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1
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2 /* -*- c-basic-offset: 4 indent-tabs-mode: nil -*- vi:set ts=8 sts=4 sw=4: */
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3
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4 /*
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5 Sonic Visualiser
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6 An audio file viewer and annotation editor.
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7 Centre for Digital Music, Queen Mary, University of London.
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8 This file copyright 2006-2007 QMUL.
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9
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10 This program is free software; you can redistribute it and/or
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11 modify it under the terms of the GNU General Public License as
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12 published by the Free Software Foundation; either version 2 of the
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13 License, or (at your option) any later version. See the file
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14 COPYING included with this distribution for more information.
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15 */
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16
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17 #include "SpectrumLayer.h"
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18
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19 #include "data/model/FFTModel.h"
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20 #include "view/View.h"
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21 #include "base/AudioLevel.h"
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22 #include "base/Preferences.h"
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23 #include "base/RangeMapper.h"
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24
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25 SpectrumLayer::SpectrumLayer() :
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26 m_originModel(0),
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27 m_channel(-1),
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28 m_channelSet(false),
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29 m_windowSize(1024),
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30 m_windowType(HanningWindow),
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31 m_windowHopLevel(2)
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32 {
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33 Preferences *prefs = Preferences::getInstance();
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34 connect(prefs, SIGNAL(propertyChanged(PropertyContainer::PropertyName)),
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35 this, SLOT(preferenceChanged(PropertyContainer::PropertyName)));
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36 setWindowType(prefs->getWindowType());
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37
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38 setBinScale(LogBins);
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39 }
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40
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41 SpectrumLayer::~SpectrumLayer()
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42 {
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43 //!!! delete parent's model
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44 // for (size_t i = 0; i < m_fft.size(); ++i) delete m_fft[i];
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45 }
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46
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47 void
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48 SpectrumLayer::setModel(DenseTimeValueModel *model)
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49 {
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50 if (m_originModel == model) return;
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51 m_originModel = model;
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52 setupFFT();
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53 }
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54
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55 void
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56 SpectrumLayer::setupFFT()
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57 {
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58 FFTModel *oldFFT = dynamic_cast<FFTModel *>
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59 (const_cast<DenseThreeDimensionalModel *>(m_sliceableModel));
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60
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61 if (oldFFT) {
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62 setSliceableModel(0);
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63 delete oldFFT;
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64 }
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65
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66 FFTModel *newFFT = new FFTModel(m_originModel,
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67 m_channel,
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68 m_windowType,
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69 m_windowSize,
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70 getWindowIncrement(),
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71 m_windowSize,
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72 true);
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73
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74 setSliceableModel(newFFT);
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75
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76 newFFT->resume();
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77 }
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78
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79 void
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80 SpectrumLayer::setChannel(int channel)
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81 {
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82 m_channelSet = true;
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83
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84 FFTModel *fft = dynamic_cast<FFTModel *>
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85 (const_cast<DenseThreeDimensionalModel *>(m_sliceableModel));
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86
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87 if (m_channel == channel) {
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88 if (fft) fft->resume();
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89 return;
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90 }
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91
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92 m_channel = channel;
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93
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94 if (!fft) setupFFT();
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95
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96 emit layerParametersChanged();
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97 }
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98
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99 Layer::PropertyList
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100 SpectrumLayer::getProperties() const
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101 {
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102 PropertyList list = SliceLayer::getProperties();
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103 list.push_back("Window Size");
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104 list.push_back("Window Increment");
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105 return list;
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106 }
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107
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108 QString
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109 SpectrumLayer::getPropertyLabel(const PropertyName &name) const
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110 {
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111 if (name == "Window Size") return tr("Window Size");
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112 if (name == "Window Increment") return tr("Window Overlap");
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113 return SliceLayer::getPropertyLabel(name);
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114 }
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115
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116 Layer::PropertyType
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117 SpectrumLayer::getPropertyType(const PropertyName &name) const
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118 {
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119 if (name == "Window Size") return ValueProperty;
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120 if (name == "Window Increment") return ValueProperty;
