1 /* 2 * Copyright (c) 2010 The WebM project authors. All Rights Reserved. 3 * 4 * Use of this source code is governed by a BSD-style license 5 * that can be found in the LICENSE file in the root of the source 6 * tree. An additional intellectual property rights grant can be found 7 * in the file PATENTS. All contributing project authors may 8 * be found in the AUTHORS file in the root of the source tree. 9 */ 10 11 #ifndef VP9_ENCODER_VP9_BLOCK_H_ 12 #define VP9_ENCODER_VP9_BLOCK_H_ 13 14 #include "vp9/common/vp9_onyx.h" 15 #include "vp9/common/vp9_entropymv.h" 16 #include "vp9/common/vp9_entropy.h" 17 #include "vpx_ports/mem.h" 18 #include "vp9/common/vp9_onyxc_int.h" 19 20 // motion search site 21 typedef struct { 22 MV mv; 23 int offset; 24 } search_site; 25 26 // Structure to hold snapshot of coding context during the mode picking process 27 typedef struct { 28 MODE_INFO mic; 29 uint8_t *zcoeff_blk; 30 int16_t *coeff[MAX_MB_PLANE][3]; 31 int16_t *qcoeff[MAX_MB_PLANE][3]; 32 int16_t *dqcoeff[MAX_MB_PLANE][3]; 33 uint16_t *eobs[MAX_MB_PLANE][3]; 34 35 // dual buffer pointers, 0: in use, 1: best in store 36 int16_t *coeff_pbuf[MAX_MB_PLANE][3]; 37 int16_t *qcoeff_pbuf[MAX_MB_PLANE][3]; 38 int16_t *dqcoeff_pbuf[MAX_MB_PLANE][3]; 39 uint16_t *eobs_pbuf[MAX_MB_PLANE][3]; 40 41 int is_coded; 42 int num_4x4_blk; 43 int skip; 44 int_mv best_ref_mv; 45 int_mv second_best_ref_mv; 46 int_mv ref_mvs[MAX_REF_FRAMES][MAX_MV_REF_CANDIDATES]; 47 int rate; 48 int distortion; 49 int64_t intra_error; 50 int best_mode_index; 51 int rddiv; 52 int rdmult; 53 int hybrid_pred_diff; 54 int comp_pred_diff; 55 int single_pred_diff; 56 int64_t tx_rd_diff[TX_MODES]; 57 int64_t best_filter_diff[SWITCHABLE_FILTER_CONTEXTS]; 58 59 // motion vector cache for adaptive motion search control in partition 60 // search loop 61 int_mv pred_mv[MAX_REF_FRAMES]; 62 63 // Bit flag for each mode whether it has high error in comparison to others. 64 unsigned int modes_with_high_error; 65 66 // Bit flag for each ref frame whether it has high error compared to others. 67 unsigned int frames_with_high_error; 68 } PICK_MODE_CONTEXT; 69 70 struct macroblock_plane { 71 DECLARE_ALIGNED(16, int16_t, src_diff[64 * 64]); 72 int16_t *coeff; 73 struct buf_2d src; 74 75 // Quantizer setings 76 int16_t *quant; 77 int16_t *quant_shift; 78 int16_t *zbin; 79 int16_t *round; 80 81 // Zbin Over Quant value 82 int16_t zbin_extra; 83 }; 84 85 /* The [2] dimension is for whether we skip the EOB node (i.e. if previous 86 * coefficient in this block was zero) or not. */ 87 typedef unsigned int vp9_coeff_cost[BLOCK_TYPES][REF_TYPES][COEF_BANDS][2] 88 [PREV_COEF_CONTEXTS][MAX_ENTROPY_TOKENS]; 89 90 typedef struct macroblock MACROBLOCK; 91 struct macroblock { 92 struct macroblock_plane plane[MAX_MB_PLANE]; 93 94 MACROBLOCKD e_mbd; 95 int skip_block; 96 int select_txfm_size; 97 int skip_recode; 98 int skip_optimize; 99 int q_index; 100 101 search_site *ss; 102 int ss_count; 103 int searches_per_step; 104 105 int errorperbit; 106 int sadperbit16; 107 int sadperbit4; 108 int rddiv; 109 int rdmult; 110 unsigned int mb_energy; 111 unsigned int *mb_activity_ptr; 112 int *mb_norm_activity_ptr; 113 signed int act_zbin_adj; 114 115 int mv_best_ref_index[MAX_REF_FRAMES]; 116 unsigned int max_mv_context[MAX_REF_FRAMES]; 117 unsigned int source_variance; 118 119 int nmvjointcost[MV_JOINTS]; 120 int nmvcosts[2][MV_VALS]; 121 int *nmvcost[2]; 122 int nmvcosts_hp[2][MV_VALS]; 123 int *nmvcost_hp[2]; 124 int **mvcost; 125 126 int nmvjointsadcost[MV_JOINTS]; 127 int nmvsadcosts[2][MV_VALS]; 128 int *nmvsadcost[2]; 129 int nmvsadcosts_hp[2][MV_VALS]; 130 int *nmvsadcost_hp[2]; 131 int **mvsadcost; 132 133 int mbmode_cost[MB_MODE_COUNT]; 134 unsigned inter_mode_cost[INTER_MODE_CONTEXTS][INTER_MODES]; 135 int intra_uv_mode_cost[2][MB_MODE_COUNT]; 136 int y_mode_costs[INTRA_MODES][INTRA_MODES][INTRA_MODES]; 137 int