/src/ffmpeg/libavcodec/hevc/ps.c
Line | Count | Source |
1 | | /* |
2 | | * HEVC Parameter Set decoding |
3 | | * |
4 | | * Copyright (C) 2012 - 2013 Guillaume Martres |
5 | | * Copyright (C) 2012 - 2013 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 "libavutil/mem.h" |
28 | | #include "libavutil/refstruct.h" |
29 | | |
30 | | #include "libavcodec/golomb.h" |
31 | | #include "libavcodec/h2645_vui.h" |
32 | | #include "data.h" |
33 | | #include "ps.h" |
34 | | #include "libavcodec/profiles.h" |
35 | | |
36 | | static const uint8_t default_scaling_list_intra[] = { |
37 | | 16, 16, 16, 16, 17, 18, 21, 24, |
38 | | 16, 16, 16, 16, 17, 19, 22, 25, |
39 | | 16, 16, 17, 18, 20, 22, 25, 29, |
40 | | 16, 16, 18, 21, 24, 27, 31, 36, |
41 | | 17, 17, 20, 24, 30, 35, 41, 47, |
42 | | 18, 19, 22, 27, 35, 44, 54, 65, |
43 | | 21, 22, 25, 31, 41, 54, 70, 88, |
44 | | 24, 25, 29, 36, 47, 65, 88, 115 |
45 | | }; |
46 | | |
47 | | static const uint8_t default_scaling_list_inter[] = { |
48 | | 16, 16, 16, 16, 17, 18, 20, 24, |
49 | | 16, 16, 16, 17, 18, 20, 24, 25, |
50 | | 16, 16, 17, 18, 20, 24, 25, 28, |
51 | | 16, 17, 18, 20, 24, 25, 28, 33, |
52 | | 17, 18, 20, 24, 25, 28, 33, 41, |
53 | | 18, 20, 24, 25, 28, 33, 41, 54, |
54 | | 20, 24, 25, 28, 33, 41, 54, 71, |
55 | | 24, 25, 28, 33, 41, 54, 71, 91 |
56 | | }; |
57 | | |
58 | | static const uint8_t hevc_sub_width_c[] = { |
59 | | 1, 2, 2, 1 |
60 | | }; |
61 | | |
62 | | static const uint8_t hevc_sub_height_c[] = { |
63 | | 1, 2, 1, 1 |
64 | | }; |
65 | | |
66 | | static int read_window(HEVCWindow *window, GetBitContext *gb, int chroma_format_idc, int w, int h) |
67 | 1.91M | { |
68 | 1.91M | int64_t vert_mult = hevc_sub_height_c[chroma_format_idc]; |
69 | 1.91M | int64_t horiz_mult = hevc_sub_width_c [chroma_format_idc]; |
70 | 1.91M | int64_t left = get_ue_golomb_long(gb) * horiz_mult; |
71 | 1.91M | int64_t right = get_ue_golomb_long(gb) * horiz_mult; |
72 | 1.91M | int64_t top = get_ue_golomb_long(gb) * vert_mult; |
73 | 1.91M | int64_t bottom = get_ue_golomb_long(gb) * vert_mult; |
74 | | |
75 | 1.91M | if (left < 0 || right < 0 || top < 0 || bottom < 0 || |
76 | 1.91M | w <= left + right || |
77 | 1.61M | h <= top + bottom) { |
78 | 359k | memset(window, 0, sizeof(*window)); |
79 | 359k | return AVERROR_INVALIDDATA; |
80 | 359k | } |
81 | | |
82 | 1.55M | window->left_offset = left; |
83 | 1.55M | window->right_offset = right; |
84 | 1.55M | window->top_offset = top; |
85 | 1.55M | window->bottom_offset = bottom; |
86 | 1.55M | return 0; |
87 | 1.91M | } |
88 | | |
89 | | static void remove_sps(HEVCParamSets *s, int id) |
90 | 1.48M | { |
91 | 1.48M | int i; |
92 | 1.48M | if (s->sps_list[id]) { |
93 | | /* drop all PPS that depend on this SPS */ |
94 | 82.3M | for (i = 0; i < FF_ARRAY_ELEMS(s->pps_list); i++) |
95 | 81.0M | if (s->pps_list[i] && s->pps_list[i]->sps_id == id) |
96 | 179k | av_refstruct_unref(&s->pps_list[i]); |
97 | | |
98 | 1.26M | av_refstruct_unref(&s->sps_list[id]); |
99 | 1.26M | } |
100 | 1.48M | } |
101 | | |
102 | | static void remove_vps(HEVCParamSets *s, int id) |
103 | 986k | { |
104 | 986k | int i; |
105 | 986k | if (s->vps_list[id]) { |
106 | 15.5M | for (i = 0; i < FF_ARRAY_ELEMS(s->sps_list); i++) |
107 | 14.6M | if (s->sps_list[i] && s->sps_list[i]->vps_id == id) |
108 | 179k | remove_sps(s, i); |
109 | 917k | av_refstruct_unref(&s->vps_list[id]); |
110 | 917k | } |
111 | 986k | } |
112 | | |
113 | | int ff_hevc_decode_short_term_rps(GetBitContext *gb, AVCodecContext *avctx, |
114 | | ShortTermRPS *rps, const HEVCSPS *sps, int is_slice_header) |
115 | 8.80M | { |
116 | 8.80M | int delta_poc; |
117 | 8.80M | int k0 = 0; |
118 | 8.80M | int k = 0; |
119 | 8.80M | int i; |
120 | | |
121 | 8.80M | rps->used = 0; |
122 | 8.80M | rps->rps_predict = 0; |
123 | | |
124 | 8.80M | if (rps != sps->st_rps && sps->nb_st_rps) |
125 | 7.09M | rps->rps_predict = get_bits1(gb); |
126 | | |
127 | 8.80M | if (rps->rps_predict) { |
128 | 5.54M | const ShortTermRPS *rps_ridx; |
129 | 5.54M | uint8_t used[32] = { 0 }; |
130 | 5.54M | int delta_rps; |
131 | | |
132 | 5.54M | if (is_slice_header) { |
133 | 16.5k | rps->delta_idx = get_ue_golomb_long(gb) + 1; |
134 | 16.5k | if (rps->delta_idx > sps->nb_st_rps) { |
135 | 2.59k | av_log(avctx, AV_LOG_ERROR, |
136 | 2.59k | "Invalid value of delta_idx in slice header RPS: %d > %d.\n", |
137 | 2.59k | rps->delta_idx, sps->nb_st_rps); |
138 | 2.59k | return AVERROR_INVALIDDATA; |
139 | 2.59k | } |
140 | 13.9k | rps_ridx = &sps->st_rps[sps->nb_st_rps - rps->delta_idx]; |
141 | 13.9k | rps->rps_idx_num_delta_pocs = rps_ridx->num_delta_pocs; |
142 | 13.9k | } else |
143 | 5.53M | rps_ridx = &sps->st_rps[rps - sps->st_rps - 1]; |
144 | | |
145 | 5.54M | rps->delta_rps_sign = get_bits1(gb); |
146 | 5.54M | rps->abs_delta_rps = get_ue_golomb_long(gb) + 1; |
147 | 5.54M | if (rps->abs_delta_rps > 32768) { |
148 | 5.86k | av_log(avctx, AV_LOG_ERROR, |
149 | 5.86k | "Invalid value of abs_delta_rps: %d\n", |
150 | 5.86k | rps->abs_delta_rps); |
151 | 5.86k | return AVERROR_INVALIDDATA; |
152 | 5.86k | } |
153 | 5.54M | delta_rps = (1 - (rps->delta_rps_sign << 1)) * rps->abs_delta_rps; |
154 | 32.7M | for (i = 0; i <= rps_ridx->num_delta_pocs; i++) { |
155 | 27.2M | used[k] = get_bits1(gb); |
156 | | |
157 | 27.2M | rps->use_delta = 0; |
158 | 27.2M | if (!used[k]) |
159 | 5.14M | rps->use_delta = get_bits1(gb); |
160 | | |
161 | 27.2M | if (used[k] || rps->use_delta) { |
162 | 24.0M | if (i < rps_ridx->num_delta_pocs) |
163 | 19.2M | delta_poc = delta_rps + rps_ridx->delta_poc[i]; |
164 | 4.81M | else |
165 | 4.81M | delta_poc = delta_rps; |
166 | 24.0M | rps->delta_poc[k] = delta_poc; |
167 | 24.0M | if (delta_poc < 0) |
168 | 21.3M | k0++; |
169 | 24.0M | k++; |
170 | 24.0M | } |
171 | 27.2M | } |
172 | | |
173 | 5.54M | if (k >= FF_ARRAY_ELEMS(used)) { |
174 | 4.11k | av_log(avctx, AV_LOG_ERROR, |
175 | 4.11k | "Invalid num_delta_pocs: %d\n", k); |
176 | 4.11k | return AVERROR_INVALIDDATA; |
177 | 4.11k | } |
178 | | |
179 | 5.53M | rps->num_delta_pocs = k; |
180 | 5.53M | rps->num_negative_pics = k0; |
181 | | // sort in increasing order (smallest first) |
182 | 5.53M | if (rps->num_delta_pocs != 0) { |
183 | 5.48M | int u, tmp; |
184 | 23.9M | for (i = 1; i < rps->num_delta_pocs; i++) { |
185 | 18.4M | delta_poc = rps->delta_poc[i]; |
186 | 18.4M | u = used[i]; |
187 | 91.1M | for (k = i - 1; k >= 0; k--) { |
188 | 72.7M | tmp = rps->delta_poc[k]; |
189 | 72.7M | if (delta_poc < tmp) { |
190 | 47.8M | rps->delta_poc[k + 1] = tmp; |
191 | 47.8M | used[k + 1] = used[k]; |
192 | 47.8M | rps->delta_poc[k] = delta_poc; |
193 | 47.8M | used[k] = u; |
194 | 47.8M | } |
195 | 72.7M | } |
196 | 18.4M | } |
197 | 5.48M | } |
198 | 5.53M | if ((rps->num_negative_pics >> 1) != 0) { |
199 | 4.54M | int u; |
200 | 4.54M | k = rps->num_negative_pics - 1; |
201 | | // flip the negative values to largest first |
202 | 13.9M | for (i = 0; i < rps->num_negative_pics >> 1; i++) { |
203 | 9.35M | delta_poc = rps->delta_poc[i]; |
204 | 9.35M | u = used[i]; |
205 | 9.35M | rps->delta_poc[i] = rps->delta_poc[k]; |
206 | 9.35M | used[i] = used[k]; |
207 | 9.35M | rps->delta_poc[k] = delta_poc; |
208 | 9.35M | used[k] = u; |
209 | 9.35M | k--; |
210 | 9.35M | } |
211 | 4.54M | } |
212 | | |
213 | 182M | for (unsigned i = 0; i < FF_ARRAY_ELEMS(used); i++) |
214 | 177M | rps->used |= (uint32_t)used[i] << i; |
215 | 5.53M | } else { |
216 | 3.25M | unsigned int nb_positive_pics; |
217 | | |
218 | 3.25M | rps->num_negative_pics = get_ue_golomb_long(gb); |
219 | 3.25M | nb_positive_pics = get_ue_golomb_long(gb); |
220 | | |
221 | 3.25M | if (rps->num_negative_pics >= HEVC_MAX_REFS || |
222 | 3.19M | nb_positive_pics >= HEVC_MAX_REFS) { |
223 | 82.0k | av_log(avctx, AV_LOG_ERROR, "Too many refs in a short term RPS.\n"); |
224 | 82.0k | return AVERROR_INVALIDDATA; |
225 | 82.0k | } |
226 | | |
227 | 3.17M | rps->num_delta_pocs = rps->num_negative_pics + nb_positive_pics; |
228 | 3.17M | if (rps->num_delta_pocs) { |
229 | 2.52M | int prev = 0; |
230 | | |
231 | 9.21M | for (i = 0; i < rps->num_negative_pics; i++) { |
232 | 6.74M | delta_poc = get_ue_golomb_long(gb) + 1; |
233 | 6.74M | if (delta_poc < 1 || delta_poc > 32768) { |
234 | 59.2k | av_log(avctx, AV_LOG_ERROR, |
235 | 59.2k | "Invalid value of delta_poc: %d\n", |
236 | 59.2k | delta_poc); |
237 | 59.2k | return AVERROR_INVALIDDATA; |
238 | 59.2k | } |
239 | 6.68M | prev -= delta_poc; |
240 | 6.68M | rps->delta_poc[i] = prev; |
241 | 6.68M | rps->used |= get_bits1(gb) * (1 << i); |
242 | 6.68M | } |
243 | 2.46M | prev = 0; |
244 | 4.78M | for (i = 0; i < nb_positive_pics; i++) { |
245 | 2.33M | delta_poc = get_ue_golomb_long(gb) + 1; |
246 | 2.33M | if (delta_poc < 1 || delta_poc > 32768) { |
247 | 17.8k | av_log(avctx, AV_LOG_ERROR, |
248 | 17.8k | "Invalid value of delta_poc: %d\n", |
249 | 17.8k | delta_poc); |
250 | 17.8k | return AVERROR_INVALIDDATA; |
251 | 17.8k | } |
252 | 2.31M | prev += delta_poc; |
253 | 2.31M | rps->delta_poc[rps->num_negative_pics + i] = prev; |
254 | 2.31M | rps->used |= get_bits1(gb) * (1 << (rps->num_negative_pics + i)); |
255 | 2.31M | } |
256 | 2.46M | } |
257 | 3.17M | } |
258 | 8.63M | return 0; |
259 | 8.80M | } |
260 | | |
261 | | |
262 | | static int decode_profile_tier_level(GetBitContext *gb, AVCodecContext *avctx, |
263 | | PTLCommon *ptl) |
264 | 11.6M | { |
265 | 11.6M | int i; |
266 | | |
267 | 11.6M | if (get_bits_left(gb) < 2+1+5 + 32 + 4 + 43 + 1) |
268 | 397k | return -1; |
269 | | |
270 | 11.2M | ptl->profile_space = get_bits(gb, 2); |
271 | 11.2M | ptl->tier_flag = get_bits1(gb); |
272 | 11.2M | ptl->profile_idc = get_bits(gb, 5); |
273 | | |
274 | 11.2M | #if !CONFIG_SMALL |
275 | 11.2M | const char *profile_name = NULL; |
276 | 71.5M | for (int i = 0; ff_hevc_profiles[i].profile != AV_PROFILE_UNKNOWN; i++) |
277 | 62.2M | if (ff_hevc_profiles[i].profile == ptl->profile_idc) { |
278 | 2.01M | profile_name = ff_hevc_profiles[i].name; |
279 | 2.01M | break; |
280 | 2.01M | } |
281 | 11.2M | av_log(avctx, profile_name ? AV_LOG_DEBUG : AV_LOG_WARNING, |
282 | 11.2M | "%s profile bitstream\n", profile_name ? profile_name : "Unknown"); |
283 | 11.2M | #endif |
284 | | |
285 | 371M | for (i = 0; i < 32; i++) { |
286 | 359M | ptl->profile_compatibility_flag[i] = get_bits1(gb); |
287 | | |
288 | 359M | if (ptl->profile_idc == 0 && i > 0 && ptl->profile_compatibility_flag[i]) |
289 | 2.52M | ptl->profile_idc = i; |
290 | 359M | } |
291 | 11.2M | ptl->progressive_source_flag = get_bits1(gb); |
292 | 11.2M | ptl->interlaced_source_flag = get_bits1(gb); |
293 | 11.2M | ptl->non_packed_constraint_flag = get_bits1(gb); |
294 | 11.2M | ptl->frame_only_constraint_flag = get_bits1(gb); |
295 | | |
296 | 11.2M | #define check_profile_idc(idc) \ |
297 | 79.1M | ptl->profile_idc == idc || ptl->profile_compatibility_flag[idc] |
298 | | |
299 | 22.4M | if (check_profile_idc(4) || check_profile_idc(5) || check_profile_idc(6) || |
300 | 2.61M | check_profile_idc(7) || check_profile_idc(8) || check_profile_idc(9) || |
301 | 9.98M | check_profile_idc(10)) { |
302 | | |
303 | 9.98M | ptl->max_12bit_constraint_flag = get_bits1(gb); |
304 | 9.98M | ptl->max_10bit_constraint_flag = get_bits1(gb); |
305 | 9.98M | ptl->max_8bit_constraint_flag = get_bits1(gb); |
306 | 9.98M | ptl->max_422chroma_constraint_flag = get_bits1(gb); |
307 | 9.98M | ptl->max_420chroma_constraint_flag = get_bits1(gb); |
308 | 9.98M | ptl->max_monochrome_constraint_flag = get_bits1(gb); |
309 | 9.98M | ptl->intra_constraint_flag = get_bits1(gb); |
310 | 9.98M | ptl->one_picture_only_constraint_flag = get_bits1(gb); |
311 | 9.98M | ptl->lower_bit_rate_constraint_flag = get_bits1(gb); |
312 | | |
313 | 19.9M | if (check_profile_idc(5) || check_profile_idc(9) || check_profile_idc(10)) { |
314 | 8.91M | ptl->max_14bit_constraint_flag = get_bits1(gb); |
315 | 8.91M | skip_bits_long(gb, 33); // XXX_reserved_zero_33bits[0..32] |
316 | 8.91M | } else { |
317 | 1.07M | skip_bits_long(gb, 34); // XXX_reserved_zero_34bits[0..33] |
318 | 1.07M | } |
319 | 9.98M | } else if (check_profile_idc(2)) { |
320 | 524k | skip_bits(gb, 7); |
321 | 524k | ptl->one_picture_only_constraint_flag = get_bits1(gb); |
322 | 524k | skip_bits_long(gb, 35); // XXX_reserved_zero_35bits[0..34] |
323 | 736k | } else { |
324 | 736k | skip_bits_long(gb, 43); // XXX_reserved_zero_43bits[0..42] |
325 | 736k | } |
326 | | |
327 | 22.4M | if (check_profile_idc(1) || check_profile_idc(2) || check_profile_idc(3) || |
328 | 3.65M | check_profile_idc(4) || check_profile_idc(5) || check_profile_idc(9)) |
329 | 9.91M | ptl->inbld_flag = get_bits1(gb); |
330 | 1.33M | else |
331 | 1.33M | skip_bits1(gb); |
332 | 11.2M | #undef check_profile_idc |
333 | | |
334 | 11.2M | return 0; |
335 | 11.6M | } |
336 | | |
337 | | static int parse_ptl(GetBitContext *gb, AVCodecContext *avctx, |
338 | | int profile_present, PTL *ptl, int max_num_sub_layers) |
339 | 8.66M | { |
340 | 8.66M | int i, status = 0; |
341 | | |
342 | 8.66M | if (profile_present) { |
343 | 6.87M | status = decode_profile_tier_level(gb, avctx, &ptl->general_ptl); |
344 | 6.87M | } else { |
345 | 1.79M | memset(&ptl->general_ptl, 0, sizeof(ptl->general_ptl)); |
346 | 1.79M | } |
347 | | |
348 | 8.66M | if (status < 0 || get_bits_left(gb) < 8 + (8*2 * (max_num_sub_layers - 1 > 0))) { |
349 | 216k | av_log(avctx, AV_LOG_ERROR, "PTL information too short\n"); |
350 | 216k | return -1; |
351 | 216k | } |
352 | | |
353 | 8.45M | ptl->general_ptl.level_idc = get_bits(gb, 8); |
354 | | |
355 | 37.2M | for (i = 0; i < max_num_sub_layers - 1; i++) { |
356 | 28.8M | ptl->sub_layer_profile_present_flag[i] = get_bits1(gb); |
357 | 28.8M | ptl->sub_layer_level_present_flag[i] = get_bits1(gb); |
358 | 28.8M | } |
359 | | |
360 | 8.45M | if (max_num_sub_layers - 1> 0) |
361 | 22.0M | for (i = max_num_sub_layers - 1; i < 8; i++) |
362 | 16.4M | skip_bits(gb, 2); // reserved_zero_2bits[i] |
363 | 36.4M | for (i = 0; i < max_num_sub_layers - 1; i++) { |
364 | 28.2M | if (ptl->sub_layer_profile_present_flag[i] && |
365 | 4.76M | decode_profile_tier_level(gb, avctx, &ptl->sub_layer_ptl[i]) < 0) { |
366 | 237k | av_log(avctx, AV_LOG_ERROR, |
367 | 237k | "PTL information for sublayer %i too short\n", i); |
368 | 237k | return -1; |
