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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 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 "WaveFileModel.h"
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17
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18 #include "fileio/AudioFileReader.h"
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19 #include "fileio/AudioFileReaderFactory.h"
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20
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21 #include "system/System.h"
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22
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23 #include <QMessageBox>
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24 #include <QFileInfo>
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25
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26 #include <iostream>
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27 #include <unistd.h>
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28 #include <math.h>
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29 #include <sndfile.h>
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30
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31 #include <cassert>
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32
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33 using std::cerr;
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34 using std::endl;
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35
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36 PowerOfSqrtTwoZoomConstraint
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37 WaveFileModel::m_zoomConstraint;
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38
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39 WaveFileModel::WaveFileModel(QString path) :
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40 m_path(path),
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41 m_myReader(true),
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42 m_fillThread(0),
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43 m_updateTimer(0),
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44 m_lastFillExtent(0),
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45 m_exiting(false)
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46 {
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47 m_reader = AudioFileReaderFactory::createReader(path);
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48 setObjectName(QFileInfo(path).fileName());
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49 if (isOK()) fillCache();
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50 }
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51
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52 WaveFileModel::WaveFileModel(QString path, AudioFileReader *reader) :
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53 m_path(path),
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54 m_myReader(false),
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55 m_fillThread(0),
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56 m_updateTimer(0),
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57 m_lastFillExtent(0),
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58 m_exiting(false)
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59 {
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60 m_reader = reader;
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61 setObjectName(QFileInfo(path).fileName());
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62 fillCache();
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63 }
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64
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65 WaveFileModel::~WaveFileModel()
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66 {
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67 m_exiting = true;
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68 if (m_fillThread) m_fillThread->wait();
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69 if (m_myReader) delete m_reader;
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70 m_reader = 0;
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71 }
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72
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73 bool
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74 WaveFileModel::isOK() const
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75 {
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76 return m_reader && m_reader->isOK();
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77 }
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78
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79 bool
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80 WaveFileModel::isReady(int *completion) const
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81 {
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82 bool ready = (isOK() && (m_fillThread == 0));
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83 double c = double(m_lastFillExtent) / double(getEndFrame() - getStartFrame());
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84 if (completion) *completion = int(c * 100.0 + 0.01);
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85 // std::cerr << "WaveFileModel::isReady(): ready = " << ready << ", completion = " << (completion ? *completion : -1) << std::endl;
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86 return ready;
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87 }
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88
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89 Model *
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90 WaveFileModel::clone() const
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91 {
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92 WaveFileModel *model = new WaveFileModel(m_path);
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93 return model;
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94 }
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95
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96 size_t
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97 WaveFileModel::getFrameCount() const
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98 {
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99 if (!m_reader) return 0;
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100 return m_reader->getFrameCount();
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101 }
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102
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103 size_t
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104 WaveFileModel::getChannelCount() const
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105 {
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106 if (!m_reader) return 0;
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107 return m_reader->getChannelCount();
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108 }
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109
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110 size_t
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111 WaveFileModel::getSampleRate() const
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112 {
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113 if (!m_reader) return 0;
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114 return m_reader->getSampleRate();
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115 }
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116
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117 size_t
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118 WaveFileModel::getValues(int channel, size_t start, size_t end,
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119 float *buffer) const
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120 {
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121 // Always read these directly from the file.
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122 // This is used for e.g. audio playback.
