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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 "FeatureExtractionModelTransformer.h"
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17
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18 #include "plugin/FeatureExtractionPluginFactory.h"
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19 #include "plugin/PluginXml.h"
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20 #include "vamp-sdk/Plugin.h"
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21
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22 #include "data/model/Model.h"
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23 #include "base/Window.h"
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24 #include "base/Exceptions.h"
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25 #include "data/model/SparseOneDimensionalModel.h"
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26 #include "data/model/SparseTimeValueModel.h"
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27 #include "data/model/EditableDenseThreeDimensionalModel.h"
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28 #include "data/model/DenseTimeValueModel.h"
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29 #include "data/model/NoteModel.h"
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30 #include "data/model/RegionModel.h"
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31 #include "data/model/FFTModel.h"
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32 #include "data/model/WaveFileModel.h"
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33
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34 #include "TransformFactory.h"
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35
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36 #include <iostream>
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37
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38 FeatureExtractionModelTransformer::FeatureExtractionModelTransformer(Input in,
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39 const Transform &transform) :
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40 ModelTransformer(in, transform),
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41 m_plugin(0),
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42 m_descriptor(0),
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43 m_outputFeatureNo(0)
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44 {
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45 // std::cerr << "FeatureExtractionModelTransformer::FeatureExtractionModelTransformer: plugin " << pluginId.toStdString() << ", outputName " << m_transform.getOutput().toStdString() << std::endl;
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46
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47 QString pluginId = transform.getPluginIdentifier();
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48
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49 FeatureExtractionPluginFactory *factory =
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50 FeatureExtractionPluginFactory::instanceFor(pluginId);
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51
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52 if (!factory) {
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53 m_message = tr("No factory available for feature extraction plugin id \"%1\" (unknown plugin type, or internal error?)").arg(pluginId);
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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) {
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59 m_message = tr("Input model for feature extraction plugin \"%1\" is of wrong type (internal error?)").arg(pluginId);
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60 return;
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61 }
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62
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63 m_plugin = factory->instantiatePlugin(pluginId, input->getSampleRate());
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64 if (!m_plugin) {
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65 m_message = tr("Failed to instantiate plugin \"%1\"").arg(pluginId);
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66 return;
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67 }
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68
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69 TransformFactory::getInstance()->makeContextConsistentWithPlugin
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70 (m_transform, m_plugin);
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71
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72 TransformFactory::getInstance()->setPluginParameters
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73 (m_transform, m_plugin);
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74
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75 size_t channelCount = input->getChannelCount();
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76 if (m_plugin->getMaxChannelCount() < channelCount) {
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77 channelCount = 1;
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78 }
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79 if (m_plugin->getMinChannelCount() > channelCount) {
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80 m_message = tr("Cannot provide enough channels to feature extraction plugin \"%1\" (plugin min is %2, max %3; input model has %4)")
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81 .arg(pluginId)
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82 .arg(m_plugin->getMinChannelCount())
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83 .arg(m_plugin->getMaxChannelCount())
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84 .arg(input->getChannelCount());
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85 return;
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86 }
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87
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88 std::cerr << "Initialising feature extraction plugin with channels = "
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89 << channelCount << ", step = " << m_transform.getStepSize()
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90 << ", block = " << m_transform.getBlockSize() << std::endl;
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91
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92 if (!m_plugin->initialise(channelCount,
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93 m_transform.getStepSize(),
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94 m_transform.getBlockSize())) {
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95
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96 size_t pstep = m_transform.getStepSize();
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97 size_t pblock = m_transform.getBlockSize();
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98
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99 m_transform.setStepSize(0);
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100 m_transform.setBlockSize(0);
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101 TransformFactory::getInstance()->makeContextConsistentWithPlugin
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102 (m_transform, m_plugin);
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103
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104 if (m_transform.getStepSize() != pstep ||
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105 m_transform.getBlockSize() != pblock) {
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106
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107 if (!m_plugin->initialise(channelCount,
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108 m_transform.getStepSize(),
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109 m_transform.getBlockSize())) {
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110
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111 m_message = tr("Failed to initialise feature extraction plugin \"%1\"").arg(pluginId);
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112 return;
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113
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114 } else {
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115
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116 m_message = tr("Feature extraction plugin \"%1\" rejected the given step and block sizes (%2 and %3); using plugin defaults (%4 and %5) instead")
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117 .arg(pluginId)
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118 .arg(pstep)
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119 .arg(pblock)
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120 .arg(m_transform.getStepSize())
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121 .arg(m_transform.getBlockSize());
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122 }
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123
