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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 "SpectrogramLayer.h"
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17
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18 #include "view/View.h"
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19 #include "base/Profiler.h"
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20 #include "base/AudioLevel.h"
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21 #include "base/Window.h"
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22 #include "base/Pitch.h"
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23 #include "base/Preferences.h"
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24 #include "base/RangeMapper.h"
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25 #include "ColourMapper.h"
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26
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27 #include <QPainter>
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28 #include <QImage>
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29 #include <QPixmap>
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30 #include <QRect>
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31 #include <QTimer>
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32 #include <QApplication>
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33 #include <QMessageBox>
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34
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35 #include <iostream>
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36
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37 #include <cassert>
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38 #include <cmath>
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39
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40 //#define DEBUG_SPECTROGRAM_REPAINT 1
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41
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42 SpectrogramLayer::SpectrogramLayer(Configuration config) :
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43 m_model(0),
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44 m_channel(0),
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45 m_windowSize(1024),
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46 m_windowType(HanningWindow),
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47 m_windowHopLevel(2),
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48 m_zeroPadLevel(0),
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49 m_fftSize(1024),
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50 m_gain(1.0),
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51 m_initialGain(1.0),
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52 m_threshold(0.0),
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53 m_initialThreshold(0.0),
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54 m_colourRotation(0),
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55 m_initialRotation(0),
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56 m_minFrequency(10),
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57 m_maxFrequency(8000),
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58 m_initialMaxFrequency(8000),
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59 m_colourScale(dBColourScale),
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60 m_colourMap(0),
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61 m_frequencyScale(LinearFrequencyScale),
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62 m_binDisplay(AllBins),
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63 m_normalizeColumns(false),
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64 m_normalizeVisibleArea(false),
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65 m_lastEmittedZoomStep(-1),
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66 m_lastPaintBlockWidth(0),
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67 m_updateTimer(0),
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68 m_candidateFillStartFrame(0),
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69 m_exiting(false),
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70 m_sliceableModel(0)
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71 {
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72 if (config == FullRangeDb) {
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73 m_initialMaxFrequency = 0;
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74 setMaxFrequency(0);
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75 } else if (config == MelodicRange) {
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76 setWindowSize(8192);
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77 setWindowHopLevel(4);
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78 m_initialMaxFrequency = 1500;
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79 setMaxFrequency(1500);
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80 setMinFrequency(40);
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81 setColourScale(LinearColourScale);
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82 setColourMap(ColourMapper::Sunset);
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83 setFrequencyScale(LogFrequencyScale);
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84 setGain(20);
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85 } else if (config == MelodicPeaks) {
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86 setWindowSize(4096);
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87 setWindowHopLevel(5);
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88 m_initialMaxFrequency = 2000;
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89 setMaxFrequency(2000);
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90 setMinFrequency(40);
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91 setFrequencyScale(LogFrequencyScale);
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92 setColourScale(LinearColourScale);
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93 setBinDisplay(PeakFrequencies);
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94 setNormalizeColumns(true);
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95 }
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96
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97 Preferences *prefs = Preferences::getInstance();
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98 connect(prefs, SIGNAL(propertyChanged(PropertyContainer::PropertyName)),
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99 this, SLOT(preferenceChanged(PropertyContainer::PropertyName)));
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100 setWindowType(prefs->getWindowType());
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101
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102 initialisePalette();
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103 }
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104
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105 SpectrogramLayer::~SpectrogramLayer()
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106 {
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107 delete m_updateTimer;
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108 m_updateTimer = 0;
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109
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110 invalidateFFTModels();
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111 }
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112
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113 void
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114 SpectrogramLayer::setModel(const DenseTimeValueModel *model)
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115 {
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116 // std::cerr << "SpectrogramLayer(" << this << "): setModel(" << model << ")" << std::endl;
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117
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118 if (model == m_model) return;
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119
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120 m_model = model;
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121 invalidateFFTModels();
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122
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123 if (!m_model || !m_model->isOK()) return;
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124
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125 connect(m_model, SIGNAL(modelChanged()), this, SIGNAL(modelChanged()));
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126 connect(m_model, SIGNAL(modelChanged(size_t, size_t)),
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127 this, SIGNAL(modelChanged(size_t, size_t)));
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128
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129 connect(m_model, SIGNAL(completionChanged()),
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130 this, SIGNAL(modelCompletionChanged()));
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131
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132 connect(m_model, SIGNAL(modelChanged()), this, SLOT(cacheInvalid()));
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133 connect(m_model, SIGNAL(modelChanged(size_t, size_t)),
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134 this, SLOT(cacheInvalid(size_t, size_t)));
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135
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136 emit modelReplaced();
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137 }
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138
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139 Layer::PropertyList
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140 SpectrogramLayer::getProperties() const
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141 {
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142 PropertyList list;
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143 list.push_back("Colour");
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144 list.push_back("Colour Scale");
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145 list.push_back("Window Size");
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146 list.push_back("Window Increment");
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147 list.push_back("Normalize Columns");
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148 list.push_back("Normalize Visible Area");
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149 list.push_back("Bin Display");
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150 list.push_back("Threshold");
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151 list.push_back("Gain");
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152 list.push_back("Colour Rotation");
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153 // list.push_back("Min Frequency");
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154 // list.push_back("Max Frequency");
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155 list.push_back("Frequency Scale");
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156 //// list.push_back("Zero Padding");
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157 return list;
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158 }
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159
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160 QString
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161 SpectrogramLayer::getPropertyLabel(const PropertyName &name) const
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162 {
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163 if (name == "Colour") return tr("Colour");
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164 if (name == "Colour Scale") return tr("Colour Scale");
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165 if (name == "Window Size") return tr("Window Size");
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166 if (name == "Window Increment") return tr("Window Overlap");
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167 if (name == "Normalize Columns") return tr("Normalize Columns");
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168 if (name == "Normalize Visible Area") return tr("Normalize Visible Area");
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169 if (name == "Bin Display") return tr("Bin Display");
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170 if (name == "Threshold") return tr("Threshold");
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171 if (name == "Gain") return tr("Gain");
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172 if (name == "Colour Rotation") return tr("Colour Rotation");
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173 if (name == "Min Frequency") return tr("Min Frequency");
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174 if (name == "Max Frequency") return tr("Max Frequency");
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175 if (name == "Frequency Scale") return tr("Frequency Scale");
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176 if (name == "Zero Padding") return tr("Smoothing");
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177 return "";
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178 }
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179
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180 Layer::PropertyType
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181 SpectrogramLayer::getPropertyType(const PropertyName &name) const
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182 {
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183 if (name == "Gain") return RangeProperty;
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184 if (name == "Colour Rotation") return RangeProperty;
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185 if (name == "Normalize Columns") return ToggleProperty;
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186 if (name == "Normalize Visible Area") return ToggleProperty;
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187 if (name == "Threshold") return RangeProperty;
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188 if (name == "Zero Padding") return ToggleProperty;
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189 return ValueProperty;
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190 }
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191
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192 QString
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193 SpectrogramLayer::getPropertyGroupName(const PropertyName &name) const
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194 {
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195 if (name == "Bin Display" ||
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196 name == "Frequency Scale") return tr("Bins");
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197 if (name == "Window Size" ||
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198 name == "Window Increment" ||
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199 name == "Zero Padding") return tr("Window");
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200 if (name == "Colour" ||
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201 name == "Threshold" ||
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202 name == "Colour Rotation") return tr("Colour");
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203 if (name == "Normalize Columns" ||
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204 name == "Normalize Visible Area" ||
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205 name == "Gain" ||
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206 name == "Colour Scale") return tr("Scale");
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207 return QString();
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208 }
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209
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210 int
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211 SpectrogramLayer::getPropertyRangeAndValue(const PropertyName &name,
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212 int *min, int *max, int *deflt) const
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213 {
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214 int val = 0;
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215
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216 int garbage0, garbage1, garbage2;
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217 if (!min) min = &garbage0;
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218 if (!max) max = &garbage1;
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219 if (!deflt) deflt = &garbage2;
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220
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221 if (name == "Gain") {
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222
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223 *min = -50;
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224 *max = 50;
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225
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226 *deflt = lrintf(log10(m_initialGain) * 20.0);;
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227 if (*deflt < *min) *deflt = *min;
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228 if (*deflt > *max) *deflt = *max;
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229
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230 val = lrintf(log10(m_gain) * 20.0);
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231 if (val < *min) val = *min;
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232 if (val > *max) val = *max;
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233
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234 } else if (name == "Threshold") {
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235
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236 *min = -50;
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237 *max = 0;
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238
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239 *deflt = lrintf(AudioLevel::multiplier_to_dB(m_initialThreshold));
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240 if (*deflt < *min) *deflt = *min;
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241 if (*deflt > *max) *deflt = *max;
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242
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243 val = lrintf(AudioLevel::multiplier_to_dB(m_threshold));
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244 if (val < *min) val = *min;
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245 if (val > *max) val = *max;
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246
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247 } else if (name == "Colour Rotation") {
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248
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249 *min = 0;
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250 *max = 256;
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251 *deflt = m_initialRotation;
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252
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253 val = m_colourRotation;
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254
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255 } else if (name == "Colour Scale") {
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256
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257 *min = 0;
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258 *max = 4;
