FFmpeg  4.4.8
hevc_ps.c
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1 /*
2  * HEVC Parameter Set decoding
3  *
4  * Copyright (C) 2012 - 2103 Guillaume Martres
5  * Copyright (C) 2012 - 2103 Mickael Raulet
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 "libavutil/imgutils.h"
27 #include "golomb.h"
28 #include "hevc_data.h"
29 #include "hevc_ps.h"
30 
32  16, 16, 16, 16, 17, 18, 21, 24,
33  16, 16, 16, 16, 17, 19, 22, 25,
34  16, 16, 17, 18, 20, 22, 25, 29,
35  16, 16, 18, 21, 24, 27, 31, 36,
36  17, 17, 20, 24, 30, 35, 41, 47,
37  18, 19, 22, 27, 35, 44, 54, 65,
38  21, 22, 25, 31, 41, 54, 70, 88,
39  24, 25, 29, 36, 47, 65, 88, 115
40 };
41 
43  16, 16, 16, 16, 17, 18, 20, 24,
44  16, 16, 16, 17, 18, 20, 24, 25,
45  16, 16, 17, 18, 20, 24, 25, 28,
46  16, 17, 18, 20, 24, 25, 28, 33,
47  17, 18, 20, 24, 25, 28, 33, 41,
48  18, 20, 24, 25, 28, 33, 41, 54,
49  20, 24, 25, 28, 33, 41, 54, 71,
50  24, 25, 28, 33, 41, 54, 71, 91
51 };
52 
53 static const AVRational vui_sar[] = {
54  { 0, 1 },
55  { 1, 1 },
56  { 12, 11 },
57  { 10, 11 },
58  { 16, 11 },
59  { 40, 33 },
60  { 24, 11 },
61  { 20, 11 },
62  { 32, 11 },
63  { 80, 33 },
64  { 18, 11 },
65  { 15, 11 },
66  { 64, 33 },
67  { 160, 99 },
68  { 4, 3 },
69  { 3, 2 },
70  { 2, 1 },
71 };
72 
73 static const uint8_t hevc_sub_width_c[] = {
74  1, 2, 2, 1
75 };
76 
77 static const uint8_t hevc_sub_height_c[] = {
78  1, 2, 1, 1
79 };
80 
81 static int read_window(HEVCWindow *window, GetBitContext *gb, int chroma_format_idc, int w, int h)
82 {
83  int64_t vert_mult = hevc_sub_height_c[chroma_format_idc];
84  int64_t horiz_mult = hevc_sub_width_c [chroma_format_idc];
85  int64_t left = get_ue_golomb_long(gb) * horiz_mult;
86  int64_t right = get_ue_golomb_long(gb) * horiz_mult;
87  int64_t top = get_ue_golomb_long(gb) * vert_mult;
88  int64_t bottom = get_ue_golomb_long(gb) * vert_mult;
89 
90  if (left < 0 || right < 0 || top < 0 || bottom < 0 ||
91  w <= left + right ||
92  h <= top + bottom) {
93  memset(window, 0, sizeof(*window));
94  return AVERROR_INVALIDDATA;
95  }
96 
97  window->left_offset = left;
98  window->right_offset = right;
99  window->top_offset = top;
100  window->bottom_offset = bottom;
101  return 0;
102 }
103 
104 static void remove_pps(HEVCParamSets *s, int id)
105 {
106  if (s->pps_list[id] && s->pps == (const HEVCPPS*)s->pps_list[id]->data)
107  s->pps = NULL;
108  av_buffer_unref(&s->pps_list[id]);
109 }
110 
111 static void remove_sps(HEVCParamSets *s, int id)
112 {
113  int i;
114  if (s->sps_list[id]) {
115  if (s->sps == (const HEVCSPS*)s->sps_list[id]->data)
116  s->sps = NULL;
117 
118  /* drop all PPS that depend on this SPS */
119  for (i = 0; i < FF_ARRAY_ELEMS(s->pps_list); i++)
120  if (s->pps_list[i] && ((HEVCPPS*)s->pps_list[i]->data)->sps_id == id)
121  remove_pps(s, i);
122 
123  av_assert0(!(s->sps_list[id] && s->sps == (HEVCSPS*)s->sps_list[id]->data));
124  }
125  av_buffer_unref(&s->sps_list[id]);
126 }
127 
128 static void remove_vps(HEVCParamSets *s, int id)
129 {
130  int i;
131  if (s->vps_list[id]) {
132  if (s->vps == (const HEVCVPS*)s->vps_list[id]->data)
133  s->vps = NULL;
134 
135  for (i = 0; i < FF_ARRAY_ELEMS(s->sps_list); i++)
136  if (s->sps_list[i] && ((HEVCSPS*)s->sps_list[i]->data)->vps_id == id)
137  remove_sps(s, i);
138  }
139  av_buffer_unref(&s->vps_list[id]);
140 }
141 
143  ShortTermRPS *rps, const HEVCSPS *sps, int is_slice_header)
144 {
145  uint8_t rps_predict = 0;
146  int delta_poc;
147  int k0 = 0;
148  int k1 = 0;
149  int k = 0;
150  int i;
151 
152  if (rps != sps->st_rps && sps->nb_st_rps)
153  rps_predict = get_bits1(gb);
154 
155  if (rps_predict) {
156  const ShortTermRPS *rps_ridx;
157  int delta_rps;
158  unsigned abs_delta_rps;
159  uint8_t use_delta_flag = 0;
160  uint8_t delta_rps_sign;
161 
162  if (is_slice_header) {
163  unsigned int delta_idx = get_ue_golomb_long(gb) + 1;
164  if (delta_idx > sps->nb_st_rps) {
165  av_log(avctx, AV_LOG_ERROR,
166  "Invalid value of delta_idx in slice header RPS: %d > %d.\n",
167  delta_idx, sps->nb_st_rps);
168  return AVERROR_INVALIDDATA;
169  }
170  rps_ridx = &sps->st_rps[sps->nb_st_rps - delta_idx];
171  rps->rps_idx_num_delta_pocs = rps_ridx->num_delta_pocs;
172  } else
173  rps_ridx = &sps->st_rps[rps - sps->st_rps - 1];
174 
175  delta_rps_sign = get_bits1(gb);
176  abs_delta_rps = get_ue_golomb_long(gb) + 1;
177  if (abs_delta_rps < 1 || abs_delta_rps > 32768) {
178  av_log(avctx, AV_LOG_ERROR,
179  "Invalid value of abs_delta_rps: %d\n",
180  abs_delta_rps);
181  return AVERROR_INVALIDDATA;
182  }
183  delta_rps = (1 - (delta_rps_sign << 1)) * abs_delta_rps;
184  for (i = 0; i <= rps_ridx->num_delta_pocs; i++) {
185  int used = rps->used[k] = get_bits1(gb);
186 
187  if (!used)
188  use_delta_flag = get_bits1(gb);
189 
190  if (used || use_delta_flag) {
191  if (i < rps_ridx->num_delta_pocs)
192  delta_poc = delta_rps + rps_ridx->delta_poc[i];
193  else
194  delta_poc = delta_rps;
195  rps->delta_poc[k] = delta_poc;
196  if (delta_poc < 0)
197  k0++;
198  else
199  k1++;
200  k++;
201  }
202  }
203 
204  if (k >= FF_ARRAY_ELEMS(rps->used)) {
205  av_log(avctx, AV_LOG_ERROR,
206  "Invalid num_delta_pocs: %d\n", k);
207  return AVERROR_INVALIDDATA;
208  }
209 
210  rps->num_delta_pocs = k;
211  rps->num_negative_pics = k0;
212  // sort in increasing order (smallest first)
213  if (rps->num_delta_pocs != 0) {
214  int used, tmp;
215  for (i = 1; i < rps->num_delta_pocs; i++) {
216  delta_poc = rps->delta_poc[i];
217  used = rps->used[i];
218  for (k = i - 1; k >= 0; k--) {
219  tmp = rps->delta_poc[k];
220  if (delta_poc < tmp) {
221  rps->delta_poc[k + 1] = tmp;
222  rps->used[k + 1] = rps->used[k];
223  rps->delta_poc[k] = delta_poc;
224  rps->used[k] = used;
225  }
226  }
227  }
228  }
229  if ((rps->num_negative_pics >> 1) != 0) {
230  int used;
231  k = rps->num_negative_pics - 1;
232  // flip the negative values to largest first
233  for (i = 0; i < rps->num_negative_pics >> 1; i++) {
234  delta_poc = rps->delta_poc[i];
235  used = rps->used[i];
236  rps->delta_poc[i] = rps->delta_poc[k];
237  rps->used[i] = rps->used[k];
238  rps->delta_poc[k] = delta_poc;
239  rps->used[k] = used;
240  k--;
241  }
242  }
243  } else {
244  unsigned int prev, nb_positive_pics;
246  nb_positive_pics = get_ue_golomb_long(gb);
247 
248  if (rps->num_negative_pics >= HEVC_MAX_REFS ||
249  nb_positive_pics >= HEVC_MAX_REFS) {
250  av_log(avctx, AV_LOG_ERROR, "Too many refs in a short term RPS.\n");
251  return AVERROR_INVALIDDATA;
252  }
253 
254  rps->num_delta_pocs = rps->num_negative_pics + nb_positive_pics;
255  if (rps->num_delta_pocs) {
256  prev = 0;
257  for (i = 0; i < rps->num_negative_pics; i++) {
258  delta_poc = get_ue_golomb_long(gb) + 1;
259  if (delta_poc < 1 || delta_poc > 32768) {
260  av_log(avctx, AV_LOG_ERROR,
261  "Invalid value of delta_poc: %d\n",
262  delta_poc);
263  return AVERROR_INVALIDDATA;
264  }
265  prev -= delta_poc;
266  rps->delta_poc[i] = prev;
267  rps->used[i] = get_bits1(gb);
268  }
269  prev = 0;
270  for (i = 0; i < nb_positive_pics; i++) {
271  delta_poc = get_ue_golomb_long(gb) + 1;
272  if (delta_poc < 1 || delta_poc > 32768) {
273  av_log(avctx, AV_LOG_ERROR,
274  "Invalid value of delta_poc: %d\n",
275  delta_poc);
276  return AVERROR_INVALIDDATA;
277  }
278  prev += delta_poc;
279  rps->delta_poc[rps->num_negative_pics + i] = prev;
280  rps->used[rps->num_negative_pics + i] = get_bits1(gb);
281  }
282  }
283  }
284  return 0;
285 }
286 
287 
289  PTLCommon *ptl)
290 {
291  int i;
292 
293  if (get_bits_left(gb) < 2+1+5 + 32 + 4 + 43 + 1)
294  return -1;
295 
296  ptl->profile_space = get_bits(gb, 2);
297  ptl->tier_flag = get_bits1(gb);
298  ptl->profile_idc = get_bits(gb, 5);
299  if (ptl->profile_idc == FF_PROFILE_HEVC_MAIN)
300  av_log(avctx, AV_LOG_DEBUG, "Main profile bitstream\n");
301  else if (ptl->profile_idc == FF_PROFILE_HEVC_MAIN_10)
302  av_log(avctx, AV_LOG_DEBUG, "Main 10 profile bitstream\n");
303  else if (ptl->profile_idc == FF_PROFILE_HEVC_MAIN_STILL_PICTURE)
304  av_log(avctx, AV_LOG_DEBUG, "Main Still Picture profile bitstream\n");
305  else if (ptl->profile_idc == FF_PROFILE_HEVC_REXT)
306  av_log(avctx, AV_LOG_DEBUG, "Range Extension profile bitstream\n");
307  else
308  av_log(avctx, AV_LOG_WARNING, "Unknown HEVC profile: %d\n", ptl->profile_idc);
309 
310  for (i = 0; i < 32; i++) {
311  ptl->profile_compatibility_flag[i] = get_bits1(gb);
312 
313  if (ptl->profile_idc == 0 && i > 0 && ptl->profile_compatibility_flag[i])
314  ptl->profile_idc = i;
315  }
316  ptl->progressive_source_flag = get_bits1(gb);
317  ptl->interlaced_source_flag = get_bits1(gb);
318  ptl->non_packed_constraint_flag = get_bits1(gb);
319  ptl->frame_only_constraint_flag = get_bits1(gb);
320 
321 #define check_profile_idc(idc) \
322  ptl->profile_idc == idc || ptl->profile_compatibility_flag[idc]
323 
326  check_profile_idc(10)) {
327 
328  ptl->max_12bit_constraint_flag = get_bits1(gb);
329  ptl->max_10bit_constraint_flag = get_bits1(gb);
330  ptl->max_8bit_constraint_flag = get_bits1(gb);