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124 } else {
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125
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126 m_message = tr("Failed to initialise feature extraction plugin \"%1\"").arg(pluginId);
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127 return;
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128 }
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129 }
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130
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131 if (m_transform.getPluginVersion() != "") {
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132 QString pv = QString("%1").arg(m_plugin->getPluginVersion());
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133 if (pv != m_transform.getPluginVersion()) {
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134 QString vm = tr("Transform was configured for version %1 of plugin \"%2\", but the plugin being used is version %3")
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135 .arg(m_transform.getPluginVersion())
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136 .arg(pluginId)
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137 .arg(pv);
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138 if (m_message != "") {
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139 m_message = QString("%1; %2").arg(vm).arg(m_message);
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140 } else {
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141 m_message = vm;
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142 }
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143 }
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144 }
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145
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146 Vamp::Plugin::OutputList outputs = m_plugin->getOutputDescriptors();
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147
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148 if (outputs.empty()) {
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149 m_message = tr("Plugin \"%1\" has no outputs").arg(pluginId);
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150 return;
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151 }
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152
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153 for (size_t i = 0; i < outputs.size(); ++i) {
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154 // std::cerr << "comparing output " << i << " name \"" << outputs[i].identifier << "\" with expected \"" << m_transform.getOutput().toStdString() << "\"" << std::endl;
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155 if (m_transform.getOutput() == "" ||
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156 outputs[i].identifier == m_transform.getOutput().toStdString()) {
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157 m_outputFeatureNo = i;
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158 m_descriptor = new Vamp::Plugin::OutputDescriptor(outputs[i]);
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159 break;
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160 }
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161 }
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162
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163 if (!m_descriptor) {
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164 m_message = tr("Plugin \"%1\" has no output named \"%2\"")
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165 .arg(pluginId)
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166 .arg(m_transform.getOutput());
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167 return;
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168 }
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169
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170 // std::cerr << "FeatureExtractionModelTransformer: output sample type "
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171 // << m_descriptor->sampleType << std::endl;
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172
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173 int binCount = 1;
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174 float minValue = 0.0, maxValue = 0.0;
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175 bool haveExtents = false;
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176
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177 if (m_descriptor->hasFixedBinCount) {
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178 binCount = m_descriptor->binCount;
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179 }
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180
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181 // std::cerr << "FeatureExtractionModelTransformer: output bin count "
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182 // << binCount << std::endl;
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183
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184 if (binCount > 0 && m_descriptor->hasKnownExtents) {
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185 minValue = m_descriptor->minValue;
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186 maxValue = m_descriptor->maxValue;
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187 haveExtents = true;
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188 }
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189
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190 size_t modelRate = input->getSampleRate();
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191 size_t modelResolution = 1;
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192
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193 switch (m_descriptor->sampleType) {
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194
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195 case Vamp::Plugin::OutputDescriptor::VariableSampleRate:
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196 if (m_descriptor->sampleRate != 0.0) {
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197 modelResolution = size_t(modelRate / m_descriptor->sampleRate + 0.001);
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198 }
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199 break;
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200
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201 case Vamp::Plugin::OutputDescriptor::OneSamplePerStep:
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202 modelResolution = m_transform.getStepSize();
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203 break;
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204
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205 case Vamp::Plugin::OutputDescriptor::FixedSampleRate:
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206 modelRate = size_t(m_descriptor->sampleRate + 0.001);
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207 break;
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208 }
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209
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210 bool preDurationPlugin = (m_plugin->getVampApiVersion() < 2);
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211
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212 if (binCount == 0 &&
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213 (preDurationPlugin || !m_descriptor->hasDuration)) {
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214
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215 // Anything with no value and no duration is an instant
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216
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217 m_output = new SparseOneDimensionalModel(modelRate, modelResolution,
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218 false);
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219
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220 } else if ((preDurationPlugin && binCount > 1 &&
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221 (m_descriptor->sampleType ==
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222 Vamp::Plugin::OutputDescriptor::VariableSampleRate)) ||
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223 (!preDurationPlugin && m_descriptor->hasDuration)) {
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224
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225 // For plugins using the old v1 API without explicit duration,
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226 // we treat anything that has multiple bins (i.e. that has the
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227 // potential to have value and duration) and a variable sample
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228 // rate as a note model, taking its values as pitch, duration
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229 // and velocity (if present) respectively. This is the same
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230 // behaviour as always applied by SV to these plugins in the
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231 // past.
