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1 /* |
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2 Copyright (c) 2010 The WebM project authors. All Rights Reserved. |
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3 * |
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4 * Use of this source code is governed by a BSD-style license |
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5 * that can be found in the LICENSE file in the root of the source |
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6 * tree. An additional intellectual property rights grant can be found |
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7 * in the file PATENTS. All contributing project authors may |
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8 * be found in the AUTHORS file in the root of the source tree. |
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9 */ |
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10 |
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11 #include <assert.h> |
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12 |
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13 #include "vp9/common/vp9_common.h" |
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14 #include "vp9/common/vp9_entropy.h" |
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15 #include "vp9/common/vp9_entropymode.h" |
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16 #include "vp9/common/vp9_entropymv.h" |
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17 #include "vp9/common/vp9_findnearmv.h" |
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18 #include "vp9/common/vp9_mvref_common.h" |
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19 #include "vp9/common/vp9_pred_common.h" |
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20 #include "vp9/common/vp9_reconinter.h" |
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21 #include "vp9/common/vp9_seg_common.h" |
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22 |
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23 #include "vp9/decoder/vp9_decodemv.h" |
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24 #include "vp9/decoder/vp9_decodframe.h" |
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25 #include "vp9/decoder/vp9_onyxd_int.h" |
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26 #include "vp9/decoder/vp9_treereader.h" |
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27 |
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28 static MB_PREDICTION_MODE read_intra_mode(vp9_reader *r, const vp9_prob *p) { |
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29 return (MB_PREDICTION_MODE)treed_read(r, vp9_intra_mode_tree, p); |
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30 } |
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31 |
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32 static MB_PREDICTION_MODE read_intra_mode_y(VP9_COMMON *cm, vp9_reader *r, |
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33 int size_group) { |
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34 const MB_PREDICTION_MODE y_mode = read_intra_mode(r, |
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35 cm->fc.y_mode_prob[size_group]); |
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36 if (!cm->frame_parallel_decoding_mode) |
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37 ++cm->counts.y_mode[size_group][y_mode]; |
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38 return y_mode; |
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39 } |
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40 |
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41 static MB_PREDICTION_MODE read_intra_mode_uv(VP9_COMMON *cm, vp9_reader *r, |
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42 MB_PREDICTION_MODE y_mode) { |
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43 const MB_PREDICTION_MODE uv_mode = read_intra_mode(r, |
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44 cm->fc.uv_mode_prob[y_mode]); |
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45 if (!cm->frame_parallel_decoding_mode) |
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46 ++cm->counts.uv_mode[y_mode][uv_mode]; |
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47 return uv_mode; |
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48 } |
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49 |
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50 static MB_PREDICTION_MODE read_inter_mode(VP9_COMMON *cm, vp9_reader *r, |
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51 int ctx) { |
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52 const int mode = treed_read(r, vp9_inter_mode_tree, |
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53 cm->fc.inter_mode_probs[ctx]); |
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54 if (!cm->frame_parallel_decoding_mode) |
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55 ++cm->counts.inter_mode[ctx][mode]; |
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56 |
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57 return NEARESTMV + mode; |
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58 } |
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59 |
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60 static int read_segment_id(vp9_reader *r, const struct segmentation *seg) { |
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61 return treed_read(r, vp9_segment_tree, seg->tree_probs); |
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62 } |
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63 |
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64 static TX_SIZE read_selected_tx_size(VP9_COMMON *cm, MACROBLOCKD *xd, |
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65 TX_SIZE max_tx_size, vp9_reader *r) { |
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66 const int ctx = vp9_get_pred_context_tx_size(xd); |
