 0; i < 3; i++) {
452  s->display_primaries[i][0] = bytestream2_get_be16u(gb);
453  s->display_primaries[i][1] = bytestream2_get_be16u(gb);
454  }
455  // White point (x, y)
456  s->white_point[0] = bytestream2_get_be16u(gb);
457  s->white_point[1] = bytestream2_get_be16u(gb);
458 
459  // Max and min luminance of mastering display
460  s->max_luminance = bytestream2_get_be32u(gb);
461  s->min_luminance = bytestream2_get_be32u(gb);
462 
463  // As this SEI message comes before the first frame that references it,
464  // initialize the flag to 2 and decrement on IRAP access unit so it
465  // persists for the coded video sequence (e.g., between two IRAPs)
466  s->present = 2;
467 
468  return 0;
469 }
470 
472  GetByteContext *gb)
473 {
474  if (bytestream2_get_bytes_left(gb) < 4)
475  return AVERROR_INVALIDDATA;
476 
477  // Max and average light levels
478  s->max_content_light_level = bytestream2_get_be16u(gb);
479  s->max_pic_average_light_level = bytestream2_get_be16u(gb);
480  // As this SEI message comes before the first frame that references it,
481  // initialize the flag to 2 and decrement on IRAP access unit so it
482  // persists for the coded video sequence (e.g., between two IRAPs)
483  s->present = 2;
484 
485  return 0;
486 }
487 
489  enum AVCodecID codec_id, GetBitContext *gb,
490  GetByteContext *gbyte, void *logctx)
491 {
492  switch (type) {
494  return decode_registered_user_data(h, gbyte, codec_id, logctx);
496  return decode_unregistered_user_data(&h->unregistered, gbyte, codec_id);
498  return decode_display_orientation(&h->display_orientation, gb);
500  av_refstruct_unref(&h->film_grain_characteristics);
501  h->film_grain_characteristics = av_refstruct_allocz(sizeof(*h->film_grain_characteristics));
502  if (!h->film_grain_characteristics)
503  return AVERROR(ENOMEM);
504  return decode_film_grain_characteristics(h->film_grain_characteristics, codec_id, gb);
506  return decode_frame_packing_arrangement(&h->frame_packing, gb, codec_id);
508  return decode_alternative_transfer(&h->alternative_transfer, gbyte);
510  return decode_ambient_viewing_environment(&h->ambient_viewing_environment,
511  gbyte);
513  return decode_nal_sei_mastering_display_info(&h->mastering_display,
514  gbyte);
516  return decode_nal_sei_content_light_info(&h->content_light, gbyte);
517  default:
519  }
520 }
521 
523 {
524  int ret = av_buffer_replace(&dst->a53_caption.buf_ref,
525  src->a53_caption.buf_ref);
526  if (ret < 0)
527  return ret;
528 
529  for (unsigned i = 0; i < dst->unregistered.nb_buf_ref; i++)
530  av_buffer_unref(&dst->unregistered.buf_ref[i]);
531  dst->unregistered.nb_buf_ref = 0;
532 
533  ret = av_buffer_replace(&dst->lcevc.info, src->lcevc.info);
534  if (ret < 0)
535  return ret;
536 
537  if (src->unregistered.nb_buf_ref) {
538  ret = av_reallocp_array(&dst->unregistered.buf_ref,
539  src->unregistered.nb_buf_ref,
540  sizeof(*dst->unregistered.buf_ref));
541  if (ret < 0)
542  return ret;
543 
544  for (unsigned i = 0; i < src->unregistered.nb_buf_ref; i++) {
545  dst->unregistered.buf_ref[i] = av_buffer_ref(src->unregistered.buf_ref[i]);
546  if (!dst->unregistered.buf_ref[i])
547  return AVERROR(ENOMEM);
548  dst->unregistered.nb_buf_ref++;
549  }
550  }
551 
552  for (unsigned i = 0; i < FF_ARRAY_ELEMS(dst->aom_film_grain.sets); i++) {
553  ret = av_buffer_replace(&dst->aom_film_grain.sets[i],
554  src->aom_film_grain.sets[i]);
555  if (ret < 0)
556  return ret;
557  }
558  dst->aom_film_grain.enable = src->aom_film_grain.enable;
559 
560  dst->mastering_display = src->mastering_display;
561  dst->content_light = src->content_light;
562 
563  av_refstruct_replace(&dst->film_grain_characteristics,
564  src->film_grain_characteristics);
565 
566  return 0;
567 }
568 
570 {
571  if (IS_H264(codec_id))
572  return type <= SEI_FPA_H264_TYPE_2D &&
574  else
577 }
578 
580  AVFrameSideData ***sd, int *nb_sd)
581 {
582  int ret;
583 
584  for (unsigned i = 0; i < sei->unregistered.nb_buf_ref; i++) {
585  H2645SEIUnregistered *unreg = &sei->unregistered;
586 
587  if (unreg->buf_ref[i]) {
590  &unreg->buf_ref[i], 0);
591  if (!entry)
592  av_buffer_unref(&unreg->buf_ref[i]);
593  }
594  }
595  sei->unregistered.nb_buf_ref = 0;
596 
597  if (sei->ambient_viewing_environment.present) {
598  H2645SEIAmbientViewingEnvironment *env = &sei->ambient_viewing_environment;
599  AVBufferRef *buf;
600  size_t size;
601 
602  AVAmbientViewingEnvironment *dst_env =
604  if (!dst_env)
605  return AVERROR(ENOMEM);
606 
607  buf = av_buffer_create((uint8_t *)dst_env, size, NULL, NULL, 0);
608  if (!buf) {
609  av_free(dst_env);
610  return AVERROR(ENOMEM);
611  }
612 
613  ret = ff_frame_new_side_data_from_buf_ext(avctx, sd, nb_sd,
615 
616  if (ret < 0)
617  return ret;
618 
619  dst_env->ambient_illuminance = av_make_q(env->ambient_illuminance, 10000);
620  dst_env->ambient_light_x = av_make_q(env->ambient_light_x, 50000);
621  dst_env->ambient_light_y = av_make_q(env->ambient_light_y, 50000);
622  }
623 
624  if (sei->mastering_display.present) {
625  // HEVC uses a g,b,r ordering, which we convert to a more natural r,g,b
626  const int mapping[3] = {2, 0, 1};
627  const int chroma_den = 50000;
628  const int luma_den = 10000;
629  int i;
631 