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232
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233 // For plugins with the newer API, we treat anything with
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234 // duration as either a note model with pitch and velocity, or
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235 // a region model.
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236
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237 // How do we know whether it's an interval or note model?
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238 // What's the essential difference? Is a note model any
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239 // interval model using a Hz or "MIDI pitch" scale? There
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240 // isn't really a reliable test for "MIDI pitch"... Does a
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241 // note model always have velocity? This is a good question
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242 // to be addressed by accompanying RDF, but for the moment we
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243 // will do the following...
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244
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245 bool isNoteModel = false;
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246
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247 // Regions have only value (and duration -- we can't extract a
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248 // region model from an old-style plugin that doesn't support
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249 // duration)
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250 if (binCount > 1) isNoteModel = true;
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251
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252 // Regions do not have units of Hz (a sweeping assumption!)
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253 if (m_descriptor->unit == "Hz") isNoteModel = true;
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254
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255 // If we had a "sparse 3D model", we would have the additional
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256 // problem of determining whether to use that here (if bin
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257 // count > 1). But we don't.
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258
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259 if (isNoteModel) {
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260
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261 NoteModel *model;
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262 if (haveExtents) {
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263 model = new NoteModel
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264 (modelRate, modelResolution, minValue, maxValue, false);
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265 } else {
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266 model = new NoteModel
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267 (modelRate, modelResolution, false);
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268 }
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269 model->setScaleUnits(m_descriptor->unit.c_str());
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270 m_output = model;
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271
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272 } else {
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273
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274 RegionModel *model;
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275 if (haveExtents) {
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276 model = new RegionModel
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277 (modelRate, modelResolution, minValue, maxValue, false);
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278 } else {
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279 model = new RegionModel
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280 (modelRate, modelResolution, false);
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281 }
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282 model->setScaleUnits(m_descriptor->unit.c_str());
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283 m_output = model;
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284 }
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285
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286 } else if (binCount == 1 ||
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287 (m_descriptor->sampleType ==
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288 Vamp::Plugin::OutputDescriptor::VariableSampleRate)) {
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289
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290 // Anything that is not a 1D, note, or interval model and that
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291 // has only one value per result must be a sparse time value
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292 // model.
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293
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294 // Anything that is not a 1D, note, or interval model and that
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295 // has a variable sample rate is also treated as a sparse time
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296 // value model regardless of its bin count, because we lack a
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297 // sparse 3D model.
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298
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299 SparseTimeValueModel *model;
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300 if (haveExtents) {
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301 model = new SparseTimeValueModel
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302 (modelRate, modelResolution, minValue, maxValue, false);
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303 } else {
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304 model = new SparseTimeValueModel
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305 (modelRate, modelResolution, false);
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306 }
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307 model->setScaleUnits(outputs[m_outputFeatureNo].unit.c_str());
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308
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309 m_output = model;
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310
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311 } else {
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312
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313 // Anything that is not a 1D, note, or interval model and that
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314 // has a fixed sample rate and more than one value per result
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315 // must be a dense 3D model.