331  ptl->max_422chroma_constraint_flag = get_bits1(gb);
332  ptl->max_420chroma_constraint_flag = get_bits1(gb);
333  ptl->max_monochrome_constraint_flag = get_bits1(gb);
334  ptl->intra_constraint_flag = get_bits1(gb);
335  ptl->one_picture_only_constraint_flag = get_bits1(gb);
336  ptl->lower_bit_rate_constraint_flag = get_bits1(gb);
337 
339  ptl->max_14bit_constraint_flag = get_bits1(gb);
340  skip_bits_long(gb, 33); // XXX_reserved_zero_33bits[0..32]
341  } else {
342  skip_bits_long(gb, 34); // XXX_reserved_zero_34bits[0..33]
343  }
344  } else if (check_profile_idc(2)) {
345  skip_bits(gb, 7);
346  ptl->one_picture_only_constraint_flag = get_bits1(gb);
347  skip_bits_long(gb, 35); // XXX_reserved_zero_35bits[0..34]
348  } else {
349  skip_bits_long(gb, 43); // XXX_reserved_zero_43bits[0..42]
350  }
351 
354  ptl->inbld_flag = get_bits1(gb);
355  else
356  skip_bits1(gb);
357 #undef check_profile_idc
358 
359  return 0;
360 }
361 
362 static int parse_ptl(GetBitContext *gb, AVCodecContext *avctx,
363  PTL *ptl, int max_num_sub_layers)
364 {
365  int i;
366  if (decode_profile_tier_level(gb, avctx, &ptl->general_ptl) < 0 ||
367  get_bits_left(gb) < 8 + (8*2 * (max_num_sub_layers - 1 > 0))) {
368  av_log(avctx, AV_LOG_ERROR, "PTL information too short\n");
369  return -1;
370  }
371 
372  ptl->general_ptl.level_idc = get_bits(gb, 8);
373 
374  for (i = 0; i < max_num_sub_layers - 1; i++) {
377  }
378 
379  if (max_num_sub_layers - 1> 0)
380  for (i = max_num_sub_layers - 1; i < 8; i++)
381  skip_bits(gb, 2); // reserved_zero_2bits[i]
382  for (i = 0; i < max_num_sub_layers - 1; i++) {
384  decode_profile_tier_level(gb, avctx, &ptl->sub_layer_ptl[i]) < 0) {
385  av_log(avctx, AV_LOG_ERROR,
386  "PTL information for sublayer %i too short\n", i);
387  return -1;
388  }
390  if (get_bits_left(gb) < 8) {
391  av_log(avctx, AV_LOG_ERROR,
392  "Not enough data for sublayer %i level_idc\n", i);
393  return -1;
394  } else
395  ptl->sub_layer_ptl[i].level_idc = get_bits(gb, 8);
396  }
397  }
398 
399  return 0;
400 }
401 
402 static void decode_sublayer_hrd(GetBitContext *gb, unsigned int nb_cpb,
403  int subpic_params_present)
404 {
405  int i;
406 
407  for (i = 0; i < nb_cpb; i++) {
408  get_ue_golomb_long(gb); // bit_rate_value_minus1
409  get_ue_golomb_long(gb); // cpb_size_value_minus1
410 
411  if (subpic_params_present) {
412  get_ue_golomb_long(gb); // cpb_size_du_value_minus1
413  get_ue_golomb_long(gb); // bit_rate_du_value_minus1
414  }
415  skip_bits1(gb); // cbr_flag
416  }
417 }
418 
419 static int decode_hrd(GetBitContext *gb, int common_inf_present,
420  int max_sublayers)
421 {
422  int nal_params_present = 0, vcl_params_present = 0;
423  int subpic_params_present = 0;
424  int i;
425 
426  if (common_inf_present) {
427  nal_params_present = get_bits1(gb);
428  vcl_params_present = get_bits1(gb);
429 
430  if (nal_params_present || vcl_params_present) {
431  subpic_params_present = get_bits1(gb);
432 
433  if (subpic_params_present) {
434  skip_bits(gb, 8); // tick_divisor_minus2
435  skip_bits(gb, 5); // du_cpb_removal_delay_increment_length_minus1
436  skip_bits(gb, 1); // sub_pic_cpb_params_in_pic_timing_sei_flag
437  skip_bits(gb, 5); // dpb_output_delay_du_length_minus1
438  }
439 
440  skip_bits(gb, 4); // bit_rate_scale
441  skip_bits(gb, 4); // cpb_size_scale
442 
443  if (subpic_params_present)
444  skip_bits(gb, 4); // cpb_size_du_scale
445 
446  skip_bits(gb, 5); // initial_cpb_removal_delay_length_minus1
447  skip_bits(gb, 5); // au_cpb_removal_delay_length_minus1
448  skip_bits(gb, 5); // dpb_output_delay_length_minus1
449  }
450  }
451 
452  for (i = 0; i < max_sublayers; i++) {
453  int low_delay = 0;
454  unsigned int nb_cpb = 1;
455  int fixed_rate = get_bits1(gb);
456 
457  if (!fixed_rate)
458  fixed_rate = get_bits1(gb);
459 
460  if (fixed_rate)
461  get_ue_golomb_long(gb); // elemental_duration_in_tc_minus1
462  else
463  low_delay = get_bits1(gb);
464 
465  if (!low_delay) {
466  nb_cpb = get_ue_golomb_long(gb) + 1;
467  if (nb_cpb < 1 || nb_cpb > 32) {
468  av_log(NULL, AV_LOG_ERROR, "nb_cpb %d invalid\n", nb_cpb);
469  return AVERROR_INVALIDDATA;
470  }
471  }
472 
473  if (nal_params_present)
474  decode_sublayer_hrd(gb, nb_cpb, subpic_params_present);
475  if (vcl_params_present)
476  decode_sublayer_hrd(gb, nb_cpb, subpic_params_present);
477  }
478  return 0;
479 }
480 
482  HEVCParamSets *ps)
483 {
484  int i,j;
485  int vps_id = 0;
486  ptrdiff_t nal_size;
487  HEVCVPS *vps;
488  AVBufferRef *vps_buf = av_buffer_allocz(sizeof(*vps));
489 
490  if (!vps_buf)
491  return AVERROR(ENOMEM);
492  vps = (HEVCVPS*)vps_buf->data;
493 
494  av_log(avctx, AV_LOG_DEBUG, "Decoding VPS\n");
495 
496  nal_size = gb->buffer_end - gb->buffer;
497  if (nal_size > sizeof(vps->data)) {
498  av_log(avctx, AV_LOG_WARNING, "Truncating likely oversized VPS "
499  "(%"PTRDIFF_SPECIFIER" > %"SIZE_SPECIFIER")\n",
500  nal_size, sizeof(vps->data));
501  vps->data_size = sizeof(vps->data);
502  } else {
503  vps->data_size = nal_size;
504  }
505  memcpy(vps->data, gb->buffer, vps->data_size);
506 
507  vps_id = get_bits(gb, 4);
508 
509  if (get_bits(gb, 2) != 3) { // vps_reserved_three_2bits
510  av_log(avctx, AV_LOG_ERROR, "vps_reserved_three_2bits is not three\n");
511  goto err;
512  }
513 
514  vps->vps_max_layers = get_bits(gb, 6) + 1;
515  vps->vps_max_sub_layers = get_bits(gb, 3) + 1;
516  vps->vps_temporal_id_nesting_flag = get_bits1(gb);
517 
518  if (get_bits(gb, 16) != 0xffff) { // vps_reserved_ffff_16bits
519  av_log(avctx, AV_LOG_ERROR, "vps_reserved_ffff_16bits is not 0xffff\n");
520  goto err;
521  }
522 
523  if (vps->vps_max_sub_layers > HEVC_MAX_SUB_LAYERS) {
524  av_log(avctx, AV_LOG_ERROR, "vps_max_sub_layers out of range: %d\n",
525  vps->vps_max_sub_layers);
526  goto err;
527  }
528 
529  if (parse_ptl(gb, avctx, &vps->ptl, vps->vps_max_sub_layers) < 0)
530  goto err;
531 
532  vps->vps_sub_layer_ordering_info_present_flag = get_bits1(gb);
533 
534  i = vps->vps_sub_layer_ordering_info_present_flag ? 0 : vps->vps_max_sub_layers - 1;
535  for (; i < vps->vps_max_sub_layers; i++) {
536  vps->vps_max_dec_pic_buffering[i] = get_ue_golomb_long(gb) + 1;
537  vps->vps_num_reorder_pics[i] = get_ue_golomb_long(gb);
538  vps->vps_max_latency_increase[i] = get_ue_golomb_long(gb) - 1;
539 
540  if (vps->vps_max_dec_pic_buffering[i] > HEVC_MAX_DPB_SIZE || !vps->vps_max_dec_pic_buffering[i]) {
541  av_log(avctx, AV_LOG_ERROR, "vps_max_dec_pic_buffering_minus1 out of range: %d\n",
542  vps->vps_max_dec_pic_buffering[i] - 1);
543  goto err;
544  }
545  if (vps->vps_num_reorder_pics[i] > vps->vps_max_dec_pic_buffering[i] - 1) {
546  av_log(avctx, AV_LOG_WARNING, "vps_max_num_reorder_pics out of range: %d\n",
547  vps->vps_num_reorder_pics[i]);
548  if (avctx->err_recognition & AV_EF_EXPLODE)
549  goto err;
550  }
551  }
552 
553  vps->vps_max_layer_id = get_bits(gb, 6);
554  vps->vps_num_layer_sets = get_ue_golomb_long(gb) + 1;
555  if (vps->vps_num_layer_sets < 1 || vps->vps_num_layer_sets > 1024 ||
556  (vps->vps_num_layer_sets - 1LL) * (vps->vps_max_layer_id + 1LL) > get_bits_left(gb)) {
557  av_log(avctx, AV_LOG_ERROR, "too many layer_id_included_flags\n");
558  goto err;
559  }
560 
561  for (i = 1; i < vps->vps_num_layer_sets; i++)
562  for (j = 0; j <= vps->vps_max_layer_id; j++)
563  skip_bits(gb, 1); // layer_id_included_flag[i][j]
564 
565  vps->vps_timing_info_present_flag = get_bits1(gb);
566  if (vps->vps_timing_info_present_flag) {
567  vps->vps_num_units_in_tick = get_bits_long(gb, 32);
568  vps->vps_time_scale = get_bits_long(gb, 32);
569  vps->vps_poc_proportional_to_timing_flag = get_bits1(gb);
570  if (vps->vps_poc_proportional_to_timing_flag)
571  vps->vps_num_ticks_poc_diff_one = get_ue_golomb_long(gb) + 1;
572  vps->vps_num_hrd_parameters = get_ue_golomb_long(gb);
573  if (vps->vps_num_hrd_parameters > (unsigned)vps->vps_num_layer_sets) {
574  av_log(avctx, AV_LOG_ERROR,
575  "vps_num_hrd_parameters %d is invalid\n", vps->vps_num_hrd_parameters);
576  goto err;
577  }
578  for (i = 0; i < vps->vps_num_hrd_parameters; i++) {
579  int common_inf_present = 1;
580 
581  get_ue_golomb_long(gb); // hrd_layer_set_idx
582  if (i)
583  common_inf_present = get_bits1(gb);
584  decode_hrd(gb, common_inf_present, vps->vps_max_sub_layers);
585  }
586  }
587  get_bits1(gb); /* vps_extension_flag */
588 
589  if (get_bits_left(gb) < 0) {
590  av_log(avctx, AV_LOG_ERROR,
591  "Overread VPS by %d bits\n", -get_bits_left(gb));
592  if (ps->vps_list[vps_id])
593  goto err;
594  }
595 
596  if (ps->vps_list[vps_id] &&
597  !memcmp(ps->vps_list[vps_id]->data, vps_buf->data, vps_buf->size)) {
598  av_buffer_unref(&vps_buf);
599  } else {
600  remove_vps(ps, vps_id);
601  ps->vps_list[vps_id] = vps_buf;
602  }
603 
604  return 0;
605 
606 err:
607  av_buffer_unref(&vps_buf);
608  return AVERROR_INVALIDDATA;
609 }
610 
611 static void decode_vui(GetBitContext *gb, AVCodecContext *avctx,
612  int apply_defdispwin, HEVCSPS *sps)
613 {