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67 const vp9_prob *tx_probs = get_tx_probs(max_tx_size, ctx, &cm->fc.tx_probs); |
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68 TX_SIZE tx_size = vp9_read(r, tx_probs[0]); |
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69 if (tx_size != TX_4X4 && max_tx_size >= TX_16X16) { |
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70 tx_size += vp9_read(r, tx_probs[1]); |
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71 if (tx_size != TX_8X8 && max_tx_size >= TX_32X32) |
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72 tx_size += vp9_read(r, tx_probs[2]); |
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73 } |
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74 |
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75 if (!cm->frame_parallel_decoding_mode) |
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76 ++get_tx_counts(max_tx_size, ctx, &cm->counts.tx)[tx_size]; |
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77 return tx_size; |
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78 } |
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79 |
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80 static TX_SIZE read_tx_size(VP9_COMMON *cm, MACROBLOCKD *xd, TX_MODE tx_mode, |
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81 BLOCK_SIZE bsize, int allow_select, vp9_reader *r) { |
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82 const TX_SIZE max_tx_size = max_txsize_lookup[bsize]; |
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83 if (allow_select && tx_mode == TX_MODE_SELECT && bsize >= BLOCK_8X8) |
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84 return read_selected_tx_size(cm, xd, max_tx_size, r); |
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85 else |
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86 return MIN(max_tx_size, tx_mode_to_biggest_tx_size[tx_mode]); |
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87 } |
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88 |
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89 static void set_segment_id(VP9_COMMON *cm, BLOCK_SIZE bsize, |
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90 int mi_row, int mi_col, int segment_id) { |
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91 const int mi_offset = mi_row * cm->mi_cols + mi_col; |
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92 const int bw = num_8x8_blocks_wide_lookup[bsize]; |
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93 const int bh = num_8x8_blocks_high_lookup[bsize]; |
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94 const int xmis = MIN(cm->mi_cols - mi_col, bw); |
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95 const int ymis = MIN(cm->mi_rows - mi_row, bh); |
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96 int x, y; |
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97 |
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98 assert(segment_id >= 0 && segment_id < MAX_SEGMENTS); |
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99 |
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100 for (y = 0; y < ymis; y++) |
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101 for (x = 0; x < xmis; x++) |
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102 cm->last_frame_seg_map[mi_offset + y * cm->mi_cols + x] = segment_id; |
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103 } |
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104 |
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105 static int read_intra_segment_id(VP9_COMMON *const cm, MACROBLOCKD *const xd, |
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106 int mi_row, int mi_col, |
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107 vp9_reader *r) { |
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108 struct segmentation *const seg = &cm->seg; |
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109 const BLOCK_SIZE bsize = xd->mi_8x8[0]->mbmi.sb_type; |
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110 int segment_id; |
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111 |
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112 if (!seg->enabled) |
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113 return 0; // Default for disabled segmentation |
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114 |
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115 if (!seg->update_map) |
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116 return 0; |
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117 |
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118 segment_id = read_segment_id(r, seg); |
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119 set_segment_id(cm, bsize, mi_row, mi_col, segment_id); |
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120 return segment_id; |
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121 } |
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122 |
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123 static int read_inter_segment_id(VP9_COMMON *const cm, MACROBLOCKD *const xd, |
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124 int mi_row, int mi_col, vp9_reader *r) { |
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125 struct segmentation *const seg = &cm->seg; |
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126 const BLOCK_SIZE bsize = xd->mi_8x8[0]->mbmi.sb_type; |
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127 int pred_segment_id, segment_id; |
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128 |
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129 if (!seg->enabled) |
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130 return 0; // Default for disabled segmentation |
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131 |
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132 pred_segment_id = vp9_get_segment_id(cm, cm->last_frame_seg_map, |
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133 bsize, mi_row, mi_col); |