632  ret = ff_decode_mastering_display_new_ext(avctx, sd, nb_sd, &metadata);
633  if (ret < 0)
634  return ret;
635 
636  if (metadata) {
637  metadata->has_luminance = 1;
638  metadata->has_primaries = 1;
639 
640  for (i = 0; i < 3; i++) {
641  const int j = mapping[i];
642  metadata->display_primaries[i][0].num = sei->mastering_display.display_primaries[j][0];
643  metadata->display_primaries[i][0].den = chroma_den;
644  metadata->has_primaries &= sei->mastering_display.display_primaries[j][0] >= 5 &&
645  sei->mastering_display.display_primaries[j][0] <= 37000;
646 
647  metadata->display_primaries[i][1].num = sei->mastering_display.display_primaries[j][1];
648  metadata->display_primaries[i][1].den = chroma_den;
649  metadata->has_primaries &= sei->mastering_display.display_primaries[j][1] >= 5 &&
650  sei->mastering_display.display_primaries[j][1] <= 42000;
651  }
652  metadata->white_point[0].num = sei->mastering_display.white_point[0];
653  metadata->white_point[0].den = chroma_den;
654  metadata->has_primaries &= sei->mastering_display.white_point[0] >= 5 &&
655  sei->mastering_display.white_point[0] <= 37000;
656 
657  metadata->white_point[1].num = sei->mastering_display.white_point[1];
658  metadata->white_point[1].den = chroma_den;
659  metadata->has_primaries &= sei->mastering_display.white_point[1] >= 5 &&
660  sei->mastering_display.white_point[1] <= 42000;
661 
662  metadata->max_luminance.num = sei->mastering_display.max_luminance;
663  metadata->max_luminance.den = luma_den;
664  metadata->has_luminance &= sei->mastering_display.max_luminance >= 50000 &&
665  sei->mastering_display.max_luminance <= 100000000;
666 
667  metadata->min_luminance.num = sei->mastering_display.min_luminance;
668  metadata->min_luminance.den = luma_den;
669  metadata->has_luminance &= sei->mastering_display.min_luminance <= 50000 &&
670  sei->mastering_display.min_luminance <
671  sei->mastering_display.max_luminance;
672 
673  /* Real (blu-ray) releases in the wild come with minimum luminance
674  * values of 0.000 cd/m2, so permit this edge case */
676  metadata->has_luminance &= sei->mastering_display.min_luminance >= 1;
677 
678  if (metadata->has_luminance || metadata->has_primaries)
679  av_log(avctx, AV_LOG_DEBUG, "Mastering Display Metadata:\n");
680  if (metadata->has_primaries) {
681  av_log(avctx, AV_LOG_DEBUG,
682  "r(%5.4f,%5.4f) g(%5.4f,%5.4f) b(%5.4f %5.4f) wp(%5.4f, %5.4f)\n",
683  av_q2d(metadata->display_primaries[0][0]),
684  av_q2d(metadata->display_primaries[0][1]),
685  av_q2d(metadata->display_primaries[1][0]),
686  av_q2d(metadata->display_primaries[1][1]),
687  av_q2d(metadata->display_primaries[2][0]),
688  av_q2d(metadata->display_primaries[2][1]),
689  av_q2d(metadata->white_point[0]), av_q2d(metadata->white_point[1]));
690  }
691  if (metadata->has_luminance) {
692  av_log(avctx, AV_LOG_DEBUG,
693  "min_luminance=%f, max_luminance=%f\n",
694  av_q2d(metadata->min_luminance), av_q2d(metadata->max_luminance));
695  }
696  }
697  }
698 
699  if (sei->content_light.present) {
701 
702  ret = ff_decode_content_light_new_ext(avctx, sd, nb_sd, &metadata);
703  if (ret < 0)
704  return ret;
705 
706  if (metadata) {
707  metadata->MaxCLL = sei->content_light.max_content_light_level;
708  metadata->MaxFALL = sei->content_light.max_pic_average_light_level;
709 
710  av_log(avctx, AV_LOG_DEBUG, "Content Light Level Metadata:\n");
711  av_log(avctx, AV_LOG_DEBUG, "MaxCLL=%d, MaxFALL=%d\n",
712  metadata->MaxCLL, metadata->MaxFALL);
713  }
714  }
715 
716  return 0;
717 }
718 
720  enum AVCodecID codec_id,
721  AVCodecContext *avctx, const H2645VUI *vui,
722  unsigned bit_depth_luma, unsigned bit_depth_chroma,
723  int seed)
724 {
725  H2645SEIFramePacking *fp = &sei->frame_packing;
726  int ret;
727 
728  if (fp->present &&
730  fp->content_interpretation_type > 0 &&
731  fp->content_interpretation_type < 3) {
733 
734  if (!stereo)
735  return AVERROR(ENOMEM);
736 
737  switch (fp->arrangement_type) {
738 #if CONFIG_H264_SEI
740  stereo->type = AV_STEREO3D_CHECKERBOARD;
741  break;
743  stereo->type = AV_STEREO3D_COLUMNS;
744  break;
746  stereo->type = AV_STEREO3D_LINES;
747  break;
748 #endif
750  if (fp->quincunx_sampling_flag)
752  else
753  stereo->type = AV_STEREO3D_SIDEBYSIDE;
754  break;
756  stereo->type = AV_STEREO3D_TOPBOTTOM;
757  break;
760  break;
761 #if CONFIG_H264_SEI
763  stereo->type = AV_STEREO3D_2D;
764  break;
765 #endif
766  }
767 
768  if (fp->content_interpretation_type == 2)
769  stereo->flags = AV_STEREO3D_FLAG_INVERT;
770 
773  stereo->view = AV_STEREO3D_VIEW_LEFT;
774  else
775  stereo->view = AV_STEREO3D_VIEW_RIGHT;
776  }
777  }
778 
779  if (sei->display_orientation.present &&
780  (sei->display_orientation.anticlockwise_rotation ||
781  sei->display_orientation.hflip ||
782  sei->display_orientation.vflip)) {
783  H2645SEIDisplayOrientation *o = &sei->display_orientation;
784  double angle = o->anticlockwise_rotation * 360 / (double) (1 << 16);
787  sizeof(int32_t) * 9);
788  if (!rotation)
789  return AVERROR(ENOMEM);
790 
791  /* av_display_rotation_set() expects the angle in the clockwise
792  * direction, hence the first minus.
793  * The below code applies the flips after the rotation, yet
794  * the H.2645 specs require flipping to be applied first.