614  VUI backup_vui, *vui = &sps->vui;
615  GetBitContext backup;
616  int sar_present, alt = 0;
617 
618  av_log(avctx, AV_LOG_DEBUG, "Decoding VUI\n");
619 
620  sar_present = get_bits1(gb);
621  if (sar_present) {
622  uint8_t sar_idx = get_bits(gb, 8);
623  if (sar_idx < FF_ARRAY_ELEMS(vui_sar))
624  vui->sar = vui_sar[sar_idx];
625  else if (sar_idx == 255) {
626  vui->sar.num = get_bits(gb, 16);
627  vui->sar.den = get_bits(gb, 16);
628  } else
629  av_log(avctx, AV_LOG_WARNING,
630  "Unknown SAR index: %u.\n", sar_idx);
631  }
632 
636 
639  vui->video_format = get_bits(gb, 3);
640  vui->video_full_range_flag = get_bits1(gb);
642  if (vui->video_full_range_flag && sps->pix_fmt == AV_PIX_FMT_YUV420P)
643  sps->pix_fmt = AV_PIX_FMT_YUVJ420P;
645  vui->colour_primaries = get_bits(gb, 8);
646  vui->transfer_characteristic = get_bits(gb, 8);
647  vui->matrix_coeffs = get_bits(gb, 8);
648 
649  // Set invalid values to "unspecified"
656  if (vui->matrix_coeffs == AVCOL_SPC_RGB) {
657  switch (sps->pix_fmt) {
658  case AV_PIX_FMT_YUV444P:
659  sps->pix_fmt = AV_PIX_FMT_GBRP;
660  break;
662  sps->pix_fmt = AV_PIX_FMT_GBRP10;
663  break;
665  sps->pix_fmt = AV_PIX_FMT_GBRP12;
666  break;
667  }
668  }
669  }
670  }
671 
673  if (vui->chroma_loc_info_present_flag) {
676  }
677 
679  vui->field_seq_flag = get_bits1(gb);
681 
682  // Backup context in case an alternate header is detected
683  memcpy(&backup, gb, sizeof(backup));
684  memcpy(&backup_vui, vui, sizeof(backup_vui));
685  if (get_bits_left(gb) >= 68 && show_bits_long(gb, 21) == 0x100000) {
687  av_log(avctx, AV_LOG_WARNING, "Invalid default display window\n");
688  } else
690 
691  if (vui->default_display_window_flag) {
692  read_window(&vui->def_disp_win, gb, sps->chroma_format_idc, sps->width, sps->height);
693 
694  if (apply_defdispwin &&
696  av_log(avctx, AV_LOG_DEBUG,
697  "discarding vui default display window, "
698  "original values are l:%u r:%u t:%u b:%u\n",
703 
706  vui->def_disp_win.top_offset =
707  vui->def_disp_win.bottom_offset = 0;
708  }
709  }
710 
713 
714  if (vui->vui_timing_info_present_flag) {
715  if( get_bits_left(gb) < 66 && !alt) {
716  // The alternate syntax seem to have timing info located
717  // at where def_disp_win is normally located
718  av_log(avctx, AV_LOG_WARNING,
719  "Strange VUI timing information, retrying...\n");
720  memcpy(vui, &backup_vui, sizeof(backup_vui));
721  memcpy(gb, &backup, sizeof(backup));
722  alt = 1;
723  goto timing_info;
724  }
725  vui->vui_num_units_in_tick = get_bits_long(gb, 32);
726  vui->vui_time_scale = get_bits_long(gb, 32);
727  if (alt) {
728  av_log(avctx, AV_LOG_INFO, "Retry got %"PRIu32"/%"PRIu32" fps\n",
730  }
736  decode_hrd(gb, 1, sps->max_sub_layers);
737  }
738 
740  if (vui->bitstream_restriction_flag) {
741  if (get_bits_left(gb) < 8 && !alt) {
742  av_log(avctx, AV_LOG_WARNING,
743  "Strange VUI bitstream restriction information, retrying"
744  " from timing information...\n");
745  memcpy(vui, &backup_vui, sizeof(backup_vui));
746  memcpy(gb, &backup, sizeof(backup));
747  alt = 1;
748  goto timing_info;
749  }
758  }
759 
760  if (get_bits_left(gb) < 1 && !alt) {
761  // XXX: Alternate syntax when sps_range_extension_flag != 0?
762  av_log(avctx, AV_LOG_WARNING,
763  "Overread in VUI, retrying from timing information...\n");
764  memcpy(vui, &backup_vui, sizeof(backup_vui));
765  memcpy(gb, &backup, sizeof(backup));
766  alt = 1;
767  goto timing_info;
768  }
769 }
770 
772 {
773  int matrixId;
774 
775  for (matrixId = 0; matrixId < 6; matrixId++) {
776  // 4x4 default is 16
777  memset(sl->sl[0][matrixId], 16, 16);
778  sl->sl_dc[0][matrixId] = 16; // default for 16x16
779  sl->sl_dc[1][matrixId] = 16; // default for 32x32
780  }
781  memcpy(sl->sl[1][0], default_scaling_list_intra, 64);
782  memcpy(sl->sl[1][1], default_scaling_list_intra, 64);
783  memcpy(sl->sl[1][2], default_scaling_list_intra, 64);
784  memcpy(sl->sl[1][3], default_scaling_list_inter, 64);
785  memcpy(sl->sl[1][4], default_scaling_list_inter, 64);
786  memcpy(sl->sl[1][5], default_scaling_list_inter, 64);
787  memcpy(sl->sl[2][0], default_scaling_list_intra, 64);
788  memcpy(sl->sl[2][1], default_scaling_list_intra, 64);
789  memcpy(sl->sl[2][2], default_scaling_list_intra, 64);
790  memcpy(sl->sl[2][3], default_scaling_list_inter, 64);
791  memcpy(sl->sl[2][4], default_scaling_list_inter, 64);
792  memcpy(sl->sl[2][5], default_scaling_list_inter, 64);
793  memcpy(sl->sl[3][0], default_scaling_list_intra, 64);
794  memcpy(sl->sl[3][1], default_scaling_list_intra, 64);
795  memcpy(sl->sl[3][2], default_scaling_list_intra, 64);
796  memcpy(sl->sl[3][3], default_scaling_list_inter, 64);
797  memcpy(sl->sl[3][4], default_scaling_list_inter, 64);
798  memcpy(sl->sl[3][5], default_scaling_list_inter, 64);
799 }
800 
802 {
803  uint8_t scaling_list_pred_mode_flag;
804  uint8_t scaling_list_dc_coef[2][6];
805  int size_id, matrix_id, pos;
806  int i;
807 
808  for (size_id = 0; size_id < 4; size_id++)
809  for (matrix_id = 0; matrix_id < 6; matrix_id += ((size_id == 3) ? 3 : 1)) {
810  scaling_list_pred_mode_flag = get_bits1(gb);
811  if (!scaling_list_pred_mode_flag) {
812  unsigned int delta = get_ue_golomb_long(gb);
813  /* Only need to handle non-zero delta. Zero means default,
814  * which should already be in the arrays. */
815  if (delta) {
816  // Copy from previous array.
817  delta *= (size_id == 3) ? 3 : 1;
818  if (matrix_id < delta) {
819  av_log(avctx, AV_LOG_ERROR,
820  "Invalid delta in scaling list data: %d.\n", delta);
821  return AVERROR_INVALIDDATA;
822  }
823 
824  memcpy(sl->sl[size_id][matrix_id],
825  sl->sl[size_id][matrix_id - delta],
826  size_id > 0 ? 64 : 16);
827  if (size_id > 1)
828  sl->sl_dc[size_id - 2][matrix_id] = sl->sl_dc[size_id - 2][matrix_id - delta];
829  }
830  } else {
831  int next_coef, coef_num;
832  int32_t scaling_list_delta_coef;
833 
834  next_coef = 8;
835  coef_num = FFMIN(64, 1 << (4 + (size_id << 1)));
836  if (size_id > 1) {
837  int scaling_list_coeff_minus8 = get_se_golomb(gb);
838  if (scaling_list_coeff_minus8 < -7 ||
839  scaling_list_coeff_minus8 > 247)
840  return AVERROR_INVALIDDATA;
841  scaling_list_dc_coef[size_id - 2][matrix_id] = scaling_list_coeff_minus8 + 8;
842  next_coef = scaling_list_dc_coef[size_id - 2][matrix_id];
843  sl->sl_dc[size_id - 2][matrix_id] = next_coef;
844  }
845  for (i = 0; i < coef_num; i++) {
846  if (size_id == 0)
847  pos = 4 * ff_hevc_diag_scan4x4_y[i] +
849  else
850  pos = 8 * ff_hevc_diag_scan8x8_y[i] +
852 
853  scaling_list_delta_coef = get_se_golomb(gb);
854  next_coef = (next_coef + 256U + scaling_list_delta_coef) % 256;
855  sl->sl[size_id][matrix_id][pos] = next_coef;
856  }
857  }
858  }
859 
860  if (sps->chroma_format_idc == 3) {
861  for (i = 0; i < 64; i++) {
862  sl->sl[3][1][i] = sl->sl[2][1][i];
863  sl->sl[3][2][i] = sl->sl[2][2][i];
864  sl->sl[3][4][i] = sl->sl[2][4][i];
865  sl->sl[3][5][i] = sl->sl[2][5][i];
866  }
867  sl->sl_dc[1][1] = sl->sl_dc[0][1];
868  sl->sl_dc[1][2] = sl->sl_dc[0][2];
869  sl->sl_dc[1][4] = sl->sl_dc[0][4];
870  sl->sl_dc[1][5] = sl->sl_dc[0][5];
871  }
872 
873 
874  return 0;
875 }
876 
878 {
879  const AVPixFmtDescriptor *desc;
880  switch (sps->bit_depth) {
881  case 8:
882  if (sps->chroma_format_idc == 0) sps->pix_fmt = AV_PIX_FMT_GRAY8;
883  if (sps->chroma_format_idc == 1) sps->pix_fmt = AV_PIX_FMT_YUV420P;
884  if (sps->chroma_format_idc == 2) sps->pix_fmt = AV_PIX_FMT_YUV422P;
885  if (sps->chroma_format_idc == 3) sps->pix_fmt = AV_PIX_FMT_YUV444P;
886  break;
887  case 9:
888  if (sps->chroma_format_idc == 0) sps->pix_fmt = AV_PIX_FMT_GRAY9;
889  if (sps->chroma_format_idc == 1) sps->pix_fmt = AV_PIX_FMT_YUV420P9;
890  if (sps->chroma_format_idc == 2) sps->pix_fmt = AV_PIX_FMT_YUV422P9;
891  if (sps->chroma_format_idc == 3) sps->pix_fmt = AV_PIX_FMT_YUV444P9;
892  break;
893  case 10:
894  if (sps->chroma_format_idc == 0) sps->pix_fmt = AV_PIX_FMT_GRAY10;
895  if (sps->chroma_format_idc == 1) sps->pix_fmt = AV_PIX_FMT_YUV420P10;
896  if (sps->chroma_format_idc == 2) sps->pix_fmt = AV_PIX_FMT_YUV422P10;
897  if (sps->chroma_format_idc == 3) sps->pix_fmt = AV_PIX_FMT_YUV444P10;
898  break;
899  case 12:
900  if (sps->chroma_format_idc == 0) sps->pix_fmt = AV_PIX_FMT_GRAY12;
901  if (sps->chroma_format_idc == 1) sps->pix_fmt = AV_PIX_FMT_YUV420P12;
902  if (sps->chroma_format_idc == 2) sps->pix_fmt = AV_PIX_FMT_YUV422P12;
903  if (sps->chroma_format_idc == 3) sps->pix_fmt = AV_PIX_FMT_YUV444P12;
904  break;
905  default:
906  av_log(avctx, AV_LOG_ERROR,
907  "The following bit-depths are currently specified: 8, 9, 10 and 12 bits, "
908  "chroma_format_idc is %d, depth is %d\n",
909  sps->chroma_format_idc, sps->bit_depth);
910  return AVERROR_INVALIDDATA;
911  }
912 
913  desc = av_pix_fmt_desc_get(sps->pix_fmt);
914  if (!desc)
915  return AVERROR(EINVAL);
916 
917  sps->hshift[0] = sps->vshift[0] = 0;
918  sps->hshift[2] = sps->hshift[1] = desc->log2_chroma_w;
919  sps->vshift[2] = sps->vshift[1] = desc->log2_chroma_h;
920 
