1 | /*
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2 | * G.726 ADPCM audio codec
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3 | * Copyright (c) 2004 Roman Shaposhnik.
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4 | *
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5 | * This is a very straightforward rendition of the G.726
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6 | * Section 4 "Computational Details".
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7 | *
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8 | * This library is free software; you can redistribute it and/or
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9 | * modify it under the terms of the GNU Lesser General Public
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10 | * License as published by the Free Software Foundation; either
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11 | * version 2 of the License, or (at your option) any later version.
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12 | *
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13 | * This library is distributed in the hope that it will be useful,
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14 | * but WITHOUT ANY WARRANTY; without even the implied warranty of
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15 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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16 | * Lesser General Public License for more details.
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17 | *
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18 | * You should have received a copy of the GNU Lesser General Public
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19 | * License along with this library; if not, write to the Free Software
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20 | * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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21 | */
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22 | #include <limits.h>
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23 | #include "avcodec.h"
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24 | #include "common.h"
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25 | #include "bitstream.h"
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26 |
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27 | /**
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28 | * G.726 11bit float.
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29 | * G.726 Standard uses rather odd 11bit floating point arithmentic for
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30 | * numerous occasions. It's a mistery to me why they did it this way
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31 | * instead of simply using 32bit integer arithmetic.
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32 | */
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33 | typedef struct Float11 {
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34 | int sign; /**< 1bit sign */
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35 | int exp; /**< 4bit exponent */
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36 | int mant; /**< 6bit mantissa */
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37 | } Float11;
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38 |
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39 | static inline Float11* i2f(int16_t i, Float11* f)
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40 | {
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41 | f->sign = (i < 0);
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42 | if (f->sign)
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43 | i = -i;
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44 | f->exp = av_log2_16bit(i) + !!i;
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45 | f->mant = i? (i<<6) >> f->exp :
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46 | 1<<5;
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47 | return f;
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48 | }
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49 |
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50 | static inline int16_t mult(Float11* f1, Float11* f2)
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51 | {
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52 | int res, exp;
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53 |
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54 | exp = f1->exp + f2->exp;
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55 | res = (((f1->mant * f2->mant) + 0x30) >> 4) << 7;
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56 | res = exp > 26 ? res << (exp - 26) : res >> (26 - exp);
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57 | return (f1->sign ^ f2->sign) ? -res : res;
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58 | }
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59 |
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60 | static inline int sgn(int value)
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61 | {
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62 | return (value < 0) ? -1 : 1;
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63 | }
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64 |
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65 | typedef struct G726Tables {
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66 | int bits; /**< bits per sample */
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67 | int* quant; /**< quantization table */
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68 | int* iquant; /**< inverse quantization table */
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69 | int* W; /**< special table #1 ;-) */
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70 | int* F; /**< special table #2 */
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71 | } G726Tables;
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72 |
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73 | typedef struct G726Context {
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74 | G726Tables* tbls; /**< static tables needed for computation */
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75 |
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76 | Float11 sr[2]; /**< prev. reconstructed samples */
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77 | Float11 dq[6]; /**< prev. difference */
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78 | int a[2]; /**< second order predictor coeffs */
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79 | int b[6]; /**< sixth order predictor coeffs */
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80 | int pk[2]; /**< signs of prev. 2 sez + dq */
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81 |
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82 | int ap; /**< scale factor control */
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83 | int yu; /**< fast scale factor */
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84 | int yl; /**< slow scale factor */
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85 | int dms; /**< short average magnitude of F[i] */
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86 | int dml; /**< long average magnitude of F[i] */
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87 | int td; /**< tone detect */
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88 |