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316
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317 EditableDenseThreeDimensionalModel *model =
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318 new EditableDenseThreeDimensionalModel
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319 (modelRate, modelResolution, binCount, false);
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320
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321 if (!m_descriptor->binNames.empty()) {
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322 std::vector<QString> names;
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323 for (size_t i = 0; i < m_descriptor->binNames.size(); ++i) {
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324 names.push_back(m_descriptor->binNames[i].c_str());
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325 }
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326 model->setBinNames(names);
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327 }
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328
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329 m_output = model;
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330 }
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331
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332 if (m_output) m_output->setSourceModel(input);
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333 }
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334
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335 FeatureExtractionModelTransformer::~FeatureExtractionModelTransformer()
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336 {
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337 // std::cerr << "FeatureExtractionModelTransformer::~FeatureExtractionModelTransformer()" << std::endl;
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338 delete m_plugin;
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339 delete m_descriptor;
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340 }
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341
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342 DenseTimeValueModel *
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343 FeatureExtractionModelTransformer::getConformingInput()
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344 {
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345 // std::cerr << "FeatureExtractionModelTransformer::getConformingInput: input model is " << getInputModel() << std::endl;
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346
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347 DenseTimeValueModel *dtvm =
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348 dynamic_cast<DenseTimeValueModel *>(getInputModel());
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349 if (!dtvm) {
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350 std::cerr << "FeatureExtractionModelTransformer::getConformingInput: WARNING: Input model is not conformable to DenseTimeValueModel" << std::endl;
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351 }
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352 return dtvm;
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353 }
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354
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355 void
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356 FeatureExtractionModelTransformer::run()
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357 {
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358 DenseTimeValueModel *input = getConformingInput();
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359 if (!input) return;
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360
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361 if (!m_output) return;
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362
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363 while (!input->isReady()) {
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364 std::cerr << "FeatureExtractionModelTransformer::run: Waiting for input model to be ready..." << std::endl;
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365 sleep(1);
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366 }
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367
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368 size_t sampleRate = input->getSampleRate();
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369
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Chris@320