921  sps->pixel_shift = sps->bit_depth > 8;
922 
923  return 0;
924 }
925 
926 int ff_hevc_parse_sps(HEVCSPS *sps, GetBitContext *gb, unsigned int *sps_id,
927  int apply_defdispwin, AVBufferRef **vps_list, AVCodecContext *avctx)
928 {
929  HEVCWindow *ow;
930  int ret = 0;
931  int log2_diff_max_min_transform_block_size;
932  int bit_depth_chroma, start, vui_present, sublayer_ordering_info;
933  int i;
934 
935  // Coded parameters
936 
937  sps->vps_id = get_bits(gb, 4);
938 
939  if (vps_list && !vps_list[sps->vps_id]) {
940  av_log(avctx, AV_LOG_ERROR, "VPS %d does not exist\n",
941  sps->vps_id);
942  return AVERROR_INVALIDDATA;
943  }
944 
945  sps->max_sub_layers = get_bits(gb, 3) + 1;
946  if (sps->max_sub_layers > HEVC_MAX_SUB_LAYERS) {
947  av_log(avctx, AV_LOG_ERROR, "sps_max_sub_layers out of range: %d\n",
948  sps->max_sub_layers);
949  return AVERROR_INVALIDDATA;
950  }
951 
952  sps->temporal_id_nesting_flag = get_bits(gb, 1);
953 
954  if ((ret = parse_ptl(gb, avctx, &sps->ptl, sps->max_sub_layers)) < 0)
955  return ret;
956 
957  *sps_id = get_ue_golomb_long(gb);
958  if (*sps_id >= HEVC_MAX_SPS_COUNT) {
959  av_log(avctx, AV_LOG_ERROR, "SPS id out of range: %d\n", *sps_id);
960  return AVERROR_INVALIDDATA;
961  }
962 
963  sps->chroma_format_idc = get_ue_golomb_long(gb);
964  if (sps->chroma_format_idc > 3U) {
965  av_log(avctx, AV_LOG_ERROR, "chroma_format_idc %d is invalid\n", sps->chroma_format_idc);
966  return AVERROR_INVALIDDATA;
967  }
968 
969  if (sps->chroma_format_idc == 3)
970  sps->separate_colour_plane_flag = get_bits1(gb);
971 
972  if (sps->separate_colour_plane_flag)
973  sps->chroma_format_idc = 0;
974 
975  sps->width = get_ue_golomb_long(gb);
976  sps->height = get_ue_golomb_long(gb);
977  if ((ret = av_image_check_size(sps->width,
978  sps->height, 0, avctx)) < 0)
979  return ret;
980 
981  if (get_bits1(gb)) { // pic_conformance_flag
982  ret = read_window(&sps->pic_conf_win, gb, sps->chroma_format_idc, sps->width, sps->height);
983  if (ret < 0)
984  return ret;
985 
986  if (avctx->flags2 & AV_CODEC_FLAG2_IGNORE_CROP) {
987  av_log(avctx, AV_LOG_DEBUG,
988  "discarding sps conformance window, "
989  "original values are l:%u r:%u t:%u b:%u\n",
990  sps->pic_conf_win.left_offset,
991  sps->pic_conf_win.right_offset,
992  sps->pic_conf_win.top_offset,
993  sps->pic_conf_win.bottom_offset);
994 
995  sps->pic_conf_win.left_offset =
996  sps->pic_conf_win.right_offset =
997  sps->pic_conf_win.top_offset =
998  sps->pic_conf_win.bottom_offset = 0;
999  }
1000  sps->output_window = sps->pic_conf_win;
1001  }
1002 
1003  sps->bit_depth = get_ue_golomb_long(gb) + 8;
1004  bit_depth_chroma = get_ue_golomb_long(gb) + 8;
1005  if (sps->chroma_format_idc && bit_depth_chroma != sps->bit_depth) {
1006  av_log(avctx, AV_LOG_ERROR,
1007  "Luma bit depth (%d) is different from chroma bit depth (%d), "
1008  "this is unsupported.\n",
1009  sps->bit_depth, bit_depth_chroma);
1010  return AVERROR_INVALIDDATA;
1011  }
1012  sps->bit_depth_chroma = bit_depth_chroma;
1013 
1014  ret = map_pixel_format(avctx, sps);
1015  if (ret < 0)
1016  return ret;
1017 
1018  sps->log2_max_poc_lsb = get_ue_golomb_long(gb) + 4;
1019  if (sps->log2_max_poc_lsb > 16) {
1020  av_log(avctx, AV_LOG_ERROR, "log2_max_pic_order_cnt_lsb_minus4 out range: %d\n",
1021  sps->log2_max_poc_lsb - 4);
1022  return AVERROR_INVALIDDATA;
1023  }
1024 
1025  sublayer_ordering_info = get_bits1(gb);
1026  start = sublayer_ordering_info ? 0 : sps->max_sub_layers - 1;
1027  for (i = start; i < sps->max_sub_layers; i++) {
1028  sps->temporal_layer[i].max_dec_pic_buffering = get_ue_golomb_long(gb) + 1;
1029  sps->temporal_layer[i].num_reorder_pics = get_ue_golomb_long(gb);
1030  sps->temporal_layer[i].max_latency_increase = get_ue_golomb_long(gb) - 1;
1031  if (sps->temporal_layer[i].max_dec_pic_buffering > (unsigned)HEVC_MAX_DPB_SIZE) {
1032  av_log(avctx, AV_LOG_ERROR, "sps_max_dec_pic_buffering_minus1 out of range: %d\n",
1033  sps->temporal_layer[i].max_dec_pic_buffering - 1U);
1034  return AVERROR_INVALIDDATA;
1035  }
1036  if (sps->temporal_layer[i].num_reorder_pics > sps->temporal_layer[i].max_dec_pic_buffering - 1) {
1037  av_log(avctx, AV_LOG_WARNING, "sps_max_num_reorder_pics out of range: %d\n",
1038  sps->temporal_layer[i].num_reorder_pics);
1039  if (avctx->err_recognition & AV_EF_EXPLODE ||
1040  sps->temporal_layer[i].num_reorder_pics > HEVC_MAX_DPB_SIZE - 1) {
1041  return AVERROR_INVALIDDATA;
1042  }
1043  sps->temporal_layer[i].max_dec_pic_buffering = sps->temporal_layer[i].num_reorder_pics + 1;
1044  }
1045  }
1046 
1047  if (!sublayer_ordering_info) {
1048  for (i = 0; i < start; i++) {
1049  sps->temporal_layer[i].max_dec_pic_buffering = sps->temporal_layer[start].max_dec_pic_buffering;
1050  sps->temporal_layer[i].num_reorder_pics = sps->temporal_layer[start].num_reorder_pics;
1051  sps->temporal_layer[i].max_latency_increase = sps->temporal_layer[start].max_latency_increase;
1052  }
1053  }
1054 
1055  sps->log2_min_cb_size = get_ue_golomb_long(gb) + 3;
1056  sps->log2_diff_max_min_coding_block_size = get_ue_golomb_long(gb);
1057  sps->log2_min_tb_size = get_ue_golomb_long(gb) + 2;
1058  log2_diff_max_min_transform_block_size = get_ue_golomb_long(gb);
1059  sps->log2_max_trafo_size = log2_diff_max_min_transform_block_size +
1060  sps->log2_min_tb_size;
1061 
1062  if (sps->log2_min_cb_size < 3 || sps->log2_min_cb_size > 30) {
1063  av_log(avctx, AV_LOG_ERROR, "Invalid value %d for log2_min_cb_size", sps->log2_min_cb_size);
1064  return AVERROR_INVALIDDATA;
1065  }
1066 
1067  if (sps->log2_diff_max_min_coding_block_size > 30) {
1068  av_log(avctx, AV_LOG_ERROR, "Invalid value %d for log2_diff_max_min_coding_block_size", sps->log2_diff_max_min_coding_block_size);
1069  return AVERROR_INVALIDDATA;
1070  }
1071 
1072  if (sps->log2_min_tb_size >= sps->log2_min_cb_size || sps->log2_min_tb_size < 2) {
1073  av_log(avctx, AV_LOG_ERROR, "Invalid value for log2_min_tb_size");
1074  return AVERROR_INVALIDDATA;
1075  }
1076 
1077  if (log2_diff_max_min_transform_block_size < 0 || log2_diff_max_min_transform_block_size > 30) {
1078  av_log(avctx, AV_LOG_ERROR, "Invalid value %d for log2_diff_max_min_transform_block_size", log2_diff_max_min_transform_block_size);
1079  return AVERROR_INVALIDDATA;
1080  }
1081 
1082  sps->max_transform_hierarchy_depth_inter = get_ue_golomb_long(gb);
1083  sps->max_transform_hierarchy_depth_intra = get_ue_golomb_long(gb);
1084 
1085  sps->scaling_list_enable_flag = get_bits1(gb);
1086  if (sps->scaling_list_enable_flag) {
1087  set_default_scaling_list_data(&sps->scaling_list);
1088 
1089  if (get_bits1(gb)) {
1090  ret = scaling_list_data(gb, avctx, &sps->scaling_list, sps);
1091  if (ret < 0)
1092  return ret;
1093  }
1094  }
1095 
1096  sps->amp_enabled_flag = get_bits1(gb);
1097  sps->sao_enabled = get_bits1(gb);
1098 
1099  sps->pcm_enabled_flag = get_bits1(gb);
1100  if (sps->pcm_enabled_flag) {
1101  sps->pcm.bit_depth = get_bits(gb, 4) + 1;
1102  sps->pcm.bit_depth_chroma = get_bits(gb, 4) + 1;
1103  sps->pcm.log2_min_pcm_cb_size = get_ue_golomb_long(gb) + 3;
1104  sps->pcm.log2_max_pcm_cb_size = sps->pcm.log2_min_pcm_cb_size +
1105  get_ue_golomb_long(gb);
1106  if (FFMAX(sps->pcm.bit_depth, sps->pcm.bit_depth_chroma) > sps->bit_depth) {
1107  av_log(avctx, AV_LOG_ERROR,
1108  "PCM bit depth (%d, %d) is greater than normal bit depth (%d)\n",
1109  sps->pcm.bit_depth, sps->pcm.bit_depth_chroma, sps->bit_depth);
1110  return AVERROR_INVALIDDATA;
1111  }
1112 
1113  sps->pcm.loop_filter_disable_flag = get_bits1(gb);
1114  }
1115 
1116  sps->nb_st_rps = get_ue_golomb_long(gb);
1117  if (sps->nb_st_rps > HEVC_MAX_SHORT_TERM_REF_PIC_SETS) {
1118  av_log(avctx, AV_LOG_ERROR, "Too many short term RPS: %d.\n",
1119  sps->nb_st_rps);
1120  return AVERROR_INVALIDDATA;
1121  }
1122  for (i = 0; i < sps->nb_st_rps; i++) {
1123  if ((ret = ff_hevc_decode_short_term_rps(gb, avctx, &sps->st_rps[i],
1124  sps, 0)) < 0)
1125  return ret;
1126  }
1127 
1128  sps->long_term_ref_pics_present_flag = get_bits1(gb);
1129  if (sps->long_term_ref_pics_present_flag) {
1130  sps->num_long_term_ref_pics_sps = get_ue_golomb_long(gb);
1131  if (sps->num_long_term_ref_pics_sps > HEVC_MAX_LONG_TERM_REF_PICS) {
1132  av_log(avctx, AV_LOG_ERROR, "Too many long term ref pics: %d.\n",
1133  sps->num_long_term_ref_pics_sps);
1134  return AVERROR_INVALIDDATA;
1135  }
1136  for (i = 0; i < sps->num_long_term_ref_pics_sps; i++) {
1137  sps->lt_ref_pic_poc_lsb_sps[i] = get_bits(gb, sps->log2_max_poc_lsb);
1138  sps->used_by_curr_pic_lt_sps_flag[i] = get_bits1(gb);
1139  }
1140  }
1141 
1142  sps->sps_temporal_mvp_enabled_flag = get_bits1(gb);
1143  sps->sps_strong_intra_smoothing_enable_flag = get_bits1(gb);
1144  sps->vui.sar = (AVRational){0, 1};
1145  vui_present = get_bits1(gb);
1146  if (vui_present)
1147  decode_vui(gb, avctx, apply_defdispwin, sps);
1148 
1149  if (get_bits1(gb)) { // sps_extension_flag
1150  sps->sps_range_extension_flag = get_bits1(gb);
1151  skip_bits(gb, 7); //sps_extension_7bits = get_bits(gb, 7);
