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  1. /**
  2. * VP8 compatible video decoder
  3. *
  4. * Copyright (C) 2010 David Conrad
  5. * Copyright (C) 2010 Ronald S. Bultje
  6. * Copyright (C) 2010 Jason Garrett-Glaser
  7. *
  8. * This file is part of FFmpeg.
  9. *
  10. * FFmpeg is free software; you can redistribute it and/or
  11. * modify it under the terms of the GNU Lesser General Public
  12. * License as published by the Free Software Foundation; either
  13. * version 2.1 of the License, or (at your option) any later version.
  14. *
  15. * FFmpeg is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  18. * Lesser General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU Lesser General Public
  21. * License along with FFmpeg; if not, write to the Free Software
  22. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  23. */
  24. #ifndef AVCODEC_VP8_H
  25. #define AVCODEC_VP8_H
  26. #include "vp56.h"
  27. #include "vp56data.h"
  28. #include "vp8dsp.h"
  29. #include "h264pred.h"
  30. #define VP8_MAX_QUANT 127
  31. enum dct_token {
  32. DCT_0,
  33. DCT_1,
  34. DCT_2,
  35. DCT_3,
  36. DCT_4,
  37. DCT_CAT1,
  38. DCT_CAT2,
  39. DCT_CAT3,
  40. DCT_CAT4,
  41. DCT_CAT5,
  42. DCT_CAT6,
  43. DCT_EOB,
  44. NUM_DCT_TOKENS
  45. };
  46. // used to signal 4x4 intra pred in luma MBs
  47. #define MODE_I4x4 4
  48. enum inter_mvmode {
  49. VP8_MVMODE_ZERO = MODE_I4x4 + 1,
  50. VP8_MVMODE_MV,
  51. VP8_MVMODE_SPLIT
  52. };
  53. enum inter_splitmvmode {
  54. VP8_SPLITMVMODE_16x8 = 0, ///< 2 16x8 blocks (vertical)
  55. VP8_SPLITMVMODE_8x16, ///< 2 8x16 blocks (horizontal)
  56. VP8_SPLITMVMODE_8x8, ///< 2x2 blocks of 8x8px each
  57. VP8_SPLITMVMODE_4x4, ///< 4x4 blocks of 4x4px each
  58. VP8_SPLITMVMODE_NONE, ///< (only used in prediction) no split MVs
  59. };
  60. typedef struct {
  61. uint8_t filter_level;
  62. uint8_t inner_limit;
  63. uint8_t inner_filter;
  64. } VP8FilterStrength;
  65. typedef struct {
  66. uint8_t skip;
  67. // todo: make it possible to check for at least (i4x4 or split_mv)
  68. // in one op. are others needed?
  69. uint8_t mode;
  70. uint8_t ref_frame;
  71. uint8_t partitioning;
  72. VP56mv mv;
  73. VP56mv bmv[16];
  74. } VP8Macroblock;
  75. typedef struct {
  76. AVCodecContext *avctx;
  77. AVFrame *framep[4];
  78. AVFrame *next_framep[4];
  79. uint8_t *edge_emu_buffer;
  80. uint16_t mb_width; /* number of horizontal MB */
  81. uint16_t mb_height; /* number of vertical MB */
  82. int linesize;
  83. int uvlinesize;
  84. uint8_t keyframe;
  85. uint8_t deblock_filter;
  86. uint8_t mbskip_enabled;
  87. uint8_t segment; ///< segment of the current macroblock
  88. uint8_t chroma_pred_mode; ///< 8x8c pred mode of the current macroblock
  89. uint8_t profile;
  90. VP56mv mv_min;
  91. VP56mv mv_max;
  92. int8_t sign_bias[4]; ///< one state [0, 1] per ref frame type
  93. int ref_count[3];
  94. /**
  95. * Base parameters for segmentation, i.e. per-macroblock parameters.
  96. * These must be kept unchanged even if segmentation is not used for
  97. * a frame, since the values persist between interframes.
  98. */
  99. struct {
  100. uint8_t enabled;
  101. uint8_t absolute_vals;
  102. uint8_t update_map;
  103. int8_t base_quant[4];
  104. int8_t filter_level[4]; ///< base loop filter level
  105. } segmentation;
  106. struct {
  107. uint8_t simple;
  108. uint8_t level;
  109. uint8_t sharpness;
  110. } filter;
  111. VP8Macroblock *macroblocks;
  112. VP8FilterStrength *filter_strength;
  113. uint8_t *intra4x4_pred_mode_top;
  114. uint8_t intra4x4_pred_mode_left[4];
  115. uint8_t *segmentation_map;
  116. /**
  117. * Macroblocks can have one of 4 different quants in a frame when
  118. * segmentation is enabled.
