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  1. /*
  2. * HEVC video decoder
  3. *
  4. * Copyright (C) 2012 - 2013 Guillaume Martres
  5. *
  6. * This file is part of Libav.
  7. *
  8. * Libav is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU Lesser General Public
  10. * License as published by the Free Software Foundation; either
  11. * version 2.1 of the License, or (at your option) any later version.
  12. *
  13. * Libav is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  16. * Lesser General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU Lesser General Public
  19. * License along with Libav; if not, write to the Free Software
  20. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  21. */
  22. #ifndef AVCODEC_HEVC_H
  23. #define AVCODEC_HEVC_H
  24. #include <stddef.h>
  25. #include <stdint.h>
  26. #include "libavutil/buffer.h"
  27. #include "libavutil/md5.h"
  28. #include "avcodec.h"
  29. #include "bswapdsp.h"
  30. #include "cabac.h"
  31. #include "get_bits.h"
  32. #include "h2645_parse.h"
  33. #include "hevcdsp.h"
  34. #include "internal.h"
  35. #include "thread.h"
  36. #include "videodsp.h"
  37. #define MAX_DPB_SIZE 16 // A.4.1
  38. #define MAX_REFS 16
  39. /**
  40. * 7.4.2.1
  41. */
  42. #define MAX_SUB_LAYERS 7
  43. #define MAX_VPS_COUNT 16
  44. #define MAX_SPS_COUNT 32
  45. #define MAX_PPS_COUNT 256
  46. #define MAX_SHORT_TERM_RPS_COUNT 64
  47. #define MAX_CU_SIZE 128
  48. //TODO: check if this is really the maximum
  49. #define MAX_TRANSFORM_DEPTH 5
  50. #define MAX_TB_SIZE 32
  51. #define MAX_PB_SIZE 64
  52. #define MAX_LOG2_CTB_SIZE 6
  53. #define MAX_QP 51
  54. #define DEFAULT_INTRA_TC_OFFSET 2
  55. #define HEVC_CONTEXTS 183
  56. #define MRG_MAX_NUM_CANDS 5
  57. #define L0 0
  58. #define L1 1
  59. #define EPEL_EXTRA_BEFORE 1
  60. #define EPEL_EXTRA_AFTER 2
  61. #define EPEL_EXTRA 3
  62. #define EDGE_EMU_BUFFER_STRIDE 80
  63. /**
  64. * Value of the luma sample at position (x, y) in the 2D array tab.
  65. */
  66. #define SAMPLE(tab, x, y) ((tab)[(y) * s->sps->width + (x)])
  67. #define SAMPLE_CTB(tab, x, y) ((tab)[(y) * min_cb_width + (x)])
  68. #define IS_IDR(s) (s->nal_unit_type == NAL_IDR_W_RADL || s->nal_unit_type == NAL_IDR_N_LP)
  69. #define IS_BLA(s) (s->nal_unit_type == NAL_BLA_W_RADL || s->nal_unit_type == NAL_BLA_W_LP || \
  70. s->nal_unit_type == NAL_BLA_N_LP)
  71. #define IS_IRAP(s) (s->nal_unit_type >= 16 && s->nal_unit_type <= 23)
  72. #define FFUDIV(a,b) (((a) > 0 ? (a) : (a) - (b) + 1) / (b))
  73. #define FFUMOD(a,b) ((a) - (b) * FFUDIV(a,b))
  74. /**
  75. * Table 7-3: NAL unit type codes
  76. */
  77. enum NALUnitType {
  78. NAL_TRAIL_N = 0,
  79. NAL_TRAIL_R = 1,
  80. NAL_TSA_N = 2,
  81. NAL_TSA_R = 3,
  82. NAL_STSA_N = 4,
  83. NAL_STSA_R = 5,
  84. NAL_RADL_N = 6,
  85. NAL_RADL_R = 7,
  86. NAL_RASL_N = 8,
  87. NAL_RASL_R = 9,
  88. NAL_BLA_W_LP = 16,
  89. NAL_BLA_W_RADL = 17,
  90. NAL_BLA_N_LP = 18,
  91. NAL_IDR_W_RADL = 19,
  92. NAL_IDR_N_LP = 20,
  93. NAL_CRA_NUT = 21,
  94. NAL_VPS = 32,
  95. NAL_SPS = 33,
  96. NAL_PPS = 34,
  97. NAL_AUD = 35,
  98. NAL_EOS_NUT = 36,
  99. NAL_EOB_NUT = 37,
  100. NAL_FD_NUT = 38,
  101. NAL_SEI_PREFIX = 39,
  102. NAL_SEI_SUFFIX = 40,
  103. };
  104. enum RPSType {
  105. ST_CURR_BEF = 0,
  106. ST_CURR_AFT,
  107. ST_FOLL,
  108. LT_CURR,
  109. LT_FOLL,
  110. NB_RPS_TYPE,
  111. };
  112. enum SliceType {
  113. B_SLICE = 0,
  114. P_SLICE = 1,
  115. I_SLICE = 2,
  116. };
  117. enum SyntaxElement {
  118. SAO_MERGE_FLAG = 0,
  119. SAO_TYPE_IDX,
  120. SAO_EO_CLASS,
  121. SAO_BAND_POSITION,
  122. SAO_OFFSET_ABS,
  123. SAO_OFFSET_SIGN,
  124. END_OF_SLICE_FLAG,
  125. SPLIT_CODING_UNIT_FLAG,
  126. CU_TRANSQUANT_BYPASS_FLAG,
  127. SKIP_FLAG,
  128. CU_QP_DELTA,
  129. PRED_MODE_FLAG,
  130. PART_MODE,
  131. PCM_FLAG,
  132. PREV_INTRA_LUMA_PRED_FLAG,
  133. MPM_IDX,
  134. REM_INTRA_LUMA_PRED_MODE,
  135. INTRA_CHROMA_PRED_MODE,
