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1 /*
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2 * ALAC (Apple Lossless Audio Codec) decoder
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3 * Copyright (c) 2005 David Hammerton
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4 *
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5 * This file is part of FFmpeg.
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6 *
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7 * FFmpeg is free software; you can redistribute it and/or
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8 * modify it under the terms of the GNU Lesser General Public
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9 * License as published by the Free Software Foundation; either
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10 * version 2.1 of the License, or (at your option) any later version.
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11 *
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12 * FFmpeg is distributed in the hope that it will be useful,
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13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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15 * Lesser General Public License for more details.
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16 *
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17 * You should have received a copy of the GNU Lesser General Public
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18 * License along with FFmpeg; if not, write to the Free Software
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19 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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20 */
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21
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22 /**
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23 * @file
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24 * ALAC (Apple Lossless Audio Codec) decoder
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25 * @author 2005 David Hammerton
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26 * @see http://crazney.net/programs/itunes/alac.html
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27 *
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28 * Note: This decoder expects a 36-byte QuickTime atom to be
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29 * passed through the extradata[_size] fields. This atom is tacked onto
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30 * the end of an 'alac' stsd atom and has the following format:
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31 *
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32 * 32bit atom size
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33 * 32bit tag ("alac")
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34 * 32bit tag version (0)
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35 * 32bit samples per frame (used when not set explicitly in the frames)
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36 * 8bit compatible version (0)
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37 * 8bit sample size
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38 * 8bit history mult (40)
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39 * 8bit initial history (10)
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40 * 8bit rice param limit (14)
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41 * 8bit channels
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42 * 16bit maxRun (255)
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43 * 32bit max coded frame size (0 means unknown)
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44 * 32bit average bitrate (0 means unknown)
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45 * 32bit samplerate
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46 */
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47
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48 #include "libavutil/channel_layout.h"
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49 #include "avcodec.h"
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50 #include "get_bits.h"
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51 #include "bytestream.h"
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52 #include "internal.h"
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53 #include "unary.h"
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54 #include "mathops.h"
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55 #include "alac_data.h"
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56
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57 #define ALAC_EXTRADATA_SIZE 36
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58
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59 typedef struct {
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60 AVCodecContext *avctx;
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61 GetBitContext gb;