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370 size_t channelCount = input->getChannelCount();
|
Chris@320
|
371 if (m_plugin->getMaxChannelCount() < channelCount) {
|
Chris@320
|
372 channelCount = 1;
|
Chris@320
|
373 }
|
Chris@320
|
374
|
Chris@320
|
375 float **buffers = new float*[channelCount];
|
Chris@320
|
376 for (size_t ch = 0; ch < channelCount; ++ch) {
|
Chris@350
|
377 buffers[ch] = new float[m_transform.getBlockSize() + 2];
|
Chris@320
|
378 }
|
Chris@320
|
379
|
Chris@350
|
380 size_t stepSize = m_transform.getStepSize();
|
Chris@350
|
381 size_t blockSize = m_transform.getBlockSize();
|
Chris@350
|
382
|
Chris@320
|
383 bool frequencyDomain = (m_plugin->getInputDomain() ==
|
Chris@320
|
384 Vamp::Plugin::FrequencyDomain);
|
Chris@320
|
385 std::vector<FFTModel *> fftModels;
|
Chris@320
|
386
|
Chris@320
|
387 if (frequencyDomain) {
|
Chris@320
|
388 for (size_t ch = 0; ch < channelCount; ++ch) {
|
Chris@320
|
389 FFTModel *model = new FFTModel
|
Chris@350
|
390 (getConformingInput(),
|
Chris@350
|
391 channelCount == 1 ? m_input.getChannel() : ch,
|
Chris@350
|
392 m_transform.getWindowType(),
|
Chris@350
|
393 blockSize,
|
Chris@350
|
394 stepSize,
|
Chris@350
|
395 blockSize,
|
Chris@334
|
396 false,
|
Chris@334
|
397 StorageAdviser::PrecisionCritical);
|
Chris@320
|
398 if (!model->isOK()) {
|
Chris@320
|
399 delete model;
|
Chris@320
|
400 setCompletion(100);
|
Chris@387
|
401 //!!! need a better way to handle this -- previously we were using a QMessageBox but that isn't an appropriate thing to do here either
|
Chris@387
|
402 throw AllocationFailed("Failed to create the FFT model for this feature extraction model transformer");
|
Chris@320
|
403 }
|
Chris@320
|
404 model->resume();
|
Chris@320
|
405 fftModels.push_back(model);
|
Chris@320
|
406 }
|
Chris@320
|
407 }
|
Chris@320
|
408
|
Chris@350
|
409 long startFrame = m_input.getModel()->getStartFrame();
|
Chris@350
|
410 long endFrame = m_input.getModel()->getEndFrame();
|
Chris@320
|
411
|
Chris@350
|
412 RealTime contextStartRT = m_transform.getStartTime();
|
Chris@350
|
413 RealTime contextDurationRT = m_transform.getDuration();
|
Chris@350
|
414
|
Chris@350
|
415 long contextStart =
|
Chris@350
|
416 RealTime::realTime2Frame(contextStartRT, sampleRate);
|
Chris@350
|
417
|
Chris@350
|
418 long contextDuration =
|
Chris@350
|
419 RealTime::realTime2Frame(contextDurationRT, sampleRate);
|
Chris@320
|
420
|
Chris@320
|
421 if (contextStart == 0 || contextStart < startFrame) {
|
Chris@320
|
422 contextStart = startFrame;
|
Chris@320
|
423 }
|
Chris@320
|
424
|
Chris@320
|
425 if (contextDuration == 0) {
|
Chris@320
|
426 contextDuration = endFrame - contextStart;
|
Chris@320
|
427 }
|
Chris@320
|
428 if (contextStart + contextDuration > endFrame) {
|
Chris@320
|
429 contextDuration = endFrame - contextStart;
|
Chris@320
|
430 }
|
Chris@320
|
431
|
Chris@320
|
432 long blockFrame = contextStart;
|
Chris@320
|
433
|
Chris@320
|
434 long prevCompletion = 0;
|
Chris@320
|
435
|
Chris@320
|
436 setCompletion(0);
|
Chris@320
|
437
|
Chris@320
|
438 while (!m_abandoned) {
|
Chris@320
|
439
|
Chris@320
|
440 if (frequencyDomain) {
|
Chris@350
|
441 if (blockFrame - int(blockSize)/2 >
|
Chris@320
|
442 contextStart + contextDuration) break;
|
Chris@320
|
443 } else {
|
Chris@320
|
444 if (blockFrame >=
|
Chris@320
|
445 contextStart + contextDuration) break;
|
Chris@320
|
446 }
|
Chris@320
|
447
|
Chris@331
|
448 // std::cerr << "FeatureExtractionModelTransformer::run: blockFrame "
|
Chris@320
|
449 // << blockFrame << ", endFrame " << endFrame << ", blockSize "
|
Chris@350
|
450 // << blockSize << std::endl;
|
Chris@320
|
451
|
Chris@320
|
452 long completion =
|
Chris@350
|
453 (((blockFrame - contextStart) / stepSize) * 99) /
|
Chris@350
|
454 (contextDuration / stepSize);
|
Chris@320
|
455
|
Chris@350
|
456 // channelCount is either m_input.getModel()->channelCount or 1
|
Chris@320
|
457
|
Chris@363
|
458 if (frequencyDomain) {
|
Chris@363
|
459 for (size_t ch = 0; ch < channelCount; ++ch) {
|
Chris@350
|
460 int column = (blockFrame - startFrame) / stepSize;
|
Chris@350
|
461 for (size_t i = 0; i <= blockSize/2; ++i) {
|
Chris@320
|
462 fftModels[ch]->getValuesAt
|
Chris@320
|
463 (column, i, buffers[ch][i*2], buffers[ch][i*2+1]);
|
Chris@320
|
464 }
|
Chris@363
|
465 }
|
Chris@363
|
466 } else {
|
Chris@363
|
467 getFrames(channelCount, blockFrame, blockSize, buffers);
|
Chris@320
|
468 }
|
Chris@320
|
469
|
Chris@320
|
470 Vamp::Plugin::FeatureSet features = m_plugin->process
|
Chris@320
|
471 (buffers, Vamp::RealTime::frame2RealTime(blockFrame, sampleRate));
|
