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  1. /*
  2. * Chinese AVS video (AVS1-P2, JiZhun profile) decoder.
  3. * Copyright (c) 2006 Stefan Gehrer <stefan.gehrer@gmx.de>
  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. #ifndef AVCODEC_CAVS_H
  22. #define AVCODEC_CAVS_H
  23. #include "cavsdsp.h"
  24. #include "dsputil.h"
  25. #include "get_bits.h"
  26. #include "videodsp.h"
  27. #define SLICE_MAX_START_CODE 0x000001af
  28. #define EXT_START_CODE 0x000001b5
  29. #define USER_START_CODE 0x000001b2
  30. #define CAVS_START_CODE 0x000001b0
  31. #define PIC_I_START_CODE 0x000001b3
  32. #define PIC_PB_START_CODE 0x000001b6
  33. #define A_AVAIL 1
  34. #define B_AVAIL 2
  35. #define C_AVAIL 4
  36. #define D_AVAIL 8
  37. #define NOT_AVAIL -1
  38. #define REF_INTRA -2
  39. #define REF_DIR -3
  40. #define ESCAPE_CODE 59
  41. #define FWD0 0x01
  42. #define FWD1 0x02
  43. #define BWD0 0x04
  44. #define BWD1 0x08
  45. #define SYM0 0x10
  46. #define SYM1 0x20
  47. #define SPLITH 0x40
  48. #define SPLITV 0x80
  49. #define MV_BWD_OFFS 12
  50. #define MV_STRIDE 4
  51. enum cavs_mb {
  52. I_8X8 = 0,
  53. P_SKIP,
  54. P_16X16,
  55. P_16X8,
  56. P_8X16,
  57. P_8X8,
  58. B_SKIP,
  59. B_DIRECT,
  60. B_FWD_16X16,
  61. B_BWD_16X16,
  62. B_SYM_16X16,
  63. B_8X8 = 29
  64. };
  65. enum cavs_sub_mb {
  66. B_SUB_DIRECT,
  67. B_SUB_FWD,
  68. B_SUB_BWD,
  69. B_SUB_SYM
  70. };
  71. enum cavs_intra_luma {
  72. INTRA_L_VERT,
  73. INTRA_L_HORIZ,
  74. INTRA_L_LP,
  75. INTRA_L_DOWN_LEFT,
  76. INTRA_L_DOWN_RIGHT,
  77. INTRA_L_LP_LEFT,
  78. INTRA_L_LP_TOP,
  79. INTRA_L_DC_128
  80. };
  81. enum cavs_intra_chroma {
  82. INTRA_C_LP,
  83. INTRA_C_HORIZ,
  84. INTRA_C_VERT,
  85. INTRA_C_PLANE,
  86. INTRA_C_LP_LEFT,
  87. INTRA_C_LP_TOP,
  88. INTRA_C_DC_128,
  89. };
  90. enum cavs_mv_pred {
  91. MV_PRED_MEDIAN,
  92. MV_PRED_LEFT,
  93. MV_PRED_TOP,
  94. MV_PRED_TOPRIGHT,
  95. MV_PRED_PSKIP,
  96. MV_PRED_BSKIP
  97. };
  98. enum cavs_block {
  99. BLK_16X16,
  100. BLK_16X8,
  101. BLK_8X16,
  102. BLK_8X8
  103. };
  104. enum cavs_mv_loc {
  105. MV_FWD_D3 = 0,
  106. MV_FWD_B2,
  107. MV_FWD_B3,
  108. MV_FWD_C2,
  109. MV_FWD_A1,
  110. MV_FWD_X0,
  111. MV_FWD_X1,
  112. MV_FWD_A3 = 8,
  113. MV_FWD_X2,
  114. MV_FWD_X3,
  115. MV_BWD_D3 = MV_BWD_OFFS,
  116. MV_BWD_B2,
  117. MV_BWD_B3,
  118. MV_BWD_C2,
  119. MV_BWD_A1,
  120. MV_BWD_X0,
  121. MV_BWD_X1,
  122. MV_BWD_A3 = MV_BWD_OFFS+8,
  123. MV_BWD_X2,
  124. MV_BWD_X3
  125. };
  126. DECLARE_ALIGNED(8, typedef, struct) {
  127. int16_t x;
  128. int16_t y;
  129. int16_t dist;
  130. int16_t ref;
  131. } cavs_vector;
  132. struct dec_2dvlc {
  133. int8_t rltab[59][3];
  134. int8_t level_add[27];
  135. int8_t golomb_order;
  136. int inc_limit;
  137. int8_t max_run;
  138. };
  139. typedef struct AVSFrame {
  140. AVFrame *f;
  141. int poc;
  142. } AVSFrame;
  143. typedef struct AVSContext {
  144. AVCodecContext *avctx;
  145. DSPContext dsp;
  146. VideoDSPContext vdsp;
  147. CAVSDSPContext cdsp;
  148. GetBitContext gb;
  149. AVSFrame cur; ///< currently decoded frame
  150. AVSFrame DPB[2]; ///< reference frames
  151. int dist[2]; ///< temporal distances from current frame to ref frames
  152. int low_delay;
  153. int profile, level;
  154. int aspect_ratio;
  155. int mb_width, mb_height;
  156. int width, height;
  157. int stream_revision; ///<0 for samples from 2006, 1 for rm52j encoder
