1 | /*
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2 | * Copyright (c) 2003 The FFmpeg Project.
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3 | *
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4 | * This library is free software; you can redistribute it and/or
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5 | * modify it under the terms of the GNU Lesser General Public
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6 | * License as published by the Free Software Foundation; either
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7 | * version 2 of the License, or (at your option) any later version.
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8 | *
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9 | * This library is distributed in the hope that it will be useful,
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10 | * but WITHOUT ANY WARRANTY; without even the implied warranty of
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11 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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12 | * Lesser General Public License for more details.
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13 | *
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14 | * You should have received a copy of the GNU Lesser General Public
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15 | * License along with this library; if not, write to the Free Software
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16 | * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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17 | *
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18 | *
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19 | * How to use this decoder:
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20 | * SVQ3 data is transported within Apple Quicktime files. Quicktime files
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21 | * have stsd atoms to describe media trak properties. A stsd atom for a
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22 | * video trak contains 1 or more ImageDescription atoms. These atoms begin
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23 | * with the 4-byte length of the atom followed by the codec fourcc. Some
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24 | * decoders need information in this atom to operate correctly. Such
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25 | * is the case with SVQ3. In order to get the best use out of this decoder,
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26 | * the calling app must make the SVQ3 ImageDescription atom available
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27 | * via the AVCodecContext's extradata[_size] field:
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28 | *
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29 | * AVCodecContext.extradata = pointer to ImageDescription, first characters
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30 | * are expected to be 'S', 'V', 'Q', and '3', NOT the 4-byte atom length
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31 | * AVCodecContext.extradata_size = size of ImageDescription atom memory
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32 | * buffer (which will be the same as the ImageDescription atom size field
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33 | * from the QT file, minus 4 bytes since the length is missing)
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34 | *
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35 | * You will know you have these parameters passed correctly when the decoder
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36 | * correctly decodes this file:
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37 | * ftp://ftp.mplayerhq.hu/MPlayer/samples/V-codecs/SVQ3/Vertical400kbit.sorenson3.mov
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38 | *
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39 | */
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40 |
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41 | /**
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42 | * @file svq3.c
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43 | * svq3 decoder.
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44 | */
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45 |
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46 | #define FULLPEL_MODE 1
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47 | #define HALFPEL_MODE 2
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48 | #define THIRDPEL_MODE 3
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49 | #define PREDICT_MODE 4
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50 |
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51 | /* dual scan (from some older h264 draft)
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52 | o-->o-->o o
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53 | | /|
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54 | o o o / o
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55 | | / | |/ |
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56 | o o o o
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57 | /
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58 | o-->o-->o-->o
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59 | */
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60 | static const uint8_t svq3_scan[16]={
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61 | 0+0*4, 1+0*4, 2+0*4, 2+1*4,
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62 | 2+2*4, 3+0*4, 3+1*4, 3+2*4,
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63 | 0+1*4, 0+2*4, 1+1*4, 1+2*4,
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64 | 0+3*4, 1+3*4, 2+3*4, 3+3*4,
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65 | };
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66 |
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67 | static const uint8_t svq3_pred_0[25][2] = {
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68 | { 0, 0 },
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69 | { 1, 0 }, { 0, 1 },
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70 | { 0, 2 }, { 1, 1 }, { 2, 0 },
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71 | { 3, 0 }, { 2, 1 }, { 1, 2 }, { 0, 3 },
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72 | { 0, 4 }, { 1, 3 }, { 2, 2 }, { 3, 1 }, { 4, 0 },
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73 | { 4, 1 }, { 3, 2 }, { 2, 3 }, { 1, 4 },
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74 | { 2, 4 }, { 3, 3 }, { 4, 2 },
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75 | { 4, 3 }, { 3, 4 },
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76 | { 4, 4 }
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77 | };
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78 |
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79 | static const int8_t svq3_pred_1[6][6][5] = {
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80 | { { 2,-1,-1,-1,-1 }, { 2, 1,-1,-1,-1 }, { 1, 2,-1,-1,-1 },
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81 | { 2, 1,-1,-1,-1 }, { 1, 2,-1,-1,-1 }, { 1, 2,-1,-1,-1 } },
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82 | { { 0, 2,-1,-1,-1 }, { 0, 2, 1, 4, 3 }, { 0, 1, 2, 4, 3 },
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83 | { 0, 2, 1, 4, 3 }, { 2, 0, 1, 3, 4 }, { 0, 4, 2, 1, 3 } },
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84 | { { 2, 0,-1,-1,-1 }, { 2, 1, 0, 4, 3 }, { 1, 2, 4, 0, 3 },
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85 | { 2, 1, 0, 4, 3 }, { 2, 1, 4, 3, 0 }, { 1, 2, 4, 0, 3 } },
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86 | { { 2, 0,-1,-1,-1 }, { 2, 0, 1, 4, 3 }, { 1, 2, 0, 4, 3 },
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87 | { 2, 1, 0, 4, 3 }, { 2, 1, 3, 4, 0 }, { 2, 4, 1, 0, 3 } },
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88 | { { 0, 2,-1,-1,-1 }, { 0, 2, 1, 3, 4 }, { 1, 2, 3, 0, 4 },
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89 | { 2, 0, 1, 3, 4 }, { 2, 1, 3, 0, 4 }, { 2, 0, 4, 3, 1 } },
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90 | { { 0, 2,-1,-1,-1 }, { 0, 2, 4, 1, 3 }, { 1, 4, 2, 0, 3 },
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91 | { 4, 2, 0, 1, 3 }, { 2, 0, 1, 4, 3 }, { 4, 2, 1, 0, 3 } },
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92 | };
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93 |
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94 | static const struct { uint8_t run; uint8_t level; } svq3_dct_tables[2][16] = {
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95 | { { 0, 0 }, { 0, 1 }, { 1, 1 }, { 2, 1 }, { 0, 2 }, { 3, 1 }, { 4, 1 }, { 5, 1 },
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96 | { 0, 3 }, { 1, 2 }, { 2, 2 }, { 6, 1 }, { 7, 1 }, { 8, 1 }, { 9, 1 }, { 0, 4 } },
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97 | { { 0, 0 }, { 0, 1 }, { 1, 1 }, { 0, 2 }, { 2, 1 }, { 0, 3 }, { 0, 4 }, { 0, 5 },
