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  1. /*
  2. * HEVC Parameter Set decoding
  3. *
  4. * Copyright (C) 2012 - 2103 Guillaume Martres
  5. * Copyright (C) 2012 - 2103 Mickael Raulet
  6. * Copyright (C) 2012 - 2013 Gildas Cocherel
  7. * Copyright (C) 2013 Vittorio Giovara
  8. *
  9. * This file is part of Libav.
  10. *
  11. * Libav 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. * Libav 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 Libav; if not, write to the Free Software
  23. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  24. */
  25. #include "libavutil/imgutils.h"
  26. #include "golomb.h"
  27. #include "hevc.h"
  28. static const uint8_t default_scaling_list_intra[] = {
  29. 16, 16, 16, 16, 17, 18, 21, 24,
  30. 16, 16, 16, 16, 17, 19, 22, 25,
  31. 16, 16, 17, 18, 20, 22, 25, 29,
  32. 16, 16, 18, 21, 24, 27, 31, 36,
  33. 17, 17, 20, 24, 30, 35, 41, 47,
  34. 18, 19, 22, 27, 35, 44, 54, 65,
  35. 21, 22, 25, 31, 41, 54, 70, 88,
  36. 24, 25, 29, 36, 47, 65, 88, 115
  37. };
  38. static const uint8_t default_scaling_list_inter[] = {
  39. 16, 16, 16, 16, 17, 18, 20, 24,
  40. 16, 16, 16, 17, 18, 20, 24, 25,
  41. 16, 16, 17, 18, 20, 24, 25, 28,
  42. 16, 17, 18, 20, 24, 25, 28, 33,
  43. 17, 18, 20, 24, 25, 28, 33, 41,
  44. 18, 20, 24, 25, 28, 33, 41, 54,
  45. 20, 24, 25, 28, 33, 41, 54, 71,
  46. 24, 25, 28, 33, 41, 54, 71, 91
  47. };
  48. static const AVRational vui_sar[] = {
  49. { 0, 1 },
  50. { 1, 1 },
  51. { 12, 11 },
  52. { 10, 11 },
  53. { 16, 11 },
  54. { 40, 33 },
  55. { 24, 11 },
  56. { 20, 11 },
  57. { 32, 11 },
  58. { 80, 33 },
  59. { 18, 11 },
  60. { 15, 11 },
  61. { 64, 33 },
  62. { 160, 99 },
  63. { 4, 3 },
  64. { 3, 2 },
  65. { 2, 1 },
  66. };
  67. int ff_hevc_decode_short_term_rps(HEVCContext *s, ShortTermRPS *rps,
  68. const HEVCSPS *sps, int is_slice_header)
  69. {
  70. HEVCLocalContext *lc = &s->HEVClc;
  71. uint8_t rps_predict = 0;
  72. int delta_poc;
  73. int k0 = 0;
  74. int k1 = 0;
  75. int k = 0;
  76. int i;
  77. GetBitContext *gb = &lc->gb;
  78. if (rps != sps->st_rps && sps->nb_st_rps)
  79. rps_predict = get_bits1(gb);
  80. if (rps_predict) {
  81. const ShortTermRPS *rps_ridx;
  82. int delta_rps, abs_delta_rps;
  83. uint8_t use_delta_flag = 0;
  84. uint8_t delta_rps_sign;
  85. if (is_slice_header) {
  86. int delta_idx = get_ue_golomb_long(gb) + 1;
  87. if (delta_idx > sps->nb_st_rps) {
  88. av_log(s->avctx, AV_LOG_ERROR,
  89. "Invalid value of delta_idx in slice header RPS: %d > %d.\n",
  90. delta_idx, sps->nb_st_rps);
  91. return AVERROR_INVALIDDATA;
  92. }
  93. rps_ridx = &sps->st_rps[sps->nb_st_rps - delta_idx];
  94. } else
  95. rps_ridx = &sps->st_rps[rps - sps->st_rps - 1];
  96. delta_rps_sign = get_bits1(gb);
  97. abs_delta_rps = get_ue_golomb_long(gb) + 1;
  98. delta_rps = (1 - (delta_rps_sign << 1)) * abs_delta_rps;
  99. for (i = 0; i <= rps_ridx->num_delta_pocs; i++) {
  100. int used = rps->used[k] = get_bits1(gb);
  101. if (!used)
  102. use_delta_flag = get_bits1(gb);
  103. if (used || use_delta_flag) {
  104. if (i < rps_ridx->num_delta_pocs)
  105. delta_poc = delta_rps + rps_ridx->delta_poc[i];
  106. else
  107. delta_poc = delta_rps;
  108. rps->delta_poc[k] = delta_poc;
  109. if (delta_poc < 0)
  110. k0++;
  111. else
  112. k1++;
  113. k++;
  114. }
  115. }
  116. rps->num_delta_pocs = k;
  117. rps->num_negative_pics = k0;
  118. // sort in increasing order (smallest first)
  119. if (rps->num_delta_pocs != 0) {
  120. int used, tmp;
  121. for (i = 1; i < rps->num_delta_pocs; i++) {
  122. delta_poc = rps->delta_poc[i];
  123. used = rps->used[i];
  124. for (k = i - 1; k >= 0; k--) {
  125. tmp = rps->delta_poc[k];
  126. if (delta_poc < tmp) {
  127. rps->delta_poc[k + 1] = tmp;
  128. rps->used[k + 1] = rps->used[k];
  129. rps->delta_poc[k] = delta_poc;
  130. rps->used[k] = used;
  131. }
  132. }
  133. }
  134. }
  135. if ((rps->num_negative_pics >> 1) != 0) {
  136. int used;
  137. k = rps->num_negative_pics - 1;
  138. // flip the negative values to largest first
  139. for (i = 0; i < rps->num_negative_pics >> 1; i++) {
  140. delta_poc = rps->delta_poc[i];
  141. used = rps->used[i];
  142. rps->delta_poc[i] = rps->delta_poc[k];
  143. rps->used[i] = rps->used[k];
  144. rps->delta_poc[k] = delta_poc;
  145. rps->used[k] = used;
  146. k--;
  147. }
  148. }
  149. } else {
  150. unsigned int prev, nb_positive_pics;
  151. rps->num_negative_pics = get_ue_golomb_long(gb);
  152. nb_positive_pics = get_ue_golomb_long(gb);
  153. if (rps->num_negative_pics >= MAX_REFS ||
  154. nb_positive_pics >= MAX_REFS) {
  155. av_log(s->avctx, AV_LOG_ERROR, "Too many refs in a short term RPS.\n");
  156. return AVERROR_INVALIDDATA;
  157. }
  158. rps->num_delta_pocs = rps->num_negative_pics + nb_positive_pics;
  159. if (rps->num_delta_pocs) {
  160. prev = 0;
  161. for (i = 0; i < rps->num_negative_pics; i++) {
  162. delta_poc = get_ue_golomb_long(gb) + 1;
  163. prev -= delta_poc;
  164. rps->delta_poc[i] = prev;
  165. rps->used[i] = get_bits1(gb);
  166. }
  167. prev = 0;
  168. for (i = 0; i < nb_positive_pics; i++) {
  169. delta_poc = get_ue_golomb_long(gb) + 1;
  170. prev += delta_poc;
  171. rps->delta_poc[rps->num_negative_pics + i] = prev;
  172. rps->used[rps->num_negative_pics + i] = get_bits1(gb);
  173. }
  174. }
  175. }
  176. return 0;
  177. }
  178. static int decode_profile_tier_level(HEVCLocalContext *lc, PTL *ptl,
  179. int max_num_sub_layers)
  180. {
  181. int i, j;
  182. GetBitContext *gb = &lc->gb;
  183. ptl->general_profile_space = get_bits(gb, 2);
  184. ptl->general_tier_flag = get_bits1(gb);
  185. ptl->general_profile_idc = get_bits(gb, 5);
  186. for (i = 0; i < 32; i++)
  187. ptl->general_profile_compatibility_flag[i] = get_bits1(gb);
  188. skip_bits1(gb); // general_progressive_source_flag
  189. skip_bits1(gb); // general_interlaced_source_flag
  190. skip_bits1(gb); // general_non_packed_constraint_flag
  191. skip_bits1(gb); // general_frame_only_constraint_flag
  192. if (get_bits(gb, 16) != 0) // XXX_reserved_zero_44bits[0..15]
  193. return -1;
  194. if (get_bits(gb, 16) != 0) // XXX_reserved_zero_44bits[16..31]
  195. return -1;
  196. if (get_bits(gb, 12) != 0) // XXX_reserved_zero_44bits[32..43]
  197. return -1;
  198. ptl->general_level_idc = get_bits(gb, 8);
  199. for (i = 0; i < max_num_sub_layers - 1; i++) {
  200. ptl->sub_layer_profile_present_flag[i] = get_bits1(gb);
  201. ptl->sub_layer_level_present_flag[i] = get_bits1(gb);
  202. }
  203. if (max_num_sub_layers - 1 > 0)
