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1 /* -*- c-basic-offset: 4 indent-tabs-mode: nil -*- vi:set ts=8 sts=4 sw=4: */
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2
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3 /*
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4 Sonic Visualiser
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5 An audio file viewer and annotation editor.
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6 Centre for Digital Music, Queen Mary, University of London.
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7 This file copyright 2006-2007 Chris Cannam and QMUL.
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8
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9 This program is free software; you can redistribute it and/or
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10 modify it under the terms of the GNU General Public License as
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11 published by the Free Software Foundation; either version 2 of the
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12 License, or (at your option) any later version. See the file
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13 COPYING included with this distribution for more information.
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14 */
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15
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16 #include "CodedAudioFileReader.h"
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17
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18 #include "WavFileReader.h"
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19 #include "base/TempDirectory.h"
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20 #include "base/Exceptions.h"
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21 #include "base/Profiler.h"
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22 #include "base/Serialiser.h"
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23 #include "base/Resampler.h"
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24
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25 #include <iostream>
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26 #include <QDir>
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27 #include <QMutexLocker>
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28
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29 CodedAudioFileReader::CodedAudioFileReader(CacheMode cacheMode,
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30 size_t targetRate) :
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31 m_cacheMode(cacheMode),
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32 m_initialised(false),
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33 m_serialiser(0),
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34 m_fileRate(0),
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35 m_cacheFileWritePtr(0),
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36 m_cacheFileReader(0),
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37 m_cacheWriteBuffer(0),
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38 m_cacheWriteBufferIndex(0),
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39 m_cacheWriteBufferSize(16384),
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40 m_resampler(0),
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41 m_resampleBuffer(0)
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42 {
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43 // std::cerr << "CodedAudioFileReader::CodedAudioFileReader: rate " << targetRate << std::endl;
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44
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45 m_frameCount = 0;
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46 m_sampleRate = targetRate;
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47 }
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48
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49 CodedAudioFileReader::~CodedAudioFileReader()
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50 {
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51 QMutexLocker locker(&m_cacheMutex);
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52
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53 endSerialised();
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54
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55 if (m_cacheFileWritePtr) sf_close(m_cacheFileWritePtr);
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56
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57 delete m_cacheFileReader;
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58 delete[] m_cacheWriteBuffer;
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59
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60 if (m_cacheFileName != "") {
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61 if (!QFile(m_cacheFileName).remove()) {
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62 std::cerr << "WARNING: CodedAudioFileReader::~CodedAudioFileReader: Failed to delete cache file \"" << m_cacheFileName.toStdString() << "\"" << std::endl;
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63 }
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64 }
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65
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66 delete m_resampler;
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67 delete[] m_resampleBuffer;
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68 }
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69
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70 void
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71 CodedAudioFileReader::startSerialised(QString id)
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72 {
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73 // std::cerr << "CodedAudioFileReader::startSerialised(" << id.toStdString() << ")" << std::endl;
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74
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75 delete m_serialiser;
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76 m_serialiser = new Serialiser(id);
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77 }
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78
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79 void
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80 CodedAudioFileReader::endSerialised()
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81 {
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82 // std::cerr << "CodedAudioFileReader::endSerialised" << std::endl;
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83
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84 delete m_serialiser;
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85 m_serialiser = 0;
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86 }
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87
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88 void
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89 CodedAudioFileReader::initialiseDecodeCache()
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90 {
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91 QMutexLocker locker(&m_cacheMutex);
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92
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93 std::cerr << "CodedAudioFileReader::initialiseDecodeCache: file rate = " << m_fileRate << std::endl;
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94
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95 if (m_fileRate == 0) {
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96 std::cerr << "CodedAudioFileReader::initialiseDecodeCache: ERROR: File sample rate unknown (bug in subclass implementation?)" << std::endl;
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97 m_fileRate = 48000; // got to have something
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98 }
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99 if (m_sampleRate == 0) {
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100 m_sampleRate = m_fileRate;
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101 }
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102 if (m_fileRate != m_sampleRate) {
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103 std::cerr << "CodedAudioFileReader: resampling " << m_fileRate << " -> " << m_sampleRate << std::endl;
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104 m_resampler = new Resampler(Resampler::FastestTolerable,
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105 m_channelCount,
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106 m_cacheWriteBufferSize);
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107 float ratio = float(m_sampleRate) / float(m_fileRate);
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108 m_resampleBuffer = new float
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109 [lrintf(ceilf(m_cacheWriteBufferSize * m_channelCount * ratio))];
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110 }
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111
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112 m_cacheWriteBuffer = new float[m_cacheWriteBufferSize * m_channelCount];
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113 m_cacheWriteBufferIndex = 0;
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114
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115 if (m_cacheMode == CacheInTemporaryFile) {
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116
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117 try {
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118 QDir dir(TempDirectory::getInstance()->getPath());
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119 m_cacheFileName = dir.filePath(QString("decoded_%1.wav")
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120 .arg((intptr_t)this));
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121
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122 SF_INFO fileInfo;
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123 fileInfo.samplerate = m_sampleRate;
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124 fileInfo.channels = m_channelCount;
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125
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126 // No point in writing 24-bit or float; generally this
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127 // class is used for decoding files that have come from a
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128 // 16 bit source or that decode to only 16 bits anyway.