  136. MERGE_FLAG,
  137. MERGE_IDX,
  138. INTER_PRED_IDC,
  139. REF_IDX_L0,
  140. REF_IDX_L1,
  141. ABS_MVD_GREATER0_FLAG,
  142. ABS_MVD_GREATER1_FLAG,
  143. ABS_MVD_MINUS2,
  144. MVD_SIGN_FLAG,
  145. MVP_LX_FLAG,
  146. NO_RESIDUAL_DATA_FLAG,
  147. SPLIT_TRANSFORM_FLAG,
  148. CBF_LUMA,
  149. CBF_CB_CR,
  150. TRANSFORM_SKIP_FLAG,
  151. LAST_SIGNIFICANT_COEFF_X_PREFIX,
  152. LAST_SIGNIFICANT_COEFF_Y_PREFIX,
  153. LAST_SIGNIFICANT_COEFF_X_SUFFIX,
  154. LAST_SIGNIFICANT_COEFF_Y_SUFFIX,
  155. SIGNIFICANT_COEFF_GROUP_FLAG,
  156. SIGNIFICANT_COEFF_FLAG,
  157. COEFF_ABS_LEVEL_GREATER1_FLAG,
  158. COEFF_ABS_LEVEL_GREATER2_FLAG,
  159. COEFF_ABS_LEVEL_REMAINING,
  160. COEFF_SIGN_FLAG,
  161. };
  162. enum PartMode {
  163. PART_2Nx2N = 0,
  164. PART_2NxN = 1,
  165. PART_Nx2N = 2,
  166. PART_NxN = 3,
  167. PART_2NxnU = 4,
  168. PART_2NxnD = 5,
  169. PART_nLx2N = 6,
  170. PART_nRx2N = 7,
  171. };
  172. enum PredMode {
  173. MODE_INTER = 0,
  174. MODE_INTRA,
  175. MODE_SKIP,
  176. };
  177. enum InterPredIdc {
  178. PRED_L0 = 0,
  179. PRED_L1,
  180. PRED_BI,
  181. };
  182. enum IntraPredMode {
  183. INTRA_PLANAR = 0,
  184. INTRA_DC,
  185. INTRA_ANGULAR_2,
  186. INTRA_ANGULAR_3,
  187. INTRA_ANGULAR_4,
  188. INTRA_ANGULAR_5,
  189. INTRA_ANGULAR_6,
  190. INTRA_ANGULAR_7,
  191. INTRA_ANGULAR_8,
  192. INTRA_ANGULAR_9,
  193. INTRA_ANGULAR_10,
  194. INTRA_ANGULAR_11,
  195. INTRA_ANGULAR_12,
  196. INTRA_ANGULAR_13,
  197. INTRA_ANGULAR_14,
  198. INTRA_ANGULAR_15,
  199. INTRA_ANGULAR_16,
  200. INTRA_ANGULAR_17,
  201. INTRA_ANGULAR_18,
  202. INTRA_ANGULAR_19,
  203. INTRA_ANGULAR_20,
  204. INTRA_ANGULAR_21,
  205. INTRA_ANGULAR_22,
  206. INTRA_ANGULAR_23,
  207. INTRA_ANGULAR_24,
  208. INTRA_ANGULAR_25,
  209. INTRA_ANGULAR_26,
  210. INTRA_ANGULAR_27,
  211. INTRA_ANGULAR_28,
  212. INTRA_ANGULAR_29,
  213. INTRA_ANGULAR_30,
  214. INTRA_ANGULAR_31,
  215. INTRA_ANGULAR_32,
  216. INTRA_ANGULAR_33,
  217. INTRA_ANGULAR_34,
  218. };
  219. enum SAOType {
  220. SAO_NOT_APPLIED = 0,
  221. SAO_BAND,
  222. SAO_EDGE,
  223. };
  224. enum SAOEOClass {
  225. SAO_EO_HORIZ = 0,
  226. SAO_EO_VERT,
  227. SAO_EO_135D,
  228. SAO_EO_45D,
  229. };
  230. enum ScanType {
  231. SCAN_DIAG = 0,
  232. SCAN_HORIZ,
  233. SCAN_VERT,
  234. };
  235. typedef struct ShortTermRPS {
  236. unsigned int num_negative_pics;
  237. int num_delta_pocs;
  238. int rps_idx_num_delta_pocs;
  239. int32_t delta_poc[32];
  240. uint8_t used[32];
  241. } ShortTermRPS;
  242. typedef struct LongTermRPS {
  243. int poc[32];
  244. uint8_t used[32];
  245. uint8_t nb_refs;
  246. } LongTermRPS;
  247. typedef struct RefPicList {
  248. struct HEVCFrame *ref[MAX_REFS];
  249. int list[MAX_REFS];
  250. int isLongTerm[MAX_REFS];
  251. int nb_refs;
  252. } RefPicList;
  253. typedef struct RefPicListTab {
  254. RefPicList refPicList[2];
  255. } RefPicListTab;
  256. typedef struct HEVCWindow {
  257. unsigned int left_offset;
  258. unsigned int right_offset;
  259. unsigned int top_offset;
  260. unsigned int bottom_offset;
  261. } HEVCWindow;
  262. typedef struct VUI {
  263. AVRational sar;
  264. int overscan_info_present_flag;
  265. int overscan_appropriate_flag;
  266. int video_signal_type_present_flag;
  267. int video_format;
  268. int video_full_range_flag;
  269. int colour_description_present_flag;
  270. uint8_t colour_primaries;
  271. uint8_t transfer_characteristic;
  272. uint8_t matrix_coeffs;
  273. int chroma_loc_info_present_flag;
  274. int chroma_sample_loc_type_top_field;
  275. int chroma_sample_loc_type_bottom_field;
  276. int neutra_chroma_indication_flag;
  277. int field_seq_flag;
  278. int frame_field_info_present_flag;
  279. int default_display_window_flag;
  280. HEVCWindow def_disp_win;
  281. int vui_timing_info_present_flag;
  282. uint32_t vui_num_units_in_tick;
  283. uint32_t vui_time_scale;
  284. int vui_poc_proportional_to_timing_flag;