795  * Because of R O(phi) = O(-phi) R (where R is flipping around
796  * an arbitatry axis and O(phi) is the proper rotation by phi)
797  * we can create display matrices as desired by negating
798  * the degree once for every flip applied. */
799  angle = -angle * (1 - 2 * !!o->hflip) * (1 - 2 * !!o->vflip);
800  av_display_rotation_set((int32_t *)rotation->data, angle);
801  av_display_matrix_flip((int32_t *)rotation->data,
802  o->hflip, o->vflip);
803  }
804 
805  if (sei->a53_caption.buf_ref) {
806  H2645SEIA53Caption *a53 = &sei->a53_caption;
808  if (!sd)
809  av_buffer_unref(&a53->buf_ref);
810  a53->buf_ref = NULL;
811 #if FF_API_CODEC_PROPS
815 #endif
816  }
817 
818  ret = h2645_sei_to_side_data(avctx, sei, &frame->side_data, &frame->nb_side_data);
819  if (ret < 0)
820  return ret;
821 
822  if (sei->afd.present) {
824  sizeof(uint8_t));
825 
826  if (sd) {
827  *sd->data = sei->afd.active_format_description;
828  sei->afd.present = 0;
829  }
830  }
831 
832  if (sei->lcevc.info) {
833  HEVCSEILCEVC *lcevc = &sei->lcevc;
835  if (ret < 0)
836  return ret;
837  }
838 
839  if (sei->film_grain_characteristics && sei->film_grain_characteristics->present) {
840  H2645SEIFilmGrainCharacteristics *fgc = sei->film_grain_characteristics;
842  AVFilmGrainH274Params *h274;
843 
844  if (!fgp)
845  return AVERROR(ENOMEM);
846 
848  h274 = &fgp->codec.h274;
849 
850  fgp->seed = seed;
851  fgp->width = frame->width;
852  fgp->height = frame->height;
853 
854  /* H.274 mandates film grain be applied to 4:4:4 frames */
855  fgp->subsampling_x = fgp->subsampling_y = 0;
856 
857  h274->model_id = fgc->model_id;
859  fgp->bit_depth_luma = fgc->bit_depth_luma;
861  fgp->color_range = fgc->full_range + 1;
862  fgp->color_primaries = fgc->color_primaries;
864  fgp->color_space = fgc->matrix_coeffs;
865  } else {
866  fgp->bit_depth_luma = bit_depth_luma;
867  fgp->bit_depth_chroma = bit_depth_chroma;
869  fgp->color_range = vui->video_full_range_flag + 1;
871  fgp->color_primaries = vui->colour_primaries;
873  fgp->color_space = vui->matrix_coeffs;
874  }
875  }
876  h274->blending_mode_id = fgc->blending_mode_id;
878 
880  sizeof(h274->component_model_present));
882  sizeof(h274->num_intensity_intervals));
883  memcpy(&h274->num_model_values, &fgc->num_model_values,
884  sizeof(h274->num_model_values));
886  sizeof(h274->intensity_interval_lower_bound));
888  sizeof(h274->intensity_interval_upper_bound));
889  memcpy(&h274->comp_model_value, &fgc->comp_model_value,
890  sizeof(h274->comp_model_value));
891 
892  if (IS_H264(codec_id))
893  fgc->present = !!fgc->repetition_period;
894  else
895  fgc->present = fgc->persistence_flag;
896 
897 #if FF_API_CODEC_PROPS
901 #endif
902  }
903 
904 #if CONFIG_HEVC_SEI
905  ret = ff_aom_attach_film_grain_sets(&sei->aom_film_grain, frame);
906  if (ret < 0)
907  return ret;
908 #endif
909 
910  return 0;
911 }
912 
914 {
915  return h2645_sei_to_side_data(avctx, sei, &avctx->decoded_side_data,
916  &avctx->nb_decoded_side_data);
917 }
918 
920 {
921  av_buffer_unref(&s->a53_caption.buf_ref);
922 
923  for (unsigned i = 0; i < s->unregistered.nb_buf_ref; i++)
924  av_buffer_unref(&s->unregistered.buf_ref[i]);
925  s->unregistered.nb_buf_ref = 0;
926  av_freep(&s->unregistered.buf_ref);
927  av_buffer_unref(&s->dynamic_hdr_plus.info);
928  av_buffer_unref(&s->dynamic_hdr_vivid.info);
929  av_buffer_unref(&s->lcevc.info);
930 
931  s->ambient_viewing_environment.present = 0;
932  s->mastering_display.present = 0;
933  s->content_light.present = 0;
934 
935  av_refstruct_unref(&s->film_grain_characteristics);
936  ff_aom_uninit_film_grain_params(&s->aom_film_grain);
937 }
FF_ENABLE_DEPRECATION_WARNINGS
#define FF_ENABLE_DEPRECATION_WARNINGS
Definition: internal.h:73
h2645_sei_to_side_data
static int h2645_sei_to_side_data(AVCodecContext *avctx, H2645SEI *sei, AVFrameSideData ***sd, int *nb_sd)
Definition: h2645_sei.c:579
decode_film_grain_characteristics
static int decode_film_grain_characteristics(H2645SEIFilmGrainCharacteristics *h, enum AVCodecID codec_id, GetBitContext *gb)
Definition: h2645_sei.c:396
entry
#define entry
Definition: aom_film_grain_template.c:66
AV_STEREO3D_VIEW_LEFT
@ AV_STEREO3D_VIEW_LEFT
Frame contains only the left view.
Definition: stereo3d.h:158
H2645SEIFilmGrainCharacteristics::persistence_flag
int persistence_flag
Definition: h2645_sei.h:111
AVERROR
Filter the word “frame” indicates either a video frame or a group of audio as stored in an AVFrame structure Format for each input and each output the list of supported formats For video that means pixel format For audio that means channel sample they are references to shared objects When the negotiation mechanism computes the intersection of the formats supported at each end of a all references to both lists are replaced with a reference to the intersection And when a single format is eventually chosen for a link amongst the remaining all references to the list are updated That means that if a filter requires that its input and output have the same format amongst a supported all it has to do is use a reference to the same list of formats query_formats can leave some formats unset and return AVERROR(EAGAIN) to cause the negotiation mechanism toagain later. That can be used by filters with complex requirements to use the format negotiated on one link to set the formats supported on another. Frame references ownership and permissions
AV_STEREO3D_SIDEBYSIDE_QUINCUNX
@ AV_STEREO3D_SIDEBYSIDE_QUINCUNX
Views are next to each other, but when upscaling apply a checkerboard pattern.
Definition: stereo3d.h:114
SEI_FPA_H264_TYPE_CHECKERBOARD
@ SEI_FPA_H264_TYPE_CHECKERBOARD
Definition: sei.h:148
SEI_FPA_TYPE_INTERLEAVE_TEMPORAL
@ SEI_FPA_TYPE_INTERLEAVE_TEMPORAL
Definition: sei.h:153
AVCodecContext::decoded_side_data
AVFrameSideData ** decoded_side_data
Array containing static side data, such as HDR10 CLL / MDCV structures.
Definition: avcodec.h:1924
H2645SEIFramePacking::arrangement_type
SEIFpaType arrangement_type
Definition: h2645_sei.h:67
H2645SEIAmbientViewingEnvironment::ambient_light_x
uint16_t ambient_light_x
Definition: h2645_sei.h:88
AVFilmGrainParams::bit_depth_luma
int bit_depth_luma
Intended bit depth, or 0 for unknown/unspecified.
Definition: film_grain_params.h:238
H2645SEIFramePacking
Definition: h2645_sei.h:63
av_frame_new_side_data
AVFrameSideData * av_frame_new_side_data(AVFrame *frame, enum AVFrameSideDataType type, size_t size)
Add a new side data to a frame.
Definition: frame.c:649
GetByteContext
Definition: bytestream.h:33
H2645SEIAFD
Definition: h2645_sei.h:40
AVAmbientViewingEnvironment
Ambient viewing environment metadata as defined by H.274.