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62 int channels;
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63
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64 int32_t *predict_error_buffer[2];
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65 int32_t *output_samples_buffer[2];
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66 int32_t *extra_bits_buffer[2];
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67
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68 uint32_t max_samples_per_frame;
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69 uint8_t sample_size;
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70 uint8_t rice_history_mult;
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71 uint8_t rice_initial_history;
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72 uint8_t rice_limit;
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73
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74 int extra_bits; /**< number of extra bits beyond 16-bit */
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75 int nb_samples; /**< number of samples in the current frame */
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76
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77 int direct_output;
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78 } ALACContext;
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79
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80 static inline unsigned int decode_scalar(GetBitContext *gb, int k, int bps)
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81 {
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82 unsigned int x = get_unary_0_9(gb);
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83
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84 if (x > 8) { /* RICE THRESHOLD */
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85 /* use alternative encoding */
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86 x = get_bits_long(gb, bps);
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87 } else if (k != 1) {
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88 int extrabits = show_bits(gb, k);
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89
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90 /* multiply x by 2^k - 1, as part of their strange algorithm */
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91 x = (x << k) - x;
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92
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93 if (extrabits > 1) {
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94 x += extrabits - 1;
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95 skip_bits(gb, k);
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96 } else
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97 skip_bits(gb, k - 1);
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98 }
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99 return x;
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100 }
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101
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102 static int rice_decompress(ALACContext *alac, int32_t *output_buffer,
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103 int nb_samples, int bps, int rice_history_mult)
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104 {
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105 int i;
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106 unsigned int history = alac->rice_initial_history;
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107 int sign_modifier = 0;
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108
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109 for (i = 0; i < nb_samples; i++) {
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110 int k;
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111 unsigned int x;
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112
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113 if(get_bits_left(&alac->gb) <= 0)
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114 return -1;
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115
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116 /* calculate rice param and decode next value */
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117 k = av_log2((history >> 9) + 3);
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118 k = FFMIN(k, alac->rice_limit);
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119 x = decode_scalar(&alac->gb, k, bps);
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120 x += sign_modifier;
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121 sign_modifier = 0;
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122 output_buffer[i] = (x >> 1) ^ -(x & 1);
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123
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124 /* update the history */
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125 if (x > 0xffff)
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126 history = 0xffff;