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134 if (!seg->update_map) |
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135 return pred_segment_id; |
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136 |
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137 if (seg->temporal_update) { |
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138 const vp9_prob pred_prob = vp9_get_pred_prob_seg_id(seg, xd); |
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139 const int pred_flag = vp9_read(r, pred_prob); |
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140 vp9_set_pred_flag_seg_id(xd, pred_flag); |
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141 segment_id = pred_flag ? pred_segment_id |
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142 : read_segment_id(r, seg); |
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143 } else { |
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144 segment_id = read_segment_id(r, seg); |
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145 } |
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146 set_segment_id(cm, bsize, mi_row, mi_col, segment_id); |
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147 return segment_id; |
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148 } |
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149 |
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150 static int read_skip_coeff(VP9_COMMON *cm, const MACROBLOCKD *xd, |
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151 int segment_id, vp9_reader *r) { |
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152 if (vp9_segfeature_active(&cm->seg, segment_id, SEG_LVL_SKIP)) { |
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153 return 1; |
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154 } else { |
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155 const int ctx = vp9_get_pred_context_mbskip(xd); |
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156 const int skip = vp9_read(r, cm->fc.mbskip_probs[ctx]); |
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157 if (!cm->frame_parallel_decoding_mode) |
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158 ++cm->counts.mbskip[ctx][skip]; |
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159 return skip; |
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160 } |
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161 } |
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162 |
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163 static void read_intra_frame_mode_info(VP9_COMMON *const cm, |
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164 MACROBLOCKD *const xd, |
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165 MODE_INFO *const m, |
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166 int mi_row, int mi_col, vp9_reader *r) { |
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167 MB_MODE_INFO *const mbmi = &m->mbmi; |
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168 const BLOCK_SIZE bsize = mbmi->sb_type; |
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169 const MODE_INFO *above_mi = xd->mi_8x8[-cm->mode_info_stride]; |
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170 const MODE_INFO *left_mi = xd->left_available ? xd->mi_8x8[-1] : NULL; |
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171 |
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172 mbmi->segment_id = read_intra_segment_id(cm, xd, mi_row, mi_col, r); |
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173 mbmi->skip_coeff = read_skip_coeff(cm, xd, mbmi->segment_id, r); |
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174 mbmi->tx_size = read_tx_size(cm, xd, cm->tx_mode, bsize, 1, r); |
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175 mbmi->ref_frame[0] = INTRA_FRAME; |
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176 mbmi->ref_frame[1] = NONE; |
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177 |
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178 if (bsize >= BLOCK_8X8) { |
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179 const MB_PREDICTION_MODE A = above_block_mode(m, above_mi, 0); |
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180 const MB_PREDICTION_MODE L = left_block_mode(m, left_mi, 0); |
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181 mbmi->mode = read_intra_mode(r, vp9_kf_y_mode_prob[A][L]); |
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182 } else { |
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183 // Only 4x4, 4x8, 8x4 blocks |
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184 const int num_4x4_w = num_4x4_blocks_wide_lookup[bsize]; // 1 or 2 |
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185 const int num_4x4_h = num_4x4_blocks_high_lookup[bsize]; // 1 or 2 |
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186 int idx, idy; |
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187 |
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188 for (idy = 0; idy < 2; idy += num_4x4_h) { |
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189 for (idx = 0; idx < 2; idx += num_4x4_w) { |
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190 const int ib = idy * 2 + idx; |
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191 const MB_PREDICTION_MODE A = above_block_mode(m, above_mi, ib); |
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192 const MB_PREDICTION_MODE L = left_block_mode(m, left_mi, ib); |
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193 const MB_PREDICTION_MODE b_mode = read_intra_mode(r, |
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194 vp9_kf_y_mode_prob[A][L]); |
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195 m->bmi[ib].as_mode = b_mode; |
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196 if (num_4x4_h == 2) |
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197 m->bmi[ib + 2].as_mode = b_mode; |
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198 if (num_4x4_w == 2) |