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98 | { 3, 1 }, { 4, 1 }, { 1, 2 }, { 1, 3 }, { 0, 6 }, { 0, 7 }, { 0, 8 }, { 0, 9 } }
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99 | };
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100 |
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101 | static const uint32_t svq3_dequant_coeff[32] = {
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102 | 3881, 4351, 4890, 5481, 6154, 6914, 7761, 8718,
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103 | 9781, 10987, 12339, 13828, 15523, 17435, 19561, 21873,
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104 | 24552, 27656, 30847, 34870, 38807, 43747, 49103, 54683,
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105 | 61694, 68745, 77615, 89113,100253,109366,126635,141533
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106 | };
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107 |
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108 |
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109 | static void svq3_luma_dc_dequant_idct_c(DCTELEM *block, int qp){
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110 | const int qmul= svq3_dequant_coeff[qp];
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111 | #define stride 16
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112 | int i;
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113 | int temp[16];
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114 | static const int x_offset[4]={0, 1*stride, 4* stride, 5*stride};
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115 | static const int y_offset[4]={0, 2*stride, 8* stride, 10*stride};
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116 |
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117 | for(i=0; i<4; i++){
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118 | const int offset= y_offset[i];
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119 | const int z0= 13*(block[offset+stride*0] + block[offset+stride*4]);
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120 | const int z1= 13*(block[offset+stride*0] - block[offset+stride*4]);
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121 | const int z2= 7* block[offset+stride*1] - 17*block[offset+stride*5];
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122 | const int z3= 17* block[offset+stride*1] + 7*block[offset+stride*5];
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123 |
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124 | temp[4*i+0]= z0+z3;
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125 | temp[4*i+1]= z1+z2;
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126 | temp[4*i+2]= z1-z2;
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127 | temp[4*i+3]= z0-z3;
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128 | }
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129 |
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130 | for(i=0; i<4; i++){
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131 | const int offset= x_offset[i];
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132 | const int z0= 13*(temp[4*0+i] + temp[4*2+i]);
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133 | const int z1= 13*(temp[4*0+i] - temp[4*2+i]);
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134 | const int z2= 7* temp[4*1+i] - 17*temp[4*3+i];
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135 | const int z3= 17* temp[4*1+i] + 7*temp[4*3+i];
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136 |
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137 | block[stride*0 +offset]= ((z0 + z3)*qmul + 0x80000)>>20;
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138 | block[stride*2 +offset]= ((z1 + z2)*qmul + 0x80000)>>20;
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139 | block[stride*8 +offset]= ((z1 - z2)*qmul + 0x80000)>>20;
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140 | block[stride*10+offset]= ((z0 - z3)*qmul + 0x80000)>>20;
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141 | }
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142 | }
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143 | #undef stride
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144 |
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145 | static void svq3_add_idct_c (uint8_t *dst, DCTELEM *block, int stride, int qp, int dc){
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146 | const int qmul= svq3_dequant_coeff[qp];
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147 | int i;
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148 | uint8_t *cm = cropTbl + MAX_NEG_CROP;
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149 |
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150 | if (dc) {
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151 | dc = 13*13*((dc == 1) ? 1538*block[0] : ((qmul*(block[0] >> 3)) / 2));
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152 | block[0] = 0;
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153 | }
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154 |
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155 | for (i=0; i < 4; i++) {
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156 | const int z0= 13*(block[0 + 4*i] + block[2 + 4*i]);
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157 | const int z1= 13*(block[0 + 4*i] - block[2 + 4*i]);
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158 | const int z2= 7* block[1 + 4*i] - 17*block[3 + 4*i];
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159 | const int z3= 17* block[1 + 4*i] + 7*block[3 + 4*i];
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160 |
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161 | block[0 + 4*i]= z0 + z3;
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162 | block[1 + 4*i]= z1 + z2;
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163 | block[2 + 4*i]= z1 - z2;
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164 | block[3 + 4*i]= z0 - z3;
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165 | }
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166 |
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167 | for (i=0; i < 4; i++) {
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168 | const int z0= 13*(block[i + 4*0] + block[i + 4*2]);
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169 | const int z1= 13*(block[i + 4*0] - block[i + 4*2]);
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170 | const int z2= 7* block[i + 4*1] - 17*block[i + 4*3];
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171 | const int z3= 17* block[i + 4*1] + 7*block[i + 4*3];
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172 | const int rr= (dc + 0x80000);
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173 |
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174 | dst[i + stride*0]= cm[ dst[i + stride*0] + (((z0 + z3)*qmul + rr) >> 20) ];
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175 | dst[i + stride*1]= cm[ dst[i + stride*1] + (((z1 + z2)*qmul + rr) >> 20) ];
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176 | dst[i + stride*2]= cm[ dst[i + stride*2] + (((z1 - z2)*qmul + rr) >> 20) ];
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177 | dst[i + stride*3]= cm[ dst[i + stride*3] + (((z0 - z3)*qmul + rr) >> 20) ];
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178 | }
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179 | }
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180 |
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181 | static void pred4x4_down_left_svq3_c(uint8_t *src, uint8_t *topright, int stride){
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182 | LOAD_TOP_EDGE
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183 | LOAD_LEFT_EDGE
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184 | const __attribute__((unused)) int unu0= t0;
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185 | const __attribute__((unused)) int unu1= l0;
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186 |
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187 | src[0+0*stride]=(l1 + t1)>>1;
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188 | src[1+0*stride]=
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189 | src[0+1*stride]=(l2 + t2)>>1;
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190 | src[2+0*stride]=
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191 | src[1+1*stride]=
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192 | src[0+2*stride]=
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193 | src[3+0*stride]=
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194 | src[2+1*stride]=
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195 | src[1+2*stride]=
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196 | src[0+3*stride]=
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197 | src[3+1*stride]=
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198 | src[2+2*stride]=
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199 | src[1+3*stride]=
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200 | src[3+2*stride]=
