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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 "RealTimeEffectModelTransformer.h"
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17
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18 #include "plugin/RealTimePluginFactory.h"
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19 #include "plugin/RealTimePluginInstance.h"
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20 #include "plugin/PluginXml.h"
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21
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22 #include "data/model/Model.h"
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23 #include "data/model/SparseTimeValueModel.h"
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24 #include "data/model/DenseTimeValueModel.h"
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25 #include "data/model/WritableWaveFileModel.h"
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26 #include "data/model/WaveFileModel.h"
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27
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28 #include "TransformFactory.h"
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29
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30 #include <iostream>
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31
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32 RealTimeEffectModelTransformer::RealTimeEffectModelTransformer(Input in,
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33 const Transform &transform) :
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34 ModelTransformer(in, transform),
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35 m_plugin(0)
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36 {
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37 m_units = TransformFactory::getInstance()->getTransformUnits
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38 (transform.getIdentifier());
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39 m_outputNo =
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40 (transform.getOutput() == "A") ? -1 : transform.getOutput().toInt();
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41
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42 QString pluginId = transform.getPluginIdentifier();
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43
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44 if (!m_transform.getBlockSize()) m_transform.setBlockSize(1024);
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45
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46 // std::cerr << "RealTimeEffectModelTransformer::RealTimeEffectModelTransformer: plugin " << pluginId.toStdString() << ", output " << output << std::endl;
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47
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48 RealTimePluginFactory *factory =
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49 RealTimePluginFactory::instanceFor(pluginId);
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50
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51 if (!factory) {
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52 std::cerr << "RealTimeEffectModelTransformer: No factory available for plugin id \""
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53 << pluginId.toStdString() << "\"" << std::endl;
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54 return;
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55 }
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56
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57 DenseTimeValueModel *input = getConformingInput();
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58 if (!input) return;
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59
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60 m_plugin = factory->instantiatePlugin(pluginId, 0, 0,
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61 input->getSampleRate(),
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62 m_transform.getBlockSize(),
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63 input->getChannelCount());
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64
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65 if (!m_plugin) {
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66 std::cerr << "RealTimeEffectModelTransformer: Failed to instantiate plugin \""
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67 << pluginId.toStdString() << "\"" << std::endl;
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68 return;
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69 }
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70
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71 TransformFactory::getInstance()->setPluginParameters(m_transform, m_plugin);
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72
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73 if (m_outputNo >= 0 &&
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74 m_outputNo >= int(m_plugin->getControlOutputCount())) {
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75 std::cerr << "RealTimeEffectModelTransformer: Plugin has fewer than desired " << m_outputNo << " control outputs" << std::endl;
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76 return;
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77 }
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78
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79 if (m_outputNo == -1) {
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80
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81 size_t outputChannels = m_plugin->getAudioOutputCount();
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82 if (outputChannels > input->getChannelCount()) {
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83 outputChannels = input->getChannelCount();
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84 }
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85
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86 WritableWaveFileModel *model = new WritableWaveFileModel
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87 (input->getSampleRate(), outputChannels);
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88
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89 m_output = model;
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90
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91 } else {
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92
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93 SparseTimeValueModel *model = new SparseTimeValueModel
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94 (input->getSampleRate(), m_transform.getBlockSize(), 0.0, 0.0, false);
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95
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96 if (m_units != "") model->setScaleUnits(m_units);
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97
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98 m_output = model;
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99 }
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100 }
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101
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102 RealTimeEffectModelTransformer::~RealTimeEffectModelTransformer()
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103 {
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104 delete m_plugin;
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105 }
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106
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107 DenseTimeValueModel *
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108 RealTimeEffectModelTransformer::getConformingInput()
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109 {
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110 DenseTimeValueModel *dtvm =
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111 dynamic_cast<DenseTimeValueModel *>(getInputModel());
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112 if (!dtvm) {
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113 std::cerr << "RealTimeEffectModelTransformer::getConformingInput: WARNING: Input model is not conformable to DenseTimeValueModel" << std::endl;
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114 }
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115 return dtvm;
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116 }
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117
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118 void
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119 RealTimeEffectModelTransformer::run()
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120 {
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121 DenseTimeValueModel *input = getConformingInput();
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122 if (!input) return;
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123
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124 while (!input->isReady()) {
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125 if (dynamic_cast<WaveFileModel *>(input)) break; // no need to wait
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126 std::cerr << "RealTimeEffectModelTransformer::run: Waiting for input model to be ready..." << std::endl;
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127 sleep(1);
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128 }
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129
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130 SparseTimeValueModel *stvm = dynamic_cast<SparseTimeValueModel *>(m_output);
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131 WritableWaveFileModel *wwfm = dynamic_cast<WritableWaveFileModel *>(m_output);
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132 if (!stvm && !wwfm) return;
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133
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134 if (stvm && (m_outputNo >= int(m_plugin->getControlOutputCount()))) return;
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135
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136 size_t sampleRate = input->getSampleRate();
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137 size_t channelCount = input->getChannelCount();
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138 if (!wwfm && m_input.getChannel() != -1) channelCount = 1;
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139
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140 long blockSize = m_plugin->getBufferSize();
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141
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142 float **inbufs = m_plugin->getAudioInputBuffers();
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143