Chris@320
|
472
|
Chris@320
|
473 for (size_t fi = 0; fi < features[m_outputFeatureNo].size(); ++fi) {
|
Chris@320
|
474 Vamp::Plugin::Feature feature =
|
Chris@320
|
475 features[m_outputFeatureNo][fi];
|
Chris@320
|
476 addFeature(blockFrame, feature);
|
Chris@320
|
477 }
|
Chris@320
|
478
|
Chris@320
|
479 if (blockFrame == contextStart || completion > prevCompletion) {
|
Chris@320
|
480 setCompletion(completion);
|
Chris@320
|
481 prevCompletion = completion;
|
Chris@320
|
482 }
|
Chris@320
|
483
|
Chris@350
|
484 blockFrame += stepSize;
|
Chris@320
|
485 }
|
Chris@320
|
486
|
Chris@320
|
487 if (m_abandoned) return;
|
Chris@320
|
488
|
Chris@320
|
489 Vamp::Plugin::FeatureSet features = m_plugin->getRemainingFeatures();
|
Chris@320
|
490
|
Chris@320
|
491 for (size_t fi = 0; fi < features[m_outputFeatureNo].size(); ++fi) {
|
Chris@320
|
492 Vamp::Plugin::Feature feature =
|
Chris@320
|
493 features[m_outputFeatureNo][fi];
|
Chris@320
|
494 addFeature(blockFrame, feature);
|
Chris@320
|
495 }
|
Chris@320
|
496
|
Chris@320
|
497 if (frequencyDomain) {
|
Chris@320
|
498 for (size_t ch = 0; ch < channelCount; ++ch) {
|
Chris@320
|
499 delete fftModels[ch];
|
Chris@320
|
500 }
|
Chris@320
|
501 }
|
Chris@320
|
502
|
Chris@320
|
503 setCompletion(100);
|
Chris@320
|
504 }
|
Chris@320
|
505
|
Chris@320
|
506 void
|
Chris@363
|
507 FeatureExtractionModelTransformer::getFrames(int channelCount,
|
Chris@363
|
508 long startFrame, long size,
|
Chris@363
|
509 float **buffers)
|
Chris@320
|
510 {
|
Chris@320
|
511 long offset = 0;
|
Chris@320
|
512
|
Chris@320
|
513 if (startFrame < 0) {
|
Chris@363
|
514 for (int c = 0; c < channelCount; ++c) {
|
Chris@363
|
515 for (int i = 0; i < size && startFrame + i < 0; ++i) {
|
Chris@363
|
516 buffers[c][i] = 0.0f;
|
Chris@363
|
517 }
|
Chris@320
|
518 }
|
Chris@320
|
519 offset = -startFrame;
|
Chris@320
|
520 size -= offset;
|
Chris@320
|
521 if (size <= 0) return;
|
Chris@320
|
522 startFrame = 0;
|
Chris@320
|
523 }
|
Chris@320
|
524
|
Chris@350
|
525 DenseTimeValueModel *input = getConformingInput();
|
Chris@350
|
526 if (!input) return;
|
Chris@363
|
527
|
Chris@363
|
528 long got = 0;
|
Chris@350
|
529
|
Chris@363
|
530 if (channelCount == 1) {
|
Chris@363
|
531
|
Chris@363
|
532 got = input->getData(m_input.getChannel(), startFrame, size,
|
Chris@363
|
533 buffers[0] + offset);
|
Chris@363
|
534
|
Chris@363
|
535 if (m_input.getChannel() == -1 && input->getChannelCount() > 1) {
|
Chris@363
|
536 // use mean instead of sum, as plugin input
|
Chris@363
|
537 float cc = float(input->getChannelCount());
|
Chris@363
|
538 for (long i = 0; i < size; ++i) {
|
Chris@363
|
539 buffers[0][i + offset] /= cc;
|
Chris@363
|
540 }
|
Chris@363
|
541 }
|
Chris@363
|
542
|
Chris@363
|
543 } else {
|
Chris@363
|
544
|
Chris@363
|
545 float **writebuf = buffers;
|
Chris@363
|
546 if (offset > 0) {
|
Chris@363
|
547 writebuf = new float *[channelCount];
|
Chris@363
|
548 for (int i = 0; i < channelCount; ++i) {
|
Chris@363
|
549 writebuf[i] = buffers[i] + offset;
|
Chris@363
|
550 }
|
Chris@363
|
551 }
|
Chris@363
|
552
|
Chris@363
|
553 got = input->getData(0, channelCount-1, startFrame, size, writebuf);
|
Chris@363
|
554
|
Chris@363
|
555 if (writebuf != buffers) delete[] writebuf;
|
Chris@363
|
556 }
|
Chris@320
|
557
|
Chris@320
|
558 while (got < size) {
|
Chris@363
|
559 for (int c = 0; c < channelCount; ++c) {
|
Chris@363
|
560 buffers[c][got + offset] = 0.0;
|
Chris@363
|
561 }
|
Chris@320
|
562 ++got;
|
Chris@320
|
563 }
|
Chris@320
|
564 }
|
Chris@320
|
565
|
Chris@320
|
566 void
|
Chris@331
|
567 FeatureExtractionModelTransformer::addFeature(size_t blockFrame,
|
Chris@320
|
568 const Vamp::Plugin::Feature &feature)
|
Chris@320
|
569 {
|
Chris@350
|
570 size_t inputRate = m_input.getModel()->getSampleRate();
|
Chris@320
|
571
|
Chris@331
|
572 // std::cerr << "FeatureExtractionModelTransformer::addFeature("
|
Chris@320
|
573 // << blockFrame << ")" << std::endl;
|
Chris@320
|
574
|
Chris@320
|
575 int binCount = 1;
|
Chris@320
|
576 if (m_descriptor->hasFixedBinCount) {
|
Chris@320
|
577 binCount = m_descriptor->binCount;
|
Chris@320
|
578 }
|
Chris@320
|
579
|
Chris@320
|
580 size_t frame = blockFrame;
|
Chris@320
|
581
|
Chris@320
|
582 if (m_descriptor->sampleType ==
|
Chris@320
|
583 Vamp::Plugin::OutputDescriptor::VariableSampleRate) {
|
Chris@320
|
584
|
Chris@320
|
585 if (!feature.hasTimestamp) {
|
Chris@320
|
586 std::cerr
|
Chris@331
|
587 << "WARNING: FeatureExtractionModelTransformer::addFeature: "
|
Chris@320
|
588 << "Feature has variable sample rate but no timestamp!"