369 | 237k | } |
370 | 28.0M | if (ptl->sub_layer_level_present_flag[i]) { |
371 | 5.15M | if (get_bits_left(gb) < 8) { |
372 | 23.7k | av_log(avctx, AV_LOG_ERROR, |
373 | 23.7k | "Not enough data for sublayer %i level_idc\n", i); |
374 | 23.7k | return -1; |
375 | 23.7k | } else |
376 | 5.12M | ptl->sub_layer_ptl[i].level_idc = get_bits(gb, 8); |
377 | 5.15M | } |
378 | 28.0M | } |
379 | | |
380 | 8.19M | return 0; |
381 | 8.45M | } |
382 | | |
383 | | static void decode_sublayer_hrd(GetBitContext *gb, unsigned int nb_cpb, |
384 | | HEVCSublayerHdrParams *par, int subpic_params_present) |
385 | 15.5M | { |
386 | 15.5M | int i; |
387 | | |
388 | 40.4M | for (i = 0; i < nb_cpb; i++) { |
389 | 24.8M | par->bit_rate_value_minus1[i] = get_ue_golomb_long(gb); |
390 | 24.8M | par->cpb_size_value_minus1[i] = get_ue_golomb_long(gb); |
391 | | |
392 | 24.8M | if (subpic_params_present) { |
393 | 12.6M | par->cpb_size_du_value_minus1[i] = get_ue_golomb_long(gb); |
394 | 12.6M | par->bit_rate_du_value_minus1[i] = get_ue_golomb_long(gb); |
395 | 12.6M | } |
396 | | |
397 | 24.8M | par->cbr_flag |= get_bits1(gb) << i; |
398 | 24.8M | } |
399 | 15.5M | } |
400 | | |
401 | | static int decode_hrd(GetBitContext *gb, int common_inf_present, |
402 | | HEVCHdrParams *hdr, int max_sublayers) |
403 | 6.34M | { |
404 | 6.34M | if (common_inf_present) { |
405 | 3.48M | hdr->nal_hrd_parameters_present_flag = get_bits1(gb); |
406 | 3.48M | hdr->vcl_hrd_parameters_present_flag = get_bits1(gb); |
407 | | |
408 | 3.48M | if (hdr->nal_hrd_parameters_present_flag || |
409 | 2.32M | hdr->vcl_hrd_parameters_present_flag) { |
410 | 2.05M | hdr->sub_pic_hrd_params_present_flag = get_bits1(gb); |
411 | | |
412 | 2.05M | if (hdr->sub_pic_hrd_params_present_flag) { |
413 | 1.06M | hdr->tick_divisor_minus2 = get_bits(gb, 8); |
414 | 1.06M | hdr->du_cpb_removal_delay_increment_length_minus1 = get_bits(gb, 5); |
415 | 1.06M | hdr->sub_pic_cpb_params_in_pic_timing_sei_flag = get_bits1(gb); |
416 | 1.06M | hdr->dpb_output_delay_du_length_minus1 = get_bits(gb, 5); |
417 | 1.06M | } |
418 | | |
419 | 2.05M | hdr->bit_rate_scale = get_bits(gb, 4); |
420 | 2.05M | hdr->cpb_size_scale = get_bits(gb, 4); |
421 | | |
422 | 2.05M | if (hdr->sub_pic_hrd_params_present_flag) |
423 | 1.06M | hdr->cpb_size_du_scale = get_bits(gb, 4); |
424 | | |
425 | 2.05M | hdr->initial_cpb_removal_delay_length_minus1 = get_bits(gb, 5); |
426 | 2.05M | hdr->au_cpb_removal_delay_length_minus1 = get_bits(gb, 5); |
427 | 2.05M | hdr->dpb_output_delay_length_minus1 = get_bits(gb, 5); |
428 | 2.05M | } |
429 | 3.48M | } |
430 | | |
431 | 24.1M | for (int i = 0; i < max_sublayers; i++) { |
432 | 22.4M | unsigned fixed_pic_rate_general_flag = get_bits1(gb); |
433 | 22.4M | unsigned fixed_pic_rate_within_cvs_flag = 0; |
434 | 22.4M | unsigned low_delay_hrd_flag = 0; |
435 | 22.4M | hdr->flags.fixed_pic_rate_general_flag |= fixed_pic_rate_general_flag << i; |
436 | | |
437 | 22.4M | if (!fixed_pic_rate_general_flag) |
438 | 12.3M | fixed_pic_rate_within_cvs_flag = get_bits1(gb); |
439 | 22.4M | hdr->flags.fixed_pic_rate_within_cvs_flag |= fixed_pic_rate_within_cvs_flag << i; |
440 | | |
441 | 22.4M | if (fixed_pic_rate_within_cvs_flag || fixed_pic_rate_general_flag) |
442 | 12.1M | hdr->elemental_duration_in_tc_minus1[i] = get_ue_golomb_long(gb); |
443 | 10.3M | else |
444 | 10.3M | low_delay_hrd_flag = get_bits1(gb); |
445 | 22.4M | hdr->flags.low_delay_hrd_flag |= low_delay_hrd_flag << i; |
446 | | |
447 | 22.4M | if (!low_delay_hrd_flag) { |
448 | 18.6M | unsigned cpb_cnt_minus1 = get_ue_golomb_long(gb); |
449 | 18.6M | if (cpb_cnt_minus1 > 31) { |
450 | 4.61M | av_log(NULL, AV_LOG_ERROR, "nb_cpb %d invalid\n", |
451 | 4.61M | cpb_cnt_minus1); |
452 | 4.61M | return AVERROR_INVALIDDATA; |
453 | 4.61M | } |
454 | 14.0M | hdr->cpb_cnt_minus1[i] = cpb_cnt_minus1; |
455 | 14.0M | } |
456 | | |
457 | 17.8M | if (hdr->nal_hrd_parameters_present_flag) |
458 | 5.74M | decode_sublayer_hrd(gb, hdr->cpb_cnt_minus1[i]+1, &hdr->nal_params[i], |
459 | 5.74M | hdr->sub_pic_hrd_params_present_flag); |
460 | | |
461 | 17.8M | if (hdr->vcl_hrd_parameters_present_flag) |
462 | 9.83M | decode_sublayer_hrd(gb, hdr->cpb_cnt_minus1[i]+1, &hdr->vcl_params[i], |
463 | 9.83M | hdr->sub_pic_hrd_params_present_flag); |
464 | 17.8M | } |
465 | | |
466 | 1.73M | return 0; |
467 | 6.34M | } |
468 | | |
469 | | static void hevc_vps_free(AVRefStructOpaque opaque, void *obj) |
470 | 2.71M | { |
471 | 2.71M | HEVCVPS *vps = obj; |
472 | | |
473 | 2.71M | av_freep(&vps->hdr); |
474 | 2.71M | av_freep(&vps->data); |
475 | 2.71M | } |
476 | | |
477 | | enum DependencyType { |
478 | | HEVC_DEP_TYPE_SAMPLE = 0, |
479 | | HEVC_DEP_TYPE_MV = 1, |
480 | | HEVC_DEP_TYPE_BOTH = 2, |
481 | | }; |
482 | | |
483 | | static int decode_vps_ext(GetBitContext *gb, AVCodecContext *avctx, HEVCVPS *vps, |
484 | | uint64_t layer1_id_included) |
485 | 521k | { |
486 | 521k | PTL ptl_dummy; |
487 | 521k | uint8_t max_sub_layers[HEVC_MAX_LAYERS] = {1, 1}; |
488 | 521k | uint8_t dimension_id_len[16] = {0}; |
489 | 521k | uint8_t dimension_id[16] = {0}; |
490 | 521k | unsigned n; |
491 | | |
492 | 521k | int splitting_flag, view_id_len, num_add_olss, num_scalability_types, |
493 | 521k | default_output_layer_idc, direct_dep_type_len, direct_dep_type, |
494 | 521k | sub_layers_max_present, sub_layer_flag_info_present_flag, nb_ptl; |
495 | 521k | unsigned non_vui_extension_length; |
496 | | |
497 | 521k | if (vps->vps_max_layers == 1) { |
498 | 0 | av_log(avctx, AV_LOG_VERBOSE, "Ignoring VPS extensions with a single layer\n"); |
499 | 0 | return 0; |
500 | 0 | } |
501 | | |
502 | 521k | if (vps->vps_max_layers > 2) { |
503 | 146k | av_log(avctx, AV_LOG_ERROR, |
504 | 146k | "VPS has %d layers, only 2 layers are supported\n", |
505 | 146k | vps->vps_max_layers); |
506 | 146k | return AVERROR_PATCHWELCOME; |
507 | 146k | } |
508 | 375k | if (vps->vps_num_layer_sets > 2) { |
509 | 6.18k | av_log(avctx, AV_LOG_ERROR, |
510 | 6.18k | "VPS has %d layer sets, only 2 layer sets are supported\n", |
511 | 6.18k | vps->vps_num_layer_sets); |
512 | 6.18k | return AVERROR_PATCHWELCOME; |
513 | 6.18k | } |
514 | | |
515 | 369k | align_get_bits(gb); |
516 | | |
517 | | /** |
518 | | * For stereoscopic MV-HEVC, the following simplifying assumptions are made: |
519 | | * |
520 | | * - vps_max_layers = 2 (one base layer, one multiview layer) |
521 | | * - vps_num_layer_sets = 2 (one output layer set for each view) |
522 | | * - NumScalabilityTypes = 1 (only HEVC_SCALABILITY_MULTIVIEW) |
523 | | * - direct_dependency_flag[1][0] = 1 (second layer depends on first) |
524 | | * - num_add_olss = 0 (no extra output layer sets) |
525 | | * - default_output_layer_idc = 0 (1:1 mapping between OLSs and layers) |
526 | | * - layer_id_included_flag[1] = {1, 1} (consequence of layer dependencies) |
527 | | * - vps_num_rep_formats_minus1 = 0 (all layers have the same size) |
528 | | * |
529 | | * Which results in the following derived variables: |
530 | | * - ViewOrderIdx = {0, 1} |
531 | | * - NumViews = 2 |
532 | | * - DependencyFlag[1][0] = 1 |
533 | | * - NumDirectRefLayers = {0, 1} |
534 | | * - NumRefLayers = {0, 1} |
535 | | * - NumPredictedLayers = {1, 0} |
536 | | * - NumIndependentLayers = 1 |
537 | | * - NumLayersInTreePartition = {2} |
538 | | * - NumLayerSets = 2 |
539 | | * - NumOutputLayerSets = 2 |
540 | | * - OlsIdxToLsIdx = {0, 1} |
541 | | * - LayerIdxInVps = {0, 1} |
542 | | * - NumLayersInIdList = {1, 2} |
543 | | * - NumNecessaryLayers = {1, 2} |
544 | | * - NecessaryLayerFlag = {{1, 0}, {1, 1}} |
545 | | * - NumOutputLayersInOutputLayerSet = {1, 2} |
546 | | * - OutputLayerFlag = {{1, 0}, {1, 1}} |
547 | | */ |
548 | 369k | vps->nb_layers = 2; |
549 | | |
550 | | /* vps_base_layer_internal_flag is true has been checked before */ |
551 | 369k | if (parse_ptl(gb, avctx, 0, &ptl_dummy, vps->vps_max_sub_layers) < 0) |
552 | 39.8k | return AVERROR_INVALIDDATA; |
553 | | |
554 | 329k | splitting_flag = get_bits1(gb); |
555 | 329k | vps->scalability_mask_flag = get_bits(gb, 16); |
556 | 329k | num_scalability_types = av_popcount(vps->scalability_mask_flag); |
557 | 329k | if (!num_scalability_types) { |
558 | 4.88k | av_log(avctx, AV_LOG_ERROR, "Missing scalability mask\n"); |
559 | 4.88k | return AVERROR_INVALIDDATA; |
560 | 4.88k | } |
561 | | |
562 | 324k | if (!(vps->scalability_mask_flag & |
563 | 324k | (HEVC_SCALABILITY_MULTIVIEW | HEVC_SCALABILITY_AUXILIARY))) { |
564 | 10.9k | av_log(avctx, AV_LOG_ERROR, "Scalability type %d not supported\n", |
565 | 10.9k | 15 - ff_ctz(vps->scalability_mask_flag)); |
566 | 10.9k | return AVERROR_PATCHWELCOME; |
567 | 10.9k | } |
568 | | // x265 specify MULTIVIEW when the stream really is alpha video only. |
569 | 313k | if (num_scalability_types > 1) |
570 | 302k | av_log(avctx, AV_LOG_WARNING, "Multiple scalability types presented\n"); |
571 | | |
572 | 313k | n = 0; |
573 | 3.58M | for (int i = 0; i < num_scalability_types - splitting_flag; i++) { |
574 | 3.27M | dimension_id_len[i] = get_bits(gb, 3) + 1; |
575 | 3.27M | n += dimension_id_len[i]; |
576 | 3.27M | } |
577 | 313k | if (splitting_flag) |
578 | 150k | dimension_id_len[num_scalability_types - 1] = 5 - n; |
579 | | |
580 | 313k | if (get_bits1(gb)) { /* vps_nuh_layer_id_present_flag */ |
581 | 151k | int layer_id_in_nuh = get_bits(gb, 6); |
582 | 151k | if (layer_id_in_nuh >= FF_ARRAY_ELEMS(vps->layer_idx)) { |
583 | 20.2k | av_log(avctx, AV_LOG_ERROR, "Invalid layer_id_in_nuh[1]: %d\n", |
584 | 20.2k | layer_id_in_nuh); |
585 | 20.2k | return AVERROR_INVALIDDATA; |
586 | 20.2k | } |
587 | 130k | vps->layer_idx[layer_id_in_nuh] = 1; |
588 | 130k | vps->layer_id_in_nuh[1] = layer_id_in_nuh; |
589 | 162k | } else { |
590 | 162k | vps->layer_idx[1] = 1; |
591 | 162k | vps->layer_id_in_nuh[1] = 1; |
592 | 162k | } |
593 | | |
594 | 293k | if (!splitting_flag) { |
595 | 150k | int index = 0; |
596 | | |
597 | 1.72M | for (int i = 0; i < num_scalability_types; i++) |
598 | 1.57M | dimension_id[i] = get_bits(gb, dimension_id_len[i]); |
599 | | |
600 | 150k | if (vps->scalability_mask_flag & HEVC_SCALABILITY_MULTIVIEW) |
601 | 131k | index++; |
602 | | |
603 | | /* AuxId 1 is alpha, 2 is depth. Only support alpha */ |
604 | 150k | if (vps->scalability_mask_flag & HEVC_SCALABILITY_AUXILIARY && |
605 | 33.8k | dimension_id[index] != HEVC_AUX_ALPHA) { |
606 | 14.4k | av_log(avctx, AV_LOG_WARNING, |
607 | 14.4k | "Unsupported dimension_id %d for HEVC_SCALABILITY_AUXILIARY\n", |
608 | 14.4k | dimension_id[index]); |
609 | 14.4k | return AVERROR_PATCHWELCOME; |
610 | 14.4k | } |
611 | 150k | } |
612 | | |
613 | 279k | view_id_len = get_bits(gb, 4); |
614 | 279k | if (view_id_len) { |
615 | 229k | n = (vps->scalability_mask_flag & HEVC_SCALABILITY_MULTIVIEW) ? 2 : 1; |
616 | 672k | for (int i = 0; i < n; i++) |
617 | 442k | vps->view_id[i] = get_bits(gb, view_id_len); |
618 | 229k | } |
619 | | |
620 | | /* direct_dependency_flag */ |
621 | 279k | vps->num_direct_ref_layers[1] = get_bits1(gb); |
622 | 279k | if (!vps->num_direct_ref_layers[1]) { |
623 | 180k | vps->num_add_layer_sets = get_ue_golomb(gb); |
624 | 180k | if (vps->num_add_layer_sets > 1) { |
625 | 34.7k | av_log(avctx, AV_LOG_WARNING, |
626 | 34.7k | "Unsupported num_add_layer_sets: %d\n", vps->num_add_layer_sets); |
627 | 34.7k | return AVERROR_PATCHWELCOME; |
628 | 34.7k | } |
629 | | |
630 | 145k | if (vps->num_add_layer_sets) { |
631 | | /* highest_layer_idx_plus1 */ |
632 | 122k | if (!get_bits1(gb)) |
633 | 7.98k | return AVERROR_PATCHWELCOME; |
634 | 122k | } |
635 | 145k | } |
636 | 236k | vps->num_output_layer_sets = vps->vps_num_layer_sets + vps->num_add_layer_sets; |
637 | 236k | if (vps->num_output_layer_sets != 2) { |
638 | 100k | av_log(avctx, AV_LOG_WARNING, |
639 | 100k | "Unsupported num_output_layer_sets: %d\n", vps->num_output_layer_sets); |
640 | 100k | return AVERROR_PATCHWELCOME; |
641 | 100k | } |
642 | | |
643 | 135k | sub_layers_max_present = get_bits1(gb); // vps_sub_layers_max_minus1_present_flag |
644 | 135k | if (sub_layers_max_present) { |
645 | 207k | for (int i = 0; i < vps->vps_max_layers; i++) |
646 | 138k | max_sub_layers[i] = sub_layers_max_present ? get_bits(gb, 3) + 1 : |
647 | 138k | vps->vps_max_sub_layers; |
648 | 69.0k | } |
649 | | |
650 | 135k | if (get_bits1(gb) /* max_tid_ref_present_flag */) |
651 | 88.5k | skip_bits(gb, 3); // max_tid_il_ref_pics_plus1 |
652 | | |
653 | 135k | vps->default_ref_layers_active = get_bits1(gb); |
654 | | |
655 | 135k | nb_ptl = get_ue_golomb(gb) + 1; |
656 | | /* idx [0] is signalled in base VPS, idx [1] is signalled at the |
657 | | * start of VPS extension, indices 2+ are signalled here; |
658 | | * we ignore all but the first one anyway */ |
659 | 2.13M | for (int i = 2; i < nb_ptl; i++) { |
660 | 2.02M | int profile_present = get_bits1(gb); |
661 | 2.02M | if (parse_ptl(gb, avctx, profile_present, &ptl_dummy, vps->vps_max_sub_layers) < 0) |
662 | 17.0k | return AVERROR_INVALIDDATA; |
663 | 2.02M | } |
664 | | |
665 | 118k | num_add_olss = get_ue_golomb(gb); |
666 | 118k | if (num_add_olss != 0) { |
667 | | /* Since we don't implement support for independent output layer sets |
668 | | * and auxiliary layers, this should never nonzero */ |
669 | 11.2k | av_log(avctx, AV_LOG_ERROR, "Unexpected num_add_olss: %d\n", num_add_olss); |
670 | 11.2k | return AVERROR_PATCHWELCOME; |
671 | 11.2k | } |
672 | | |
673 | 107k | default_output_layer_idc = get_bits(gb, 2); |
674 | 107k | if (default_output_layer_idc != 0) { |
675 | 16.6k | av_log(avctx, AV_LOG_WARNING, "Unsupported default_output_layer_idc: %d\n", |
676 | 16.6k | default_output_layer_idc); |
677 | 16.6k | return AVERROR_PATCHWELCOME; |
678 | 16.6k | } |
679 | | |
680 | | /* Consequence of established layer dependencies */ |
681 | 90.6k | if (layer1_id_included && |
682 | 18.9k | layer1_id_included != ((1ULL << vps->layer_id_in_nuh[0]) | |
683 | 18.9k | (1ULL << vps->layer_id_in_nuh[1]))) { |
684 | 5.56k | av_log(avctx, AV_LOG_ERROR, |
685 | 5.56k | "Dependent layer not included in layer ID?\n"); |
686 | 5.56k | return AVERROR_PATCHWELCOME; |
687 | 5.56k | } |
688 | 85.1k | if (!layer1_id_included) |
689 | 71.7k | vps->ols[1] = 2; |
690 | 13.4k | else |
691 | 13.4k | vps->ols[1] = 3; |
692 | | |
