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  1. /*
  2. * H.26L/H.264/AVC/JVT/14496-10/... encoder/decoder
  3. * Copyright (c) 2003 Michael Niedermayer <michaelni@gmx.at>
  4. *
  5. * This file is part of FFmpeg.
  6. *
  7. * FFmpeg is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU Lesser General Public
  9. * License as published by the Free Software Foundation; either
  10. * version 2.1 of the License, or (at your option) any later version.
  11. *
  12. * FFmpeg is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. * Lesser General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU Lesser General Public
  18. * License along with FFmpeg; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  20. */
  21. /**
  22. * @file h264.h
  23. * H.264 / AVC / MPEG4 part10 codec.
  24. * @author Michael Niedermayer <michaelni@gmx.at>
  25. */
  26. #ifndef AVCODEC_H264_H
  27. #define AVCODEC_H264_H
  28. #include "dsputil.h"
  29. #include "cabac.h"
  30. #include "mpegvideo.h"
  31. #include "h264pred.h"
  32. #define interlaced_dct interlaced_dct_is_a_bad_name
  33. #define mb_intra mb_intra_is_not_initialized_see_mb_type
  34. #define LUMA_DC_BLOCK_INDEX 25
  35. #define CHROMA_DC_BLOCK_INDEX 26
  36. #define CHROMA_DC_COEFF_TOKEN_VLC_BITS 8
  37. #define COEFF_TOKEN_VLC_BITS 8
  38. #define TOTAL_ZEROS_VLC_BITS 9
  39. #define CHROMA_DC_TOTAL_ZEROS_VLC_BITS 3
  40. #define RUN_VLC_BITS 3
  41. #define RUN7_VLC_BITS 6
  42. #define MAX_SPS_COUNT 32
  43. #define MAX_PPS_COUNT 256
  44. #define MAX_MMCO_COUNT 66
  45. #define MAX_DELAYED_PIC_COUNT 16
  46. /* Compiling in interlaced support reduces the speed
  47. * of progressive decoding by about 2%. */
  48. #define ALLOW_INTERLACE
  49. #define ALLOW_NOCHROMA
  50. /**
  51. * The maximum number of slices supported by the decoder.
  52. * must be a power of 2
  53. */
  54. #define MAX_SLICES 16
  55. #ifdef ALLOW_INTERLACE
  56. #define MB_MBAFF h->mb_mbaff
  57. #define MB_FIELD h->mb_field_decoding_flag
  58. #define FRAME_MBAFF h->mb_aff_frame
  59. #define FIELD_PICTURE (s->picture_structure != PICT_FRAME)
  60. #else
  61. #define MB_MBAFF 0
  62. #define MB_FIELD 0
  63. #define FRAME_MBAFF 0
  64. #define FIELD_PICTURE 0
  65. #undef IS_INTERLACED
  66. #define IS_INTERLACED(mb_type) 0
  67. #endif
  68. #define FIELD_OR_MBAFF_PICTURE (FRAME_MBAFF || FIELD_PICTURE)
  69. #ifdef ALLOW_NOCHROMA
  70. #define CHROMA h->sps.chroma_format_idc
  71. #else
  72. #define CHROMA 1
  73. #endif
  74. #ifndef ENABLE_H264_ENCODER
  75. #define ENABLE_H264_ENCODER 0
  76. #endif
  77. #define EXTENDED_SAR 255