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123 // Could be much more efficient (although compiler optimisation will help)
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124
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125 if (end < start) {
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126 std::cerr << "ERROR: WaveFileModel::getValues[float]: end < start ("
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127 << end << " < " << start << ")" << std::endl;
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128 assert(end >= start);
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129 }
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130
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131 if (!m_reader || !m_reader->isOK()) return 0;
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132
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133 // std::cerr << "WaveFileModel::getValues(" << channel << ", "
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134 // << start << ", " << end << "): calling reader" << std::endl;
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135
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136 SampleBlock frames;
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137 m_reader->getInterleavedFrames(start, end - start, frames);
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138
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139 size_t i = 0;
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140
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141 int ch0 = channel, ch1 = channel, channels = getChannelCount();
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142 if (channel == -1) {
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143 ch0 = 0;
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144 ch1 = channels - 1;
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145 }
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146
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147 while (i < end - start) {
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148
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149 buffer[i] = 0.0;
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150
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151 for (int ch = ch0; ch <= ch1; ++ch) {
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152
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153 size_t index = i * channels + ch;
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154 if (index >= frames.size()) break;
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155
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156 float sample = frames[index];
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157 buffer[i] += sample;
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158 }
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159
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160 ++i;
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161 }
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162
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163 return i;
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164 }
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165
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166 size_t
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167 WaveFileModel::getValues(int channel, size_t start, size_t end,
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168 double *buffer) const
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169 {
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170 if (end < start) {
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171 std::cerr << "ERROR: WaveFileModel::getValues[double]: end < start ("
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172 << end << " < " << start << ")" << std::endl;
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173 assert(end >= start);
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174 }
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175
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176 if (!m_reader || !m_reader->isOK()) return 0;
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177
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178 SampleBlock frames;
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179 m_reader->getInterleavedFrames(start, end - start, frames);
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180
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181 size_t i = 0;
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182
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183 int ch0 = channel, ch1 = channel, channels = getChannelCount();
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184 if (channel == -1) {
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185 ch0 = 0;
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186 ch1 = channels - 1;
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187 }
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188
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189 while (i < end - start) {
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190
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191 buffer[i] = 0.0;
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192
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193 for (int ch = ch0; ch <= ch1; ++ch) {
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194
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195 size_t index = i * channels + ch;
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196 if (index >= frames.size()) break;
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197
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198 float sample = frames[index];
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199 buffer[i] += sample;
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200 }
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201
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202 ++i;
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203 }
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204
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205 return i;
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206 }
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207
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208 WaveFileModel::RangeBlock
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209 WaveFileModel::getRanges(size_t channel, size_t start, size_t end,
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210 size_t &blockSize) const
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211 {
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212 RangeBlock ranges;
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213 if (!isOK()) return ranges;
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214
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215 if (end <= start) {