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259 *deflt = int(dBColourScale);
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260
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261 val = (int)m_colourScale;
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262
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263 } else if (name == "Colour") {
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264
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265 *min = 0;
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266 *max = ColourMapper::getColourMapCount() - 1;
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267 *deflt = 0;
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268
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269 val = m_colourMap;
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270
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271 } else if (name == "Window Size") {
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272
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273 *min = 0;
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274 *max = 10;
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275 *deflt = 5;
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276
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277 val = 0;
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278 int ws = m_windowSize;
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279 while (ws > 32) { ws >>= 1; val ++; }
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280
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281 } else if (name == "Window Increment") {
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282
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283 *min = 0;
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284 *max = 5;
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285 *deflt = 2;
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286
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287 val = m_windowHopLevel;
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288
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289 } else if (name == "Zero Padding") {
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290
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291 *min = 0;
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292 *max = 1;
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293 *deflt = 0;
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294
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295 val = m_zeroPadLevel > 0 ? 1 : 0;
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296
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297 } else if (name == "Min Frequency") {
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298
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299 *min = 0;
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300 *max = 9;
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301 *deflt = 1;
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302
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303 switch (m_minFrequency) {
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304 case 0: default: val = 0; break;
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305 case 10: val = 1; break;
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306 case 20: val = 2; break;
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307 case 40: val = 3; break;
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308 case 100: val = 4; break;
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309 case 250: val = 5; break;
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310 case 500: val = 6; break;
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311 case 1000: val = 7; break;
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312 case 4000: val = 8; break;
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313 case 10000: val = 9; break;
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314 }
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315
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316 } else if (name == "Max Frequency") {
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317
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318 *min = 0;
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319 *max = 9;
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320 *deflt = 6;
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321
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322 switch (m_maxFrequency) {
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Chris@216
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323 case 500: val = 0; break;
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Chris@216
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324 case 1000: val = 1; break;
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Chris@216
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325 case 1500: val = 2; break;
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Chris@216
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326 case 2000: val = 3; break;
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Chris@216
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327 case 4000: val = 4; break;
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Chris@216
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328 case 6000: val = 5; break;
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Chris@216
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329 case 8000: val = 6; break;
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330 case 12000: val = 7; break;
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Chris@216
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331 case 16000: val = 8; break;
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Chris@216
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332 default: val = 9; break;
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333 }
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Chris@0
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334
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Chris@87
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335 } else if (name == "Frequency Scale") {
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336
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Chris@0
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337 *min = 0;
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Chris@0
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338 *max = 1;
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Chris@216
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339 *deflt = int(LinearFrequencyScale);
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Chris@216
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340 val = (int)m_frequencyScale;
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Chris@0
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341
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Chris@87
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342 } else if (name == "Bin Display") {
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343
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Chris@35
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344 *min = 0;
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345 *max = 2;
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Chris@216
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346 *deflt = int(AllBins);
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Chris@216
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347 val = (int)m_binDisplay;
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Chris@35
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348
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Chris@87
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349 } else if (name == "Normalize Columns") {
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350
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Chris@216
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351 *deflt = 0;
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Chris@216
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352 val = (m_normalizeColumns ? 1 : 0);
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353
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Chris@120
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354 } else if (name == "Normalize Visible Area") {
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355
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356 *deflt = 0;
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Chris@216
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357 val = (m_normalizeVisibleArea ? 1 : 0);
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Chris@120
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358
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Chris@0
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359 } else {
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Chris@216
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360 val = Layer::getPropertyRangeAndValue(name, min, max, deflt);
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Chris@0
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361 }
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Chris@0
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362
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Chris@216
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363 return val;
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Chris@0
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364 }
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Chris@0
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365
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Chris@0
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366 QString
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Chris@0
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367 SpectrogramLayer::getPropertyValueLabel(const PropertyName &name,
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Chris@9
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368 int value) const
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Chris@0
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369 {
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Chris@87
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370 if (name == "Colour") {
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Chris@196
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371 return ColourMapper::getColourMapName(value);
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Chris@0
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372 }
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Chris@87
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373 if (name == "Colour Scale") {
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Chris@0
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374 switch (value) {
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Chris@0
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375 default:
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Chris@37
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376 case 0: return tr("Linear");
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Chris@37
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377 case 1: return tr("Meter");
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Chris@215
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378 case 2: return tr("dBV^2");
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Chris@215
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379 case 3: return tr("dBV");
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Chris@119
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380 case 4: return tr("Phase");
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Chris@0
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381 }
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Chris@0
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382 }
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Chris@87
|
383 if (name == "Window Size") {
|
Chris@0
|
384 return QString("%1").arg(32 << value);
|
Chris@0
|
385 }
|
Chris@97
|
386 if (name == "Window Increment") {
|
Chris@0
|
387 switch (value) {
|
Chris@0
|
388 default:
|
Chris@112
|
389 case 0: return tr("None");
|
Chris@112
|
390 case 1: return tr("25 %");
|
Chris@112
|
391 case 2: return tr("50 %");
|
Chris@112
|
392 case 3: return tr("75 %");
|
Chris@112
|
393 case 4: return tr("87.5 %");
|
Chris@112
|
394 case 5: return tr("93.75 %");
|
Chris@0
|
395 }
|
Chris@0
|
396 }
|
Chris@109
|
397 if (name == "Zero Padding") {
|
Chris@109
|
398 if (value == 0) return tr("None");
|
Chris@109
|
399 return QString("%1x").arg(value + 1);
|
Chris@109
|
400 }
|
Chris@87
|
401 if (name == "Min Frequency") {
|
Chris@37
|
402 switch (value) {
|
Chris@37
|
403 default:
|
Chris@38
|
404 case 0: return tr("No min");
|
Chris@37
|
405 case 1: return tr("10 Hz");
|
Chris@37
|
406 case 2: return tr("20 Hz");
|
Chris@37
|
407 case 3: return tr("40 Hz");
|
Chris@37
|
408 case 4: return tr("100 Hz");
|
Chris@37
|
409 case 5: return tr("250 Hz");
|
Chris@37
|
410 case 6: return tr("500 Hz");
|
Chris@37
|
411 case 7: return tr("1 KHz");
|
Chris@37
|
412 case 8: return tr("4 KHz");
|
Chris@37
|
413 case 9: return tr("10 KHz");
|
Chris@37
|
414 }
|
Chris@37
|
415 }
|
Chris@87
|
416 if (name == "Max Frequency") {
|
Chris@0
|
417 switch (value) {
|
Chris@0
|
418 default:
|
Chris@0
|
419 case 0: return tr("500 Hz");
|
Chris@0
|
420 case 1: return tr("1 KHz");
|
Chris@0
|
421 case 2: return tr("1.5 KHz");
|
Chris@0
|
422 case 3: return tr("2 KHz");
|
Chris@0
|
423 case 4: return tr("4 KHz");
|
Chris@0
|
424 case 5: return tr("6 KHz");
|
Chris@0
|
425 case 6: return tr("8 KHz");
|
Chris@0
|
426 case 7: return tr("12 KHz");
|
Chris@0
|
427 case 8: return tr("16 KHz");
|
Chris@38
|
428 case 9: return tr("No max");
|
Chris@0
|
429 }
|
Chris@0
|
430 }
|
Chris@87
|
431 if (name == "Frequency Scale") {
|
Chris@0
|
432 switch (value) {
|
Chris@0
|
433 default:
|
Chris@0
|
434 case 0: return tr("Linear");
|
Chris@0
|
435 case 1: return tr("Log");
|
Chris@0
|
436 }
|
Chris@0
|
437 }
|
Chris@87
|
438 if (name == "Bin Display") {
|
Chris@35
|
439 switch (value) {
|
Chris@35
|
440 default:
|
Chris@37
|
441 case 0: return tr("All Bins");
|
Chris@37
|
442 case 1: return tr("Peak Bins");
|
Chris@37
|
443 case 2: return tr("Frequencies");
|
Chris@35
|
444 }
|
Chris@35
|
445 }
|
Chris@0
|
446 return tr("<unknown>");
|
Chris@0
|
447 }
|
Chris@0
|
448
|
Chris@167
|
449 RangeMapper *
|
Chris@167
|
450 SpectrogramLayer::getNewPropertyRangeMapper(const PropertyName &name) const
|
Chris@167
|
451 {
|
Chris@167
|
452 if (name == "Gain") {
|
Chris@167
|
453 return new LinearRangeMapper(-50, 50, -25, 25, tr("dB"));
|
Chris@167
|
454 }
|
Chris@167
|
455 if (name == "Threshold") {
|
Chris@167
|
456 return new LinearRangeMapper(-50, 0, -50, 0, tr("dB"));
|
Chris@167
|
457 }
|
Chris@167
|
458 return 0;
|
Chris@167
|
459 }
|
Chris@167
|
460
|
Chris@0
|
461 void
|
Chris@0
|
462 SpectrogramLayer::setProperty(const PropertyName &name, int value)
|
Chris@0
|
463 {
|
Chris@87
|
464 if (name == "Gain") {
|
Chris@0
|
465 setGain(pow(10, float(value)/20.0));
|
Chris@87
|
466 } else if (name == "Threshold") {
|
Chris@37
|
467 if (value == -50) setThreshold(0.0);
|
Chris@37
|
468 else setThreshold(AudioLevel::dB_to_multiplier(value));
|
Chris@87
|
469 } else if (name == "Colour Rotation") {
|
Chris@9
|
470 setColourRotation(value);
|
Chris@87
|
471 } else if (name == "Colour") {
|
Chris@197
|
472 setColourMap(value);
|
Chris@87
|
473 } else if (name == "Window Size") {
|
Chris@0
|
474 setWindowSize(32 << value);
|
Chris@97
|
475 } else if (name == "Window Increment") {
|
Chris@97
|
476 setWindowHopLevel(value);
|
Chris@109
|
477 } else if (name == "Zero Padding") {
|
Chris@109
|
478 setZeroPadLevel(value > 0.1 ? 3 : 0);
|
Chris@87
|
479 } else if (name == "Min Frequency") {
|
Chris@37
|
480 switch (value) {
|
Chris@37
|
481 default:
|
Chris@37
|
482 case 0: setMinFrequency(0); break;
|
Chris@37
|
483 case 1: setMinFrequency(10); break;
|
Chris@37
|
484 case 2: setMinFrequency(20); break;
|
Chris@37
|
485 case 3: setMinFrequency(40); break;
|
Chris@37
|
486 case 4: setMinFrequency(100); break;
|
Chris@37
|
487 case 5: setMinFrequency(250); break;
|
Chris@37
|
488 case 6: setMinFrequency(500); break;
|
Chris@37
|
489 case 7: setMinFrequency(1000); break;
|
Chris@37
|
490 case 8: setMinFrequency(4000); break;
|
Chris@37
|
491 case 9: setMinFrequency(10000); break;
|
Chris@37
|
492 }
|
Chris@133
|
493 int vs = getCurrentVerticalZoomStep();
|
Chris@133
|
494 if (vs != m_lastEmittedZoomStep) {
|
Chris@133
|
495 emit verticalZoomChanged();
|
Chris@133
|
496 m_lastEmittedZoomStep = vs;
|
Chris@133
|
497 }
|
Chris@87
|
498 } else if (name == "Max Frequency") {
|
Chris@0
|
499 switch (value) {
|
Chris@0
|
500 case 0: setMaxFrequency(500); break;
|
Chris@0
|
501 case 1: setMaxFrequency(1000); break;
|
Chris@0
|
502 case 2: setMaxFrequency(1500); break;
|
Chris@0
|
503 case 3: setMaxFrequency(2000); break;
|
Chris@0
|
504 case 4: setMaxFrequency(4000); break;
|
Chris@0
|
505 case 5: setMaxFrequency(6000); break;
|
Chris@0
|
506 case 6: setMaxFrequency(8000); break;
|
Chris@0
|
507 case 7: setMaxFrequency(12000); break;
|
Chris@0
|
508 case 8: setMaxFrequency(16000); break;
|
Chris@0
|
509 default:
|
Chris@0
|
510 case 9: setMaxFrequency(0); break;
|
Chris@0
|
511 }
|
Chris@133
|
512 int vs = getCurrentVerticalZoomStep();
|
Chris@133
|
513 if (vs != m_lastEmittedZoomStep) {
|
Chris@133
|
514 emit verticalZoomChanged();
|
Chris@133
|
515 m_lastEmittedZoomStep = vs;
|
Chris@133
|
516 }
|
Chris@87
|
517 } else if (name == "Colour Scale") {
|
Chris@0
|
518 switch (value) {
|
Chris@0
|
519 default:
|
Chris@0
|
520 case 0: setColourScale(LinearColourScale); break;
|
Chris@0
|
521 case 1: setColourScale(MeterColourScale); break;
|
Chris@215
|
522 case 2: setColourScale(dBSquaredColourScale); break;
|
Chris@215
|
523 case 3: setColourScale(dBColourScale); break;
|
Chris@119
|
524 case 4: setColourScale(PhaseColourScale); break;
|
Chris@0
|
525 }
|
Chris@87
|
526 } else if (name == "Frequency Scale") {
|
Chris@0
|
527 switch (value) {
|
Chris@0
|
528 default:
|
Chris@0
|
529 case 0: setFrequencyScale(LinearFrequencyScale); break;
|
Chris@0
|
530 case 1: setFrequencyScale(LogFrequencyScale); break;
|
Chris@0
|
531 }
|
Chris@87
|
532 } else if (name == "Bin Display") {
|
Chris@35
|
533 switch (value) {
|
Chris@35
|
534 default:
|
Chris@37
|
535 case 0: setBinDisplay(AllBins); break;
|
Chris@37
|
536 case 1: setBinDisplay(PeakBins); break;
|
Chris@37
|
537 case 2: setBinDisplay(PeakFrequencies); break;
|
Chris@35
|
538 }
|
Chris@82
|
539 } else if (name == "Normalize Columns") {
|
Chris@36
|
540 setNormalizeColumns(value ? true : false);
|
Chris@120
|
541 } else if (name == "Normalize Visible Area") {
|
Chris@120
|
542 setNormalizeVisibleArea(value ? true : false);
|
Chris@0
|
543 }
|
Chris@0
|
544 }
|
Chris@0
|
545
|
Chris@0
|
546 void
|
Chris@95
|
547 SpectrogramLayer::invalidatePixmapCaches()
|
Chris@95
|
548 {
|
Chris@95
|
549 for (ViewPixmapCache::iterator i = m_pixmapCaches.begin();
|
Chris@95
|
550 i != m_pixmapCaches.end(); ++i) {
|
Chris@95
|
551 i->second.validArea = QRect();
|
Chris@95
|
552 }
|
Chris@95
|
553 }
|
Chris@95
|
554
|
Chris@95
|
555 void
|
Chris@95
|
556 SpectrogramLayer::invalidatePixmapCaches(size_t startFrame, size_t endFrame)
|
Chris@95
|
557 {
|
Chris@95
|
558 for (ViewPixmapCache::iterator i = m_pixmapCaches.begin();
|
Chris@95
|
559 i != m_pixmapCaches.end(); ++i) {
|
Chris@131
|
560
|
Chris@95
|
561 //!!! when are views removed from the map? on setLayerDormant?