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127 else
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128 history += x * rice_history_mult -
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129 ((history * rice_history_mult) >> 9);
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130
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131 /* special case: there may be compressed blocks of 0 */
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132 if ((history < 128) && (i + 1 < nb_samples)) {
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133 int block_size;
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134
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135 /* calculate rice param and decode block size */
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136 k = 7 - av_log2(history) + ((history + 16) >> 6);
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137 k = FFMIN(k, alac->rice_limit);
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138 block_size = decode_scalar(&alac->gb, k, 16);
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139
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140 if (block_size > 0) {
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141 if (block_size >= nb_samples - i) {
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142 av_log(alac->avctx, AV_LOG_ERROR,
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143 "invalid zero block size of %d %d %d\n", block_size,
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144 nb_samples, i);
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145 block_size = nb_samples - i - 1;
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146 }
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147 memset(&output_buffer[i + 1], 0,
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148 block_size * sizeof(*output_buffer));
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149 i += block_size;
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150 }
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151 if (block_size <= 0xffff)
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152 sign_modifier = 1;
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153 history = 0;
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154 }
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155 }
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156 return 0;
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157 }
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158
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159 static inline int sign_only(int v)
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160 {
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161 return v ? FFSIGN(v) : 0;
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162 }
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163
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164 static void lpc_prediction(int32_t *error_buffer, int32_t *buffer_out,
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165 int nb_samples, int bps, int16_t *lpc_coefs,
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166 int lpc_order, int lpc_quant)
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167 {
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168 int i;
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169 int32_t *pred = buffer_out;
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170
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171 /* first sample always copies */
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172 *buffer_out = *error_buffer;
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173
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174 if (nb_samples <= 1)
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175 return;
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176
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177 if (!lpc_order) {
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178 memcpy(&buffer_out[1], &error_buffer[1],
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179 (nb_samples - 1) * sizeof(*buffer_out));
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180 return;
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181 }
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182
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183 if (lpc_order == 31) {
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184 /* simple 1st-order prediction */
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185 for (i = 1; i < nb_samples; i++) {
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186 buffer_out[i] = sign_extend(buffer_out[i - 1] + error_buffer[i],
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187 bps);
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188 }
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189 return;
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190 }
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191
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192 /* read warm-up samples */