1152  if (sps->sps_range_extension_flag) {
1153  sps->transform_skip_rotation_enabled_flag = get_bits1(gb);
1154  sps->transform_skip_context_enabled_flag = get_bits1(gb);
1155  sps->implicit_rdpcm_enabled_flag = get_bits1(gb);
1156 
1157  sps->explicit_rdpcm_enabled_flag = get_bits1(gb);
1158 
1159  sps->extended_precision_processing_flag = get_bits1(gb);
1160  if (sps->extended_precision_processing_flag)
1161  av_log(avctx, AV_LOG_WARNING,
1162  "extended_precision_processing_flag not yet implemented\n");
1163 
1164  sps->intra_smoothing_disabled_flag = get_bits1(gb);
1165  sps->high_precision_offsets_enabled_flag = get_bits1(gb);
1166  if (sps->high_precision_offsets_enabled_flag)
1167  av_log(avctx, AV_LOG_WARNING,
1168  "high_precision_offsets_enabled_flag not yet implemented\n");
1169 
1170  sps->persistent_rice_adaptation_enabled_flag = get_bits1(gb);
1171 
1172  sps->cabac_bypass_alignment_enabled_flag = get_bits1(gb);
1173  if (sps->cabac_bypass_alignment_enabled_flag)
1174  av_log(avctx, AV_LOG_WARNING,
1175  "cabac_bypass_alignment_enabled_flag not yet implemented\n");
1176  }
1177  }
1178  if (apply_defdispwin) {
1179  sps->output_window.left_offset += sps->vui.def_disp_win.left_offset;
1180  sps->output_window.right_offset += sps->vui.def_disp_win.right_offset;
1181  sps->output_window.top_offset += sps->vui.def_disp_win.top_offset;
1182  sps->output_window.bottom_offset += sps->vui.def_disp_win.bottom_offset;
1183  }
1184 
1185  ow = &sps->output_window;
1186  if (ow->left_offset >= INT_MAX - ow->right_offset ||
1187  ow->top_offset >= INT_MAX - ow->bottom_offset ||
1188  ow->left_offset + ow->right_offset >= sps->width ||
1189  ow->top_offset + ow->bottom_offset >= sps->height) {
1190  av_log(avctx, AV_LOG_WARNING, "Invalid cropping offsets: %u/%u/%u/%u\n",
1191  ow->left_offset, ow->right_offset, ow->top_offset, ow->bottom_offset);
1192  if (avctx->err_recognition & AV_EF_EXPLODE) {
1193  return AVERROR_INVALIDDATA;
1194  }
1195  av_log(avctx, AV_LOG_WARNING,
1196  "Displaying the whole video surface.\n");
1197  memset(ow, 0, sizeof(*ow));
1198  memset(&sps->pic_conf_win, 0, sizeof(sps->pic_conf_win));
1199  }
1200 
1201  // Inferred parameters
1202  sps->log2_ctb_size = sps->log2_min_cb_size +
1203  sps->log2_diff_max_min_coding_block_size;
1204  sps->log2_min_pu_size = sps->log2_min_cb_size - 1;
1205 
1206  if (sps->log2_ctb_size > HEVC_MAX_LOG2_CTB_SIZE) {
1207  av_log(avctx, AV_LOG_ERROR, "CTB size out of range: 2^%d\n", sps->log2_ctb_size);
1208  return AVERROR_INVALIDDATA;
1209  }
1210  if (sps->log2_ctb_size < 4) {
1211  av_log(avctx,
1212  AV_LOG_ERROR,
1213  "log2_ctb_size %d differs from the bounds of any known profile\n",
1214  sps->log2_ctb_size);
1215  avpriv_request_sample(avctx, "log2_ctb_size %d", sps->log2_ctb_size);
1216  return AVERROR_INVALIDDATA;
1217  }
1218 
1219  sps->ctb_width = (sps->width + (1 << sps->log2_ctb_size) - 1) >> sps->log2_ctb_size;
1220  sps->ctb_height = (sps->height + (1 << sps->log2_ctb_size) - 1) >> sps->log2_ctb_size;
1221  sps->ctb_size = sps->ctb_width * sps->ctb_height;
1222 
1223  sps->min_cb_width = sps->width >> sps->log2_min_cb_size;
1224  sps->min_cb_height = sps->height >> sps->log2_min_cb_size;
1225  sps->min_tb_width = sps->width >> sps->log2_min_tb_size;
1226  sps->min_tb_height = sps->height >> sps->log2_min_tb_size;
1227  sps->min_pu_width = sps->width >> sps->log2_min_pu_size;
1228  sps->min_pu_height = sps->height >> sps->log2_min_pu_size;
1229  sps->tb_mask = (1 << (sps->log2_ctb_size - sps->log2_min_tb_size)) - 1;
1230 
1231  sps->qp_bd_offset = 6 * (sps->bit_depth - 8);
1232 
1233  if (av_mod_uintp2(sps->width, sps->log2_min_cb_size) ||
1234  av_mod_uintp2(sps->height, sps->log2_min_cb_size)) {
1235  av_log(avctx, AV_LOG_ERROR, "Invalid coded frame dimensions.\n");
1236  return AVERROR_INVALIDDATA;
1237  }
1238 
1239  if (sps->max_transform_hierarchy_depth_inter > sps->log2_ctb_size - sps->log2_min_tb_size) {
1240  av_log(avctx, AV_LOG_ERROR, "max_transform_hierarchy_depth_inter out of range: %d\n",
1241  sps->max_transform_hierarchy_depth_inter);
1242  return AVERROR_INVALIDDATA;
1243  }
1244  if (sps->max_transform_hierarchy_depth_intra > sps->log2_ctb_size - sps->log2_min_tb_size) {
1245  av_log(avctx, AV_LOG_ERROR, "max_transform_hierarchy_depth_intra out of range: %d\n",
1246  sps->max_transform_hierarchy_depth_intra);
1247  return AVERROR_INVALIDDATA;
1248  }
1249  if (sps->log2_max_trafo_size > FFMIN(sps->log2_ctb_size, 5)) {
1250  av_log(avctx, AV_LOG_ERROR,
1251  "max transform block size out of range: %d\n",
1252  sps->log2_max_trafo_size);
1253  return AVERROR_INVALIDDATA;
1254  }
1255 
1256  if (get_bits_left(gb) < 0) {
1257  av_log(avctx, AV_LOG_ERROR,
1258  "Overread SPS by %d bits\n", -get_bits_left(gb));
1259  return AVERROR_INVALIDDATA;
1260  }
1261 
1262  return 0;
1263 }
1264 
1266  HEVCParamSets *ps, int apply_defdispwin)
1267 {
1268  HEVCSPS *sps;
1269  AVBufferRef *sps_buf = av_buffer_allocz(sizeof(*sps));
1270  unsigned int sps_id;
1271  int ret;
1272  ptrdiff_t nal_size;
1273 
1274  if (!sps_buf)
1275  return AVERROR(ENOMEM);
1276  sps = (HEVCSPS*)sps_buf->data;
1277 
1278  av_log(avctx, AV_LOG_DEBUG, "Decoding SPS\n");
1279 
1280  nal_size = gb->buffer_end - gb->buffer;
1281  if (nal_size > sizeof(sps->data)) {
1282  av_log(avctx, AV_LOG_WARNING, "Truncating likely oversized SPS "
1283  "(%"PTRDIFF_SPECIFIER" > %"SIZE_SPECIFIER")\n",
1284  nal_size, sizeof(sps->data));
1285  sps->data_size = sizeof(sps->data);
1286  } else {
1287  sps->data_size = nal_size;
1288  }
1289  memcpy(sps->data, gb->buffer, sps->data_size);
1290 
1291  ret = ff_hevc_parse_sps(sps, gb, &sps_id,
1292  apply_defdispwin,
1293  ps->vps_list, avctx);
1294  if (ret < 0) {
1295  av_buffer_unref(&sps_buf);
1296  return ret;
1297  }
1298 
1299  if (avctx->debug & FF_DEBUG_BITSTREAM) {
1300  av_log(avctx, AV_LOG_DEBUG,
1301  "Parsed SPS: id %d; coded wxh: %dx%d; "
1302  "cropped wxh: %dx%d; pix_fmt: %s.\n",
1303  sps_id, sps->width, sps->height,
1304  sps->width - (sps->output_window.left_offset + sps->output_window.right_offset),
1305  sps->height - (sps->output_window.top_offset + sps->output_window.bottom_offset),
1306  av_get_pix_fmt_name(sps->pix_fmt));
1307  }
1308 
1309  /* check if this is a repeat of an already parsed SPS, then keep the
1310  * original one.
1311  * otherwise drop all PPSes that depend on it */
1312  if (ps->sps_list[sps_id] &&
1313  !memcmp(ps->sps_list[sps_id]->data, sps_buf->data, sps_buf->size)) {
1314  av_buffer_unref(&sps_buf);
1315  } else {
1316  remove_sps(ps, sps_id);
1317  ps->sps_list[sps_id] = sps_buf;
1318  }
1319 
1320  return 0;
1321 }
1322 
1323 static void hevc_pps_free(void *opaque, uint8_t *data)
1324 {
1325  HEVCPPS *pps = (HEVCPPS*)data;
1326 
1327  av_freep(&pps->column_width);
1328  av_freep(&pps->row_height);
1329  av_freep(&pps->col_bd);
1330  av_freep(&pps->row_bd);
1331  av_freep(&pps->col_idxX);
1332  av_freep(&pps->ctb_addr_rs_to_ts);
1333  av_freep(&pps->ctb_addr_ts_to_rs);
1334  av_freep(&pps->tile_pos_rs);
1335  av_freep(&pps->tile_id);
1336  av_freep(&pps->min_tb_addr_zs_tab);
1337 
1338  av_freep(&pps);
1339 }
1340 
1342  HEVCPPS *pps, HEVCSPS *sps) {
1343  int i;
1344 
1345  if (pps->transform_skip_enabled_flag) {
1346  pps->log2_max_transform_skip_block_size = get_ue_golomb_long(gb) + 2;
1347  }
1348  pps->cross_component_prediction_enabled_flag = get_bits1(gb);
1349  pps->chroma_qp_offset_list_enabled_flag = get_bits1(gb);
1350  if (pps->chroma_qp_offset_list_enabled_flag) {
1351  pps->diff_cu_chroma_qp_offset_depth = get_ue_golomb_long(gb);
1352  pps->chroma_qp_offset_list_len_minus1 = get_ue_golomb_long(gb);
1353  if (pps->chroma_qp_offset_list_len_minus1 > 5) {
1354  av_log(avctx, AV_LOG_ERROR,
1355  "chroma_qp_offset_list_len_minus1 shall be in the range [0, 5].\n");
1356  return AVERROR_INVALIDDATA;
1357  }
1358  for (i = 0; i <= pps->chroma_qp_offset_list_len_minus1; i++) {
1359  pps->cb_qp_offset_list[i] = get_se_golomb_long(gb);
1360  if (pps->cb_qp_offset_list[i]) {
1361  av_log(avctx, AV_LOG_WARNING,
1362  "cb_qp_offset_list not tested yet.\n");
1363  }
1364  pps->cr_qp_offset_list[i] = get_se_golomb_long(gb);
1365  if (pps->cr_qp_offset_list[i]) {
1366  av_log(avctx, AV_LOG_WARNING,
1367  "cb_qp_offset_list not tested yet.\n");
1368  }
1369  }
1370  }
1371  pps->log2_sao_offset_scale_luma = get_ue_golomb_long(gb);
1372  pps->log2_sao_offset_scale_chroma = get_ue_golomb_long(gb);
1373 
1374  if ( pps->log2_sao_offset_scale_luma > FFMAX(sps->bit_depth - 10, 0)
1375  || pps->log2_sao_offset_scale_chroma > FFMAX(sps->bit_depth_chroma - 10, 0)
1376  )
1377  return AVERROR_INVALIDDATA;
1378 
1379  return(0);
1380 }
1381 
1382 static inline int setup_pps(AVCodecContext *avctx, GetBitContext *gb,
1383  HEVCPPS *pps, HEVCSPS *sps)
1384 {
1385  int log2_diff;
1386  int pic_area_in_ctbs;
1387  int i, j, x, y, ctb_addr_rs, tile_id;
1388 
1389  // Inferred parameters
1390  pps->col_bd = av_malloc_array(pps->num_tile_columns + 1, sizeof(*pps->col_bd));