  78. /* NAL unit types */
  79. enum {
  80. NAL_SLICE=1,
  81. NAL_DPA,
  82. NAL_DPB,
  83. NAL_DPC,
  84. NAL_IDR_SLICE,
  85. NAL_SEI,
  86. NAL_SPS,
  87. NAL_PPS,
  88. NAL_AUD,
  89. NAL_END_SEQUENCE,
  90. NAL_END_STREAM,
  91. NAL_FILLER_DATA,
  92. NAL_SPS_EXT,
  93. NAL_AUXILIARY_SLICE=19
  94. };
  95. /**
  96. * pic_struct in picture timing SEI message
  97. */
  98. typedef enum {
  99. SEI_PIC_STRUCT_FRAME = 0, ///< 0: %frame
  100. SEI_PIC_STRUCT_TOP_FIELD = 1, ///< 1: top field
  101. SEI_PIC_STRUCT_BOTTOM_FIELD = 2, ///< 2: bottom field
  102. SEI_PIC_STRUCT_TOP_BOTTOM = 3, ///< 3: top field, bottom field, in that order
  103. SEI_PIC_STRUCT_BOTTOM_TOP = 4, ///< 4: bottom field, top field, in that order
  104. SEI_PIC_STRUCT_TOP_BOTTOM_TOP = 5, ///< 5: top field, bottom field, top field repeated, in that order
  105. SEI_PIC_STRUCT_BOTTOM_TOP_BOTTOM = 6, ///< 6: bottom field, top field, bottom field repeated, in that order
  106. SEI_PIC_STRUCT_FRAME_DOUBLING = 7, ///< 7: %frame doubling
  107. SEI_PIC_STRUCT_FRAME_TRIPLING = 8 ///< 8: %frame tripling
  108. } SEI_PicStructType;
  109. /**
  110. * Sequence parameter set
  111. */
  112. typedef struct SPS{
  113. int profile_idc;
  114. int level_idc;
  115. int chroma_format_idc;
  116. int transform_bypass; ///< qpprime_y_zero_transform_bypass_flag
  117. int log2_max_frame_num; ///< log2_max_frame_num_minus4 + 4
  118. int poc_type; ///< pic_order_cnt_type
  119. int log2_max_poc_lsb; ///< log2_max_pic_order_cnt_lsb_minus4
  120. int delta_pic_order_always_zero_flag;
  121. int offset_for_non_ref_pic;
  122. int offset_for_top_to_bottom_field;
  123. int poc_cycle_length; ///< num_ref_frames_in_pic_order_cnt_cycle
  124. int ref_frame_count; ///< num_ref_frames
  125. int gaps_in_frame_num_allowed_flag;
  126. int mb_width; ///< pic_width_in_mbs_minus1 + 1
  127. int mb_height; ///< pic_height_in_map_units_minus1 + 1
  128. int frame_mbs_only_flag;
  129. int mb_aff; ///<mb_adaptive_frame_field_flag
  130. int direct_8x8_inference_flag;
  131. int crop; ///< frame_cropping_flag
  132. unsigned int crop_left; ///< frame_cropping_rect_left_offset
  133. unsigned int crop_right; ///< frame_cropping_rect_right_offset
  134. unsigned int crop_top; ///< frame_cropping_rect_top_offset
  135. unsigned int crop_bottom; ///< frame_cropping_rect_bottom_offset
  136. int vui_parameters_present_flag;
  137. AVRational sar;
  138. int timing_info_present_flag;
  139. uint32_t num_units_in_tick;
  140. uint32_t time_scale;
  141. int fixed_frame_rate_flag;
  142. short offset_for_ref_frame[256]; //FIXME dyn aloc?