693 | 85.1k | if (vps->vps_num_layer_sets == 1 || default_output_layer_idc == 2) |
694 | 44.6k | skip_bits1(gb); |
695 | | |
696 | 85.1k | if (nb_ptl > 1) |
697 | 93.3k | for (int j = 0; j < av_popcount64(vps->ols[1]); j++) { |
698 | 49.4k | int ptl_idx = get_bits(gb, av_ceil_log2(nb_ptl)); |
699 | 49.4k | if (ptl_idx >= nb_ptl) { |
700 | 3.12k | av_log(avctx, AV_LOG_ERROR, "Invalid PTL index: %d\n", ptl_idx); |
701 | 3.12k | return AVERROR_INVALIDDATA; |
702 | 3.12k | } |
703 | 49.4k | } |
704 | | |
705 | 81.9k | if (get_ue_golomb_31(gb) != 0 /* vps_num_rep_formats_minus1 */) { |
706 | 20.9k | av_log(avctx, AV_LOG_ERROR, "Unexpected extra rep formats\n"); |
707 | 20.9k | return AVERROR_PATCHWELCOME; |
708 | 20.9k | } |
709 | | |
710 | 61.0k | vps->rep_format.pic_width_in_luma_samples = get_bits(gb, 16); |
711 | 61.0k | vps->rep_format.pic_height_in_luma_samples = get_bits(gb, 16); |
712 | | |
713 | 61.0k | if (!get_bits1(gb) /* chroma_and_bit_depth_vps_present_flag */) { |
714 | 10.5k | av_log(avctx, AV_LOG_ERROR, |
715 | 10.5k | "chroma_and_bit_depth_vps_present_flag=0 in first rep_format\n"); |
716 | 10.5k | return AVERROR_INVALIDDATA; |
717 | 10.5k | } |
718 | 50.5k | vps->rep_format.chroma_format_idc = get_bits(gb, 2); |
719 | 50.5k | if (vps->rep_format.chroma_format_idc == 3) |
720 | 19.6k | vps->rep_format.separate_colour_plane_flag = get_bits1(gb); |
721 | 50.5k | vps->rep_format.bit_depth_luma = get_bits(gb, 4) + 8; |
722 | 50.5k | vps->rep_format.bit_depth_chroma = get_bits(gb, 4) + 8; |
723 | 50.5k | if (vps->rep_format.bit_depth_luma > 16 || |
724 | 47.4k | vps->rep_format.bit_depth_chroma > 16 || |
725 | 40.4k | vps->rep_format.bit_depth_luma != vps->rep_format.bit_depth_chroma) { |
726 | 12.6k | av_log(avctx, AV_LOG_ERROR, "Unsupported bit depth: %"PRIu8" %"PRIu8"\n", |
727 | 12.6k | vps->rep_format.bit_depth_luma, vps->rep_format.bit_depth_chroma); |
728 | 12.6k | return AVERROR_PATCHWELCOME; |
729 | 12.6k | } |
730 | | |
731 | 37.9k | if (get_bits1(gb) /* conformance_window_vps_flag */) { |
732 | 9.06k | int ret = read_window(&vps->rep_format.conf_win, gb, vps->rep_format.chroma_format_idc, vps->rep_format.pic_width_in_luma_samples, vps->rep_format.pic_height_in_luma_samples); |
733 | 9.06k | if (ret < 0) |
734 | 2.37k | return ret; |
735 | 9.06k | } |
736 | | |
737 | 35.5k | vps->max_one_active_ref_layer = get_bits1(gb); |
738 | 35.5k | vps->poc_lsb_aligned = get_bits1(gb); |
739 | 35.5k | if (!vps->num_direct_ref_layers[1]) |
740 | 28.4k | vps->poc_lsb_not_present = get_bits1(gb) << 1; |
741 | | |
742 | 35.5k | sub_layer_flag_info_present_flag = get_bits1(gb); |
743 | 191k | for (int j = 0; j < FFMAX(max_sub_layers[0], max_sub_layers[1]); j++) { |
744 | 155k | int sub_layer_dpb_info_present_flag = 1; |
745 | 155k | if (j > 0 && sub_layer_flag_info_present_flag) |
746 | 51.3k | sub_layer_dpb_info_present_flag = get_bits1(gb); |
747 | 155k | if (sub_layer_dpb_info_present_flag) { |
748 | 306k | for (int k = 0; k < av_popcount64(vps->ols[1]); k++) |
749 | 171k | vps->dpb_size.max_dec_pic_buffering = get_ue_golomb_long(gb) + 1; |
750 | 134k | vps->dpb_size.max_num_reorder_pics = get_ue_golomb_long(gb); |
751 | 134k | vps->dpb_size.max_latency_increase = get_ue_golomb_long(gb) - 1; |
752 | 134k | } |
753 | 155k | } |
754 | | |
755 | 35.5k | direct_dep_type_len = get_ue_golomb_31(gb) + 2; |
756 | 35.5k | if (direct_dep_type_len > 32) { |
757 | 7.25k | av_log(avctx, AV_LOG_ERROR, "Invalid direct_dep_type_len: %d\n", |
758 | 7.25k | direct_dep_type_len); |
759 | 7.25k | return AVERROR_INVALIDDATA; |
760 | 7.25k | } |
761 | | |
762 | | /* direct_depenency_all_layers_flag */ |
763 | 28.2k | if (get_bits1(gb)) { |
764 | 19.1k | direct_dep_type = get_bits_long(gb, direct_dep_type_len); |
765 | 19.1k | if (direct_dep_type > HEVC_DEP_TYPE_BOTH) { |
766 | 9.45k | av_log(avctx, AV_LOG_WARNING, "Unsupported direct_dep_type: %d\n", |
767 | 9.45k | direct_dep_type); |
768 | 9.45k | return AVERROR_PATCHWELCOME; |
769 | 9.45k | } |
770 | 19.1k | } |
771 | | |
772 | 18.8k | non_vui_extension_length = get_ue_golomb(gb); |
773 | 18.8k | if (non_vui_extension_length > 4096) { |
774 | 1.79k | av_log(avctx, AV_LOG_ERROR, "vps_non_vui_extension_length too large: %u\n", |
775 | 1.79k | non_vui_extension_length); |
776 | 1.79k | return AVERROR_INVALIDDATA; |
777 | 1.79k | } |
778 | 17.0k | skip_bits_long(gb, non_vui_extension_length * 8); |
779 | | |
780 | 17.0k | if (get_bits1(gb)) // vps_vui_present_flag |
781 | 8.48k | av_log(avctx, AV_LOG_WARNING, "VPS VUI not supported\n"); |
782 | | |
783 | 17.0k | return 0; |
784 | 18.8k | } |
785 | | |
786 | | int ff_hevc_decode_nal_vps(GetBitContext *gb, AVCodecContext *avctx, |
787 | | HEVCParamSets *ps) |
788 | 3.38M | { |
789 | 3.38M | int i; |
790 | 3.38M | int vps_id = get_bits(gb, 4); |
791 | 3.38M | ptrdiff_t nal_size = get_bits_bytesize(gb, 1); |
792 | 3.38M | int ret = AVERROR_INVALIDDATA; |
793 | 3.38M | uint64_t layer1_id_included = 0; |
794 | 3.38M | unsigned vps_base_layer_internal_flag, vps_base_layer_available_flag; |
795 | 3.38M | HEVCVPS *vps; |
796 | | |
797 | 3.38M | if (ps->vps_list[vps_id]) { |
798 | 3.13M | const HEVCVPS *vps1 = ps->vps_list[vps_id]; |
799 | 3.13M | if (vps1->data_size == nal_size && |
800 | 865k | !memcmp(vps1->data, gb->buffer, vps1->data_size)) |
801 | 665k | return 0; |
802 | 3.13M | } |
803 | | |
804 | 2.71M | vps = av_refstruct_alloc_ext(sizeof(*vps), 0, NULL, hevc_vps_free); |
805 | 2.71M | if (!vps) |
806 | 0 | return AVERROR(ENOMEM); |
807 | | |
808 | 2.71M | av_log(avctx, AV_LOG_DEBUG, "Decoding VPS\n"); |
809 | | |
810 | 2.71M | vps->data_size = nal_size; |
811 | 2.71M | vps->data = av_memdup(gb->buffer, nal_size); |
812 | 2.71M | if (!vps->data) { |
813 | 0 | ret = AVERROR(ENOMEM); |
814 | 0 | goto err; |
815 | 0 | } |
816 | 2.71M | vps->vps_id = vps_id; |
817 | | |
818 | 2.71M | vps_base_layer_internal_flag = get_bits1(gb); |
819 | 2.71M | vps_base_layer_available_flag = get_bits1(gb); |
820 | 2.71M | if (!vps_base_layer_internal_flag || !vps_base_layer_available_flag) { |
821 | 76.0k | av_log(avctx, AV_LOG_ERROR, |
822 | 76.0k | "vps_base_layer_internal_flag or vps_base_layer_available_flag not set\n"); |
823 | 76.0k | ret = AVERROR_PATCHWELCOME; |
824 | 76.0k | goto err; |
825 | 76.0k | } |
826 | | |
827 | 2.64M | vps->vps_max_layers = get_bits(gb, 6) + 1; |
828 | 2.64M | vps->vps_max_sub_layers = get_bits(gb, 3) + 1; |
829 | 2.64M | vps->vps_temporal_id_nesting_flag = get_bits1(gb); |
830 | | |
831 | 2.64M | if (get_bits(gb, 16) != 0xffff) { // vps_reserved_ffff_16bits |
832 | 220k | av_log(avctx, AV_LOG_ERROR, "vps_reserved_ffff_16bits is not 0xffff\n"); |
833 | 220k | goto err; |
834 | 220k | } |
835 | | |
836 | 2.42M | if (vps->vps_max_sub_layers > HEVC_MAX_SUB_LAYERS) { |
837 | 12.8k | av_log(avctx, AV_LOG_ERROR, "vps_max_sub_layers out of range: %d\n", |
838 | 12.8k | vps->vps_max_sub_layers); |
839 | 12.8k | goto err; |
840 | 12.8k | } |
841 | | |
842 | 2.40M | if (parse_ptl(gb, avctx, 1, &vps->ptl, vps->vps_max_sub_layers) < 0) |
843 | 256k | goto err; |
844 | | |
845 | 2.15M | vps->vps_sub_layer_ordering_info_present_flag = get_bits1(gb); |
846 | | |
847 | 2.15M | i = vps->vps_sub_layer_ordering_info_present_flag ? 0 : vps->vps_max_sub_layers - 1; |
848 | 5.98M | for (; i < vps->vps_max_sub_layers; i++) { |
849 | 4.03M | vps->vps_max_dec_pic_buffering[i] = get_ue_golomb_long(gb) + 1; |
850 | 4.03M | vps->vps_num_reorder_pics[i] = get_ue_golomb_long(gb); |
851 | 4.03M | vps->vps_max_latency_increase[i] = get_ue_golomb_long(gb) - 1; |
852 | | |
853 | 4.03M | if (vps->vps_max_dec_pic_buffering[i] > HEVC_MAX_DPB_SIZE || !vps->vps_max_dec_pic_buffering[i]) { |
854 | 205k | av_log(avctx, AV_LOG_ERROR, "vps_max_dec_pic_buffering_minus1 out of range: %d\n", |
855 | 205k | vps->vps_max_dec_pic_buffering[i] - 1); |
856 | 205k | goto err; |
857 | 205k | } |
858 | 3.83M | if (vps->vps_num_reorder_pics[i] > vps->vps_max_dec_pic_buffering[i] - 1) { |
859 | 1.74M | av_log(avctx, AV_LOG_WARNING, "vps_max_num_reorder_pics out of range: %d\n", |
860 | 1.74M | vps->vps_num_reorder_pics[i]); |
861 | 1.74M | if (avctx->err_recognition & AV_EF_EXPLODE) |
862 | 474 | goto err; |
863 | 1.74M | } |
864 | 3.83M | } |
865 | | |
866 | 1.94M | vps->vps_max_layer_id = get_bits(gb, 6); |
867 | 1.94M | vps->vps_num_layer_sets = get_ue_golomb_long(gb) + 1; |
868 | 1.94M | if (vps->vps_num_layer_sets < 1 || vps->vps_num_layer_sets > 1024 || |
869 | 1.81M | (vps->vps_num_layer_sets - 1LL) * (vps->vps_max_layer_id + 1LL) > get_bits_left(gb)) { |
870 | 206k | av_log(avctx, AV_LOG_ERROR, "too many layer_id_included_flags\n"); |
871 | 206k | goto err; |
872 | 206k | } |
873 | | |
874 | 1.74M | vps->num_output_layer_sets = 1; |
875 | 1.74M | vps->ols[0] = 1; |
876 | | |
877 | | // we support at most 2 layers, so ignore the others |
878 | 1.74M | if (vps->vps_num_layer_sets > 1) |
879 | 1.16M | layer1_id_included = get_bits64(gb, vps->vps_max_layer_id + 1); // layer_id_included_flag |
880 | 1.74M | if (vps->vps_num_layer_sets > 2) |
881 | 913k | skip_bits_long(gb, (vps->vps_num_layer_sets - 2) * (vps->vps_max_layer_id + 1)); |
882 | | |
883 | 1.74M | vps->vps_timing_info_present_flag = get_bits1(gb); |
884 | 1.74M | if (vps->vps_timing_info_present_flag) { |
885 | 1.16M | vps->vps_num_units_in_tick = get_bits_long(gb, 32); |
886 | 1.16M | vps->vps_time_scale = get_bits_long(gb, 32); |
887 | 1.16M | vps->vps_poc_proportional_to_timing_flag = get_bits1(gb); |
888 | 1.16M | if (vps->vps_poc_proportional_to_timing_flag) |
889 | 226k | vps->vps_num_ticks_poc_diff_one = get_ue_golomb_long(gb) + 1; |
890 | 1.16M | vps->vps_num_hrd_parameters = get_ue_golomb_long(gb); |
891 | 1.16M | if (vps->vps_num_hrd_parameters > (unsigned)vps->vps_num_layer_sets) { |
892 | 152k | av_log(avctx, AV_LOG_ERROR, |
893 | 152k | "vps_num_hrd_parameters %d is invalid\n", vps->vps_num_hrd_parameters); |
894 | 152k | goto err; |
895 | 152k | } |
896 | | |
897 | 1.01M | if (vps->vps_num_hrd_parameters) { |
898 | 654k | vps->hdr = av_calloc(vps->vps_num_hrd_parameters, sizeof(*vps->hdr)); |
899 | 654k | if (!vps->hdr) |
900 | 0 | goto err; |
901 | 654k | } |
902 | | |
903 | 7.17M | for (i = 0; i < vps->vps_num_hrd_parameters; i++) { |
904 | 6.16M | int common_inf_present = 1; |
905 | | |
906 | 6.16M | get_ue_golomb_long(gb); // hrd_layer_set_idx |
907 | 6.16M | if (i) |
908 | 5.50M | common_inf_present = get_bits1(gb); |
909 | 6.16M | decode_hrd(gb, common_inf_present, &vps->hdr[i], |
910 | 6.16M | vps->vps_max_sub_layers); |
911 | 6.16M | } |
912 | 1.01M | } |
913 | | |
914 | 1.58M | vps->nb_layers = 1; |
915 | 1.58M | vps->layer_idx[0] = 0; |
916 | 100M | for (int i = 1; i < FF_ARRAY_ELEMS(vps->layer_idx); i++) |
917 | 98.4M | vps->layer_idx[i] = -1; |
918 | | |
919 | 1.58M | if (vps->vps_max_layers > 1 && get_bits1(gb)) { /* vps_extension_flag */ |
920 | 521k | int ret = decode_vps_ext(gb, avctx, vps, layer1_id_included); |
921 | 521k | if (ret == AVERROR_PATCHWELCOME) { |
922 | | /* If alpha layer info was already parsed, preserve it for alpha decoding */ |
923 | 397k | if (!(avctx->err_recognition & (AV_EF_BITSTREAM | AV_EF_COMPLIANT)) && |
924 | 396k | vps->nb_layers == 2 && |
925 | 244k | vps->layer_id_in_nuh[1] && |
926 | 231k | (vps->scalability_mask_flag & HEVC_SCALABILITY_AUXILIARY)) { |
927 | 83.2k | av_log(avctx, AV_LOG_WARNING, |
928 | 83.2k | "Broken VPS extension, treating as alpha video\n"); |
929 | | /* If alpha layer has no direct dependency on base layer, |
930 | | * assume poc_lsb_not_present for the alpha layer, so that |
931 | | * IDR slices on that layer won't read pic_order_cnt_lsb. |
932 | | * This matches the behavior of Apple VideoToolbox encoders. */ |
933 | 83.2k | if (!vps->num_direct_ref_layers[1]) |
934 | 62.1k | vps->poc_lsb_not_present |= 1 << 1; |
935 | 314k | } else { |
936 | 314k | vps->nb_layers = 1; |
937 | 314k | av_log(avctx, AV_LOG_WARNING, "Ignoring unsupported VPS extension\n"); |
938 | 314k | } |
939 | 397k | ret = 0; |
940 | 397k | } else if (ret < 0) |
941 | 107k | goto err; |
942 | 521k | } |
943 | | |
944 | 1.48M | if (get_bits_left(gb) < 0) { |
945 | 500k | av_log(avctx, AV_LOG_ERROR, |
946 | 500k | "Overread VPS by %d bits\n", -get_bits_left(gb)); |
947 | 500k | if (ps->vps_list[vps_id]) |
948 | 493k | goto err; |
949 | 500k | } |
950 | | |
951 | 986k | remove_vps(ps, vps_id); |
952 | 986k | ps->vps_list[vps_id] = vps; |
953 | | |
954 | 986k | return 0; |
955 | | |
956 | 1.73M | err: |
957 | 1.73M | av_refstruct_unref(&vps); |
958 | 1.73M | return ret; |
959 | 1.48M | } |
960 | | |
961 | | static void decode_vui(GetBitContext *gb, AVCodecContext *avctx, |
962 | | int apply_defdispwin, HEVCSPS *sps) |
963 | 1.31M | { |
964 | 1.31M | VUI backup_vui, *vui = &sps->vui; |
965 | 1.31M | GetBitContext backup; |
966 | 1.31M | int alt = 0; |
967 | | |
968 | 1.31M | ff_h2645_decode_common_vui_params(gb, &sps->vui.common, avctx); |
969 | | |
970 | 1.31M | if (vui->common.video_signal_type_present_flag) { |
971 | 1.15M | if (vui->common.video_full_range_flag && sps->pix_fmt == AV_PIX_FMT_YUV420P) |
972 | 60.3k | sps->pix_fmt = AV_PIX_FMT_YUVJ420P; |
973 | 1.15M | if (vui->common.colour_description_present_flag) { |
974 | 697k | if (vui->common.matrix_coeffs == AVCOL_SPC_RGB) { |
975 | 27.1k | switch (sps->pix_fmt) { |
976 | 5.26k | case AV_PIX_FMT_YUV444P: |
977 | 5.26k | sps->pix_fmt = AV_PIX_FMT_GBRP; |
978 | 5.26k | break; |
979 | 8.71k | case AV_PIX_FMT_YUV444P10: |
980 | 8.71k | sps->pix_fmt = AV_PIX_FMT_GBRP10; |
981 | 8.71k | break; |
982 | 3.83k | case AV_PIX_FMT_YUV444P12: |
983 | 3.83k | sps->pix_fmt = AV_PIX_FMT_GBRP12; |
984 | 3.83k | break; |
985 | 27.1k | } |
986 | 27.1k | } |
987 | 697k | } |
988 | 1.15M | } |
989 | | |
990 | 1.31M | vui->neutra_chroma_indication_flag = get_bits1(gb); |
991 | 1.31M | vui->field_seq_flag = get_bits1(gb); |
992 | 1.31M | vui->frame_field_info_present_flag = get_bits1(gb); |
993 | | |
994 | | // Backup context in case an alternate header is detected |
995 | 1.31M | memcpy(&backup, gb, sizeof(backup)); |
996 | 1.31M | memcpy(&backup_vui, vui, sizeof(backup_vui)); |
997 | 1.31M | if (get_bits_left(gb) >= 68 && show_bits(gb, 21) == 0x100000) { |
998 | 4.20k | vui->default_display_window_flag = 0; |