  204. for (i = max_num_sub_layers - 1; i < 8; i++)
  205. skip_bits(gb, 2); // reserved_zero_2bits[i]
  206. for (i = 0; i < max_num_sub_layers - 1; i++) {
  207. if (ptl->sub_layer_profile_present_flag[i]) {
  208. ptl->sub_layer_profile_space[i] = get_bits(gb, 2);
  209. ptl->sub_layer_tier_flag[i] = get_bits(gb, 1);
  210. ptl->sub_layer_profile_idc[i] = get_bits(gb, 5);
  211. for (j = 0; j < 32; j++)
  212. ptl->sub_layer_profile_compatibility_flags[i][j] = get_bits1(gb);
  213. skip_bits1(gb); // sub_layer_progressive_source_flag
  214. skip_bits1(gb); // sub_layer_interlaced_source_flag
  215. skip_bits1(gb); // sub_layer_non_packed_constraint_flag
  216. skip_bits1(gb); // sub_layer_frame_only_constraint_flag
  217. if (get_bits(gb, 16) != 0) // sub_layer_reserved_zero_44bits[0..15]
  218. return -1;
  219. if (get_bits(gb, 16) != 0) // sub_layer_reserved_zero_44bits[16..31]
  220. return -1;
  221. if (get_bits(gb, 12) != 0) // sub_layer_reserved_zero_44bits[32..43]
  222. return -1;
  223. }
  224. if (ptl->sub_layer_level_present_flag[i])
  225. ptl->sub_layer_level_idc[i] = get_bits(gb, 8);
  226. }
  227. return 0;
  228. }
  229. static void decode_sublayer_hrd(HEVCContext *s, int nb_cpb,
  230. int subpic_params_present)
  231. {
  232. GetBitContext *gb = &s->HEVClc.gb;
  233. int i;
  234. for (i = 0; i < nb_cpb; i++) {
  235. get_ue_golomb_long(gb); // bit_rate_value_minus1
  236. get_ue_golomb_long(gb); // cpb_size_value_minus1
  237. if (subpic_params_present) {
  238. get_ue_golomb_long(gb); // cpb_size_du_value_minus1
  239. get_ue_golomb_long(gb); // bit_rate_du_value_minus1
  240. }
  241. skip_bits1(gb); // cbr_flag
  242. }
  243. }
  244. static void decode_hrd(HEVCContext *s, int common_inf_present,
  245. int max_sublayers)
  246. {
  247. GetBitContext *gb = &s->HEVClc.gb;
  248. int nal_params_present = 0, vcl_params_present = 0;
  249. int subpic_params_present = 0;
  250. int i;
  251. if (common_inf_present) {
  252. nal_params_present = get_bits1(gb);
  253. vcl_params_present = get_bits1(gb);
  254. if (nal_params_present || vcl_params_present) {
  255. subpic_params_present = get_bits1(gb);
  256. if (subpic_params_present) {
  257. skip_bits(gb, 8); // tick_divisor_minus2
  258. skip_bits(gb, 5); // du_cpb_removal_delay_increment_length_minus1
  259. skip_bits(gb, 1); // sub_pic_cpb_params_in_pic_timing_sei_flag
  260. skip_bits(gb, 5); // dpb_output_delay_du_length_minus1
  261. }
  262. skip_bits(gb, 4); // bit_rate_scale
  263. skip_bits(gb, 4); // cpb_size_scale
  264. if (subpic_params_present)
  265. skip_bits(gb, 4); // cpb_size_du_scale
  266. skip_bits(gb, 5); // initial_cpb_removal_delay_length_minus1
  267. skip_bits(gb, 5); // au_cpb_removal_delay_length_minus1
  268. skip_bits(gb, 5); // dpb_output_delay_length_minus1
  269. }
  270. }
  271. for (i = 0; i < max_sublayers; i++) {
  272. int low_delay = 0;
  273. int nb_cpb = 1;
  274. int fixed_rate = get_bits1(gb);
  275. if (!fixed_rate)
  276. fixed_rate = get_bits1(gb);
  277. if (fixed_rate)
  278. get_ue_golomb_long(gb); // elemental_duration_in_tc_minus1
  279. else
  280. low_delay = get_bits1(gb);
  281. if (!low_delay)
  282. nb_cpb = get_ue_golomb_long(gb) + 1;
  283. if (nal_params_present)
  284. decode_sublayer_hrd(s, nb_cpb, subpic_params_present);
  285. if (vcl_params_present)
  286. decode_sublayer_hrd(s, nb_cpb, subpic_params_present);
  287. }
  288. }
  289. int ff_hevc_decode_nal_vps(HEVCContext *s)
  290. {
  291. int i,j;
  292. GetBitContext *gb = &s->HEVClc.gb;
  293. int vps_id = 0;
  294. HEVCVPS *vps;
  295. av_log(s->avctx, AV_LOG_DEBUG, "Decoding VPS\n");
  296. vps = av_mallocz(sizeof(*vps));
  297. if (!vps)
  298. return AVERROR(ENOMEM);
  299. vps_id = get_bits(gb, 4);
  300. if (vps_id >= MAX_VPS_COUNT) {
  301. av_log(s->avctx, AV_LOG_ERROR, "VPS id out of range: %d\n", vps_id);
  302. goto err;
  303. }
  304. if (get_bits(gb, 2) != 3) { // vps_reserved_three_2bits
  305. av_log(s->avctx, AV_LOG_ERROR, "vps_reserved_three_2bits is not three\n");
  306. goto err;
  307. }
  308. vps->vps_max_layers = get_bits(gb, 6) + 1;
  309. vps->vps_max_sub_layers = get_bits(gb, 3) + 1;
  310. vps->vps_temporal_id_nesting_flag = get_bits1(gb);
  311. if (get_bits(gb, 16) != 0xffff) { // vps_reserved_ffff_16bits
  312. av_log(s->avctx, AV_LOG_ERROR, "vps_reserved_ffff_16bits is not 0xffff\n");
  313. goto err;
  314. }
  315. if (vps->vps_max_sub_layers > MAX_SUB_LAYERS) {
  316. av_log(s->avctx, AV_LOG_ERROR, "vps_max_sub_layers out of range: %d\n",
  317. vps->vps_max_sub_layers);
  318. goto err;
  319. }
  320. if (decode_profile_tier_level(&s->HEVClc, &vps->ptl, vps->vps_max_sub_layers) < 0) {
  321. av_log(s->avctx, AV_LOG_ERROR, "Error decoding profile tier level.\n");
  322. goto err;
  323. }
  324. vps->vps_sub_layer_ordering_info_present_flag = get_bits1(gb);
  325. i = vps->vps_sub_layer_ordering_info_present_flag ? 0 : vps->vps_max_sub_layers - 1;
  326. for (; i < vps->vps_max_sub_layers; i++) {
  327. vps->vps_max_dec_pic_buffering[i] = get_ue_golomb_long(gb) + 1;
  328. vps->vps_num_reorder_pics[i] = get_ue_golomb_long(gb);
  329. vps->vps_max_latency_increase[i] = get_ue_golomb_long(gb) - 1;
  330. if (vps->vps_max_dec_pic_buffering[i] > MAX_DPB_SIZE) {
  331. av_log(s->avctx, AV_LOG_ERROR, "vps_max_dec_pic_buffering_minus1 out of range: %d\n",
  332. vps->vps_max_dec_pic_buffering[i] - 1);
  333. goto err;
  334. }
  335. if (vps->vps_num_reorder_pics[i] > vps->vps_max_dec_pic_buffering[i] - 1) {
  336. av_log(s->avctx, AV_LOG_ERROR, "vps_max_num_reorder_pics out of range: %d\n",
  337. vps->vps_num_reorder_pics[i]);
  338. goto err;
  339. }
  340. }
  341. vps->vps_max_layer_id = get_bits(gb, 6);
  342. vps->vps_num_layer_sets = get_ue_golomb_long(gb) + 1;
  343. for (i = 1; i < vps->vps_num_layer_sets; i++)
  344. for (j = 0; j <= vps->vps_max_layer_id; j++)
  345. skip_bits(gb, 1); // layer_id_included_flag[i][j]
  346. vps->vps_timing_info_present_flag = get_bits1(gb);
  347. if (vps->vps_timing_info_present_flag) {
  348. vps->vps_num_units_in_tick = get_bits_long(gb, 32);
  349. vps->vps_time_scale = get_bits_long(gb, 32);
  350. vps->vps_poc_proportional_to_timing_flag = get_bits1(gb);
  351. if (vps->vps_poc_proportional_to_timing_flag)
  352. vps->vps_num_ticks_poc_diff_one = get_ue_golomb_long(gb) + 1;
  353. vps->vps_num_hrd_parameters = get_ue_golomb_long(gb);
  354. for (i = 0; i < vps->vps_num_hrd_parameters; i++) {
  355. int common_inf_present = 1;
  356. get_ue_golomb_long(gb); // hrd_layer_set_idx
  357. if (i)