|
Chris@95
|
562 const View *v = i->first;
|
Chris@95
|
563
|
Chris@115
|
564 if (startFrame < v->getEndFrame() && int(endFrame) >= v->getStartFrame()) {
|
Chris@95
|
565 i->second.validArea = QRect();
|
Chris@95
|
566 }
|
Chris@95
|
567 }
|
Chris@95
|
568 }
|
Chris@95
|
569
|
Chris@95
|
570 void
|
Chris@122
|
571 SpectrogramLayer::preferenceChanged(PropertyContainer::PropertyName name)
|
Chris@122
|
572 {
|
Chris@122
|
573 std::cerr << "SpectrogramLayer::preferenceChanged(" << name.toStdString() << ")" << std::endl;
|
Chris@122
|
574
|
Chris@122
|
575 if (name == "Window Type") {
|
Chris@122
|
576 setWindowType(Preferences::getInstance()->getWindowType());
|
Chris@122
|
577 return;
|
Chris@122
|
578 }
|
Chris@221
|
579 if (name == "Spectrogram Smoothing") {
|
Chris@122
|
580 invalidatePixmapCaches();
|
Chris@122
|
581 invalidateMagnitudes();
|
Chris@122
|
582 emit layerParametersChanged();
|
Chris@122
|
583 }
|
Chris@122
|
584 if (name == "Tuning Frequency") {
|
Chris@122
|
585 emit layerParametersChanged();
|
Chris@122
|
586 }
|
Chris@122
|
587 }
|
Chris@122
|
588
|
Chris@122
|
589 void
|
Chris@0
|
590 SpectrogramLayer::setChannel(int ch)
|
Chris@0
|
591 {
|
Chris@0
|
592 if (m_channel == ch) return;
|
Chris@0
|
593
|
Chris@95
|
594 invalidatePixmapCaches();
|
Chris@0
|
595 m_channel = ch;
|
Chris@130
|
596 invalidateFFTModels();
|
Chris@9
|
597
|
Chris@0
|
598 emit layerParametersChanged();
|
Chris@0
|
599 }
|
Chris@0
|
600
|
Chris@0
|
601 int
|
Chris@0
|
602 SpectrogramLayer::getChannel() const
|
Chris@0
|
603 {
|
Chris@0
|
604 return m_channel;
|
Chris@0
|
605 }
|
Chris@0
|
606
|
Chris@0
|
607 void
|
Chris@0
|
608 SpectrogramLayer::setWindowSize(size_t ws)
|
Chris@0
|
609 {
|
Chris@0
|
610 if (m_windowSize == ws) return;
|
Chris@0
|
611
|
Chris@95
|
612 invalidatePixmapCaches();
|
Chris@0
|
613
|
Chris@0
|
614 m_windowSize = ws;
|
Chris@109
|
615 m_fftSize = ws * (m_zeroPadLevel + 1);
|
Chris@0
|
616
|
Chris@130
|
617 invalidateFFTModels();
|
Chris@9
|
618
|
Chris@9
|
619 emit layerParametersChanged();
|
Chris@0
|
620 }
|
Chris@0
|
621
|
Chris@0
|
622 size_t
|
Chris@0
|
623 SpectrogramLayer::getWindowSize() const
|
Chris@0
|
624 {
|
Chris@0
|
625 return m_windowSize;
|
Chris@0
|
626 }
|
Chris@0
|
627
|
Chris@0
|
628 void
|
Chris@97
|
629 SpectrogramLayer::setWindowHopLevel(size_t v)
|
Chris@0
|
630 {
|
Chris@97
|
631 if (m_windowHopLevel == v) return;
|
Chris@0
|
632
|
Chris@95
|
633 invalidatePixmapCaches();
|
Chris@0
|
634
|
Chris@97
|
635 m_windowHopLevel = v;
|
Chris@0
|
636
|
Chris@130
|
637 invalidateFFTModels();
|
Chris@9
|
638
|
Chris@9
|
639 emit layerParametersChanged();
|
Chris@9
|
640
|
Chris@110
|
641 // fillCache();
|
Chris@0
|
642 }
|
Chris@0
|
643
|
Chris@0
|
644 size_t
|
Chris@97
|
645 SpectrogramLayer::getWindowHopLevel() const
|
Chris@0
|
646 {
|
Chris@97
|
647 return m_windowHopLevel;
|
Chris@0
|
648 }
|
Chris@0
|
649
|
Chris@0
|
650 void
|
Chris@109
|
651 SpectrogramLayer::setZeroPadLevel(size_t v)
|
Chris@109
|
652 {
|
Chris@109
|
653 if (m_zeroPadLevel == v) return;
|
Chris@109
|
654
|
Chris@109
|
655 invalidatePixmapCaches();
|
Chris@109
|
656
|
Chris@109
|
657 m_zeroPadLevel = v;
|
Chris@109
|
658 m_fftSize = m_windowSize * (v + 1);
|
Chris@110
|
659
|
Chris@130
|
660 invalidateFFTModels();
|
Chris@109
|
661
|
Chris@109
|
662 emit layerParametersChanged();
|
Chris@109
|
663 }
|
Chris@109
|
664
|
Chris@109
|
665 size_t
|
Chris@109
|
666 SpectrogramLayer::getZeroPadLevel() const
|
Chris@109
|
667 {
|
Chris@109
|
668 return m_zeroPadLevel;
|
Chris@109
|
669 }
|
Chris@109
|
670
|
Chris@109
|
671 void
|
Chris@0
|
672 SpectrogramLayer::setWindowType(WindowType w)
|
Chris@0
|
673 {
|
Chris@0
|
674 if (m_windowType == w) return;
|
Chris@0
|
675
|
Chris@95
|
676 invalidatePixmapCaches();
|
Chris@0
|
677
|
Chris@0
|
678 m_windowType = w;
|
Chris@110
|
679
|
Chris@130
|
680 invalidateFFTModels();
|
Chris@9
|
681
|
Chris@9
|
682 emit layerParametersChanged();
|
Chris@0
|
683 }
|
Chris@0
|
684
|
Chris@0
|
685 WindowType
|
Chris@0
|
686 SpectrogramLayer::getWindowType() const
|
Chris@0
|
687 {
|
Chris@0
|
688 return m_windowType;
|
Chris@0
|
689 }
|
Chris@0
|
690
|
Chris@0
|
691 void
|
Chris@0
|
692 SpectrogramLayer::setGain(float gain)
|
Chris@0
|
693 {
|
Chris@101
|
694 // std::cerr << "SpectrogramLayer::setGain(" << gain << ") (my gain is now "
|
Chris@101
|
695 // << m_gain << ")" << std::endl;
|
Chris@55
|
696
|
Chris@40
|
697 if (m_gain == gain) return;
|
Chris@0
|
698
|
Chris@95
|
699 invalidatePixmapCaches();
|
Chris@0
|
700
|
Chris@0
|
701 m_gain = gain;
|
Chris@0
|
702
|
Chris@9
|
703 emit layerParametersChanged();
|
Chris@0
|
704 }
|
Chris@0
|
705
|
Chris@0
|
706 float
|
Chris@0
|
707 SpectrogramLayer::getGain() const
|
Chris@0
|
708 {
|
Chris@0
|
709 return m_gain;
|
Chris@0
|
710 }
|
Chris@0
|
711
|
Chris@0
|
712 void
|
Chris@37
|
713 SpectrogramLayer::setThreshold(float threshold)
|
Chris@37
|
714 {
|
Chris@40
|
715 if (m_threshold == threshold) return;
|
Chris@37
|
716
|
Chris@95
|
717 invalidatePixmapCaches();
|
Chris@37
|
718
|
Chris@37
|
719 m_threshold = threshold;
|
Chris@37
|
720
|
Chris@37
|
721 emit layerParametersChanged();
|
Chris@37
|
722 }
|
Chris@37
|
723
|
Chris@37
|
724 float
|
Chris@37
|
725 SpectrogramLayer::getThreshold() const
|
Chris@37
|
726 {
|
Chris@37
|
727 return m_threshold;
|
Chris@37
|
728 }
|
Chris@37
|
729
|
Chris@37
|
730 void
|
Chris@37
|
731 SpectrogramLayer::setMinFrequency(size_t mf)
|
Chris@37
|
732 {
|
Chris@37
|
733 if (m_minFrequency == mf) return;
|
Chris@37
|
734
|
Chris@187
|
735 std::cerr << "SpectrogramLayer::setMinFrequency: " << mf << std::endl;
|
Chris@187
|
736
|
Chris@95
|
737 invalidatePixmapCaches();
|
Chris@119
|
738 invalidateMagnitudes();
|
Chris@37
|
739
|
Chris@37
|
740 m_minFrequency = mf;
|
Chris@37
|
741
|
Chris@37
|
742 emit layerParametersChanged();
|
Chris@37
|
743 }
|
Chris@37
|
744
|
Chris@37
|
745 size_t
|
Chris@37
|
746 SpectrogramLayer::getMinFrequency() const
|
Chris@37
|
747 {
|
Chris@37
|
748 return m_minFrequency;
|
Chris@37
|
749 }
|
Chris@37
|
750
|
Chris@37
|
751 void
|
Chris@0
|
752 SpectrogramLayer::setMaxFrequency(size_t mf)
|
Chris@0
|
753 {
|
Chris@0
|
754 if (m_maxFrequency == mf) return;
|
Chris@0
|
755
|
Chris@187
|
756 std::cerr << "SpectrogramLayer::setMaxFrequency: " << mf << std::endl;
|
Chris@187
|
757
|
Chris@95
|
758 invalidatePixmapCaches();
|
Chris@119
|
759 invalidateMagnitudes();
|
Chris@0
|
760
|
Chris@0
|
761 m_maxFrequency = mf;
|
Chris@0
|
762
|
Chris@9
|
763 emit layerParametersChanged();
|
Chris@0
|
764 }
|
Chris@0
|
765
|
Chris@0
|
766 size_t
|
Chris@0
|
767 SpectrogramLayer::getMaxFrequency() const
|
Chris@0
|
768 {
|
Chris@0
|
769 return m_maxFrequency;
|
Chris@0
|
770 }
|
Chris@0
|
771
|
Chris@0
|
772 void
|
Chris@9
|
773 SpectrogramLayer::setColourRotation(int r)
|
Chris@9
|
774 {
|
Chris@95
|
775 invalidatePixmapCaches();
|
Chris@9
|
776
|
Chris@9
|
777 if (r < 0) r = 0;
|
Chris@9
|
778 if (r > 256) r = 256;
|
Chris@9
|
779 int distance = r - m_colourRotation;
|
Chris@9
|
780
|
Chris@9
|
781 if (distance != 0) {
|
Chris@197
|
782 rotatePalette(-distance);
|
Chris@9
|
783 m_colourRotation = r;
|
Chris@9
|
784 }
|
Chris@9
|
785
|
Chris@9
|
786 emit layerParametersChanged();
|
Chris@9
|
787 }
|
Chris@9
|
788
|
Chris@9
|
789 void
|
Chris@0
|
790 SpectrogramLayer::setColourScale(ColourScale colourScale)
|
Chris@0
|
791 {
|
Chris@0
|
792 if (m_colourScale == colourScale) return;
|
Chris@0
|
793
|
Chris@95
|
794 invalidatePixmapCaches();
|
Chris@0
|
795
|
Chris@0
|
796 m_colourScale = colourScale;
|
Chris@0
|
797
|
Chris@9
|
798 emit layerParametersChanged();
|
Chris@0
|
799 }
|
Chris@0
|
800
|
Chris@0
|
801 SpectrogramLayer::ColourScale
|
Chris@0
|
802 SpectrogramLayer::getColourScale() const
|
Chris@0
|
803 {
|
Chris@0
|
804 return m_colourScale;
|
Chris@0
|
805 }
|
Chris@0
|
806
|
Chris@0
|
807 void
|
Chris@197
|
808 SpectrogramLayer::setColourMap(int map)
|
Chris@0
|
809 {
|
Chris@197
|
810 if (m_colourMap == map) return;
|
Chris@0
|
811
|
Chris@95
|
812 invalidatePixmapCaches();
|
Chris@0
|
813
|
Chris@197
|
814 m_colourMap = map;
|
Chris@197
|
815 initialisePalette();
|
Chris@9
|
816
|
Chris@0
|
817 emit layerParametersChanged();
|
Chris@0
|
818 }
|
Chris@0
|
819
|
Chris@196
|
820 int
|
Chris@197
|
821 SpectrogramLayer::getColourMap() const
|
Chris@0
|
822 {
|
Chris@197
|
823 return m_colourMap;
|
Chris@0
|
824 }
|
Chris@0
|
825
|
Chris@0
|
826 void
|
Chris@0
|
827 SpectrogramLayer::setFrequencyScale(FrequencyScale frequencyScale)
|
Chris@0
|
828 {
|
Chris@0
|
829 if (m_frequencyScale == frequencyScale) return;
|
Chris@0
|
830
|
Chris@95
|
831 invalidatePixmapCaches();
|
Chris@0
|
832 m_frequencyScale = frequencyScale;
|
Chris@9
|
833
|
Chris@9
|
834 emit layerParametersChanged();
|
Chris@0
|
835 }
|
Chris@0
|
836
|
Chris@0
|
837 SpectrogramLayer::FrequencyScale
|
Chris@0
|
838 SpectrogramLayer::getFrequencyScale() const
|
Chris@0
|
839 {
|
Chris@0
|
840 return m_frequencyScale;
|
Chris@0
|
841 }
|
Chris@0
|
842
|
Chris@0
|
843 void
|
Chris@37
|
844 SpectrogramLayer::setBinDisplay(BinDisplay binDisplay)
|
Chris@35
|
845 {
|
Chris@37
|
846 if (m_binDisplay == binDisplay) return;
|
Chris@35
|
847
|
Chris@95
|
848 invalidatePixmapCaches();
|
Chris@37
|
849 m_binDisplay = binDisplay;
|
Chris@35
|
850
|
Chris@35
|
851 emit layerParametersChanged();
|
Chris@35
|
852 }
|
Chris@35
|
853
|
Chris@37
|
854 SpectrogramLayer::BinDisplay
|
Chris@37
|
855 SpectrogramLayer::getBinDisplay() const
|
Chris@35
|
856 {
|
Chris@37
|
857 return m_binDisplay;
|
Chris@35
|
858 }
|
Chris@35
|
859
|
Chris@35
|
860 void
|
Chris@36
|
861 SpectrogramLayer::setNormalizeColumns(bool n)
|
Chris@36
|
862 {
|
Chris@36
|
863 if (m_normalizeColumns == n) return;
|
Chris@36
|
864
|
Chris@95
|
865 invalidatePixmapCaches();
|
Chris@119
|
866 invalidateMagnitudes();
|
Chris@36
|
867 m_normalizeColumns = n;
|
Chris@36
|
868
|
Chris@36
|
869 emit layerParametersChanged();
|
Chris@36
|
870 }
|
Chris@36
|
871
|
Chris@36
|
872 bool
|
Chris@36
|
873 SpectrogramLayer::getNormalizeColumns() const
|
Chris@36
|
874 {
|
Chris@36
|
875 return m_normalizeColumns;
|
Chris@36
|
876 }
|
Chris@36
|
877
|
Chris@36
|
878 void
|
Chris@120
|
879 SpectrogramLayer::setNormalizeVisibleArea(bool n)
|
Chris@120
|
880 {
|
Chris@120
|
881 if (m_normalizeVisibleArea == n) return;
|
Chris@120
|
882
|
Chris@120
|
883 invalidatePixmapCaches();
|
Chris@120
|
884 invalidateMagnitudes();
|
Chris@120
|
885 m_normalizeVisibleArea = n;
|
Chris@120
|
886
|
Chris@120
|
887 emit layerParametersChanged();
|
Chris@120
|
888 }
|
Chris@120
|
889
|
Chris@120
|
890 bool
|
Chris@120
|
891 SpectrogramLayer::getNormalizeVisibleArea() const
|
Chris@120
|
892 {
|
Chris@120
|
893 return m_normalizeVisibleArea;
|
Chris@120
|
894 }
|
Chris@120
|
895
|
Chris@120
|
896 void
|
Chris@47
|
897 SpectrogramLayer::setLayerDormant(const View *v, bool dormant)
|
Chris@29
|
898 {
|
Chris@33
|
899 if (dormant) {
|
Chris@33
|
900
|
Chris@131
|
901 if (isLayerDormant(v)) {
|
Chris@131
|
902 return;
|
Chris@131
|
903 }
|
Chris@131
|
904
|
Chris@131
|
905 Layer::setLayerDormant(v, true);
|
Chris@33
|
906
|
Chris@95
|
907 invalidatePixmapCaches();
|
Chris@95
|
908 m_pixmapCaches.erase(v);
|
Chris@114
|
909
|
Chris@130
|
910 if (m_fftModels.find(v) != m_fftModels.end()) {
|
Chris@193
|
911
|
Chris@193
|
912 if (m_sliceableModel == m_fftModels[v].first) {
|
Chris@193
|
913 bool replaced = false;
|
Chris@193
|
914 for (ViewFFTMap::iterator i = m_fftModels.begin();
|
Chris@193
|
915 i != m_fftModels.end(); ++i) {
|
Chris@193
|
916 if (i->second.first != m_sliceableModel) {
|
Chris@193
|
917 emit sliceableModelReplaced(m_sliceableModel, i->second.first);
|
Chris@193
|
918 replaced = true;
|
Chris@193
|
919 break;
|
Chris@193
|
920 }
|
Chris@193
|
921 }
|
Chris@193
|
922 if (!replaced) emit sliceableModelReplaced(m_sliceableModel, 0);
|
Chris@193
|
923 }
|
Chris@193
|
924
|
Chris@130
|
925 delete m_fftModels[v].first;
|
Chris@130
|
926 m_fftModels.erase(v);
|
Chris@114
|
927 }
|
Chris@33
|
928
|
Chris@33
|
929 } else {
|
Chris@33
|
930
|
Chris@131
|
931 Layer::setLayerDormant(v, false);
|
Chris@33
|
932 }
|
Chris@29
|
933 }
|
Chris@29
|
934
|
Chris@29
|
935 void
|
Chris@0
|
936 SpectrogramLayer::cacheInvalid()
|
Chris@0
|
937 {
|
Chris@95
|
938 invalidatePixmapCaches();
|
Chris@119
|
939 invalidateMagnitudes();
|
Chris@0
|
940 }
|
Chris@0
|
941
|
Chris@0
|
942 void
|
Chris@0
|
943 SpectrogramLayer::cacheInvalid(size_t, size_t)
|
Chris@0
|
944 {
|
Chris@0
|
945 // for now (or forever?)