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216 std::cerr << "WARNING: Internal error: end <= start in WaveFileModel::getRanges (end = " << end << ", start = " << start << ", blocksize = " << blockSize << ")" << std::endl;
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217 return ranges;
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218 }
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219
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220 int cacheType = 0;
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221 int power = m_zoomConstraint.getMinCachePower();
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222 blockSize = m_zoomConstraint.getNearestBlockSize
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223 (blockSize, cacheType, power, ZoomConstraint::RoundUp);
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224
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225 size_t channels = getChannelCount();
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226
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227 if (cacheType != 0 && cacheType != 1) {
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228
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229 // We need to read directly from the file. We haven't got
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230 // this cached. Hope the requested area is small. This is
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231 // not optimal -- we'll end up reading the same frames twice
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232 // for stereo files, in two separate calls to this method.
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233 // We could fairly trivially handle this for most cases that
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234 // matter by putting a single cache in getInterleavedFrames
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235 // for short queries.
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236
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237 SampleBlock frames;
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238 m_reader->getInterleavedFrames(start, end - start, frames);
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239 float max = 0.0, min = 0.0, total = 0.0;
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240 size_t i = 0, count = 0;
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241
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242 while (i < end - start) {
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243
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244 size_t index = i * channels + channel;
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245 if (index >= frames.size()) break;
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246
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247 float sample = frames[index];
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248 if (sample > max || count == 0) max = sample;
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249 if (sample < min || count == 0) min = sample;
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250 total += fabsf(sample);
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251
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252 ++i;
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253 ++count;
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254
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255 if (count == blockSize) {
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256 ranges.push_back(Range(min, max, total / count));
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257 min = max = total = 0.0f;
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258 count = 0;
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259 }
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260 }
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261
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262 if (count > 0) {
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263 ranges.push_back(Range(min, max, total / count));
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264 }
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265
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266 return ranges;
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267
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268 } else {
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269
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270 QMutexLocker locker(&m_mutex);
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271
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272 const RangeBlock &cache = m_cache[cacheType];
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273
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274 size_t cacheBlock, div;
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275
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276 if (cacheType == 0) {
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277 cacheBlock = (1 << m_zoomConstraint.getMinCachePower());
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278 div = (1 << power) / cacheBlock;
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279 } else {
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280 cacheBlock = ((unsigned int)((1 << m_zoomConstraint.getMinCachePower()) * sqrt(2) + 0.01));
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281 div = ((unsigned int)((1 << power) * sqrt(2) + 0.01)) / cacheBlock;
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282 }
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283
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284 size_t startIndex = start / cacheBlock;
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285 size_t endIndex = end / cacheBlock;
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286
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287 float max = 0.0, min = 0.0, total = 0.0;
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288 size_t i = 0, count = 0;
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289
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290 //cerr << "blockSize is " << blockSize << ", cacheBlock " << cacheBlock << ", start " << start << ", end " << end << ", power is " << power << ", div is " << div << ", startIndex " << startIndex << ", endIndex " << endIndex << endl;
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291
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292 for (i = 0; i < endIndex - startIndex; ) {
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293
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294 size_t index = (i + startIndex) * channels + channel;
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295 if (index >= cache.size()) break;
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296
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297 const Range &range = cache[index];
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298 if (range.max > max || count == 0) max = range.max;
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299 if (range.min < min || count == 0) min = range.min;