  358. common_inf_present = get_bits1(gb);
  359. decode_hrd(s, common_inf_present, vps->vps_max_sub_layers);
  360. }
  361. }
  362. get_bits1(gb); /* vps_extension_flag */
  363. av_free(s->vps_list[vps_id]);
  364. s->vps_list[vps_id] = vps;
  365. return 0;
  366. err:
  367. av_free(vps);
  368. return AVERROR_INVALIDDATA;
  369. }
  370. static void decode_vui(HEVCContext *s, HEVCSPS *sps)
  371. {
  372. VUI *vui = &sps->vui;
  373. GetBitContext *gb = &s->HEVClc.gb;
  374. int sar_present;
  375. av_log(s->avctx, AV_LOG_DEBUG, "Decoding VUI\n");
  376. sar_present = get_bits1(gb);
  377. if (sar_present) {
  378. uint8_t sar_idx = get_bits(gb, 8);
  379. if (sar_idx < FF_ARRAY_ELEMS(vui_sar))
  380. vui->sar = vui_sar[sar_idx];
  381. else if (sar_idx == 255) {
  382. vui->sar.num = get_bits(gb, 16);
  383. vui->sar.den = get_bits(gb, 16);
  384. } else
  385. av_log(s->avctx, AV_LOG_WARNING,
  386. "Unknown SAR index: %u.\n", sar_idx);
  387. }
  388. vui->overscan_info_present_flag = get_bits1(gb);
  389. if (vui->overscan_info_present_flag)
  390. vui->overscan_appropriate_flag = get_bits1(gb);
  391. vui->video_signal_type_present_flag = get_bits1(gb);
  392. if (vui->video_signal_type_present_flag) {
  393. vui->video_format = get_bits(gb, 3);
  394. vui->video_full_range_flag = get_bits1(gb);
  395. vui->colour_description_present_flag = get_bits1(gb);
  396. if (vui->video_full_range_flag && sps->pix_fmt == AV_PIX_FMT_YUV420P)
  397. sps->pix_fmt = AV_PIX_FMT_YUVJ420P;
  398. if (vui->colour_description_present_flag) {
  399. vui->colour_primaries = get_bits(gb, 8);
  400. vui->transfer_characteristic = get_bits(gb, 8);
  401. vui->matrix_coeffs = get_bits(gb, 8);
  402. // Set invalid values to "unspecified"
  403. if (vui->colour_primaries >= AVCOL_PRI_NB)
  404. vui->colour_primaries = AVCOL_PRI_UNSPECIFIED;
  405. if (vui->transfer_characteristic >= AVCOL_TRC_NB)
  406. vui->transfer_characteristic = AVCOL_TRC_UNSPECIFIED;
  407. if (vui->matrix_coeffs >= AVCOL_SPC_NB)
  408. vui->matrix_coeffs = AVCOL_SPC_UNSPECIFIED;
  409. }
  410. }
  411. vui->chroma_loc_info_present_flag = get_bits1(gb);
  412. if (vui->chroma_loc_info_present_flag) {
  413. vui->chroma_sample_loc_type_top_field = get_ue_golomb_long(gb);
  414. vui->chroma_sample_loc_type_bottom_field = get_ue_golomb_long(gb);
  415. }
  416. vui->neutra_chroma_indication_flag = get_bits1(gb);
  417. vui->field_seq_flag = get_bits1(gb);
  418. vui->frame_field_info_present_flag = get_bits1(gb);
  419. vui->default_display_window_flag = get_bits1(gb);
  420. if (vui->default_display_window_flag) {
  421. //TODO: * 2 is only valid for 420
  422. vui->def_disp_win.left_offset = get_ue_golomb_long(gb) * 2;
  423. vui->def_disp_win.right_offset = get_ue_golomb_long(gb) * 2;
  424. vui->def_disp_win.top_offset = get_ue_golomb_long(gb) * 2;
  425. vui->def_disp_win.bottom_offset = get_ue_golomb_long(gb) * 2;
  426. if (s->apply_defdispwin &&
  427. s->avctx->flags2 & CODEC_FLAG2_IGNORE_CROP) {
  428. av_log(s->avctx, AV_LOG_DEBUG,
  429. "discarding vui default display window, "
  430. "original values are l:%u r:%u t:%u b:%u\n",
  431. vui->def_disp_win.left_offset,
  432. vui->def_disp_win.right_offset,
  433. vui->def_disp_win.top_offset,
  434. vui->def_disp_win.bottom_offset);
  435. vui->def_disp_win.left_offset =
  436. vui->def_disp_win.right_offset =
  437. vui->def_disp_win.top_offset =
  438. vui->def_disp_win.bottom_offset = 0;
  439. }
  440. }
  441. vui->vui_timing_info_present_flag = get_bits1(gb);
  442. if (vui->vui_timing_info_present_flag) {
  443. vui->vui_num_units_in_tick = get_bits(gb, 32);
  444. vui->vui_time_scale = get_bits(gb, 32);
  445. vui->vui_poc_proportional_to_timing_flag = get_bits1(gb);
  446. if (vui->vui_poc_proportional_to_timing_flag)
  447. vui->vui_num_ticks_poc_diff_one_minus1 = get_ue_golomb_long(gb);
  448. vui->vui_hrd_parameters_present_flag = get_bits1(gb);
  449. if (vui->vui_hrd_parameters_present_flag)
  450. decode_hrd(s, 1, sps->max_sub_layers);
  451. }
  452. vui->bitstream_restriction_flag = get_bits1(gb);
  453. if (vui->bitstream_restriction_flag) {
  454. vui->tiles_fixed_structure_flag = get_bits1(gb);
  455. vui->motion_vectors_over_pic_boundaries_flag = get_bits1(gb);
  456. vui->restricted_ref_pic_lists_flag = get_bits1(gb);
  457. vui->min_spatial_segmentation_idc = get_ue_golomb_long(gb);
  458. vui->max_bytes_per_pic_denom = get_ue_golomb_long(gb);
  459. vui->max_bits_per_min_cu_denom = get_ue_golomb_long(gb);
  460. vui->log2_max_mv_length_horizontal = get_ue_golomb_long(gb);
  461. vui->log2_max_mv_length_vertical = get_ue_golomb_long(gb);
  462. }
  463. }
  464. static void set_default_scaling_list_data(ScalingList *sl)
  465. {
  466. int matrixId;
  467. for (matrixId = 0; matrixId < 6; matrixId++) {
  468. // 4x4 default is 16
  469. memset(sl->sl[0][matrixId], 16, 16);
  470. sl->sl_dc[0][matrixId] = 16; // default for 16x16
  471. sl->sl_dc[1][matrixId] = 16; // default for 32x32
  472. }
  473. memcpy(sl->sl[1][0], default_scaling_list_intra, 64);
  474. memcpy(sl->sl[1][1], default_scaling_list_intra, 64);
  475. memcpy(sl->sl[1][2], default_scaling_list_intra, 64);
  476. memcpy(sl->sl[1][3], default_scaling_list_inter, 64);
  477. memcpy(sl->sl[1][4], default_scaling_list_inter, 64);
  478. memcpy(sl->sl[1][5], default_scaling_list_inter, 64);
  479. memcpy(sl->sl[2][0], default_scaling_list_intra, 64);
  480. memcpy(sl->sl[2][1], default_scaling_list_intra, 64);
  481. memcpy(sl->sl[2][2], default_scaling_list_intra, 64);
  482. memcpy(sl->sl[2][3], default_scaling_list_inter, 64);
  483. memcpy(sl->sl[2][4], default_scaling_list_inter, 64);
  484. memcpy(sl->sl[2][5], default_scaling_list_inter, 64);
  485. memcpy(sl->sl[3][0], default_scaling_list_intra, 64);
  486. memcpy(sl->sl[3][1], default_scaling_list_inter, 64);
  487. }
  488. static int scaling_list_data(HEVCContext *s, ScalingList *sl)
  489. {
  490. GetBitContext *gb = &s->HEVClc.gb;
  491. uint8_t scaling_list_pred_mode_flag[4][6];
  492. int32_t scaling_list_dc_coef[2][6];
  493. int size_id, matrix_id, i, pos, delta;
  494. for (size_id = 0; size_id < 4; size_id++)
  495. for (matrix_id = 0; matrix_id < (size_id == 3 ? 2 : 6); matrix_id++) {
  496. scaling_list_pred_mode_flag[size_id][matrix_id] = get_bits1(gb);
  497. if (!scaling_list_pred_mode_flag[size_id][matrix_id]) {
  498. delta = get_ue_golomb_long(gb);
  499. /* Only need to handle non-zero delta. Zero means default,
  500. * which should already be in the arrays. */
  501. if (delta) {
  502. // Copy from previous array.