|
Chris@0
|
946 cacheInvalid();
|
Chris@0
|
947 }
|
Chris@0
|
948
|
Chris@0
|
949 void
|
Chris@0
|
950 SpectrogramLayer::fillTimerTimedOut()
|
Chris@0
|
951 {
|
Chris@115
|
952 if (!m_model) return;
|
Chris@115
|
953
|
Chris@115
|
954 bool allDone = true;
|
Chris@115
|
955
|
Chris@184
|
956 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@184
|
957 std::cerr << "SpectrogramLayer::fillTimerTimedOut: have " << m_fftModels.size() << " FFT models associated with views" << std::endl;
|
Chris@184
|
958 #endif
|
Chris@184
|
959
|
Chris@130
|
960 for (ViewFFTMap::iterator i = m_fftModels.begin();
|
Chris@130
|
961 i != m_fftModels.end(); ++i) {
|
Chris@115
|
962
|
Chris@115
|
963 const View *v = i->first;
|
Chris@130
|
964 const FFTModel *model = i->second.first;
|
Chris@115
|
965 size_t lastFill = i->second.second;
|
Chris@115
|
966
|
Chris@130
|
967 if (model) {
|
Chris@130
|
968
|
Chris@130
|
969 size_t fill = model->getFillExtent();
|
Chris@115
|
970
|
Chris@0
|
971 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@130
|
972 std::cerr << "SpectrogramLayer::fillTimerTimedOut: extent for " << model << ": " << fill << ", last " << lastFill << ", total " << m_model->getEndFrame() << std::endl;
|
Chris@0
|
973 #endif
|
Chris@115
|
974
|
Chris@115
|
975 if (fill >= lastFill) {
|
Chris@115
|
976 if (fill >= m_model->getEndFrame() && lastFill > 0) {
|
Chris@0
|
977 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@115
|
978 std::cerr << "complete!" << std::endl;
|
Chris@0
|
979 #endif
|
Chris@115
|
980 invalidatePixmapCaches();
|
Chris@184
|
981 i->second.second = -1;
|
Chris@115
|
982 emit modelChanged();
|
Chris@115
|
983
|
Chris@115
|
984 } else if (fill > lastFill) {
|
Chris@0
|
985 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@115
|
986 std::cerr << "SpectrogramLayer: emitting modelChanged("
|
Chris@115
|
987 << lastFill << "," << fill << ")" << std::endl;
|
Chris@0
|
988 #endif
|
Chris@115
|
989 invalidatePixmapCaches(lastFill, fill);
|
Chris@184
|
990 i->second.second = fill;
|
Chris@115
|
991 emit modelChanged(lastFill, fill);
|
Chris@115
|
992 }
|
Chris@115
|
993 } else {
|
Chris@0
|
994 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@115
|
995 std::cerr << "SpectrogramLayer: going backwards, emitting modelChanged("
|
Chris@115
|
996 << m_model->getStartFrame() << "," << m_model->getEndFrame() << ")" << std::endl;
|
Chris@0
|
997 #endif
|
Chris@115
|
998 invalidatePixmapCaches();
|
Chris@184
|
999 i->second.second = fill;
|
Chris@115
|
1000 emit modelChanged(m_model->getStartFrame(), m_model->getEndFrame());
|
Chris@115
|
1001 }
|
Chris@115
|
1002
|
Chris@115
|
1003 if (i->second.second >= 0) {
|
Chris@115
|
1004 allDone = false;
|
Chris@115
|
1005 }
|
Chris@115
|
1006 }
|
Chris@0
|
1007 }
|
Chris@115
|
1008
|
Chris@115
|
1009 if (allDone) {
|
Chris@115
|
1010 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@115
|
1011 std::cerr << "SpectrogramLayer: all complete!" << std::endl;
|
Chris@115
|
1012 #endif
|
Chris@115
|
1013 delete m_updateTimer;
|
Chris@115
|
1014 m_updateTimer = 0;
|
Chris@115
|
1015 }
|
Chris@0
|
1016 }
|
Chris@0
|
1017
|
Chris@0
|
1018 void
|
Chris@197
|
1019 SpectrogramLayer::initialisePalette()
|
Chris@0
|
1020 {
|
Chris@10
|
1021 int formerRotation = m_colourRotation;
|
Chris@10
|
1022
|
Chris@197
|
1023 if (m_colourMap == (int)ColourMapper::BlackOnWhite) {
|
Chris@197
|
1024 m_palette.setColour(NO_VALUE, Qt::white);
|
Chris@38
|
1025 } else {
|
Chris@197
|
1026 m_palette.setColour(NO_VALUE, Qt::black);
|
Chris@38
|
1027 }
|
Chris@0
|
1028
|
Chris@197
|
1029 ColourMapper mapper(m_colourMap, 1.f, 255.f);
|
Chris@196
|
1030
|
Chris@0
|
1031 for (int pixel = 1; pixel < 256; ++pixel) {
|
Chris@197
|
1032 m_palette.setColour(pixel, mapper.map(pixel));
|
Chris@0
|
1033 }
|
Chris@9
|
1034
|
Chris@196
|
1035 m_crosshairColour = mapper.getContrastingColour();
|
Chris@196
|
1036
|
Chris@9
|
1037 m_colourRotation = 0;
|
Chris@197
|
1038 rotatePalette(m_colourRotation - formerRotation);
|
Chris@10
|
1039 m_colourRotation = formerRotation;
|
Chris@9
|
1040 }
|
Chris@9
|
1041
|
Chris@9
|
1042 void
|
Chris@197
|
1043 SpectrogramLayer::rotatePalette(int distance)
|
Chris@9
|
1044 {
|
Chris@31
|
1045 QColor newPixels[256];
|
Chris@9
|
1046
|
Chris@197
|
1047 newPixels[NO_VALUE] = m_palette.getColour(NO_VALUE);
|
Chris@9
|
1048
|
Chris@9
|
1049 for (int pixel = 1; pixel < 256; ++pixel) {
|
Chris@9
|
1050 int target = pixel + distance;
|
Chris@9
|
1051 while (target < 1) target += 255;
|
Chris@9
|
1052 while (target > 255) target -= 255;
|
Chris@197
|
1053 newPixels[target] = m_palette.getColour(pixel);
|
Chris@9
|
1054 }
|
Chris@9
|
1055
|
Chris@9
|
1056 for (int pixel = 0; pixel < 256; ++pixel) {
|
Chris@197
|
1057 m_palette.setColour(pixel, newPixels[pixel]);
|
Chris@9
|
1058 }
|
Chris@0
|
1059 }
|
Chris@0
|
1060
|
Chris@38
|
1061 float
|
Chris@38
|
1062 SpectrogramLayer::calculateFrequency(size_t bin,
|
Chris@38
|
1063 size_t windowSize,
|
Chris@38
|
1064 size_t windowIncrement,
|
Chris@38
|
1065 size_t sampleRate,
|
Chris@38
|
1066 float oldPhase,
|
Chris@38
|
1067 float newPhase,
|
Chris@38
|
1068 bool &steadyState)
|
Chris@38
|
1069 {
|
Chris@38
|
1070 // At frequency f, phase shift of 2pi (one cycle) happens in 1/f sec.
|
Chris@38
|
1071 // At hopsize h and sample rate sr, one hop happens in h/sr sec.
|
Chris@38
|
1072 // At window size w, for bin b, f is b*sr/w.
|
Chris@38
|
1073 // thus 2pi phase shift happens in w/(b*sr) sec.
|
Chris@38
|
1074 // We need to know what phase shift we expect from h/sr sec.
|
Chris@38
|
1075 // -> 2pi * ((h/sr) / (w/(b*sr)))
|
Chris@38
|
1076 // = 2pi * ((h * b * sr) / (w * sr))
|
Chris@38
|
1077 // = 2pi * (h * b) / w.
|
Chris@38
|
1078
|
Chris@38
|
1079 float frequency = (float(bin) * sampleRate) / windowSize;
|
Chris@38
|
1080
|
Chris@38
|
1081 float expectedPhase =
|
Chris@38
|
1082 oldPhase + (2.0 * M_PI * bin * windowIncrement) / windowSize;
|
Chris@38
|
1083
|
Chris@104
|
1084 float phaseError = princargf(newPhase - expectedPhase);
|
Chris@38
|
1085
|
Chris@142
|
1086 if (fabsf(phaseError) < (1.1f * (windowIncrement * M_PI) / windowSize)) {
|
Chris@38
|
1087
|
Chris@38
|
1088 // The new frequency estimate based on the phase error
|
Chris@38
|
1089 // resulting from assuming the "native" frequency of this bin
|
Chris@38
|
1090
|
Chris@38
|
1091 float newFrequency =
|
Chris@38
|
1092 (sampleRate * (expectedPhase + phaseError - oldPhase)) /
|
Chris@38
|
1093 (2 * M_PI * windowIncrement);
|
Chris@38
|
1094
|
Chris@38
|
1095 steadyState = true;
|
Chris@38
|
1096 return newFrequency;
|
Chris@38
|
1097 }
|
Chris@38
|
1098
|
Chris@38
|
1099 steadyState = false;
|
Chris@38
|
1100 return frequency;
|
Chris@38
|
1101 }
|
Chris@38
|
1102
|
Chris@38
|
1103 unsigned char
|
Chris@119
|
1104 SpectrogramLayer::getDisplayValue(View *v, float input) const
|
Chris@38
|
1105 {
|
Chris@38
|
1106 int value;
|
Chris@37
|
1107
|
Chris@120
|
1108 float min = 0.f;
|
Chris@120
|
1109 float max = 1.f;
|
Chris@120
|
1110
|
Chris@120
|
1111 if (m_normalizeVisibleArea) {
|
Chris@120
|
1112 min = m_viewMags[v].getMin();
|
Chris@120
|
1113 max = m_viewMags[v].getMax();
|
Chris@120
|
1114 } else if (!m_normalizeColumns) {
|
Chris@120
|
1115 if (m_colourScale == LinearColourScale ||
|
Chris@120
|
1116 m_colourScale == MeterColourScale) {
|
Chris@215
|
1117 // max = 0.1f;
|
Chris@120
|
1118 }
|
Chris@120
|
1119 }
|
Chris@120
|
1120
|
Chris@119
|
1121 float thresh = -80.f;
|
Chris@119
|
1122
|
Chris@119
|
1123 if (max == 0.f) max = 1.f;
|
Chris@119
|
1124 if (max == min) min = max - 0.0001f;
|
Chris@119
|
1125
|
Chris@40
|
1126 switch (m_colourScale) {
|
Chris@40
|
1127
|
Chris@40
|
1128 default:
|
Chris@40
|
1129 case LinearColourScale:
|
Chris@119
|
1130 value = int(((input - min) / (max - min)) * 255.f) + 1;
|
Chris@40
|
1131 break;
|
Chris@40
|
1132
|
Chris@40
|
1133 case MeterColourScale:
|
Chris@210
|
1134 value = AudioLevel::multiplier_to_preview
|
Chris@210
|
1135 ((input - min) / (max - min), 254) + 1;
|
Chris@40
|
1136 break;
|
Chris@119
|
1137
|
Chris@210
|
1138 case dBSquaredColourScale:
|
Chris@215
|
1139 input = ((input - min) * (input - min)) / ((max - min) * (max - min));
|
Chris@133
|
1140 if (input > 0.f) {
|
Chris@133
|
1141 input = 10.f * log10f(input);
|
Chris@133
|
1142 } else {
|
Chris@133
|
1143 input = thresh;
|
Chris@133
|
1144 }
|
Chris@119
|
1145 if (min > 0.f) {
|
Chris@119
|
1146 thresh = 10.f * log10f(min * min);
|
Chris@119
|
1147 if (thresh < -80.f) thresh = -80.f;
|
Chris@119
|
1148 }
|
Chris@119
|
1149 input = (input - thresh) / (-thresh);
|
Chris@119
|
1150 if (input < 0.f) input = 0.f;
|
Chris@119
|
1151 if (input > 1.f) input = 1.f;
|
Chris@119
|
1152 value = int(input * 255.f) + 1;
|
Chris@119
|
1153 break;
|
Chris@40
|
1154
|
Chris@215
|
1155 case dBColourScale:
|
Chris@215
|
1156 //!!! experiment with normalizing the visible area this way.