Definition: ambient_viewing_environment.h:36
get_se_golomb_long
static int get_se_golomb_long(GetBitContext *gb)
Definition: golomb.h:294
AVBufferRef::data
uint8_t * data
The data buffer.
Definition: buffer.h:90
H2645SEIFilmGrainCharacteristics::bit_depth_chroma
int bit_depth_chroma
Definition: h2645_sei.h:97
AV_FRAME_DATA_A53_CC
@ AV_FRAME_DATA_A53_CC
ATSC A53 Part 4 Closed Captions.
Definition: frame.h:59
ff_h2645_sei_to_frame
int ff_h2645_sei_to_frame(AVFrame *frame, H2645SEI *sei, enum AVCodecID codec_id, AVCodecContext *avctx, const H2645VUI *vui, unsigned bit_depth_luma, unsigned bit_depth_chroma, int seed)
Definition: h2645_sei.c:719
bytestream2_skipu
static av_always_inline void bytestream2_skipu(GetByteContext *g, unsigned int size)
Definition: bytestream.h:174
metadata
Stream codec metadata
Definition: ogg-flac-chained-meta.txt:2
H2645VUI::matrix_coeffs
enum AVColorSpace matrix_coeffs
Definition: h2645_vui.h:41
AVFilmGrainH274Params::blending_mode_id
int blending_mode_id
Specifies the blending mode used to blend the simulated film grain with the decoded images.
Definition: film_grain_params.h:145
HEVCSEILCEVC::info
AVBufferRef * info
Definition: h2645_sei.h:54
H2645SEIA53Caption::buf_ref
AVBufferRef * buf_ref
Definition: h2645_sei.h:37
IS_VVC
#define IS_VVC(codec_id)
Definition: h2645_sei.c:49
AVFrame
This structure describes decoded (raw) audio or video data.
Definition: frame.h:410
IS_H264
#define IS_H264(codec_id)
Definition: h2645_sei.c:47
H2645SEIA53Caption
Definition: h2645_sei.h:36
av_display_matrix_flip
void av_display_matrix_flip(int32_t matrix[9], int hflip, int vflip)
Flip the input matrix horizontally and/or vertically.
Definition: display.c:66
H2645SEIMasteringDisplay
Definition: h2645_sei.h:114
FF_COMPLIANCE_STRICT
#define FF_COMPLIANCE_STRICT
Strictly conform to all the things in the spec no matter what consequences.
Definition: defs.h:59
AVFilmGrainParams::color_space
enum AVColorSpace color_space
Definition: film_grain_params.h:233
AV_LOG_VERBOSE
#define AV_LOG_VERBOSE
Detailed information.
Definition: log.h:226
av_display_rotation_set
void av_display_rotation_set(int32_t matrix[9], double angle)
Initialize a transformation matrix describing a pure clockwise rotation by the specified angle (in de...
Definition: display.c:51
AV_FRAME_DATA_DISPLAYMATRIX
@ AV_FRAME_DATA_DISPLAYMATRIX
This side data contains a 3x3 transformation matrix describing an affine transformation that needs to...
Definition: frame.h:85
SEI_FPA_TYPE_TOP_BOTTOM
@ SEI_FPA_TYPE_TOP_BOTTOM
Definition: sei.h:152
H2645VUI::colour_primaries
enum AVColorPrimaries colour_primaries
Definition: h2645_vui.h:39
av_buffer_ref
AVBufferRef * av_buffer_ref(const AVBufferRef *buf)
Create a new reference to an AVBuffer.
Definition: buffer.c:103
AV_STEREO3D_VIEW_RIGHT
@ AV_STEREO3D_VIEW_RIGHT
Frame contains only the right view.
Definition: stereo3d.h:163
HEVCSEILCEVC
Definition: h2645_sei.h:53
AVFilmGrainParams::color_trc
enum AVColorTransferCharacteristic color_trc
Definition: film_grain_params.h:232
H2645VUI::video_full_range_flag
int video_full_range_flag
Definition: h2645_vui.h:37
AVFilmGrainParams::seed
uint64_t seed
Seed to use for the synthesis process, if the codec allows for it.
Definition: film_grain_params.h:213
H2645SEIDisplayOrientation
Definition: h2645_sei.h:74
H2645VUI::video_signal_type_present_flag
int video_signal_type_present_flag
Definition: h2645_vui.h:35
ff_h2645_sei_message_decode
int ff_h2645_sei_message_decode(H2645SEI *h, enum SEIType type, enum AVCodecID codec_id, GetBitContext *gb, GetByteContext *gbyte, void *logctx)
Decode a single SEI message.
Definition: h2645_sei.c:488
AVContentLightMetadata
Content light level needed by to transmit HDR over HDMI (CTA-861.3).
Definition: mastering_display_metadata.h:107
skip_bits
static void skip_bits(GetBitContext *s, int n)
Definition: get_bits.h:364
golomb.h
exp golomb vlc stuff
AV_STEREO3D_SIDEBYSIDE
@ AV_STEREO3D_SIDEBYSIDE
Views are next to each other.
Definition: stereo3d.h:64
get_bits
static unsigned int get_bits(GetBitContext *s, int n)
Read 1-25 bits.
Definition: get_bits.h:318
SEI_FPA_H264_TYPE_INTERLEAVE_COLUMN
@ SEI_FPA_H264_TYPE_INTERLEAVE_COLUMN
Definition: sei.h:149
ITU_T_T35_COUNTRY_CODE_CN
#define ITU_T_T35_COUNTRY_CODE_CN
Definition: itut35.h:22
H2645SEIFramePacking::present
int present
Definition: h2645_sei.h:64
AV_STEREO3D_2D
@ AV_STEREO3D_2D
Video is not stereoscopic (and metadata has to be there).
Definition: stereo3d.h:52
H2645SEIFilmGrainCharacteristics::intensity_interval_upper_bound
uint8_t intensity_interval_upper_bound[3][256]
Definition: h2645_sei.h:108
GetBitContext
Definition: get_bits.h:108
av_dynamic_hdr_vivid_alloc
AVDynamicHDRVivid * av_dynamic_hdr_vivid_alloc(size_t *size)
Copyright (c) 2021 Limin Wang <lance.lmwang at gmail.com>
Definition: hdr_dynamic_vivid_metadata.c:24
type
it s the only field you need to keep assuming you have a context There is some magic you don t need to care about around this just let it vf type
Definition: writing_filters.txt:86
SEI_TYPE_AMBIENT_VIEWING_ENVIRONMENT
@ SEI_TYPE_AMBIENT_VIEWING_ENVIRONMENT
Definition: sei.h:107
refstruct.h
ITU_T_T35_PROVIDER_CODE_ATSC
#define ITU_T_T35_PROVIDER_CODE_ATSC
Definition: itut35.h:26
ff_frame_new_side_data_from_buf
int ff_frame_new_side_data_from_buf(const AVCodecContext *avctx, AVFrame *frame, enum AVFrameSideDataType type, AVBufferRef **buf)
Similar to ff_frame_new_side_data, but using an existing buffer ref.