  503. if (matrix_id - delta < 0) {
  504. av_log(s->avctx, AV_LOG_ERROR,
  505. "Invalid delta in scaling list data: %d.\n", delta);
  506. return AVERROR_INVALIDDATA;
  507. }
  508. memcpy(sl->sl[size_id][matrix_id],
  509. sl->sl[size_id][matrix_id - delta],
  510. size_id > 0 ? 64 : 16);
  511. if (size_id > 1)
  512. sl->sl_dc[size_id - 2][matrix_id] = sl->sl_dc[size_id - 2][matrix_id - delta];
  513. }
  514. } else {
  515. int next_coef, coef_num;
  516. int32_t scaling_list_delta_coef;
  517. next_coef = 8;
  518. coef_num = FFMIN(64, 1 << (4 + (size_id << 1)));
  519. if (size_id > 1) {
  520. scaling_list_dc_coef[size_id - 2][matrix_id] = get_se_golomb(gb) + 8;
  521. next_coef = scaling_list_dc_coef[size_id - 2][matrix_id];
  522. sl->sl_dc[size_id - 2][matrix_id] = next_coef;
  523. }
  524. for (i = 0; i < coef_num; i++) {
  525. if (size_id == 0)
  526. pos = 4 * ff_hevc_diag_scan4x4_y[i] +
  527. ff_hevc_diag_scan4x4_x[i];
  528. else
  529. pos = 8 * ff_hevc_diag_scan8x8_y[i] +
  530. ff_hevc_diag_scan8x8_x[i];
  531. scaling_list_delta_coef = get_se_golomb(gb);
  532. next_coef = (next_coef + scaling_list_delta_coef + 256) % 256;
  533. sl->sl[size_id][matrix_id][pos] = next_coef;
  534. }
  535. }
  536. }
  537. return 0;
  538. }
  539. int ff_hevc_decode_nal_sps(HEVCContext *s)
  540. {
  541. const AVPixFmtDescriptor *desc;
  542. GetBitContext *gb = &s->HEVClc.gb;
  543. int ret = 0;
  544. int sps_id = 0;
  545. int log2_diff_max_min_transform_block_size;
  546. int bit_depth_chroma, start, vui_present, sublayer_ordering_info;
  547. int i;
  548. HEVCSPS *sps;
  549. AVBufferRef *sps_buf = av_buffer_allocz(sizeof(*sps));
  550. if (!sps_buf)
  551. return AVERROR(ENOMEM);
  552. sps = (HEVCSPS*)sps_buf->data;
  553. av_log(s->avctx, AV_LOG_DEBUG, "Decoding SPS\n");
  554. // Coded parameters
  555. sps->vps_id = get_bits(gb, 4);
  556. if (sps->vps_id >= MAX_VPS_COUNT) {
  557. av_log(s->avctx, AV_LOG_ERROR, "VPS id out of range: %d\n", sps->vps_id);
  558. ret = AVERROR_INVALIDDATA;
  559. goto err;
  560. }
  561. sps->max_sub_layers = get_bits(gb, 3) + 1;
  562. if (sps->max_sub_layers > MAX_SUB_LAYERS) {
  563. av_log(s->avctx, AV_LOG_ERROR, "sps_max_sub_layers out of range: %d\n",
  564. sps->max_sub_layers);
  565. ret = AVERROR_INVALIDDATA;
  566. goto err;
  567. }
  568. skip_bits1(gb); // temporal_id_nesting_flag
  569. if (decode_profile_tier_level(&s->HEVClc, &sps->ptl,
  570. sps->max_sub_layers) < 0) {
  571. av_log(s->avctx, AV_LOG_ERROR, "error decoding profile tier level\n");
  572. ret = AVERROR_INVALIDDATA;
  573. goto err;
  574. }
  575. sps_id = get_ue_golomb_long(gb);
  576. if (sps_id >= MAX_SPS_COUNT) {
  577. av_log(s->avctx, AV_LOG_ERROR, "SPS id out of range: %d\n", sps_id);
  578. ret = AVERROR_INVALIDDATA;
  579. goto err;
  580. }
  581. sps->chroma_format_idc = get_ue_golomb_long(gb);
  582. if (sps->chroma_format_idc != 1) {
  583. avpriv_report_missing_feature(s->avctx, "chroma_format_idc != 1\n");
  584. ret = AVERROR_PATCHWELCOME;
  585. goto err;
  586. }
  587. if (sps->chroma_format_idc == 3)
  588. sps->separate_colour_plane_flag = get_bits1(gb);
  589. sps->width = get_ue_golomb_long(gb);
  590. sps->height = get_ue_golomb_long(gb);
  591. if ((ret = av_image_check_size(sps->width,
  592. sps->height, 0, s->avctx)) < 0)
  593. goto err;
  594. if (get_bits1(gb)) { // pic_conformance_flag
  595. //TODO: * 2 is only valid for 420
  596. sps->pic_conf_win.left_offset = get_ue_golomb_long(gb) * 2;
  597. sps->pic_conf_win.right_offset = get_ue_golomb_long(gb) * 2;
  598. sps->pic_conf_win.top_offset = get_ue_golomb_long(gb) * 2;
  599. sps->pic_conf_win.bottom_offset = get_ue_golomb_long(gb) * 2;
  600. if (s->avctx->flags2 & CODEC_FLAG2_IGNORE_CROP) {
  601. av_log(s->avctx, AV_LOG_DEBUG,
  602. "discarding sps conformance window, "
  603. "original values are l:%u r:%u t:%u b:%u\n",
  604. sps->pic_conf_win.left_offset,
  605. sps->pic_conf_win.right_offset,
  606. sps->pic_conf_win.top_offset,
  607. sps->pic_conf_win.bottom_offset);
  608. sps->pic_conf_win.left_offset =
  609. sps->pic_conf_win.right_offset =
  610. sps->pic_conf_win.top_offset =
  611. sps->pic_conf_win.bottom_offset = 0;
  612. }
  613. sps->output_window = sps->pic_conf_win;
  614. }
  615. sps->bit_depth = get_ue_golomb_long(gb) + 8;
  616. bit_depth_chroma = get_ue_golomb_long(gb) + 8;
  617. if (bit_depth_chroma != sps->bit_depth) {
  618. av_log(s->avctx, AV_LOG_ERROR,
  619. "Luma bit depth (%d) is different from chroma bit depth (%d), "
  620. "this is unsupported.\n",
  621. sps->bit_depth, bit_depth_chroma);
  622. ret = AVERROR_INVALIDDATA;
  623. goto err;
  624. }
  625. if (sps->chroma_format_idc == 1) {
  626. switch (sps->bit_depth) {
  627. case 8: sps->pix_fmt = AV_PIX_FMT_YUV420P; break;
  628. case 9: sps->pix_fmt = AV_PIX_FMT_YUV420P9; break;
  629. case 10: sps->pix_fmt = AV_PIX_FMT_YUV420P10; break;
  630. default:
  631. av_log(s->avctx, AV_LOG_ERROR, "Unsupported bit depth: %d\n",
  632. sps->bit_depth);
  633. ret = AVERROR_PATCHWELCOME;
  634. goto err;
  635. }
  636. } else {
  637. av_log(s->avctx, AV_LOG_ERROR,
  638. "non-4:2:0 support is currently unspecified.\n");
  639. return AVERROR_PATCHWELCOME;
  640. }
  641. desc = av_pix_fmt_desc_get(sps->pix_fmt);
  642. if (!desc) {
  643. ret = AVERROR(EINVAL);
  644. goto err;
  645. }
  646. sps->hshift[0] = sps->vshift[0] = 0;
  647. sps->hshift[2] = sps->hshift[1] = desc->log2_chroma_w;
  648. sps->vshift[2] = sps->vshift[1] = desc->log2_chroma_h;
  649. sps->pixel_shift = sps->bit_depth > 8;
  650. sps->log2_max_poc_lsb = get_ue_golomb_long(gb) + 4;