|
Chris@215
|
1157 //In any case, we need to have some indication of what the dB
|
Chris@215
|
1158 //scale is relative to.
|
Chris@215
|
1159 input = (input - min) / (max - min);
|
Chris@215
|
1160 if (input > 0.f) {
|
Chris@215
|
1161 input = 10.f * log10f(input);
|
Chris@215
|
1162 } else {
|
Chris@215
|
1163 input = thresh;
|
Chris@215
|
1164 }
|
Chris@215
|
1165 if (min > 0.f) {
|
Chris@215
|
1166 thresh = 10.f * log10f(min);
|
Chris@215
|
1167 if (thresh < -80.f) thresh = -80.f;
|
Chris@215
|
1168 }
|
Chris@215
|
1169 input = (input - thresh) / (-thresh);
|
Chris@215
|
1170 if (input < 0.f) input = 0.f;
|
Chris@215
|
1171 if (input > 1.f) input = 1.f;
|
Chris@215
|
1172 value = int(input * 255.f) + 1;
|
Chris@215
|
1173 break;
|
Chris@215
|
1174
|
Chris@40
|
1175 case PhaseColourScale:
|
Chris@40
|
1176 value = int((input * 127.0 / M_PI) + 128);
|
Chris@40
|
1177 break;
|
Chris@0
|
1178 }
|
Chris@210
|
1179
|
Chris@38
|
1180 if (value > UCHAR_MAX) value = UCHAR_MAX;
|
Chris@38
|
1181 if (value < 0) value = 0;
|
Chris@38
|
1182 return value;
|
Chris@0
|
1183 }
|
Chris@0
|
1184
|
Chris@40
|
1185 float
|
Chris@40
|
1186 SpectrogramLayer::getInputForDisplayValue(unsigned char uc) const
|
Chris@40
|
1187 {
|
Chris@153
|
1188 //!!! unused
|
Chris@153
|
1189
|
Chris@40
|
1190 int value = uc;
|
Chris@40
|
1191 float input;
|
Chris@40
|
1192
|
Chris@120
|
1193 //!!! incorrect for normalizing visible area (and also out of date)
|
Chris@120
|
1194
|
Chris@40
|
1195 switch (m_colourScale) {
|
Chris@40
|
1196
|
Chris@40
|
1197 default:
|
Chris@40
|
1198 case LinearColourScale:
|
Chris@40
|
1199 input = float(value - 1) / 255.0 / (m_normalizeColumns ? 1 : 50);
|
Chris@40
|
1200 break;
|
Chris@40
|
1201
|
Chris@40
|
1202 case MeterColourScale:
|
Chris@40
|
1203 input = AudioLevel::preview_to_multiplier(value - 1, 255)
|
Chris@40
|
1204 / (m_normalizeColumns ? 1.0 : 50.0);
|
Chris@40
|
1205 break;
|
Chris@40
|
1206
|
Chris@215
|
1207 case dBSquaredColourScale:
|
Chris@40
|
1208 input = float(value - 1) / 255.0;
|
Chris@40
|
1209 input = (input * 80.0) - 80.0;
|
Chris@40
|
1210 input = powf(10.0, input) / 20.0;
|
Chris@40
|
1211 value = int(input);
|
Chris@40
|
1212 break;
|
Chris@40
|
1213
|
Chris@215
|
1214 case dBColourScale:
|
Chris@119
|
1215 input = float(value - 1) / 255.0;
|
Chris@119
|
1216 input = (input * 80.0) - 80.0;
|
Chris@119
|
1217 input = powf(10.0, input) / 20.0;
|
Chris@119
|
1218 value = int(input);
|
Chris@119
|
1219 break;
|
Chris@119
|
1220
|
Chris@40
|
1221 case PhaseColourScale:
|
Chris@40
|
1222 input = float(value - 128) * M_PI / 127.0;
|
Chris@40
|
1223 break;
|
Chris@40
|
1224 }
|
Chris@40
|
1225
|
Chris@40
|
1226 return input;
|
Chris@40
|
1227 }
|
Chris@40
|
1228
|
Chris@40
|
1229 float
|
Chris@40
|
1230 SpectrogramLayer::getEffectiveMinFrequency() const
|
Chris@40
|
1231 {
|
Chris@40
|
1232 int sr = m_model->getSampleRate();
|
Chris@107
|
1233 float minf = float(sr) / m_fftSize;
|
Chris@40
|
1234
|
Chris@40
|
1235 if (m_minFrequency > 0.0) {
|
Chris@107
|
1236 size_t minbin = size_t((double(m_minFrequency) * m_fftSize) / sr + 0.01);
|
Chris@40
|
1237 if (minbin < 1) minbin = 1;
|
Chris@107
|
1238 minf = minbin * sr / m_fftSize;
|
Chris@40
|
1239 }
|
Chris@40
|
1240
|
Chris@40
|
1241 return minf;
|
Chris@40
|
1242 }
|
Chris@40
|
1243
|
Chris@40
|
1244 float
|
Chris@40
|
1245 SpectrogramLayer::getEffectiveMaxFrequency() const
|
Chris@40
|
1246 {
|
Chris@40
|
1247 int sr = m_model->getSampleRate();
|
Chris@40
|
1248 float maxf = float(sr) / 2;
|
Chris@40
|
1249
|
Chris@40
|
1250 if (m_maxFrequency > 0.0) {
|
Chris@107
|
1251 size_t maxbin = size_t((double(m_maxFrequency) * m_fftSize) / sr + 0.1);
|
Chris@107
|
1252 if (maxbin > m_fftSize / 2) maxbin = m_fftSize / 2;
|
Chris@107
|
1253 maxf = maxbin * sr / m_fftSize;
|
Chris@40
|
1254 }
|
Chris@40
|
1255
|
Chris@40
|
1256 return maxf;
|
Chris@40
|
1257 }
|
Chris@40
|
1258
|
Chris@0
|
1259 bool
|
Chris@44
|
1260 SpectrogramLayer::getYBinRange(View *v, int y, float &q0, float &q1) const
|
Chris@0
|
1261 {
|
Chris@44
|
1262 int h = v->height();
|
Chris@0
|
1263 if (y < 0 || y >= h) return false;
|
Chris@0
|
1264
|
Chris@38
|
1265 int sr = m_model->getSampleRate();
|
Chris@40
|
1266 float minf = getEffectiveMinFrequency();
|
Chris@40
|
1267 float maxf = getEffectiveMaxFrequency();
|
Chris@0
|
1268
|
Chris@38
|
1269 bool logarithmic = (m_frequencyScale == LogFrequencyScale);
|
Chris@38
|
1270
|
Chris@130
|
1271 //!!! wrong for smoothing -- wrong fft size for fft model
|
Chris@114
|
1272
|
Chris@44
|
1273 q0 = v->getFrequencyForY(y, minf, maxf, logarithmic);
|
Chris@44
|
1274 q1 = v->getFrequencyForY(y - 1, minf, maxf, logarithmic);
|
Chris@38
|
1275
|
Chris@38
|
1276 // Now map these on to actual bins
|
Chris@38
|
1277
|
Chris@107
|
1278 int b0 = int((q0 * m_fftSize) / sr);
|
Chris@107
|
1279 int b1 = int((q1 * m_fftSize) / sr);
|
Chris@0
|
1280
|
Chris@40
|
1281 //!!! this is supposed to return fractions-of-bins, as it were, hence the floats
|
Chris@38
|
1282 q0 = b0;
|
Chris@38
|
1283 q1 = b1;
|
Chris@38
|
1284
|
Chris@107
|
1285 // q0 = (b0 * sr) / m_fftSize;
|
Chris@107
|
1286 // q1 = (b1 * sr) / m_fftSize;
|
Chris@0
|
1287
|
Chris@0
|
1288 return true;
|
Chris@0
|
1289 }
|
Chris@38
|
1290
|
Chris@0
|
1291 bool
|
Chris@44
|
1292 SpectrogramLayer::getXBinRange(View *v, int x, float &s0, float &s1) const
|
Chris@0
|
1293 {
|
Chris@21
|
1294 size_t modelStart = m_model->getStartFrame();
|
Chris@21
|
1295 size_t modelEnd = m_model->getEndFrame();
|
Chris@0
|
1296
|
Chris@0
|
1297 // Each pixel column covers an exact range of sample frames:
|
Chris@44
|
1298 int f0 = v->getFrameForX(x) - modelStart;
|
Chris@44
|
1299 int f1 = v->getFrameForX(x + 1) - modelStart - 1;
|
Chris@20
|
1300
|
Chris@41
|
1301 if (f1 < int(modelStart) || f0 > int(modelEnd)) {
|
Chris@41
|
1302 return false;
|
Chris@41
|
1303 }
|
Chris@20
|
1304
|
Chris@0
|
1305 // And that range may be drawn from a possibly non-integral
|
Chris@0
|
1306 // range of spectrogram windows:
|
Chris@0
|
1307
|
Chris@0
|
1308 size_t windowIncrement = getWindowIncrement();
|
Chris@0
|
1309 s0 = float(f0) / windowIncrement;
|
Chris@0
|
1310 s1 = float(f1) / windowIncrement;
|
Chris@0
|
1311
|
Chris@0
|
1312 return true;
|
Chris@0
|
1313 }
|
Chris@0
|
1314
|
Chris@0
|
1315 bool
|
Chris@44
|
1316 SpectrogramLayer::getXBinSourceRange(View *v, int x, RealTime &min, RealTime &max) const
|
Chris@0
|
1317 {
|
Chris@0
|
1318 float s0 = 0, s1 = 0;
|
Chris@44
|
1319 if (!getXBinRange(v, x, s0, s1)) return false;
|
Chris@0
|
1320
|
Chris@0
|
1321 int s0i = int(s0 + 0.001);
|
Chris@0
|
1322 int s1i = int(s1);
|
Chris@0
|
1323
|
Chris@0
|
1324 int windowIncrement = getWindowIncrement();
|
Chris@0
|
1325 int w0 = s0i * windowIncrement - (m_windowSize - windowIncrement)/2;
|
Chris@0
|
1326 int w1 = s1i * windowIncrement + windowIncrement +
|
Chris@0
|
1327 (m_windowSize - windowIncrement)/2 - 1;
|
Chris@0
|
1328
|
Chris@0
|
1329 min = RealTime::frame2RealTime(w0, m_model->getSampleRate());
|
Chris@0
|
1330 max = RealTime::frame2RealTime(w1, m_model->getSampleRate());
|
Chris@0
|
1331 return true;
|
Chris@0
|
1332 }
|
Chris@0
|
1333
|
Chris@0
|
1334 bool
|
Chris@44
|
1335 SpectrogramLayer::getYBinSourceRange(View *v, int y, float &freqMin, float &freqMax)
|
Chris@0
|
1336 const
|
Chris@0
|
1337 {
|
Chris@0
|
1338 float q0 = 0, q1 = 0;
|
Chris@44
|
1339 if (!getYBinRange(v, y, q0, q1)) return false;
|
Chris@0
|
1340
|
Chris@0
|
1341 int q0i = int(q0 + 0.001);
|
Chris@0
|
1342 int q1i = int(q1);
|
Chris@0
|
1343
|
Chris@0
|
1344 int sr = m_model->getSampleRate();
|
Chris@0
|
1345
|
Chris@0
|
1346 for (int q = q0i; q <= q1i; ++q) {
|
Chris@121
|
1347 if (q == q0i) freqMin = (sr * q) / m_fftSize;
|
Chris@121
|
1348 if (q == q1i) freqMax = (sr * (q+1)) / m_fftSize;
|
Chris@0
|
1349 }
|
Chris@0
|
1350 return true;
|
Chris@0
|
1351 }
|
Chris@35
|
1352
|
Chris@35
|
1353 bool
|
Chris@44
|
1354 SpectrogramLayer::getAdjustedYBinSourceRange(View *v, int x, int y,
|
Chris@35
|
1355 float &freqMin, float &freqMax,
|
Chris@35
|
1356 float &adjFreqMin, float &adjFreqMax)
|
Chris@35
|
1357 const
|
Chris@35
|
1358 {
|
Chris@130
|
1359 FFTModel *fft = getFFTModel(v);
|
Chris@114
|
1360 if (!fft) return false;
|
Chris@110
|
1361
|
Chris@35
|
1362 float s0 = 0, s1 = 0;
|
Chris@44
|
1363 if (!getXBinRange(v, x, s0, s1)) return false;
|
Chris@35
|
1364
|
Chris@35
|
1365 float q0 = 0, q1 = 0;
|
Chris@44
|
1366 if (!getYBinRange(v, y, q0, q1)) return false;
|
Chris@35
|
1367
|
Chris@35
|
1368 int s0i = int(s0 + 0.001);
|
Chris@35
|
1369 int s1i = int(s1);
|
Chris@35
|
1370
|
Chris@35
|
1371 int q0i = int(q0 + 0.001);
|
Chris@35
|
1372 int q1i = int(q1);
|
Chris@35
|
1373
|
Chris@35
|
1374 int sr = m_model->getSampleRate();
|
Chris@35
|
1375
|
Chris@38
|
1376 size_t windowSize = m_windowSize;
|
Chris@38
|
1377 size_t windowIncrement = getWindowIncrement();
|
Chris@38
|