Definition: decode.c:2070
AVFilmGrainH274Params::intensity_interval_upper_bound
uint8_t intensity_interval_upper_bound[3][256]
Specifies the upper bound of each intensity interval for which the set of model values applies for th...
Definition: film_grain_params.h:179
av_ambient_viewing_environment_alloc
AVAmbientViewingEnvironment * av_ambient_viewing_environment_alloc(size_t *size)
Allocate an AVAmbientViewingEnvironment structure.
Definition: ambient_viewing_environment.c:31
av_refstruct_allocz
static void * av_refstruct_allocz(size_t size)
Equivalent to av_refstruct_alloc_ext(size, 0, NULL, NULL)
Definition: refstruct.h:105
is_frame_packing_type_valid
static int is_frame_packing_type_valid(SEIFpaType type, enum AVCodecID codec_id)
Definition: h2645_sei.c:569
ff_decode_content_light_new_ext
int ff_decode_content_light_new_ext(const AVCodecContext *avctx, AVFrameSideData ***sd, int *nb_sd, AVContentLightMetadata **clm)
Same as ff_decode_content_light_new, but taking a AVFrameSideData array directly instead of an AVFram...
Definition: decode.c:2124
AVFilmGrainParams::bit_depth_chroma
int bit_depth_chroma
Definition: film_grain_params.h:239
AV_STEREO3D_FRAMESEQUENCE
@ AV_STEREO3D_FRAMESEQUENCE
Views are alternated temporally.
Definition: stereo3d.h:89
film_grain_params.h
FF_ARRAY_ELEMS
#define FF_ARRAY_ELEMS(a)
Definition: sinewin_tablegen.c:29
H2645SEIFilmGrainCharacteristics::intensity_interval_lower_bound
uint8_t intensity_interval_lower_bound[3][256]
Definition: h2645_sei.h:107
H2645SEIFramePacking::current_frame_is_frame0_flag
int current_frame_is_frame0_flag
Definition: h2645_sei.h:71
AVFilmGrainParams::width
int width
Intended display resolution.
Definition: film_grain_params.h:220
H2645SEIFilmGrainCharacteristics::matrix_coeffs
int matrix_coeffs
Definition: h2645_sei.h:101
H2645SEIDisplayOrientation::anticlockwise_rotation
int anticlockwise_rotation
Definition: h2645_sei.h:76
AV_STEREO3D_LINES
@ AV_STEREO3D_LINES
Views are packed per line, as if interlaced.
Definition: stereo3d.h:126
stereo3d.h
s
#define s(width, name)
Definition: cbs_vp9.c:198
AVFilmGrainParams::codec
union AVFilmGrainParams::@472 codec
Additional fields may be added both here and in any structure included.
SEI_TYPE_FRAME_PACKING_ARRANGEMENT
@ SEI_TYPE_FRAME_PACKING_ARRANGEMENT
Definition: sei.h:75
av_realloc_array
void * av_realloc_array(void *ptr, size_t nmemb, size_t size)
Definition: mem.c:217
SEI_FPA_H264_TYPE_INTERLEAVE_ROW
@ SEI_FPA_H264_TYPE_INTERLEAVE_ROW
Definition: sei.h:150
decode_registered_user_data_closed_caption
static int decode_registered_user_data_closed_caption(H2645SEIA53Caption *h, GetByteContext *gb)
Definition: h2645_sei.c:138
AVCodecContext::nb_decoded_side_data
int nb_decoded_side_data
Definition: avcodec.h:1925
av_q2d
static double av_q2d(AVRational a)
Convert an AVRational to a double.
Definition: rational.h:104
decode_nal_sei_content_light_info
static int decode_nal_sei_content_light_info(H2645SEIContentLight *s, GetByteContext *gb)
Definition: h2645_sei.c:471
av_film_grain_params_create_side_data
AVFilmGrainParams * av_film_grain_params_create_side_data(AVFrame *frame)
Allocate a complete AVFilmGrainParams and add it to the frame.
Definition: film_grain_params.c:33
GetByteContext::buffer
const uint8_t * buffer
Definition: bytestream.h:34
H2645SEIAmbientViewingEnvironment
Definition: h2645_sei.h:85
H2645SEIFilmGrainCharacteristics::log2_scale_factor
int log2_scale_factor
Definition: h2645_sei.h:103
AV_LOG_DEBUG
#define AV_LOG_DEBUG
Stuff which is only useful for libav* developers.
Definition: log.h:231
SEIType
SEIType
Definition: sei.h:29
SEI_TYPE_USER_DATA_REGISTERED_ITU_T_T35
@ SEI_TYPE_USER_DATA_REGISTERED_ITU_T_T35
Definition: sei.h:34
decode.h
get_bits.h
ff_aom_uninit_film_grain_params
void ff_aom_uninit_film_grain_params(AVFilmGrainAFGS1Params *s)
Definition: aom_film_grain.c:378
decode_unregistered_user_data
static int decode_unregistered_user_data(H2645SEIUnregistered *h, GetByteContext *gb, enum AVCodecID codec_id)
Definition: h2645_sei.c:269
codec_id
enum AVCodecID codec_id
Definition: vaapi_decode.c:410
AVFilmGrainH274Params::comp_model_value
int16_t comp_model_value[3][256][6]
Specifies the model values for the component for each intensity interval.
Definition: film_grain_params.h:190
FF_CODEC_PROPERTY_FILM_GRAIN
#define FF_CODEC_PROPERTY_FILM_GRAIN
Definition: avcodec.h:1640
AVStereo3D::flags
int flags
Additional information about the frame packing.
Definition: stereo3d.h:212
H2645SEIDisplayOrientation::hflip
int hflip
Definition: h2645_sei.h:77
AVFilmGrainH274Params::model_id
int model_id
Specifies the film grain simulation mode.
Definition: film_grain_params.h:137
ff_parse_a53_cc
int ff_parse_a53_cc(AVBufferRef **pbuf, const uint8_t *data, int size)
Parse a data array for ATSC A53 Part 4 Closed Captions and store them in an AVBufferRef.
Definition: atsc_a53.c:69
decode_registered_user_data
static int decode_registered_user_data(H2645SEI *h, GetByteContext *gb, enum AVCodecID codec_id, void *logctx)
Definition: h2645_sei.c:145
NULL
#define NULL
Definition: coverity.c:32
H2645SEIFilmGrainCharacteristics::color_primaries
int color_primaries
Definition: h2645_sei.h:99
H2645VUI::colour_description_present_flag
int colour_description_present_flag
Definition: h2645_vui.h:38
av_buffer_unref
void av_buffer_unref(AVBufferRef **buf)
Free a given reference and automatically free the buffer if there are no more references to it.