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121 return SliceLayer::getPropertyType(name);
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122 }
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123
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124 QString
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125 SpectrumLayer::getPropertyGroupName(const PropertyName &name) const
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126 {
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127 if (name == "Window Size" ||
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128 name == "Window Increment") return tr("Window");
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129 return SliceLayer::getPropertyGroupName(name);
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130 }
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131
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132 int
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133 SpectrumLayer::getPropertyRangeAndValue(const PropertyName &name,
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134 int *min, int *max) const
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135 {
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136 int deft = 0;
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137
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138 int garbage0, garbage1;
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139 if (!min) min = &garbage0;
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140 if (!max) max = &garbage1;
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141
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142 if (name == "Window Size") {
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143
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144 *min = 0;
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145 *max = 10;
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146
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147 deft = 0;
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148 int ws = m_windowSize;
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149 while (ws > 32) { ws >>= 1; deft ++; }
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150
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151 } else if (name == "Window Increment") {
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152
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153 *min = 0;
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154 *max = 5;
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155
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156 deft = m_windowHopLevel;
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157
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158 } else {
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159
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160 deft = SliceLayer::getPropertyRangeAndValue(name, min, max);
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161 }
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162
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163 return deft;
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164 }
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165
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166 QString
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167 SpectrumLayer::getPropertyValueLabel(const PropertyName &name,
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168 int value) const
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169 {
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170 if (name == "Window Size") {
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171 return QString("%1").arg(32 << value);
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172 }
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173 if (name == "Window Increment") {
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174 switch (value) {
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175 default:
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176 case 0: return tr("None");
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177 case 1: return tr("25 %");
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178 case 2: return tr("50 %");
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179 case 3: return tr("75 %");
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180 case 4: return tr("87.5 %");
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181 case 5: return tr("93.75 %");
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182 }
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183 }
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184 return SliceLayer::getPropertyValueLabel(name, value);
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185 }
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186
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187 RangeMapper *
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188 SpectrumLayer::getNewPropertyRangeMapper(const PropertyName &name) const
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189 {
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190 return SliceLayer::getNewPropertyRangeMapper(name);
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191 }
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192
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193 void
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194 SpectrumLayer::setProperty(const PropertyName &name, int value)
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195 {
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196 if (name == "Window Size") {
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197 setWindowSize(32 << value);
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198 } else if (name == "Window Increment") {
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199 setWindowHopLevel(value);
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200 } else {
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201 SliceLayer::setProperty(name, value);
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202 }
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203 }
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204
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205 void
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206 SpectrumLayer::setWindowSize(size_t ws)
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207 {
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208 if (m_windowSize == ws) return;
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209 m_windowSize = ws;
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210 setupFFT();
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211 emit layerParametersChanged();
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212 }
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213
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214 void
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215 SpectrumLayer::setWindowHopLevel(size_t v)
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216 {
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217 if (m_windowHopLevel == v) return;
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218 m_windowHopLevel = v;
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219 setupFFT();
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220 emit layerParametersChanged();
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221 }
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222
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223 void
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224 SpectrumLayer::setWindowType(WindowType w)
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225 {
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226 if (m_windowType == w) return;
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227 m_windowType = w;
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228 setupFFT();
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229 emit layerParametersChanged();
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230 }
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231
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232 void
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233 SpectrumLayer::preferenceChanged(PropertyContainer::PropertyName name)
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234 {
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235 if (name == "Window Type") {
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236 setWindowType(Preferences::getInstance()->getWindowType());
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237 return;
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238 }
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239 }
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240
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241 QString
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242 SpectrumLayer::toXmlString(QString indent, QString extraAttributes) const
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243 {
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244 QString s;
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245
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246 s += QString("windowSize=\"%1\" "