999 | 4.20k | av_log(avctx, AV_LOG_WARNING, "Invalid default display window\n"); |
1000 | 4.20k | } else |
1001 | 1.30M | vui->default_display_window_flag = get_bits1(gb); |
1002 | | |
1003 | 1.31M | if (vui->default_display_window_flag) { |
1004 | 708k | read_window(&vui->def_disp_win, gb, sps->chroma_format_idc, sps->width, sps->height); |
1005 | | |
1006 | 708k | if (apply_defdispwin && |
1007 | 699k | avctx->flags2 & AV_CODEC_FLAG2_IGNORE_CROP) { |
1008 | 0 | av_log(avctx, AV_LOG_DEBUG, |
1009 | 0 | "discarding vui default display window, " |
1010 | 0 | "original values are l:%u r:%u t:%u b:%u\n", |
1011 | 0 | vui->def_disp_win.left_offset, |
1012 | 0 | vui->def_disp_win.right_offset, |
1013 | 0 | vui->def_disp_win.top_offset, |
1014 | 0 | vui->def_disp_win.bottom_offset); |
1015 | |
|
1016 | 0 | vui->def_disp_win.left_offset = |
1017 | 0 | vui->def_disp_win.right_offset = |
1018 | 0 | vui->def_disp_win.top_offset = |
1019 | 0 | vui->def_disp_win.bottom_offset = 0; |
1020 | 0 | } |
1021 | 708k | } |
1022 | | |
1023 | 1.46M | timing_info: |
1024 | 1.46M | vui->vui_timing_info_present_flag = get_bits1(gb); |
1025 | | |
1026 | 1.46M | if (vui->vui_timing_info_present_flag) { |
1027 | 441k | if( get_bits_left(gb) < 66 && !alt) { |
1028 | | // The alternate syntax seem to have timing info located |
1029 | | // at where def_disp_win is normally located |
1030 | 31.4k | av_log(avctx, AV_LOG_WARNING, |
1031 | 31.4k | "Strange VUI timing information, retrying...\n"); |
1032 | 31.4k | memcpy(vui, &backup_vui, sizeof(backup_vui)); |
1033 | 31.4k | memcpy(gb, &backup, sizeof(backup)); |
1034 | 31.4k | alt = 1; |
1035 | 31.4k | goto timing_info; |
1036 | 31.4k | } |
1037 | 409k | vui->vui_num_units_in_tick = get_bits_long(gb, 32); |
1038 | 409k | vui->vui_time_scale = get_bits_long(gb, 32); |
1039 | 409k | if (alt) { |
1040 | 81.2k | av_log(avctx, AV_LOG_INFO, "Retry got %"PRIu32"/%"PRIu32" fps\n", |
1041 | 81.2k | vui->vui_time_scale, vui->vui_num_units_in_tick); |
1042 | 81.2k | } |
1043 | 409k | vui->vui_poc_proportional_to_timing_flag = get_bits1(gb); |
1044 | 409k | if (vui->vui_poc_proportional_to_timing_flag) |
1045 | 216k | vui->vui_num_ticks_poc_diff_one_minus1 = get_ue_golomb_long(gb); |
1046 | 409k | vui->vui_hrd_parameters_present_flag = get_bits1(gb); |
1047 | 409k | if (vui->vui_hrd_parameters_present_flag) |
1048 | 183k | decode_hrd(gb, 1, &sps->hdr, sps->max_sub_layers); |
1049 | 409k | } |
1050 | | |
1051 | 1.43M | vui->bitstream_restriction_flag = get_bits1(gb); |
1052 | 1.43M | if (vui->bitstream_restriction_flag) { |
1053 | 665k | if (get_bits_left(gb) < 8 && !alt) { |
1054 | 19.6k | av_log(avctx, AV_LOG_WARNING, |
1055 | 19.6k | "Strange VUI bitstream restriction information, retrying" |
1056 | 19.6k | " from timing information...\n"); |
1057 | 19.6k | memcpy(vui, &backup_vui, sizeof(backup_vui)); |
1058 | 19.6k | memcpy(gb, &backup, sizeof(backup)); |
1059 | 19.6k | alt = 1; |
1060 | 19.6k | goto timing_info; |
1061 | 19.6k | } |
1062 | 645k | vui->tiles_fixed_structure_flag = get_bits1(gb); |
1063 | 645k | vui->motion_vectors_over_pic_boundaries_flag = get_bits1(gb); |
1064 | 645k | vui->restricted_ref_pic_lists_flag = get_bits1(gb); |
1065 | 645k | vui->min_spatial_segmentation_idc = get_ue_golomb_long(gb); |
1066 | 645k | vui->max_bytes_per_pic_denom = get_ue_golomb_long(gb); |
1067 | 645k | vui->max_bits_per_min_cu_denom = get_ue_golomb_long(gb); |
1068 | 645k | vui->log2_max_mv_length_horizontal = get_ue_golomb_long(gb); |
1069 | 645k | vui->log2_max_mv_length_vertical = get_ue_golomb_long(gb); |
1070 | 645k | } |
1071 | | |
1072 | 1.41M | if (get_bits_left(gb) < 1 && !alt) { |
1073 | | // XXX: Alternate syntax when sps_range_extension_flag != 0? |
1074 | 101k | av_log(avctx, AV_LOG_WARNING, |
1075 | 101k | "Overread in VUI, retrying from timing information...\n"); |
1076 | 101k | memcpy(vui, &backup_vui, sizeof(backup_vui)); |
1077 | 101k | memcpy(gb, &backup, sizeof(backup)); |
1078 | 101k | alt = 1; |
1079 | 101k | goto timing_info; |
1080 | 101k | } |
1081 | 1.41M | } |
1082 | | |
1083 | | static void set_default_scaling_list_data(ScalingList *sl) |
1084 | 740k | { |
1085 | 740k | int matrixId; |
1086 | | |
1087 | 5.18M | for (matrixId = 0; matrixId < 6; matrixId++) { |
1088 | | // 4x4 default is 16 |
1089 | 4.44M | memset(sl->sl[0][matrixId], 16, 16); |
1090 | 4.44M | sl->sl_dc[0][matrixId] = 16; // default for 16x16 |
1091 | 4.44M | sl->sl_dc[1][matrixId] = 16; // default for 32x32 |
1092 | 4.44M | } |
1093 | 740k | memcpy(sl->sl[1][0], default_scaling_list_intra, 64); |
1094 | 740k | memcpy(sl->sl[1][1], default_scaling_list_intra, 64); |
1095 | 740k | memcpy(sl->sl[1][2], default_scaling_list_intra, 64); |
1096 | 740k | memcpy(sl->sl[1][3], default_scaling_list_inter, 64); |
1097 | 740k | memcpy(sl->sl[1][4], default_scaling_list_inter, 64); |
1098 | 740k | memcpy(sl->sl[1][5], default_scaling_list_inter, 64); |
1099 | 740k | memcpy(sl->sl[2][0], default_scaling_list_intra, 64); |
1100 | 740k | memcpy(sl->sl[2][1], default_scaling_list_intra, 64); |
1101 | 740k | memcpy(sl->sl[2][2], default_scaling_list_intra, 64); |
1102 | 740k | memcpy(sl->sl[2][3], default_scaling_list_inter, 64); |
1103 | 740k | memcpy(sl->sl[2][4], default_scaling_list_inter, 64); |
1104 | 740k | memcpy(sl->sl[2][5], default_scaling_list_inter, 64); |
1105 | 740k | memcpy(sl->sl[3][0], default_scaling_list_intra, 64); |
1106 | 740k | memcpy(sl->sl[3][1], default_scaling_list_intra, 64); |
1107 | 740k | memcpy(sl->sl[3][2], default_scaling_list_intra, 64); |
1108 | 740k | memcpy(sl->sl[3][3], default_scaling_list_inter, 64); |
1109 | 740k | memcpy(sl->sl[3][4], default_scaling_list_inter, 64); |
1110 | 740k | memcpy(sl->sl[3][5], default_scaling_list_inter, 64); |
1111 | 740k | } |
1112 | | |
1113 | | static int scaling_list_data(GetBitContext *gb, AVCodecContext *avctx, |
1114 | | ScalingList *sl, const HEVCSPS *sps) |
1115 | 303k | { |
1116 | 303k | uint8_t scaling_list_pred_mode_flag; |
1117 | 303k | uint8_t scaling_list_dc_coef[2][6]; |
1118 | 303k | int size_id, matrix_id, pos; |
1119 | 303k | int i; |
1120 | | |
1121 | 641k | for (size_id = 0; size_id < 4; size_id++) |
1122 | 2.93M | for (matrix_id = 0; matrix_id < 6; matrix_id += ((size_id == 3) ? 3 : 1)) { |
1123 | 2.59M | scaling_list_pred_mode_flag = get_bits1(gb); |
1124 | 2.59M | if (!scaling_list_pred_mode_flag) { |
1125 | 1.08M | unsigned int delta = get_ue_golomb_long(gb); |
1126 | | /* Only need to handle non-zero delta. Zero means default, |
1127 | | * which should already be in the arrays. */ |
1128 | 1.08M | if (delta) { |
1129 | | // Copy from previous array. |
1130 | 452k | delta *= (size_id == 3) ? 3 : 1; |
1131 | 452k | if (matrix_id < delta) { |
1132 | 245k | av_log(avctx, AV_LOG_ERROR, |
1133 | 245k | "Invalid delta in scaling list data: %d.\n", delta); |
1134 | 245k | return AVERROR_INVALIDDATA; |
1135 | 245k | } |
1136 | | |
1137 | 207k | memcpy(sl->sl[size_id][matrix_id], |
1138 | 207k | sl->sl[size_id][matrix_id - delta], |
1139 | 207k | size_id > 0 ? 64 : 16); |
1140 | 207k | if (size_id > 1) |
1141 | 26.3k | sl->sl_dc[size_id - 2][matrix_id] = sl->sl_dc[size_id - 2][matrix_id - delta]; |
1142 | 207k | } |
1143 | 1.50M | } else { |
1144 | 1.50M | int next_coef, coef_num; |
1145 | 1.50M | int32_t scaling_list_delta_coef; |
1146 | | |
1147 | 1.50M | next_coef = 8; |
1148 | 1.50M | coef_num = FFMIN(64, 1 << (4 + (size_id << 1))); |
1149 | 1.50M | if (size_id > 1) { |
1150 | 259k | int scaling_list_coeff_minus8 = get_se_golomb(gb); |
1151 | 259k | if (scaling_list_coeff_minus8 < -7 || |
1152 | 251k | scaling_list_coeff_minus8 > 247) |
1153 | 13.3k | return AVERROR_INVALIDDATA; |
1154 | 245k | scaling_list_dc_coef[size_id - 2][matrix_id] = scaling_list_coeff_minus8 + 8; |
1155 | 245k | next_coef = scaling_list_dc_coef[size_id - 2][matrix_id]; |
1156 | 245k | sl->sl_dc[size_id - 2][matrix_id] = next_coef; |
1157 | 245k | } |
1158 | 56.0M | for (i = 0; i < coef_num; i++) { |
1159 | 54.5M | if (size_id == 0) |
1160 | 13.6M | pos = 4 * ff_hevc_diag_scan4x4_y[i] + |
1161 | 13.6M | ff_hevc_diag_scan4x4_x[i]; |
1162 | 40.9M | else |
1163 | 40.9M | pos = 8 * ff_hevc_diag_scan8x8_y[i] + |
1164 | 40.9M | ff_hevc_diag_scan8x8_x[i]; |
1165 | | |
1166 | 54.5M | scaling_list_delta_coef = get_se_golomb(gb); |
1167 | 54.5M | next_coef = (next_coef + 256U + scaling_list_delta_coef) % 256; |
1168 | 54.5M | sl->sl[size_id][matrix_id][pos] = next_coef; |
1169 | 54.5M | } |
1170 | 1.49M | } |
1171 | 2.59M | } |
1172 | | |
1173 | 45.0k | if (sps->chroma_format_idc == 3) { |
1174 | 1.08M | for (i = 0; i < 64; i++) { |
1175 | 1.07M | sl->sl[3][1][i] = sl->sl[2][1][i]; |
1176 | 1.07M | sl->sl[3][2][i] = sl->sl[2][2][i]; |
1177 | 1.07M | sl->sl[3][4][i] = sl->sl[2][4][i]; |
1178 | 1.07M | sl->sl[3][5][i] = sl->sl[2][5][i]; |
1179 | 1.07M | } |
1180 | 16.7k | sl->sl_dc[1][1] = sl->sl_dc[0][1]; |
1181 | 16.7k | sl->sl_dc[1][2] = sl->sl_dc[0][2]; |
1182 | 16.7k | sl->sl_dc[1][4] = sl->sl_dc[0][4]; |
1183 | 16.7k | sl->sl_dc[1][5] = sl->sl_dc[0][5]; |
1184 | 16.7k | } |
1185 | | |
1186 | | |
1187 | 45.0k | return 0; |
1188 | 303k | } |
1189 | | |
1190 | | static int map_pixel_format(AVCodecContext *avctx, HEVCSPS *sps) |
1191 | 2.72M | { |
1192 | 2.72M | const AVPixFmtDescriptor *desc; |
1193 | 2.72M | switch (sps->bit_depth) { |
1194 | 902k | case 8: |
1195 | 902k | if (sps->chroma_format_idc == 0) sps->pix_fmt = AV_PIX_FMT_GRAY8; |
1196 | 902k | if (sps->chroma_format_idc == 1) sps->pix_fmt = AV_PIX_FMT_YUV420P; |
1197 | 902k | if (sps->chroma_format_idc == 2) sps->pix_fmt = AV_PIX_FMT_YUV422P; |
1198 | 902k | if (sps->chroma_format_idc == 3) sps->pix_fmt = AV_PIX_FMT_YUV444P; |
1199 | 902k | break; |
1200 | 1.36M | case 9: |
1201 | 1.36M | if (sps->chroma_format_idc == 0) sps->pix_fmt = AV_PIX_FMT_GRAY9; |
1202 | 1.36M | if (sps->chroma_format_idc == 1) sps->pix_fmt = AV_PIX_FMT_YUV420P9; |
1203 | 1.36M | if (sps->chroma_format_idc == 2) sps->pix_fmt = AV_PIX_FMT_YUV422P9; |
1204 | 1.36M | if (sps->chroma_format_idc == 3) sps->pix_fmt = AV_PIX_FMT_YUV444P9; |
1205 | 1.36M | break; |
1206 | 310k | case 10: |
1207 | 310k | if (sps->chroma_format_idc == 0) sps->pix_fmt = AV_PIX_FMT_GRAY10; |
1208 | 310k | if (sps->chroma_format_idc == 1) sps->pix_fmt = AV_PIX_FMT_YUV420P10; |
1209 | 310k | if (sps->chroma_format_idc == 2) sps->pix_fmt = AV_PIX_FMT_YUV422P10; |
1210 | 310k | if (sps->chroma_format_idc == 3) sps->pix_fmt = AV_PIX_FMT_YUV444P10; |
1211 | 310k | break; |
1212 | 86.0k | case 12: |
1213 | 86.0k | if (sps->chroma_format_idc == 0) sps->pix_fmt = AV_PIX_FMT_GRAY12; |
1214 | 86.0k | if (sps->chroma_format_idc == 1) sps->pix_fmt = AV_PIX_FMT_YUV420P12; |
1215 | 86.0k | if (sps->chroma_format_idc == 2) sps->pix_fmt = AV_PIX_FMT_YUV422P12; |
1216 | 86.0k | if (sps->chroma_format_idc == 3) sps->pix_fmt = AV_PIX_FMT_YUV444P12; |
1217 | 86.0k | break; |
1218 | 56.4k | default: |
1219 | 56.4k | av_log(avctx, AV_LOG_ERROR, |
1220 | 56.4k | "The following bit-depths are currently specified: 8, 9, 10 and 12 bits, " |
1221 | 56.4k | "chroma_format_idc is %d, depth is %d\n", |
1222 | 56.4k | sps->chroma_format_idc, sps->bit_depth); |
1223 | 56.4k | return AVERROR_INVALIDDATA; |
1224 | 2.72M | } |
1225 | | |
1226 | 2.66M | desc = av_pix_fmt_desc_get(sps->pix_fmt); |
1227 | 2.66M | if (!desc) |
1228 | 0 | return AVERROR(EINVAL); |
1229 | | |
1230 | 2.66M | sps->hshift[0] = sps->vshift[0] = 0; |
1231 | 2.66M | sps->hshift[2] = sps->hshift[1] = desc->log2_chroma_w; |
1232 | 2.66M | sps->vshift[2] = sps->vshift[1] = desc->log2_chroma_h; |
1233 | | |
1234 | 2.66M | sps->pixel_shift = sps->bit_depth > 8; |
1235 | | |
1236 | 2.66M | return 0; |
1237 | 2.66M | } |
1238 | | |
1239 | | int ff_hevc_parse_sps(HEVCSPS *sps, GetBitContext *gb, unsigned int *sps_id, |
1240 | | unsigned nuh_layer_id, int apply_defdispwin, |
1241 | | const HEVCVPS * const *vps_list, AVCodecContext *avctx) |
1242 | 4.10M | { |
1243 | 4.10M | HEVCWindow *ow; |
1244 | 4.10M | int ret = 0; |
1245 | 4.10M | int bit_depth_chroma, num_comps, multi_layer_ext; |
1246 | 4.10M | int vps_max_sub_layers; |
1247 | 4.10M | int i; |
1248 | | |
1249 | | // Coded parameters |
1250 | | |
1251 | 4.10M | sps->vps_id = get_bits(gb, 4); |
1252 | | |
1253 | 4.10M | if (vps_list) { |
1254 | 4.10M | if (!vps_list[sps->vps_id]) { |
1255 | 172k | av_log(avctx, AV_LOG_ERROR, "VPS %d does not exist\n", |
1256 | 172k | sps->vps_id); |
1257 | 172k | return AVERROR_INVALIDDATA; |
1258 | 172k | } |
1259 | 3.93M | sps->vps = av_refstruct_ref_c(vps_list[sps->vps_id]); |
1260 | 3.93M | } |
1261 | | |
1262 | 3.93M | sps->max_sub_layers = get_bits(gb, 3) + 1; |
1263 | 3.93M | multi_layer_ext = nuh_layer_id > 0 && |
1264 | 1.53k | sps->max_sub_layers == HEVC_MAX_SUB_LAYERS + 1; |
1265 | 3.93M | if (multi_layer_ext) { |
1266 | 470 | if (!sps->vps) |
1267 | 0 | return AVERROR(EINVAL); |
1268 | | |
1269 | 470 | sps->max_sub_layers = sps->vps->vps_max_sub_layers; |
1270 | 470 | } |
1271 | 3.93M | vps_max_sub_layers = sps->vps ? sps->vps->vps_max_sub_layers |
1272 | 3.93M | : FFMIN(sps->max_sub_layers, HEVC_MAX_SUB_LAYERS); |
1273 | | |
1274 | 3.93M | if (sps->max_sub_layers > vps_max_sub_layers) { |
1275 | 60.5k | av_log(avctx, AV_LOG_ERROR, "sps_max_sub_layers out of range: %d\n", |
1276 | 60.5k | sps->max_sub_layers); |
1277 | 60.5k | return AVERROR_INVALIDDATA; |
1278 | 60.5k | } |
1279 | | |
1280 | 3.87M | if (!multi_layer_ext) { |
1281 | 3.86M | sps->temporal_id_nesting = get_bits(gb, 1); |
1282 | | |
1283 | 3.86M | if ((ret = parse_ptl(gb, avctx, 1, &sps->ptl, sps->max_sub_layers)) < 0) |
1284 | 163k | return ret; |
1285 | 3.86M | } else { |
1286 | 470 | sps->temporal_id_nesting = sps->max_sub_layers > 1 ? |
1287 | 259 | sps->vps->vps_max_sub_layers : 1; |
1288 | 470 | } |
1289 | | |
1290 | 3.70M | *sps_id = get_ue_golomb_long(gb); |
1291 | 3.70M | if (*sps_id >= HEVC_MAX_SPS_COUNT) { |
1292 | 211k | av_log(avctx, AV_LOG_ERROR, "SPS id out of range: %d\n", *sps_id); |
1293 | 211k | return AVERROR_INVALIDDATA; |
1294 | 211k | } |
1295 | | |
1296 | 3.49M | if (multi_layer_ext) { |
1297 | 470 | const RepFormat *rf = &sps->vps->rep_format; |
1298 | | |
1299 | 470 | if (sps->vps->nb_layers == 1) { |
1300 | 442 | av_log(avctx, AV_LOG_WARNING, "SPS %d references an unsupported VPS extension. Ignoring\n", |