Definition: buffer.c:139
decode_frame_packing_arrangement
static int decode_frame_packing_arrangement(H2645SEIFramePacking *h, GetBitContext *gb, enum AVCodecID codec_id)
Definition: h2645_sei.c:325
tmp
static uint8_t tmp[20]
Definition: aes_ctr.c:47
H2645SEIFilmGrainCharacteristics::repetition_period
int repetition_period
Definition: h2645_sei.h:110
H2645SEIFilmGrainCharacteristics::model_id
int model_id
Definition: h2645_sei.h:94
ff_h2645_sei_to_context
int ff_h2645_sei_to_context(AVCodecContext *avctx, H2645SEI *sei)
Definition: h2645_sei.c:913
H2645SEIFilmGrainCharacteristics::comp_model_present_flag
int comp_model_present_flag[3]
Definition: h2645_sei.h:104
get_bits1
static unsigned int get_bits1(GetBitContext *s)
Definition: get_bits.h:371
H2645SEI
Definition: h2645_sei.h:128
AVDynamicHDRVivid
This struct represents dynamic metadata for color volume transform - CUVA 005.1:2021 standard.
Definition: hdr_dynamic_vivid_metadata.h:256
H2645VUI
Definition: h2645_vui.h:27
double
double
Definition: af_crystalizer.c:132
av_frame_new_side_data_from_buf
AVFrameSideData * av_frame_new_side_data_from_buf(AVFrame *frame, enum AVFrameSideDataType type, AVBufferRef *buf)
Add a new side data to a frame from an existing AVBufferRef.
Definition: frame.c:640
H2645SEIFilmGrainCharacteristics::num_intensity_intervals
uint16_t num_intensity_intervals[3]
Definition: h2645_sei.h:105
AVFilmGrainParams::subsampling_x
int subsampling_x
Intended subsampling ratio, or 0 for luma-only streams.
Definition: film_grain_params.h:225
seed
static unsigned int seed
Definition: videogen.c:78
AV_FRAME_DATA_AFD
@ AV_FRAME_DATA_AFD
Active Format Description data consisting of a single byte as specified in ETSI TS 101 154 using AVAc...
Definition: frame.h:90
sei
static int FUNC() sei(CodedBitstreamContext *ctx, RWContext *rw, H264RawSEI *current)
Definition: cbs_h264_syntax_template.c:858
IS_HEVC
#define IS_HEVC(codec_id)
Definition: h2645_sei.c:48
c
Undefined Behavior In the C some operations are like signed integer dereferencing freed accessing outside allocated Undefined Behavior must not occur in a C it is not safe even if the output of undefined operations is unused The unsafety may seem nit picking but Optimizing compilers have in fact optimized code on the assumption that no undefined Behavior occurs Optimizing code based on wrong assumptions can and has in some cases lead to effects beyond the output of computations The signed integer overflow problem in speed critical code Code which is highly optimized and works with signed integers sometimes has the problem that often the output of the computation does not c
Definition: undefined.txt:32
ff_aom_attach_film_grain_sets
int ff_aom_attach_film_grain_sets(const AVFilmGrainAFGS1Params *s, AVFrame *frame)
Definition: aom_film_grain.c:359
AV_FRAME_DATA_SEI_UNREGISTERED
@ AV_FRAME_DATA_SEI_UNREGISTERED
User data unregistered metadata associated with a video frame.
Definition: frame.h:178
decode_alternative_transfer
static int decode_alternative_transfer(H2645SEIAlternativeTransfer *s, GetByteContext *gb)
Definition: h2645_sei.c:359
av_buffer_create
AVBufferRef * av_buffer_create(uint8_t *data, size_t size, void(*free)(void *opaque, uint8_t *data), void *opaque, int flags)
Create an AVBuffer from an existing array.
Definition: buffer.c:55
bytestream2_get_bytes_left
static av_always_inline int bytestream2_get_bytes_left(GetByteContext *g)
Definition: bytestream.h:158
AVCodecID
AVCodecID
Identify the syntax and semantics of the bitstream.
Definition: codec_id.h:49
H2645SEIFilmGrainCharacteristics::bit_depth_luma
int bit_depth_luma
Definition: h2645_sei.h:96
H2645SEIFilmGrainCharacteristics::num_model_values
uint8_t num_model_values[3]
Definition: h2645_sei.h:106
AV_STEREO3D_CHECKERBOARD
@ AV_STEREO3D_CHECKERBOARD
Views are packed in a checkerboard-like structure per pixel.
Definition: stereo3d.h:101
H2645SEIDisplayOrientation::vflip
int vflip
Definition: h2645_sei.h:77
AV_FRAME_DATA_AMBIENT_VIEWING_ENVIRONMENT
@ AV_FRAME_DATA_AMBIENT_VIEWING_ENVIRONMENT
Ambient viewing environment metadata, as defined by H.274.
Definition: frame.h:220
H2645VUI::transfer_characteristics
enum AVColorTransferCharacteristic transfer_characteristics
Definition: h2645_vui.h:40
AVFilmGrainH274Params::component_model_present
int component_model_present[3]
Indicates if the modelling of film grain for a given component is present.
Definition: film_grain_params.h:155
dst
uint8_t ptrdiff_t const uint8_t ptrdiff_t int intptr_t intptr_t int int16_t * dst
Definition: dsp.h:87
h2645_sei.h
AV_FRAME_DATA_LCEVC
@ AV_FRAME_DATA_LCEVC
Raw LCEVC payload data, as a uint8_t array, with NAL emulation bytes intact.
Definition: frame.h:236
size
int size
Definition: twinvq_data.h:10344
av_make_q
static AVRational av_make_q(int num, int den)
Create an AVRational.
Definition: rational.h:71
MKBETAG
#define MKBETAG(a, b, c, d)
Definition: macros.h:56
ff_frame_new_side_data_from_buf_ext
int ff_frame_new_side_data_from_buf_ext(const AVCodecContext *avctx, AVFrameSideData ***sd, int *nb_sd, enum AVFrameSideDataType type, AVBufferRef **buf)
Same as ff_frame_new_side_data_from_buf, but taking a AVFrameSideData array directly instead of an AV...
Definition: decode.c:2051
AVFrameSideData::data
uint8_t * data
Definition: frame.h:267
AVFilmGrainParams
This structure describes how to handle film grain synthesis in video for specific codecs.
Definition: film_grain_params.h:201
user_data
static int FUNC() user_data(CodedBitstreamContext *ctx, RWContext *rw, MPEG2RawUserData *current)
Definition: cbs_mpeg2_syntax_template.c:59
H2645SEIFilmGrainCharacteristics::blending_mode_id
int blending_mode_id
Definition: h2645_sei.h:102
buffer.h
decode_nal_sei_mastering_display_info
static int decode_nal_sei_mastering_display_info(H2645SEIMasteringDisplay *s, GetByteContext *gb)
Definition: h2645_sei.c:442
av_reallocp_array
int av_reallocp_array(void *ptr, size_t nmemb, size_t size)
Allocate, reallocate an array through a pointer to a pointer.