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193 for (i = 1; i <= lpc_order && i < nb_samples; i++)
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194 buffer_out[i] = sign_extend(buffer_out[i - 1] + error_buffer[i], bps);
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195
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196 /* NOTE: 4 and 8 are very common cases that could be optimized. */
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197
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198 for (; i < nb_samples; i++) {
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199 int j;
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200 int val = 0;
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201 int error_val = error_buffer[i];
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202 int error_sign;
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203 int d = *pred++;
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204
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205 /* LPC prediction */
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206 for (j = 0; j < lpc_order; j++)
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207 val += (pred[j] - d) * lpc_coefs[j];
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208 val = (val + (1 << (lpc_quant - 1))) >> lpc_quant;
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209 val += d + error_val;
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210 buffer_out[i] = sign_extend(val, bps);
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211
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212 /* adapt LPC coefficients */
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213 error_sign = sign_only(error_val);
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214 if (error_sign) {
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215 for (j = 0; j < lpc_order && error_val * error_sign > 0; j++) {
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216 int sign;
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217 val = d - pred[j];
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218 sign = sign_only(val) * error_sign;
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219 lpc_coefs[j] -= sign;
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220 val *= sign;
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221 error_val -= (val >> lpc_quant) * (j + 1);
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222 }
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223 }
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224 }
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225 }
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226
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227 static void decorrelate_stereo(int32_t *buffer[2], int nb_samples,
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228 int decorr_shift, int decorr_left_weight)
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229 {
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230 int i;
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231
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232 for (i = 0; i < nb_samples; i++) {
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233 int32_t a, b;
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234
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235 a = buffer[0][i];
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236 b = buffer[1][i];
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237
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238 a -= (b * decorr_left_weight) >> decorr_shift;
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239 b += a;
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240
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241 buffer[0][i] = b;
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242 buffer[1][i] = a;
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243 }
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244 }
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245
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246 static void append_extra_bits(int32_t *buffer[2], int32_t *extra_bits_buffer[2],
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247 int extra_bits, int channels, int nb_samples)
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248 {
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249 int i, ch;
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250
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251 for (ch = 0; ch < channels; ch++)
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252 for (i = 0; i < nb_samples; i++)
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253 buffer[ch][i] = (buffer[ch][i] << extra_bits) | extra_bits_buffer[ch][i];
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254 }
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255
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256 static int decode_element(AVCodecContext *avctx, AVFrame *frame, int ch_index,