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201 | src[2+3*stride]=
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202 | src[3+3*stride]=(l3 + t3)>>1;
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203 | }
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204 |
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205 | static void pred16x16_plane_svq3_c(uint8_t *src, int stride){
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206 | pred16x16_plane_compat_c(src, stride, 1);
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207 | }
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208 |
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209 | static inline int svq3_decode_block (GetBitContext *gb, DCTELEM *block,
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210 | int index, const int type) {
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211 |
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212 | static const uint8_t *const scan_patterns[4] =
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213 | { luma_dc_zigzag_scan, zigzag_scan, svq3_scan, chroma_dc_scan };
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214 |
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215 | int run, level, sign, vlc, limit;
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216 | const int intra = (3 * type) >> 2;
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217 | const uint8_t *const scan = scan_patterns[type];
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218 |
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219 | for (limit=(16 >> intra); index < 16; index=limit, limit+=8) {
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220 | for (; (vlc = svq3_get_ue_golomb (gb)) != 0; index++) {
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221 |
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222 | if (vlc == INVALID_VLC)
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223 | return -1;
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224 |
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225 | sign = (vlc & 0x1) - 1;
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226 | vlc = (vlc + 1) >> 1;
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227 |
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228 | if (type == 3) {
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229 | if (vlc < 3) {
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230 | run = 0;
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231 | level = vlc;
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232 | } else if (vlc < 4) {
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233 | run = 1;
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234 | level = 1;
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235 | } else {
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236 | run = (vlc & 0x3);
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237 | level = ((vlc + 9) >> 2) - run;
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238 | }
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239 | } else {
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240 | if (vlc < 16) {
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241 | run = svq3_dct_tables[intra][vlc].run;
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242 | level = svq3_dct_tables[intra][vlc].level;
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243 | } else if (intra) {
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244 | run = (vlc & 0x7);
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245 | level = (vlc >> 3) + ((run == 0) ? 8 : ((run < 2) ? 2 : ((run < 5) ? 0 : -1)));
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246 | } else {
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247 | run = (vlc & 0xF);
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248 | level = (vlc >> 4) + ((run == 0) ? 4 : ((run < 3) ? 2 : ((run < 10) ? 1 : 0)));
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249 | }
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250 | }
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251 |
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252 | if ((index += run) >= limit)
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253 | return -1;
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254 |
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255 | block[scan[index]] = (level ^ sign) - sign;
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256 | }
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257 |
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258 | if (type != 2) {
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259 | break;
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260 | }
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261 | }
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262 |
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263 | return 0;
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264 | }
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265 |
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266 | static inline void svq3_mc_dir_part (MpegEncContext *s,
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267 | int x, int y, int width, int height,
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268 | int mx, int my, int dxy,
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269 | int thirdpel, int dir, int avg) {
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270 |
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271 | const Picture *pic = (dir == 0) ? &s->last_picture : &s->next_picture;
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272 | uint8_t *src, *dest;
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273 | int i, emu = 0;
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274 | int blocksize= 2 - (width>>3); //16->0, 8->1, 4->2
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275 |
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276 | mx += x;
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277 | my += y;
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278 |
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279 | if (mx < 0 || mx >= (s->h_edge_pos - width - 1) ||
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280 | my < 0 || my >= (s->v_edge_pos - height - 1)) {
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281 |
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282 | if ((s->flags & CODEC_FLAG_EMU_EDGE)) {
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283 | emu = 1;
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284 | }
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285 |
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286 | mx = clip (mx, -16, (s->h_edge_pos - width + 15));
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287 | my = clip (my, -16, (s->v_edge_pos - height + 15));
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288 | }
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289 |
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290 | /* form component predictions */
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291 | dest = s->current_picture.data[0] + x + y*s->linesize;
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292 | src = pic->data[0] + mx + my*s->linesize;
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293 |
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294 | if (emu) {
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295 | ff_emulated_edge_mc (s->edge_emu_buffer, src, s->linesize, (width + 1), (height + 1),
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296 | mx, my, s->h_edge_pos, s->v_edge_pos);
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297 | src = s->edge_emu_buffer;
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298 | }
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299 | if(thirdpel)
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300 | (avg ? s->dsp.avg_tpel_pixels_tab : s->dsp.put_tpel_pixels_tab)[dxy](dest, src, s->linesize, width, height);
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301 | else
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302 | (avg ? s->dsp.avg_pixels_tab : s->dsp.put_pixels_tab)[blocksize][dxy](dest, src, s->linesize, height);
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303 |
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304 | if (!(s->flags & CODEC_FLAG_GRAY)) {
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305 | mx = (mx + (mx < (int) x)) >> 1;
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306 | my = (my + (my < (int) y)) >> 1;
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307 | width = (width >> 1);
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308 | height = (height >> 1);
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309 | blocksize++;
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310 |
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311 | for (i=1; i < 3; i++) {