  158. int progressive;
  159. int pic_structure;
  160. int skip_mode_flag; ///< select between skip_count or one skip_flag per MB
  161. int loop_filter_disable;
  162. int alpha_offset, beta_offset;
  163. int ref_flag;
  164. int mbx, mby, mbidx; ///< macroblock coordinates
  165. int flags; ///< availability flags of neighbouring macroblocks
  166. int stc; ///< last start code
  167. uint8_t *cy, *cu, *cv; ///< current MB sample pointers
  168. int left_qp;
  169. uint8_t *top_qp;
  170. /** mv motion vector cache
  171. 0: D3 B2 B3 C2
  172. 4: A1 X0 X1 -
  173. 8: A3 X2 X3 -
  174. X are the vectors in the current macroblock (5,6,9,10)
  175. A is the macroblock to the left (4,8)
  176. B is the macroblock to the top (1,2)
  177. C is the macroblock to the top-right (3)
  178. D is the macroblock to the top-left (0)
  179. the same is repeated for backward motion vectors */
  180. cavs_vector mv[2*4*3];
  181. cavs_vector *top_mv[2];
  182. cavs_vector *col_mv;
  183. /** luma pred mode cache
  184. 0: -- B2 B3
  185. 3: A1 X0 X1
  186. 6: A3 X2 X3 */
  187. int pred_mode_Y[3*3];
  188. int *top_pred_Y;
  189. int l_stride, c_stride;
  190. int luma_scan[4];
  191. int qp;
  192. int qp_fixed;
  193. int cbp;
  194. ScanTable scantable;
  195. /** intra prediction is done with un-deblocked samples
  196. they are saved here before deblocking the MB */
  197. uint8_t *top_border_y, *top_border_u, *top_border_v;
  198. uint8_t left_border_y[26], left_border_u[10], left_border_v[10];
  199. uint8_t intern_border_y[26];
  200. uint8_t topleft_border_y, topleft_border_u, topleft_border_v;
  201. void (*intra_pred_l[8])(uint8_t *d,uint8_t *top,uint8_t *left,int stride);
  202. void (*intra_pred_c[7])(uint8_t *d,uint8_t *top,uint8_t *left,int stride);
  203. uint8_t *col_type_base;
  204. /* scaling factors for MV prediction */
  205. int sym_factor; ///< for scaling in symmetrical B block
  206. int direct_den[2]; ///< for scaling in direct B block
  207. int scale_den[2]; ///< for scaling neighbouring MVs
  208. uint8_t *edge_emu_buffer;
  209. int got_keyframe;
  210. int16_t *block;
  211. } AVSContext;
  212. extern const uint8_t ff_cavs_partition_flags[30];
  213. extern const cavs_vector ff_cavs_intra_mv;
  214. extern const cavs_vector ff_cavs_dir_mv;
  215. static inline void set_mvs(cavs_vector *mv, enum cavs_block size) {
  216. switch(size) {
  217. case BLK_16X16:
  218. mv[MV_STRIDE ] = mv[0];
  219. mv[MV_STRIDE+1] = mv[0];
  220. case BLK_16X8:
  221. mv[1] = mv[0];
  222. break;
  223. case BLK_8X16:
  224. mv[MV_STRIDE] = mv[0];
  225. break;
  226. }
  227. }
  228. void ff_cavs_filter(AVSContext *h, enum cavs_mb mb_type);
  229. void ff_cavs_load_intra_pred_luma(AVSContext *h, uint8_t *top, uint8_t **left,
  230. int block);
  231. void ff_cavs_load_intra_pred_chroma(AVSContext *h);
  232. void ff_cavs_modify_mb_i(AVSContext *h, int *pred_mode_uv);
  233. void ff_cavs_inter(AVSContext *h, enum cavs_mb mb_type);
  234. void ff_cavs_mv(AVSContext *h, enum cavs_mv_loc nP, enum cavs_mv_loc nC,
  235. enum cavs_mv_pred mode, enum cavs_block size, int ref);
  236. void ff_cavs_init_mb(AVSContext *h);
  237. int ff_cavs_next_mb(AVSContext *h);
  238. int ff_cavs_init_pic(AVSContext *h);
  239. void ff_cavs_init_top_lines(AVSContext *h);
  240. int ff_cavs_init(AVCodecContext *avctx);
  241. int ff_cavs_end (AVCodecContext *avctx);
  242. #endif /* AVCODEC_CAVS_H */