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199 m->bmi[ib + 1].as_mode = b_mode; |
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200 } |
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201 } |
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202 |
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203 mbmi->mode = m->bmi[3].as_mode; |
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204 } |
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205 |
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206 mbmi->uv_mode = read_intra_mode(r, vp9_kf_uv_mode_prob[mbmi->mode]); |
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207 } |
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208 |
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209 static int read_mv_component(vp9_reader *r, |
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210 const nmv_component *mvcomp, int usehp) { |
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211 int mag, d, fr, hp; |
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212 const int sign = vp9_read(r, mvcomp->sign); |
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213 const int mv_class = treed_read(r, vp9_mv_class_tree, mvcomp->classes); |
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214 const int class0 = mv_class == MV_CLASS_0; |
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215 |
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216 // Integer part |
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217 if (class0) { |
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218 d = treed_read(r, vp9_mv_class0_tree, mvcomp->class0); |
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219 } else { |
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220 int i; |
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221 const int n = mv_class + CLASS0_BITS - 1; // number of bits |
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222 |
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223 d = 0; |
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224 for (i = 0; i < n; ++i) |
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225 d |= vp9_read(r, mvcomp->bits[i]) << i; |
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226 } |
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227 |
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228 // Fractional part |
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229 fr = treed_read(r, vp9_mv_fp_tree, |
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230 class0 ? mvcomp->class0_fp[d] : mvcomp->fp); |
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231 |
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232 |
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233 // High precision part (if hp is not used, the default value of the hp is 1) |
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234 hp = usehp ? vp9_read(r, class0 ? mvcomp->class0_hp : mvcomp->hp) |
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235 : 1; |
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236 |
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237 // Result |
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238 mag = vp9_get_mv_mag(mv_class, (d << 3) | (fr << 1) | hp) + 1; |
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239 return sign ? -mag : mag; |
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240 } |
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241 |
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242 static INLINE void read_mv(vp9_reader *r, MV *mv, const MV *ref, |
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243 const nmv_context *ctx, |
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244 nmv_context_counts *counts, int allow_hp) { |
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245 const MV_JOINT_TYPE j = treed_read(r, vp9_mv_joint_tree, ctx->joints); |
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246 const int use_hp = allow_hp && vp9_use_mv_hp(ref); |
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247 MV diff = {0, 0}; |
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248 |
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249 if (mv_joint_vertical(j)) |
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250 diff.row = read_mv_component(r, &ctx->comps[0], use_hp); |
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251 |
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252 if (mv_joint_horizontal(j)) |
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253 diff.col = read_mv_component(r, &ctx->comps[1], use_hp); |
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254 |
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255 vp9_inc_mv(&diff, counts); |
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256 |
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257 mv->row = ref->row + diff.row; |
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258 mv->col = ref->col + diff.col; |
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259 } |
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260 |
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261 static COMPPREDMODE_TYPE read_reference_mode(VP9_COMMON *cm, |
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262 const MACROBLOCKD *xd, |
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263 vp9_reader *r) { |
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264 const int ctx = vp9_get_pred_context_comp_inter_inter(cm, xd); |
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265 const int mode = vp9_read(r, cm->fc.comp_inter_prob[ctx]); |
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266 if (!cm->frame_parallel_decoding_mode) |
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267 ++cm->counts.comp_inter[ctx][mode]; |
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268 return mode; // SINGLE_PREDICTION_ONLY or COMP_PREDICTION_ONLY |