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89 | int se; /**< estimated signal for the next iteration */
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90 | int sez; /**< estimated second order prediction */
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91 | int y; /**< quantizer scaling factor for the next iteration */
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92 | } G726Context;
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93 |
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94 | static int quant_tbl16[] = /**< 16kbit/s 2bits per sample */
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95 | { 260, INT_MAX };
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96 | static int iquant_tbl16[] =
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97 | { 116, 365, 365, 116 };
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98 | static int W_tbl16[] =
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99 | { -22, 439, 439, -22 };
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100 | static int F_tbl16[] =
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101 | { 0, 7, 7, 0 };
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102 |
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103 | static int quant_tbl24[] = /**< 24kbit/s 3bits per sample */
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104 | { 7, 217, 330, INT_MAX };
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105 | static int iquant_tbl24[] =
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106 | { INT_MIN, 135, 273, 373, 373, 273, 135, INT_MIN };
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107 | static int W_tbl24[] =
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108 | { -4, 30, 137, 582, 582, 137, 30, -4 };
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109 | static int F_tbl24[] =
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110 | { 0, 1, 2, 7, 7, 2, 1, 0 };
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111 |
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112 | static int quant_tbl32[] = /**< 32kbit/s 4bits per sample */
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113 | { -125, 79, 177, 245, 299, 348, 399, INT_MAX };
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114 | static int iquant_tbl32[] =
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115 | { INT_MIN, 4, 135, 213, 273, 323, 373, 425,
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116 | 425, 373, 323, 273, 213, 135, 4, INT_MIN };
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117 | static int W_tbl32[] =
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118 | { -12, 18, 41, 64, 112, 198, 355, 1122,
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119 | 1122, 355, 198, 112, 64, 41, 18, -12};
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120 | static int F_tbl32[] =
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121 | { 0, 0, 0, 1, 1, 1, 3, 7, 7, 3, 1, 1, 1, 0, 0, 0 };
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122 |
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123 | static int quant_tbl40[] = /**< 40kbit/s 5bits per sample */
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124 | { -122, -16, 67, 138, 197, 249, 297, 338,
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125 | 377, 412, 444, 474, 501, 527, 552, INT_MAX };
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126 | static int iquant_tbl40[] =
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127 | { INT_MIN, -66, 28, 104, 169, 224, 274, 318,
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128 | 358, 395, 429, 459, 488, 514, 539, 566,
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129 | 566, 539, 514, 488, 459, 429, 395, 358,
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130 | 318, 274, 224, 169, 104, 28, -66, INT_MIN };
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131 | static int W_tbl40[] =
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132 | { 14, 14, 24, 39, 40, 41, 58, 100,
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133 | 141, 179, 219, 280, 358, 440, 529, 696,
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134 | 696, 529, 440, 358, 280, 219, 179, 141,
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135 | 100, 58, 41, 40, 39, 24, 14, 14 };
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136 | static int F_tbl40[] =
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137 | { 0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 2, 3, 4, 5, 6, 6,
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138 | 6, 6, 5, 4, 3, 2, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0 };
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139 |
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140 | static G726Tables G726Tables_pool[] =
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141 | {{ 2, quant_tbl16, iquant_tbl16, W_tbl16, F_tbl16 },
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142 | { 3, quant_tbl24, iquant_tbl24, W_tbl24, F_tbl24 },
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143 | { 4, quant_tbl32, iquant_tbl32, W_tbl32, F_tbl32 },
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144 | { 5, quant_tbl40, iquant_tbl40, W_tbl40, F_tbl40 }};
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145 |
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146 |
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147 | /**
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148 | * Para 4.2.2 page 18: Adaptive quantizer.
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149 | */
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150 | static inline uint8_t quant(G726Context* c, int d)
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151 | {
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152 | int sign, exp, i, dln;
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153 |
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154 | sign = i = 0;
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155 | if (d < 0) {
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156 | sign = 1;
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157 | d = -d;
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158 | }
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159 | exp = av_log2_16bit(d);
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160 | dln = ((exp<<7) + (((d<<7)>>exp)&0x7f)) - (c->y>>2);
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161 |
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162 | while (c->tbls->quant[i] < INT_MAX && c->tbls->quant[i] < dln)
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163 | ++i;
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164 |
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165 | if (sign)
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166 | i = ~i;
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167 | if (c->tbls->bits != 2 && i == 0) /* I'm not sure this is a good idea */
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168 | i = 0xff;
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169 |
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170 | return i;
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171 | }
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172 |
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173 | /**
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174 | * Para 4.2.3 page 22: Inverse adaptive quantizer.