|
Chris@320
|
589 << std::endl;
|
Chris@320
|
590 return;
|
Chris@320
|
591 } else {
|
Chris@320
|
592 frame = Vamp::RealTime::realTime2Frame(feature.timestamp, inputRate);
|
Chris@320
|
593 }
|
Chris@320
|
594
|
Chris@320
|
595 } else if (m_descriptor->sampleType ==
|
Chris@320
|
596 Vamp::Plugin::OutputDescriptor::FixedSampleRate) {
|
Chris@320
|
597
|
Chris@320
|
598 if (feature.hasTimestamp) {
|
Chris@320
|
599 //!!! warning: sampleRate may be non-integral
|
Chris@320
|
600 frame = Vamp::RealTime::realTime2Frame(feature.timestamp,
|
Chris@320
|
601 lrintf(m_descriptor->sampleRate));
|
Chris@320
|
602 } else {
|
Chris@320
|
603 frame = m_output->getEndFrame();
|
Chris@320
|
604 }
|
Chris@320
|
605 }
|
Chris@320
|
606
|
Chris@441
|
607 // Rather than repeat the complicated tests from the constructor
|
Chris@441
|
608 // to determine what sort of model we must be adding the features
|
Chris@441
|
609 // to, we instead test what sort of model the constructor decided
|
Chris@441
|
610 // to create.
|
Chris@320
|
611
|
Chris@441
|
612 if (isOutput<SparseOneDimensionalModel>()) {
|
Chris@441
|
613
|
Chris@441
|
614 SparseOneDimensionalModel *model =
|
Chris@350
|
615 getConformingOutput<SparseOneDimensionalModel>();
|
Chris@320
|
616 if (!model) return;
|
Chris@350
|
617
|
Chris@441
|
618 model->addPoint(SparseOneDimensionalModel::Point
|
Chris@441
|
619 (frame, feature.label.c_str()));
|
Chris@320
|
620
|
Chris@441
|
621 } else if (isOutput<SparseTimeValueModel>()) {
|
Chris@320
|
622
|
Chris@320
|
623 float value = 0.0;
|
Chris@320
|
624 if (feature.values.size() > 0) value = feature.values[0];
|
Chris@320
|
625
|
Chris@350
|
626 SparseTimeValueModel *model =
|
Chris@350
|
627 getConformingOutput<SparseTimeValueModel>();
|
Chris@320
|
628 if (!model) return;
|
Chris@350
|
629
|
Chris@441
|
630 model->addPoint(SparseTimeValueModel::Point
|
Chris@441
|
631 (frame, value, feature.label.c_str()));
|
Chris@320
|
632
|
Chris@441
|
633 } else if (isOutput<NoteModel>() || isOutput<RegionModel>()) {
|
Chris@320
|
634
|
Chris@441
|
635 int index = 0;
|
Chris@441
|
636
|
Chris@441
|
637 float value = 0.0;
|
Chris@441
|
638 if (feature.values.size() > index) {
|
Chris@441
|
639 value = feature.values[index++];
|
Chris@441
|
640 }
|
Chris@320
|
641
|
Chris@320
|
642 float duration = 1;
|
Chris@441
|
643 if (feature.hasDuration) {
|
Chris@441
|
644 duration = Vamp::RealTime::realTime2Frame(feature.duration, inputRate);
|
Chris@441
|
645 } else {
|
Chris@441
|
646 if (feature.values.size() > index) {
|
Chris@441
|
647 duration = feature.values[index++];
|
Chris@441
|
648 }
|
Chris@441
|
649 }
|
Chris@320
|
650
|
Chris@441
|
651 if (isOutput<NoteModel>()) {
|
Chris@320
|
652
|
Chris@441
|
653 float velocity = 100;
|
Chris@441
|
654 if (feature.values.size() > index) {
|
Chris@441
|
655 velocity = feature.values[index++];
|
Chris@441
|
656 }
|
Chris@441
|
657 if (velocity < 0) velocity = 127;
|
Chris@441
|
658 if (velocity > 127) velocity = 127;
|
Chris@320
|
659
|
Chris@441
|
660 NoteModel *model = getConformingOutput<NoteModel>();
|
Chris@441
|
661 if (!model) return;
|
Chris@441
|
662 model->addPoint(NoteModel::Point(frame, value, // value is pitch