1391  pps->row_bd = av_malloc_array(pps->num_tile_rows + 1, sizeof(*pps->row_bd));
1392  pps->col_idxX = av_malloc_array(sps->ctb_width, sizeof(*pps->col_idxX));
1393  if (!pps->col_bd || !pps->row_bd || !pps->col_idxX)
1394  return AVERROR(ENOMEM);
1395 
1396  if (pps->uniform_spacing_flag) {
1397  if (!pps->column_width) {
1398  pps->column_width = av_malloc_array(pps->num_tile_columns, sizeof(*pps->column_width));
1399  pps->row_height = av_malloc_array(pps->num_tile_rows, sizeof(*pps->row_height));
1400  }
1401  if (!pps->column_width || !pps->row_height)
1402  return AVERROR(ENOMEM);
1403 
1404  for (i = 0; i < pps->num_tile_columns; i++) {
1405  pps->column_width[i] = ((i + 1) * sps->ctb_width) / pps->num_tile_columns -
1406  (i * sps->ctb_width) / pps->num_tile_columns;
1407  }
1408 
1409  for (i = 0; i < pps->num_tile_rows; i++) {
1410  pps->row_height[i] = ((i + 1) * sps->ctb_height) / pps->num_tile_rows -
1411  (i * sps->ctb_height) / pps->num_tile_rows;
1412  }
1413  }
1414 
1415  pps->col_bd[0] = 0;
1416  for (i = 0; i < pps->num_tile_columns; i++)
1417  pps->col_bd[i + 1] = pps->col_bd[i] + pps->column_width[i];
1418 
1419  pps->row_bd[0] = 0;
1420  for (i = 0; i < pps->num_tile_rows; i++)
1421  pps->row_bd[i + 1] = pps->row_bd[i] + pps->row_height[i];
1422 
1423  for (i = 0, j = 0; i < sps->ctb_width; i++) {
1424  if (i > pps->col_bd[j])
1425  j++;
1426  pps->col_idxX[i] = j;
1427  }
1428 
1429  /**
1430  * 6.5
1431  */
1432  pic_area_in_ctbs = sps->ctb_width * sps->ctb_height;
1433 
1434  pps->ctb_addr_rs_to_ts = av_malloc_array(pic_area_in_ctbs, sizeof(*pps->ctb_addr_rs_to_ts));
1435  pps->ctb_addr_ts_to_rs = av_malloc_array(pic_area_in_ctbs, sizeof(*pps->ctb_addr_ts_to_rs));
1436  pps->tile_id = av_malloc_array(pic_area_in_ctbs, sizeof(*pps->tile_id));
1437  pps->min_tb_addr_zs_tab = av_malloc_array((sps->tb_mask+2) * (sps->tb_mask+2), sizeof(*pps->min_tb_addr_zs_tab));
1438  if (!pps->ctb_addr_rs_to_ts || !pps->ctb_addr_ts_to_rs ||
1439  !pps->tile_id || !pps->min_tb_addr_zs_tab) {
1440  return AVERROR(ENOMEM);
1441  }
1442 
1443  for (ctb_addr_rs = 0; ctb_addr_rs < pic_area_in_ctbs; ctb_addr_rs++) {
1444  int tb_x = ctb_addr_rs % sps->ctb_width;
1445  int tb_y = ctb_addr_rs / sps->ctb_width;
1446  int tile_x = 0;
1447  int tile_y = 0;
1448  int val = 0;
1449 
1450  for (i = 0; i < pps->num_tile_columns; i++) {
1451  if (tb_x < pps->col_bd[i + 1]) {
1452  tile_x = i;
1453  break;
1454  }
1455  }
1456 
1457  for (i = 0; i < pps->num_tile_rows; i++) {
1458  if (tb_y < pps->row_bd[i + 1]) {
1459  tile_y = i;
1460  break;
1461  }
1462  }
1463 
1464  for (i = 0; i < tile_x; i++)
1465  val += pps->row_height[tile_y] * pps->column_width[i];
1466  for (i = 0; i < tile_y; i++)
1467  val += sps->ctb_width * pps->row_height[i];
1468 
1469  val += (tb_y - pps->row_bd[tile_y]) * pps->column_width[tile_x] +
1470  tb_x - pps->col_bd[tile_x];
1471 
1472  pps->ctb_addr_rs_to_ts[ctb_addr_rs] = val;
1473  pps->ctb_addr_ts_to_rs[val] = ctb_addr_rs;
1474  }
1475 
1476  for (j = 0, tile_id = 0; j < pps->num_tile_rows; j++)
1477  for (i = 0; i < pps->num_tile_columns; i++, tile_id++)
1478  for (y = pps->row_bd[j]; y < pps->row_bd[j + 1]; y++)
1479  for (x = pps->col_bd[i]; x < pps->col_bd[i + 1]; x++)
1480  pps->tile_id[pps->ctb_addr_rs_to_ts[y * sps->ctb_width + x]] = tile_id;
1481 
1482  pps->tile_pos_rs = av_malloc_array(tile_id, sizeof(*pps->tile_pos_rs));
1483  if (!pps->tile_pos_rs)
1484  return AVERROR(ENOMEM);
1485 
1486  for (j = 0; j < pps->num_tile_rows; j++)
1487  for (i = 0; i < pps->num_tile_columns; i++)
1488  pps->tile_pos_rs[j * pps->num_tile_columns + i] =
1489  pps->row_bd[j] * sps->ctb_width + pps->col_bd[i];
1490 
1491  log2_diff = sps->log2_ctb_size - sps->log2_min_tb_size;
1492  pps->min_tb_addr_zs = &pps->min_tb_addr_zs_tab[1*(sps->tb_mask+2)+1];
1493  for (y = 0; y < sps->tb_mask+2; y++) {
1494  pps->min_tb_addr_zs_tab[y*(sps->tb_mask+2)] = -1;
1495  pps->min_tb_addr_zs_tab[y] = -1;
1496  }
1497  for (y = 0; y < sps->tb_mask+1; y++) {
1498  for (x = 0; x < sps->tb_mask+1; x++) {
1499  int tb_x = x >> log2_diff;
1500  int tb_y = y >> log2_diff;
1501  int rs = sps->ctb_width * tb_y + tb_x;
1502  int val = pps->ctb_addr_rs_to_ts[rs] << (log2_diff * 2);
1503  for (i = 0; i < log2_diff; i++) {
1504  int m = 1 << i;
1505  val += (m & x ? m * m : 0) + (m & y ? 2 * m * m : 0);
1506  }
1507  pps->min_tb_addr_zs[y * (sps->tb_mask+2) + x] = val;
1508  }
1509  }
1510 
1511  return 0;
1512 }
1513 
1515  HEVCParamSets *ps)
1516 {
1517  HEVCSPS *sps = NULL;
1518  int i, ret = 0;
1519  unsigned int pps_id = 0;
1520  ptrdiff_t nal_size;
1521  unsigned log2_parallel_merge_level_minus2;
1522 
1523  AVBufferRef *pps_buf;
1524  HEVCPPS *pps = av_mallocz(sizeof(*pps));
1525 
1526  if (!pps)
1527  return AVERROR(ENOMEM);
1528 
1529  pps_buf = av_buffer_create((uint8_t *)pps, sizeof(*pps),
1530  hevc_pps_free, NULL, 0);
1531  if (!pps_buf) {
1532  av_freep(&pps);
1533  return AVERROR(ENOMEM);
1534  }
1535 
1536  av_log(avctx, AV_LOG_DEBUG, "Decoding PPS\n");
1537 
1538  nal_size = gb->buffer_end - gb->buffer;
1539  if (nal_size > sizeof(pps->data)) {
1540  av_log(avctx, AV_LOG_WARNING, "Truncating likely oversized PPS "
1541  "(%"PTRDIFF_SPECIFIER" > %"SIZE_SPECIFIER")\n",
1542  nal_size, sizeof(pps->data));
1543  pps->data_size = sizeof(pps->data);
1544  } else {
1545  pps->data_size = nal_size;
1546  }
1547  memcpy(pps->data, gb->buffer, pps->data_size);
1548 
1549  // Default values
1550  pps->loop_filter_across_tiles_enabled_flag = 1;
1551  pps->num_tile_columns = 1;
1552  pps->num_tile_rows = 1;
1553  pps->uniform_spacing_flag = 1;
1554  pps->disable_dbf = 0;
1555  pps->beta_offset = 0;
1556  pps->tc_offset = 0;
1557  pps->log2_max_transform_skip_block_size = 2;
1558 
1559  // Coded parameters
1560  pps_id = get_ue_golomb_long(gb);
1561  if (pps_id >= HEVC_MAX_PPS_COUNT) {
1562  av_log(avctx, AV_LOG_ERROR, "PPS id out of range: %d\n", pps_id);
1563  ret = AVERROR_INVALIDDATA;
1564  goto err;
1565  }
1566  pps->sps_id = get_ue_golomb_long(gb);
1567  if (pps->sps_id >= HEVC_MAX_SPS_COUNT) {
1568  av_log(avctx, AV_LOG_ERROR, "SPS id out of range: %d\n", pps->sps_id);
1569  ret = AVERROR_INVALIDDATA;
1570  goto err;
1571  }
1572  if (!ps->sps_list[pps->sps_id]) {
1573  av_log(avctx, AV_LOG_ERROR, "SPS %u does not exist.\n", pps->sps_id);
1574  ret = AVERROR_INVALIDDATA;
1575  goto err;
1576  }
1577  sps = (HEVCSPS *)ps->sps_list[pps->sps_id]->data;
1578 
1579  pps->dependent_slice_segments_enabled_flag = get_bits1(gb);
1580  pps->output_flag_present_flag = get_bits1(gb);
1581  pps->num_extra_slice_header_bits = get_bits(gb, 3);
1582 
1583  pps->sign_data_hiding_flag = get_bits1(gb);
1584 
1585  pps->cabac_init_present_flag = get_bits1(gb);
1586 
1587  pps->num_ref_idx_l0_default_active = get_ue_golomb_long(gb) + 1;
1588  pps->num_ref_idx_l1_default_active = get_ue_golomb_long(gb) + 1;
1589 
1590  pps->pic_init_qp_minus26 = get_se_golomb(gb);
1591 
1592  pps->constrained_intra_pred_flag = get_bits1(gb);
1593  pps->transform_skip_enabled_flag = get_bits1(gb);
1594 
1595  pps->cu_qp_delta_enabled_flag = get_bits1(gb);
1596  pps->diff_cu_qp_delta_depth = 0;
1597  if (pps->cu_qp_delta_enabled_flag)
1598  pps->diff_cu_qp_delta_depth = get_ue_golomb_long(gb);
1599 
1600  if (pps->diff_cu_qp_delta_depth < 0 ||
1601  pps->diff_cu_qp_delta_depth > sps->log2_diff_max_min_coding_block_size) {
1602  av_log(avctx, AV_LOG_ERROR, "diff_cu_qp_delta_depth %d is invalid\n",
1603  pps->diff_cu_qp_delta_depth);
1604  ret = AVERROR_INVALIDDATA;
1605  goto err;
1606  }
1607 
1608  pps->cb_qp_offset = get_se_golomb(gb);
1609  if (pps->cb_qp_offset < -12 || pps->cb_qp_offset > 12) {
1610  av_log(avctx, AV_LOG_ERROR, "pps_cb_qp_offset out of range: %d\n",
1611  pps->cb_qp_offset);
1612  ret = AVERROR_INVALIDDATA;
1613  goto err;
1614  }
1615  pps->cr_qp_offset = get_se_golomb(gb);
1616  if (pps->cr_qp_offset < -12 || pps->cr_qp_offset > 12) {
1617  av_log(avctx, AV_LOG_ERROR, "pps_cr_qp_offset out of range: %d\n",
1618  pps->cr_qp_offset);
1619  ret = AVERROR_INVALIDDATA;
1620  goto err;
1621  }
1622  pps->pic_slice_level_chroma_qp_offsets_present_flag = get_bits1(gb);
1623 
1624  pps->weighted_pred_flag = get_bits1(gb);
1625  pps->weighted_bipred_flag = get_bits1(gb);
1626 
1627  pps->transquant_bypass_enable_flag = get_bits1(gb);
1628  pps->tiles_enabled_flag = get_bits1(gb);
1629  pps->entropy_coding_sync_enabled_flag = get_bits1(gb);
1630 
1631  if (pps->tiles_enabled_flag) {
1632  int num_tile_columns_minus1 = get_ue_golomb(gb);
1633  int num_tile_rows_minus1 = get_ue_golomb(gb);
1634 
1635  if (num_tile_columns_minus1 < 0 ||
1636  num_tile_columns_minus1 >= sps->ctb_width) {
1637  av_log(avctx, AV_LOG_ERROR, "num_tile_columns_minus1 out of range: %d\n",
1638  num_tile_columns_minus1);
1639  ret = num_tile_columns_minus1 < 0 ? num_tile_columns_minus1 : AVERROR_INVALIDDATA;
1640  goto err;
1641  }
1642  if (num_tile_rows_minus1 < 0 ||
1643  num_tile_rows_minus1 >= sps->ctb_height) {