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144 long startFrame = m_input.getModel()->getStartFrame();
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145 long endFrame = m_input.getModel()->getEndFrame();
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146
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147 RealTime contextStartRT = m_transform.getStartTime();
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148 RealTime contextDurationRT = m_transform.getDuration();
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149
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150 long contextStart =
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151 RealTime::realTime2Frame(contextStartRT, sampleRate);
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152
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153 long contextDuration =
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154 RealTime::realTime2Frame(contextDurationRT, sampleRate);
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155
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156 if (contextStart == 0 || contextStart < startFrame) {
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157 contextStart = startFrame;
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158 }
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159
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160 if (contextDuration == 0) {
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161 contextDuration = endFrame - contextStart;
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162 }
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163 if (contextStart + contextDuration > endFrame) {
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164 contextDuration = endFrame - contextStart;
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165 }
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166
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167 if (wwfm) {
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168 wwfm->setStartFrame(contextStart);
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169 }
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170
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171 long blockFrame = contextStart;
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172
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173 long prevCompletion = 0;
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174
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175 long latency = m_plugin->getLatency();
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176
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177 while (blockFrame < contextStart + contextDuration + latency &&
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178 !m_abandoned) {
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179
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180 long completion =
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181 (((blockFrame - contextStart) / blockSize) * 99) /
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182 ((contextDuration) / blockSize);
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183
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184 long got = 0;
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185
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186 if (channelCount == 1) {
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187 if (inbufs && inbufs[0]) {
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188 got = input->getData
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189 (m_input.getChannel(), blockFrame, blockSize, inbufs[0]);
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190 while (got < blockSize) {
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191 inbufs[0][got++] = 0.0;
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192 }
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193 }
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194 for (size_t ch = 1; ch < m_plugin->getAudioInputCount(); ++ch) {
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195 for (long i = 0; i < blockSize; ++i) {
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196 inbufs[ch][i] = inbufs[0][i];
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197 }
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198 }
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199 } else {
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200 got = input->getData(0, channelCount - 1,
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201 blockFrame, blockSize,
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202 inbufs);
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203 while (got < blockSize) {
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204 for (size_t ch = 0; ch < channelCount; ++ch) {
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205 inbufs[ch][got] = 0.0;
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206 }
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207 ++got;
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208 }
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209 for (size_t ch = channelCount; ch < m_plugin->getAudioInputCount(); ++ch) {
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210 for (long i = 0; i < blockSize; ++i) {
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211 inbufs[ch][i] = inbufs[ch % channelCount][i];
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212 }
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213 }
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214 }
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215
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216 /*
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217 std::cerr << "Input for plugin: " << m_plugin->getAudioInputCount() << " channels "<< std::endl;
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218
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219 for (size_t ch = 0; ch < m_plugin->getAudioInputCount(); ++ch) {
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220 std::cerr << "Input channel " << ch << std::endl;
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221 for (size_t i = 0; i < 100; ++i) {
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222 std::cerr << inbufs[ch][i] << " ";
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223 if (isnan(inbufs[ch][i])) {
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224 std::cerr << "\n\nWARNING: NaN in audio input" << std::endl;
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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
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230 m_plugin->run(Vamp::RealTime::frame2RealTime(blockFrame, sampleRate));
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231
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232 if (stvm) {
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233
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234 float value = m_plugin->getControlOutputValue(m_outputNo);
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235
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236 long pointFrame = blockFrame;
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237 if (pointFrame > latency) pointFrame -= latency;
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238 else pointFrame = 0;
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239
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240 stvm->addPoint(SparseTimeValueModel::Point
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241 (pointFrame, value, ""));
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242
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243 } else if (wwfm) {
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244
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245 float **outbufs = m_plugin->getAudioOutputBuffers();
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246
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247 if (outbufs) {
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248
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249 if (blockFrame >= latency) {
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250 long writeSize = std::min
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251 (blockSize,
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252 contextStart + contextDuration + latency - blockFrame);
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253 wwfm->addSamples(outbufs, writeSize);
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254 } else if (blockFrame + blockSize >= latency) {
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255 long offset = latency - blockFrame;
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256 long count = blockSize - offset;
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257 float **tmp = new float *[channelCount];
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258 for (size_t c = 0; c < channelCount; ++c) {
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259 tmp[c] = outbufs[c] + offset;
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260 }
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261 wwfm->addSamples(tmp, count);
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262 delete[] tmp;
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263 }
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264 }
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265 }
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266
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267 if (blockFrame == contextStart || completion > prevCompletion) {
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268 if (stvm) stvm->setCompletion(completion);
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269 if (wwfm) wwfm->setCompletion(completion);
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270 prevCompletion = completion;
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271 }
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272
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273 blockFrame += blockSize;
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274 }
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275
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276 if (m_abandoned) return;
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277
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278 if (stvm) stvm->setCompletion(100);
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279 if (wwfm) wwfm->setCompletion(100);
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280 }
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281
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