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300 total += range.absmean;
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301
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302 ++i;
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303 ++count;
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304
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305 if (count == div) {
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306 ranges.push_back(Range(min, max, total / count));
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307 min = max = total = 0.0f;
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308 count = 0;
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309 }
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310 }
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311
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312 if (count > 0) {
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313 ranges.push_back(Range(min, max, total / count));
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314 }
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315 }
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316
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317 //cerr << "returning " << ranges.size() << " ranges" << endl;
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318 return ranges;
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319 }
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320
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321 WaveFileModel::Range
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322 WaveFileModel::getRange(size_t channel, size_t start, size_t end) const
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323 {
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324 Range range;
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325 if (!isOK()) return range;
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326
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327 if (end <= start) {
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328 std::cerr << "WARNING: Internal error: end <= start in WaveFileModel::getRange (end = " << end << ", start = " << start << ")" << std::endl;
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329 return range;
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330 }
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331
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332 size_t blockSize;
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333 for (blockSize = 1; blockSize <= end - start; blockSize *= 2);
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334 blockSize /= 2;
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335
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336 bool first = false;
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337
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338 size_t blockStart = (start / blockSize) * blockSize;
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339 size_t blockEnd = (end / blockSize) * blockSize;
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340
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341 if (blockStart < start) blockStart += blockSize;
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342
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343 if (blockEnd > blockStart) {
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344 RangeBlock ranges = getRanges(channel, blockStart, blockEnd, blockSize);
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345 for (size_t i = 0; i < ranges.size(); ++i) {
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346 if (first || ranges[i].min < range.min) range.min = ranges[i].min;
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347 if (first || ranges[i].max > range.max) range.max = ranges[i].max;
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348 if (first || ranges[i].absmean < range.absmean) range.absmean = ranges[i].absmean;
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349 first = false;
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350 }
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351 }
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352
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353 if (blockStart > start) {
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354 Range startRange = getRange(channel, start, blockStart);
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355 range.min = std::min(range.min, startRange.min);
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356 range.max = std::max(range.max, startRange.max);
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357 range.absmean = std::min(range.absmean, startRange.absmean);
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358 }
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359
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360 if (blockEnd < end) {
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361 Range endRange = getRange(channel, blockEnd, end);
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362 range.min = std::min(range.min, endRange.min);
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363 range.max = std::max(range.max, endRange.max);
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364 range.absmean = std::min(range.absmean, endRange.absmean);
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365 }
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366
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367 return range;
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368 }
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369
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370 void
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371 WaveFileModel::fillCache()
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372 {
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373 m_mutex.lock();
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374
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375 m_updateTimer = new QTimer(this);
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376 connect(m_updateTimer, SIGNAL(timeout()), this, SLOT(fillTimerTimedOut()));
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377 m_updateTimer->start(100);
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378
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379 m_fillThread = new RangeCacheFillThread(*this);
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380 connect(m_fillThread, SIGNAL(finished()), this, SLOT(cacheFilled()));
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381
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382 m_mutex.unlock();
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383 m_fillThread->start();
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384
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385 // std::cerr << "WaveFileModel::fillCache: started fill thread" << std::endl;