|
Chris@441
|
663 lrintf(duration),
|
Chris@441
|
664 velocity / 127.f,
|
Chris@441
|
665 feature.label.c_str()));
|
Chris@441
|
666 } else {
|
Chris@441
|
667 RegionModel *model = getConformingOutput<RegionModel>();
|
Chris@441
|
668 if (model) {
|
Chris@441
|
669 model->addPoint(RegionModel::Point(frame, value,
|
Chris@441
|
670 lrintf(duration),
|
Chris@441
|
671 feature.label.c_str()));
|
Chris@441
|
672 } else return;
|
Chris@441
|
673 }
|
Chris@320
|
674
|
Chris@441
|
675 } else if (isOutput<EditableDenseThreeDimensionalModel>()) {
|
Chris@320
|
676
|
Chris@320
|
677 DenseThreeDimensionalModel::Column values = feature.values;
|
Chris@320
|
678
|
Chris@320
|
679 EditableDenseThreeDimensionalModel *model =
|
Chris@350
|
680 getConformingOutput<EditableDenseThreeDimensionalModel>();
|
Chris@320
|
681 if (!model) return;
|
Chris@320
|
682
|
Chris@320
|
683 model->setColumn(frame / model->getResolution(), values);
|
Chris@441
|
684
|
Chris@441
|
685 } else {
|
Chris@441
|
686 std::cerr << "FeatureExtractionModelTransformer::addFeature: Unknown output model type!" << std::endl;
|
Chris@320
|
687 }
|
Chris@320
|
688 }
|
Chris@320
|
689
|
Chris@320
|
690 void
|
Chris@331
|
691 FeatureExtractionModelTransformer::setCompletion(int completion)
|
Chris@320
|
692 {
|
Chris@320
|
693 int binCount = 1;
|
Chris@320
|
694 if (m_descriptor->hasFixedBinCount) {
|
Chris@320
|
695 binCount = m_descriptor->binCount;
|
Chris@320
|
696 }
|
Chris@320
|
697
|
Chris@331
|
698 // std::cerr << "FeatureExtractionModelTransformer::setCompletion("
|
Chris@320
|
699 // << completion << ")" << std::endl;
|
Chris@320
|
700
|
Chris@441
|
701 if (isOutput<SparseOneDimensionalModel>()) {
|
Chris@320
|
702
|
Chris@350
|
703 SparseOneDimensionalModel *model =
|
Chris@350
|
704 getConformingOutput<SparseOneDimensionalModel>();
|
Chris@320
|
705 if (!model) return;
|
Chris@441
|
706 model->setCompletion(completion, true);
|
Chris@320
|
707
|
Chris@441
|
708 } else if (isOutput<SparseTimeValueModel>()) {
|
Chris@320
|
709
|
Chris@350
|
710 SparseTimeValueModel *model =
|
Chris@350
|
711 getConformingOutput<SparseTimeValueModel>();
|
Chris@320
|
712 if (!model) return;
|
Chris@441
|
713 model->setCompletion(completion, true);
|
Chris@320
|
714
|
Chris@441
|
715 } else if (isOutput<NoteModel>()) {
|
Chris@320
|
716
|
Chris@441
|
717 NoteModel *model = getConformingOutput<NoteModel>();
|
Chris@320
|
718 if (!model) return;
|
Chris@441
|
719 model->setCompletion(completion, true);
|
Chris@320
|
720
|
Chris@441
|
721 } else if (isOutput<RegionModel>()) {
|
Chris@441
|
722
|
Chris@441
|
723 RegionModel *model = getConformingOutput<RegionModel>();
|
Chris@441
|
724 if (!model) return;
|
Chris@441
|
725 model->setCompletion(completion, true);
|
Chris@441
|
726
|
Chris@441
|
727 } else if (isOutput<EditableDenseThreeDimensionalModel>()) {
|
Chris@320
|
728
|
Chris@320
|
729 EditableDenseThreeDimensionalModel *model =
|
Chris@350
|
730 getConformingOutput<EditableDenseThreeDimensionalModel>();
|
Chris@320
|
731 if (!model) return;
|
Chris@350
|
732 model->setCompletion(completion, true); //!!!m_context.updates);
|
Chris@320
|
733 }
|
Chris@320
|
734 }
|
Chris@320
|
735
|