  651. if (sps->log2_max_poc_lsb > 16) {
  652. av_log(s->avctx, AV_LOG_ERROR, "log2_max_pic_order_cnt_lsb_minus4 out range: %d\n",
  653. sps->log2_max_poc_lsb - 4);
  654. ret = AVERROR_INVALIDDATA;
  655. goto err;
  656. }
  657. sublayer_ordering_info = get_bits1(gb);
  658. start = sublayer_ordering_info ? 0 : sps->max_sub_layers - 1;
  659. for (i = start; i < sps->max_sub_layers; i++) {
  660. sps->temporal_layer[i].max_dec_pic_buffering = get_ue_golomb_long(gb) + 1;
  661. sps->temporal_layer[i].num_reorder_pics = get_ue_golomb_long(gb);
  662. sps->temporal_layer[i].max_latency_increase = get_ue_golomb_long(gb) - 1;
  663. if (sps->temporal_layer[i].max_dec_pic_buffering > MAX_DPB_SIZE) {
  664. av_log(s->avctx, AV_LOG_ERROR, "sps_max_dec_pic_buffering_minus1 out of range: %d\n",
  665. sps->temporal_layer[i].max_dec_pic_buffering - 1);
  666. ret = AVERROR_INVALIDDATA;
  667. goto err;
  668. }
  669. if (sps->temporal_layer[i].num_reorder_pics > sps->temporal_layer[i].max_dec_pic_buffering - 1) {
  670. av_log(s->avctx, AV_LOG_ERROR, "sps_max_num_reorder_pics out of range: %d\n",
  671. sps->temporal_layer[i].num_reorder_pics);
  672. ret = AVERROR_INVALIDDATA;
  673. goto err;
  674. }
  675. }
  676. if (!sublayer_ordering_info) {
  677. for (i = 0; i < start; i++) {
  678. sps->temporal_layer[i].max_dec_pic_buffering = sps->temporal_layer[start].max_dec_pic_buffering;
  679. sps->temporal_layer[i].num_reorder_pics = sps->temporal_layer[start].num_reorder_pics;
  680. sps->temporal_layer[i].max_latency_increase = sps->temporal_layer[start].max_latency_increase;
  681. }
  682. }
  683. sps->log2_min_cb_size = get_ue_golomb_long(gb) + 3;
  684. sps->log2_diff_max_min_coding_block_size = get_ue_golomb_long(gb);
  685. sps->log2_min_tb_size = get_ue_golomb_long(gb) + 2;
  686. log2_diff_max_min_transform_block_size = get_ue_golomb_long(gb);
  687. sps->log2_max_trafo_size = log2_diff_max_min_transform_block_size +
  688. sps->log2_min_tb_size;
  689. if (sps->log2_min_tb_size >= sps->log2_min_cb_size) {
  690. av_log(s->avctx, AV_LOG_ERROR, "Invalid value for log2_min_tb_size");
  691. ret = AVERROR_INVALIDDATA;
  692. goto err;
  693. }
  694. sps->max_transform_hierarchy_depth_inter = get_ue_golomb_long(gb);
  695. sps->max_transform_hierarchy_depth_intra = get_ue_golomb_long(gb);
  696. sps->scaling_list_enable_flag = get_bits1(gb);
  697. if (sps->scaling_list_enable_flag) {
  698. set_default_scaling_list_data(&sps->scaling_list);
  699. if (get_bits1(gb)) {
  700. ret = scaling_list_data(s, &sps->scaling_list);
  701. if (ret < 0)
  702. goto err;
  703. }
  704. }
  705. sps->amp_enabled_flag = get_bits1(gb);
  706. sps->sao_enabled = get_bits1(gb);
  707. sps->pcm_enabled_flag = get_bits1(gb);
  708. if (sps->pcm_enabled_flag) {
  709. int pcm_bit_depth_chroma;
  710. sps->pcm.bit_depth = get_bits(gb, 4) + 1;
  711. pcm_bit_depth_chroma = get_bits(gb, 4) + 1;
  712. if (pcm_bit_depth_chroma != sps->pcm.bit_depth) {
  713. av_log(s->avctx, AV_LOG_ERROR,
  714. "PCM Luma bit depth (%d) is different from PCM chroma"
  715. "bit depth (%d), this is unsupported.\n",
  716. sps->pcm.bit_depth, pcm_bit_depth_chroma);
  717. ret = AVERROR_INVALIDDATA;
  718. goto err;
  719. }
  720. sps->pcm.log2_min_pcm_cb_size = get_ue_golomb_long(gb) + 3;
  721. sps->pcm.log2_max_pcm_cb_size = sps->pcm.log2_min_pcm_cb_size +
  722. get_ue_golomb_long(gb);
  723. if (sps->pcm.bit_depth > sps->bit_depth) {
  724. av_log(s->avctx, AV_LOG_ERROR,
  725. "PCM bit depth (%d) is greater than normal bit depth (%d)\n",
  726. sps->pcm.bit_depth, sps->bit_depth);
  727. ret = AVERROR_INVALIDDATA;
  728. goto err;
  729. }
  730. sps->pcm.loop_filter_disable_flag = get_bits1(gb);
  731. }
  732. sps->nb_st_rps = get_ue_golomb_long(gb);
  733. if (sps->nb_st_rps > MAX_SHORT_TERM_RPS_COUNT) {
  734. av_log(s->avctx, AV_LOG_ERROR, "Too many short term RPS: %d.\n",
  735. sps->nb_st_rps);
  736. ret = AVERROR_INVALIDDATA;
  737. goto err;
  738. }
  739. for (i = 0; i < sps->nb_st_rps; i++) {
  740. if ((ret = ff_hevc_decode_short_term_rps(s, &sps->st_rps[i],
  741. sps, 0)) < 0)
  742. goto err;
  743. }
  744. sps->long_term_ref_pics_present_flag = get_bits1(gb);
  745. if (sps->long_term_ref_pics_present_flag) {
  746. sps->num_long_term_ref_pics_sps = get_ue_golomb_long(gb);
  747. for (i = 0; i < sps->num_long_term_ref_pics_sps; i++) {
  748. sps->lt_ref_pic_poc_lsb_sps[i] = get_bits(gb, sps->log2_max_poc_lsb);
  749. sps->used_by_curr_pic_lt_sps_flag[i] = get_bits1(gb);
  750. }
  751. }
  752. sps->sps_temporal_mvp_enabled_flag = get_bits1(gb);
  753. sps->sps_strong_intra_smoothing_enable_flag = get_bits1(gb);
  754. sps->vui.sar = (AVRational){0, 1};
  755. vui_present = get_bits1(gb);
  756. if (vui_present)
  757. decode_vui(s, sps);
  758. skip_bits1(gb); // sps_extension_flag
  759. if (s->apply_defdispwin) {
  760. sps->output_window.left_offset += sps->vui.def_disp_win.left_offset;
  761. sps->output_window.right_offset += sps->vui.def_disp_win.right_offset;
  762. sps->output_window.top_offset += sps->vui.def_disp_win.top_offset;
  763. sps->output_window.bottom_offset += sps->vui.def_disp_win.bottom_offset;
  764. }
  765. if (sps->output_window.left_offset & (0x1F >> (sps->pixel_shift)) &&
  766. !(s->avctx->flags & CODEC_FLAG_UNALIGNED)) {
  767. sps->output_window.left_offset &= ~(0x1F >> (sps->pixel_shift));
  768. av_log(s->avctx, AV_LOG_WARNING, "Reducing left output window to %d "
  769. "chroma samples to preserve alignment.\n",
  770. sps->output_window.left_offset);
  771. }
  772. sps->output_width = sps->width -
  773. (sps->output_window.left_offset + sps->output_window.right_offset);