  143. int bitstream_restriction_flag;
  144. int num_reorder_frames;
  145. int scaling_matrix_present;
  146. uint8_t scaling_matrix4[6][16];
  147. uint8_t scaling_matrix8[2][64];
  148. int nal_hrd_parameters_present_flag;
  149. int vcl_hrd_parameters_present_flag;
  150. int pic_struct_present_flag;
  151. int time_offset_length;
  152. int cpb_removal_delay_length; ///< cpb_removal_delay_length_minus1 + 1
  153. int dpb_output_delay_length; ///< dpb_output_delay_length_minus1 + 1
  154. }SPS;
  155. /**
  156. * Picture parameter set
  157. */
  158. typedef struct PPS{
  159. unsigned int sps_id;
  160. int cabac; ///< entropy_coding_mode_flag
  161. int pic_order_present; ///< pic_order_present_flag
  162. int slice_group_count; ///< num_slice_groups_minus1 + 1
  163. int mb_slice_group_map_type;
  164. unsigned int ref_count[2]; ///< num_ref_idx_l0/1_active_minus1 + 1
  165. int weighted_pred; ///< weighted_pred_flag
  166. int weighted_bipred_idc;
  167. int init_qp; ///< pic_init_qp_minus26 + 26
  168. int init_qs; ///< pic_init_qs_minus26 + 26
  169. int chroma_qp_index_offset[2];
  170. int deblocking_filter_parameters_present; ///< deblocking_filter_parameters_present_flag
  171. int constrained_intra_pred; ///< constrained_intra_pred_flag
  172. int redundant_pic_cnt_present; ///< redundant_pic_cnt_present_flag
  173. int transform_8x8_mode; ///< transform_8x8_mode_flag
  174. uint8_t scaling_matrix4[6][16];
  175. uint8_t scaling_matrix8[2][64];
  176. uint8_t chroma_qp_table[2][64]; ///< pre-scaled (with chroma_qp_index_offset) version of qp_table
  177. int chroma_qp_diff;
  178. }PPS;
  179. /**
  180. * Memory management control operation opcode.
  181. */
  182. typedef enum MMCOOpcode{
  183. MMCO_END=0,
  184. MMCO_SHORT2UNUSED,
  185. MMCO_LONG2UNUSED,
  186. MMCO_SHORT2LONG,
  187. MMCO_SET_MAX_LONG,
  188. MMCO_RESET,
  189. MMCO_LONG,
  190. } MMCOOpcode;
  191. /**
  192. * Memory management control operation.
  193. */
  194. typedef struct MMCO{
  195. MMCOOpcode opcode;
  196. int short_pic_num; ///< pic_num without wrapping (pic_num & max_pic_num)
  197. int long_arg; ///< index, pic_num, or num long refs depending on opcode
  198. } MMCO;
  199. /**
  200. * H264Context
  201. */
  202. typedef struct H264Context{
  203. MpegEncContext s;
  204. int nal_ref_idc;
  205. int nal_unit_type;
  206. uint8_t *rbsp_buffer[2];
  207. unsigned int rbsp_buffer_size[2];
  208. /**
  209. * Used to parse AVC variant of h264
  210. */
  211. int is_avc; ///< this flag is != 0 if codec is avc1
  212. int got_avcC; ///< flag used to parse avcC data only once
  213. int nal_length_size; ///< Number of bytes used for nal length (1, 2 or 4)
  214. int chroma_qp[2]; //QPc
  215. int prev_mb_skipped;
  216. int next_mb_skipped;
  217. //prediction stuff
  218. int chroma_pred_mode;
  219. int intra16x16_pred_mode;
  220. int top_mb_xy;
  221. int left_mb_xy[2];
  222. int8_t intra4x4_pred_mode_cache[5*8];
  223. int8_t (*intra4x4_pred_mode)[8];
  224. H264PredContext hpc;
  225. unsigned int topleft_samples_available;
  226. unsigned int top_samples_available;
  227. unsigned int topright_samples_available;
  228. unsigned int left_samples_available;
  229. uint8_t (*top_borders[2])[16+2*8];
  230. uint8_t left_border[2*(17+2*9)];
  231. /**
  232. * non zero coeff count cache.
  233. * is 64 if not available.
  234. */
  235. DECLARE_ALIGNED_8(uint8_t, non_zero_count_cache[6*8]);
  236. uint8_t (*non_zero_count)[16];
  237. /**
  238. * Motion vector cache.
  239. */
  240. DECLARE_ALIGNED_8(int16_t, mv_cache[2][5*8][2]);
  241. DECLARE_ALIGNED_8(int8_t, ref_cache[2][5*8]);
  242. #define LIST_NOT_USED -1 //FIXME rename?
  243. #define PART_NOT_AVAILABLE -2
  244. /**
  245. * is 1 if the specific list MV&references are set to 0,0,-2.