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269 } |
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270 |
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271 // Read the referncence frame |
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272 static void read_ref_frames(VP9_COMMON *const cm, MACROBLOCKD *const xd, |
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273 vp9_reader *r, |
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274 int segment_id, MV_REFERENCE_FRAME ref_frame[2]) { |
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275 FRAME_CONTEXT *const fc = &cm->fc; |
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276 FRAME_COUNTS *const counts = &cm->counts; |
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277 |
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278 if (vp9_segfeature_active(&cm->seg, segment_id, SEG_LVL_REF_FRAME)) { |
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279 ref_frame[0] = vp9_get_segdata(&cm->seg, segment_id, SEG_LVL_REF_FRAME); |
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280 ref_frame[1] = NONE; |
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281 } else { |
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282 const COMPPREDMODE_TYPE mode = (cm->comp_pred_mode == HYBRID_PREDICTION) |
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283 ? read_reference_mode(cm, xd, r) |
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284 : cm->comp_pred_mode; |
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285 |
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286 // FIXME(rbultje) I'm pretty sure this breaks segmentation ref frame coding |
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287 if (mode == COMP_PREDICTION_ONLY) { |
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288 const int idx = cm->ref_frame_sign_bias[cm->comp_fixed_ref]; |
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289 const int ctx = vp9_get_pred_context_comp_ref_p(cm, xd); |
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290 const int bit = vp9_read(r, fc->comp_ref_prob[ctx]); |
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291 if (!cm->frame_parallel_decoding_mode) |
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292 ++counts->comp_ref[ctx][bit]; |
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293 ref_frame[idx] = cm->comp_fixed_ref; |
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294 ref_frame[!idx] = cm->comp_var_ref[bit]; |
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295 } else if (mode == SINGLE_PREDICTION_ONLY) { |
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296 const int ctx0 = vp9_get_pred_context_single_ref_p1(xd); |
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297 const int bit0 = vp9_read(r, fc->single_ref_prob[ctx0][0]); |
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298 if (!cm->frame_parallel_decoding_mode) |
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299 ++counts->single_ref[ctx0][0][bit0]; |
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300 if (bit0) { |
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301 const int ctx1 = vp9_get_pred_context_single_ref_p2(xd); |
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302 const int bit1 = vp9_read(r, fc->single_ref_prob[ctx1][1]); |
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303 if (!cm->frame_parallel_decoding_mode) |
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304 ++counts->single_ref[ctx1][1][bit1]; |
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305 ref_frame[0] = bit1 ? ALTREF_FRAME : GOLDEN_FRAME; |
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306 } else { |
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307 ref_frame[0] = LAST_FRAME; |
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308 } |
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309 |
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310 ref_frame[1] = NONE; |
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311 } else { |
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312 assert(!"Invalid prediction mode."); |
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313 } |
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314 } |
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315 } |
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316 |
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317 |
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318 static INLINE INTERPOLATION_TYPE read_switchable_filter_type( |
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319 VP9_COMMON *const cm, MACROBLOCKD *const xd, vp9_reader *r) { |
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320 const int ctx = vp9_get_pred_context_switchable_interp(xd); |
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321 const int type = treed_read(r, vp9_switchable_interp_tree, |
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322 cm->fc.switchable_interp_prob[ctx]); |
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323 if (!cm->frame_parallel_decoding_mode) |
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324 ++cm->counts.switchable_interp[ctx][type]; |
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325 return type; |
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326 } |
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327 |
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328 static void read_intra_block_mode_info(VP9_COMMON *const cm, MODE_INFO *mi, |
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329 vp9_reader *r) { |
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330 MB_MODE_INFO *const mbmi = &mi->mbmi; |
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331 const BLOCK_SIZE bsize = mi->mbmi.sb_type; |
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332 |
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333 mbmi->ref_frame[0] = INTRA_FRAME; |
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334 mbmi->ref_frame[1] = NONE; |