  285. int vui_num_ticks_poc_diff_one_minus1;
  286. int vui_hrd_parameters_present_flag;
  287. int bitstream_restriction_flag;
  288. int tiles_fixed_structure_flag;
  289. int motion_vectors_over_pic_boundaries_flag;
  290. int restricted_ref_pic_lists_flag;
  291. int min_spatial_segmentation_idc;
  292. int max_bytes_per_pic_denom;
  293. int max_bits_per_min_cu_denom;
  294. int log2_max_mv_length_horizontal;
  295. int log2_max_mv_length_vertical;
  296. } VUI;
  297. typedef struct PTLCommon {
  298. uint8_t profile_space;
  299. uint8_t tier_flag;
  300. uint8_t profile_idc;
  301. uint8_t profile_compatibility_flag[32];
  302. uint8_t level_idc;
  303. uint8_t progressive_source_flag;
  304. uint8_t interlaced_source_flag;
  305. uint8_t non_packed_constraint_flag;
  306. uint8_t frame_only_constraint_flag;
  307. } PTLCommon;
  308. typedef struct PTL {
  309. PTLCommon general_ptl;
  310. PTLCommon sub_layer_ptl[MAX_SUB_LAYERS];
  311. uint8_t sub_layer_profile_present_flag[MAX_SUB_LAYERS];
  312. uint8_t sub_layer_level_present_flag[MAX_SUB_LAYERS];
  313. } PTL;
  314. typedef struct HEVCVPS {
  315. uint8_t vps_temporal_id_nesting_flag;
  316. int vps_max_layers;
  317. int vps_max_sub_layers; ///< vps_max_temporal_layers_minus1 + 1
  318. PTL ptl;
  319. int vps_sub_layer_ordering_info_present_flag;
  320. unsigned int vps_max_dec_pic_buffering[MAX_SUB_LAYERS];
  321. unsigned int vps_num_reorder_pics[MAX_SUB_LAYERS];
  322. unsigned int vps_max_latency_increase[MAX_SUB_LAYERS];
  323. int vps_max_layer_id;
  324. int vps_num_layer_sets; ///< vps_num_layer_sets_minus1 + 1
  325. uint8_t vps_timing_info_present_flag;
  326. uint32_t vps_num_units_in_tick;
  327. uint32_t vps_time_scale;
  328. uint8_t vps_poc_proportional_to_timing_flag;
  329. int vps_num_ticks_poc_diff_one; ///< vps_num_ticks_poc_diff_one_minus1 + 1
  330. int vps_num_hrd_parameters;
  331. } HEVCVPS;
  332. typedef struct ScalingList {
  333. /* This is a little wasteful, since sizeID 0 only needs 8 coeffs,
  334. * and size ID 3 only has 2 arrays, not 6. */
  335. uint8_t sl[4][6][64];
  336. uint8_t sl_dc[2][6];
  337. } ScalingList;
  338. typedef struct HEVCSPS {
  339. int vps_id;
  340. int chroma_format_idc;
  341. uint8_t separate_colour_plane_flag;
  342. ///< output (i.e. cropped) values
  343. int output_width, output_height;
  344. HEVCWindow output_window;
  345. HEVCWindow pic_conf_win;
  346. int bit_depth;
  347. int pixel_shift;
  348. enum AVPixelFormat pix_fmt;
  349. unsigned int log2_max_poc_lsb;
  350. int pcm_enabled_flag;
  351. int max_sub_layers;
  352. struct {
  353. int max_dec_pic_buffering;
  354. int num_reorder_pics;
  355. int max_latency_increase;
  356. } temporal_layer[MAX_SUB_LAYERS];
  357. VUI vui;
  358. PTL ptl;
  359. uint8_t scaling_list_enable_flag;
  360. ScalingList scaling_list;
  361. unsigned int nb_st_rps;
  362. ShortTermRPS st_rps[MAX_SHORT_TERM_RPS_COUNT];
  363. uint8_t amp_enabled_flag;
  364. uint8_t sao_enabled;
  365. uint8_t long_term_ref_pics_present_flag;
  366. uint16_t lt_ref_pic_poc_lsb_sps[32];
  367. uint8_t used_by_curr_pic_lt_sps_flag[32];
  368. uint8_t num_long_term_ref_pics_sps;
  369. struct {
  370. uint8_t bit_depth;
  371. uint8_t bit_depth_chroma;
  372. unsigned int log2_min_pcm_cb_size;
  373. unsigned int log2_max_pcm_cb_size;
  374. uint8_t loop_filter_disable_flag;
  375. } pcm;
  376. uint8_t sps_temporal_mvp_enabled_flag;
  377. uint8_t sps_strong_intra_smoothing_enable_flag;
  378. unsigned int log2_min_cb_size;
  379. unsigned int log2_diff_max_min_coding_block_size;
  380. unsigned int log2_min_tb_size;
  381. unsigned int log2_max_trafo_size;
  382. unsigned int log2_ctb_size;
  383. unsigned int log2_min_pu_size;
  384. int max_transform_hierarchy_depth_inter;
  385. int max_transform_hierarchy_depth_intra;
  386. ///< coded frame dimension in various units
  387. int width;
  388. int height;
  389. int ctb_width;
  390. int ctb_height;
  391. int ctb_size;