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175 | */
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176 | static inline int16_t inverse_quant(G726Context* c, int i)
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177 | {
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178 | int dql, dex, dqt;
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179 |
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180 | dql = c->tbls->iquant[i] + (c->y >> 2);
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181 | dex = (dql>>7) & 0xf; /* 4bit exponent */
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182 | dqt = (1<<7) + (dql & 0x7f); /* log2 -> linear */
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183 | return (dql < 0) ? 0 : ((dqt<<7) >> (14-dex));
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184 | }
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185 |
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186 | static inline int16_t g726_iterate(G726Context* c, int16_t I)
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187 | {
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188 | int dq, re_signal, pk0, fa1, i, tr, ylint, ylfrac, thr2, al, dq0;
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189 | Float11 f;
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190 |
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191 | dq = inverse_quant(c, I);
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192 | if (I >> (c->tbls->bits - 1)) /* get the sign */
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193 | dq = -dq;
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194 | re_signal = c->se + dq;
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195 |
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196 | /* Transition detect */
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197 | ylint = (c->yl >> 15);
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198 | ylfrac = (c->yl >> 10) & 0x1f;
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199 | thr2 = (ylint > 9) ? 0x1f << 10 : (0x20 + ylfrac) << ylint;
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200 | if (c->td == 1 && abs(dq) > ((thr2+(thr2>>1))>>1))
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201 | tr = 1;
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202 | else
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203 | tr = 0;
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204 |
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205 | /* Update second order predictor coefficient A2 and A1 */
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206 | pk0 = (c->sez + dq) ? sgn(c->sez + dq) : 0;
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207 | dq0 = dq ? sgn(dq) : 0;
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208 | if (tr) {
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209 | c->a[0] = 0;
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210 | c->a[1] = 0;
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211 | for (i=0; i<6; i++)
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212 | c->b[i] = 0;
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213 | } else {
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214 | /* This is a bit crazy, but it really is +255 not +256 */
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215 | fa1 = clip((-c->a[0]*c->pk[0]*pk0)>>5, -256, 255);
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216 |
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217 | c->a[1] += 128*pk0*c->pk[1] + fa1 - (c->a[1]>>7);
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218 | c->a[1] = clip(c->a[1], -12288, 12288);
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219 | c->a[0] += 64*3*pk0*c->pk[0] - (c->a[0] >> 8);
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220 | c->a[0] = clip(c->a[0], -(15360 - c->a[1]), 15360 - c->a[1]);
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221 |
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222 | for (i=0; i<6; i++)
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223 | c->b[i] += 128*dq0*sgn(-c->dq[i].sign) - (c->b[i]>>8);
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224 | }
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225 |
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226 | /* Update Dq and Sr and Pk */
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227 | c->pk[1] = c->pk[0];
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228 | c->pk[0] = pk0 ? pk0 : 1;
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229 | c->sr[1] = c->sr[0];
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230 | i2f(re_signal, &c->sr[0]);
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231 | for (i=5; i>0; i--)
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232 | c->dq[i] = c->dq[i-1];
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233 | i2f(dq, &c->dq[0]);
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234 | c->dq[0].sign = I >> (c->tbls->bits - 1); /* Isn't it crazy ?!?! */
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235 |
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236 | /* Update tone detect [I'm not sure 'tr == 0' is really needed] */
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237 | c->td = (tr == 0 && c->a[1] < -11776);
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238 |
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239 | /* Update Ap */
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240 | c->dms += ((c->tbls->F[I]<<9) - c->dms) >> 5;
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241 | c->dml += ((c->tbls->F[I]<<11) - c->dml) >> 7;
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242 | if (tr)
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243 | c->ap = 256;
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244 | else if (c->y > 1535 && !c->td && (abs((c->dms << 2) - c->dml) < (c->dml >> 3)))
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245 | c->ap += (-c->ap) >> 4;
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246 | else
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247 | c->ap += (0x200 - c->ap) >> 4;
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248 |
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249 | /* Update Yu and Yl */
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250 | c->yu = clip(c->y + (((c->tbls->W[I] << 5) - c->y) >> 5), 544, 5120);
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251 | c->yl += c->yu + ((-c->yl)>>6);
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252 |
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253 | /* Next iteration for Y */
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254 | al = (c->ap >= 256) ? 1<<6 : c->ap >> 2;
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255 | c->y = (c->yl + (c->yu - (c->yl>>6))*al) >> 6;
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256 |
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257 | /* Next iteration for SE and SEZ */
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258 | c->se = 0;
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259 | for (i=0; i<6; i++)
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260 | c->se += mult(i2f(c->b[i] >> 2, &f), &c->dq[i]);
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261 | c->sez = c->se >> 1;
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262 | for (i=0; i<2; i++)
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263 | c->se += mult(i2f(c->a[i] >> 2, &f), &c->sr[i]);
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264 | c->se >>= 1;
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265 |
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266 | return clip(re_signal << 2, -0xffff, 0xffff);
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267 | }
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268 |
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269 | static int g726_reset(G726Context* c, int bit_rate)
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270 | {
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271 | int i;
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272 |
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273 | c->tbls = &G726Tables_pool[bit_rate/8000 - 2];
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274 | for (i=0; i<2; i++) {
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275 | i2f(0, &c->sr[i]);
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276 | c->a[i] = 0;
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277 | c->pk[i] = 1;
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278 | }
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279 | for (i=0; i<6; i++) {
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280 | i2f(0, &c->dq[i]);
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281 | c->b[i] = 0;
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282 | }
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283 | c->ap = 0;
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284 | c->dms = 0;
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285 | c->dml = 0;
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286 | c->yu = 544;
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287 | c->yl = 34816;
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288 | c->td = 0;
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289 |
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290 | c->se = 0;
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291 | c->sez = 0;
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292 | c->y = 544;
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293 |
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294 | return 0;
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295 | }
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296 |
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297 | static int16_t g726_decode(G726Context* c, int16_t i)