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335 |
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336 if (bsize >= BLOCK_8X8) { |
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337 mbmi->mode = read_intra_mode_y(cm, r, size_group_lookup[bsize]); |
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338 } else { |
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339 // Only 4x4, 4x8, 8x4 blocks |
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340 const int num_4x4_w = num_4x4_blocks_wide_lookup[bsize]; // 1 or 2 |
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341 const int num_4x4_h = num_4x4_blocks_high_lookup[bsize]; // 1 or 2 |
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342 int idx, idy; |
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343 |
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344 for (idy = 0; idy < 2; idy += num_4x4_h) { |
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345 for (idx = 0; idx < 2; idx += num_4x4_w) { |
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346 const int ib = idy * 2 + idx; |
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347 const int b_mode = read_intra_mode_y(cm, r, 0); |
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348 mi->bmi[ib].as_mode = b_mode; |
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349 if (num_4x4_h == 2) |
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350 mi->bmi[ib + 2].as_mode = b_mode; |
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351 if (num_4x4_w == 2) |
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352 mi->bmi[ib + 1].as_mode = b_mode; |
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353 } |
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354 } |
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355 mbmi->mode = mi->bmi[3].as_mode; |
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356 } |
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357 |
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358 mbmi->uv_mode = read_intra_mode_uv(cm, r, mbmi->mode); |
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359 } |
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360 |
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361 static INLINE int assign_mv(VP9_COMMON *cm, MB_PREDICTION_MODE mode, |
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362 int_mv mv[2], int_mv best_mv[2], |
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363 int_mv nearest_mv[2], int_mv near_mv[2], |
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364 int is_compound, int allow_hp, vp9_reader *r) { |
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365 int i; |
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366 int ret = 1; |
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367 |
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368 switch (mode) { |
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369 case NEWMV: { |
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370 nmv_context_counts *const mv_counts = cm->frame_parallel_decoding_mode ? |
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371 NULL : &cm->counts.mv; |
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372 read_mv(r, &mv[0].as_mv, &best_mv[0].as_mv, |
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373 &cm->fc.nmvc, mv_counts, allow_hp); |
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374 if (is_compound) |
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375 read_mv(r, &mv[1].as_mv, &best_mv[1].as_mv, |
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376 &cm->fc.nmvc, mv_counts, allow_hp); |
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377 for (i = 0; i < 1 + is_compound; ++i) { |
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378 ret = ret && mv[i].as_mv.row < MV_UPP && mv[i].as_mv.row > MV_LOW; |
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379 ret = ret && mv[i].as_mv.col < MV_UPP && mv[i].as_mv.col > MV_LOW; |
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380 } |
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381 break; |
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382 } |
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383 case NEARESTMV: { |
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384 mv[0].as_int = nearest_mv[0].as_int; |
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385 if (is_compound) mv[1].as_int = nearest_mv[1].as_int; |
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386 break; |
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387 } |
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388 case NEARMV: { |
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389 mv[0].as_int = near_mv[0].as_int; |
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390 if (is_compound) mv[1].as_int = near_mv[1].as_int; |
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391 break; |
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392 } |
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393 case ZEROMV: { |
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394 mv[0].as_int = 0; |
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395 if (is_compound) mv[1].as_int = 0; |
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396 break; |
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397 } |
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398 default: { |
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399 return 0; |
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400 } |
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401 } |
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402 return ret; |
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403 } |
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404 |
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405 static int read_is_inter_block(VP9_COMMON *const cm, MACROBLOCKD *const xd, |