  392. int min_cb_width;
  393. int min_cb_height;
  394. int min_tb_width;
  395. int min_tb_height;
  396. int min_pu_width;
  397. int min_pu_height;
  398. int hshift[3];
  399. int vshift[3];
  400. int qp_bd_offset;
  401. } HEVCSPS;
  402. typedef struct HEVCPPS {
  403. unsigned int sps_id; ///< seq_parameter_set_id
  404. uint8_t sign_data_hiding_flag;
  405. uint8_t cabac_init_present_flag;
  406. int num_ref_idx_l0_default_active; ///< num_ref_idx_l0_default_active_minus1 + 1
  407. int num_ref_idx_l1_default_active; ///< num_ref_idx_l1_default_active_minus1 + 1
  408. int pic_init_qp_minus26;
  409. uint8_t constrained_intra_pred_flag;
  410. uint8_t transform_skip_enabled_flag;
  411. uint8_t cu_qp_delta_enabled_flag;
  412. int diff_cu_qp_delta_depth;
  413. int cb_qp_offset;
  414. int cr_qp_offset;
  415. uint8_t pic_slice_level_chroma_qp_offsets_present_flag;
  416. uint8_t weighted_pred_flag;
  417. uint8_t weighted_bipred_flag;
  418. uint8_t output_flag_present_flag;
  419. uint8_t transquant_bypass_enable_flag;
  420. uint8_t dependent_slice_segments_enabled_flag;
  421. uint8_t tiles_enabled_flag;
  422. uint8_t entropy_coding_sync_enabled_flag;
  423. int num_tile_columns; ///< num_tile_columns_minus1 + 1
  424. int num_tile_rows; ///< num_tile_rows_minus1 + 1
  425. uint8_t uniform_spacing_flag;
  426. uint8_t loop_filter_across_tiles_enabled_flag;
  427. uint8_t seq_loop_filter_across_slices_enabled_flag;
  428. uint8_t deblocking_filter_control_present_flag;
  429. uint8_t deblocking_filter_override_enabled_flag;
  430. uint8_t disable_dbf;
  431. int beta_offset; ///< beta_offset_div2 * 2
  432. int tc_offset; ///< tc_offset_div2 * 2
  433. uint8_t scaling_list_data_present_flag;
  434. ScalingList scaling_list;
  435. uint8_t lists_modification_present_flag;
  436. int log2_parallel_merge_level; ///< log2_parallel_merge_level_minus2 + 2
  437. int num_extra_slice_header_bits;
  438. uint8_t slice_header_extension_present_flag;
  439. // Inferred parameters
  440. unsigned int *column_width; ///< ColumnWidth
  441. unsigned int *row_height; ///< RowHeight
  442. unsigned int *col_bd; ///< ColBd
  443. unsigned int *row_bd; ///< RowBd
  444. int *col_idxX;
  445. int *ctb_addr_rs_to_ts; ///< CtbAddrRSToTS
  446. int *ctb_addr_ts_to_rs; ///< CtbAddrTSToRS
  447. int *tile_id; ///< TileId
  448. int *tile_pos_rs; ///< TilePosRS
  449. int *min_tb_addr_zs; ///< MinTbAddrZS
  450. } HEVCPPS;
  451. typedef struct HEVCParamSets {
  452. AVBufferRef *vps_list[MAX_VPS_COUNT];
  453. AVBufferRef *sps_list[MAX_SPS_COUNT];
  454. AVBufferRef *pps_list[MAX_PPS_COUNT];
  455. /* currently active parameter sets */
  456. const HEVCVPS *vps;
  457. const HEVCSPS *sps;
  458. const HEVCPPS *pps;
  459. } HEVCParamSets;
  460. typedef struct SliceHeader {
  461. unsigned int pps_id;
  462. ///< address (in raster order) of the first block in the current slice segment
  463. unsigned int slice_segment_addr;
  464. ///< address (in raster order) of the first block in the current slice
  465. unsigned int slice_addr;
  466. enum SliceType slice_type;
  467. int pic_order_cnt_lsb;
  468. uint8_t first_slice_in_pic_flag;
  469. uint8_t dependent_slice_segment_flag;
  470. uint8_t pic_output_flag;
  471. uint8_t colour_plane_id;
  472. ///< RPS coded in the slice header itself is stored here
  473. int short_term_ref_pic_set_sps_flag;
  474. int short_term_ref_pic_set_size;
  475. ShortTermRPS slice_rps;
  476. const ShortTermRPS *short_term_rps;
  477. int long_term_ref_pic_set_size;
  478. LongTermRPS long_term_rps;
  479. unsigned int list_entry_lx[2][32];
  480. uint8_t rpl_modification_flag[2];
  481. uint8_t no_output_of_prior_pics_flag;
  482. uint8_t slice_temporal_mvp_enabled_flag;
  483. unsigned int nb_refs[2];
  484. uint8_t slice_sample_adaptive_offset_flag[3];
  485. uint8_t mvd_l1_zero_flag;
  486. uint8_t cabac_init_flag;
  487. uint8_t disable_deblocking_filter_flag; ///< slice_header_disable_deblocking_filter_flag