1301 | 442 | *sps_id); |
1302 | 442 | return AVERROR(ENOSYS); |
1303 | 442 | } |
1304 | | |
1305 | 28 | if (get_bits1(gb) && // update_rep_format_flag |
1306 | 1 | get_bits(gb, 8)) { // sps_rep_format_idx |
1307 | 1 | av_log(avctx, AV_LOG_ERROR, "sps_rep_format_idx!=0\n"); |
1308 | 1 | return AVERROR_PATCHWELCOME; |
1309 | 1 | } |
1310 | | |
1311 | 27 | sps->separate_colour_plane = rf->separate_colour_plane_flag; |
1312 | 27 | sps->chroma_format_idc = sps->separate_colour_plane ? 0 : |
1313 | 27 | rf->chroma_format_idc; |
1314 | 27 | sps->bit_depth = rf->bit_depth_luma; |
1315 | 27 | sps->width = rf->pic_width_in_luma_samples; |
1316 | 27 | sps->height = rf->pic_height_in_luma_samples; |
1317 | 27 | if ((ret = av_image_check_size(sps->width, |
1318 | 27 | sps->height, 0, avctx)) < 0) |
1319 | 1 | return ret; |
1320 | | |
1321 | 26 | sps->pic_conf_win.left_offset = rf->conf_win.left_offset; |
1322 | 26 | sps->pic_conf_win.right_offset = rf->conf_win.right_offset; |
1323 | 26 | sps->pic_conf_win.top_offset = rf->conf_win.top_offset; |
1324 | 26 | sps->pic_conf_win.bottom_offset = rf->conf_win.bottom_offset; |
1325 | | |
1326 | 3.49M | } else { |
1327 | 3.49M | sps->chroma_format_idc = get_ue_golomb_long(gb); |
1328 | 3.49M | if (sps->chroma_format_idc > 3U) { |
1329 | 79.0k | av_log(avctx, AV_LOG_ERROR, "chroma_format_idc %d is invalid\n", sps->chroma_format_idc); |
1330 | 79.0k | return AVERROR_INVALIDDATA; |
1331 | 79.0k | } |
1332 | | |
1333 | 3.41M | if (sps->chroma_format_idc == 3) |
1334 | 505k | sps->separate_colour_plane = get_bits1(gb); |
1335 | | |
1336 | 3.41M | if (sps->separate_colour_plane) |
1337 | 46.0k | sps->chroma_format_idc = 0; |
1338 | | |
1339 | 3.41M | sps->width = get_ue_golomb_long(gb); |
1340 | 3.41M | sps->height = get_ue_golomb_long(gb); |
1341 | 3.41M | if ((ret = av_image_check_size(sps->width, |
1342 | 3.41M | sps->height, 0, avctx)) < 0) |
1343 | 319k | return ret; |
1344 | | |
1345 | 3.09M | sps->conformance_window = get_bits1(gb); |
1346 | 3.09M | if (sps->conformance_window) { |
1347 | 1.19M | ret = read_window(&sps->pic_conf_win, gb, sps->chroma_format_idc, sps->width, sps->height); |
1348 | 1.19M | if (ret < 0) |
1349 | 275k | return ret; |
1350 | | |
1351 | 920k | if (avctx->flags2 & AV_CODEC_FLAG2_IGNORE_CROP) { |
1352 | 0 | av_log(avctx, AV_LOG_DEBUG, |
1353 | 0 | "discarding sps conformance window, " |
1354 | 0 | "original values are l:%u r:%u t:%u b:%u\n", |
1355 | 0 | sps->pic_conf_win.left_offset, |
1356 | 0 | sps->pic_conf_win.right_offset, |
1357 | 0 | sps->pic_conf_win.top_offset, |
1358 | 0 | sps->pic_conf_win.bottom_offset); |
1359 | |
|
1360 | 0 | sps->pic_conf_win.left_offset = |
1361 | 0 | sps->pic_conf_win.right_offset = |
1362 | 0 | sps->pic_conf_win.top_offset = |
1363 | 0 | sps->pic_conf_win.bottom_offset = 0; |
1364 | 0 | } |
1365 | 920k | } |
1366 | | |
1367 | 2.82M | sps->bit_depth = get_ue_golomb_31(gb) + 8; |
1368 | 2.82M | if (sps->bit_depth > 16) { |
1369 | 37.6k | av_log(avctx, AV_LOG_ERROR, "Luma bit depth (%d) is out of range\n", |
1370 | 37.6k | sps->bit_depth); |
1371 | 37.6k | return AVERROR_INVALIDDATA; |
1372 | 37.6k | } |
1373 | 2.78M | bit_depth_chroma = get_ue_golomb_31(gb) + 8; |
1374 | 2.78M | if (bit_depth_chroma > 16) { |
1375 | 20.7k | av_log(avctx, AV_LOG_ERROR, "Chroma bit depth (%d) is out of range\n", |
1376 | 20.7k | bit_depth_chroma); |
1377 | 20.7k | return AVERROR_INVALIDDATA; |
1378 | 20.7k | } |
1379 | 2.76M | if (sps->chroma_format_idc && bit_depth_chroma != sps->bit_depth) { |
1380 | 38.9k | av_log(avctx, AV_LOG_ERROR, |
1381 | 38.9k | "Luma bit depth (%d) is different from chroma bit depth (%d), " |
1382 | 38.9k | "this is unsupported.\n", |
1383 | 38.9k | sps->bit_depth, bit_depth_chroma); |
1384 | 38.9k | return AVERROR_INVALIDDATA; |
1385 | 38.9k | } |
1386 | 2.72M | sps->bit_depth_chroma = bit_depth_chroma; |
1387 | 2.72M | } |
1388 | | |
1389 | 2.72M | sps->output_window = sps->pic_conf_win; |
1390 | | |
1391 | 2.72M | ret = map_pixel_format(avctx, sps); |
1392 | 2.72M | if (ret < 0) |
1393 | 56.4k | return ret; |
1394 | | |
1395 | 2.66M | sps->log2_max_poc_lsb = get_ue_golomb_long(gb) + 4; |
1396 | 2.66M | if (sps->log2_max_poc_lsb > 16) { |
1397 | 13.6k | av_log(avctx, AV_LOG_ERROR, "log2_max_pic_order_cnt_lsb_minus4 out range: %d\n", |
1398 | 13.6k | sps->log2_max_poc_lsb - 4); |
1399 | 13.6k | return AVERROR_INVALIDDATA; |
1400 | 13.6k | } |
1401 | | |
1402 | 2.65M | if (!multi_layer_ext) { |
1403 | 2.65M | int start; |
1404 | | |
1405 | 2.65M | sps->sublayer_ordering_info = get_bits1(gb); |
1406 | 2.65M | start = sps->sublayer_ordering_info ? 0 : sps->max_sub_layers - 1; |
1407 | 15.6M | for (i = start; i < sps->max_sub_layers; i++) { |
1408 | 13.0M | sps->temporal_layer[i].max_dec_pic_buffering = get_ue_golomb_long(gb) + 1; |
1409 | 13.0M | sps->temporal_layer[i].num_reorder_pics = get_ue_golomb_long(gb); |
1410 | 13.0M | sps->temporal_layer[i].max_latency_increase = get_ue_golomb_long(gb) - 1; |
1411 | 13.0M | if (sps->temporal_layer[i].max_dec_pic_buffering > (unsigned)HEVC_MAX_DPB_SIZE) { |
1412 | 51.8k | av_log(avctx, AV_LOG_ERROR, "sps_max_dec_pic_buffering_minus1 out of range: %d\n", |
1413 | 51.8k | sps->temporal_layer[i].max_dec_pic_buffering - 1U); |
1414 | 51.8k | return AVERROR_INVALIDDATA; |
1415 | 51.8k | } |
1416 | 12.9M | if (sps->temporal_layer[i].num_reorder_pics > sps->temporal_layer[i].max_dec_pic_buffering - 1) { |
1417 | 4.15M | av_log(avctx, AV_LOG_WARNING, "sps_max_num_reorder_pics out of range: %d\n", |
1418 | 4.15M | sps->temporal_layer[i].num_reorder_pics); |
1419 | 4.15M | if (avctx->err_recognition & AV_EF_EXPLODE || |
1420 | 4.15M | sps->temporal_layer[i].num_reorder_pics > HEVC_MAX_DPB_SIZE - 1) { |
1421 | 17.3k | return AVERROR_INVALIDDATA; |
1422 | 17.3k | } |
1423 | 4.14M | sps->temporal_layer[i].max_dec_pic_buffering = sps->temporal_layer[i].num_reorder_pics + 1; |
1424 | 4.14M | } |
1425 | 12.9M | } |
1426 | | |
1427 | 2.58M | if (!sps->sublayer_ordering_info) { |
1428 | 1.32M | for (i = 0; i < start; i++) { |
1429 | 938k | sps->temporal_layer[i].max_dec_pic_buffering = sps->temporal_layer[start].max_dec_pic_buffering; |
1430 | 938k | sps->temporal_layer[i].num_reorder_pics = sps->temporal_layer[start].num_reorder_pics; |
1431 | 938k | sps->temporal_layer[i].max_latency_increase = sps->temporal_layer[start].max_latency_increase; |
1432 | 938k | } |
1433 | 383k | } |
1434 | 2.58M | } else { |
1435 | 52 | for (int i = 0; i < sps->max_sub_layers; i++) { |
1436 | 26 | sps->temporal_layer[i].max_dec_pic_buffering = sps->vps->dpb_size.max_dec_pic_buffering; |
1437 | 26 | sps->temporal_layer[i].num_reorder_pics = sps->vps->dpb_size.max_num_reorder_pics; |
1438 | 26 | sps->temporal_layer[i].max_latency_increase = sps->vps->dpb_size.max_latency_increase; |
1439 | 26 | } |
1440 | 26 | } |
1441 | | |
1442 | 2.58M | sps->log2_min_cb_size = get_ue_golomb_long(gb) + 3; |
1443 | 2.58M | sps->log2_diff_max_min_coding_block_size = get_ue_golomb_long(gb); |
1444 | 2.58M | sps->log2_min_tb_size = get_ue_golomb_long(gb) + 2; |
1445 | 2.58M | sps->log2_diff_max_min_transform_block_size = get_ue_golomb_long(gb); |
1446 | 2.58M | sps->log2_max_trafo_size = sps->log2_diff_max_min_transform_block_size + |
1447 | 2.58M | sps->log2_min_tb_size; |
1448 | | |
1449 | 2.58M | if (sps->log2_min_cb_size < 3 || sps->log2_min_cb_size > 30) { |
1450 | 24.4k | av_log(avctx, AV_LOG_ERROR, "Invalid value %d for log2_min_cb_size", sps->log2_min_cb_size); |
1451 | 24.4k | return AVERROR_INVALIDDATA; |
1452 | 24.4k | } |
1453 | | |
1454 | 2.55M | if (sps->log2_diff_max_min_coding_block_size > 30) { |
1455 | 16.4k | 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); |
1456 | 16.4k | return AVERROR_INVALIDDATA; |
1457 | 16.4k | } |
1458 | | |
1459 | 2.54M | if (sps->log2_min_tb_size >= sps->log2_min_cb_size || sps->log2_min_tb_size < 2) { |
1460 | 51.7k | av_log(avctx, AV_LOG_ERROR, "Invalid value for log2_min_tb_size"); |
1461 | 51.7k | return AVERROR_INVALIDDATA; |
1462 | 51.7k | } |
1463 | | |
1464 | 2.49M | if (sps->log2_diff_max_min_transform_block_size > 30) { |
1465 | 27.8k | av_log(avctx, AV_LOG_ERROR, "Invalid value %d for log2_diff_max_min_transform_block_size", |
1466 | 27.8k | sps->log2_diff_max_min_transform_block_size); |
1467 | 27.8k | return AVERROR_INVALIDDATA; |
1468 | 27.8k | } |
1469 | | |
1470 | 2.46M | sps->max_transform_hierarchy_depth_inter = get_ue_golomb_long(gb); |
1471 | 2.46M | sps->max_transform_hierarchy_depth_intra = get_ue_golomb_long(gb); |
1472 | | |
1473 | 2.46M | sps->scaling_list_enabled = get_bits1(gb); |
1474 | 2.46M | if (sps->scaling_list_enabled) { |
1475 | 594k | set_default_scaling_list_data(&sps->scaling_list); |
1476 | | |
1477 | 594k | if (multi_layer_ext && get_bits1(gb)) { // sps_infer_scaling_list_flag |
1478 | 2 | av_log(avctx, AV_LOG_ERROR, "sps_infer_scaling_list_flag=1 not supported\n"); |
1479 | 2 | return AVERROR_PATCHWELCOME; |
1480 | 2 | } |
1481 | | |
1482 | 594k | if (get_bits1(gb)) { |
1483 | 158k | ret = scaling_list_data(gb, avctx, &sps->scaling_list, sps); |
1484 | 158k | if (ret < 0) |
1485 | 134k | return ret; |
1486 | 158k | } |
1487 | 594k | } |
1488 | | |
1489 | 2.32M | sps->amp_enabled = get_bits1(gb); |
1490 | 2.32M | sps->sao_enabled = get_bits1(gb); |
1491 | | |
1492 | 2.32M | sps->pcm_enabled = get_bits1(gb); |
1493 | 2.32M | if (sps->pcm_enabled) { |
1494 | 490k | sps->pcm.bit_depth = get_bits(gb, 4) + 1; |
1495 | 490k | sps->pcm.bit_depth_chroma = get_bits(gb, 4) + 1; |
1496 | 490k | sps->pcm.log2_min_pcm_cb_size = get_ue_golomb_long(gb) + 3; |
1497 | 490k | sps->pcm.log2_max_pcm_cb_size = sps->pcm.log2_min_pcm_cb_size + |
1498 | 490k | get_ue_golomb_long(gb); |
1499 | 490k | if (FFMAX(sps->pcm.bit_depth, sps->pcm.bit_depth_chroma) > sps->bit_depth) { |
1500 | 19.2k | av_log(avctx, AV_LOG_ERROR, |
1501 | 19.2k | "PCM bit depth (%d, %d) is greater than normal bit depth (%d)\n", |
1502 | 19.2k | sps->pcm.bit_depth, sps->pcm.bit_depth_chroma, sps->bit_depth); |
1503 | 19.2k | return AVERROR_INVALIDDATA; |
1504 | 19.2k | } |
1505 | | |
1506 | 470k | sps->pcm_loop_filter_disabled = get_bits1(gb); |
1507 | 470k | } |
1508 | | |
1509 | 2.30M | sps->nb_st_rps = get_ue_golomb_long(gb); |
1510 | 2.30M | if (sps->nb_st_rps > HEVC_MAX_SHORT_TERM_REF_PIC_SETS) { |
1511 | 49.4k | av_log(avctx, AV_LOG_ERROR, "Too many short term RPS: %d.\n", |
1512 | 49.4k | sps->nb_st_rps); |
1513 | 49.4k | return AVERROR_INVALIDDATA; |
1514 | 49.4k | } |
1515 | 10.8M | for (i = 0; i < sps->nb_st_rps; i++) { |
1516 | 8.75M | if ((ret = ff_hevc_decode_short_term_rps(gb, avctx, &sps->st_rps[i], |
1517 | 8.75M | sps, 0)) < 0) |
1518 | 164k | return ret; |
1519 | 8.75M | } |
1520 | | |
1521 | 2.09M | sps->long_term_ref_pics_present = get_bits1(gb); |
1522 | 2.09M | if (sps->long_term_ref_pics_present) { |
1523 | 1.10M | sps->num_long_term_ref_pics_sps = get_ue_golomb_long(gb); |
1524 | 1.10M | if (sps->num_long_term_ref_pics_sps > HEVC_MAX_LONG_TERM_REF_PICS) { |
1525 | 12.0k | av_log(avctx, AV_LOG_ERROR, "Too many long term ref pics: %d.\n", |
1526 | 12.0k | sps->num_long_term_ref_pics_sps); |
1527 | 12.0k | return AVERROR_INVALIDDATA; |
1528 | 12.0k | } |
1529 | | |
1530 | 1.09M | sps->used_by_curr_pic_lt = 0; |
1531 | 1.85M | for (i = 0; i < sps->num_long_term_ref_pics_sps; i++) { |
1532 | 767k | sps->lt_ref_pic_poc_lsb_sps[i] = get_bits(gb, sps->log2_max_poc_lsb); |
1533 | 767k | sps->used_by_curr_pic_lt |= get_bits1(gb) << i; |
1534 | 767k | } |
1535 | 1.09M | } |
1536 | | |
1537 | 2.08M | sps->temporal_mvp_enabled = get_bits1(gb); |
1538 | 2.08M | sps->strong_intra_smoothing_enabled = get_bits1(gb); |
1539 | 2.08M | sps->vui.common.sar = (AVRational){0, 1}; |
1540 | 2.08M | sps->vui_present = get_bits1(gb); |
1541 | 2.08M | if (sps->vui_present) |
1542 | 1.31M | decode_vui(gb, avctx, apply_defdispwin, sps); |
1543 | | |
1544 | 2.08M | sps->extension_present = get_bits1(gb); |
1545 | 2.08M | if (sps->extension_present) { |
1546 | 796k | sps->range_extension = get_bits1(gb); |
1547 | 796k | sps->multilayer_extension = get_bits1(gb); |
1548 | 796k | sps->sps_3d_extension = get_bits1(gb); |
1549 | 796k | sps->scc_extension = get_bits1(gb); |
1550 | 796k | skip_bits(gb, 4); // sps_extension_4bits |
1551 | | |
1552 | 796k | if (sps->range_extension) { |
1553 | 552k | sps->transform_skip_rotation_enabled = get_bits1(gb); |
1554 | 552k | sps->transform_skip_context_enabled = get_bits1(gb); |
1555 | 552k | sps->implicit_rdpcm_enabled = get_bits1(gb); |
1556 | 552k | sps->explicit_rdpcm_enabled = get_bits1(gb); |
1557 | | |
1558 | 552k | sps->extended_precision_processing = get_bits1(gb); |
1559 | 552k | if (sps->extended_precision_processing) |
1560 | 112k | av_log(avctx, AV_LOG_WARNING, |
1561 | 112k | "extended_precision_processing_flag not yet implemented\n"); |
1562 | | |
1563 | 552k | sps->intra_smoothing_disabled = get_bits1(gb); |
1564 | 552k | sps->high_precision_offsets_enabled = get_bits1(gb); |
1565 | 552k | if (sps->high_precision_offsets_enabled) |
1566 | 78.6k | av_log(avctx, AV_LOG_WARNING, |
1567 | 78.6k | "high_precision_offsets_enabled_flag not yet implemented\n"); |
1568 | | |
1569 | 552k | sps->persistent_rice_adaptation_enabled = get_bits1(gb); |
1570 | | |
1571 | 552k | sps->cabac_bypass_alignment_enabled = get_bits1(gb); |
1572 | 552k | if (sps->cabac_bypass_alignment_enabled) |
1573 | 91.7k | av_log(avctx, AV_LOG_WARNING, |
1574 | 91.7k | "cabac_bypass_alignment_enabled_flag not yet implemented\n"); |
1575 | 552k | } |
1576 | | |
1577 | 796k | if (sps->multilayer_extension) { |
1578 | 192k | skip_bits1(gb); // inter_view_mv_vert_constraint_flag |
1579 | 192k | } |
1580 | | |
1581 | 796k | if (sps->sps_3d_extension) { |
1582 | 962k | for (i = 0; i <= 1; i++) { |
1583 | 641k | skip_bits1(gb); // iv_di_mc_enabled_flag |
1584 | 641k | skip_bits1(gb); // iv_mv_scal_enabled_flag |
1585 | 641k | if (i == 0) { |
1586 | 320k | get_ue_golomb_long(gb); // log2_ivmc_sub_pb_size_minus3 |
1587 | 320k | skip_bits1(gb); // iv_res_pred_enabled_flag |
1588 | 320k | skip_bits1(gb); // depth_ref_enabled_flag |
1589 | 320k | skip_bits1(gb); // vsp_mc_enabled_flag |
1590 | 320k | skip_bits1(gb); // dbbp_enabled_flag |
1591 | 320k | } else { |
1592 | 320k | skip_bits1(gb); // tex_mc_enabled_flag |