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257 int channels)
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258 {
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259 ALACContext *alac = avctx->priv_data;
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260 int has_size, bps, is_compressed, decorr_shift, decorr_left_weight, ret;
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261 uint32_t output_samples;
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262 int i, ch;
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263
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264 skip_bits(&alac->gb, 4); /* element instance tag */
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265 skip_bits(&alac->gb, 12); /* unused header bits */
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266
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267 /* the number of output samples is stored in the frame */
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268 has_size = get_bits1(&alac->gb);
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269
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270 alac->extra_bits = get_bits(&alac->gb, 2) << 3;
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271 bps = alac->sample_size - alac->extra_bits + channels - 1;
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272 if (bps > 32U) {
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273 av_log(avctx, AV_LOG_ERROR, "bps is unsupported: %d\n", bps);
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274 return AVERROR_PATCHWELCOME;
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275 }
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276
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277 /* whether the frame is compressed */
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278 is_compressed = !get_bits1(&alac->gb);
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279
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280 if (has_size)
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281 output_samples = get_bits_long(&alac->gb, 32);
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282 else
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283 output_samples = alac->max_samples_per_frame;
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284 if (!output_samples || output_samples > alac->max_samples_per_frame) {
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285 av_log(avctx, AV_LOG_ERROR, "invalid samples per frame: %d\n",
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286 output_samples);
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287 return AVERROR_INVALIDDATA;
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288 }
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289 if (!alac->nb_samples) {
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290 /* get output buffer */
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291 frame->nb_samples = output_samples;
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292 if ((ret = ff_get_buffer(avctx, frame, 0)) < 0)
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293 return ret;
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294 } else if (output_samples != alac->nb_samples) {
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295 av_log(avctx, AV_LOG_ERROR, "sample count mismatch: %u != %d\n",
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296 output_samples, alac->nb_samples);
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297 return AVERROR_INVALIDDATA;
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298 }
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299 alac->nb_samples = output_samples;
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300 if (alac->direct_output) {
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301 for (ch = 0; ch < channels; ch++)
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302 alac->output_samples_buffer[ch] = (int32_t *)frame->extended_data[ch_index + ch];
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303 }
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304
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305 if (is_compressed) {
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306 int16_t lpc_coefs[2][32];
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307 int lpc_order[2];
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308 int prediction_type[2];
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309 int lpc_quant[2];
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310 int rice_history_mult[2];
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311
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312 decorr_shift = get_bits(&alac->gb, 8);
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313 decorr_left_weight = get_bits(&alac->gb, 8);
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314
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315 for (ch = 0; ch < channels; ch++) {