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129 fileInfo.format = SF_FORMAT_WAV | SF_FORMAT_PCM_16;
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130
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131 m_cacheFileWritePtr = sf_open(m_cacheFileName.toLocal8Bit(),
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132 SFM_WRITE, &fileInfo);
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133
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134 if (m_cacheFileWritePtr) {
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135
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136 // Ideally we would do this now only if we were in a
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137 // threaded mode -- creating the reader later if we're
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138 // not threaded -- but we don't have access to that
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139 // information here
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140
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141 m_cacheFileReader = new WavFileReader(m_cacheFileName);
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142
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143 if (!m_cacheFileReader->isOK()) {
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144 std::cerr << "ERROR: CodedAudioFileReader::initialiseDecodeCache: Failed to construct WAV file reader for temporary file: " << m_cacheFileReader->getError().toStdString() << std::endl;
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145 delete m_cacheFileReader;
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146 m_cacheFileReader = 0;
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147 m_cacheMode = CacheInMemory;
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148 sf_close(m_cacheFileWritePtr);
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149 }
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150
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151 } else {
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152 std::cerr << "CodedAudioFileReader::initialiseDecodeCache: failed to open cache file \"" << m_cacheFileName.toStdString() << "\" (" << m_channelCount << " channels, sample rate " << m_sampleRate << " for writing, falling back to in-memory cache" << std::endl;
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153 m_cacheMode = CacheInMemory;
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154 }
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155
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156 } catch (DirectoryCreationFailed f) {
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157 std::cerr << "CodedAudioFileReader::initialiseDecodeCache: failed to create temporary directory! Falling back to in-memory cache" << std::endl;
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158 m_cacheMode = CacheInMemory;
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159 }
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160 }
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161
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162 if (m_cacheMode == CacheInMemory) {
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163 m_data.clear();
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164 }
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165
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166 m_initialised = true;
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167 }
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168
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169 void
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170 CodedAudioFileReader::addSamplesToDecodeCache(float **samples, size_t nframes)
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171 {
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172 QMutexLocker locker(&m_cacheMutex);
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173
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174 if (!m_initialised) return;
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175
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176 for (size_t i = 0; i < nframes; ++i) {
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177
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178 for (size_t c = 0; c < m_channelCount; ++c) {
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179
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180 float sample = samples[c][i];
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181
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182 m_cacheWriteBuffer[m_cacheWriteBufferIndex++] = sample;
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183
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184 if (m_cacheWriteBufferIndex ==
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185 m_cacheWriteBufferSize * m_channelCount) {
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186
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187 pushBuffer(m_cacheWriteBuffer, m_cacheWriteBufferSize, false);
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188 m_cacheWriteBufferIndex = 0;
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189 }
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190
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191 if (m_cacheWriteBufferIndex % 10240 == 0 &&
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192 m_cacheFileReader) {
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193 m_cacheFileReader->updateFrameCount();
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194 }
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195 }
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196 }
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197 }
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198
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199 void
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200 CodedAudioFileReader::addSamplesToDecodeCache(float *samples, size_t nframes)
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201 {
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202 QMutexLocker locker(&m_cacheMutex);
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203
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204 if (!m_initialised) return;
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205
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206 for (size_t i = 0; i < nframes; ++i) {
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207
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208 for (size_t c = 0; c < m_channelCount; ++c) {
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209
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210 float sample = samples[i * m_channelCount + c];
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211
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212 m_cacheWriteBuffer[m_cacheWriteBufferIndex++] = sample;
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213
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214 if (m_cacheWriteBufferIndex ==
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215 m_cacheWriteBufferSize * m_channelCount) {
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216
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217 pushBuffer(m_cacheWriteBuffer, m_cacheWriteBufferSize, false);
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218 m_cacheWriteBufferIndex = 0;
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219 }
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220
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221 if (m_cacheWriteBufferIndex % 10240 == 0 &&
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222 m_cacheFileReader) {
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223 m_cacheFileReader->updateFrameCount();
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224 }
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225 }
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226 }
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227 }
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228
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229 void
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230 CodedAudioFileReader::addSamplesToDecodeCache(const SampleBlock &samples)
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231 {
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232 QMutexLocker locker(&m_cacheMutex);
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233
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234 if (!m_initialised) return;
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235
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236 for (size_t i = 0; i < samples.size(); ++i) {
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237
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238 float sample = samples[i];
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239
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240 m_cacheWriteBuffer[m_cacheWriteBufferIndex++] = sample;
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241
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242 if (m_cacheWriteBufferIndex ==
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243 m_cacheWriteBufferSize * m_channelCount) {
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244
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245 pushBuffer(m_cacheWriteBuffer, m_cacheWriteBufferSize, false);
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246 m_cacheWriteBufferIndex = 0;
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247 }
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248
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249 if (m_cacheWriteBufferIndex % 10240 == 0 &&
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250 m_cacheFileReader) {
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251 m_cacheFileReader->updateFrameCount();
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252 }
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253 }
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254 }
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255
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256 void
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257 CodedAudioFileReader::finishDecodeCache()
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258 {
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259 QMutexLocker locker(&m_cacheMutex);
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260
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261 Profiler profiler("CodedAudioFileReader::finishDecodeCache", true);
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262
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263 if (!m_initialised) {
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264 std::cerr << "WARNING: CodedAudioFileReader::finishDecodeCache: Cache was never initialised!" << std::endl;
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265 return;
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266 }
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267
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268 if (m_cacheWriteBufferIndex > 0) {
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269 //!!! check for return value! out of disk space, etc!