  246. */
  247. int mv_cache_clean[2];
  248. /**
  249. * number of neighbors (top and/or left) that used 8x8 dct
  250. */
  251. int neighbor_transform_size;
  252. /**
  253. * block_offset[ 0..23] for frame macroblocks
  254. * block_offset[24..47] for field macroblocks
  255. */
  256. int block_offset[2*(16+8)];
  257. uint32_t *mb2b_xy; //FIXME are these 4 a good idea?
  258. uint32_t *mb2b8_xy;
  259. int b_stride; //FIXME use s->b4_stride
  260. int b8_stride;
  261. int mb_linesize; ///< may be equal to s->linesize or s->linesize*2, for mbaff
  262. int mb_uvlinesize;
  263. int emu_edge_width;
  264. int emu_edge_height;
  265. int halfpel_flag;
  266. int thirdpel_flag;
  267. int unknown_svq3_flag;
  268. int next_slice_index;
  269. SPS *sps_buffers[MAX_SPS_COUNT];
  270. SPS sps; ///< current sps
  271. PPS *pps_buffers[MAX_PPS_COUNT];
  272. /**
  273. * current pps
  274. */
  275. PPS pps; //FIXME move to Picture perhaps? (->no) do we need that?
  276. uint32_t dequant4_buffer[6][52][16];
  277. uint32_t dequant8_buffer[2][52][64];
  278. uint32_t (*dequant4_coeff[6])[16];
  279. uint32_t (*dequant8_coeff[2])[64];
  280. int dequant_coeff_pps; ///< reinit tables when pps changes
  281. int slice_num;
  282. uint16_t *slice_table_base;
  283. uint16_t *slice_table; ///< slice_table_base + 2*mb_stride + 1
  284. int slice_type;
  285. int slice_type_nos; ///< S free slice type (SI/SP are remapped to I/P)
  286. int slice_type_fixed;
  287. //interlacing specific flags
  288. int mb_aff_frame;
  289. int mb_field_decoding_flag;
  290. int mb_mbaff; ///< mb_aff_frame && mb_field_decoding_flag
  291. unsigned int sub_mb_type[4];
  292. //POC stuff
  293. int poc_lsb;
  294. int poc_msb;
  295. int delta_poc_bottom;
  296. int delta_poc[2];
  297. int frame_num;
  298. int prev_poc_msb; ///< poc_msb of the last reference pic for POC type 0
  299. int prev_poc_lsb; ///< poc_lsb of the last reference pic for POC type 0
  300. int frame_num_offset; ///< for POC type 2
  301. int prev_frame_num_offset; ///< for POC type 2
  302. int prev_frame_num; ///< frame_num of the last pic for POC type 1/2
  303. /**
  304. * frame_num for frames or 2*frame_num+1 for field pics.
  305. */
  306. int curr_pic_num;
  307. /**
  308. * max_frame_num or 2*max_frame_num for field pics.
  309. */
  310. int max_pic_num;
  311. //Weighted pred stuff
  312. int use_weight;
  313. int use_weight_chroma;
  314. int luma_log2_weight_denom;
  315. int chroma_log2_weight_denom;
  316. int luma_weight[2][48];
  317. int luma_offset[2][48];
  318. int chroma_weight[2][48][2];
  319. int chroma_offset[2][48][2];
  320. int implicit_weight[48][48];
  321. //deblock
  322. int deblocking_filter; ///< disable_deblocking_filter_idc with 1<->0
  323. int slice_alpha_c0_offset;
  324. int slice_beta_offset;
  325. int redundant_pic_count;
  326. int direct_spatial_mv_pred;
  327. int dist_scale_factor[16];
  328. int dist_scale_factor_field[2][32];
  329. int map_col_to_list0[2][16+32];
  330. int map_col_to_list0_field[2][2][16+32];
  331. /**
  332. * num_ref_idx_l0/1_active_minus1 + 1
  333. */
  334. unsigned int ref_count[2]; ///< counts frames or fields, depending on current mb mode
  335. unsigned int list_count;