Definition: mem.c:225
SEI_TYPE_MASTERING_DISPLAY_COLOUR_VOLUME
@ SEI_TYPE_MASTERING_DISPLAY_COLOUR_VOLUME
Definition: sei.h:96
SEI_FPA_TYPE_SIDE_BY_SIDE
@ SEI_FPA_TYPE_SIDE_BY_SIDE
Definition: sei.h:151
ff_h2645_sei_reset
void ff_h2645_sei_reset(H2645SEI *s)
Definition: h2645_sei.c:919
SEI_TYPE_ALTERNATIVE_TRANSFER_CHARACTERISTICS
@ SEI_TYPE_ALTERNATIVE_TRANSFER_CHARACTERISTICS
Definition: sei.h:106
skip_bits1
static void skip_bits1(GetBitContext *s)
Definition: get_bits.h:396
av_buffer_alloc
AVBufferRef * av_buffer_alloc(size_t size)
Allocate an AVBuffer of the given size using av_malloc().
Definition: buffer.c:77
AVFilmGrainParams::h274
AVFilmGrainH274Params h274
Definition: film_grain_params.h:248
decode_registered_user_data_afd
static int decode_registered_user_data_afd(H2645SEIAFD *h, GetByteContext *gb)
Definition: h2645_sei.c:119
ff_aom_parse_film_grain_sets
int ff_aom_parse_film_grain_sets(AVFilmGrainAFGS1Params *s, const uint8_t *payload, int payload_size)
Definition: aom_film_grain.c:124
AV_STEREO3D_FLAG_INVERT
#define AV_STEREO3D_FLAG_INVERT
Inverted views, Right/Bottom represents the left view.
Definition: stereo3d.h:194
ff_parse_itu_t_t35_to_dynamic_hdr_vivid
int ff_parse_itu_t_t35_to_dynamic_hdr_vivid(AVDynamicHDRVivid *s, const uint8_t *data, int size)
Parse the user data registered ITU-T T.35 to AVbuffer (AVDynamicHDRVivid).
Definition: dynamic_hdr_vivid.c:32
AVBufferRef::size
size_t size
Size of data in bytes.
Definition: buffer.h:94
av_refstruct_unref
void av_refstruct_unref(void *objp)
Decrement the reference count of the underlying object and automatically free the object if there are...
Definition: refstruct.c:120
SEI_FPA_H264_TYPE_2D
@ SEI_FPA_H264_TYPE_2D
Definition: sei.h:154
ITU_T_T35_PROVIDER_CODE_LCEVC
#define ITU_T_T35_PROVIDER_CODE_LCEVC
Definition: itut35.h:29
H2645SEIFilmGrainCharacteristics::transfer_characteristics
int transfer_characteristics
Definition: h2645_sei.h:100
AVFilmGrainParams::color_primaries
enum AVColorPrimaries color_primaries
Definition: film_grain_params.h:231
i
#define i(width, name, range_min, range_max)
Definition: cbs_h2645.c:256
HEVCSEIDynamicHDRPlus
Definition: h2645_sei.h:45
AVFilmGrainH274Params
This structure describes how to handle film grain synthesis for codecs using the ITU-T H....
Definition: film_grain_params.h:132
AVFilmGrainH274Params::num_intensity_intervals
uint16_t num_intensity_intervals[3]
Specifies the number of intensity intervals for which a specific set of model values has been estimat...
Definition: film_grain_params.h:161
display.h
AV_STEREO3D_TOPBOTTOM
@ AV_STEREO3D_TOPBOTTOM
Views are on top of each other.
Definition: stereo3d.h:76
AVFilmGrainParams::subsampling_y
int subsampling_y
Definition: film_grain_params.h:225
FF_H2645_SEI_MESSAGE_UNHANDLED
@ FF_H2645_SEI_MESSAGE_UNHANDLED
Definition: h2645_sei.h:149
SEI_TYPE_DISPLAY_ORIENTATION
@ SEI_TYPE_DISPLAY_ORIENTATION
Definition: sei.h:77
H2645SEIFilmGrainCharacteristics::present
int present
Definition: h2645_sei.h:93
av_buffer_replace
int av_buffer_replace(AVBufferRef **pdst, const AVBufferRef *src)
Ensure dst refers to the same data as src.
Definition: buffer.c:233
AVMasteringDisplayMetadata
Mastering display metadata capable of representing the color volume of the display used to master the...
Definition: mastering_display_metadata.h:38
ambient_viewing_environment.h
AVFilmGrainH274Params::intensity_interval_lower_bound
uint8_t intensity_interval_lower_bound[3][256]
Specifies the lower ounds of each intensity interval for whichthe set of model values applies for the...
Definition: film_grain_params.h:173
H2645SEIFilmGrainCharacteristics::separate_colour_description_present_flag
int separate_colour_description_present_flag
Definition: h2645_sei.h:95
AVDynamicHDRPlus
This struct represents dynamic metadata for color volume transform - application 4 of SMPTE 2094-40:2...
Definition: hdr_dynamic_metadata.h:243
avcodec.h
AVFilmGrainParams::height
int height
Definition: film_grain_params.h:220
ret
ret
Definition: filter_design.txt:187
frame
these buffered frames must be flushed immediately if a new input produces new the filter must not call request_frame to get more It must just process the frame or queue it The task of requesting more frames is left to the filter s request_frame method or the application If a filter has several the filter must be ready for frames arriving randomly on any input any filter with several inputs will most likely require some kind of queuing mechanism It is perfectly acceptable to have a limited queue and to drop frames when the inputs are too unbalanced request_frame For filters that do not use the this method is called when a frame is wanted on an output For a it should directly call filter_frame on the corresponding output For a if there are queued frames already one of these frames should be pushed If the filter should request a frame on one of its repeatedly until at least one frame has been pushed Return or at least make progress towards producing a frame
Definition: filter_design.txt:264
H2645SEIFramePacking::content_interpretation_type
int content_interpretation_type
Definition: h2645_sei.h:69
H2645SEIUnregistered
Definition: h2645_sei.h:57
AV_STEREO3D_COLUMNS
@ AV_STEREO3D_COLUMNS
Views are packed per column.
Definition: stereo3d.h:138
atsc_a53.h
AVCodecContext::strict_std_compliance
int strict_std_compliance
strictly follow the standard (MPEG-4, ...).
Definition: avcodec.h:1357
AVStereo3D::type
enum AVStereo3DType type
How views are packed within the video.
Definition: stereo3d.h:207
SEIFpaType
SEIFpaType
frame_packing_arrangement types.
Definition: sei.h:147
flag
#define flag(name)
Definition: cbs_av1.c:495
AVCodecContext
main external API structure.
Definition: avcodec.h:431
itut35.h
AV_FILM_GRAIN_PARAMS_H274
@ AV_FILM_GRAIN_PARAMS_H274
The union is valid when interpreted as AVFilmGrainH274Params (codec.h274)
Definition: film_grain_params.h:35
SEI_TYPE_USER_DATA_UNREGISTERED
@ SEI_TYPE_USER_DATA_UNREGISTERED
Definition: sei.h:35
av_refstruct_replace
void av_refstruct_replace(void *dstp, const void *src)
Ensure *dstp refers to the same object as src.