1378
|
Chris@35
|
1379 bool haveAdj = false;
|
Chris@35
|
1380
|
Chris@37
|
1381 bool peaksOnly = (m_binDisplay == PeakBins ||
|
Chris@37
|
1382 m_binDisplay == PeakFrequencies);
|
Chris@37
|
1383
|
Chris@35
|
1384 for (int q = q0i; q <= q1i; ++q) {
|
Chris@35
|
1385
|
Chris@35
|
1386 for (int s = s0i; s <= s1i; ++s) {
|
Chris@35
|
1387
|
Chris@160
|
1388 if (!fft->isColumnAvailable(s)) continue;
|
Chris@117
|
1389
|
Chris@35
|
1390 float binfreq = (sr * q) / m_windowSize;
|
Chris@35
|
1391 if (q == q0i) freqMin = binfreq;
|
Chris@35
|
1392 if (q == q1i) freqMax = binfreq;
|
Chris@37
|
1393
|
Chris@114
|
1394 if (peaksOnly && !fft->isLocalPeak(s, q)) continue;
|
Chris@38
|
1395
|
Chris@114
|
1396 if (!fft->isOverThreshold(s, q, m_threshold)) continue;
|
Chris@38
|
1397
|
Chris@38
|
1398 float freq = binfreq;
|
Chris@38
|
1399 bool steady = false;
|
Chris@40
|
1400
|
Chris@114
|
1401 if (s < int(fft->getWidth()) - 1) {
|
Chris@38
|
1402
|
Chris@38
|
1403 freq = calculateFrequency(q,
|
Chris@38
|
1404 windowSize,
|
Chris@38
|
1405 windowIncrement,
|
Chris@38
|
1406 sr,
|
Chris@114
|
1407 fft->getPhaseAt(s, q),
|
Chris@114
|
1408 fft->getPhaseAt(s+1, q),
|
Chris@38
|
1409 steady);
|
Chris@35
|
1410
|
Chris@38
|
1411 if (!haveAdj || freq < adjFreqMin) adjFreqMin = freq;
|
Chris@38
|
1412 if (!haveAdj || freq > adjFreqMax) adjFreqMax = freq;
|
Chris@35
|
1413
|
Chris@35
|
1414 haveAdj = true;
|
Chris@35
|
1415 }
|
Chris@35
|
1416 }
|
Chris@35
|
1417 }
|
Chris@35
|
1418
|
Chris@35
|
1419 if (!haveAdj) {
|
Chris@40
|
1420 adjFreqMin = adjFreqMax = 0.0;
|
Chris@35
|
1421 }
|
Chris@35
|
1422
|
Chris@35
|
1423 return haveAdj;
|
Chris@35
|
1424 }
|
Chris@0
|
1425
|
Chris@0
|
1426 bool
|
Chris@44
|
1427 SpectrogramLayer::getXYBinSourceRange(View *v, int x, int y,
|
Chris@38
|
1428 float &min, float &max,
|
Chris@38
|
1429 float &phaseMin, float &phaseMax) const
|
Chris@0
|
1430 {
|
Chris@0
|
1431 float q0 = 0, q1 = 0;
|
Chris@44
|
1432 if (!getYBinRange(v, y, q0, q1)) return false;
|
Chris@0
|
1433
|
Chris@0
|
1434 float s0 = 0, s1 = 0;
|
Chris@44
|
1435 if (!getXBinRange(v, x, s0, s1)) return false;
|
Chris@0
|
1436
|
Chris@0
|
1437 int q0i = int(q0 + 0.001);
|
Chris@0
|
1438 int q1i = int(q1);
|
Chris@0
|
1439
|
Chris@0
|
1440 int s0i = int(s0 + 0.001);
|
Chris@0
|
1441 int s1i = int(s1);
|
Chris@0
|
1442
|
Chris@37
|
1443 bool rv = false;
|
Chris@37
|
1444
|
Chris@122
|
1445 size_t zp = getZeroPadLevel(v);
|
Chris@122
|
1446 q0i *= zp + 1;
|
Chris@122
|
1447 q1i *= zp + 1;
|
Chris@122
|
1448
|
Chris@130
|
1449 FFTModel *fft = getFFTModel(v);
|
Chris@0
|
1450
|
Chris@114
|
1451 if (fft) {
|
Chris@114
|
1452
|
Chris@114
|
1453 int cw = fft->getWidth();
|
Chris@114
|
1454 int ch = fft->getHeight();
|
Chris@0
|
1455
|
Chris@110
|
1456 min = 0.0;
|
Chris@110
|
1457 max = 0.0;
|
Chris@110
|
1458 phaseMin = 0.0;
|
Chris@110
|
1459 phaseMax = 0.0;
|
Chris@110
|
1460 bool have = false;
|
Chris@0
|
1461
|
Chris@110
|
1462 for (int q = q0i; q <= q1i; ++q) {
|
Chris@110
|
1463 for (int s = s0i; s <= s1i; ++s) {
|
Chris@110
|
1464 if (s >= 0 && q >= 0 && s < cw && q < ch) {
|
Chris@117
|
1465
|
Chris@160
|
1466 if (!fft->isColumnAvailable(s)) continue;
|
Chris@110
|
1467
|
Chris@110
|
1468 float value;
|
Chris@38
|
1469
|
Chris@114
|
1470 value = fft->getPhaseAt(s, q);
|
Chris@110
|
1471 if (!have || value < phaseMin) { phaseMin = value; }
|
Chris@110
|
1472 if (!have || value > phaseMax) { phaseMax = value; }
|
Chris@91
|
1473
|
Chris@114
|
1474 value = fft->getMagnitudeAt(s, q);
|
Chris@110
|
1475 if (!have || value < min) { min = value; }
|
Chris@110
|
1476 if (!have || value > max) { max = value; }
|
Chris@110
|
1477
|
Chris@110
|
1478 have = true;
|
Chris@110
|
1479 }
|
Chris@110
|
1480 }
|
Chris@110
|
1481 }
|
Chris@110
|
1482
|
Chris@110
|
1483 if (have) {
|
Chris@110
|
1484 rv = true;
|
Chris@110
|
1485 }
|
Chris@0
|
1486 }
|
Chris@0
|
1487
|
Chris@37
|
1488 return rv;
|
Chris@0
|
1489 }
|
Chris@0
|
1490
|
Chris@114
|
1491 size_t
|
Chris@114
|
1492 SpectrogramLayer::getZeroPadLevel(const View *v) const
|
Chris@114
|
1493 {
|
Chris@114
|
1494 //!!! tidy all this stuff
|
Chris@114
|
1495
|
Chris@114
|
1496 if (m_binDisplay != AllBins) return 0;
|
Chris@221
|
1497
|
Chris@221
|
1498 Preferences::SpectrogramSmoothing smoothing =
|
Chris@221
|
1499 Preferences::getInstance()->getSpectrogramSmoothing();
|
Chris@221
|
1500
|
Chris@221
|
1501 if (smoothing == Preferences::NoSpectrogramSmoothing ||
|
Chris@221
|
1502 smoothing == Preferences::SpectrogramInterpolated) return 0;
|
Chris@221
|
1503
|
Chris@114
|
1504 if (m_frequencyScale == LogFrequencyScale) return 3;
|
Chris@114
|
1505
|
Chris@114
|
1506 int sr = m_model->getSampleRate();
|
Chris@114
|
1507
|
Chris@184
|
1508 size_t maxbin = m_fftSize / 2;
|
Chris@114
|
1509 if (m_maxFrequency > 0) {
|
Chris@184
|
1510 maxbin = int((double(m_maxFrequency) * m_fftSize) / sr + 0.1);
|
Chris@184
|
1511 if (maxbin > m_fftSize / 2) maxbin = m_fftSize / 2;
|
Chris@114
|
1512 }
|
Chris@114
|
1513
|
Chris@114
|
1514 size_t minbin = 1;
|
Chris@114
|
1515 if (m_minFrequency > 0) {
|
Chris@114
|
1516 minbin = int((double(m_minFrequency) * m_fftSize) / sr + 0.1);
|
Chris@114
|
1517 if (minbin < 1) minbin = 1;
|
Chris@184
|
1518 if (minbin >= maxbin) minbin = maxbin - 1;
|
Chris@114
|
1519 }
|
Chris@114
|
1520
|
Chris@118
|
1521 float perPixel =
|
Chris@118
|
1522 float(v->height()) /
|
Chris@184
|
1523 float((maxbin - minbin) / (m_zeroPadLevel + 1));
|
Chris@118
|
1524
|
Chris@118
|
1525 if (perPixel > 2.8) {
|
Chris@118
|
1526 return 3; // 4x oversampling
|
Chris@118
|
1527 } else if (perPixel > 1.5) {
|
Chris@118
|
1528 return 1; // 2x
|
Chris@114
|
1529 } else {
|
Chris@118
|
1530 return 0; // 1x
|
Chris@114
|
1531 }
|
Chris@114
|
1532 }
|
Chris@114
|
1533
|
Chris@114
|
1534 size_t
|
Chris@114
|
1535 SpectrogramLayer::getFFTSize(const View *v) const
|
Chris@114
|
1536 {
|
Chris@114
|
1537 return m_fftSize * (getZeroPadLevel(v) + 1);
|
Chris@114
|
1538 }
|
Chris@114
|
1539
|
Chris@130
|
1540 FFTModel *
|
Chris@130
|
1541 SpectrogramLayer::getFFTModel(const View *v) const
|
Chris@114
|
1542 {
|
Chris@114
|
1543 if (!m_model) return 0;
|
Chris@114
|
1544
|
Chris@114
|
1545 size_t fftSize = getFFTSize(v);
|
Chris@114
|
1546
|
Chris@130
|
1547 if (m_fftModels.find(v) != m_fftModels.end()) {
|
Chris@184
|
1548 if (m_fftModels[v].first == 0) {
|
Chris@184
|
1549 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@184
|
1550 std::cerr << "SpectrogramLayer::getFFTModel(" << v << "): Found null model" << std::endl;
|
Chris@184
|
1551 #endif
|
Chris@184
|
1552 return 0;
|
Chris@184
|
1553 }
|
Chris@184
|
1554 if (m_fftModels[v].first->getHeight() != fftSize / 2 + 1) {
|
Chris@184
|
1555 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@184
|
1556 std::cerr << "SpectrogramLayer::getFFTModel(" << v << "): Found a model with the wrong height (" << m_fftModels[v].first->getHeight() << ", wanted " << (fftSize / 2 + 1) << ")" << std::endl;
|
Chris@184
|
1557 #endif
|
Chris@130
|
1558 delete m_fftModels[v].first;
|
Chris@130
|
1559 m_fftModels.erase(v);
|
Chris@184
|
1560 } else {
|
Chris@184
|
1561 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@187
|
1562 std::cerr << "SpectrogramLayer::getFFTModel(" << v << "): Found a good model of height " << m_fftModels[v].first->getHeight() << std::endl;
|
Chris@184
|
1563 #endif
|
Chris@184
|
1564 return m_fftModels[v].first;
|
Chris@114
|
1565 }
|
Chris@114
|
1566 }
|
Chris@114
|
1567
|
Chris@130
|
1568 if (m_fftModels.find(v) == m_fftModels.end()) {
|
Chris@169
|
1569
|
Chris@169
|
1570 FFTModel *model = new FFTModel(m_model,
|
Chris@169
|
1571 m_channel,
|
Chris@169
|
1572 m_windowType,
|
Chris@169
|
1573 m_windowSize,
|
Chris@169
|
1574 getWindowIncrement(),
|
Chris@169
|
1575 fftSize,
|
Chris@169
|
1576 true,
|
Chris@169
|
1577 m_candidateFillStartFrame);
|
Chris@169
|
1578
|
Chris@178
|
1579 if (!model->isOK()) {
|
Chris@178
|
1580 QMessageBox::critical
|
Chris@178
|
1581 (0, tr("FFT cache failed"),
|
Chris@178
|
1582 tr("Failed to create the FFT model for this spectrogram.\n"
|
Chris@178
|
1583 "There may be insufficient memory or disc space to continue."));
|
Chris@178
|
1584 delete model;
|
Chris@178
|
1585 m_fftModels[v] = FFTFillPair(0, 0);
|
Chris@178
|
1586 return 0;
|
Chris@178
|
1587 }
|
Chris@178
|
1588
|
Chris@193
|
1589 if (!m_sliceableModel) {
|
Chris@193
|
1590 std::cerr << "SpectrogramLayer: emitting sliceableModelReplaced(0, " << model << ")" << std::endl;
|
Chris@193
|
1591 ((SpectrogramLayer *)this)->sliceableModelReplaced(0, model);
|
Chris@193
|
1592 m_sliceableModel = model;
|
Chris@193
|
1593 }
|
Chris@193
|
1594
|
Chris@169
|
1595 m_fftModels[v] = FFTFillPair(model, 0);
|
Chris@169
|
1596
|
Chris@169
|
1597 model->resume();
|
Chris@114
|
1598
|
Chris@114
|
1599 delete m_updateTimer;
|
Chris@114
|
1600 m_updateTimer = new QTimer((SpectrogramLayer *)this);
|