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316 prediction_type[ch] = get_bits(&alac->gb, 4);
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317 lpc_quant[ch] = get_bits(&alac->gb, 4);
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318 rice_history_mult[ch] = get_bits(&alac->gb, 3);
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319 lpc_order[ch] = get_bits(&alac->gb, 5);
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320
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321 /* read the predictor table */
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322 for (i = lpc_order[ch] - 1; i >= 0; i--)
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323 lpc_coefs[ch][i] = get_sbits(&alac->gb, 16);
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324 }
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325
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326 if (alac->extra_bits) {
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327 for (i = 0; i < alac->nb_samples; i++) {
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328 if(get_bits_left(&alac->gb) <= 0)
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329 return -1;
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330 for (ch = 0; ch < channels; ch++)
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331 alac->extra_bits_buffer[ch][i] = get_bits(&alac->gb, alac->extra_bits);
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332 }
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333 }
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334 for (ch = 0; ch < channels; ch++) {
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335 int ret=rice_decompress(alac, alac->predict_error_buffer[ch],
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336 alac->nb_samples, bps,
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337 rice_history_mult[ch] * alac->rice_history_mult / 4);
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338 if(ret<0)
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339 return ret;
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340
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341 /* adaptive FIR filter */
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342 if (prediction_type[ch] == 15) {
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343 /* Prediction type 15 runs the adaptive FIR twice.
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344 * The first pass uses the special-case coef_num = 31, while
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345 * the second pass uses the coefs from the bitstream.
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yading@10
|
346 *
|
yading@10
|
347 * However, this prediction type is not currently used by the
|
yading@10
|
348 * reference encoder.
|
yading@10
|
349 */
|
yading@10
|
350 lpc_prediction(alac->predict_error_buffer[ch],
|
yading@10
|
351 alac->predict_error_buffer[ch],
|
yading@10
|
352 alac->nb_samples, bps, NULL, 31, 0);
|
yading@10
|
353 } else if (prediction_type[ch] > 0) {
|
yading@10
|
354 av_log(avctx, AV_LOG_WARNING, "unknown prediction type: %i\n",
|
yading@10
|
355 prediction_type[ch]);
|
yading@10
|
356 }
|
yading@10
|
357 lpc_prediction(alac->predict_error_buffer[ch],
|
yading@10
|
358 alac->output_samples_buffer[ch], alac->nb_samples,
|
yading@10
|
359 bps, lpc_coefs[ch], lpc_order[ch], lpc_quant[ch]);
|
yading@10
|
360 }
|
yading@10
|
361 } else {
|
yading@10
|
362 /* not compressed, easy case */
|
yading@10
|
363 for (i = 0; i < alac->nb_samples; i++) {
|
yading@10
|
364 if(get_bits_left(&alac->gb) <= 0)
|
yading@10
|
365 return -1;
|
yading@10
|
366 for (ch = 0; ch < channels; ch++) {
|
yading@10
|
367 alac->output_samples_buffer[ch][i] =
|
yading@10
|
368 get_sbits_long(&alac->gb, alac->sample_size);
|
yading@10
|
369 }
|
yading@10
|
370 }
|
yading@10
|
371 alac->extra_bits = 0;
|
yading@10
|
372 decorr_shift = 0;
|
yading@10
|
373 decorr_left_weight = 0;
|
yading@10
|
374 }
|
yading@10
|
375
|
yading@10
|
376 if (channels == 2 && decorr_left_weight) {
|
yading@10
|
377 decorrelate_stereo(alac->output_samples_buffer, alac->nb_samples,
|
yading@10
|
378 decorr_shift, decorr_left_weight);
|
yading@10
|
379 }
|
yading@10
|
380
|
yading@10
|
381 if (alac->extra_bits) {
|
yading@10
|
382 append_extra_bits(alac->output_samples_buffer, alac->extra_bits_buffer,
|
yading@10
|
383 alac->extra_bits, channels, alac->nb_samples);
|
yading@10
|
384 }
|
yading@10
|
385
|
yading@10
|
386 if(av_sample_fmt_is_planar(avctx->sample_fmt)) {
|
yading@10
|
387 switch(alac->sample_size) {
|
yading@10
|
388 case 16: {
|
yading@10
|
389 for (ch = 0; ch < channels; ch++) {
|
yading@10
|
390 int16_t *outbuffer = (int16_t *)frame->extended_data[ch_index + ch];
|
yading@10
|
391 for (i = 0; i < alac->nb_samples; i++)
|
yading@10
|
392 *outbuffer++ = alac->output_samples_buffer[ch][i];
|
yading@10
|
393 }}
|
yading@10
|
394 break;
|
yading@10
|
395 case 24: {
|
yading@10
|
396 for (ch = 0; ch < channels; ch++) {
|
yading@10
|
397 for (i = 0; i < alac->nb_samples; i++)
|
yading@10
|
398 alac->output_samples_buffer[ch][i] <<= 8;