1593 | 320k | get_ue_golomb_long(gb); // log2_ivmc_sub_pb_size_minus3 |
1594 | 320k | skip_bits1(gb); // intra_contour_enabled_flag |
1595 | 320k | skip_bits1(gb); // intra_dc_only_wedge_enabled_flag |
1596 | 320k | skip_bits1(gb); // cqt_cu_part_pred_enabled_flag |
1597 | 320k | skip_bits1(gb); // inter_dc_only_enabled_flag |
1598 | 320k | skip_bits1(gb); // skip_intra_enabled_flag |
1599 | 320k | } |
1600 | 641k | } |
1601 | 320k | av_log(avctx, AV_LOG_WARNING, |
1602 | 320k | "sps_3d_extension_flag not yet implemented\n"); |
1603 | 320k | } |
1604 | | |
1605 | 796k | if (sps->scc_extension) { |
1606 | 216k | sps->curr_pic_ref_enabled = get_bits1(gb); |
1607 | 216k | sps->palette_mode_enabled = get_bits1(gb); |
1608 | 216k | if (sps->palette_mode_enabled) { |
1609 | 84.2k | sps->palette_max_size = get_ue_golomb(gb); |
1610 | 84.2k | sps->delta_palette_max_predictor_size = get_ue_golomb(gb); |
1611 | 84.2k | sps->palette_predictor_initializers_present = get_bits1(gb); |
1612 | | |
1613 | 84.2k | if (sps->palette_predictor_initializers_present) { |
1614 | 65.3k | sps->sps_num_palette_predictor_initializers = get_ue_golomb(gb) + 1; |
1615 | 65.3k | if (sps->sps_num_palette_predictor_initializers > HEVC_MAX_PALETTE_PREDICTOR_SIZE) { |
1616 | 4.65k | av_log(avctx, AV_LOG_ERROR, |
1617 | 4.65k | "sps_num_palette_predictor_initializers out of range: %u\n", |
1618 | 4.65k | sps->sps_num_palette_predictor_initializers); |
1619 | 4.65k | return AVERROR_INVALIDDATA; |
1620 | 4.65k | } |
1621 | 60.7k | num_comps = !sps->chroma_format_idc ? 1 : 3; |
1622 | 209k | for (int comp = 0; comp < num_comps; comp++) { |
1623 | 148k | int bit_depth = !comp ? sps->bit_depth : sps->bit_depth_chroma; |
1624 | 4.26M | for (i = 0; i < sps->sps_num_palette_predictor_initializers; i++) |
1625 | 4.12M | sps->sps_palette_predictor_initializer[comp][i] = get_bits(gb, bit_depth); |
1626 | 148k | } |
1627 | 60.7k | } |
1628 | 84.2k | } |
1629 | 211k | sps->motion_vector_resolution_control_idc = get_bits(gb, 2); |
1630 | 211k | sps->intra_boundary_filtering_disabled = get_bits1(gb); |
1631 | 211k | } |
1632 | 796k | } |
1633 | 2.07M | if (apply_defdispwin) { |
1634 | 2.00M | sps->output_window.left_offset += sps->vui.def_disp_win.left_offset; |
1635 | 2.00M | sps->output_window.right_offset += sps->vui.def_disp_win.right_offset; |
1636 | 2.00M | sps->output_window.top_offset += sps->vui.def_disp_win.top_offset; |
1637 | 2.00M | sps->output_window.bottom_offset += sps->vui.def_disp_win.bottom_offset; |
1638 | 2.00M | } |
1639 | | |
1640 | 2.07M | ow = &sps->output_window; |
1641 | 2.07M | if (ow->left_offset >= INT_MAX - ow->right_offset || |
1642 | 2.07M | ow->top_offset >= INT_MAX - ow->bottom_offset || |
1643 | 2.07M | ow->left_offset + ow->right_offset >= sps->width || |
1644 | 2.07M | ow->top_offset + ow->bottom_offset >= sps->height) { |
1645 | 2.80k | av_log(avctx, AV_LOG_WARNING, "Invalid cropping offsets: %u/%u/%u/%u\n", |
1646 | 2.80k | ow->left_offset, ow->right_offset, ow->top_offset, ow->bottom_offset); |
1647 | 2.80k | if (avctx->err_recognition & AV_EF_EXPLODE) { |
1648 | 0 | return AVERROR_INVALIDDATA; |
1649 | 0 | } |
1650 | 2.80k | av_log(avctx, AV_LOG_WARNING, |
1651 | 2.80k | "Displaying the whole video surface.\n"); |
1652 | 2.80k | memset(ow, 0, sizeof(*ow)); |
1653 | 2.80k | memset(&sps->pic_conf_win, 0, sizeof(sps->pic_conf_win)); |
1654 | 2.80k | } |
1655 | | |
1656 | | // Inferred parameters |
1657 | 2.07M | sps->log2_ctb_size = sps->log2_min_cb_size + |
1658 | 2.07M | sps->log2_diff_max_min_coding_block_size; |
1659 | 2.07M | sps->log2_min_pu_size = sps->log2_min_cb_size - 1; |
1660 | | |
1661 | 2.07M | if (sps->log2_ctb_size > HEVC_MAX_LOG2_CTB_SIZE) { |
1662 | 143k | av_log(avctx, AV_LOG_ERROR, "CTB size out of range: 2^%d\n", sps->log2_ctb_size); |
1663 | 143k | return AVERROR_INVALIDDATA; |
1664 | 143k | } |
1665 | 1.93M | if (sps->log2_ctb_size < 4) { |
1666 | 203k | av_log(avctx, |
1667 | 203k | AV_LOG_ERROR, |
1668 | 203k | "log2_ctb_size %d differs from the bounds of any known profile\n", |
1669 | 203k | sps->log2_ctb_size); |
1670 | 203k | avpriv_request_sample(avctx, "log2_ctb_size %d", sps->log2_ctb_size); |
1671 | 203k | return AVERROR_INVALIDDATA; |
1672 | 203k | } |
1673 | | |
1674 | 1.73M | sps->ctb_width = (sps->width + (1 << sps->log2_ctb_size) - 1) >> sps->log2_ctb_size; |
1675 | 1.73M | sps->ctb_height = (sps->height + (1 << sps->log2_ctb_size) - 1) >> sps->log2_ctb_size; |
1676 | 1.73M | sps->ctb_size = sps->ctb_width * sps->ctb_height; |
1677 | | |
1678 | 1.73M | sps->min_cb_width = sps->width >> sps->log2_min_cb_size; |
1679 | 1.73M | sps->min_cb_height = sps->height >> sps->log2_min_cb_size; |
1680 | 1.73M | sps->min_tb_width = sps->width >> sps->log2_min_tb_size; |
1681 | 1.73M | sps->min_tb_height = sps->height >> sps->log2_min_tb_size; |
1682 | 1.73M | sps->min_pu_width = sps->width >> sps->log2_min_pu_size; |
1683 | 1.73M | sps->min_pu_height = sps->height >> sps->log2_min_pu_size; |
1684 | 1.73M | sps->tb_mask = (1 << (sps->log2_ctb_size - sps->log2_min_tb_size)) - 1; |
1685 | | |
1686 | 1.73M | sps->qp_bd_offset = 6 * (sps->bit_depth - 8); |
1687 | | |
1688 | 1.73M | if (av_zero_extend(sps->width, sps->log2_min_cb_size) || |
1689 | 1.66M | av_zero_extend(sps->height, sps->log2_min_cb_size)) { |
1690 | 78.7k | av_log(avctx, AV_LOG_ERROR, "Invalid coded frame dimensions.\n"); |
1691 | 78.7k | return AVERROR_INVALIDDATA; |
1692 | 78.7k | } |
1693 | | |
1694 | 1.65M | if (sps->max_transform_hierarchy_depth_inter > sps->log2_ctb_size - sps->log2_min_tb_size) { |
1695 | 3.91k | av_log(avctx, AV_LOG_ERROR, "max_transform_hierarchy_depth_inter out of range: %d\n", |
1696 | 3.91k | sps->max_transform_hierarchy_depth_inter); |
1697 | 3.91k | return AVERROR_INVALIDDATA; |
1698 | 3.91k | } |
1699 | 1.64M | if (sps->max_transform_hierarchy_depth_intra > sps->log2_ctb_size - sps->log2_min_tb_size) { |
1700 | 141k | av_log(avctx, AV_LOG_ERROR, "max_transform_hierarchy_depth_intra out of range: %d\n", |
1701 | 141k | sps->max_transform_hierarchy_depth_intra); |
1702 | 141k | return AVERROR_INVALIDDATA; |
1703 | 141k | } |
1704 | 1.50M | if (sps->log2_max_trafo_size > FFMIN(sps->log2_ctb_size, 5)) { |
1705 | 12.4k | av_log(avctx, AV_LOG_ERROR, |
1706 | 12.4k | "max transform block size out of range: %d\n", |
1707 | 12.4k | sps->log2_max_trafo_size); |
1708 | 12.4k | return AVERROR_INVALIDDATA; |
1709 | 12.4k | } |
1710 | | |
1711 | 1.49M | if (get_bits_left(gb) < 0) { |
1712 | 45.4k | av_log(avctx, AV_LOG_ERROR, |
1713 | 45.4k | "Overread SPS by %d bits\n", -get_bits_left(gb)); |
1714 | 45.4k | return AVERROR_INVALIDDATA; |
1715 | 45.4k | } |
1716 | | |
1717 | 1.45M | return 0; |
1718 | 1.49M | } |
1719 | | |
1720 | | static void hevc_sps_free(AVRefStructOpaque opaque, void *obj) |
1721 | 4.10M | { |
1722 | 4.10M | HEVCSPS *sps = obj; |
1723 | | |
1724 | 4.10M | av_refstruct_unref(&sps->vps); |
1725 | | |
1726 | 4.10M | av_freep(&sps->data); |
1727 | 4.10M | } |
1728 | | |
1729 | | static int compare_sps(const HEVCSPS *sps1, const HEVCSPS *sps2) |
1730 | 1.23M | { |
1731 | 1.23M | return sps1->data_size == sps2->data_size && |
1732 | 487k | !memcmp(sps1->data, sps2->data, sps1->data_size); |
1733 | 1.23M | } |
1734 | | |
1735 | | int ff_hevc_decode_nal_sps(GetBitContext *gb, AVCodecContext *avctx, |
1736 | | HEVCParamSets *ps, unsigned nuh_layer_id, |
1737 | | int apply_defdispwin) |
1738 | 4.10M | { |
1739 | 4.10M | HEVCSPS *sps = av_refstruct_alloc_ext(sizeof(*sps), 0, NULL, hevc_sps_free); |
1740 | 4.10M | unsigned int sps_id; |
1741 | 4.10M | int ret; |
1742 | | |
1743 | 4.10M | if (!sps) |
1744 | 0 | return AVERROR(ENOMEM); |
1745 | | |
1746 | 4.10M | av_log(avctx, AV_LOG_DEBUG, "Decoding SPS\n"); |
1747 | | |
1748 | 4.10M | sps->data_size = get_bits_bytesize(gb, 1); |
1749 | 4.10M | sps->data = av_memdup(gb->buffer, sps->data_size); |
1750 | 4.10M | if (!sps->data) { |
1751 | 0 | ret = AVERROR(ENOMEM); |
1752 | 0 | goto err; |
1753 | 0 | } |
1754 | | |
1755 | 4.10M | ret = ff_hevc_parse_sps(sps, gb, &sps_id, |
1756 | 4.10M | nuh_layer_id, apply_defdispwin, |
1757 | 4.10M | ps->vps_list, avctx); |
1758 | 4.10M | if (ret < 0) |
1759 | 2.65M | goto err; |
1760 | | |
1761 | 1.45M | if (avctx->debug & FF_DEBUG_BITSTREAM) { |
1762 | 0 | av_log(avctx, AV_LOG_DEBUG, |
1763 | 0 | "Parsed SPS: id %d; coded wxh: %dx%d; " |
1764 | 0 | "cropped wxh: %dx%d; pix_fmt: %s.\n", |
1765 | 0 | sps_id, sps->width, sps->height, |
1766 | 0 | sps->width - (sps->output_window.left_offset + sps->output_window.right_offset), |
1767 | 0 | sps->height - (sps->output_window.top_offset + sps->output_window.bottom_offset), |
1768 | 0 | av_get_pix_fmt_name(sps->pix_fmt)); |
1769 | 0 | } |
1770 | | |
1771 | | /* check if this is a repeat of an already parsed SPS, then keep the |
1772 | | * original one. |
1773 | | * otherwise drop all PPSes that depend on it */ |
1774 | 1.45M | if (ps->sps_list[sps_id] && |
1775 | 1.23M | compare_sps(ps->sps_list[sps_id], sps)) { |
1776 | 146k | av_refstruct_unref(&sps); |
1777 | 1.30M | } else { |
1778 | 1.30M | remove_sps(ps, sps_id); |
1779 | 1.30M | ps->sps_list[sps_id] = sps; |
1780 | 1.30M | } |
1781 | | |
1782 | 1.45M | return 0; |
1783 | 2.65M | err: |
1784 | 2.65M | av_refstruct_unref(&sps); |
1785 | 2.65M | return ret; |
1786 | 4.10M | } |
1787 | | |
1788 | | static void hevc_pps_free(AVRefStructOpaque unused, void *obj) |
1789 | 1.92M | { |
1790 | 1.92M | HEVCPPS *pps = obj; |
1791 | | |
1792 | 1.92M | av_refstruct_unref(&pps->sps); |
1793 | | |
1794 | 1.92M | av_freep(&pps->column_width); |
1795 | 1.92M | av_freep(&pps->row_height); |
1796 | 1.92M | av_freep(&pps->col_bd); |
1797 | 1.92M | av_freep(&pps->row_bd); |
1798 | 1.92M | av_freep(&pps->col_idxX); |
1799 | 1.92M | av_freep(&pps->ctb_addr_rs_to_ts); |
1800 | 1.92M | av_freep(&pps->ctb_addr_ts_to_rs); |
1801 | 1.92M | av_freep(&pps->tile_pos_rs); |
1802 | 1.92M | av_freep(&pps->tile_id); |
1803 | 1.92M | av_freep(&pps->min_tb_addr_zs_tab); |
1804 | 1.92M | av_freep(&pps->data); |
1805 | 1.92M | } |
1806 | | |
1807 | | static void colour_mapping_octants(GetBitContext *gb, HEVCPPS *pps, int inp_depth, |
1808 | | int idx_y, int idx_cb, int idx_cr, int inp_length) |
1809 | 1.25M | { |
1810 | 1.25M | unsigned int split_octant_flag, part_num_y, coded_res_flag, res_coeff_q, res_coeff_r; |
1811 | 1.25M | int cm_res_bits; |
1812 | | |
1813 | 1.25M | part_num_y = 1 << pps->cm_y_part_num_log2; |
1814 | | |
1815 | 1.25M | split_octant_flag = inp_depth < pps->cm_octant_depth ? get_bits1(gb) : 0; |
1816 | | |
1817 | 1.25M | if (split_octant_flag) |
1818 | 419k | for (int k = 0; k < 2; k++) |
1819 | 839k | for (int m = 0; m < 2; m++) |
1820 | 1.67M | for (int n = 0; n < 2; n++) |
1821 | 1.11M | colour_mapping_octants(gb, pps, inp_depth + 1, |
1822 | 1.11M | idx_y + part_num_y * k * inp_length / 2, |
1823 | 1.11M | idx_cb + m * inp_length / 2, |
1824 | 1.11M | idx_cr + n * inp_length / 2, |
1825 | 1.11M | inp_length / 2); |
1826 | 1.11M | else |
1827 | 7.41M | for (int i = 0; i < part_num_y; i++) { |
1828 | 31.4M | for (int j = 0; j < 4; j++) { |
1829 | 25.1M | coded_res_flag = get_bits1(gb); |
1830 | 25.1M | if (coded_res_flag) |
1831 | 56.4M | for (int c = 0; c < 3; c++) { |
1832 | 42.3M | res_coeff_q = get_ue_golomb_long(gb); |
1833 | 42.3M | cm_res_bits = FFMAX(0, 10 + pps->luma_bit_depth_cm_input - |
1834 | 42.3M | pps->luma_bit_depth_cm_output - |
1835 | 42.3M | pps->cm_res_quant_bits - pps->cm_delta_flc_bits); |
1836 | 42.3M | res_coeff_r = cm_res_bits ? get_bits(gb, cm_res_bits) : 0; |
1837 | 42.3M | if (res_coeff_q || res_coeff_r) |
1838 | 41.2M | skip_bits1(gb); |
1839 | 42.3M | } |
1840 | 25.1M | } |
1841 | 6.29M | } |
1842 | 1.25M | } |
1843 | | |
1844 | | static int colour_mapping_table(GetBitContext *gb, AVCodecContext *avctx, HEVCPPS *pps) |
1845 | 401k | { |
1846 | 401k | pps->num_cm_ref_layers = get_ue_golomb(gb) + 1; |
1847 | 401k | if (pps->num_cm_ref_layers > 62) { |
1848 | 12.2k | av_log(avctx, AV_LOG_ERROR, |
1849 | 12.2k | "num_cm_ref_layers_minus1 shall be in the range [0, 61].\n"); |
1850 | 12.2k | return AVERROR_INVALIDDATA; |
1851 | 12.2k | } |
1852 | 1.23M | for (int i = 0; i < pps->num_cm_ref_layers; i++) |
1853 | 844k | pps->cm_ref_layer_id[i] = get_bits(gb, 6); |
1854 | | |
1855 | 389k | pps->cm_octant_depth = get_bits(gb, 2); |
1856 | 389k | pps->cm_y_part_num_log2 = get_bits(gb, 2); |
1857 | | |
1858 | 389k | pps->luma_bit_depth_cm_input = get_ue_golomb(gb) + 8; |
1859 | 389k | pps->chroma_bit_depth_cm_input = get_ue_golomb(gb) + 8; |
1860 | 389k | pps->luma_bit_depth_cm_output = get_ue_golomb(gb) + 8; |
1861 | 389k | pps->chroma_bit_depth_cm_output = get_ue_golomb(gb) + 8; |
1862 | | |
1863 | 389k | if ( pps-> luma_bit_depth_cm_output < pps-> luma_bit_depth_cm_input |
1864 | 168k | || pps->chroma_bit_depth_cm_output < pps->chroma_bit_depth_cm_input) |
1865 | 249k | return AVERROR_INVALIDDATA; |
1866 | | |
1867 | 139k | pps->cm_res_quant_bits = get_bits(gb, 2); |
1868 | 139k | pps->cm_delta_flc_bits = get_bits(gb, 2) + 1; |
1869 | | |
1870 | 139k | if (pps->cm_octant_depth == 1) { |
1871 | 16.1k | pps->cm_adapt_threshold_u_delta = get_se_golomb_long(gb); |
1872 | 16.1k | pps->cm_adapt_threshold_v_delta = get_se_golomb_long(gb); |
1873 | 16.1k | } |
1874 | | |
1875 | 139k | colour_mapping_octants(gb, pps, 0, 0, 0, 0, 1 << pps->cm_octant_depth); |
1876 | | |
1877 | 139k | return 0; |
1878 | 389k | } |
1879 | | |
1880 | | static int pps_multilayer_extension(GetBitContext *gb, AVCodecContext *avctx, |
1881 | | HEVCPPS *pps, const HEVCSPS *sps, const HEVCVPS *vps) |
1882 | 662k | { |
1883 | 662k | pps->poc_reset_info_present_flag = get_bits1(gb); |
1884 | 662k | pps->pps_infer_scaling_list_flag = get_bits1(gb); |
1885 | 662k | if (pps->pps_infer_scaling_list_flag) |
1886 | 557k | pps->pps_scaling_list_ref_layer_id = get_bits(gb, 6); |
1887 | | |
1888 | 662k | pps->num_ref_loc_offsets = get_ue_golomb(gb); |
1889 | 662k | if (pps->num_ref_loc_offsets > vps->vps_max_layers - 1) |
1890 | 66.0k | return AVERROR_INVALIDDATA; |
1891 | | |
1892 | 1.83M | for (int i = 0; i < pps->num_ref_loc_offsets; i++) { |
1893 | 1.24M | pps->ref_loc_offset_layer_id[i] = get_bits(gb, 6); |
1894 | 1.24M | pps->scaled_ref_layer_offset_present_flag[i] = get_bits1(gb); |