  336. Picture *short_ref[32];
  337. Picture *long_ref[32];
  338. Picture default_ref_list[2][32]; ///< base reference list for all slices of a coded picture
  339. Picture ref_list[2][48]; /**< 0..15: frame refs, 16..47: mbaff field refs.
  340. Reordered version of default_ref_list
  341. according to picture reordering in slice header */
  342. int ref2frm[MAX_SLICES][2][64]; ///< reference to frame number lists, used in the loop filter, the first 2 are for -2,-1
  343. Picture *delayed_pic[MAX_DELAYED_PIC_COUNT+2]; //FIXME size?
  344. int outputed_poc;
  345. /**
  346. * memory management control operations buffer.
  347. */
  348. MMCO mmco[MAX_MMCO_COUNT];
  349. int mmco_index;
  350. int long_ref_count; ///< number of actual long term references
  351. int short_ref_count; ///< number of actual short term references
  352. //data partitioning
  353. GetBitContext intra_gb;
  354. GetBitContext inter_gb;
  355. GetBitContext *intra_gb_ptr;
  356. GetBitContext *inter_gb_ptr;
  357. DECLARE_ALIGNED_16(DCTELEM, mb[16*24]);
  358. DCTELEM mb_padding[256]; ///< as mb is addressed by scantable[i] and scantable is uint8_t we can either check that i is not too large or ensure that there is some unused stuff after mb
  359. /**
  360. * Cabac
  361. */
  362. CABACContext cabac;
  363. uint8_t cabac_state[460];
  364. int cabac_init_idc;
  365. /* 0x100 -> non null luma_dc, 0x80/0x40 -> non null chroma_dc (cb/cr), 0x?0 -> chroma_cbp(0,1,2), 0x0? luma_cbp */
  366. uint16_t *cbp_table;
  367. int cbp;
  368. int top_cbp;
  369. int left_cbp;
  370. /* chroma_pred_mode for i4x4 or i16x16, else 0 */
  371. uint8_t *chroma_pred_mode_table;
  372. int last_qscale_diff;
  373. int16_t (*mvd_table[2])[2];
  374. DECLARE_ALIGNED_8(int16_t, mvd_cache[2][5*8][2]);
  375. uint8_t *direct_table;
  376. uint8_t direct_cache[5*8];
  377. uint8_t zigzag_scan[16];
  378. uint8_t zigzag_scan8x8[64];
  379. uint8_t zigzag_scan8x8_cavlc[64];
  380. uint8_t field_scan[16];
  381. uint8_t field_scan8x8[64];
  382. uint8_t field_scan8x8_cavlc[64];
  383. const uint8_t *zigzag_scan_q0;
  384. const uint8_t *zigzag_scan8x8_q0;
  385. const uint8_t *zigzag_scan8x8_cavlc_q0;
  386. const uint8_t *field_scan_q0;
  387. const uint8_t *field_scan8x8_q0;
  388. const uint8_t *field_scan8x8_cavlc_q0;
  389. int x264_build;
  390. /**
  391. * @defgroup multithreading Members for slice based multithreading
  392. * @{
  393. */
  394. struct H264Context *thread_context[MAX_THREADS];
  395. /**
  396. * current slice number, used to initalize slice_num of each thread/context
  397. */
  398. int current_slice;
  399. /**
  400. * Max number of threads / contexts.
  401. * This is equal to AVCodecContext.thread_count unless
  402. * multithreaded decoding is impossible, in which case it is
  403. * reduced to 1.
  404. */
  405. int max_contexts;
  406. /**
  407. * 1 if the single thread fallback warning has already been
  408. * displayed, 0 otherwise.
  409. */
  410. int single_decode_warning;
  411. int last_slice_type;
  412. /** @} */
  413. int mb_xy;
  414. uint32_t svq3_watermark_key;
  415. /**
  416. * pic_struct in picture timing SEI message
  417. */
  418. SEI_PicStructType sei_pic_struct;
  419. }H264Context;
  420. #endif /* AVCODEC_H264_H */