Definition: refstruct.c:160
decode_ambient_viewing_environment
static int decode_ambient_viewing_environment(H2645SEIAmbientViewingEnvironment *s, GetByteContext *gb)
Definition: h2645_sei.c:371
AVFilmGrainH274Params::log2_scale_factor
int log2_scale_factor
Specifies a scale factor used in the film grain characterization equations.
Definition: film_grain_params.h:150
hdr_dynamic_metadata.h
HEVCSEIDynamicHDRVivid
Definition: h2645_sei.h:49
FF_CODEC_PROPERTY_CLOSED_CAPTIONS
#define FF_CODEC_PROPERTY_CLOSED_CAPTIONS
Definition: avcodec.h:1639
ITU_T_T35_COUNTRY_CODE_UK
#define ITU_T_T35_COUNTRY_CODE_UK
Definition: itut35.h:23
H2645SEIAmbientViewingEnvironment::ambient_illuminance
uint32_t ambient_illuminance
Definition: h2645_sei.h:87
AVFilmGrainH274Params::num_model_values
uint8_t num_model_values[3]
Specifies the number of model values present for each intensity interval in which the film grain has ...
Definition: film_grain_params.h:167
AVFilmGrainParams::color_range
enum AVColorRange color_range
Intended video signal characteristics.
Definition: film_grain_params.h:230
FF_DISABLE_DEPRECATION_WARNINGS
#define FF_DISABLE_DEPRECATION_WARNINGS
Definition: internal.h:72
H2645SEIAmbientViewingEnvironment::ambient_light_y
uint16_t ambient_light_y
Definition: h2645_sei.h:89
ff_decode_mastering_display_new_ext
int ff_decode_mastering_display_new_ext(const AVCodecContext *avctx, AVFrameSideData ***sd, int *nb_sd, struct AVMasteringDisplayMetadata **mdm)
Same as ff_decode_mastering_display_new, but taking a AVFrameSideData array directly instead of an AV...
Definition: decode.c:2079
H2645SEIFramePacking::quincunx_sampling_flag
int quincunx_sampling_flag
Definition: h2645_sei.h:70
ITU_T_T35_PROVIDER_CODE_CUVA
#define ITU_T_T35_PROVIDER_CODE_CUVA
Definition: itut35.h:27
mem.h
AVBufferRef
A reference to a data buffer.
Definition: buffer.h:82
bytestream2_get_bufferu
static av_always_inline unsigned int bytestream2_get_bufferu(GetByteContext *g, uint8_t *dst, unsigned int size)
Definition: bytestream.h:277
mastering_display_metadata.h
get_ue_golomb_long
static unsigned get_ue_golomb_long(GetBitContext *gb)
Read an unsigned Exp-Golomb code in the range 0 to UINT32_MAX-1.
Definition: golomb.h:104
ITU_T_T35_COUNTRY_CODE_US
#define ITU_T_T35_COUNTRY_CODE_US
Definition: itut35.h:24
ff_h2645_sei_ctx_replace
int ff_h2645_sei_ctx_replace(H2645SEI *dst, const H2645SEI *src)
Definition: h2645_sei.c:522
av_stereo3d_create_side_data
AVStereo3D * av_stereo3d_create_side_data(AVFrame *frame)
Allocate a complete AVFrameSideData and add it to the frame.
Definition: stereo3d.c:54
AVFrameSideData
Structure to hold side data for an AVFrame.
Definition: frame.h:265
av_dynamic_hdr_plus_alloc
AVDynamicHDRPlus * av_dynamic_hdr_plus_alloc(size_t *size)
Allocate an AVDynamicHDRPlus structure and set its fields to default values.
Definition: hdr_dynamic_metadata.c:36
dynamic_hdr_vivid.h
AVStereo3D::view
enum AVStereo3DView view
Determines which views are packed.
Definition: stereo3d.h:217
av_free
#define av_free(p)
Definition: tableprint_vlc.h:34
ITU_T_T35_PROVIDER_CODE_SMTPE
#define ITU_T_T35_PROVIDER_CODE_SMTPE
Definition: itut35.h:30
av_freep
#define av_freep(p)
Definition: tableprint_vlc.h:35
av_dynamic_hdr_plus_from_t35
int av_dynamic_hdr_plus_from_t35(AVDynamicHDRPlus *s, const uint8_t *data, size_t size)
Parse the user data registered ITU-T T.35 to AVbuffer (AVDynamicHDRPlus).
Definition: hdr_dynamic_metadata.c:61
H2645SEIFilmGrainCharacteristics::full_range
int full_range
Definition: h2645_sei.h:98
int32_t
int32_t
Definition: audioconvert.c:56
AVCodecContext::properties
attribute_deprecated unsigned properties
Properties of the stream that gets decoded.
Definition: avcodec.h:1637
H2645SEIContentLight
Definition: h2645_sei.h:122
av_log
#define av_log(a,...)
Definition: tableprint_vlc.h:27
AVERROR_INVALIDDATA
#define AVERROR_INVALIDDATA
Invalid data found when processing input.
Definition: error.h:61
SEI_TYPE_CONTENT_LIGHT_LEVEL_INFO
@ SEI_TYPE_CONTENT_LIGHT_LEVEL_INFO
Definition: sei.h:103
h
h
Definition: vp9dsp_template.c:2070
AVStereo3D
Stereo 3D type: this structure describes how two videos are packed within a single video surface,...
Definition: stereo3d.h:203
H2645SEIFilmGrainCharacteristics::comp_model_value
int16_t comp_model_value[3][256][6]
Definition: h2645_sei.h:109
H2645SEIUnregistered::buf_ref
AVBufferRef ** buf_ref
Definition: h2645_sei.h:58
SEI_TYPE_FILM_GRAIN_CHARACTERISTICS
@ SEI_TYPE_FILM_GRAIN_CHARACTERISTICS
Definition: sei.h:49
AVFilmGrainParams::type
enum AVFilmGrainParamsType type
Specifies the codec for which this structure is valid.
Definition: film_grain_params.h:205
decode_registered_user_data_lcevc
static int decode_registered_user_data_lcevc(HEVCSEILCEVC *s, GetByteContext *gb)
Definition: h2645_sei.c:105
av_frame_side_data_add
AVFrameSideData * av_frame_side_data_add(AVFrameSideData ***sd, int *nb_sd, enum AVFrameSideDataType type, AVBufferRef **buf, unsigned int flags)
Add a new side data entry to an array from an existing AVBufferRef.
Definition: side_data.c:221
src
#define src
Definition: vp8dsp.c:248
H2645SEIAlternativeTransfer
Definition: h2645_sei.h:80
decode_display_orientation
static int decode_display_orientation(H2645SEIDisplayOrientation *h, GetBitContext *gb)
Definition: h2645_sei.c:307
H2645SEIFilmGrainCharacteristics
Definition: h2645_sei.h:92