  774. sps->output_height = sps->height -
  775. (sps->output_window.top_offset + sps->output_window.bottom_offset);
  776. if (sps->output_width <= 0 || sps->output_height <= 0) {
  777. av_log(s->avctx, AV_LOG_WARNING, "Invalid visible frame dimensions: %dx%d.\n",
  778. sps->output_width, sps->output_height);
  779. if (s->avctx->err_recognition & AV_EF_EXPLODE) {
  780. ret = AVERROR_INVALIDDATA;
  781. goto err;
  782. }
  783. av_log(s->avctx, AV_LOG_WARNING,
  784. "Displaying the whole video surface.\n");
  785. sps->pic_conf_win.left_offset =
  786. sps->pic_conf_win.right_offset =
  787. sps->pic_conf_win.top_offset =
  788. sps->pic_conf_win.bottom_offset = 0;
  789. sps->output_width = sps->width;
  790. sps->output_height = sps->height;
  791. }
  792. // Inferred parameters
  793. sps->log2_ctb_size = sps->log2_min_cb_size +
  794. sps->log2_diff_max_min_coding_block_size;
  795. sps->log2_min_pu_size = sps->log2_min_cb_size - 1;
  796. sps->ctb_width = (sps->width + (1 << sps->log2_ctb_size) - 1) >> sps->log2_ctb_size;
  797. sps->ctb_height = (sps->height + (1 << sps->log2_ctb_size) - 1) >> sps->log2_ctb_size;
  798. sps->ctb_size = sps->ctb_width * sps->ctb_height;
  799. sps->min_cb_width = sps->width >> sps->log2_min_cb_size;
  800. sps->min_cb_height = sps->height >> sps->log2_min_cb_size;
  801. sps->min_tb_width = sps->width >> sps->log2_min_tb_size;
  802. sps->min_tb_height = sps->height >> sps->log2_min_tb_size;
  803. sps->min_pu_width = sps->width >> sps->log2_min_pu_size;
  804. sps->min_pu_height = sps->height >> sps->log2_min_pu_size;
  805. sps->qp_bd_offset = 6 * (sps->bit_depth - 8);
  806. if (sps->width & ((1 << sps->log2_min_cb_size) - 1) ||
  807. sps->height & ((1 << sps->log2_min_cb_size) - 1)) {
  808. av_log(s->avctx, AV_LOG_ERROR, "Invalid coded frame dimensions.\n");
  809. goto err;
  810. }
  811. if (sps->log2_ctb_size > MAX_LOG2_CTB_SIZE) {
  812. av_log(s->avctx, AV_LOG_ERROR, "CTB size out of range: 2^%d\n", sps->log2_ctb_size);
  813. goto err;
  814. }
  815. if (sps->max_transform_hierarchy_depth_inter > sps->log2_ctb_size - sps->log2_min_tb_size) {
  816. av_log(s->avctx, AV_LOG_ERROR, "max_transform_hierarchy_depth_inter out of range: %d\n",
  817. sps->max_transform_hierarchy_depth_inter);
  818. goto err;
  819. }
  820. if (sps->max_transform_hierarchy_depth_intra > sps->log2_ctb_size - sps->log2_min_tb_size) {
  821. av_log(s->avctx, AV_LOG_ERROR, "max_transform_hierarchy_depth_intra out of range: %d\n",
  822. sps->max_transform_hierarchy_depth_intra);
  823. goto err;
  824. }
  825. if (sps->log2_max_trafo_size > FFMIN(sps->log2_ctb_size, 5)) {
  826. av_log(s->avctx, AV_LOG_ERROR,
  827. "max transform block size out of range: %d\n",
  828. sps->log2_max_trafo_size);
  829. goto err;
  830. }
  831. if (s->avctx->debug & FF_DEBUG_BITSTREAM) {
  832. av_log(s->avctx, AV_LOG_DEBUG,
  833. "Parsed SPS: id %d; coded wxh: %dx%d; "
  834. "cropped wxh: %dx%d; pix_fmt: %s.\n",
  835. sps_id, sps->width, sps->height,
  836. sps->output_width, sps->output_height,
  837. av_get_pix_fmt_name(sps->pix_fmt));
  838. }
  839. /* check if this is a repeat of an already parsed SPS, then keep the
  840. * original one.
  841. * otherwise drop all PPSes that depend on it */
  842. if (s->sps_list[sps_id] &&
  843. !memcmp(s->sps_list[sps_id]->data, sps_buf->data, sps_buf->size)) {
  844. av_buffer_unref(&sps_buf);
  845. } else {
  846. for (i = 0; i < FF_ARRAY_ELEMS(s->pps_list); i++) {
  847. if (s->pps_list[i] && ((HEVCPPS*)s->pps_list[i]->data)->sps_id == sps_id)
  848. av_buffer_unref(&s->pps_list[i]);
  849. }
  850. av_buffer_unref(&s->sps_list[sps_id]);
  851. s->sps_list[sps_id] = sps_buf;
  852. }
  853. return 0;
  854. err:
  855. av_buffer_unref(&sps_buf);
  856. return ret;
  857. }
  858. static void hevc_pps_free(void *opaque, uint8_t *data)
  859. {
  860. HEVCPPS *pps = (HEVCPPS*)data;
  861. av_freep(&pps->column_width);
  862. av_freep(&pps->row_height);
  863. av_freep(&pps->col_bd);
  864. av_freep(&pps->row_bd);
  865. av_freep(&pps->col_idxX);
  866. av_freep(&pps->ctb_addr_rs_to_ts);
  867. av_freep(&pps->ctb_addr_ts_to_rs);
  868. av_freep(&pps->tile_pos_rs);
  869. av_freep(&pps->tile_id);
  870. av_freep(&pps->min_cb_addr_zs);
  871. av_freep(&pps->min_tb_addr_zs);
  872. av_freep(&pps);
  873. }
  874. int ff_hevc_decode_nal_pps(HEVCContext *s)
  875. {
  876. GetBitContext *gb = &s->HEVClc.gb;
  877. HEVCSPS *sps = NULL;
  878. int pic_area_in_ctbs, pic_area_in_min_cbs, pic_area_in_min_tbs;
  879. int log2_diff_ctb_min_tb_size;
  880. int i, j, x, y, ctb_addr_rs, tile_id;
  881. int ret = 0;
  882. int pps_id = 0;
  883. AVBufferRef *pps_buf;
  884. HEVCPPS *pps = av_mallocz(sizeof(*pps));
  885. if (!pps)
  886. return AVERROR(ENOMEM);
  887. pps_buf = av_buffer_create((uint8_t *)pps, sizeof(*pps),
  888. hevc_pps_free, NULL, 0);
  889. if (!pps_buf) {
  890. av_freep(&pps);
  891. return AVERROR(ENOMEM);
  892. }
  893. av_log(s->avctx, AV_LOG_DEBUG, "Decoding PPS\n");
  894. // Default values
  895. pps->loop_filter_across_tiles_enabled_flag = 1;
  896. pps->num_tile_columns = 1;
  897. pps->num_tile_rows = 1;
  898. pps->uniform_spacing_flag = 1;
  899. pps->disable_dbf = 0;
  900. pps->beta_offset = 0;
  901. pps->tc_offset = 0;
  902. // Coded parameters
  903. pps_id = get_ue_golomb_long(gb);
  904. if (pps_id >= MAX_PPS_COUNT) {
  905. av_log(s->avctx, AV_LOG_ERROR, "PPS id out of range: %d\n", pps_id);
  906. ret = AVERROR_INVALIDDATA;
  907. goto err;
  908. }
  909. pps->sps_id = get_ue_golomb_long(gb);
  910. if (pps->sps_id >= MAX_SPS_COUNT) {
  911. av_log(s->avctx, AV_LOG_ERROR, "SPS id out of range: %d\n", pps->sps_id);