  119. * If segmentation is disabled, only the first segment's values are used.
  120. */
  121. struct {
  122. // [0] - DC qmul [1] - AC qmul
  123. int16_t luma_qmul[2];
  124. int16_t luma_dc_qmul[2]; ///< luma dc-only block quant
  125. int16_t chroma_qmul[2];
  126. } qmat[4];
  127. struct {
  128. uint8_t enabled; ///< whether each mb can have a different strength based on mode/ref
  129. /**
  130. * filter strength adjustment for the following macroblock modes:
  131. * [0-3] - i16x16 (always zero)
  132. * [4] - i4x4
  133. * [5] - zero mv
  134. * [6] - inter modes except for zero or split mv
  135. * [7] - split mv
  136. * i16x16 modes never have any adjustment
  137. */
  138. int8_t mode[VP8_MVMODE_SPLIT+1];
  139. /**
  140. * filter strength adjustment for macroblocks that reference:
  141. * [0] - intra / VP56_FRAME_CURRENT
  142. * [1] - VP56_FRAME_PREVIOUS
  143. * [2] - VP56_FRAME_GOLDEN
  144. * [3] - altref / VP56_FRAME_GOLDEN2
  145. */
  146. int8_t ref[4];
  147. } lf_delta;
  148. /**
  149. * Cache of the top row needed for intra prediction
  150. * 16 for luma, 8 for each chroma plane
  151. */
  152. uint8_t (*top_border)[16+8+8];
  153. /**
  154. * For coeff decode, we need to know whether the above block had non-zero
  155. * coefficients. This means for each macroblock, we need data for 4 luma
  156. * blocks, 2 u blocks, 2 v blocks, and the luma dc block, for a total of 9
  157. * per macroblock. We keep the last row in top_nnz.
  158. */
  159. uint8_t (*top_nnz)[9];
  160. DECLARE_ALIGNED(8, uint8_t, left_nnz)[9];
  161. /**
  162. * This is the index plus one of the last non-zero coeff
  163. * for each of the blocks in the current macroblock.
  164. * So, 0 -> no coeffs
  165. * 1 -> dc-only (special transform)
  166. * 2+-> full transform
  167. */
  168. DECLARE_ALIGNED(16, uint8_t, non_zero_count_cache)[6][4];
  169. VP56RangeCoder c; ///< header context, includes mb modes and motion vectors
  170. DECLARE_ALIGNED(16, DCTELEM, block)[6][4][16];
  171. DECLARE_ALIGNED(16, DCTELEM, block_dc)[16];
  172. uint8_t intra4x4_pred_mode_mb[16];
  173. /**
  174. * These are all of the updatable probabilities for binary decisions.
  175. * They are only implictly reset on keyframes, making it quite likely
  176. * for an interframe to desync if a prior frame's header was corrupt
  177. * or missing outright!
  178. */
  179. struct {
  180. uint8_t segmentid[3];
  181. uint8_t mbskip;
  182. uint8_t intra;
  183. uint8_t last;
  184. uint8_t golden;
  185. uint8_t pred16x16[4];
  186. uint8_t pred8x8c[3];
  187. uint8_t token[4][16][3][NUM_DCT_TOKENS-1];
  188. uint8_t mvc[2][19];
  189. } prob[2];
  190. VP8Macroblock *macroblocks_base;
  191. int invisible;
  192. int update_last; ///< update VP56_FRAME_PREVIOUS with the current one
  193. int update_golden; ///< VP56_FRAME_NONE if not updated, or which frame to copy if so
  194. int update_altref;
  195. /**
  196. * If this flag is not set, all the probability updates
  197. * are discarded after this frame is decoded.
  198. */
  199. int update_probabilities;
  200. /**
  201. * All coefficients are contained in separate arith coding contexts.
  202. * There can be 1, 2, 4, or 8 of these after the header context.
  203. */
  204. int num_coeff_partitions;
  205. VP56RangeCoder coeff_partition[8];
  206. DSPContext dsp;
  207. VP8DSPContext vp8dsp;
  208. H264PredContext hpc;
  209. vp8_mc_func put_pixels_tab[3][3][3];
  210. AVFrame frames[5];
  211. } VP8Context;
  212. #endif /* AVCODEC_VP8_H */