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312 | dest = s->current_picture.data[i] + (x >> 1) + (y >> 1)*s->uvlinesize;
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313 | src = pic->data[i] + mx + my*s->uvlinesize;
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314 |
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315 | if (emu) {
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316 | ff_emulated_edge_mc (s->edge_emu_buffer, src, s->uvlinesize, (width + 1), (height + 1),
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317 | mx, my, (s->h_edge_pos >> 1), (s->v_edge_pos >> 1));
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318 | src = s->edge_emu_buffer;
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319 | }
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320 | if(thirdpel)
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321 | (avg ? s->dsp.avg_tpel_pixels_tab : s->dsp.put_tpel_pixels_tab)[dxy](dest, src, s->uvlinesize, width, height);
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322 | else
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323 | (avg ? s->dsp.avg_pixels_tab : s->dsp.put_pixels_tab)[blocksize][dxy](dest, src, s->uvlinesize, height);
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324 | }
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325 | }
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326 | }
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327 |
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328 | static inline int svq3_mc_dir (H264Context *h, int size, int mode, int dir, int avg) {
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329 |
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330 | int i, j, k, mx, my, dx, dy, x, y;
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331 | MpegEncContext *const s = (MpegEncContext *) h;
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332 | const int part_width = ((size & 5) == 4) ? 4 : 16 >> (size & 1);
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333 | const int part_height = 16 >> ((unsigned) (size + 1) / 3);
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334 | const int extra_width = (mode == PREDICT_MODE) ? -16*6 : 0;
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335 | const int h_edge_pos = 6*(s->h_edge_pos - part_width ) - extra_width;
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336 | const int v_edge_pos = 6*(s->v_edge_pos - part_height) - extra_width;
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337 |
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338 | for (i=0; i < 16; i+=part_height) {
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339 | for (j=0; j < 16; j+=part_width) {
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340 | const int b_xy = (4*s->mb_x+(j>>2)) + (4*s->mb_y+(i>>2))*h->b_stride;
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341 | int dxy;
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342 | x = 16*s->mb_x + j;
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343 | y = 16*s->mb_y + i;
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344 | k = ((j>>2)&1) + ((i>>1)&2) + ((j>>1)&4) + (i&8);
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345 |
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346 | if (mode != PREDICT_MODE) {
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347 | pred_motion (h, k, (part_width >> 2), dir, 1, &mx, &my);
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348 | } else {
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349 | mx = s->next_picture.motion_val[0][b_xy][0]<<1;
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350 | my = s->next_picture.motion_val[0][b_xy][1]<<1;
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351 |
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352 | if (dir == 0) {
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353 | mx = ((mx * h->frame_num_offset) / h->prev_frame_num_offset + 1)>>1;
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354 | my = ((my * h->frame_num_offset) / h->prev_frame_num_offset + 1)>>1;
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355 | } else {
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356 | mx = ((mx * (h->frame_num_offset - h->prev_frame_num_offset)) / h->prev_frame_num_offset + 1)>>1;
|
---|
357 | my = ((my * (h->frame_num_offset - h->prev_frame_num_offset)) / h->prev_frame_num_offset + 1)>>1;
|
---|
358 | }
|
---|
359 | }
|
---|
360 |
|
---|
361 | /* clip motion vector prediction to frame border */
|
---|
362 | mx = clip (mx, extra_width - 6*x, h_edge_pos - 6*x);
|
---|
363 | my = clip (my, extra_width - 6*y, v_edge_pos - 6*y);
|
---|
364 |
|
---|
365 | /* get (optional) motion vector differential */
|
---|
366 | if (mode == PREDICT_MODE) {
|
---|
367 | dx = dy = 0;
|
---|
368 | } else {
|
---|
369 | dy = svq3_get_se_golomb (&s->gb);
|
---|
370 | dx = svq3_get_se_golomb (&s->gb);
|
---|
371 |
|
---|
372 | if (dx == INVALID_VLC || dy == INVALID_VLC) {
|
---|
373 | av_log(h->s.avctx, AV_LOG_ERROR, "invalid MV vlc\n");
|
---|
374 | return -1;
|
---|
375 | }
|
---|
376 | }
|
---|
377 |
|
---|
378 | /* compute motion vector */
|
---|
379 | if (mode == THIRDPEL_MODE) {
|
---|
380 | int fx, fy;
|
---|
381 | mx = ((mx + 1)>>1) + dx;
|
---|
382 | my = ((my + 1)>>1) + dy;
|
---|
383 | fx= ((unsigned)(mx + 0x3000))/3 - 0x1000;
|
---|
384 | fy= ((unsigned)(my + 0x3000))/3 - 0x1000;
|
---|
385 | dxy= (mx - 3*fx) + 4*(my - 3*fy);
|
---|
386 |
|
---|
387 | svq3_mc_dir_part (s, x, y, part_width, part_height, fx, fy, dxy, 1, dir, avg);
|
---|
388 | mx += mx;
|
---|
389 | my += my;
|
---|
390 | } else if (mode == HALFPEL_MODE || mode == PREDICT_MODE) {
|
---|
391 | mx = ((unsigned)(mx + 1 + 0x3000))/3 + dx - 0x1000;
|
---|
392 | my = ((unsigned)(my + 1 + 0x3000))/3 + dy - 0x1000;
|
---|
393 | dxy= (mx&1) + 2*(my&1);
|
---|
394 |
|
---|
395 | svq3_mc_dir_part (s, x, y, part_width, part_height, mx>>1, my>>1, dxy, 0, dir, avg);
|
---|
396 | mx *= 3;
|
---|
397 | my *= 3;
|
---|
398 | } else {
|
---|
399 | mx = ((unsigned)(mx + 3 + 0x6000))/6 + dx - 0x1000;
|
---|
400 | my = ((unsigned)(my + 3 + 0x6000))/6 + dy - 0x1000;
|
---|
401 |
|
---|
402 | svq3_mc_dir_part (s, x, y, part_width, part_height, mx, my, 0, 0, dir, avg);
|
---|
403 | mx *= 6;
|
---|
404 | my *= 6;
|
---|
405 | }
|
---|
406 |
|
---|
407 | /* update mv_cache */
|
---|
408 | if (mode != PREDICT_MODE) {
|
---|
409 | int32_t mv = pack16to32(mx,my);
|
---|
410 |
|
---|
411 | if (part_height == 8 && i < 8) {
|
---|
412 | *(int32_t *) h->mv_cache[dir][scan8[k] + 1*8] = mv;
|
---|
413 |
|
---|
414 | if (part_width == 8 && j < 8) {
|
---|
415 | *(int32_t *) h->mv_cache[dir][scan8[k] + 1 + 1*8] = mv;
|
---|
416 | }
|
---|
417 | }
|
---|
418 | if (part_width == 8 && j < 8) {
|
---|
419 | *(int32_t *) h->mv_cache[dir][scan8[k] + 1] = mv;
|
---|
420 | }
|
---|
421 | if (part_width == 4 || part_height == 4) {
|
---|
422 | *(int32_t *) h->mv_cache[dir][scan8[k]] = mv;
|
---|
423 | }
|
---|
424 | }
|
---|
425 |
|
---|
426 | /* write back motion vectors */
|
---|
427 | fill_rectangle(s->current_picture.motion_val[dir][b_xy], part_width>>2, part_height>>2, h->b_stride, pack16to32(mx,my), 4);
|
---|
428 | }
|
---|
429 | }
|
---|
430 |
|
---|
431 | return 0;
|
---|
432 | }
|
---|
433 |
|
---|
434 | static int svq3_decode_mb (H264Context *h, unsigned int mb_type) {
|
---|
435 | int i, j, k, m, dir, mode;
|
---|
436 | int cbp = 0;
|
---|
437 | uint32_t vlc;
|
---|
438 | int8_t *top, *left;
|
---|
439 | MpegEncContext *const s = (MpegEncContext *) h;
|
---|
440 | const int mb_xy = s->mb_x + s->mb_y*s->mb_stride;
|
---|
441 | const int b_xy = 4*s->mb_x + 4*s->mb_y*h->b_stride;
|
---|
442 |
|
---|
443 | h->top_samples_available = (s->mb_y == 0) ? 0x33FF : 0xFFFF;
|
---|
444 | h->left_samples_available = (s->mb_x == 0) ? 0x5F5F : 0xFFFF;
|
---|
445 | h->topright_samples_available = 0xFFFF;
|
---|
446 |
|
---|
447 | if (mb_type == 0) { /* SKIP */
|
---|
448 | if (s->pict_type == P_TYPE || s->next_picture.mb_type[mb_xy] == -1) {
|
---|
449 | svq3_mc_dir_part (s, 16*s->mb_x, 16*s->mb_y, 16, 16, 0, 0, 0, 0, 0, 0);
|
---|
450 |
|
---|
451 | if (s->pict_type == B_TYPE) {
|
---|
452 | svq3_mc_dir_part (s, 16*s->mb_x, 16*s->mb_y, 16, 16, 0, 0, 0, 0, 1, 1);
|
---|
453 | }
|
---|
454 |
|
---|
455 | mb_type = MB_TYPE_SKIP;
|
---|
456 | } else {
|
---|
457 | mb_type= FFMIN(s->next_picture.mb_type[mb_xy], 6);
|
---|
458 | if(svq3_mc_dir (h, mb_type, PREDICT_MODE, 0, 0) < 0)
|
---|
459 | return -1;
|
---|
460 | if(svq3_mc_dir (h, mb_type, PREDICT_MODE, 1, 1) < 0)
|
---|
461 | return -1;
|
---|
462 |
|
---|
463 | mb_type = MB_TYPE_16x16;
|
---|
464 | }
|
---|
465 | } else if (mb_type < 8) { /* INTER */
|
---|
466 | if (h->thirdpel_flag && h->halfpel_flag == !get_bits (&s->gb, 1)) {
|
---|
467 | mode = THIRDPEL_MODE;
|
---|
468 | } else if (h->halfpel_flag && h->thirdpel_flag == !get_bits (&s->gb, 1)) {
|
---|
469 | mode = HALFPEL_MODE;
|
---|
470 | } else {
|
---|
471 | mode = FULLPEL_MODE;
|
---|
472 | }
|
---|
473 |
|
---|
474 | /* fill caches */
|
---|
475 | /* note ref_cache should contain here:
|
---|
476 | ????????