  912. ret = AVERROR_INVALIDDATA;
  913. goto err;
  914. }
  915. if (!s->sps_list[pps->sps_id]) {
  916. av_log(s->avctx, AV_LOG_ERROR, "SPS does not exist \n");
  917. ret = AVERROR_INVALIDDATA;
  918. goto err;
  919. }
  920. sps = (HEVCSPS *)s->sps_list[pps->sps_id]->data;
  921. pps->dependent_slice_segments_enabled_flag = get_bits1(gb);
  922. pps->output_flag_present_flag = get_bits1(gb);
  923. pps->num_extra_slice_header_bits = get_bits(gb, 3);
  924. pps->sign_data_hiding_flag = get_bits1(gb);
  925. pps->cabac_init_present_flag = get_bits1(gb);
  926. pps->num_ref_idx_l0_default_active = get_ue_golomb_long(gb) + 1;
  927. pps->num_ref_idx_l1_default_active = get_ue_golomb_long(gb) + 1;
  928. pps->pic_init_qp_minus26 = get_se_golomb(gb);
  929. pps->constrained_intra_pred_flag = get_bits1(gb);
  930. pps->transform_skip_enabled_flag = get_bits1(gb);
  931. pps->cu_qp_delta_enabled_flag = get_bits1(gb);
  932. pps->diff_cu_qp_delta_depth = 0;
  933. if (pps->cu_qp_delta_enabled_flag)
  934. pps->diff_cu_qp_delta_depth = get_ue_golomb_long(gb);
  935. pps->cb_qp_offset = get_se_golomb(gb);
  936. if (pps->cb_qp_offset < -12 || pps->cb_qp_offset > 12) {
  937. av_log(s->avctx, AV_LOG_ERROR, "pps_cb_qp_offset out of range: %d\n",
  938. pps->cb_qp_offset);
  939. ret = AVERROR_INVALIDDATA;
  940. goto err;
  941. }
  942. pps->cr_qp_offset = get_se_golomb(gb);
  943. if (pps->cr_qp_offset < -12 || pps->cr_qp_offset > 12) {
  944. av_log(s->avctx, AV_LOG_ERROR, "pps_cr_qp_offset out of range: %d\n",
  945. pps->cr_qp_offset);
  946. ret = AVERROR_INVALIDDATA;
  947. goto err;
  948. }
  949. pps->pic_slice_level_chroma_qp_offsets_present_flag = get_bits1(gb);
  950. pps->weighted_pred_flag = get_bits1(gb);
  951. pps->weighted_bipred_flag = get_bits1(gb);
  952. pps->transquant_bypass_enable_flag = get_bits1(gb);
  953. pps->tiles_enabled_flag = get_bits1(gb);
  954. pps->entropy_coding_sync_enabled_flag = get_bits1(gb);
  955. if (pps->tiles_enabled_flag) {
  956. pps->num_tile_columns = get_ue_golomb_long(gb) + 1;
  957. pps->num_tile_rows = get_ue_golomb_long(gb) + 1;
  958. if (pps->num_tile_columns == 0 ||
  959. pps->num_tile_columns >= sps->width) {
  960. av_log(s->avctx, AV_LOG_ERROR, "num_tile_columns_minus1 out of range: %d\n",
  961. pps->num_tile_columns - 1);
  962. ret = AVERROR_INVALIDDATA;
  963. goto err;
  964. }
  965. if (pps->num_tile_rows == 0 ||
  966. pps->num_tile_rows >= sps->height) {
  967. av_log(s->avctx, AV_LOG_ERROR, "num_tile_rows_minus1 out of range: %d\n",
  968. pps->num_tile_rows - 1);
  969. ret = AVERROR_INVALIDDATA;
  970. goto err;
  971. }
  972. pps->column_width = av_malloc_array(pps->num_tile_columns, sizeof(*pps->column_width));
  973. pps->row_height = av_malloc_array(pps->num_tile_rows, sizeof(*pps->row_height));
  974. if (!pps->column_width || !pps->row_height) {
  975. ret = AVERROR(ENOMEM);
  976. goto err;
  977. }
  978. pps->uniform_spacing_flag = get_bits1(gb);
  979. if (!pps->uniform_spacing_flag) {
  980. int sum = 0;
  981. for (i = 0; i < pps->num_tile_columns - 1; i++) {
  982. pps->column_width[i] = get_ue_golomb_long(gb) + 1;
  983. sum += pps->column_width[i];
  984. }
  985. if (sum >= sps->ctb_width) {
  986. av_log(s->avctx, AV_LOG_ERROR, "Invalid tile widths.\n");
  987. ret = AVERROR_INVALIDDATA;
  988. goto err;
  989. }
  990. pps->column_width[pps->num_tile_columns - 1] = sps->ctb_width - sum;
  991. sum = 0;
  992. for (i = 0; i < pps->num_tile_rows - 1; i++) {
  993. pps->row_height[i] = get_ue_golomb_long(gb) + 1;
  994. sum += pps->row_height[i];
  995. }
  996. if (sum >= sps->ctb_height) {
  997. av_log(s->avctx, AV_LOG_ERROR, "Invalid tile heights.\n");
  998. ret = AVERROR_INVALIDDATA;
  999. goto err;
  1000. }
  1001. pps->row_height[pps->num_tile_rows - 1] = sps->ctb_height - sum;
  1002. }
  1003. pps->loop_filter_across_tiles_enabled_flag = get_bits1(gb);
  1004. }
  1005. pps->seq_loop_filter_across_slices_enabled_flag = get_bits1(gb);
  1006. pps->deblocking_filter_control_present_flag = get_bits1(gb);
  1007. if (pps->deblocking_filter_control_present_flag) {
  1008. pps->deblocking_filter_override_enabled_flag = get_bits1(gb);
  1009. pps->disable_dbf = get_bits1(gb);
  1010. if (!pps->disable_dbf) {
  1011. pps->beta_offset = get_se_golomb(gb) * 2;
  1012. pps->tc_offset = get_se_golomb(gb) * 2;
  1013. if (pps->beta_offset/2 < -6 || pps->beta_offset/2 > 6) {
  1014. av_log(s->avctx, AV_LOG_ERROR, "pps_beta_offset_div2 out of range: %d\n",
  1015. pps->beta_offset/2);
  1016. ret = AVERROR_INVALIDDATA;
  1017. goto err;
  1018. }
  1019. if (pps->tc_offset/2 < -6 || pps->tc_offset/2 > 6) {
  1020. av_log(s->avctx, AV_LOG_ERROR, "pps_tc_offset_div2 out of range: %d\n",
  1021. pps->tc_offset/2);
  1022. ret = AVERROR_INVALIDDATA;
  1023. goto err;
  1024. }
  1025. }
  1026. }
  1027. pps->scaling_list_data_present_flag = get_bits1(gb);
  1028. if (pps->scaling_list_data_present_flag) {
  1029. set_default_scaling_list_data(&pps->scaling_list);
  1030. ret = scaling_list_data(s, &pps->scaling_list);
  1031. if (ret < 0)
  1032. goto err;
  1033. }
  1034. pps->lists_modification_present_flag = get_bits1(gb);
  1035. pps->log2_parallel_merge_level = get_ue_golomb_long(gb) + 2;
  1036. if (pps->log2_parallel_merge_level > sps->log2_ctb_size) {
  1037. av_log(s->avctx, AV_LOG_ERROR, "log2_parallel_merge_level_minus2 out of range: %d\n",
  1038. pps->log2_parallel_merge_level - 2);
  1039. ret = AVERROR_INVALIDDATA;
  1040. goto err;
  1041. }
  1042. pps->slice_header_extension_present_flag = get_bits1(gb);
  1043. skip_bits1(gb); // pps_extension_flag
  1044. // Inferred parameters