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|
386 }
|
Chris@147
|
387
|
Chris@147
|
388 void
|
Chris@147
|
389 WaveFileModel::fillTimerTimedOut()
|
Chris@147
|
390 {
|
Chris@147
|
391 if (m_fillThread) {
|
Chris@147
|
392 size_t fillExtent = m_fillThread->getFillExtent();
|
Chris@188
|
393 // cerr << "WaveFileModel::fillTimerTimedOut: extent = " << fillExtent << endl;
|
Chris@147
|
394 if (fillExtent > m_lastFillExtent) {
|
Chris@147
|
395 emit modelChanged(m_lastFillExtent, fillExtent);
|
Chris@147
|
396 m_lastFillExtent = fillExtent;
|
Chris@147
|
397 }
|
Chris@147
|
398 } else {
|
Chris@188
|
399 // cerr << "WaveFileModel::fillTimerTimedOut: no thread" << std::endl;
|
Chris@147
|
400 emit modelChanged();
|
Chris@147
|
401 }
|
Chris@147
|
402 }
|
Chris@147
|
403
|
Chris@147
|
404 void
|
Chris@147
|
405 WaveFileModel::cacheFilled()
|
Chris@147
|
406 {
|
Chris@147
|
407 m_mutex.lock();
|
Chris@147
|
408 delete m_fillThread;
|
Chris@147
|
409 m_fillThread = 0;
|
Chris@147
|
410 delete m_updateTimer;
|
Chris@147
|
411 m_updateTimer = 0;
|
Chris@147
|
412 m_mutex.unlock();
|
Chris@147
|
413 emit modelChanged();
|
Chris@188
|
414 // cerr << "WaveFileModel::cacheFilled" << endl;
|
Chris@175
|
415 }
|
Chris@175
|
416
|
Chris@175
|
417 void
|
Chris@147
|
418 WaveFileModel::RangeCacheFillThread::run()
|
Chris@147
|
419 {
|
Chris@147
|
420 size_t cacheBlockSize[2];
|
Chris@179
|
421 cacheBlockSize[0] = (1 << m_model.m_zoomConstraint.getMinCachePower());
|
Chris@179
|
422 cacheBlockSize[1] = ((unsigned int)((1 << m_model.m_zoomConstraint.getMinCachePower()) *
|
Chris@147
|
423 sqrt(2) + 0.01));
|
Chris@147
|
424
|
Chris@147
|
425 size_t frame = 0;
|
Chris@147
|
426 size_t readBlockSize = 16384;
|
Chris@147
|
427 SampleBlock block;
|
Chris@147
|
428
|
Chris@147
|
429 if (!m_model.isOK()) return;
|
Chris@147
|
430
|
Chris@147
|
431 size_t channels = m_model.getChannelCount();
|
Chris@187
|
432 bool updating = m_model.m_reader->isUpdating();
|
Chris@187
|
433
|
Chris@187
|
434 if (updating) {
|
Chris@187
|
435 while (channels == 0 && !m_model.m_exiting) {
|
Chris@188
|
436 // std::cerr << "WaveFileModel::fill: Waiting for channels..." << std::endl;
|
Chris@187
|
437 sleep(1);
|
Chris@187
|
438 channels = m_model.getChannelCount();
|
Chris@187
|
439 }
|
Chris@187
|
440 }
|
Chris@147
|
441
|
Chris@147
|
442 Range *range = new Range[2 * channels];
|
Chris@147
|
443 size_t count[2];
|
Chris@147
|
444 count[0] = count[1] = 0;
|
Chris@176
|
445
|
Chris@176
|
446 bool first = true;
|
Chris@176
|
447
|
Chris@176
|
448 while (first || updating) {
|
Chris@176
|
449
|
Chris@176
|
450 updating = m_model.m_reader->isUpdating();
|
Chris@187
|
451 m_frameCount = m_model.getFrameCount();
|
Chris@175
|
452
|
Chris@188
|
453 // std::cerr << "WaveFileModel::fill: frame = " << frame << ", count = " << m_frameCount << std::endl;
|
Chris@147
|
454
|
Chris@176
|
455 while (frame < m_frameCount) {
|
Chris@147
|
456
|
Chris@176
|
457 if (updating && (frame + readBlockSize > m_frameCount)) break;
|
Chris@176
|
458
|
Chris@176
|
459 m_model.m_reader->getInterleavedFrames(frame, readBlockSize, block);
|
Chris@176
|
460
|
Chris@176
|
461 for (size_t i = 0; i < readBlockSize; ++i) {
|
Chris@147
|
462
|
Chris@176
|
463 for (size_t ch = 0; ch < size_t(channels); ++ch) {
|
Chris@147
|
464
|
Chris@176
|
465 size_t index = channels * i + ch;
|
Chris@176
|
466 if (index >= block.size()) continue;
|
Chris@176
|
467 float sample = block[index];
|
Chris@176
|
468
|
Chris@176
|
469 for (size_t ct = 0; ct < 2; ++ct) {
|
Chris@176
|
470
|
Chris@176
|
471 size_t rangeIndex = ch * 2 + ct;
|
Chris@176
|
472
|
Chris@176
|
473 if (sample > range[rangeIndex].max || count[ct] == 0) {
|
Chris@176
|
474 range[rangeIndex].max = sample;
|
Chris@176
|
475 }
|
Chris@176
|
476 if (sample < range[rangeIndex].min || count[ct] == 0) {
|
Chris@176
|
477 range[rangeIndex].min = sample;
|
Chris@176
|
478 }
|
Chris@176
|
479 range[rangeIndex].absmean += fabsf(sample);
|
Chris@176
|
480 }
|
Chris@176
|
481 }
|
Chris@147
|
482
|
Chris@176
|
483 QMutexLocker locker(&m_model.m_mutex);
|
Chris@147
|
484 for (size_t ct = 0; ct < 2; ++ct) {
|
Chris@176
|
485 if (++count[ct] == cacheBlockSize[ct]) {
|
Chris@176
|
486 for (size_t ch = 0; ch < size_t(channels); ++ch) {
|
Chris@176
|
487 size_t rangeIndex = ch * 2 + ct;
|
Chris@176
|
488 range[rangeIndex].absmean /= count[ct];
|
Chris@176
|
489 m_model.m_cache[ct].push_back(range[rangeIndex]);
|
Chris@176
|
490 range[rangeIndex] = Range();
|
Chris@176
|
491 }
|
Chris@176
|
492 count[ct] = 0;
|
Chris@176
|
493 }
|
Chris@176
|
494 }
|
Chris@147
|
495
|
Chris@176
|
496 ++frame;
|
Chris@147
|
497 }
|
Chris@147
|
498
|
Chris@176
|
499 if (m_model.m_exiting) break;
|
Chris@176
|
500
|
Chris@176
|
501 m_fillExtent = frame;
|
Chris@147
|
502 }
|
Chris@147
|
503
|
Chris@176
|
504 first = false;
|
Chris@177
|
505 if (m_model.m_exiting) break;
|
Chris@187
|
506 if (updating) {
|
Chris@187
|
507 sleep(1);
|
Chris@187
|
508 }
|
Chris@147
|
509 }
|
Chris@147
|
510
|
Chris@177
|
511 if (!m_model.m_exiting) {
|
Chris@177
|
512
|
Chris@177
|
513 QMutexLocker locker(&m_model.m_mutex);
|
Chris@177
|
514 for (size_t ct = 0; ct < 2; ++ct) {
|
Chris@177
|
515 if (count[ct] > 0) {
|
Chris@177
|
516 for (size_t ch = 0; ch < size_t(channels); ++ch) {
|
Chris@177
|
517 size_t rangeIndex = ch * 2 + ct;
|
Chris@177
|
518 range[rangeIndex].absmean /= count[ct];
|
Chris@177
|
519 m_model.m_cache[ct].push_back(range[rangeIndex]);
|
Chris@177
|
520 range[rangeIndex] = Range();
|
Chris@177
|
521 }
|
Chris@177
|
522 count[ct] = 0;
|
Chris@147
|
523 }
|
Chris@177
|
524
|
Chris@177
|
525 const Range &rr = *m_model.m_cache[ct].begin();
|
Chris@177
|
526 MUNLOCK(&rr, m_model.m_cache[ct].capacity() * sizeof(Range));
|
Chris@147
|
527 }
|
Chris@147
|
528 }
|
Chris@147
|
529
|
Chris@147
|
530 delete[] range;
|
Chris@147
|
531
|
Chris@175
|
532 m_fillExtent = m_frameCount;
|
Chris@147
|
533
|
Chris@188
|
534 // for (size_t ct = 0; ct < 2; ++ct) {
|
Chris@188
|
535 // cerr << "Cache type " << ct << " now contains " << m_model.m_cache[ct].size() << " ranges" << endl;
|
Chris@188
|
536 // }
|
Chris@147
|
537 }
|
Chris@147
|
538
|
Chris@163
|
539 void
|
Chris@163
|
540 WaveFileModel::toXml(QTextStream &out,
|
Chris@163
|
541 QString indent,
|
Chris@163
|
542 QString extraAttributes) const
|
Chris@163
|
543 {
|
Chris@163
|
544 Model::toXml(out, indent,
|
Chris@163
|
545 QString("type=\"wavefile\" file=\"%1\" %2")
|
Chris@163
|
546 .arg(m_path).arg(extraAttributes));
|
Chris@163
|
547 }
|
Chris@163
|
548
|
Chris@147
|
549 QString
|
Chris@147
|
550 WaveFileModel::toXmlString(QString indent,
|
Chris@147
|
551 QString extraAttributes) const
|
Chris@147
|
552 {
|
Chris@147
|
553 return Model::toXmlString(indent,
|
Chris@147
|
554 QString("type=\"wavefile\" file=\"%1\" %2")
|
Chris@147
|
555 .arg(m_path).arg(extraAttributes));
|
Chris@147
|
556 }
|
Chris@147
|
557
|
Chris@147
|
558
|
Chris@147
|
559 #ifdef INCLUDE_MOCFILES
|
Chris@147
|
560 #ifdef INCLUDE_MOCFILES
|
Chris@147
|
561 #include "WaveFileModel.moc.cpp"
|
Chris@147
|
562 #endif
|
Chris@147
|
563 #endif
|
Chris@147
|
564
|