1895 | 1.24M | if (pps->scaled_ref_layer_offset_present_flag[i]) { |
1896 | 343k | pps->scaled_ref_layer_left_offset[pps->ref_loc_offset_layer_id[i]] = get_se_golomb_long(gb); |
1897 | 343k | pps->scaled_ref_layer_top_offset[pps->ref_loc_offset_layer_id[i]] = get_se_golomb_long(gb); |
1898 | 343k | pps->scaled_ref_layer_right_offset[pps->ref_loc_offset_layer_id[i]] = get_se_golomb_long(gb); |
1899 | 343k | pps->scaled_ref_layer_bottom_offset[pps->ref_loc_offset_layer_id[i]] = get_se_golomb_long(gb); |
1900 | 343k | } |
1901 | | |
1902 | 1.24M | pps->ref_region_offset_present_flag[i] = get_bits1(gb); |
1903 | 1.24M | if (pps->ref_region_offset_present_flag[i]) { |
1904 | 381k | pps->ref_region_left_offset[pps->ref_loc_offset_layer_id[i]] = get_se_golomb_long(gb); |
1905 | 381k | pps->ref_region_top_offset[pps->ref_loc_offset_layer_id[i]] = get_se_golomb_long(gb); |
1906 | 381k | pps->ref_region_right_offset[pps->ref_loc_offset_layer_id[i]] = get_se_golomb_long(gb); |
1907 | 381k | pps->ref_region_bottom_offset[pps->ref_loc_offset_layer_id[i]] = get_se_golomb_long(gb); |
1908 | 381k | } |
1909 | | |
1910 | 1.24M | pps->resample_phase_set_present_flag[i] = get_bits1(gb); |
1911 | 1.24M | if (pps->resample_phase_set_present_flag[i]) { |
1912 | 324k | pps->phase_hor_luma[pps->ref_loc_offset_layer_id[i]] = get_ue_golomb_31(gb); |
1913 | 324k | pps->phase_ver_luma[pps->ref_loc_offset_layer_id[i]] = get_ue_golomb_31(gb); |
1914 | 324k | pps->phase_hor_chroma[pps->ref_loc_offset_layer_id[i]] = get_ue_golomb(gb) - 8; |
1915 | 324k | pps->phase_ver_chroma[pps->ref_loc_offset_layer_id[i]] = get_ue_golomb(gb) - 8; |
1916 | 324k | } |
1917 | 1.24M | } |
1918 | | |
1919 | 596k | pps->colour_mapping_enabled_flag = get_bits1(gb); |
1920 | 596k | if (pps->colour_mapping_enabled_flag) { |
1921 | 401k | int ret = colour_mapping_table(gb, avctx, pps); |
1922 | 401k | if (ret < 0) |
1923 | 261k | return ret; |
1924 | 401k | } |
1925 | | |
1926 | 334k | return 0; |
1927 | 596k | } |
1928 | | |
1929 | | static void delta_dlt(GetBitContext *gb, HEVCPPS *pps) |
1930 | 323k | { |
1931 | 323k | unsigned int num_val_delta_dlt, max_diff = 0; |
1932 | 323k | int min_diff_minus1 = -1; |
1933 | 323k | unsigned int len; |
1934 | | |
1935 | 323k | num_val_delta_dlt = get_bits(gb, pps->pps_bit_depth_for_depth_layers_minus8 + 8); |
1936 | 323k | if (num_val_delta_dlt) { |
1937 | 214k | if (num_val_delta_dlt > 1) |
1938 | 211k | max_diff = get_bits(gb, pps->pps_bit_depth_for_depth_layers_minus8 + 8); |
1939 | 214k | if (num_val_delta_dlt > 2 && max_diff) { |
1940 | 172k | len = av_log2(max_diff) + 1; |
1941 | 172k | min_diff_minus1 = get_bits(gb, len); |
1942 | 172k | } |
1943 | 214k | if (max_diff > (min_diff_minus1 + 1)) |
1944 | 16.9G | for (int k = 1; k < num_val_delta_dlt; k++) { |
1945 | 16.9G | len = av_log2(max_diff - (min_diff_minus1 + 1)) + 1; |
1946 | 16.9G | skip_bits(gb, len); // delta_val_diff_minus_min |
1947 | 16.9G | } |
1948 | 214k | } |
1949 | 323k | } |
1950 | | |
1951 | | static int pps_3d_extension(GetBitContext *gb, AVCodecContext *avctx, |
1952 | | HEVCPPS *pps, const HEVCSPS *sps) |
1953 | 358k | { |
1954 | 358k | unsigned int pps_depth_layers_minus1; |
1955 | | |
1956 | 358k | if (get_bits1(gb)) { // dlts_present_flag |
1957 | 169k | pps_depth_layers_minus1 = get_bits(gb, 6); |
1958 | 169k | pps->pps_bit_depth_for_depth_layers_minus8 = get_bits(gb, 4); |
1959 | 5.91M | for (int i = 0; i <= pps_depth_layers_minus1; i++) { |
1960 | 5.74M | if (get_bits1(gb)) { // dlt_flag[i] |
1961 | 1.59M | if (!get_bits1(gb)) { // dlt_pred_flag[i] |
1962 | 384k | if (get_bits1(gb)) { // dlt_val_flags_present_flag[i] |
1963 | 9.60G | for (int j = 0; j <= ((1 << (pps->pps_bit_depth_for_depth_layers_minus8 + 8)) - 1); j++) |
1964 | 9.60G | skip_bits1(gb); // dlt_value_flag[i][j] |
1965 | 61.1k | } else |
1966 | 323k | delta_dlt(gb, pps); |
1967 | 384k | } |
1968 | 1.59M | } |
1969 | 5.74M | } |
1970 | 169k | } |
1971 | | |
1972 | 358k | return 0; |
1973 | 358k | } |
1974 | | |
1975 | | static int pps_range_extensions(GetBitContext *gb, AVCodecContext *avctx, |
1976 | | HEVCPPS *pps, const HEVCSPS *sps) |
1977 | 514k | { |
1978 | 514k | if (pps->transform_skip_enabled_flag) { |
1979 | 389k | pps->log2_max_transform_skip_block_size = get_ue_golomb_31(gb) + 2; |
1980 | 389k | } |
1981 | 514k | pps->cross_component_prediction_enabled_flag = get_bits1(gb); |
1982 | 514k | pps->chroma_qp_offset_list_enabled_flag = get_bits1(gb); |
1983 | 514k | if (pps->chroma_qp_offset_list_enabled_flag) { |
1984 | 458k | pps->diff_cu_chroma_qp_offset_depth = get_ue_golomb_31(gb); |
1985 | 458k | pps->chroma_qp_offset_list_len_minus1 = get_ue_golomb_31(gb); |
1986 | 458k | if (pps->chroma_qp_offset_list_len_minus1 > 5) { |
1987 | 14.5k | av_log(avctx, AV_LOG_ERROR, |
1988 | 14.5k | "chroma_qp_offset_list_len_minus1 shall be in the range [0, 5].\n"); |
1989 | 14.5k | return AVERROR_INVALIDDATA; |
1990 | 14.5k | } |
1991 | 1.35M | for (int i = 0; i <= pps->chroma_qp_offset_list_len_minus1; i++) { |
1992 | 914k | pps->cb_qp_offset_list[i] = get_se_golomb(gb); |
1993 | 914k | if (pps->cb_qp_offset_list[i]) { |
1994 | 282k | av_log(avctx, AV_LOG_WARNING, |
1995 | 282k | "cb_qp_offset_list not tested yet.\n"); |
1996 | 282k | } |
1997 | 914k | pps->cr_qp_offset_list[i] = get_se_golomb(gb); |
1998 | 914k | if (pps->cr_qp_offset_list[i]) { |
1999 | 340k | av_log(avctx, AV_LOG_WARNING, |
2000 | 340k | "cb_qp_offset_list not tested yet.\n"); |
2001 | 340k | } |
2002 | 914k | } |
2003 | 444k | } |
2004 | 499k | pps->log2_sao_offset_scale_luma = get_ue_golomb_31(gb); |
2005 | 499k | pps->log2_sao_offset_scale_chroma = get_ue_golomb_31(gb); |
2006 | | |
2007 | 499k | if ( pps->log2_sao_offset_scale_luma > FFMAX(sps->bit_depth - 10, 0) |
2008 | 416k | || pps->log2_sao_offset_scale_chroma > FFMAX(sps->bit_depth_chroma - 10, 0) |
2009 | 499k | ) |
2010 | 97.6k | return AVERROR_INVALIDDATA; |
2011 | | |
2012 | 402k | return(0); |
2013 | 499k | } |
2014 | | |
2015 | | static int pps_scc_extension(GetBitContext *gb, AVCodecContext *avctx, |
2016 | | HEVCPPS *pps, const HEVCSPS *sps) |
2017 | 377k | { |
2018 | 377k | int num_comps, ret; |
2019 | | |
2020 | 377k | pps->pps_curr_pic_ref_enabled_flag = get_bits1(gb); |
2021 | 377k | if (pps->residual_adaptive_colour_transform_enabled_flag = get_bits1(gb)) { |
2022 | 113k | pps->pps_slice_act_qp_offsets_present_flag = get_bits1(gb); |
2023 | 113k | pps->pps_act_y_qp_offset = get_se_golomb(gb) - 5U; |
2024 | 113k | pps->pps_act_cb_qp_offset = get_se_golomb(gb) - 5U; |
2025 | 113k | pps->pps_act_cr_qp_offset = get_se_golomb(gb) - 3U; |
2026 | | |
2027 | 597k | #define CHECK_QP_OFFSET(name) (pps->pps_act_ ## name ## _qp_offset <= -12 || \ |
2028 | 597k | pps->pps_act_ ## name ## _qp_offset >= 12) |
2029 | 113k | ret = CHECK_QP_OFFSET(y) || CHECK_QP_OFFSET(cb) || CHECK_QP_OFFSET(cr); |
2030 | 113k | #undef CHECK_QP_OFFSET |
2031 | 113k | if (ret) { |
2032 | 58.1k | av_log(avctx, AV_LOG_ERROR, |
2033 | 58.1k | "PpsActQpOffsetY/Cb/Cr shall be in the range of [-12, 12].\n"); |
2034 | 58.1k | return AVERROR_INVALIDDATA; |
2035 | 58.1k | } |
2036 | 113k | } |
2037 | | |
2038 | 318k | if (pps->pps_palette_predictor_initializers_present_flag = get_bits1(gb)) { |
2039 | 56.3k | pps->pps_num_palette_predictor_initializers = get_ue_golomb(gb); |
2040 | 56.3k | if (pps->pps_num_palette_predictor_initializers > 0) { |
2041 | 35.8k | if (pps->pps_num_palette_predictor_initializers > HEVC_MAX_PALETTE_PREDICTOR_SIZE) { |
2042 | 6.44k | av_log(avctx, AV_LOG_ERROR, |
2043 | 6.44k | "pps_num_palette_predictor_initializers out of range: %u\n", |
2044 | 6.44k | pps->pps_num_palette_predictor_initializers); |
2045 | 6.44k | return AVERROR_INVALIDDATA; |
2046 | 6.44k | } |
2047 | 29.4k | pps->monochrome_palette_flag = get_bits1(gb); |
2048 | 29.4k | pps->luma_bit_depth_entry = get_ue_golomb_31(gb) + 8; |
2049 | 29.4k | if (pps->luma_bit_depth_entry != sps->bit_depth) |
2050 | 17.0k | return AVERROR_INVALIDDATA; |
2051 | 12.4k | if (!pps->monochrome_palette_flag) { |
2052 | 9.67k | pps->chroma_bit_depth_entry = get_ue_golomb_31(gb) + 8; |
2053 | 9.67k | if (pps->chroma_bit_depth_entry != sps->bit_depth_chroma) |
2054 | 5.34k | return AVERROR_INVALIDDATA; |
2055 | 9.67k | } |
2056 | | |
2057 | 7.08k | num_comps = pps->monochrome_palette_flag ? 1 : 3; |
2058 | 22.8k | for (int comp = 0; comp < num_comps; comp++) { |
2059 | 15.7k | int bit_depth = !comp ? pps->luma_bit_depth_entry : pps->chroma_bit_depth_entry; |
2060 | 578k | for (int i = 0; i < pps->pps_num_palette_predictor_initializers; i++) |
2061 | 562k | pps->pps_palette_predictor_initializer[comp][i] = get_bits(gb, bit_depth); |
2062 | 15.7k | } |
2063 | 7.08k | } |
2064 | 56.3k | } |
2065 | | |
2066 | 290k | return 0; |
2067 | 318k | } |
2068 | | |
2069 | | static inline int setup_pps(AVCodecContext *avctx, GetBitContext *gb, |
2070 | | HEVCPPS *pps, const HEVCSPS *sps) |
2071 | 560k | { |
2072 | 560k | int log2_diff; |
2073 | 560k | int pic_area_in_ctbs; |
2074 | 560k | int i, j, x, y, ctb_addr_rs, tile_id; |
2075 | | |
2076 | | // Inferred parameters |
2077 | 560k | pps->col_bd = av_malloc_array(pps->num_tile_columns + 1, sizeof(*pps->col_bd)); |
2078 | 560k | pps->row_bd = av_malloc_array(pps->num_tile_rows + 1, sizeof(*pps->row_bd)); |
2079 | 560k | pps->col_idxX = av_malloc_array(sps->ctb_width, sizeof(*pps->col_idxX)); |
2080 | 560k | if (!pps->col_bd || !pps->row_bd || !pps->col_idxX) |
2081 | 0 | return AVERROR(ENOMEM); |
2082 | | |
2083 | 560k | if (pps->uniform_spacing_flag) { |
2084 | 470k | if (!pps->column_width) { |
2085 | 374k | pps->column_width = av_malloc_array(pps->num_tile_columns, sizeof(*pps->column_width)); |
2086 | 374k | pps->row_height = av_malloc_array(pps->num_tile_rows, sizeof(*pps->row_height)); |
2087 | 374k | } |
2088 | 470k | if (!pps->column_width || !pps->row_height) |
2089 | 0 | return AVERROR(ENOMEM); |
2090 | | |
2091 | 1.15M | for (i = 0; i < pps->num_tile_columns; i++) { |
2092 | 681k | pps->column_width[i] = ((i + 1) * sps->ctb_width) / pps->num_tile_columns - |
2093 | 681k | (i * sps->ctb_width) / pps->num_tile_columns; |
2094 | 681k | } |
2095 | | |
2096 | 976k | for (i = 0; i < pps->num_tile_rows; i++) { |
2097 | 505k | pps->row_height[i] = ((i + 1) * sps->ctb_height) / pps->num_tile_rows - |
2098 | 505k | (i * sps->ctb_height) / pps->num_tile_rows; |
2099 | 505k | } |
2100 | 470k | } |
2101 | | |
2102 | 560k | pps->col_bd[0] = 0; |
2103 | 1.42M | for (i = 0; i < pps->num_tile_columns; i++) |
2104 | 861k | pps->col_bd[i + 1] = pps->col_bd[i] + pps->column_width[i]; |
2105 | | |
2106 | 560k | pps->row_bd[0] = 0; |
2107 | 1.26M | for (i = 0; i < pps->num_tile_rows; i++) |
2108 | 700k | pps->row_bd[i + 1] = pps->row_bd[i] + pps->row_height[i]; |
2109 | | |
2110 | 12.6M | for (i = 0, j = 0; i < sps->ctb_width; i++) { |
2111 | 12.0M | if (i > pps->col_bd[j]) |
2112 | 788k | j++; |
2113 | 12.0M | pps->col_idxX[i] = j; |
2114 | 12.0M | } |
2115 | | |
2116 | | /** |
2117 | | * 6.5 |
2118 | | */ |
2119 | 560k | pic_area_in_ctbs = sps->ctb_width * sps->ctb_height; |
2120 | | |
2121 | 560k | pps->ctb_addr_rs_to_ts = av_malloc_array(pic_area_in_ctbs, sizeof(*pps->ctb_addr_rs_to_ts)); |
2122 | 560k | pps->ctb_addr_ts_to_rs = av_malloc_array(pic_area_in_ctbs, sizeof(*pps->ctb_addr_ts_to_rs)); |
2123 | 560k | pps->tile_id = av_malloc_array(pic_area_in_ctbs, sizeof(*pps->tile_id)); |
2124 | 560k | pps->min_tb_addr_zs_tab = av_malloc_array((sps->tb_mask+2) * (sps->tb_mask+2), sizeof(*pps->min_tb_addr_zs_tab)); |
2125 | 560k | if (!pps->ctb_addr_rs_to_ts || !pps->ctb_addr_ts_to_rs || |
2126 | 560k | !pps->tile_id || !pps->min_tb_addr_zs_tab) { |
2127 | 0 | return AVERROR(ENOMEM); |
2128 | 0 | } |
2129 | | |
2130 | 441M | for (ctb_addr_rs = 0; ctb_addr_rs < pic_area_in_ctbs; ctb_addr_rs++) { |
2131 | 441M | int tb_x = ctb_addr_rs % sps->ctb_width; |
2132 | 441M | int tb_y = ctb_addr_rs / sps->ctb_width; |
2133 | 441M | int tile_x = 0; |
2134 | 441M | int tile_y = 0; |
2135 | 441M | int val = 0; |
2136 | | |
2137 | 842M | for (i = 0; i < pps->num_tile_columns; i++) { |
2138 | 842M | if (tb_x < pps->col_bd[i + 1]) { |
2139 | 441M | tile_x = i; |
2140 | 441M | break; |
2141 | 441M | } |
2142 | 842M | } |
2143 | | |
2144 | 550M | for (i = 0; i < pps->num_tile_rows; i++) { |
2145 | 550M | if (tb_y < pps->row_bd[i + 1]) { |
2146 | 441M | tile_y = i; |
2147 | 441M | break; |
2148 | 441M | } |
2149 | 550M | } |
2150 | | |
2151 | 842M | for (i = 0; i < tile_x; i++) |
2152 | 401M | val += pps->row_height[tile_y] * pps->column_width[i]; |
2153 | 550M | for (i = 0; i < tile_y; i++) |
2154 | 109M | val += sps->ctb_width * pps->row_height[i]; |
2155 | | |
2156 | 441M | val += (tb_y - pps->row_bd[tile_y]) * pps->column_width[tile_x] + |
2157 | 441M | tb_x - pps->col_bd[tile_x]; |
2158 | | |
2159 | 441M | pps->ctb_addr_rs_to_ts[ctb_addr_rs] = val; |
2160 | 441M | pps->ctb_addr_ts_to_rs[val] = ctb_addr_rs; |
2161 | 441M | } |
2162 | | |
2163 | 1.26M | for (j = 0, tile_id = 0; j < pps->num_tile_rows; j++) |
2164 | 1.87M | for (i = 0; i < pps->num_tile_columns; i++, tile_id++) |
2165 | 46.5M | for (y = pps->row_bd[j]; y < pps->row_bd[j + 1]; y++) |
2166 | 486M | for (x = pps->col_bd[i]; x < pps->col_bd[i + 1]; x++) |
2167 | 441M | pps->tile_id[pps->ctb_addr_rs_to_ts[y * sps->ctb_width + x]] = tile_id; |
2168 | | |
2169 | 560k | pps->tile_pos_rs = av_malloc_array(tile_id, sizeof(*pps->tile_pos_rs)); |
2170 | 560k | if (!pps->tile_pos_rs) |
2171 | 0 | return AVERROR(ENOMEM); |
2172 | | |
2173 | 1.26M | for (j = 0; j < pps->num_tile_rows; j++) |
2174 | 1.87M | for (i = 0; i < pps->num_tile_columns; i++) |
2175 | 1.17M | pps->tile_pos_rs[j * pps->num_tile_columns + i] = |
2176 | 1.17M | pps->row_bd[j] * sps->ctb_width + pps->col_bd[i]; |
2177 | | |
2178 | 560k | log2_diff = sps->log2_ctb_size - sps->log2_min_tb_size; |
2179 | 560k | pps->min_tb_addr_zs = &pps->min_tb_addr_zs_tab[1*(sps->tb_mask+2)+1]; |
2180 | 8.28M | for (y = 0; y < sps->tb_mask+2; y++) { |
2181 | 7.72M | pps->min_tb_addr_zs_tab[y*(sps->tb_mask+2)] = -1; |
2182 | 7.72M | pps->min_tb_addr_zs_tab[y] = -1; |
2183 | 7.72M | } |
2184 | 7.72M | for (y = 0; y < sps->tb_mask+1; y++) { |
2185 | 111M | for (x = 0; x < sps->tb_mask+1; x++) { |
2186 | 104M | int tb_x = x >> log2_diff; |