  488. uint8_t slice_loop_filter_across_slices_enabled_flag;
  489. uint8_t collocated_list;
  490. unsigned int collocated_ref_idx;
  491. int slice_qp_delta;
  492. int slice_cb_qp_offset;
  493. int slice_cr_qp_offset;
  494. int beta_offset; ///< beta_offset_div2 * 2
  495. int tc_offset; ///< tc_offset_div2 * 2
  496. unsigned int max_num_merge_cand; ///< 5 - 5_minus_max_num_merge_cand
  497. int num_entry_point_offsets;
  498. int8_t slice_qp;
  499. uint8_t luma_log2_weight_denom;
  500. int16_t chroma_log2_weight_denom;
  501. int16_t luma_weight_l0[16];
  502. int16_t chroma_weight_l0[16][2];
  503. int16_t chroma_weight_l1[16][2];
  504. int16_t luma_weight_l1[16];
  505. int16_t luma_offset_l0[16];
  506. int16_t chroma_offset_l0[16][2];
  507. int16_t luma_offset_l1[16];
  508. int16_t chroma_offset_l1[16][2];
  509. int slice_ctb_addr_rs;
  510. } SliceHeader;
  511. typedef struct CodingTree {
  512. int depth; ///< ctDepth
  513. } CodingTree;
  514. typedef struct CodingUnit {
  515. int x;
  516. int y;
  517. enum PredMode pred_mode; ///< PredMode
  518. enum PartMode part_mode; ///< PartMode
  519. // Inferred parameters
  520. uint8_t intra_split_flag; ///< IntraSplitFlag
  521. uint8_t max_trafo_depth; ///< MaxTrafoDepth
  522. uint8_t cu_transquant_bypass_flag;
  523. } CodingUnit;
  524. typedef struct Mv {
  525. int16_t x; ///< horizontal component of motion vector
  526. int16_t y; ///< vertical component of motion vector
  527. } Mv;
  528. typedef struct MvField {
  529. DECLARE_ALIGNED(4, Mv, mv)[2];
  530. int8_t ref_idx[2];
  531. int8_t pred_flag[2];
  532. uint8_t is_intra;
  533. } MvField;
  534. typedef struct NeighbourAvailable {
  535. int cand_bottom_left;
  536. int cand_left;
  537. int cand_up;
  538. int cand_up_left;
  539. int cand_up_right;
  540. int cand_up_right_sap;
  541. } NeighbourAvailable;
  542. typedef struct PredictionUnit {
  543. int mpm_idx;
  544. int rem_intra_luma_pred_mode;
  545. uint8_t intra_pred_mode[4];
  546. Mv mvd;
  547. uint8_t merge_flag;
  548. uint8_t intra_pred_mode_c;
  549. } PredictionUnit;
  550. typedef struct TransformUnit {
  551. int cu_qp_delta;
  552. // Inferred parameters;
  553. int cur_intra_pred_mode;
  554. uint8_t is_cu_qp_delta_coded;
  555. } TransformUnit;
  556. typedef struct DBParams {
  557. int beta_offset;
  558. int tc_offset;
  559. } DBParams;
  560. #define HEVC_FRAME_FLAG_OUTPUT (1 << 0)
  561. #define HEVC_FRAME_FLAG_SHORT_REF (1 << 1)
  562. #define HEVC_FRAME_FLAG_LONG_REF (1 << 2)
  563. typedef struct HEVCFrame {
  564. AVFrame *frame;
  565. ThreadFrame tf;
  566. MvField *tab_mvf;
  567. RefPicList *refPicList;
  568. RefPicListTab **rpl_tab;
  569. int ctb_count;
  570. int poc;
  571. struct HEVCFrame *collocated_ref;
  572. HEVCWindow window;
  573. AVBufferRef *tab_mvf_buf;
  574. AVBufferRef *rpl_tab_buf;
  575. AVBufferRef *rpl_buf;
  576. AVBufferRef *hwaccel_priv_buf;
  577. void *hwaccel_picture_private;
  578. /**
  579. * A sequence counter, so that old frames are output first
  580. * after a POC reset
  581. */
  582. uint16_t sequence;
  583. /**
  584. * A combination of HEVC_FRAME_FLAG_*
  585. */
  586. uint8_t flags;
  587. } HEVCFrame;
  588. struct HEVCContext;
  589. typedef struct HEVCPredContext {
  590. void (*intra_pred[4])(struct HEVCContext *s, int x0, int y0, int c_idx);
  591. void (*pred_planar[4])(uint8_t *src, const uint8_t *top,
  592. const uint8_t *left, ptrdiff_t stride);
  593. void (*pred_dc)(uint8_t *src, const uint8_t *top, const uint8_t *left,
  594. ptrdiff_t stride, int log2_size, int c_idx);
  595. void (*pred_angular[4])(uint8_t *src, const uint8_t *top,
  596. const uint8_t *left, ptrdiff_t stride,
  597. int c_idx, int mode);
  598. } HEVCPredContext;
  599. typedef struct HEVCLocalContext {
  600. DECLARE_ALIGNED(16, int16_t, mc_buffer[(MAX_PB_SIZE + 24) * MAX_PB_SIZE]);
  601. uint8_t cabac_state[HEVC_CONTEXTS];
  602. uint8_t first_qp_group;