1644  av_log(avctx, AV_LOG_ERROR, "num_tile_rows_minus1 out of range: %d\n",
1645  num_tile_rows_minus1);
1646  ret = num_tile_rows_minus1 < 0 ? num_tile_rows_minus1 : AVERROR_INVALIDDATA;
1647  goto err;
1648  }
1649  pps->num_tile_columns = num_tile_columns_minus1 + 1;
1650  pps->num_tile_rows = num_tile_rows_minus1 + 1;
1651 
1652  pps->column_width = av_malloc_array(pps->num_tile_columns, sizeof(*pps->column_width));
1653  pps->row_height = av_malloc_array(pps->num_tile_rows, sizeof(*pps->row_height));
1654  if (!pps->column_width || !pps->row_height) {
1655  ret = AVERROR(ENOMEM);
1656  goto err;
1657  }
1658 
1659  pps->uniform_spacing_flag = get_bits1(gb);
1660  if (!pps->uniform_spacing_flag) {
1661  uint64_t sum = 0;
1662  for (i = 0; i < pps->num_tile_columns - 1; i++) {
1663  pps->column_width[i] = get_ue_golomb_long(gb) + 1;
1664  sum += pps->column_width[i];
1665  }
1666  if (sum >= sps->ctb_width) {
1667  av_log(avctx, AV_LOG_ERROR, "Invalid tile widths.\n");
1668  ret = AVERROR_INVALIDDATA;
1669  goto err;
1670  }
1671  pps->column_width[pps->num_tile_columns - 1] = sps->ctb_width - sum;
1672 
1673  sum = 0;
1674  for (i = 0; i < pps->num_tile_rows - 1; i++) {
1675  pps->row_height[i] = get_ue_golomb_long(gb) + 1;
1676  sum += pps->row_height[i];
1677  }
1678  if (sum >= sps->ctb_height) {
1679  av_log(avctx, AV_LOG_ERROR, "Invalid tile heights.\n");
1680  ret = AVERROR_INVALIDDATA;
1681  goto err;
1682  }
1683  pps->row_height[pps->num_tile_rows - 1] = sps->ctb_height - sum;
1684  }
1685  pps->loop_filter_across_tiles_enabled_flag = get_bits1(gb);
1686  }
1687 
1688  pps->seq_loop_filter_across_slices_enabled_flag = get_bits1(gb);
1689 
1690  pps->deblocking_filter_control_present_flag = get_bits1(gb);
1691  if (pps->deblocking_filter_control_present_flag) {
1692  pps->deblocking_filter_override_enabled_flag = get_bits1(gb);
1693  pps->disable_dbf = get_bits1(gb);
1694  if (!pps->disable_dbf) {
1695  int beta_offset_div2 = get_se_golomb(gb);
1696  int tc_offset_div2 = get_se_golomb(gb) ;
1697  if (beta_offset_div2 < -6 || beta_offset_div2 > 6) {
1698  av_log(avctx, AV_LOG_ERROR, "pps_beta_offset_div2 out of range: %d\n",
1699  beta_offset_div2);
1700  ret = AVERROR_INVALIDDATA;
1701  goto err;
1702  }
1703  if (tc_offset_div2 < -6 || tc_offset_div2 > 6) {
1704  av_log(avctx, AV_LOG_ERROR, "pps_tc_offset_div2 out of range: %d\n",
1705  tc_offset_div2);
1706  ret = AVERROR_INVALIDDATA;
1707  goto err;
1708  }
1709  pps->beta_offset = 2 * beta_offset_div2;
1710  pps->tc_offset = 2 * tc_offset_div2;
1711  }
1712  }
1713 
1714  pps->scaling_list_data_present_flag = get_bits1(gb);
1715  if (pps->scaling_list_data_present_flag) {
1716  set_default_scaling_list_data(&pps->scaling_list);
1717  ret = scaling_list_data(gb, avctx, &pps->scaling_list, sps);
1718  if (ret < 0)
1719  goto err;
1720  }
1721  pps->lists_modification_present_flag = get_bits1(gb);
1722  log2_parallel_merge_level_minus2 = get_ue_golomb_long(gb);
1723  if (log2_parallel_merge_level_minus2 > sps->log2_ctb_size) {
1724  av_log(avctx, AV_LOG_ERROR, "log2_parallel_merge_level_minus2 out of range: %d\n",
1725  log2_parallel_merge_level_minus2);
1726  ret = AVERROR_INVALIDDATA;
1727  goto err;
1728  }
1729  pps->log2_parallel_merge_level = log2_parallel_merge_level_minus2 + 2;
1730 
1731  pps->slice_header_extension_present_flag = get_bits1(gb);
1732 
1733  if (get_bits1(gb)) { // pps_extension_present_flag
1734  pps->pps_range_extensions_flag = get_bits1(gb);
1735  skip_bits(gb, 7); // pps_extension_7bits
1736  if (sps->ptl.general_ptl.profile_idc == FF_PROFILE_HEVC_REXT && pps->pps_range_extensions_flag) {
1737  if ((ret = pps_range_extensions(gb, avctx, pps, sps)) < 0)
1738  goto err;
1739  }
1740  }
1741 
1742  ret = setup_pps(avctx, gb, pps, sps);
1743  if (ret < 0)
1744  goto err;
1745 
1746  if (get_bits_left(gb) < 0) {
1747  av_log(avctx, AV_LOG_ERROR,
1748  "Overread PPS by %d bits\n", -get_bits_left(gb));
1749  goto err;
1750  }
1751 
1752  remove_pps(ps, pps_id);
1753  ps->pps_list[pps_id] = pps_buf;
1754 
1755  return 0;
1756 
1757 err:
1758  av_buffer_unref(&pps_buf);
1759  return ret;
1760 }
1761 
1763 {
1764  int i;
1765 
1766  for (i = 0; i < FF_ARRAY_ELEMS(ps->vps_list); i++)
1767  av_buffer_unref(&ps->vps_list[i]);
1768  for (i = 0; i < FF_ARRAY_ELEMS(ps->sps_list); i++)
1769  av_buffer_unref(&ps->sps_list[i]);
1770  for (i = 0; i < FF_ARRAY_ELEMS(ps->pps_list); i++)
1771  av_buffer_unref(&ps->pps_list[i]);
1772 
1773  ps->sps = NULL;
1774  ps->pps = NULL;
1775  ps->vps = NULL;
1776 }
1777 
1778 int ff_hevc_compute_poc(const HEVCSPS *sps, int pocTid0, int poc_lsb, int nal_unit_type)
1779 {
1780  int max_poc_lsb = 1 << sps->log2_max_poc_lsb;
1781  int prev_poc_lsb = pocTid0 % max_poc_lsb;
1782  int prev_poc_msb = pocTid0 - prev_poc_lsb;
1783  int poc_msb;
1784 
1785  if (poc_lsb < prev_poc_lsb && prev_poc_lsb - poc_lsb >= max_poc_lsb / 2)
1786  poc_msb = prev_poc_msb + max_poc_lsb;
1787  else if (poc_lsb > prev_poc_lsb && poc_lsb - prev_poc_lsb > max_poc_lsb / 2)
1788  poc_msb = prev_poc_msb - max_poc_lsb;
1789  else
1790  poc_msb = prev_poc_msb;
1791 
1792  // For BLA picture types, POCmsb is set to 0.
1793  if (nal_unit_type == HEVC_NAL_BLA_W_LP ||
1794  nal_unit_type == HEVC_NAL_BLA_W_RADL ||
1795  nal_unit_type == HEVC_NAL_BLA_N_LP)
1796  poc_msb = 0;
1797 
1798  return poc_msb + poc_lsb;
1799 }
static double val(void *priv, double ch)
Definition: aeval.c:76
uint8_t
int32_t
#define av_assert0(cond)
assert() equivalent, that is always enabled.
Definition: avassert.h:37
#define FF_PROFILE_HEVC_MAIN_STILL_PICTURE
Definition: avcodec.h:1952
#define AV_EF_EXPLODE
abort decoding on minor error detection
Definition: avcodec.h:1660
#define FF_PROFILE_HEVC_MAIN_10
Definition: avcodec.h:1951
#define FF_DEBUG_BITSTREAM
Definition: avcodec.h:1630
#define FF_PROFILE_HEVC_REXT
Definition: avcodec.h:1953
#define FF_PROFILE_HEVC_MAIN
Definition: avcodec.h:1950
static int FUNC() timing_info(CodedBitstreamContext *ctx, RWContext *rw, AV1RawTimingInfo *current)
static int FUNC() pps(CodedBitstreamContext *ctx, RWContext *rw, H264RawPPS *current)
static int FUNC() sps(CodedBitstreamContext *ctx, RWContext *rw, H264RawSPS *current)
static int FUNC() vps(CodedBitstreamContext *ctx, RWContext *rw, H265RawVPS *current)
#define s(width, name)
Definition: cbs_vp9.c:257
#define FFMIN(a, b)
Definition: common.h:105
#define av_mod_uintp2
Definition: common.h:149
#define FFMAX(a, b)
Definition: common.h:103
#define NULL
Definition: coverity.c:32
long long int64_t
Definition: coverity.c:34
enum AVCodecID id
static SDL_Window * window
Definition: ffplay.c:366
static unsigned int show_bits_long(GetBitContext *s, int n)
Show 0-32 bits.
Definition: get_bits.h:602
static unsigned int get_bits_long(GetBitContext *s, int n)
Read 0-32 bits.
Definition: get_bits.h:546
static int get_bits_left(GetBitContext *gb)
Definition: get_bits.h:849
static void skip_bits_long(GetBitContext *s, int n)
Skips the specified number of bits.
Definition: get_bits.h:291
static unsigned int get_bits1(GetBitContext *s)
Definition: get_bits.h:498
static void skip_bits(GetBitContext *s, int n)
Definition: get_bits.h:467
static void skip_bits1(GetBitContext *s)
Definition: get_bits.h:538
static unsigned int get_bits(GetBitContext *s, int n)
Read 1-25 bits.
Definition: get_bits.h:379
exp golomb vlc stuff
static int get_se_golomb(GetBitContext *gb)
read signed exp golomb code.
Definition: golomb.h:241
static int get_ue_golomb(GetBitContext *gb)
Read an unsigned Exp-Golomb code in the range 0 to 8190.
Definition: golomb.h:55
static int get_se_golomb_long(GetBitContext *gb)
Definition: golomb.h:296
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:106
#define AV_CODEC_FLAG2_IGNORE_CROP
Discard cropping information from SPS.
Definition: avcodec.h:371
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:125
AVBufferRef * av_buffer_allocz(buffer_size_t size)
Same as av_buffer_alloc(), except the returned buffer will be initialized to zero.
Definition: buffer.c:83
AVBufferRef * av_buffer_create(uint8_t *data, buffer_size_t size, void(*free)(void *opaque, uint8_t *data), void *opaque, int flags)
Create an AVBuffer from an existing array.
Definition: buffer.c:29
#define AVERROR_INVALIDDATA
Invalid data found when processing input.
Definition: error.h:59
#define AVERROR(e)
Definition: error.h:43
#define AV_LOG_DEBUG
Stuff which is only useful for libav* developers.
Definition: log.h:215
#define AV_LOG_WARNING
Something somehow does not look correct.
Definition: log.h:200
#define AV_LOG_INFO
Standard information.
Definition: log.h:205
#define AV_LOG_ERROR
Something went wrong and cannot losslessly be recovered.
Definition: log.h:194
void * av_mallocz(size_t size)
Allocate a memory block with alignment suitable for all memory accesses (including vectors if availab...
Definition: mem.c:237
int av_image_check_size(unsigned int w, unsigned int h, int log_offset, void *log_ctx)
Check if the given dimension of an image is valid, meaning that all bytes of the image can be address...