Chris@114
|
1601 connect(m_updateTimer, SIGNAL(timeout()),
|
Chris@114
|
1602 this, SLOT(fillTimerTimedOut()));
|
Chris@114
|
1603 m_updateTimer->start(200);
|
Chris@114
|
1604 }
|
Chris@114
|
1605
|
Chris@130
|
1606 return m_fftModels[v].first;
|
Chris@114
|
1607 }
|
Chris@114
|
1608
|
Chris@193
|
1609 const Model *
|
Chris@193
|
1610 SpectrogramLayer::getSliceableModel() const
|
Chris@193
|
1611 {
|
Chris@193
|
1612 if (m_sliceableModel) return m_sliceableModel;
|
Chris@193
|
1613 if (m_fftModels.empty()) return 0;
|
Chris@193
|
1614 m_sliceableModel = m_fftModels.begin()->second.first;
|
Chris@193
|
1615 return m_sliceableModel;
|
Chris@193
|
1616 }
|
Chris@193
|
1617
|
Chris@114
|
1618 void
|
Chris@130
|
1619 SpectrogramLayer::invalidateFFTModels()
|
Chris@114
|
1620 {
|
Chris@130
|
1621 for (ViewFFTMap::iterator i = m_fftModels.begin();
|
Chris@130
|
1622 i != m_fftModels.end(); ++i) {
|
Chris@115
|
1623 delete i->second.first;
|
Chris@114
|
1624 }
|
Chris@114
|
1625
|
Chris@130
|
1626 m_fftModels.clear();
|
Chris@193
|
1627
|
Chris@193
|
1628 if (m_sliceableModel) {
|
Chris@193
|
1629 std::cerr << "SpectrogramLayer: emitting sliceableModelReplaced(" << m_sliceableModel << ", 0)" << std::endl;
|
Chris@193
|
1630 emit sliceableModelReplaced(m_sliceableModel, 0);
|
Chris@193
|
1631 m_sliceableModel = 0;
|
Chris@193
|
1632 }
|
Chris@114
|
1633 }
|
Chris@114
|
1634
|
Chris@0
|
1635 void
|
Chris@119
|
1636 SpectrogramLayer::invalidateMagnitudes()
|
Chris@119
|
1637 {
|
Chris@119
|
1638 m_viewMags.clear();
|
Chris@119
|
1639 for (std::vector<MagnitudeRange>::iterator i = m_columnMags.begin();
|
Chris@119
|
1640 i != m_columnMags.end(); ++i) {
|
Chris@119
|
1641 *i = MagnitudeRange();
|
Chris@119
|
1642 }
|
Chris@119
|
1643 }
|
Chris@119
|
1644
|
Chris@119
|
1645 bool
|
Chris@119
|
1646 SpectrogramLayer::updateViewMagnitudes(View *v) const
|
Chris@119
|
1647 {
|
Chris@119
|
1648 MagnitudeRange mag;
|
Chris@119
|
1649
|
Chris@119
|
1650 int x0 = 0, x1 = v->width();
|
Chris@119
|
1651 float s00 = 0, s01 = 0, s10 = 0, s11 = 0;
|
Chris@119
|
1652
|
Chris@203
|
1653 if (!getXBinRange(v, x0, s00, s01)) {
|
Chris@203
|
1654 s00 = s01 = m_model->getStartFrame() / getWindowIncrement();
|
Chris@203
|
1655 }
|
Chris@203
|
1656
|
Chris@203
|
1657 if (!getXBinRange(v, x1, s10, s11)) {
|
Chris@203
|
1658 s10 = s11 = m_model->getEndFrame() / getWindowIncrement();
|
Chris@203
|
1659 }
|
Chris@119
|
1660
|
Chris@119
|
1661 int s0 = int(std::min(s00, s10) + 0.0001);
|
Chris@203
|
1662 int s1 = int(std::max(s01, s11) + 0.0001);
|
Chris@203
|
1663
|
Chris@203
|
1664 // std::cerr << "SpectrogramLayer::updateViewMagnitudes: x0 = " << x0 << ", x1 = " << x1 << ", s00 = " << s00 << ", s11 = " << s11 << " s0 = " << s0 << ", s1 = " << s1 << std::endl;
|
Chris@119
|
1665
|
Chris@119
|
1666 if (m_columnMags.size() <= s1) {
|
Chris@119
|
1667 m_columnMags.resize(s1 + 1);
|
Chris@119
|
1668 }
|
Chris@119
|
1669
|
Chris@119
|
1670 for (int s = s0; s <= s1; ++s) {
|
Chris@119
|
1671 if (m_columnMags[s].isSet()) {
|
Chris@119
|
1672 mag.sample(m_columnMags[s]);
|
Chris@119
|
1673 }
|
Chris@119
|
1674 }
|
Chris@119
|
1675
|
Chris@184
|
1676 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@119
|
1677 std::cerr << "SpectrogramLayer::updateViewMagnitudes returning from cols "
|
Chris@119
|
1678 << s0 << " -> " << s1 << " inclusive" << std::endl;
|
Chris@184
|
1679 #endif
|
Chris@119
|
1680
|
Chris@119
|
1681 if (!mag.isSet()) return false;
|
Chris@119
|
1682 if (mag == m_viewMags[v]) return false;
|
Chris@119
|
1683 m_viewMags[v] = mag;
|
Chris@119
|
1684 return true;
|
Chris@119
|
1685 }
|
Chris@119
|
1686
|
Chris@119
|
1687 void
|
Chris@44
|
1688 SpectrogramLayer::paint(View *v, QPainter &paint, QRect rect) const
|
Chris@0
|
1689 {
|
Chris@197
|
1690 if (m_colourMap == (int)ColourMapper::BlackOnWhite) {
|
Chris@55
|
1691 v->setLightBackground(true);
|
Chris@55
|
1692 } else {
|
Chris@55
|
1693 v->setLightBackground(false);
|
Chris@55
|
1694 }
|
Chris@55
|
1695
|
Chris@161
|
1696 Profiler profiler("SpectrogramLayer::paint", true);
|
Chris@0
|
1697 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@95
|
1698 std::cerr << "SpectrogramLayer::paint(): m_model is " << m_model << ", zoom level is " << v->getZoomLevel() << ", m_updateTimer " << m_updateTimer << std::endl;
|
Chris@95
|
1699
|
Chris@95
|
1700 std::cerr << "rect is " << rect.x() << "," << rect.y() << " " << rect.width() << "x" << rect.height() << std::endl;
|
Chris@0
|
1701 #endif
|
Chris@95
|
1702
|
Chris@133
|
1703 long startFrame = v->getStartFrame();
|
Chris@133
|
1704 if (startFrame < 0) m_candidateFillStartFrame = 0;
|
Chris@133
|
1705 else m_candidateFillStartFrame = startFrame;
|
Chris@44
|
1706
|
Chris@0
|
1707 if (!m_model || !m_model->isOK() || !m_model->isReady()) {
|
Chris@0
|
1708 return;
|
Chris@0
|
1709 }
|
Chris@0
|
1710
|
Chris@47
|
1711 if (isLayerDormant(v)) {
|
Chris@48
|
1712 std::cerr << "SpectrogramLayer::paint(): Layer is dormant, making it undormant again" << std::endl;
|
Chris@29
|
1713 }
|
Chris@29
|
1714
|
Chris@48
|
1715 // Need to do this even if !isLayerDormant, as that could mean v
|
Chris@48
|
1716 // is not in the dormancy map at all -- we need it to be present
|
Chris@48
|
1717 // and accountable for when determining whether we need the cache
|
Chris@48
|
1718 // in the cache-fill thread above.
|
Chris@131
|
1719 //!!! no longer use cache-fill thread
|
Chris@131
|
1720 const_cast<SpectrogramLayer *>(this)->Layer::setLayerDormant(v, false);
|
Chris@48
|
1721
|
Chris@114
|
1722 size_t fftSize = getFFTSize(v);
|
Chris@130
|
1723 FFTModel *fft = getFFTModel(v);
|
Chris@114
|
1724 if (!fft) {
|
Chris@130
|
1725 std::cerr << "ERROR: SpectrogramLayer::paint(): No FFT model, returning" << std::endl;
|
Chris@0
|
1726 return;
|
Chris@0
|
1727 }
|
Chris@0
|
1728
|
Chris@95
|
1729 PixmapCache &cache = m_pixmapCaches[v];
|
Chris@95
|
1730
|
Chris@95
|
1731 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@95
|
1732 std::cerr << "SpectrogramLayer::paint(): pixmap cache valid area " << cache.validArea.x() << ", " << cache.validArea.y() << ", " << cache.validArea.width() << "x" << cache.validArea.height() << std::endl;
|
Chris@95
|
1733 #endif
|
Chris@95
|
1734
|
Chris@0
|
1735 bool stillCacheing = (m_updateTimer != 0);
|
Chris@0
|
1736
|
Chris@0
|
1737 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@0
|
1738 std::cerr << "SpectrogramLayer::paint(): Still cacheing = " << stillCacheing << std::endl;
|
Chris@0
|
1739 #endif
|
Chris@0
|
1740
|
Chris@44
|
1741 int zoomLevel = v->getZoomLevel();
|
Chris@0
|
1742
|
Chris@0
|
1743 int x0 = 0;
|
Chris@44
|
1744 int x1 = v->width();
|
Chris@0
|
1745 int y0 = 0;
|
Chris@44
|
1746 int y1 = v->height();
|
Chris@0
|
1747
|
Chris@0
|
1748 bool recreateWholePixmapCache = true;
|
Chris@0
|
1749
|
Chris@95
|
1750 x0 = rect.left();
|
Chris@95
|
1751 x1 = rect.right() + 1;
|
Chris@95
|
1752 y0 = rect.top();
|
Chris@95
|
1753 y1 = rect.bottom() + 1;
|
Chris@95
|
1754
|
Chris@95
|
1755 if (cache.validArea.width() > 0) {
|
Chris@95
|
1756
|
Chris@95
|
1757 if (int(cache.zoomLevel) == zoomLevel &&
|
Chris@95
|
1758 cache.pixmap.width() == v->width() &&
|
Chris@95
|
1759 cache.pixmap.height() == v->height()) {
|
Chris@95
|
1760
|
Chris@95
|
1761 if (v->getXForFrame(cache.startFrame) ==
|
Chris@95
|
1762 v->getXForFrame(startFrame) &&
|
Chris@95
|
1763 cache.validArea.x() <= x0 &&
|
Chris@95
|
1764 cache.validArea.x() + cache.validArea.width() >= x1) {
|
Chris@0
|
1765
|
Chris@0
|
1766 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@0
|
1767 std::cerr << "SpectrogramLayer: pixmap cache good" << std::endl;
|
Chris@0
|
1768 #endif
|
Chris@0
|
1769
|
Chris@95
|
1770 paint.drawPixmap(rect, cache.pixmap, rect);
|
Chris@121
|
1771 illuminateLocalFeatures(v, paint);
|
Chris@0
|
1772 return;
|
Chris@0
|
1773
|
Chris@0
|
1774 } else {
|
Chris@0
|
1775
|
Chris@0
|
1776 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@0
|
1777 std::cerr << "SpectrogramLayer: pixmap cache partially OK" << std::endl;
|
Chris@0
|
1778 #endif
|
Chris@0
|
1779
|
Chris@0
|
1780 recreateWholePixmapCache = false;
|
Chris@0
|
1781
|
Chris@95
|
1782 int dx = v->getXForFrame(cache.startFrame) -
|
Chris@44
|
1783 v->getXForFrame(startFrame);
|
Chris@0
|
1784
|
Chris@0
|
1785 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@95
|
1786 std::cerr << "SpectrogramLayer: dx = " << dx << " (pixmap cache " << cache.pixmap.width() << "x" << cache.pixmap.height() << ")" << std::endl;
|
Chris@0
|
1787 #endif
|
Chris@0
|
1788
|
Chris@95
|
1789 if (dx != 0 &&
|
Chris@95
|
1790 dx > -cache.pixmap.width() &&
|
Chris@95
|
1791 dx < cache.pixmap.width()) {
|
Chris@0
|
1792
|
Chris@0
|
1793 #if defined(Q_WS_WIN32) || defined(Q_WS_MAC)
|
Chris@0
|
1794 // Copying a pixmap to itself doesn't work
|
Chris@0
|
1795 // properly on Windows or Mac (it only works when
|
Chris@0
|
1796 // moving in one direction).