|
yading@10
|
399 }}
|
yading@10
|
400 break;
|
yading@10
|
401 }
|
yading@10
|
402 }else{
|
yading@10
|
403 switch(alac->sample_size) {
|
yading@10
|
404 case 16: {
|
yading@10
|
405 int16_t *outbuffer = ((int16_t *)frame->extended_data[0]) + ch_index;
|
yading@10
|
406 for (i = 0; i < alac->nb_samples; i++) {
|
yading@10
|
407 for (ch = 0; ch < channels; ch++)
|
yading@10
|
408 *outbuffer++ = alac->output_samples_buffer[ch][i];
|
yading@10
|
409 outbuffer += alac->channels - channels;
|
yading@10
|
410 }
|
yading@10
|
411 }
|
yading@10
|
412 break;
|
yading@10
|
413 case 24: {
|
yading@10
|
414 int32_t *outbuffer = ((int32_t *)frame->extended_data[0]) + ch_index;
|
yading@10
|
415 for (i = 0; i < alac->nb_samples; i++) {
|
yading@10
|
416 for (ch = 0; ch < channels; ch++)
|
yading@10
|
417 *outbuffer++ = alac->output_samples_buffer[ch][i] << 8;
|
yading@10
|
418 outbuffer += alac->channels - channels;
|
yading@10
|
419 }
|
yading@10
|
420 }
|
yading@10
|
421 break;
|
yading@10
|
422 case 32: {
|
yading@10
|
423 int32_t *outbuffer = ((int32_t *)frame->extended_data[0]) + ch_index;
|
yading@10
|
424 for (i = 0; i < alac->nb_samples; i++) {
|
yading@10
|
425 for (ch = 0; ch < channels; ch++)
|
yading@10
|
426 *outbuffer++ = alac->output_samples_buffer[ch][i];
|
yading@10
|
427 outbuffer += alac->channels - channels;
|
yading@10
|
428 }
|
yading@10
|
429 }
|
yading@10
|
430 break;
|
yading@10
|
431 }
|
yading@10
|
432 }
|
yading@10
|
433
|
yading@10
|
434 return 0;
|
yading@10
|
435 }
|
yading@10
|
436
|
yading@10
|
437 static int alac_decode_frame(AVCodecContext *avctx, void *data,
|
yading@10
|
438 int *got_frame_ptr, AVPacket *avpkt)
|
yading@10
|
439 {
|
yading@10
|
440 ALACContext *alac = avctx->priv_data;
|
yading@10
|
441 AVFrame *frame = data;
|
yading@10
|
442 enum AlacRawDataBlockType element;
|
yading@10
|
443 int channels;
|
yading@10
|
444 int ch, ret, got_end;
|
yading@10
|
445
|
yading@10
|
446 init_get_bits(&alac->gb, avpkt->data, avpkt->size * 8);
|
yading@10
|
447
|
yading@10
|
448 got_end = 0;
|
yading@10
|
449 alac->nb_samples = 0;
|
yading@10
|
450 ch = 0;
|
yading@10
|
451 while (get_bits_left(&alac->gb) >= 3) {
|
yading@10
|
452 element = get_bits(&alac->gb, 3);
|
yading@10
|
453 if (element == TYPE_END) {
|
yading@10
|
454 got_end = 1;
|
yading@10
|
455 break;
|
yading@10
|
456 }
|
yading@10
|
457 if (element > TYPE_CPE && element != TYPE_LFE) {
|
yading@10
|
458 av_log(avctx, AV_LOG_ERROR, "syntax element unsupported: %d\n", element);
|
yading@10
|
459 return AVERROR_PATCHWELCOME;
|
yading@10
|
460 }
|
yading@10
|
461
|
yading@10
|
462 channels = (element == TYPE_CPE) ? 2 : 1;
|
yading@10
|
463 if ( ch + channels > alac->channels
|
yading@10
|
464 || ff_alac_channel_layout_offsets[alac->channels - 1][ch] + channels > alac->channels
|
yading@10
|
465 ) {
|
yading@10
|
466 av_log(avctx, AV_LOG_ERROR, "invalid element channel count\n");
|
yading@10
|
467 return AVERROR_INVALIDDATA;
|
yading@10
|
468 }
|
yading@10
|
469
|
yading@10
|
470 ret = decode_element(avctx, frame,
|
yading@10
|
471 ff_alac_channel_layout_offsets[alac->channels - 1][ch],
|
yading@10
|
472 channels);
|
yading@10
|
473 if (ret < 0 && get_bits_left(&alac->gb))
|
yading@10
|
474 return ret;
|
yading@10
|
475
|
yading@10
|
476 ch += channels;
|
yading@10
|
477 }
|
yading@10
|
478 if (!got_end) {
|
yading@10
|
479 av_log(avctx, AV_LOG_ERROR, "no end tag found. incomplete packet.\n");
|
yading@10
|
480 return AVERROR_INVALIDDATA;
|
yading@10
|
481 }
|
yading@10
|
482
|
yading@10
|
483 if (avpkt->size * 8 - get_bits_count(&alac->gb) > 8) {
|
yading@10
|
484 av_log(avctx, AV_LOG_ERROR, "Error : %d bits left\n",
|
yading@10
|
485 avpkt->size * 8 - get_bits_count(&alac->gb));
|
yading@10
|
486 }
|
yading@10
|
487
|
yading@10
|
488 *got_frame_ptr = 1;
|
yading@10
|
489
|
yading@10
|
490 return avpkt->size;
|
yading@10
|
491 }
|
yading@10
|
492
|
yading@10
|
493 static av_cold int alac_decode_close(AVCodecContext *avctx)
|
yading@10
|
494 {
|
yading@10
|
495 ALACContext *alac = avctx->priv_data;
|
yading@10
|
496
|
yading@10
|
497 int ch;
|
yading@10
|
498 for (ch = 0; ch < FFMIN(alac->channels, 2); ch++) {
|
yading@10
|
499 av_freep(&alac->predict_error_buffer[ch]);
|
yading@10
|
500 if (!alac->direct_output)
|
yading@10
|
501 av_freep(&alac->output_samples_buffer[ch]);
|
yading@10
|
502 av_freep(&alac->extra_bits_buffer[ch]);
|
yading@10
|
503 }
|
yading@10
|
504
|
yading@10
|
505 return 0;
|
yading@10
|
506 }
|
yading@10
|
507
|
yading@10
|
508 static int allocate_buffers(ALACContext *alac)
|
yading@10
|
509 {
|
yading@10
|
510 int ch;
|
yading@10
|
511 int buf_size;
|
yading@10
|
512
|
yading@10
|
513 if (alac->max_samples_per_frame > INT_MAX / sizeof(int32_t))
|
yading@10
|
514 goto buf_alloc_fail;
|
yading@10
|
515 buf_size = alac->max_samples_per_frame * sizeof(int32_t);
|
yading@10
|
516
|
yading@10
|
517 for (ch = 0; ch < FFMIN(alac->channels, 2); ch++) {
|
yading@10
|
518 FF_ALLOC_OR_GOTO(alac->avctx, alac->predict_error_buffer[ch],
|
yading@10
|
519 buf_size, buf_alloc_fail);
|
yading@10
|
520
|
yading@10