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247 "windowHopLevel=\"%2\"")
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248 .arg(m_windowSize)
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249 .arg(m_windowHopLevel);
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250
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251 return SliceLayer::toXmlString(indent, extraAttributes + " " + s);
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252 }
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253
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254 void
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255 SpectrumLayer::setProperties(const QXmlAttributes &attributes)
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256 {
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257 bool ok = false;
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258
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259 size_t windowSize = attributes.value("windowSize").toUInt(&ok);
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260 if (ok) setWindowSize(windowSize);
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261
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262 size_t windowHopLevel = attributes.value("windowHopLevel").toUInt(&ok);
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263 if (ok) setWindowHopLevel(windowHopLevel);
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264 }
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265
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266 bool
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267 SpectrumLayer::getValueExtents(float &min, float &max, bool &logarithmic,
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268 QString &units) const
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269 {
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270 return false;
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271 }
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272
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273 QString
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274 SpectrumLayer::getFeatureDescription(View *v, QPoint &p) const
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275 {
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276 if (!m_sliceableModel) return "";
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277
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278 int minbin = 0, maxbin = 0, range = 0;
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279 QString genericDesc = SliceLayer::getFeatureDescription
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280 (v, p, false, minbin, maxbin, range);
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281
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282 if (genericDesc == "") return "";
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283
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284 float minvalue = 0.f;
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285 if (minbin < m_values.size()) minvalue = m_values[minbin];
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286
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287 float maxvalue = minvalue;
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288 if (maxbin < m_values.size()) maxvalue = m_values[maxbin];
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289
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290 if (minvalue > maxvalue) std::swap(minvalue, maxvalue);
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291
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292 QString binstr;
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293 QString hzstr;
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294 int minfreq = lrintf((minbin * m_sliceableModel->getSampleRate()) /
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295 m_windowSize);
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296 int maxfreq = lrintf((std::max(maxbin, minbin+1)
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297 * m_sliceableModel->getSampleRate()) /
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298 m_windowSize);
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299
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300 if (maxbin != minbin) {
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301 binstr = tr("%1 - %2").arg(minbin+1).arg(maxbin+1);
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302 } else {
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303 binstr = QString("%1").arg(minbin+1);
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304 }
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305 if (minfreq != maxfreq) {
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306 hzstr = tr("%1 - %2 Hz").arg(minfreq).arg(maxfreq);
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307 } else {
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308 hzstr = tr("%1 Hz").arg(minfreq);
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309 }
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310
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311 QString valuestr;
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312 if (maxvalue != minvalue) {
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313 valuestr = tr("%1 - %2").arg(minvalue).arg(maxvalue);
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314 } else {
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315 valuestr = QString("%1").arg(minvalue);
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316 }
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317
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318 QString dbstr;
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319 float mindb = AudioLevel::multiplier_to_dB(minvalue);
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320 float maxdb = AudioLevel::multiplier_to_dB(maxvalue);
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321 QString mindbstr;
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322 QString maxdbstr;
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323 if (mindb == AudioLevel::DB_FLOOR) {
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324 mindbstr = tr("-Inf");
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325 } else {
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326 mindbstr = QString("%1").arg(lrintf(mindb));
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327 }
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328 if (maxdb == AudioLevel::DB_FLOOR) {
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329 maxdbstr = tr("-Inf");
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330 } else {
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331 maxdbstr = QString("%1").arg(lrintf(maxdb));
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332 }
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333 if (lrintf(mindb) != lrintf(maxdb)) {
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334 dbstr = tr("%1 - %2").arg(mindbstr).arg(maxdbstr);
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335 } else {
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336 dbstr = tr("%1").arg(mindbstr);
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337 }
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338
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339 QString description;
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340
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341 if (range > m_sliceableModel->getResolution()) {
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342 description = tr("%1\nBin:\t%2 (%3)\n%4 value:\t%5\ndB:\t%6")
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343 .arg(genericDesc)
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344 .arg(binstr)
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345 .arg(hzstr)
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346 .arg(m_samplingMode == NearestSample ? tr("First") :
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347 m_samplingMode == SampleMean ? tr("Mean") : tr("Peak"))
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348 .arg(valuestr)
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349 .arg(dbstr);
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350 } else {
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351 description = tr("%1\nBin:\t%2 (%3)\nValue:\t%4\ndB:\t%5")
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352 .arg(genericDesc)
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353 .arg(binstr)
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354 .arg(hzstr)
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355 .arg(valuestr)
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356 .arg(dbstr);
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357 }
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358
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359 return description;
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360 }
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361
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362
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363
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