  603. GetBitContext gb;
  604. CABACContext cc;
  605. int8_t qp_y;
  606. int8_t curr_qp_y;
  607. TransformUnit tu;
  608. uint8_t ctb_left_flag;
  609. uint8_t ctb_up_flag;
  610. uint8_t ctb_up_right_flag;
  611. uint8_t ctb_up_left_flag;
  612. int start_of_tiles_x;
  613. int end_of_tiles_x;
  614. int end_of_tiles_y;
  615. /* +7 is for subpixel interpolation, *2 for high bit depths */
  616. DECLARE_ALIGNED(32, uint8_t, edge_emu_buffer)[(MAX_PB_SIZE + 7) * EDGE_EMU_BUFFER_STRIDE * 2];
  617. CodingTree ct;
  618. CodingUnit cu;
  619. PredictionUnit pu;
  620. NeighbourAvailable na;
  621. #define BOUNDARY_LEFT_SLICE (1 << 0)
  622. #define BOUNDARY_LEFT_TILE (1 << 1)
  623. #define BOUNDARY_UPPER_SLICE (1 << 2)
  624. #define BOUNDARY_UPPER_TILE (1 << 3)
  625. /* properties of the boundary of the current CTB for the purposes
  626. * of the deblocking filter */
  627. int boundary_flags;
  628. } HEVCLocalContext;
  629. typedef struct HEVCContext {
  630. const AVClass *c; // needed by private avoptions
  631. AVCodecContext *avctx;
  632. HEVCLocalContext HEVClc;
  633. uint8_t cabac_state[HEVC_CONTEXTS];
  634. /** 1 if the independent slice segment header was successfully parsed */
  635. uint8_t slice_initialized;
  636. AVFrame *frame;
  637. AVFrame *sao_frame;
  638. AVFrame *tmp_frame;
  639. AVFrame *output_frame;
  640. HEVCParamSets ps;
  641. AVBufferPool *tab_mvf_pool;
  642. AVBufferPool *rpl_tab_pool;
  643. ///< candidate references for the current frame
  644. RefPicList rps[5];
  645. SliceHeader sh;
  646. SAOParams *sao;
  647. DBParams *deblock;
  648. enum NALUnitType nal_unit_type;
  649. int temporal_id; ///< temporal_id_plus1 - 1
  650. HEVCFrame *ref;
  651. HEVCFrame DPB[32];
  652. int poc;
  653. int pocTid0;
  654. int slice_idx; ///< number of the slice being currently decoded
  655. int eos; ///< current packet contains an EOS/EOB NAL
  656. int max_ra;
  657. int bs_width;
  658. int bs_height;
  659. int is_decoded;
  660. HEVCPredContext hpc;
  661. HEVCDSPContext hevcdsp;
  662. VideoDSPContext vdsp;
  663. BswapDSPContext bdsp;
  664. int8_t *qp_y_tab;
  665. uint8_t *horizontal_bs;
  666. uint8_t *vertical_bs;
  667. int32_t *tab_slice_address;
  668. // CU
  669. uint8_t *skip_flag;
  670. uint8_t *tab_ct_depth;
  671. // PU
  672. uint8_t *tab_ipm;
  673. uint8_t *cbf_luma; // cbf_luma of colocated TU
  674. uint8_t *is_pcm;
  675. // CTB-level flags affecting loop filter operation
  676. uint8_t *filter_slice_edges;
  677. /** used on BE to byteswap the lines for checksumming */
  678. uint8_t *checksum_buf;
  679. int checksum_buf_size;
  680. /**
  681. * Sequence counters for decoded and output frames, so that old
  682. * frames are output first after a POC reset
  683. */
  684. uint16_t seq_decode;
  685. uint16_t seq_output;
  686. H2645Packet pkt;
  687. // type of the first VCL NAL of the current frame
  688. enum NALUnitType first_nal_type;
  689. // for checking the frame checksums
  690. struct AVMD5 *md5_ctx;
  691. uint8_t md5[3][16];
  692. uint8_t is_md5;
  693. uint8_t context_initialized;
  694. uint8_t is_nalff; ///< this flag is != 0 if bitstream is encapsulated
  695. ///< as a format defined in 14496-15
  696. int apply_defdispwin;
  697. int nal_length_size; ///< Number of bytes used for nal length (1, 2 or 4)
  698. int nuh_layer_id;
  699. /** frame packing arrangement variables */
  700. int sei_frame_packing_present;
  701. int frame_packing_arrangement_type;
  702. int content_interpretation_type;
  703. int quincunx_subsampling;
  704. /** display orientation */
  705. int sei_display_orientation_present;
  706. int sei_anticlockwise_rotation;
  707. int sei_hflip, sei_vflip;
  708. } HEVCContext;
  709. int ff_hevc_decode_short_term_rps(GetBitContext *gb, AVCodecContext *avctx,
  710. ShortTermRPS *rps, const HEVCSPS *sps, int is_slice_header);
  711. /**
  712. * Parse the SPS from the bitstream into the provided HEVCSPS struct.