|
---|
477 | ???11111
|
---|
478 | N??11111
|
---|
479 | N??11111
|
---|
480 | N??11111
|
---|
481 | N
|
---|
482 | */
|
---|
483 |
|
---|
484 | for (m=0; m < 2; m++) {
|
---|
485 | if (s->mb_x > 0 && h->intra4x4_pred_mode[mb_xy - 1][0] != -1) {
|
---|
486 | for (i=0; i < 4; i++) {
|
---|
487 | *(uint32_t *) h->mv_cache[m][scan8[0] - 1 + i*8] = *(uint32_t *) s->current_picture.motion_val[m][b_xy - 1 + i*h->b_stride];
|
---|
488 | }
|
---|
489 | } else {
|
---|
490 | for (i=0; i < 4; i++) {
|
---|
491 | *(uint32_t *) h->mv_cache[m][scan8[0] - 1 + i*8] = 0;
|
---|
492 | }
|
---|
493 | }
|
---|
494 | if (s->mb_y > 0) {
|
---|
495 | memcpy (h->mv_cache[m][scan8[0] - 1*8], s->current_picture.motion_val[m][b_xy - h->b_stride], 4*2*sizeof(int16_t));
|
---|
496 | memset (&h->ref_cache[m][scan8[0] - 1*8], (h->intra4x4_pred_mode[mb_xy - s->mb_stride][4] == -1) ? PART_NOT_AVAILABLE : 1, 4);
|
---|
497 |
|
---|
498 | if (s->mb_x < (s->mb_width - 1)) {
|
---|
499 | *(uint32_t *) h->mv_cache[m][scan8[0] + 4 - 1*8] = *(uint32_t *) s->current_picture.motion_val[m][b_xy - h->b_stride + 4];
|
---|
500 | h->ref_cache[m][scan8[0] + 4 - 1*8] =
|
---|
501 | (h->intra4x4_pred_mode[mb_xy - s->mb_stride + 1][0] == -1 ||
|
---|
502 | h->intra4x4_pred_mode[mb_xy - s->mb_stride][4] == -1) ? PART_NOT_AVAILABLE : 1;
|
---|
503 | }else
|
---|
504 | h->ref_cache[m][scan8[0] + 4 - 1*8] = PART_NOT_AVAILABLE;
|
---|
505 | if (s->mb_x > 0) {
|
---|
506 | *(uint32_t *) h->mv_cache[m][scan8[0] - 1 - 1*8] = *(uint32_t *) s->current_picture.motion_val[m][b_xy - h->b_stride - 1];
|
---|
507 | h->ref_cache[m][scan8[0] - 1 - 1*8] = (h->intra4x4_pred_mode[mb_xy - s->mb_stride - 1][3] == -1) ? PART_NOT_AVAILABLE : 1;
|
---|
508 | }else
|
---|
509 | h->ref_cache[m][scan8[0] - 1 - 1*8] = PART_NOT_AVAILABLE;
|
---|
510 | }else
|
---|
511 | memset (&h->ref_cache[m][scan8[0] - 1*8 - 1], PART_NOT_AVAILABLE, 8);
|
---|
512 |
|
---|
513 | if (s->pict_type != B_TYPE)
|
---|
514 | break;
|
---|
515 | }
|
---|
516 |
|
---|
517 | /* decode motion vector(s) and form prediction(s) */
|
---|
518 | if (s->pict_type == P_TYPE) {
|
---|
519 | if(svq3_mc_dir (h, (mb_type - 1), mode, 0, 0) < 0)
|
---|
520 | return -1;
|
---|
521 | } else { /* B_TYPE */
|
---|
522 | if (mb_type != 2) {
|
---|
523 | if(svq3_mc_dir (h, 0, mode, 0, 0) < 0)
|
---|
524 | return -1;
|
---|
525 | } else {
|
---|
526 | for (i=0; i < 4; i++) {
|
---|
527 | memset (s->current_picture.motion_val[0][b_xy + i*h->b_stride], 0, 4*2*sizeof(int16_t));
|
---|
528 | }
|
---|
529 | }
|
---|
530 | if (mb_type != 1) {
|
---|
531 | if(svq3_mc_dir (h, 0, mode, 1, (mb_type == 3)) < 0)
|
---|
532 | return -1;
|
---|
533 | } else {
|
---|
534 | for (i=0; i < 4; i++) {
|
---|
535 | memset (s->current_picture.motion_val[1][b_xy + i*h->b_stride], 0, 4*2*sizeof(int16_t));
|
---|
536 | }
|
---|
537 | }
|
---|
538 | }
|
---|
539 |
|
---|
540 | mb_type = MB_TYPE_16x16;
|
---|
541 | } else if (mb_type == 8 || mb_type == 33) { /* INTRA4x4 */
|
---|
542 | memset (h->intra4x4_pred_mode_cache, -1, 8*5*sizeof(int8_t));
|
---|
543 |
|
---|
544 | if (mb_type == 8) {
|
---|
545 | if (s->mb_x > 0) {
|
---|
546 | for (i=0; i < 4; i++) {
|
---|
547 | h->intra4x4_pred_mode_cache[scan8[0] - 1 + i*8] = h->intra4x4_pred_mode[mb_xy - 1][i];
|
---|
548 | }
|
---|
549 | if (h->intra4x4_pred_mode_cache[scan8[0] - 1] == -1) {
|
---|
550 | h->left_samples_available = 0x5F5F;
|
---|
551 | }
|
---|
552 | }
|
---|
553 | if (s->mb_y > 0) {
|
---|
554 | h->intra4x4_pred_mode_cache[4+8*0] = h->intra4x4_pred_mode[mb_xy - s->mb_stride][4];
|
---|
555 | h->intra4x4_pred_mode_cache[5+8*0] = h->intra4x4_pred_mode[mb_xy - s->mb_stride][5];
|
---|
556 | h->intra4x4_pred_mode_cache[6+8*0] = h->intra4x4_pred_mode[mb_xy - s->mb_stride][6];
|
---|
557 | h->intra4x4_pred_mode_cache[7+8*0] = h->intra4x4_pred_mode[mb_xy - s->mb_stride][3];
|
---|
558 |
|
---|
559 | if (h->intra4x4_pred_mode_cache[4+8*0] == -1) {
|
---|
560 | h->top_samples_available = 0x33FF;
|
---|
561 | }
|
---|
562 | }
|
---|
563 |
|
---|
564 | /* decode prediction codes for luma blocks */
|
---|
565 | for (i=0; i < 16; i+=2) {
|
---|
566 | vlc = svq3_get_ue_golomb (&s->gb);
|
---|
567 |
|
---|
568 | if (vlc >= 25){
|
---|
569 | av_log(h->s.avctx, AV_LOG_ERROR, "luma prediction:%d\n", vlc);
|
---|
570 | return -1;
|
---|
571 | }
|
---|
572 |
|
---|
573 | left = &h->intra4x4_pred_mode_cache[scan8[i] - 1];
|
---|
574 | top = &h->intra4x4_pred_mode_cache[scan8[i] - 8];
|
---|
575 |
|
---|
576 | left[1] = svq3_pred_1[top[0] + 1][left[0] + 1][svq3_pred_0[vlc][0]];
|
---|
577 | left[2] = svq3_pred_1[top[1] + 1][left[1] + 1][svq3_pred_0[vlc][1]];
|
---|
578 |
|
---|
579 | if (left[1] == -1 || left[2] == -1){
|
---|
580 | av_log(h->s.avctx, AV_LOG_ERROR, "weird prediction\n");
|
---|
581 | return -1;
|
---|
582 | }
|
---|
583 | }
|
---|
584 | } else { /* mb_type == 33, DC_128_PRED block type */
|
---|
585 | for (i=0; i < 4; i++) {
|
---|
586 | memset (&h->intra4x4_pred_mode_cache[scan8[0] + 8*i], DC_PRED, 4);
|
---|
587 | }
|
---|
588 | }
|
---|
589 |
|
---|
590 | write_back_intra_pred_mode (h);
|
---|
591 |
|
---|
592 | if (mb_type == 8) {
|
---|
593 | check_intra4x4_pred_mode (h);