Definition: imgutils.c:317
for(j=16;j >0;--j)
const H265RawProfileTierLevel * ptl
Definition: h265_levels.c:170
const uint8_t ff_hevc_diag_scan8x8_x[64]
Definition: hevc_data.c:39
const uint8_t ff_hevc_diag_scan4x4_x[16]
Definition: hevc_data.c:25
const uint8_t ff_hevc_diag_scan8x8_y[64]
Definition: hevc_data.c:58
const uint8_t ff_hevc_diag_scan4x4_y[16]
Definition: hevc_data.c:32
int ff_hevc_decode_nal_pps(GetBitContext *gb, AVCodecContext *avctx, HEVCParamSets *ps)
Definition: hevc_ps.c:1514
static void remove_vps(HEVCParamSets *s, int id)
Definition: hevc_ps.c:128
void ff_hevc_ps_uninit(HEVCParamSets *ps)
Definition: hevc_ps.c:1762
static void remove_sps(HEVCParamSets *s, int id)
Definition: hevc_ps.c:111
static void decode_sublayer_hrd(GetBitContext *gb, unsigned int nb_cpb, int subpic_params_present)
Definition: hevc_ps.c:402
static const uint8_t default_scaling_list_intra[]
Definition: hevc_ps.c:31
static int parse_ptl(GetBitContext *gb, AVCodecContext *avctx, PTL *ptl, int max_num_sub_layers)
Definition: hevc_ps.c:362
static void set_default_scaling_list_data(ScalingList *sl)
Definition: hevc_ps.c:771
static int read_window(HEVCWindow *window, GetBitContext *gb, int chroma_format_idc, int w, int h)
Definition: hevc_ps.c:81
static const uint8_t hevc_sub_height_c[]
Definition: hevc_ps.c:77
static void remove_pps(HEVCParamSets *s, int id)
Definition: hevc_ps.c:104
static void decode_vui(GetBitContext *gb, AVCodecContext *avctx, int apply_defdispwin, HEVCSPS *sps)
Definition: hevc_ps.c:611
static const uint8_t hevc_sub_width_c[]
Definition: hevc_ps.c:73
static int map_pixel_format(AVCodecContext *avctx, HEVCSPS *sps)
Definition: hevc_ps.c:877
static const uint8_t default_scaling_list_inter[]
Definition: hevc_ps.c:42
int ff_hevc_decode_nal_vps(GetBitContext *gb, AVCodecContext *avctx, HEVCParamSets *ps)
Definition: hevc_ps.c:481
static int decode_profile_tier_level(GetBitContext *gb, AVCodecContext *avctx, PTLCommon *ptl)
Definition: hevc_ps.c:288
int ff_hevc_decode_short_term_rps(GetBitContext *gb, AVCodecContext *avctx, ShortTermRPS *rps, const HEVCSPS *sps, int is_slice_header)
Definition: hevc_ps.c:142
int ff_hevc_decode_nal_sps(GetBitContext *gb, AVCodecContext *avctx, HEVCParamSets *ps, int apply_defdispwin)
Definition: hevc_ps.c:1265
int ff_hevc_parse_sps(HEVCSPS *sps, GetBitContext *gb, unsigned int *sps_id, int apply_defdispwin, AVBufferRef **vps_list, AVCodecContext *avctx)
Parse the SPS from the bitstream into the provided HEVCSPS struct.
Definition: hevc_ps.c:926
#define check_profile_idc(idc)
static int decode_hrd(GetBitContext *gb, int common_inf_present, int max_sublayers)
Definition: hevc_ps.c:419
static int setup_pps(AVCodecContext *avctx, GetBitContext *gb, HEVCPPS *pps, HEVCSPS *sps)
Definition: hevc_ps.c:1382
static int pps_range_extensions(GetBitContext *gb, AVCodecContext *avctx, HEVCPPS *pps, HEVCSPS *sps)
Definition: hevc_ps.c:1341
static int scaling_list_data(GetBitContext *gb, AVCodecContext *avctx, ScalingList *sl, HEVCSPS *sps)
Definition: hevc_ps.c:801
int ff_hevc_compute_poc(const HEVCSPS *sps, int pocTid0, int poc_lsb, int nal_unit_type)
Compute POC of the current frame and return it.
Definition: hevc_ps.c:1778
static const AVRational vui_sar[]
Definition: hevc_ps.c:53
static void hevc_pps_free(void *opaque, uint8_t *data)
Definition: hevc_ps.c:1323
misc image utilities
int i
Definition: input.c:407
@ HEVC_NAL_BLA_W_LP
Definition: hevc.h:45
@ HEVC_NAL_BLA_N_LP
Definition: hevc.h:47
@ HEVC_NAL_BLA_W_RADL
Definition: hevc.h:46
@ HEVC_MAX_LOG2_CTB_SIZE
Definition: hevc.h:128
@ HEVC_MAX_LONG_TERM_REF_PICS
Definition: hevc.h:124
@ HEVC_MAX_SPS_COUNT
Definition: hevc.h:112
@ HEVC_MAX_PPS_COUNT
Definition: hevc.h:114
@ HEVC_MAX_REFS
Definition: hevc.h:119
@ HEVC_MAX_SUB_LAYERS
Definition: hevc.h:105
@ HEVC_MAX_SHORT_TERM_REF_PIC_SETS
Definition: hevc.h:122
@ HEVC_MAX_DPB_SIZE
Definition: hevc.h:117
#define SIZE_SPECIFIER
Definition: internal.h:193
#define PTRDIFF_SPECIFIER
Definition: internal.h:192
const char * desc
Definition: libsvtav1.c:79
uint8_t w
Definition: llviddspenc.c:39
const char data[16]
Definition: mxf.c:142
const char * av_color_transfer_name(enum AVColorTransferCharacteristic transfer)
Definition: pixdesc.c:2940
const char * av_color_space_name(enum AVColorSpace space)
Definition: pixdesc.c:2961
const char * av_color_primaries_name(enum AVColorPrimaries primaries)
Definition: pixdesc.c:2919
const char * av_get_pix_fmt_name(enum AVPixelFormat pix_fmt)
Return the short name for a pixel format, NULL in case pix_fmt is unknown.
Definition: pixdesc.c:2489
const AVPixFmtDescriptor * av_pix_fmt_desc_get(enum AVPixelFormat pix_fmt)
Definition: pixdesc.c:2573
#define AV_PIX_FMT_YUV444P12
Definition: pixfmt.h:406
#define AV_PIX_FMT_YUV444P9
Definition: pixfmt.h:398
#define AV_PIX_FMT_YUV420P10
Definition: pixfmt.h:399
#define AV_PIX_FMT_GRAY9
Definition: pixfmt.h:379
#define AV_PIX_FMT_YUV422P9
Definition: pixfmt.h:397
#define AV_PIX_FMT_YUV420P12
Definition: pixfmt.h:403
#define AV_PIX_FMT_YUV422P12
Definition: pixfmt.h:404
#define AV_PIX_FMT_GBRP10
Definition: pixfmt.h:415
#define AV_PIX_FMT_YUV422P10
Definition: pixfmt.h:400
#define AV_PIX_FMT_GRAY12
Definition: pixfmt.h:381
#define AV_PIX_FMT_GBRP12
Definition: pixfmt.h:416
#define AV_PIX_FMT_YUV420P9
Definition: pixfmt.h:396
@ AV_PIX_FMT_YUV420P
planar YUV 4:2:0, 12bpp, (1 Cr & Cb sample per 2x2 Y samples)
Definition: pixfmt.h:66
@ AV_PIX_FMT_YUV422P
planar YUV 4:2:2, 16bpp, (1 Cr & Cb sample per 2x1 Y samples)
Definition: pixfmt.h:70
@ AV_PIX_FMT_GRAY8
Y , 8bpp.
Definition: pixfmt.h:74
@ AV_PIX_FMT_YUV444P
planar YUV 4:4:4, 24bpp, (1 Cr & Cb sample per 1x1 Y samples)
Definition: pixfmt.h:71
@ AV_PIX_FMT_GBRP
planar GBR 4:4:4 24bpp
Definition: pixfmt.h:168
@ AV_PIX_FMT_YUVJ420P
planar YUV 4:2:0, 12bpp, full scale (JPEG), deprecated in favor of AV_PIX_FMT_YUV420P and setting col...
Definition: pixfmt.h:78
#define AV_PIX_FMT_GRAY10
Definition: pixfmt.h:380
@ AVCOL_PRI_UNSPECIFIED
Definition: pixfmt.h:461
@ AVCOL_TRC_UNSPECIFIED
Definition: pixfmt.h:486
#define AV_PIX_FMT_YUV444P10
Definition: pixfmt.h:402
@ AVCOL_SPC_RGB
order of coefficients is actually GBR, also IEC 61966-2-1 (sRGB)
Definition: pixfmt.h:513
@ AVCOL_SPC_UNSPECIFIED
Definition: pixfmt.h:515
#define FF_ARRAY_ELEMS(a)
unsigned int pos
Definition: spdifenc.c:412
A reference to a data buffer.
Definition: buffer.h:84
int size
Size of data in bytes.
Definition: buffer.h:97
uint8_t * data
The data buffer.
Definition: buffer.h:92
main external API structure.
Definition: avcodec.h:536
int flags2
AV_CODEC_FLAG2_*.
Definition: avcodec.h:623
int debug
debug
Definition: avcodec.h:1627
int err_recognition
Error recognition; may misdetect some more or less valid parts as errors.
Definition: avcodec.h:1649
Descriptor that unambiguously describes how the bits of a pixel are stored in the up to 4 data planes...
Definition: pixdesc.h:81
Rational number (pair of numerator and denominator).
Definition: rational.h:58
int num
Numerator.
Definition: rational.h:59
int den
Denominator.
Definition: rational.h:60
const uint8_t * buffer
Definition: get_bits.h:62
const uint8_t * buffer_end
Definition: get_bits.h:62
uint8_t sub_layer_profile_present_flag[HEVC_MAX_SUB_LAYERS]
Definition: cbs_h265.h:62
uint8_t sub_layer_level_present_flag[HEVC_MAX_SUB_LAYERS]
Definition: cbs_h265.h:63
const HEVCVPS * vps
Definition: hevc_ps.h:333
AVBufferRef * pps_list[HEVC_MAX_PPS_COUNT]
Definition: hevc_ps.h:330
const HEVCPPS * pps
Definition: hevc_ps.h:335
AVBufferRef * vps_list[HEVC_MAX_VPS_COUNT]
Definition: hevc_ps.h:328
AVBufferRef * sps_list[HEVC_MAX_SPS_COUNT]
Definition: hevc_ps.h:329
const HEVCSPS * sps
Definition: hevc_ps.h:334
unsigned int top_offset
Definition: hevc_ps.h:45
unsigned int right_offset
Definition: hevc_ps.h:44
unsigned int bottom_offset
Definition: hevc_ps.h:46
unsigned int left_offset
Definition: hevc_ps.h:43
Definition: hevc_ps.h:115
uint8_t sl_dc[2][6]
Definition: hevc_ps.h:150
uint8_t sl[4][6][64]
Definition: hevc_ps.h:149
unsigned int num_negative_pics
Definition: hevc_ps.h:35
uint8_t used[32]
Definition: hevc_ps.h:39
int num_delta_pocs
Definition: hevc_ps.h:36
int32_t delta_poc[32]
Definition: hevc_ps.h:38
int rps_idx_num_delta_pocs
Definition: hevc_ps.h:37
Definition: hevc_ps.h:49
uint8_t matrix_coeffs
Definition: hevc_ps.h:61
int vui_poc_proportional_to_timing_flag
Definition: hevc_ps.h:77
int vui_timing_info_present_flag
Definition: hevc_ps.h:74
int max_bits_per_min_cu_denom
Definition: hevc_ps.h:87
uint8_t colour_primaries
Definition: hevc_ps.h:59
int log2_max_mv_length_horizontal
Definition: hevc_ps.h:88
int tiles_fixed_structure_flag
Definition: hevc_ps.h:82
int colour_description_present_flag
Definition: hevc_ps.h:58
int motion_vectors_over_pic_boundaries_flag
Definition: hevc_ps.h:83
int log2_max_mv_length_vertical
Definition: hevc_ps.h:89
int bitstream_restriction_flag
Definition: hevc_ps.h:81
AVRational sar
Definition: hevc_ps.h:50
int frame_field_info_present_flag
Definition: hevc_ps.h:69
int field_seq_flag
Definition: hevc_ps.h:68
int max_bytes_per_pic_denom
Definition: hevc_ps.h:86
int vui_num_ticks_poc_diff_one_minus1
Definition: hevc_ps.h:78
int vui_hrd_parameters_present_flag
Definition: hevc_ps.h:79
int overscan_appropriate_flag
Definition: hevc_ps.h:53
int video_signal_type_present_flag
Definition: hevc_ps.h:55
uint32_t vui_time_scale
Definition: hevc_ps.h:76
int chroma_sample_loc_type_bottom_field
Definition: hevc_ps.h:65
int min_spatial_segmentation_idc
Definition: hevc_ps.h:85
int neutra_chroma_indication_flag
Definition: hevc_ps.h:66
HEVCWindow def_disp_win
Definition: hevc_ps.h:72
int default_display_window_flag
Definition: hevc_ps.h:71
int restricted_ref_pic_lists_flag
Definition: hevc_ps.h:84
int video_format
Definition: hevc_ps.h:56
int chroma_sample_loc_type_top_field
Definition: hevc_ps.h:64
int video_full_range_flag
Definition: hevc_ps.h:57
int overscan_info_present_flag
Definition: hevc_ps.h:52
uint32_t vui_num_units_in_tick
Definition: hevc_ps.h:75
uint8_t transfer_characteristic
Definition: hevc_ps.h:60
int chroma_loc_info_present_flag
Definition: hevc_ps.h:63
#define av_malloc_array(a, b)
#define avpriv_request_sample(...)
#define av_freep(p)
#define av_log(a,...)
static uint8_t tmp[11]
Definition: aes_ctr.c:27
float delta