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270 pushBuffer(m_cacheWriteBuffer,
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271 m_cacheWriteBufferIndex / m_channelCount,
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272 true);
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273 }
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274
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275 delete[] m_cacheWriteBuffer;
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276 m_cacheWriteBuffer = 0;
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277
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278 delete[] m_resampleBuffer;
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279 m_resampleBuffer = 0;
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280
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281 delete m_resampler;
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282 m_resampler = 0;
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283
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284 if (m_cacheMode == CacheInTemporaryFile) {
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285 sf_close(m_cacheFileWritePtr);
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286 m_cacheFileWritePtr = 0;
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287 if (m_cacheFileReader) m_cacheFileReader->updateFrameCount();
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288 }
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289 }
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290
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291 void
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292 CodedAudioFileReader::pushBuffer(float *buffer, size_t sz, bool final)
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293 {
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294 float max = 1.0;
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295 size_t count = sz * m_channelCount;
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296
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297 if (m_resampler) {
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298
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299 float ratio = float(m_sampleRate) / float(m_fileRate);
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300
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301 if (ratio != 1.f) {
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302
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303 size_t out = m_resampler->resampleInterleaved
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304 (buffer,
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305 m_resampleBuffer,
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306 sz,
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307 ratio,
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308 final);
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309
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310 buffer = m_resampleBuffer;
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311 sz = out;
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312 count = sz * m_channelCount;
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313 }
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314 }
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315
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316 for (size_t i = 0; i < count; ++i) {
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317 if (buffer[i] > max) buffer[i] = max;
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318 }
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319 for (size_t i = 0; i < count; ++i) {
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320 if (buffer[i] < -max) buffer[i] = -max;
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321 }
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322
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323 m_frameCount += sz;
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324
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325 switch (m_cacheMode) {
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326
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327 case CacheInTemporaryFile:
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328 //!!! check for return value! out of disk space, etc!
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329 sf_writef_float(m_cacheFileWritePtr, buffer, sz);
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330 break;
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331
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332 case CacheInMemory:
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333 for (size_t s = 0; s < count; ++s) {
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334 m_data.push_back(buffer[count]);
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335 }
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336 MUNLOCK_SAMPLEBLOCK(m_data);
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337 break;
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338 }
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339 }
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340
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341 void
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342 CodedAudioFileReader::getInterleavedFrames(size_t start, size_t count,
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343 SampleBlock &frames) const
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344 {
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345 //!!! we want to ensure this doesn't require a lock -- at the
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346 // moment it does need one, but it doesn't have one...
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347
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348 if (!m_initialised) {
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349 std::cerr << "CodedAudioFileReader::getInterleavedFrames: not initialised" << std::endl;
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350 return;
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351 }
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352
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353 switch (m_cacheMode) {
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354
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355 case CacheInTemporaryFile:
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356 if (m_cacheFileReader) {
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357 m_cacheFileReader->getInterleavedFrames(start, count, frames);
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358 }
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359 break;
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360
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361 case CacheInMemory:
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362 {
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363 frames.clear();
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364 if (!isOK()) return;
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365 if (count == 0) return;
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366
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367 // slownessabounds
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368
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369 for (size_t i = start; i < start + count; ++i) {
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370 for (size_t ch = 0; ch < m_channelCount; ++ch) {
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371 size_t index = i * m_channelCount + ch;
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372 if (index >= m_data.size()) return;
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373 frames.push_back(m_data[index]);
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374 }
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375 }
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376 }
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377 }
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378 }
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379
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