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298 | {
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299 | return g726_iterate(c, i);
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300 | }
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301 |
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302 | static int16_t g726_encode(G726Context* c, int16_t sig)
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303 | {
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304 | uint8_t i;
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305 |
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306 | i = quant(c, sig/4 - c->se) & ((1<<c->tbls->bits) - 1);
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307 | g726_iterate(c, i);
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308 | return i;
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309 | }
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310 |
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311 | /* Interfacing to the libavcodec */
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312 |
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313 | typedef struct AVG726Context {
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314 | G726Context c;
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315 | int bits_left;
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316 | int bit_buffer;
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317 | int code_size;
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318 | } AVG726Context;
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319 |
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320 | static int g726_init(AVCodecContext * avctx)
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321 | {
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322 | AVG726Context* c = (AVG726Context*)avctx->priv_data;
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323 |
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324 | if (avctx->channels != 1 ||
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325 | (avctx->bit_rate != 16000 && avctx->bit_rate != 24000 &&
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326 | avctx->bit_rate != 32000 && avctx->bit_rate != 40000)) {
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327 | av_log(avctx, AV_LOG_ERROR, "G726: unsupported audio format\n");
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328 | return -1;
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329 | }
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330 | if (avctx->sample_rate != 8000 && avctx->strict_std_compliance>FF_COMPLIANCE_INOFFICIAL) {
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331 | av_log(avctx, AV_LOG_ERROR, "G726: unsupported audio format\n");
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332 | return -1;
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333 | }
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334 | g726_reset(&c->c, avctx->bit_rate);
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335 | c->code_size = c->c.tbls->bits;
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336 | c->bit_buffer = 0;
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337 | c->bits_left = 0;
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338 |
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339 | avctx->coded_frame = avcodec_alloc_frame();
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340 | if (!avctx->coded_frame)
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341 | return -ENOMEM;
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342 | avctx->coded_frame->key_frame = 1;
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343 |
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344 | return 0;
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345 | }
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346 |
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347 | static int g726_close(AVCodecContext *avctx)
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348 | {
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349 | av_freep(&avctx->coded_frame);
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350 | return 0;
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351 | }
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352 |
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353 | static int g726_encode_frame(AVCodecContext *avctx,
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354 | uint8_t *dst, int buf_size, void *data)
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355 | {
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356 | AVG726Context *c = avctx->priv_data;
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357 | short *samples = data;
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358 | PutBitContext pb;
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359 |
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360 | init_put_bits(&pb, dst, 1024*1024);
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361 |
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362 | for (; buf_size; buf_size--)
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363 | put_bits(&pb, c->code_size, g726_encode(&c->c, *samples++));
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364 |
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365 | flush_put_bits(&pb);
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366 |
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367 | return put_bits_count(&pb)>>3;
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368 | }
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369 |
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370 | static int g726_decode_frame(AVCodecContext *avctx,
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371 | void *data, int *data_size,
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372 | uint8_t *buf, int buf_size)
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373 | {
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374 | AVG726Context *c = avctx->priv_data;
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375 | short *samples = data;
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376 | uint8_t code;
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377 | uint8_t mask;
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378 | GetBitContext gb;
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379 |
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380 | if (!buf_size)
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381 | goto out;
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382 |
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383 | mask = (1<<c->code_size) - 1;
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384 | init_get_bits(&gb, buf, buf_size * 8);
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385 | if (c->bits_left) {
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386 | int s = c->code_size - c->bits_left;;
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387 | code = (c->bit_buffer << s) | get_bits(&gb, s);
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388 | *samples++ = g726_decode(&c->c, code & mask);
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389 | }
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390 |
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391 | while (get_bits_count(&gb) + c->code_size <= buf_size*8)
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392 | *samples++ = g726_decode(&c->c, get_bits(&gb, c->code_size) & mask);
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393 |
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394 | c->bits_left = buf_size*8 - get_bits_count(&gb);
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395 | c->bit_buffer = get_bits(&gb, c->bits_left);
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396 |
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397 | out:
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398 | *data_size = (uint8_t*)samples - (uint8_t*)data;
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399 | return buf_size;
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400 | }
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401 |
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402 | #ifdef CONFIG_ENCODERS
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403 | AVCodec adpcm_g726_encoder = {
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404 | "g726",
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405 | CODEC_TYPE_AUDIO,
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406 | CODEC_ID_ADPCM_G726,
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407 | sizeof(AVG726Context),
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408 | g726_init,
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409 | g726_encode_frame,
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410 | g726_close,
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411 | NULL,
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412 | };
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413 | #endif //CONFIG_ENCODERS
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414 |
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415 | AVCodec adpcm_g726_decoder = {
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416 | "g726",
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417 | CODEC_TYPE_AUDIO,
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418 | CODEC_ID_ADPCM_G726,
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419 | sizeof(AVG726Context),
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420 | g726_init,
|
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421 | NULL,
|
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422 | g726_close,
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423 | g726_decode_frame,
|
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424 | };
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