|
---|
594 |
|
---|
595 | h->top_samples_available = (s->mb_y == 0) ? 0x33FF : 0xFFFF;
|
---|
596 | h->left_samples_available = (s->mb_x == 0) ? 0x5F5F : 0xFFFF;
|
---|
597 | } else {
|
---|
598 | for (i=0; i < 4; i++) {
|
---|
599 | memset (&h->intra4x4_pred_mode_cache[scan8[0] + 8*i], DC_128_PRED, 4);
|
---|
600 | }
|
---|
601 |
|
---|
602 | h->top_samples_available = 0x33FF;
|
---|
603 | h->left_samples_available = 0x5F5F;
|
---|
604 | }
|
---|
605 |
|
---|
606 | mb_type = MB_TYPE_INTRA4x4;
|
---|
607 | } else { /* INTRA16x16 */
|
---|
608 | dir = i_mb_type_info[mb_type - 8].pred_mode;
|
---|
609 | dir = (dir >> 1) ^ 3*(dir & 1) ^ 1;
|
---|
610 |
|
---|
611 | if ((h->intra16x16_pred_mode = check_intra_pred_mode (h, dir)) == -1){
|
---|
612 | av_log(h->s.avctx, AV_LOG_ERROR, "check_intra_pred_mode = -1\n");
|
---|
613 | return -1;
|
---|
614 | }
|
---|
615 |
|
---|
616 | cbp = i_mb_type_info[mb_type - 8].cbp;
|
---|
617 | mb_type = MB_TYPE_INTRA16x16;
|
---|
618 | }
|
---|
619 |
|
---|
620 | if (!IS_INTER(mb_type) && s->pict_type != I_TYPE) {
|
---|
621 | for (i=0; i < 4; i++) {
|
---|
622 | memset (s->current_picture.motion_val[0][b_xy + i*h->b_stride], 0, 4*2*sizeof(int16_t));
|
---|
623 | }
|
---|
624 | if (s->pict_type == B_TYPE) {
|
---|
625 | for (i=0; i < 4; i++) {
|
---|
626 | memset (s->current_picture.motion_val[1][b_xy + i*h->b_stride], 0, 4*2*sizeof(int16_t));
|
---|
627 | }
|
---|
628 | }
|
---|
629 | }
|
---|
630 | if (!IS_INTRA4x4(mb_type)) {
|
---|
631 | memset (h->intra4x4_pred_mode[mb_xy], DC_PRED, 8);
|
---|
632 | }
|
---|
633 | if (!IS_SKIP(mb_type) || s->pict_type == B_TYPE) {
|
---|
634 | memset (h->non_zero_count_cache + 8, 0, 4*9*sizeof(uint8_t));
|
---|
635 | s->dsp.clear_blocks(h->mb);
|
---|
636 | }
|
---|
637 |
|
---|
638 | if (!IS_INTRA16x16(mb_type) && (!IS_SKIP(mb_type) || s->pict_type == B_TYPE)) {
|
---|
639 | if ((vlc = svq3_get_ue_golomb (&s->gb)) >= 48){
|
---|
640 | av_log(h->s.avctx, AV_LOG_ERROR, "cbp_vlc=%d\n", vlc);
|
---|
641 | return -1;
|
---|
642 | }
|
---|
643 |
|
---|
644 | cbp = IS_INTRA(mb_type) ? golomb_to_intra4x4_cbp[vlc] : golomb_to_inter_cbp[vlc];
|
---|
645 | }
|
---|
646 | if (IS_INTRA16x16(mb_type) || (s->pict_type != I_TYPE && s->adaptive_quant && cbp)) {
|
---|
647 | s->qscale += svq3_get_se_golomb (&s->gb);
|
---|
648 |
|
---|
649 | if (s->qscale > 31){
|
---|
650 | av_log(h->s.avctx, AV_LOG_ERROR, "qscale:%d\n", s->qscale);
|
---|
651 | return -1;
|
---|
652 | }
|
---|
653 | }
|
---|
654 | if (IS_INTRA16x16(mb_type)) {
|
---|
655 | if (svq3_decode_block (&s->gb, h->mb, 0, 0)){
|
---|
656 | av_log(h->s.avctx, AV_LOG_ERROR, "error while decoding intra luma dc\n");
|
---|
657 | return -1;
|
---|
658 | }
|
---|
659 | }
|
---|
660 |
|
---|
661 | if (cbp) {
|
---|
662 | const int index = IS_INTRA16x16(mb_type) ? 1 : 0;
|
---|
663 | const int type = ((s->qscale < 24 && IS_INTRA4x4(mb_type)) ? 2 : 1);
|
---|
664 |
|
---|
665 | for (i=0; i < 4; i++) {
|
---|
666 | if ((cbp & (1 << i))) {
|
---|
667 | for (j=0; j < 4; j++) {
|
---|
668 | k = index ? ((j&1) + 2*(i&1) + 2*(j&2) + 4*(i&2)) : (4*i + j);
|
---|
669 | h->non_zero_count_cache[ scan8[k] ] = 1;
|
---|
670 |
|
---|
671 | if (svq3_decode_block (&s->gb, &h->mb[16*k], index, type)){
|
---|
672 | av_log(h->s.avctx, AV_LOG_ERROR, "error while decoding block\n");
|
---|
673 | return -1;
|
---|
674 | }
|
---|
675 | }
|
---|
676 | }
|
---|
677 | }
|
---|
678 |
|
---|
679 | if ((cbp & 0x30)) {
|
---|
680 | for (i=0; i < 2; ++i) {
|
---|
681 | if (svq3_decode_block (&s->gb, &h->mb[16*(16 + 4*i)], 0, 3)){
|
---|
682 | av_log(h->s.avctx, AV_LOG_ERROR, "error while decoding chroma dc block\n");
|
---|
683 | return -1;
|
---|
684 | }
|
---|
685 | }
|
---|
686 |
|
---|
687 | if ((cbp & 0x20)) {
|
---|
688 | for (i=0; i < 8; i++) {
|
---|
689 | h->non_zero_count_cache[ scan8[16+i] ] = 1;
|
---|
690 |
|
---|
691 | if (svq3_decode_block (&s->gb, &h->mb[16*(16 + i)], 1, 1)){
|
---|
692 | av_log(h->s.avctx, AV_LOG_ERROR, "error while decoding chroma ac block\n");
|
---|
693 | return -1;
|
---|
694 | }
|
---|
695 | }
|
---|
696 | }
|
---|
697 | }
|
---|
698 | }
|
---|
699 |
|
---|
700 | s->current_picture.mb_type[mb_xy] = mb_type;
|
---|
701 |
|
---|
702 | if (IS_INTRA(mb_type)) {
|
---|
703 | h->chroma_pred_mode = check_intra_pred_mode (h, DC_PRED8x8);
|
---|
704 | }
|
---|
705 |
|
---|
706 | return 0;
|
---|
707 | }
|
---|
708 |
|
---|
709 | static int svq3_decode_slice_header (H264Context *h) {
|
---|
710 | MpegEncContext *const s = (MpegEncContext *) h;
|
---|
711 | const int mb_xy = s->mb_x + s->mb_y*s->mb_stride;
|
---|
712 | int i, header;
|
---|
713 |
|
---|
714 | header = get_bits (&s->gb, 8);
|
---|
715 |
|
---|
716 | if (((header & 0x9F) != 1 && (header & 0x9F) != 2) || (header & 0x60) == 0) {
|
---|
717 | /* TODO: what? */
|
---|
718 | av_log(h->s.avctx, AV_LOG_ERROR, "unsupported slice header (%02X)\n", header);
|
---|
719 | return -1;
|
---|
720 | } else {
|
---|
721 | int length = (header >> 5) & 3;
|
---|
722 |
|
---|
723 | h->next_slice_index = get_bits_count(&s->gb) + 8*show_bits (&s->gb, 8*length) + 8*length;
|
---|
724 |
|
---|
725 | if (h->next_slice_index > s->gb.size_in_bits){