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406 int segment_id, vp9_reader *r) { |
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407 if (vp9_segfeature_active(&cm->seg, segment_id, SEG_LVL_REF_FRAME)) { |
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408 return vp9_get_segdata(&cm->seg, segment_id, SEG_LVL_REF_FRAME) != |
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409 INTRA_FRAME; |
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410 } else { |
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411 const int ctx = vp9_get_pred_context_intra_inter(xd); |
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412 const int is_inter = vp9_read(r, vp9_get_pred_prob_intra_inter(cm, xd)); |
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413 if (!cm->frame_parallel_decoding_mode) |
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414 ++cm->counts.intra_inter[ctx][is_inter]; |
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415 return is_inter; |
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416 } |
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417 } |
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418 |
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419 static void read_inter_block_mode_info(VP9_COMMON *const cm, |
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420 MACROBLOCKD *const xd, |
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421 const TileInfo *const tile, |
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422 MODE_INFO *const mi, |
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423 int mi_row, int mi_col, vp9_reader *r) { |
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424 MB_MODE_INFO *const mbmi = &mi->mbmi; |
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425 const BLOCK_SIZE bsize = mbmi->sb_type; |
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426 const int allow_hp = cm->allow_high_precision_mv; |
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427 |
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428 int_mv nearest[2], nearmv[2], best[2]; |
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429 uint8_t inter_mode_ctx; |
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430 MV_REFERENCE_FRAME ref0; |
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431 int is_compound; |
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432 |
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433 mbmi->uv_mode = DC_PRED; |
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434 read_ref_frames(cm, xd, r, mbmi->segment_id, mbmi->ref_frame); |
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435 ref0 = mbmi->ref_frame[0]; |
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436 is_compound = has_second_ref(mbmi); |
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437 |
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438 vp9_find_mv_refs(cm, xd, tile, mi, xd->last_mi, ref0, mbmi->ref_mvs[ref0], |
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439 mi_row, mi_col); |
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440 |
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441 inter_mode_ctx = mbmi->mode_context[ref0]; |
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442 |
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443 if (vp9_segfeature_active(&cm->seg, mbmi->segment_id, SEG_LVL_SKIP)) { |
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444 mbmi->mode = ZEROMV; |
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445 if (bsize < BLOCK_8X8) { |
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446 vpx_internal_error(&cm->error, VPX_CODEC_UNSUP_BITSTREAM, |
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447 "Invalid usage of segement feature on small blocks"); |
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448 return; |
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449 } |
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450 } else { |
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451 if (bsize >= BLOCK_8X8) |
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452 mbmi->mode = read_inter_mode(cm, r, inter_mode_ctx); |
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453 } |
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454 |
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455 // nearest, nearby |
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456 if (bsize < BLOCK_8X8 || mbmi->mode != ZEROMV) { |
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457 vp9_find_best_ref_mvs(xd, allow_hp, |
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458 mbmi->ref_mvs[ref0], &nearest[0], &nearmv[0]); |
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459 best[0].as_int = nearest[0].as_int; |
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460 } |
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461 |
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462 if (is_compound) { |
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463 const MV_REFERENCE_FRAME ref1 = mbmi->ref_frame[1]; |
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464 vp9_find_mv_refs(cm, xd, tile, mi, xd->last_mi, |
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465 ref1, mbmi->ref_mvs[ref1], mi_row, mi_col); |
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466 |
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467 if (bsize < BLOCK_8X8 || mbmi->mode != ZEROMV) { |
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468 vp9_find_best_ref_mvs(xd, allow_hp, |
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469 mbmi->ref_mvs[ref1], &nearest[1], &nearmv[1]); |
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470 best[1].as_int = nearest[1].as_int; |
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471 } |
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472 } |
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473 |
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474 mbmi->interp_filter = (cm->mcomp_filter_type == SWITCHABLE) |