2187 | 104M | int tb_y = y >> log2_diff; |
2188 | 104M | int rs = sps->ctb_width * tb_y + tb_x; |
2189 | 104M | int val = pps->ctb_addr_rs_to_ts[rs] << (log2_diff * 2); |
2190 | 512M | for (i = 0; i < log2_diff; i++) { |
2191 | 407M | int m = 1 << i; |
2192 | 407M | val += (m & x ? m * m : 0) + (m & y ? 2 * m * m : 0); |
2193 | 407M | } |
2194 | 104M | pps->min_tb_addr_zs[y * (sps->tb_mask+2) + x] = val; |
2195 | 104M | } |
2196 | 7.16M | } |
2197 | | |
2198 | 560k | return 0; |
2199 | 560k | } |
2200 | | |
2201 | | int ff_hevc_decode_nal_pps(GetBitContext *gb, AVCodecContext *avctx, |
2202 | | HEVCParamSets *ps) |
2203 | 2.16M | { |
2204 | 2.16M | const HEVCSPS *sps = NULL; |
2205 | 2.16M | const HEVCVPS *vps = NULL; |
2206 | 2.16M | int i, ret = 0; |
2207 | 2.16M | ptrdiff_t nal_size = get_bits_bytesize(gb, 1); |
2208 | 2.16M | unsigned int pps_id = get_ue_golomb_long(gb); |
2209 | 2.16M | unsigned log2_parallel_merge_level_minus2; |
2210 | 2.16M | HEVCPPS *pps; |
2211 | | |
2212 | 2.16M | av_log(avctx, AV_LOG_DEBUG, "Decoding PPS\n"); |
2213 | | |
2214 | 2.16M | if (pps_id >= HEVC_MAX_PPS_COUNT) { |
2215 | 94.7k | av_log(avctx, AV_LOG_ERROR, "PPS id out of range: %d\n", pps_id); |
2216 | 94.7k | return AVERROR_INVALIDDATA; |
2217 | 94.7k | } |
2218 | | |
2219 | 2.07M | if (ps->pps_list[pps_id]) { |
2220 | 1.14M | const HEVCPPS *pps1 = ps->pps_list[pps_id]; |
2221 | 1.14M | if (pps1->data_size == nal_size && |
2222 | 228k | !memcmp(pps1->data, gb->buffer, pps1->data_size)) |
2223 | 149k | return 0; |
2224 | 1.14M | } |
2225 | | |
2226 | 1.92M | pps = av_refstruct_alloc_ext(sizeof(*pps), 0, NULL, hevc_pps_free); |
2227 | 1.92M | if (!pps) |
2228 | 0 | return AVERROR(ENOMEM); |
2229 | | |
2230 | 1.92M | pps->data_size = nal_size; |
2231 | 1.92M | pps->data = av_memdup(gb->buffer, nal_size); |
2232 | 1.92M | if (!pps->data) { |
2233 | 0 | ret = AVERROR_INVALIDDATA; |
2234 | 0 | goto err; |
2235 | 0 | } |
2236 | | |
2237 | | // Default values |
2238 | 1.92M | pps->loop_filter_across_tiles_enabled_flag = 1; |
2239 | 1.92M | pps->num_tile_columns = 1; |
2240 | 1.92M | pps->num_tile_rows = 1; |
2241 | 1.92M | pps->uniform_spacing_flag = 1; |
2242 | 1.92M | pps->disable_dbf = 0; |
2243 | 1.92M | pps->beta_offset = 0; |
2244 | 1.92M | pps->tc_offset = 0; |
2245 | 1.92M | pps->log2_max_transform_skip_block_size = 2; |
2246 | | |
2247 | | // Coded parameters |
2248 | 1.92M | pps->pps_id = pps_id; |
2249 | 1.92M | pps->sps_id = get_ue_golomb_long(gb); |
2250 | 1.92M | if (pps->sps_id >= HEVC_MAX_SPS_COUNT) { |
2251 | 13.6k | av_log(avctx, AV_LOG_ERROR, "SPS id out of range: %d\n", pps->sps_id); |
2252 | 13.6k | ret = AVERROR_INVALIDDATA; |
2253 | 13.6k | goto err; |
2254 | 13.6k | } |
2255 | 1.90M | if (!ps->sps_list[pps->sps_id]) { |
2256 | 408k | av_log(avctx, AV_LOG_ERROR, "SPS %u does not exist.\n", pps->sps_id); |
2257 | 408k | ret = AVERROR_INVALIDDATA; |
2258 | 408k | goto err; |
2259 | 408k | } |
2260 | 1.50M | sps = ps->sps_list[pps->sps_id]; |
2261 | 1.50M | vps = ps->vps_list[sps->vps_id]; |
2262 | | |
2263 | 1.50M | pps->sps = av_refstruct_ref_c(sps); |
2264 | | |
2265 | 1.50M | pps->dependent_slice_segments_enabled_flag = get_bits1(gb); |
2266 | 1.50M | pps->output_flag_present_flag = get_bits1(gb); |
2267 | 1.50M | pps->num_extra_slice_header_bits = get_bits(gb, 3); |
2268 | | |
2269 | 1.50M | pps->sign_data_hiding_flag = get_bits1(gb); |
2270 | | |
2271 | 1.50M | pps->cabac_init_present_flag = get_bits1(gb); |
2272 | | |
2273 | 1.50M | pps->num_ref_idx_l0_default_active = get_ue_golomb_31(gb) + 1; |
2274 | 1.50M | pps->num_ref_idx_l1_default_active = get_ue_golomb_31(gb) + 1; |
2275 | 1.50M | if (pps->num_ref_idx_l0_default_active >= HEVC_MAX_REFS || |
2276 | 1.47M | pps->num_ref_idx_l1_default_active >= HEVC_MAX_REFS) { |
2277 | 41.3k | av_log(avctx, AV_LOG_ERROR, "Too many default refs in PPS: %d/%d.\n", |
2278 | 41.3k | pps->num_ref_idx_l0_default_active, pps->num_ref_idx_l1_default_active); |
2279 | 41.3k | goto err; |
2280 | 41.3k | } |
2281 | | |
2282 | 1.45M | pps->pic_init_qp_minus26 = get_se_golomb(gb); |
2283 | | |
2284 | 1.45M | pps->constrained_intra_pred_flag = get_bits1(gb); |
2285 | 1.45M | pps->transform_skip_enabled_flag = get_bits1(gb); |
2286 | | |
2287 | 1.45M | pps->cu_qp_delta_enabled_flag = get_bits1(gb); |
2288 | 1.45M | pps->diff_cu_qp_delta_depth = 0; |
2289 | 1.45M | if (pps->cu_qp_delta_enabled_flag) |
2290 | 873k | pps->diff_cu_qp_delta_depth = get_ue_golomb_long(gb); |
2291 | | |
2292 | 1.45M | if (pps->diff_cu_qp_delta_depth < 0 || |
2293 | 1.45M | pps->diff_cu_qp_delta_depth > sps->log2_diff_max_min_coding_block_size) { |
2294 | 16.8k | av_log(avctx, AV_LOG_ERROR, "diff_cu_qp_delta_depth %d is invalid\n", |
2295 | 16.8k | pps->diff_cu_qp_delta_depth); |
2296 | 16.8k | ret = AVERROR_INVALIDDATA; |
2297 | 16.8k | goto err; |
2298 | 16.8k | } |
2299 | | |
2300 | 1.44M | pps->cb_qp_offset = get_se_golomb(gb); |
2301 | 1.44M | if (pps->cb_qp_offset < -12 || pps->cb_qp_offset > 12) { |
2302 | 20.2k | av_log(avctx, AV_LOG_ERROR, "pps_cb_qp_offset out of range: %d\n", |
2303 | 20.2k | pps->cb_qp_offset); |
2304 | 20.2k | ret = AVERROR_INVALIDDATA; |
2305 | 20.2k | goto err; |
2306 | 20.2k | } |
2307 | 1.42M | pps->cr_qp_offset = get_se_golomb(gb); |
2308 | 1.42M | if (pps->cr_qp_offset < -12 || pps->cr_qp_offset > 12) { |
2309 | 40.2k | av_log(avctx, AV_LOG_ERROR, "pps_cr_qp_offset out of range: %d\n", |
2310 | 40.2k | pps->cr_qp_offset); |
2311 | 40.2k | ret = AVERROR_INVALIDDATA; |
2312 | 40.2k | goto err; |
2313 | 40.2k | } |
2314 | 1.38M | pps->pic_slice_level_chroma_qp_offsets_present_flag = get_bits1(gb); |
2315 | | |
2316 | 1.38M | pps->weighted_pred_flag = get_bits1(gb); |
2317 | 1.38M | pps->weighted_bipred_flag = get_bits1(gb); |
2318 | | |
2319 | 1.38M | pps->transquant_bypass_enable_flag = get_bits1(gb); |
2320 | 1.38M | pps->tiles_enabled_flag = get_bits1(gb); |
2321 | 1.38M | pps->entropy_coding_sync_enabled_flag = get_bits1(gb); |
2322 | | |
2323 | 1.38M | if (pps->tiles_enabled_flag) { |
2324 | 420k | int num_tile_columns_minus1 = get_ue_golomb(gb); |
2325 | 420k | int num_tile_rows_minus1 = get_ue_golomb(gb); |
2326 | | |
2327 | 420k | if (num_tile_columns_minus1 < 0 || |
2328 | 397k | num_tile_columns_minus1 >= sps->ctb_width) { |
2329 | 36.3k | av_log(avctx, AV_LOG_ERROR, "num_tile_columns_minus1 out of range: %d\n", |
2330 | 36.3k | num_tile_columns_minus1); |
2331 | 36.3k | ret = num_tile_columns_minus1 < 0 ? num_tile_columns_minus1 : AVERROR_INVALIDDATA; |
2332 | 36.3k | goto err; |
2333 | 36.3k | } |
2334 | 383k | if (num_tile_rows_minus1 < 0 || |
2335 | 359k | num_tile_rows_minus1 >= sps->ctb_height) { |
2336 | 33.7k | av_log(avctx, AV_LOG_ERROR, "num_tile_rows_minus1 out of range: %d\n", |
2337 | 33.7k | num_tile_rows_minus1); |
2338 | 33.7k | ret = num_tile_rows_minus1 < 0 ? num_tile_rows_minus1 : AVERROR_INVALIDDATA; |
2339 | 33.7k | goto err; |
2340 | 33.7k | } |
2341 | 349k | pps->num_tile_columns = num_tile_columns_minus1 + 1; |
2342 | 349k | pps->num_tile_rows = num_tile_rows_minus1 + 1; |
2343 | | |
2344 | 349k | pps->column_width = av_malloc_array(pps->num_tile_columns, sizeof(*pps->column_width)); |
2345 | 349k | pps->row_height = av_malloc_array(pps->num_tile_rows, sizeof(*pps->row_height)); |
2346 | 349k | if (!pps->column_width || !pps->row_height) { |
2347 | 0 | ret = AVERROR(ENOMEM); |
2348 | 0 | goto err; |
2349 | 0 | } |
2350 | | |
2351 | 349k | pps->uniform_spacing_flag = get_bits1(gb); |
2352 | 349k | if (!pps->uniform_spacing_flag) { |
2353 | 153k | uint64_t sum = 0; |
2354 | 376k | for (i = 0; i < pps->num_tile_columns - 1; i++) { |
2355 | 222k | pps->column_width[i] = get_ue_golomb_long(gb) + 1; |
2356 | 222k | sum += pps->column_width[i]; |
2357 | 222k | } |
2358 | 153k | if (sum >= sps->ctb_width) { |
2359 | 10.4k | av_log(avctx, AV_LOG_ERROR, "Invalid tile widths.\n"); |
2360 | 10.4k | ret = AVERROR_INVALIDDATA; |
2361 | 10.4k | goto err; |
2362 | 10.4k | } |
2363 | 143k | pps->column_width[pps->num_tile_columns - 1] = sps->ctb_width - sum; |
2364 | | |
2365 | 143k | sum = 0; |
2366 | 793k | for (i = 0; i < pps->num_tile_rows - 1; i++) { |
2367 | 650k | pps->row_height[i] = get_ue_golomb_long(gb) + 1; |
2368 | 650k | sum += pps->row_height[i]; |
2369 | 650k | } |
2370 | 143k | if (sum >= sps->ctb_height) { |
2371 | 19.6k | av_log(avctx, AV_LOG_ERROR, "Invalid tile heights.\n"); |
2372 | 19.6k | ret = AVERROR_INVALIDDATA; |
2373 | 19.6k | goto err; |
2374 | 19.6k | } |
2375 | 123k | pps->row_height[pps->num_tile_rows - 1] = sps->ctb_height - sum; |
2376 | 123k | } |
2377 | 319k | pps->loop_filter_across_tiles_enabled_flag = get_bits1(gb); |
2378 | 319k | } |
2379 | | |
2380 | 1.28M | pps->seq_loop_filter_across_slices_enabled_flag = get_bits1(gb); |
2381 | | |
2382 | 1.28M | pps->deblocking_filter_control_present_flag = get_bits1(gb); |
2383 | 1.28M | if (pps->deblocking_filter_control_present_flag) { |
2384 | 436k | pps->deblocking_filter_override_enabled_flag = get_bits1(gb); |
2385 | 436k | pps->disable_dbf = get_bits1(gb); |
2386 | 436k | if (!pps->disable_dbf) { |
2387 | 174k | int beta_offset_div2 = get_se_golomb(gb); |
2388 | 174k | int tc_offset_div2 = get_se_golomb(gb) ; |
2389 | 174k | if (beta_offset_div2 < -6 || beta_offset_div2 > 6) { |
2390 | 18.3k | av_log(avctx, AV_LOG_ERROR, "pps_beta_offset_div2 out of range: %d\n", |
2391 | 18.3k | beta_offset_div2); |
2392 | 18.3k | ret = AVERROR_INVALIDDATA; |
2393 | 18.3k | goto err; |
2394 | 18.3k | } |
2395 | 155k | if (tc_offset_div2 < -6 || tc_offset_div2 > 6) { |
2396 | 4.59k | av_log(avctx, AV_LOG_ERROR, "pps_tc_offset_div2 out of range: %d\n", |
2397 | 4.59k | tc_offset_div2); |
2398 | 4.59k | ret = AVERROR_INVALIDDATA; |
2399 | 4.59k | goto err; |
2400 | 4.59k | } |
2401 | 151k | pps->beta_offset = 2 * beta_offset_div2; |
2402 | 151k | pps->tc_offset = 2 * tc_offset_div2; |
2403 | 151k | } |
2404 | 436k | } |
2405 | | |
2406 | 1.25M | pps->scaling_list_data_present_flag = get_bits1(gb); |
2407 | 1.25M | if (pps->scaling_list_data_present_flag) { |
2408 | 145k | set_default_scaling_list_data(&pps->scaling_list); |
2409 | 145k | ret = scaling_list_data(gb, avctx, &pps->scaling_list, sps); |
2410 | 145k | if (ret < 0) |
2411 | 124k | goto err; |
2412 | 145k | } |
2413 | 1.13M | pps->lists_modification_present_flag = get_bits1(gb); |
2414 | 1.13M | log2_parallel_merge_level_minus2 = get_ue_golomb_long(gb); |
2415 | 1.13M | if (log2_parallel_merge_level_minus2 > sps->log2_ctb_size) { |
2416 | 47.0k | av_log(avctx, AV_LOG_ERROR, "log2_parallel_merge_level_minus2 out of range: %d\n", |
2417 | 47.0k | log2_parallel_merge_level_minus2); |
2418 | 47.0k | ret = AVERROR_INVALIDDATA; |
2419 | 47.0k | goto err; |
2420 | 47.0k | } |
2421 | 1.08M | pps->log2_parallel_merge_level = log2_parallel_merge_level_minus2 + 2; |
2422 | | |
2423 | 1.08M | pps->slice_header_extension_present_flag = get_bits1(gb); |
2424 | | |
2425 | 1.08M | pps->pps_extension_present_flag = get_bits1(gb); |
2426 | 1.08M | if (pps->pps_extension_present_flag) { |
2427 | 878k | pps->pps_range_extensions_flag = get_bits1(gb); |
2428 | 878k | pps->pps_multilayer_extension_flag = get_bits1(gb); |
2429 | 878k | pps->pps_3d_extension_flag = get_bits1(gb); |
2430 | 878k | pps->pps_scc_extension_flag = get_bits1(gb); |
2431 | 878k | skip_bits(gb, 4); // pps_extension_4bits |
2432 | | |
2433 | 878k | if (sps->ptl.general_ptl.profile_idc >= AV_PROFILE_HEVC_REXT && pps->pps_range_extensions_flag) { |
2434 | 514k | if ((ret = pps_range_extensions(gb, avctx, pps, sps)) < 0) |
2435 | 112k | goto err; |
2436 | 514k | } |
2437 | | |
2438 | 766k | if (pps->pps_multilayer_extension_flag) { |
2439 | 662k | if ((ret = pps_multilayer_extension(gb, avctx, pps, sps, vps)) < 0) |
2440 | 327k | goto err; |
2441 | 662k | } |
2442 | | |
2443 | 438k | if (pps->pps_3d_extension_flag) { |
2444 | 358k | if ((ret = pps_3d_extension(gb, avctx, pps, sps)) < 0) |
2445 | 0 | goto err; |
2446 | 358k | } |
2447 | | |
2448 | 438k | if (pps->pps_scc_extension_flag) { |
2449 | 377k | if ((ret = pps_scc_extension(gb, avctx, pps, sps)) < 0) |
2450 | 86.9k | goto err; |
2451 | 377k | } |
2452 | 438k | } |
2453 | | |
2454 | 560k | ret = setup_pps(avctx, gb, pps, sps); |
2455 | 560k | if (ret < 0) |
2456 | 0 | goto err; |
2457 | | |
2458 | 560k | if (get_bits_left(gb) < 0) { |
2459 | 206k | av_log(avctx, AV_LOG_WARNING, |
2460 | 206k | "Overread PPS by %d bits\n", -get_bits_left(gb)); |
2461 | 206k | } |
2462 | | |
2463 | 560k | av_refstruct_unref(&ps->pps_list[pps_id]); |
2464 | 560k | ps->pps_list[pps_id] = pps; |
2465 | | |
2466 | 560k | return 0; |
2467 | | |
2468 | 1.36M | err: |
2469 | 1.36M | av_refstruct_unref(&pps); |
2470 | 1.36M | return ret; |
2471 | 560k | } |
2472 | | |
2473 | | void ff_hevc_ps_uninit(HEVCParamSets *ps) |
2474 | 153k | { |
2475 | 153k | int i; |
2476 | | |
2477 | 2.60M | for (i = 0; i < FF_ARRAY_ELEMS(ps->vps_list); i++) |
2478 | 2.45M | av_refstruct_unref(&ps->vps_list[i]); |
2479 | 2.60M | for (i = 0; i < FF_ARRAY_ELEMS(ps->sps_list); i++) |
2480 | 2.45M | av_refstruct_unref(&ps->sps_list[i]); |
2481 | 9.96M | for (i = 0; i < FF_ARRAY_ELEMS(ps->pps_list); i++) |
2482 | 9.81M | av_refstruct_unref(&ps->pps_list[i]); |
2483 | 153k | } |
2484 | | |
2485 | | int ff_hevc_compute_poc2(unsigned log2_max_poc_lsb, int pocTid0, int poc_lsb, int nal_unit_type) |
2486 | 336k | { |
2487 | 336k | int max_poc_lsb = 1 << log2_max_poc_lsb; |
2488 | 336k | int prev_poc_lsb = pocTid0 % max_poc_lsb; |
2489 | 336k | int prev_poc_msb = pocTid0 - prev_poc_lsb; |
2490 | 336k | int poc_msb; |
2491 | | |
2492 | 336k | if (poc_lsb < prev_poc_lsb && prev_poc_lsb - poc_lsb >= max_poc_lsb / 2) |
2493 | 5.26k | poc_msb = prev_poc_msb + max_poc_lsb; |
2494 | 331k | else if (poc_lsb > prev_poc_lsb && poc_lsb - prev_poc_lsb > max_poc_lsb / 2) |
2495 | 107k | poc_msb = prev_poc_msb - max_poc_lsb; |
2496 | 224k | else |
2497 | 224k | poc_msb = prev_poc_msb; |
2498 | | |
2499 | | // For BLA picture types, POCmsb is set to 0. |
2500 | 336k | if (nal_unit_type == HEVC_NAL_BLA_W_LP || |
2501 | 329k | nal_unit_type == HEVC_NAL_BLA_W_RADL || |
2502 | 326k | nal_unit_type == HEVC_NAL_BLA_N_LP) |
2503 | 23.2k | poc_msb = 0; |
2504 | | |
2505 | 336k | return poc_msb + poc_lsb; |
2506 | 336k | } |