|
---|
726 | av_log(h->s.avctx, AV_LOG_ERROR, "slice after bitstream end\n");
|
---|
727 | return -1;
|
---|
728 | }
|
---|
729 |
|
---|
730 | s->gb.size_in_bits = h->next_slice_index - 8*(length - 1);
|
---|
731 | skip_bits(&s->gb, 8);
|
---|
732 |
|
---|
733 | if (length > 0) {
|
---|
734 | memcpy ((uint8_t *) &s->gb.buffer[get_bits_count(&s->gb) >> 3],
|
---|
735 | &s->gb.buffer[s->gb.size_in_bits >> 3], (length - 1));
|
---|
736 | }
|
---|
737 | }
|
---|
738 |
|
---|
739 | if ((i = svq3_get_ue_golomb (&s->gb)) == INVALID_VLC || i >= 3){
|
---|
740 | av_log(h->s.avctx, AV_LOG_ERROR, "illegal slice type %d \n", i);
|
---|
741 | return -1;
|
---|
742 | }
|
---|
743 |
|
---|
744 | h->slice_type = golomb_to_pict_type[i];
|
---|
745 |
|
---|
746 | if ((header & 0x9F) == 2) {
|
---|
747 | i = (s->mb_num < 64) ? 6 : (1 + av_log2 (s->mb_num - 1));
|
---|
748 | s->mb_skip_run = get_bits (&s->gb, i) - (s->mb_x + (s->mb_y * s->mb_width));
|
---|
749 | } else {
|
---|
750 | get_bits1 (&s->gb);
|
---|
751 | s->mb_skip_run = 0;
|
---|
752 | }
|
---|
753 |
|
---|
754 | h->slice_num = get_bits (&s->gb, 8);
|
---|
755 | s->qscale = get_bits (&s->gb, 5);
|
---|
756 | s->adaptive_quant = get_bits1 (&s->gb);
|
---|
757 |
|
---|
758 | /* unknown fields */
|
---|
759 | get_bits1 (&s->gb);
|
---|
760 |
|
---|
761 | if (h->unknown_svq3_flag) {
|
---|
762 | get_bits1 (&s->gb);
|
---|
763 | }
|
---|
764 |
|
---|
765 | get_bits1 (&s->gb);
|
---|
766 | get_bits (&s->gb, 2);
|
---|
767 |
|
---|
768 | while (get_bits1 (&s->gb)) {
|
---|
769 | get_bits (&s->gb, 8);
|
---|
770 | }
|
---|
771 |
|
---|
772 | /* reset intra predictors and invalidate motion vector references */
|
---|
773 | if (s->mb_x > 0) {
|
---|
774 | memset (h->intra4x4_pred_mode[mb_xy - 1], -1, 4*sizeof(int8_t));
|
---|
775 | memset (h->intra4x4_pred_mode[mb_xy - s->mb_x], -1, 8*sizeof(int8_t)*s->mb_x);
|
---|
776 | }
|
---|
777 | if (s->mb_y > 0) {
|
---|
778 | memset (h->intra4x4_pred_mode[mb_xy - s->mb_stride], -1, 8*sizeof(int8_t)*(s->mb_width - s->mb_x));
|
---|
779 |
|
---|
780 | if (s->mb_x > 0) {
|
---|
781 | h->intra4x4_pred_mode[mb_xy - s->mb_stride - 1][3] = -1;
|
---|
782 | }
|
---|
783 | }
|
---|
784 |
|
---|
785 | return 0;
|
---|
786 | }
|
---|
787 |
|
---|
788 | static int svq3_decode_frame (AVCodecContext *avctx,
|
---|
789 | void *data, int *data_size,
|
---|
790 | uint8_t *buf, int buf_size) {
|
---|
791 | MpegEncContext *const s = avctx->priv_data;
|
---|
792 | H264Context *const h = avctx->priv_data;
|
---|
793 | int m, mb_type;
|
---|
794 | unsigned char *extradata;
|
---|
795 | unsigned int size;
|
---|
796 |
|
---|
797 | s->flags = avctx->flags;
|
---|
798 | s->flags2 = avctx->flags2;
|
---|
799 | s->unrestricted_mv = 1;
|
---|
800 |
|
---|
801 | if (!s->context_initialized) {
|
---|
802 | s->width = avctx->width;
|
---|
803 | s->height = avctx->height;
|
---|
804 | h->pred4x4[DIAG_DOWN_LEFT_PRED] = pred4x4_down_left_svq3_c;
|
---|
805 | h->pred16x16[PLANE_PRED8x8] = pred16x16_plane_svq3_c;
|
---|
806 | h->halfpel_flag = 1;
|
---|
807 | h->thirdpel_flag = 1;
|
---|
808 | h->unknown_svq3_flag = 0;
|
---|
809 | h->chroma_qp = 4;
|
---|
810 |
|
---|
811 | if (MPV_common_init (s) < 0)
|
---|
812 | return -1;
|
---|
813 |
|
---|
814 | h->b_stride = 4*s->mb_width;
|
---|
815 |
|
---|
816 | alloc_tables (h);
|
---|
817 |
|
---|
818 | /* prowl for the "SEQH" marker in the extradata */
|
---|
819 | extradata = (unsigned char *)avctx->extradata;
|
---|
820 | for (m = 0; m < avctx->extradata_size; m++) {
|
---|
821 | if (!memcmp (extradata, "SEQH", 4))
|
---|
822 | break;
|
---|
823 | extradata++;
|
---|
824 | }
|
---|
825 |
|
---|
826 | /* if a match was found, parse the extra data */
|
---|
827 | if (!memcmp (extradata, "SEQH", 4)) {
|
---|
828 |
|
---|
829 | GetBitContext gb;
|
---|
830 |
|
---|
831 | size = BE_32(&extradata[4]);
|
---|
832 | init_get_bits (&gb, extradata + 8, size*8);
|
---|
833 |
|
---|
834 | /* 'frame size code' and optional 'width, height' */
|
---|
835 | if (get_bits (&gb, 3) == 7) {
|
---|
836 | get_bits (&gb, 12);
|
---|
837 | get_bits (&gb, 12);
|
---|
838 | }
|
---|
839 |
|
---|
840 | h->halfpel_flag = get_bits1 (&gb);
|
---|
841 | h->thirdpel_flag = get_bits1 (&gb);
|
---|
842 |
|
---|
843 | /* unknown fields */
|
---|
844 | get_bits1 (&gb);
|
---|
845 | get_bits1 (&gb);
|
---|
846 | get_bits1 (&gb);
|
---|
847 | get_bits1 (&gb);
|
---|
848 |
|
---|
849 | s->low_delay = get_bits1 (&gb);
|
---|
850 |
|
---|
851 | /* unknown field */
|
---|
852 | get_bits1 (&gb);
|
---|
853 |
|
---|
854 | while (get_bits1 (&gb)) {
|
---|
855 | get_bits (&gb, 8);
|
---|
856 | }
|
---|
857 |
|
---|
858 | h->unknown_svq3_flag = get_bits1 (&gb);
|
---|
859 | avctx->has_b_frames = !s->low_delay;
|
---|
860 | }
|
---|
861 | }
|
---|
862 |
|
---|
863 | /* special case for last picture */
|
---|
864 | if (buf_size == 0) {
|
---|
865 | if (s->next_picture_ptr && !s->low_delay) {
|
---|
866 | *(AVFrame *) data = *(AVFrame *) &s->next_picture;
|
---|
867 | *data_size = sizeof(AVFrame);
|
---|
868 | }
|
---|
869 | return 0;
|
---|
870 | }
|
---|
871 |
|
---|
872 | init_get_bits (&s->gb, buf, 8*buf_size);
|