  713. *
  714. * @param sps_id the SPS id will be written here
  715. * @param apply_defdispwin if set 1, the default display window from the VUI
  716. * will be applied to the video dimensions
  717. * @param vps_list if non-NULL, this function will validate that the SPS refers
  718. * to an existing VPS
  719. */
  720. int ff_hevc_parse_sps(HEVCSPS *sps, GetBitContext *gb, unsigned int *sps_id,
  721. int apply_defdispwin, AVBufferRef **vps_list, AVCodecContext *avctx);
  722. int ff_hevc_decode_nal_vps(GetBitContext *gb, AVCodecContext *avctx,
  723. HEVCParamSets *ps);
  724. int ff_hevc_decode_nal_sps(GetBitContext *gb, AVCodecContext *avctx,
  725. HEVCParamSets *ps, int apply_defdispwin);
  726. int ff_hevc_decode_nal_pps(GetBitContext *gb, AVCodecContext *avctx,
  727. HEVCParamSets *ps);
  728. int ff_hevc_decode_nal_sei(HEVCContext *s);
  729. /**
  730. * Mark all frames in DPB as unused for reference.
  731. */
  732. void ff_hevc_clear_refs(HEVCContext *s);
  733. /**
  734. * Drop all frames currently in DPB.
  735. */
  736. void ff_hevc_flush_dpb(HEVCContext *s);
  737. /**
  738. * Compute POC of the current frame and return it.
  739. */
  740. int ff_hevc_compute_poc(HEVCContext *s, int poc_lsb);
  741. RefPicList *ff_hevc_get_ref_list(HEVCContext *s, HEVCFrame *frame,
  742. int x0, int y0);
  743. /**
  744. * Construct the reference picture sets for the current frame.
  745. */
  746. int ff_hevc_frame_rps(HEVCContext *s);
  747. /**
  748. * Construct the reference picture list(s) for the current slice.
  749. */
  750. int ff_hevc_slice_rpl(HEVCContext *s);
  751. void ff_hevc_save_states(HEVCContext *s, int ctb_addr_ts);
  752. void ff_hevc_cabac_init(HEVCContext *s, int ctb_addr_ts);
  753. int ff_hevc_sao_merge_flag_decode(HEVCContext *s);
  754. int ff_hevc_sao_type_idx_decode(HEVCContext *s);
  755. int ff_hevc_sao_band_position_decode(HEVCContext *s);
  756. int ff_hevc_sao_offset_abs_decode(HEVCContext *s);
  757. int ff_hevc_sao_offset_sign_decode(HEVCContext *s);
  758. int ff_hevc_sao_eo_class_decode(HEVCContext *s);
  759. int ff_hevc_end_of_slice_flag_decode(HEVCContext *s);
  760. int ff_hevc_cu_transquant_bypass_flag_decode(HEVCContext *s);
  761. int ff_hevc_skip_flag_decode(HEVCContext *s, int x0, int y0,
  762. int x_cb, int y_cb);
  763. int ff_hevc_pred_mode_decode(HEVCContext *s);
  764. int ff_hevc_split_coding_unit_flag_decode(HEVCContext *s, int ct_depth,
  765. int x0, int y0);
  766. int ff_hevc_part_mode_decode(HEVCContext *s, int log2_cb_size);
  767. int ff_hevc_pcm_flag_decode(HEVCContext *s);
  768. int ff_hevc_prev_intra_luma_pred_flag_decode(HEVCContext *s);
  769. int ff_hevc_mpm_idx_decode(HEVCContext *s);
  770. int ff_hevc_rem_intra_luma_pred_mode_decode(HEVCContext *s);
  771. int ff_hevc_intra_chroma_pred_mode_decode(HEVCContext *s);
  772. int ff_hevc_merge_idx_decode(HEVCContext *s);
  773. int ff_hevc_merge_flag_decode(HEVCContext *s);
  774. int ff_hevc_inter_pred_idc_decode(HEVCContext *s, int nPbW, int nPbH);
  775. int ff_hevc_ref_idx_lx_decode(HEVCContext *s, int num_ref_idx_lx);
  776. int ff_hevc_mvp_lx_flag_decode(HEVCContext *s);
  777. int ff_hevc_no_residual_syntax_flag_decode(HEVCContext *s);
  778. int ff_hevc_abs_mvd_greater0_flag_decode(HEVCContext *s);
  779. int ff_hevc_abs_mvd_greater1_flag_decode(HEVCContext *s);
  780. int ff_hevc_mvd_decode(HEVCContext *s);