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475 ? read_switchable_filter_type(cm, xd, r) |
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476 : cm->mcomp_filter_type; |
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477 |
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478 if (bsize < BLOCK_8X8) { |
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479 const int num_4x4_w = num_4x4_blocks_wide_lookup[bsize]; // 1 or 2 |
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480 const int num_4x4_h = num_4x4_blocks_high_lookup[bsize]; // 1 or 2 |
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481 int idx, idy; |
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482 int b_mode; |
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483 for (idy = 0; idy < 2; idy += num_4x4_h) { |
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484 for (idx = 0; idx < 2; idx += num_4x4_w) { |
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485 int_mv block[2]; |
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486 const int j = idy * 2 + idx; |
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487 b_mode = read_inter_mode(cm, r, inter_mode_ctx); |
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488 |
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489 if (b_mode == NEARESTMV || b_mode == NEARMV) { |
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490 vp9_append_sub8x8_mvs_for_idx(cm, xd, tile, &nearest[0], |
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491 &nearmv[0], j, 0, |
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492 mi_row, mi_col); |
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493 |
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494 if (is_compound) |
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495 vp9_append_sub8x8_mvs_for_idx(cm, xd, tile, &nearest[1], |
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496 &nearmv[1], j, 1, |
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497 mi_row, mi_col); |
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498 } |
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499 |
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500 if (!assign_mv(cm, b_mode, block, best, nearest, nearmv, |
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501 is_compound, allow_hp, r)) { |
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502 xd->corrupted |= 1; |
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503 break; |
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504 }; |
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505 |
|
506 |
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507 mi->bmi[j].as_mv[0].as_int = block[0].as_int; |
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508 if (is_compound) |
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509 mi->bmi[j].as_mv[1].as_int = block[1].as_int; |
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510 |
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511 if (num_4x4_h == 2) |
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512 mi->bmi[j + 2] = mi->bmi[j]; |
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513 if (num_4x4_w == 2) |
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514 mi->bmi[j + 1] = mi->bmi[j]; |
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515 } |
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516 } |
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517 |
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518 mi->mbmi.mode = b_mode; |
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519 |
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520 mbmi->mv[0].as_int = mi->bmi[3].as_mv[0].as_int; |
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521 mbmi->mv[1].as_int = mi->bmi[3].as_mv[1].as_int; |
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522 } else { |
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523 xd->corrupted |= !assign_mv(cm, mbmi->mode, mbmi->mv, |
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524 best, nearest, nearmv, |
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525 is_compound, allow_hp, r); |
|
526 } |
|
527 } |
|
528 |
|
529 static void read_inter_frame_mode_info(VP9_COMMON *const cm, |
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530 MACROBLOCKD *const xd, |
|
531 const TileInfo *const tile, |
|
532 MODE_INFO *const mi, |
|
533 int mi_row, int mi_col, vp9_reader *r) { |
|
534 MB_MODE_INFO *const mbmi = &mi->mbmi; |
|
535 int inter_block; |
|
536 |
|
537 mbmi->mv[0].as_int = 0; |
|
538 mbmi->mv[1].as_int = 0; |
|
539 mbmi->segment_id = read_inter_segment_id(cm, xd, mi_row, mi_col, r); |
|
540 mbmi->skip_coeff = read_skip_coeff(cm, xd, mbmi->segment_id, r); |
|
541 inter_block = read_is_inter_block(cm, xd, mbmi->segment_id, r); |
|
542 mbmi->tx_size = read_tx_size(cm, xd, cm->tx_mode, mbmi->sb_type, |
|
543 !mbmi->skip_coeff || !inter_block, r); |
|
544 |
|
545 if (inter_block) |
|
546 read_inter_block_mode_info(cm, xd, tile, mi, mi_row, mi_col, r); |
|
547 else |
|
548 read_intra_block_mode_info(cm, mi, r); |
|
549 } |
|
550 |
|
551 void vp9_read_mode_info(VP9_COMMON *cm, MACROBLOCKD *xd, |
|
552 const TileInfo *const tile, |
|
553 int mi_row, int mi_col, vp9_reader *r) { |
|
554 MODE_INFO *const mi = xd->mi_8x8[0]; |
|
555 const BLOCK_SIZE bsize = mi->mbmi.sb_type; |
|
556 const int bw = num_8x8_blocks_wide_lookup[bsize]; |
|
557 const int bh = num_8x8_blocks_high_lookup[bsize]; |
|
558 const int y_mis = MIN(bh, cm->mi_rows - mi_row); |
|
559 const int x_mis = MIN(bw, cm->mi_cols - mi_col); |
|
560 int x, y, z; |
|
561 |
|
562 if (frame_is_intra_only(cm)) |
|
563 read_intra_frame_mode_info(cm, xd, mi, mi_row, mi_col, r); |
|
564 else |
|
565 read_inter_frame_mode_info(cm, xd, tile, mi, mi_row, mi_col, r); |
|
566 |
|
567 for (y = 0, z = 0; y < y_mis; y++, z += cm->mode_info_stride) { |
|
568 for (x = !y; x < x_mis; x++) { |
|
569 xd->mi_8x8[z + x] = mi; |
|
570 } |
|
571 } |
|
572 } |