---|
873 |
|
---|
874 | s->mb_x = s->mb_y = 0;
|
---|
875 |
|
---|
876 | if (svq3_decode_slice_header (h))
|
---|
877 | return -1;
|
---|
878 |
|
---|
879 | s->pict_type = h->slice_type;
|
---|
880 | s->picture_number = h->slice_num;
|
---|
881 |
|
---|
882 | if(avctx->debug&FF_DEBUG_PICT_INFO){
|
---|
883 | av_log(h->s.avctx, AV_LOG_DEBUG, "%c hpel:%d, tpel:%d aqp:%d qp:%d\n",
|
---|
884 | av_get_pict_type_char(s->pict_type), h->halfpel_flag, h->thirdpel_flag,
|
---|
885 | s->adaptive_quant, s->qscale
|
---|
886 | );
|
---|
887 | }
|
---|
888 |
|
---|
889 | /* for hurry_up==5 */
|
---|
890 | s->current_picture.pict_type = s->pict_type;
|
---|
891 | s->current_picture.key_frame = (s->pict_type == I_TYPE);
|
---|
892 |
|
---|
893 | /* skip b frames if we dont have reference frames */
|
---|
894 | if (s->last_picture_ptr == NULL && s->pict_type == B_TYPE) return 0;
|
---|
895 | /* skip b frames if we are in a hurry */
|
---|
896 | if (avctx->hurry_up && s->pict_type == B_TYPE) return 0;
|
---|
897 | /* skip everything if we are in a hurry >= 5 */
|
---|
898 | if (avctx->hurry_up >= 5) return 0;
|
---|
899 | if( (avctx->skip_frame >= AVDISCARD_NONREF && s->pict_type==B_TYPE)
|
---|
900 | ||(avctx->skip_frame >= AVDISCARD_NONKEY && s->pict_type!=I_TYPE)
|
---|
901 | || avctx->skip_frame >= AVDISCARD_ALL)
|
---|
902 | return 0;
|
---|
903 |
|
---|
904 | if (s->next_p_frame_damaged) {
|
---|
905 | if (s->pict_type == B_TYPE)
|
---|
906 | return 0;
|
---|
907 | else
|
---|
908 | s->next_p_frame_damaged = 0;
|
---|
909 | }
|
---|
910 |
|
---|
911 | frame_start (h);
|
---|
912 |
|
---|
913 | if (s->pict_type == B_TYPE) {
|
---|
914 | h->frame_num_offset = (h->slice_num - h->prev_frame_num);
|
---|
915 |
|
---|
916 | if (h->frame_num_offset < 0) {
|
---|
917 | h->frame_num_offset += 256;
|
---|
918 | }
|
---|
919 | if (h->frame_num_offset == 0 || h->frame_num_offset >= h->prev_frame_num_offset) {
|
---|
920 | av_log(h->s.avctx, AV_LOG_ERROR, "error in B-frame picture id\n");
|
---|
921 | return -1;
|
---|
922 | }
|
---|
923 | } else {
|
---|
924 | h->prev_frame_num = h->frame_num;
|
---|
925 | h->frame_num = h->slice_num;
|
---|
926 | h->prev_frame_num_offset = (h->frame_num - h->prev_frame_num);
|
---|
927 |
|
---|
928 | if (h->prev_frame_num_offset < 0) {
|
---|
929 | h->prev_frame_num_offset += 256;
|
---|
930 | }
|
---|
931 | }
|
---|
932 |
|
---|
933 | for(m=0; m<2; m++){
|
---|
934 | int i;
|
---|
935 | for(i=0; i<4; i++){
|
---|
936 | int j;
|
---|
937 | for(j=-1; j<4; j++)
|
---|
938 | h->ref_cache[m][scan8[0] + 8*i + j]= 1;
|
---|
939 | h->ref_cache[m][scan8[0] + 8*i + j]= PART_NOT_AVAILABLE;
|
---|
940 | }
|
---|
941 | }
|
---|
942 |
|
---|
943 | for (s->mb_y=0; s->mb_y < s->mb_height; s->mb_y++) {
|
---|
944 | for (s->mb_x=0; s->mb_x < s->mb_width; s->mb_x++) {
|
---|
945 |
|
---|
946 | if ( (get_bits_count(&s->gb) + 7) >= s->gb.size_in_bits &&
|
---|
947 | ((get_bits_count(&s->gb) & 7) == 0 || show_bits (&s->gb, (-get_bits_count(&s->gb) & 7)) == 0)) {
|
---|
948 |
|
---|
949 | skip_bits(&s->gb, h->next_slice_index - get_bits_count(&s->gb));
|
---|
950 | s->gb.size_in_bits = 8*buf_size;
|
---|
951 |
|
---|
952 | if (svq3_decode_slice_header (h))
|
---|
953 | return -1;
|
---|
954 |
|
---|
955 | /* TODO: support s->mb_skip_run */
|
---|
956 | }
|
---|
957 |
|
---|
958 | mb_type = svq3_get_ue_golomb (&s->gb);
|
---|
959 |
|
---|
960 | if (s->pict_type == I_TYPE) {
|
---|
961 | mb_type += 8;
|
---|
962 | } else if (s->pict_type == B_TYPE && mb_type >= 4) {
|
---|
963 | mb_type += 4;
|
---|
964 | }
|
---|
965 | if (mb_type > 33 || svq3_decode_mb (h, mb_type)) {
|
---|
966 | av_log(h->s.avctx, AV_LOG_ERROR, "error while decoding MB %d %d\n", s->mb_x, s->mb_y);
|
---|
967 | return -1;
|
---|
968 | }
|
---|
969 |
|
---|
970 | if (mb_type != 0) {
|
---|
971 | hl_decode_mb (h);
|
---|
972 | }
|
---|
973 |
|
---|
974 | if (s->pict_type != B_TYPE && !s->low_delay) {
|
---|
975 | s->current_picture.mb_type[s->mb_x + s->mb_y*s->mb_stride] =
|
---|
976 | (s->pict_type == P_TYPE && mb_type < 8) ? (mb_type - 1) : -1;
|
---|
977 | }
|
---|
978 | }
|
---|
979 |
|
---|
980 | ff_draw_horiz_band(s, 16*s->mb_y, 16);
|
---|
981 | }
|
---|
982 |
|
---|
983 | MPV_frame_end(s);
|
---|
984 |
|
---|
985 | if (s->pict_type == B_TYPE || s->low_delay) {
|
---|
986 | *(AVFrame *) data = *(AVFrame *) &s->current_picture;
|
---|
987 | } else {
|
---|
988 | *(AVFrame *) data = *(AVFrame *) &s->last_picture;
|
---|
989 | }
|
---|
990 |
|
---|
991 | avctx->frame_number = s->picture_number - 1;
|
---|
992 |
|
---|
993 | /* dont output the last pic after seeking */
|
---|
994 | if (s->last_picture_ptr || s->low_delay) {
|
---|
995 | *data_size = sizeof(AVFrame);
|
---|
996 | }
|
---|
997 |
|
---|
998 | return buf_size;
|
---|
999 | }
|
---|
1000 |
|
---|
1001 |
|
---|
1002 | AVCodec svq3_decoder = {
|
---|
1003 | "svq3",
|
---|
1004 | CODEC_TYPE_VIDEO,
|
---|
1005 | CODEC_ID_SVQ3,
|
---|
1006 | sizeof(H264Context),
|
---|
1007 | decode_init,
|
---|
1008 | NULL,
|
---|
1009 | decode_end,
|
---|
1010 | svq3_decode_frame,
|
---|
1011 | CODEC_CAP_DRAW_HORIZ_BAND | CODEC_CAP_DR1 | CODEC_CAP_DELAY,
|
---|
1012 | };
|
---|