  781. int ff_hevc_mvd_sign_flag_decode(HEVCContext *s);
  782. int ff_hevc_split_transform_flag_decode(HEVCContext *s, int log2_trafo_size);
  783. int ff_hevc_cbf_cb_cr_decode(HEVCContext *s, int trafo_depth);
  784. int ff_hevc_cbf_luma_decode(HEVCContext *s, int trafo_depth);
  785. int ff_hevc_transform_skip_flag_decode(HEVCContext *s, int c_idx);
  786. int ff_hevc_last_significant_coeff_x_prefix_decode(HEVCContext *s, int c_idx,
  787. int log2_size);
  788. int ff_hevc_last_significant_coeff_y_prefix_decode(HEVCContext *s, int c_idx,
  789. int log2_size);
  790. int ff_hevc_last_significant_coeff_suffix_decode(HEVCContext *s,
  791. int last_significant_coeff_prefix);
  792. int ff_hevc_significant_coeff_group_flag_decode(HEVCContext *s, int c_idx,
  793. int ctx_cg);
  794. int ff_hevc_significant_coeff_flag_decode(HEVCContext *s, int c_idx, int x_c,
  795. int y_c, int log2_trafo_size,
  796. int scan_idx, int prev_sig);
  797. int ff_hevc_coeff_abs_level_greater1_flag_decode(HEVCContext *s, int c_idx,
  798. int ctx_set);
  799. int ff_hevc_coeff_abs_level_greater2_flag_decode(HEVCContext *s, int c_idx,
  800. int inc);
  801. int ff_hevc_coeff_abs_level_remaining(HEVCContext *s, int base_level,
  802. int rc_rice_param);
  803. int ff_hevc_coeff_sign_flag(HEVCContext *s, uint8_t nb);
  804. /**
  805. * Get the number of candidate references for the current frame.
  806. */
  807. int ff_hevc_frame_nb_refs(HEVCContext *s);
  808. int ff_hevc_set_new_ref(HEVCContext *s, AVFrame **frame, int poc);
  809. /**
  810. * Find next frame in output order and put a reference to it in frame.
  811. * @return 1 if a frame was output, 0 otherwise
  812. */
  813. int ff_hevc_output_frame(HEVCContext *s, AVFrame *frame, int flush);
  814. void ff_hevc_unref_frame(HEVCContext *s, HEVCFrame *frame, int flags);
  815. void ff_hevc_set_neighbour_available(HEVCContext *s, int x0, int y0,
  816. int nPbW, int nPbH);
  817. void ff_hevc_luma_mv_merge_mode(HEVCContext *s, int x0, int y0,
  818. int nPbW, int nPbH, int log2_cb_size,
  819. int part_idx, int merge_idx, MvField *mv);
  820. void ff_hevc_luma_mv_mvp_mode(HEVCContext *s, int x0, int y0,
  821. int nPbW, int nPbH, int log2_cb_size,
  822. int part_idx, int merge_idx,
  823. MvField *mv, int mvp_lx_flag, int LX);
  824. void ff_hevc_set_qPy(HEVCContext *s, int xC, int yC, int xBase, int yBase,
  825. int log2_cb_size);
  826. void ff_hevc_deblocking_boundary_strengths(HEVCContext *s, int x0, int y0,
  827. int log2_trafo_size);
  828. int ff_hevc_cu_qp_delta_sign_flag(HEVCContext *s);
  829. int ff_hevc_cu_qp_delta_abs(HEVCContext *s);
  830. void ff_hevc_hls_filter(HEVCContext *s, int x, int y);
  831. void ff_hevc_hls_filters(HEVCContext *s, int x_ctb, int y_ctb, int ctb_size);
  832. void ff_hevc_pps_free(HEVCPPS **ppps);
  833. void ff_hevc_pred_init(HEVCPredContext *hpc, int bit_depth);
  834. int ff_hevc_encode_nal_vps(HEVCVPS *vps, unsigned int id,
  835. uint8_t *buf, int buf_size);
  836. extern const uint8_t ff_hevc_qpel_extra_before[4];
  837. extern const uint8_t ff_hevc_qpel_extra_after[4];
  838. extern const uint8_t ff_hevc_qpel_extra[4];
  839. extern const uint8_t ff_hevc_diag_scan4x4_x[16];
  840. extern const uint8_t ff_hevc_diag_scan4x4_y[16];
  841. extern const uint8_t ff_hevc_diag_scan8x8_x[64];
  842. extern const uint8_t ff_hevc_diag_scan8x8_y[64];
  843. #endif /* AVCODEC_HEVC_H */