  1045. pps->col_bd = av_malloc_array(pps->num_tile_columns + 1, sizeof(*pps->col_bd));
  1046. pps->row_bd = av_malloc_array(pps->num_tile_rows + 1, sizeof(*pps->row_bd));
  1047. pps->col_idxX = av_malloc_array(sps->ctb_width, sizeof(*pps->col_idxX));
  1048. if (!pps->col_bd || !pps->row_bd || !pps->col_idxX) {
  1049. ret = AVERROR(ENOMEM);
  1050. goto err;
  1051. }
  1052. if (pps->uniform_spacing_flag) {
  1053. if (!pps->column_width) {
  1054. pps->column_width = av_malloc_array(pps->num_tile_columns, sizeof(*pps->column_width));
  1055. pps->row_height = av_malloc_array(pps->num_tile_rows, sizeof(*pps->row_height));
  1056. }
  1057. if (!pps->column_width || !pps->row_height) {
  1058. ret = AVERROR(ENOMEM);
  1059. goto err;
  1060. }
  1061. for (i = 0; i < pps->num_tile_columns; i++) {
  1062. pps->column_width[i] = ((i + 1) * sps->ctb_width) / pps->num_tile_columns -
  1063. (i * sps->ctb_width) / pps->num_tile_columns;
  1064. }
  1065. for (i = 0; i < pps->num_tile_rows; i++) {
  1066. pps->row_height[i] = ((i + 1) * sps->ctb_height) / pps->num_tile_rows -
  1067. (i * sps->ctb_height) / pps->num_tile_rows;
  1068. }
  1069. }
  1070. pps->col_bd[0] = 0;
  1071. for (i = 0; i < pps->num_tile_columns; i++)
  1072. pps->col_bd[i + 1] = pps->col_bd[i] + pps->column_width[i];
  1073. pps->row_bd[0] = 0;
  1074. for (i = 0; i < pps->num_tile_rows; i++)
  1075. pps->row_bd[i + 1] = pps->row_bd[i] + pps->row_height[i];
  1076. for (i = 0, j = 0; i < sps->ctb_width; i++) {
  1077. if (i > pps->col_bd[j])
  1078. j++;
  1079. pps->col_idxX[i] = j;
  1080. }
  1081. /**
  1082. * 6.5
  1083. */
  1084. pic_area_in_ctbs = sps->ctb_width * sps->ctb_height;
  1085. pic_area_in_min_cbs = sps->min_cb_width * sps->min_cb_height;
  1086. pic_area_in_min_tbs = sps->min_tb_width * sps->min_tb_height;
  1087. pps->ctb_addr_rs_to_ts = av_malloc_array(pic_area_in_ctbs, sizeof(*pps->ctb_addr_rs_to_ts));
  1088. pps->ctb_addr_ts_to_rs = av_malloc_array(pic_area_in_ctbs, sizeof(*pps->ctb_addr_ts_to_rs));
  1089. pps->tile_id = av_malloc_array(pic_area_in_ctbs, sizeof(*pps->tile_id));
  1090. pps->min_cb_addr_zs = av_malloc_array(pic_area_in_min_cbs, sizeof(*pps->min_cb_addr_zs));
  1091. pps->min_tb_addr_zs = av_malloc_array(pic_area_in_min_tbs, sizeof(*pps->min_tb_addr_zs));
  1092. if (!pps->ctb_addr_rs_to_ts || !pps->ctb_addr_ts_to_rs ||
  1093. !pps->tile_id || !pps->min_cb_addr_zs || !pps->min_tb_addr_zs) {
  1094. ret = AVERROR(ENOMEM);
  1095. goto err;
  1096. }
  1097. for (ctb_addr_rs = 0; ctb_addr_rs < pic_area_in_ctbs; ctb_addr_rs++) {
  1098. int tb_x = ctb_addr_rs % sps->ctb_width;
  1099. int tb_y = ctb_addr_rs / sps->ctb_width;
  1100. int tile_x = 0;
  1101. int tile_y = 0;
  1102. int val = 0;
  1103. for (i = 0; i < pps->num_tile_columns; i++) {
  1104. if (tb_x < pps->col_bd[i + 1]) {
  1105. tile_x = i;
  1106. break;
  1107. }
  1108. }
  1109. for (i = 0; i < pps->num_tile_rows; i++) {
  1110. if (tb_y < pps->row_bd[i + 1]) {
  1111. tile_y = i;
  1112. break;
  1113. }
  1114. }
  1115. for (i = 0; i < tile_x; i++)
  1116. val += pps->row_height[tile_y] * pps->column_width[i];
  1117. for (i = 0; i < tile_y; i++)
  1118. val += sps->ctb_width * pps->row_height[i];
  1119. val += (tb_y - pps->row_bd[tile_y]) * pps->column_width[tile_x] +
  1120. tb_x - pps->col_bd[tile_x];
  1121. pps->ctb_addr_rs_to_ts[ctb_addr_rs] = val;
  1122. pps->ctb_addr_ts_to_rs[val] = ctb_addr_rs;
  1123. }
  1124. for (j = 0, tile_id = 0; j < pps->num_tile_rows; j++)
  1125. for (i = 0; i < pps->num_tile_columns; i++, tile_id++)
  1126. for (y = pps->row_bd[j]; y < pps->row_bd[j + 1]; y++)
  1127. for (x = pps->col_bd[i]; x < pps->col_bd[i + 1]; x++)
  1128. pps->tile_id[pps->ctb_addr_rs_to_ts[y * sps->ctb_width + x]] = tile_id;
  1129. pps->tile_pos_rs = av_malloc_array(tile_id, sizeof(*pps->tile_pos_rs));
  1130. if (!pps->tile_pos_rs) {
  1131. ret = AVERROR(ENOMEM);
  1132. goto err;
  1133. }
  1134. for (j = 0; j < pps->num_tile_rows; j++)
  1135. for (i = 0; i < pps->num_tile_columns; i++)
  1136. pps->tile_pos_rs[j * pps->num_tile_columns + i] = pps->row_bd[j] * sps->ctb_width + pps->col_bd[i];
  1137. for (y = 0; y < sps->min_cb_height; y++) {
  1138. for (x = 0; x < sps->min_cb_width; x++) {
  1139. int tb_x = x >> sps->log2_diff_max_min_coding_block_size;
  1140. int tb_y = y >> sps->log2_diff_max_min_coding_block_size;
  1141. int ctb_addr_rs = sps->ctb_width * tb_y + tb_x;
  1142. int val = pps->ctb_addr_rs_to_ts[ctb_addr_rs] <<
  1143. (sps->log2_diff_max_min_coding_block_size * 2);
  1144. for (i = 0; i < sps->log2_diff_max_min_coding_block_size; i++) {
  1145. int m = 1 << i;
  1146. val += (m & x ? m * m : 0) + (m & y ? 2 * m * m : 0);
  1147. }
  1148. pps->min_cb_addr_zs[y * sps->min_cb_width + x] = val;
  1149. }
  1150. }
  1151. log2_diff_ctb_min_tb_size = sps->log2_ctb_size - sps->log2_min_tb_size;
  1152. for (y = 0; y < sps->min_tb_height; y++) {
  1153. for (x = 0; x < sps->min_tb_width; x++) {
  1154. int tb_x = x >> log2_diff_ctb_min_tb_size;
  1155. int tb_y = y >> log2_diff_ctb_min_tb_size;
  1156. int ctb_addr_rs = sps->ctb_width * tb_y + tb_x;
  1157. int val = pps->ctb_addr_rs_to_ts[ctb_addr_rs] <<
  1158. (log2_diff_ctb_min_tb_size * 2);
  1159. for (i = 0; i < log2_diff_ctb_min_tb_size; i++) {
  1160. int m = 1 << i;
  1161. val += (m & x ? m * m : 0) + (m & y ? 2 * m * m : 0);
  1162. }
  1163. pps->min_tb_addr_zs[y * sps->min_tb_width + x] = val;
  1164. }
  1165. }
  1166. av_buffer_unref(&s->pps_list[pps_id]);
  1167. s->pps_list[pps_id] = pps_buf;
  1168. return 0;
  1169. err:
  1170. av_buffer_unref(&pps_buf);
  1171. return ret;
  1172. }