|
521 alac->direct_output = alac->sample_size > 16 && av_sample_fmt_is_planar(alac->avctx->sample_fmt);
|
yading@10
|
522 if (!alac->direct_output) {
|
yading@10
|
523 FF_ALLOC_OR_GOTO(alac->avctx, alac->output_samples_buffer[ch],
|
yading@10
|
524 buf_size, buf_alloc_fail);
|
yading@10
|
525 }
|
yading@10
|
526
|
yading@10
|
527 FF_ALLOC_OR_GOTO(alac->avctx, alac->extra_bits_buffer[ch],
|
yading@10
|
528 buf_size, buf_alloc_fail);
|
yading@10
|
529 }
|
yading@10
|
530 return 0;
|
yading@10
|
531 buf_alloc_fail:
|
yading@10
|
532 alac_decode_close(alac->avctx);
|
yading@10
|
533 return AVERROR(ENOMEM);
|
yading@10
|
534 }
|
yading@10
|
535
|
yading@10
|
536 static int alac_set_info(ALACContext *alac)
|
yading@10
|
537 {
|
yading@10
|
538 GetByteContext gb;
|
yading@10
|
539
|
yading@10
|
540 bytestream2_init(&gb, alac->avctx->extradata,
|
yading@10
|
541 alac->avctx->extradata_size);
|
yading@10
|
542
|
yading@10
|
543 bytestream2_skipu(&gb, 12); // size:4, alac:4, version:4
|
yading@10
|
544
|
yading@10
|
545 alac->max_samples_per_frame = bytestream2_get_be32u(&gb);
|
yading@10
|
546 if (!alac->max_samples_per_frame || alac->max_samples_per_frame > INT_MAX) {
|
yading@10
|
547 av_log(alac->avctx, AV_LOG_ERROR, "max samples per frame invalid: %u\n",
|
yading@10
|
548 alac->max_samples_per_frame);
|
yading@10
|
549 return AVERROR_INVALIDDATA;
|
yading@10
|
550 }
|
yading@10
|
551 bytestream2_skipu(&gb, 1); // compatible version
|
yading@10
|
552 alac->sample_size = bytestream2_get_byteu(&gb);
|
yading@10
|
553 alac->rice_history_mult = bytestream2_get_byteu(&gb);
|
yading@10
|
554 alac->rice_initial_history = bytestream2_get_byteu(&gb);
|
yading@10
|
555 alac->rice_limit = bytestream2_get_byteu(&gb);
|
yading@10
|
556 alac->channels = bytestream2_get_byteu(&gb);
|
yading@10
|
557 bytestream2_get_be16u(&gb); // maxRun
|
yading@10
|
558 bytestream2_get_be32u(&gb); // max coded frame size
|
yading@10
|
559 bytestream2_get_be32u(&gb); // average bitrate
|
yading@10
|
560 bytestream2_get_be32u(&gb); // samplerate
|
yading@10
|
561
|
yading@10
|
562 return 0;
|
yading@10
|
563 }
|
yading@10
|
564
|
yading@10
|
565 static av_cold int alac_decode_init(AVCodecContext * avctx)
|
yading@10
|
566 {
|
yading@10
|
567 int ret;
|
yading@10
|
568 int req_packed;
|
yading@10
|
569 ALACContext *alac = avctx->priv_data;
|
yading@10
|
570 alac->avctx = avctx;
|
yading@10
|
571
|
yading@10
|
572 /* initialize from the extradata */
|
yading@10
|
573 if (alac->avctx->extradata_size < ALAC_EXTRADATA_SIZE) {
|
yading@10
|
574 av_log(avctx, AV_LOG_ERROR, "extradata is too small\n");
|
yading@10
|
575 return AVERROR_INVALIDDATA;
|
yading@10
|
576 }
|
yading@10
|
577 if (alac_set_info(alac)) {
|
yading@10
|
578 av_log(avctx, AV_LOG_ERROR, "set_info failed\n");
|
yading@10
|
579 return -1;
|
yading@10
|
580 }
|
yading@10
|
581
|
yading@10
|
582 req_packed = LIBAVCODEC_VERSION_MAJOR < 55 && !av_sample_fmt_is_planar(avctx->request_sample_fmt);
|
yading@10
|
583 switch (alac->sample_size) {
|
yading@10
|
584 case 16: avctx->sample_fmt = req_packed ? AV_SAMPLE_FMT_S16 : AV_SAMPLE_FMT_S16P;
|
yading@10
|
585 break;
|
yading@10
|
586 case 24:
|
yading@10
|
587 case 32: avctx->sample_fmt = req_packed ? AV_SAMPLE_FMT_S32 : AV_SAMPLE_FMT_S32P;
|
yading@10
|
588 break;
|
yading@10
|
589 default: avpriv_request_sample(avctx, "Sample depth %d", alac->sample_size);
|
yading@10
|
590 return AVERROR_PATCHWELCOME;
|
yading@10
|
591 }
|
yading@10
|
592 avctx->bits_per_raw_sample = alac->sample_size;
|
yading@10
|
593
|
yading@10
|
594 if (alac->channels < 1) {
|
yading@10
|
595 av_log(avctx, AV_LOG_WARNING, "Invalid channel count\n");
|
yading@10
|
596 alac->channels = avctx->channels;
|
yading@10
|
597 } else {
|
yading@10
|
598 if (alac->channels > ALAC_MAX_CHANNELS)
|
yading@10
|
599 alac->channels = avctx->channels;
|
yading@10
|
600 else
|
yading@10
|
601 avctx->channels = alac->channels;
|
yading@10
|
602 }
|
yading@10
|
603 if (avctx->channels > ALAC_MAX_CHANNELS || avctx->channels <= 0 ) {
|
yading@10
|
604 av_log(avctx, AV_LOG_ERROR, "Unsupported channel count: %d\n",
|
yading@10
|
605 avctx->channels);
|
yading@10
|
606 return AVERROR_PATCHWELCOME;
|
yading@10
|
607 }
|
yading@10
|
608 avctx->channel_layout = ff_alac_channel_layouts[alac->channels - 1];
|
yading@10
|
609
|
yading@10
|
610 if ((ret = allocate_buffers(alac)) < 0) {
|
yading@10
|
611 av_log(avctx, AV_LOG_ERROR, "Error allocating buffers\n");
|
yading@10
|
612 return ret;
|
yading@10
|
613 }
|
yading@10
|
614
|
yading@10
|
615 return 0;
|
yading@10
|
616 }
|
yading@10
|
617
|
yading@10
|
618 AVCodec ff_alac_decoder = {
|
yading@10
|
619 .name = "alac",
|
yading@10
|
620 .type = AVMEDIA_TYPE_AUDIO,
|
yading@10
|
621 .id = AV_CODEC_ID_ALAC,
|
yading@10
|
622 .priv_data_size = sizeof(ALACContext),
|
yading@10
|
623 .init = alac_decode_init,
|
yading@10
|
624 .close = alac_decode_close,
|
yading@10
|
625 .decode = alac_decode_frame,
|
yading@10
|
626 .capabilities = CODEC_CAP_DR1,
|
yading@10
|
627 .long_name = NULL_IF_CONFIG_SMALL("ALAC (Apple Lossless Audio Codec)"),
|
yading@10
|
628 };
|