switchable_interp_costs[SWITCHABLE_FILTER_CONTEXTS][SWITCHABLE_FILTERS]; 138 139 unsigned char sb_index; // index of 32x32 block inside the 64x64 block 140 unsigned char mb_index; // index of 16x16 block inside the 32x32 block 141 unsigned char b_index; // index of 8x8 block inside the 16x16 block 142 unsigned char ab_index; // index of 4x4 block inside the 8x8 block 143 144 // These define limits to motion vector components to prevent them 145 // from extending outside the UMV borders 146 int mv_col_min; 147 int mv_col_max; 148 int mv_row_min; 149 int mv_row_max; 150 151 uint8_t zcoeff_blk[TX_SIZES][256]; 152 int skip; 153 154 int encode_breakout; 155 156 unsigned char *active_ptr; 157 158 // note that token_costs is the cost when eob node is skipped 159 vp9_coeff_cost token_costs[TX_SIZES]; 160 DECLARE_ALIGNED(16, uint8_t, token_cache[1024]); 161 162 int optimize; 163 164 // indicate if it is in the rd search loop or encoding process 165 int use_lp32x32fdct; 166 int skip_encode; 167 168 // Used to store sub partition's choices. 169 int fast_ms; 170 int_mv pred_mv[MAX_REF_FRAMES]; 171 int subblock_ref; 172 173 // TODO(jingning): Need to refactor the structure arrays that buffers the 174 // coding mode decisions of each partition type. 175 PICK_MODE_CONTEXT ab4x4_context[4][4][4]; 176 PICK_MODE_CONTEXT sb8x4_context[4][4][4]; 177 PICK_MODE_CONTEXT sb4x8_context[4][4][4]; 178 PICK_MODE_CONTEXT sb8x8_context[4][4][4]; 179 PICK_MODE_CONTEXT sb8x16_context[4][4][2]; 180 PICK_MODE_CONTEXT sb16x8_context[4][4][2]; 181 PICK_MODE_CONTEXT mb_context[4][4]; 182 PICK_MODE_CONTEXT sb32x16_context[4][2]; 183 PICK_MODE_CONTEXT sb16x32_context[4][2]; 184 // when 4 MBs share coding parameters: 185 PICK_MODE_CONTEXT sb32_context[4]; 186 PICK_MODE_CONTEXT sb32x64_context[2]; 187 PICK_MODE_CONTEXT sb64x32_context[2]; 188 PICK_MODE_CONTEXT sb64_context; 189 int partition_cost[PARTITION_CONTEXTS][PARTITION_TYPES]; 190 191 BLOCK_SIZE b_partitioning[4][4][4]; 192 BLOCK_SIZE mb_partitioning[4][4]; 193 BLOCK_SIZE sb_partitioning[4]; 194 BLOCK_SIZE sb64_partitioning; 195 196 void (*fwd_txm4x4)(const int16_t *input, int16_t *output, int stride); 197 }; 198 199 // TODO(jingning): the variables used here are little complicated. need further 200 // refactoring on organizing the temporary buffers, when recursive 201 // partition down to 4x4 block size is enabled. 202 static PICK_MODE_CONTEXT *get_block_context(MACROBLOCK *x, BLOCK_SIZE bsize) { 203 switch (bsize) { 204 case BLOCK_64X64: 205 return &x->sb64_context; 206 case BLOCK_64X32: 207 return &x->sb64x32_context[x->sb_index]; 208 case BLOCK_32X64: 209 return &x->sb32x64_context[x->sb_index]; 210 case BLOCK_32X32: 211 return &x->sb32_context[x->sb_index]; 212 case BLOCK_32X16: 213 return &x->sb32x16_context[x->sb_index][x->mb_index]; 214 case BLOCK_16X32: 215 return &x->sb16x32_context[x->sb_index][x->mb_index]; 216 case BLOCK_16X16: 217 return &x->mb_context[x->sb_index][x->mb_index]; 218 case BLOCK_16X8: 219 return &x->sb16x8_context[x->sb_index][x->mb_index][x->b_index]; 220 case BLOCK_8X16: 221 return &x->sb8x16_context[x->sb_index][x->mb_index][x->b_index]; 222 case BLOCK_8X8: 223 return &x->sb8x8_context[x->sb_index][x->mb_index][x->b_index]; 224 case BLOCK_8X4: 225 return &x->sb8x4_context[x->sb_index][x->mb_index][x->b_index]; 226 case BLOCK_4X8: 227 return &x->sb4x8_context[x->sb_index][x->mb_index][x->b_index]; 228 case BLOCK_4X4: 229 return &x->ab4x4_context[x->sb_index][x->mb_index][x->b_index]; 230 default: 231 assert(0); 232 return NULL; 233 } 234 } 235 236 struct rdcost_block_args { 237 MACROBLOCK *x; 238 ENTROPY_CONTEXT t_above[16]; 239 ENTROPY_CONTEXT t_left[16]; 240 TX_SIZE tx_size; 241 int bw; 242 int bh; 243 int rate; 244 int64_t dist; 245 int64_t sse; 246 int this_rate; 247 int64_t this_dist; 248 int64_t this_sse; 249 int64_t this_rd; 250 int64_t best_rd; 251 int skip; 252 const int16_t *scan, *nb; 253 }; 254 255 #endif // VP9_ENCODER_VP9_BLOCK_H_ 256