|
Chris@0
|
1797
|
Chris@0
|
1798 //!!! Need a utility function for this
|
Chris@0
|
1799
|
Chris@0
|
1800 static QPixmap *tmpPixmap = 0;
|
Chris@0
|
1801 if (!tmpPixmap ||
|
Chris@95
|
1802 tmpPixmap->width() != cache.pixmap.width() ||
|
Chris@95
|
1803 tmpPixmap->height() != cache.pixmap.height()) {
|
Chris@0
|
1804 delete tmpPixmap;
|
Chris@95
|
1805 tmpPixmap = new QPixmap(cache.pixmap.width(),
|
Chris@95
|
1806 cache.pixmap.height());
|
Chris@0
|
1807 }
|
Chris@0
|
1808 QPainter cachePainter;
|
Chris@0
|
1809 cachePainter.begin(tmpPixmap);
|
Chris@95
|
1810 cachePainter.drawPixmap(0, 0, cache.pixmap);
|
Chris@0
|
1811 cachePainter.end();
|
Chris@95
|
1812 cachePainter.begin(&cache.pixmap);
|
Chris@0
|
1813 cachePainter.drawPixmap(dx, 0, *tmpPixmap);
|
Chris@0
|
1814 cachePainter.end();
|
Chris@0
|
1815 #else
|
Chris@95
|
1816 QPainter cachePainter(&cache.pixmap);
|
Chris@95
|
1817 cachePainter.drawPixmap(dx, 0, cache.pixmap);
|
Chris@0
|
1818 cachePainter.end();
|
Chris@0
|
1819 #endif
|
Chris@0
|
1820
|
Chris@95
|
1821 int px = cache.validArea.x();
|
Chris@95
|
1822 int pw = cache.validArea.width();
|
Chris@0
|
1823
|
Chris@0
|
1824 if (dx < 0) {
|
Chris@95
|
1825 x0 = cache.pixmap.width() + dx;
|
Chris@95
|
1826 x1 = cache.pixmap.width();
|
Chris@95
|
1827 px += dx;
|
Chris@95
|
1828 if (px < 0) {
|
Chris@95
|
1829 pw += px;
|
Chris@95
|
1830 px = 0;
|
Chris@95
|
1831 if (pw < 0) pw = 0;
|
Chris@95
|
1832 }
|
Chris@0
|
1833 } else {
|
Chris@0
|
1834 x0 = 0;
|
Chris@0
|
1835 x1 = dx;
|
Chris@95
|
1836 px += dx;
|
Chris@95
|
1837 if (px + pw > cache.pixmap.width()) {
|
Chris@95
|
1838 pw = int(cache.pixmap.width()) - px;
|
Chris@95
|
1839 if (pw < 0) pw = 0;
|
Chris@95
|
1840 }
|
Chris@0
|
1841 }
|
Chris@95
|
1842
|
Chris@95
|
1843 cache.validArea =
|
Chris@95
|
1844 QRect(px, cache.validArea.y(),
|
Chris@95
|
1845 pw, cache.validArea.height());
|
Chris@95
|
1846
|
Chris@95
|
1847 paint.drawPixmap(rect & cache.validArea,
|
Chris@95
|
1848 cache.pixmap,
|
Chris@95
|
1849 rect & cache.validArea);
|
Chris@0
|
1850 }
|
Chris@0
|
1851 }
|
Chris@0
|
1852 } else {
|
Chris@0
|
1853 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@0
|
1854 std::cerr << "SpectrogramLayer: pixmap cache useless" << std::endl;
|
Chris@0
|
1855 #endif
|
Chris@95
|
1856 cache.validArea = QRect();
|
Chris@0
|
1857 }
|
Chris@0
|
1858 }
|
Chris@95
|
1859
|
Chris@92
|
1860 /*
|
Chris@0
|
1861 if (stillCacheing) {
|
Chris@0
|
1862 x0 = rect.left();
|
Chris@0
|
1863 x1 = rect.right() + 1;
|
Chris@0
|
1864 y0 = rect.top();
|
Chris@0
|
1865 y1 = rect.bottom() + 1;
|
Chris@0
|
1866 }
|
Chris@92
|
1867 */
|
Chris@95
|
1868
|
Chris@133
|
1869 if (updateViewMagnitudes(v)) {
|
Chris@184
|
1870 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@133
|
1871 std::cerr << "SpectrogramLayer: magnitude range changed to [" << m_viewMags[v].getMin() << "->" << m_viewMags[v].getMax() << "]" << std::endl;
|
Chris@184
|
1872 #endif
|
Chris@133
|
1873 recreateWholePixmapCache = true;
|
Chris@133
|
1874 } else {
|
Chris@184
|
1875 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@133
|
1876 std::cerr << "No change in magnitude range [" << m_viewMags[v].getMin() << "->" << m_viewMags[v].getMax() << "]" << std::endl;
|
Chris@184
|
1877 #endif
|
Chris@133
|
1878 }
|
Chris@133
|
1879
|
Chris@95
|
1880 if (recreateWholePixmapCache) {
|
Chris@95
|
1881 x0 = 0;
|
Chris@95
|
1882 x1 = v->width();
|
Chris@95
|
1883 }
|
Chris@95
|
1884
|
Chris@215
|
1885 struct timeval tv;
|
Chris@215
|
1886 (void)gettimeofday(&tv, 0);
|
Chris@215
|
1887 RealTime mainPaintStart = RealTime::fromTimeval(tv);
|
Chris@215
|
1888
|
Chris@215
|
1889 int paintBlockWidth = m_lastPaintBlockWidth;
|
Chris@215
|
1890
|
Chris@215
|
1891 if (paintBlockWidth == 0) {
|
Chris@215
|
1892 paintBlockWidth = (300000 / zoomLevel);
|
Chris@215
|
1893 } else {
|
Chris@215
|
1894 RealTime lastTime = m_lastPaintTime;
|
Chris@215
|
1895 while (lastTime > RealTime::fromMilliseconds(200) &&
|
Chris@215
|
1896 paintBlockWidth > 50) {
|
Chris@215
|
1897 paintBlockWidth /= 2;
|
Chris@215
|
1898 lastTime = lastTime / 2;
|
Chris@215
|
1899 }
|
Chris@215
|
1900 while (lastTime < RealTime::fromMilliseconds(90) &&
|
Chris@215
|
1901 paintBlockWidth < 1500) {
|
Chris@215
|
1902 paintBlockWidth *= 2;
|
Chris@215
|
1903 lastTime = lastTime * 2;
|
Chris@215
|
1904 }
|
Chris@215
|
1905 }
|
Chris@215
|
1906
|
Chris@96
|
1907 if (paintBlockWidth < 20) paintBlockWidth = 20;
|
Chris@96
|
1908
|
Chris@215
|
1909 std::cerr << "[" << this << "]: last paint width: " << m_lastPaintBlockWidth << ", last paint time: " << m_lastPaintTime << ", new paint width: " << paintBlockWidth << std::endl;
|
Chris@215
|
1910
|
Chris@96
|
1911 if (cache.validArea.width() > 0) {
|
Chris@96
|
1912
|
Chris@96
|
1913 int vx0 = 0, vx1 = 0;
|
Chris@96
|
1914 vx0 = cache.validArea.x();
|
Chris@96
|
1915 vx1 = cache.validArea.x() + cache.validArea.width();
|
Chris@96
|
1916
|
Chris@96
|
1917 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@96
|
1918 std::cerr << "x0 " << x0 << ", x1 " << x1 << ", vx0 " << vx0 << ", vx1 " << vx1 << ", paintBlockWidth " << paintBlockWidth << std::endl;
|
Chris@96
|
1919 #endif
|
Chris@96
|
1920 if (x0 < vx0) {
|
Chris@96
|
1921 if (x0 + paintBlockWidth < vx0) {
|
Chris@96
|
1922 x0 = vx0 - paintBlockWidth;
|
Chris@96
|
1923 } else {
|
Chris@96
|
1924 x0 = 0;
|
Chris@96
|
1925 }
|
Chris@96
|
1926 } else if (x0 > vx1) {
|
Chris@96
|
1927 x0 = vx1;
|
Chris@96
|
1928 }
|
Chris@95
|
1929
|
Chris@96
|
1930 if (x1 < vx0) {
|
Chris@96
|
1931 x1 = vx0;
|
Chris@96
|
1932 } else if (x1 > vx1) {
|
Chris@96
|
1933 if (vx1 + paintBlockWidth < x1) {
|
Chris@96
|
1934 x1 = vx1 + paintBlockWidth;
|
Chris@96
|
1935 } else {
|
Chris@96
|
1936 x1 = v->width();
|
Chris@95
|
1937 }
|
Chris@96
|
1938 }
|
Chris@95
|
1939
|
Chris@96
|
1940 cache.validArea = QRect
|
Chris@96
|
1941 (std::min(vx0, x0), cache.validArea.y(),
|
Chris@96
|
1942 std::max(vx1 - std::min(vx0, x0),
|
Chris@96
|
1943 x1 - std::min(vx0, x0)),
|
Chris@96
|
1944 cache.validArea.height());
|
Chris@95
|
1945
|
Chris@96
|
1946 } else {
|
Chris@96
|
1947 if (x1 > x0 + paintBlockWidth) {
|
Chris@133
|
1948 int sfx = x1;
|
Chris@133
|
1949 if (startFrame < 0) sfx = v->getXForFrame(0);
|
Chris@133
|
1950 if (sfx >= x0 && sfx + paintBlockWidth <= x1) {
|
Chris@133
|
1951 x0 = sfx;
|
Chris@133
|
1952 x1 = x0 + paintBlockWidth;
|
Chris@133
|
1953 } else {
|
Chris@133
|
1954 int mid = (x1 + x0) / 2;
|
Chris@133
|
1955 x0 = mid - paintBlockWidth/2;
|
Chris@133
|
1956 x1 = x0 + paintBlockWidth;
|
Chris@133
|
1957 }
|
Chris@95
|
1958 }
|
Chris@96
|
1959 cache.validArea = QRect(x0, 0, x1 - x0, v->height());
|
Chris@95
|
1960 }
|
Chris@95
|
1961
|
Chris@0
|
1962 int w = x1 - x0;
|
Chris@0
|
1963 int h = y1 - y0;
|
Chris@0
|
1964
|
Chris@95
|
1965 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@95
|
1966 std::cerr << "x0 " << x0 << ", x1 " << x1 << ", w " << w << ", h " << h << std::endl;
|
Chris@95
|
1967 #endif
|
Chris@95
|
1968
|
Chris@95
|
1969 if (m_drawBuffer.width() < w || m_drawBuffer.height() < h) {
|
Chris@95
|
1970 m_drawBuffer = QImage(w, h, QImage::Format_RGB32);
|
Chris@95
|
1971 }
|
Chris@95
|
1972
|
Chris@197
|
1973 m_drawBuffer.fill(m_palette.getColour(0).rgb());
|
Chris@35
|
1974
|
Chris@37
|
1975 int sr = m_model->getSampleRate();
|
Chris@122
|
1976
|
Chris@122
|
1977 // Set minFreq and maxFreq to the frequency extents of the possibly
|
Chris@122
|
1978 // zero-padded visible bin range, and displayMinFreq and displayMaxFreq
|
Chris@122
|
1979 // to the actual scale frequency extents (presumably not zero padded).
|
Chris@35
|
1980
|
Chris@184
|
1981 size_t maxbin = fftSize / 2;
|
Chris@35
|
1982 if (m_maxFrequency > 0) {
|
Chris@184
|
1983 maxbin = int((double(m_maxFrequency) * fftSize) / sr + 0.1);
|
Chris@184
|
1984 if (maxbin > fftSize / 2) maxbin = fftSize / 2;
|
Chris@35
|
1985 }
|
Chris@111
|
1986
|
Chris@40
|
1987 size_t minbin = 1;
|
Chris@37
|
1988 if (m_minFrequency > 0) {
|
Chris@114
|
1989 minbin = int((double(m_minFrequency) * fftSize) / sr + 0.1);
|
Chris@40
|
1990 if (minbin < 1) minbin = 1;
|
Chris@184
|
1991 if (minbin >= maxbin) minbin = maxbin - 1;
|
Chris@37
|
1992 }
|
Chris@37
|
1993
|
Chris@114
|
1994 float minFreq = (float(minbin) * sr) / fftSize;
|
Chris@184
|
1995 float maxFreq = (float(maxbin) * sr) / fftSize;
|
Chris@0
|
1996
|
Chris@122
|
1997 float displayMinFreq = minFreq;
|
Chris@122
|
1998 float displayMaxFreq = maxFreq;
|
Chris@122
|
1999
|
Chris@122
|
2000 if (fftSize != m_fftSize) {
|
Chris@122
|
2001 displayMinFreq = getEffectiveMinFrequency();
|
Chris@122
|
2002 displayMaxFreq = getEffectiveMaxFrequency();
|
Chris@122
|
2003 }
|
Chris@122
|
2004
|
Chris@92
|
2005 float ymag[h];
|
Chris@92
|
2006 float ydiv[h];
|
Chris@184
|
2007 float yval[maxbin + 1]; //!!! cache this?
|
Chris@92
|
2008
|
Chris@38
|
2009 size_t increment = getWindowIncrement();
|
Chris@40
|
2010
|
Chris@40
|
2011 bool logarithmic = (m_frequencyScale == LogFrequencyScale);
|
Chris@38
|
2012
|
Chris@184
|
2013 for (size_t q = minbin; q <= maxbin; ++q) {
|
Chris@114
|
2014 float f0 = (float(q) * sr) / fftSize;
|
Chris@122
|
2015 yval[q] = v->getYForFrequency(f0, displayMinFreq, displayMaxFreq,
|
Chris@122
|
2016 logarithmic);
|
Chris@122
|
2017 // std::cerr << "min: " << minFreq << ", max: " << maxFreq << ", yval[" << q << "]: " << yval[q] << std::endl;
|
Chris@92
|
2018 }
|
Chris@92
|
2019
|
Chris@119
|
2020 MagnitudeRange overallMag = m_viewMags[v];
|
Chris@119
|
2021 bool overallMagChanged = false;
|
Chris@119
|
2022
|
Chris@162
|
2023 bool fftSuspended = false;
|
Chris@131
|
2024
|
Chris@221
|
2025 bool interpolate = false;
|
Chris@221
|
2026 Preferences::SpectrogramSmoothing smoothing =
|
Chris@221
|
2027 Preferences::getInstance()->getSpectrogramSmoothing();
|
Chris@221
|
2028 if (smoothing == Preferences::SpectrogramInterpolated ||
|
Chris@221
|
2029 smoothing == Preferences::SpectrogramZeroPaddedAndInterpolated) {
|
Chris@221
|
2030 interpolate = true;
|
Chris@221
|
2031 }
|
Chris@221
|
2032
|
Chris@221
|
2033
|
Chris@137
|
2034 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@137
|
2035 std::cerr << (float(v->getFrameForX(1) - v->getFrameForX(0)) / increment) << " bins per pixel" << std::endl;
|
Chris@137
|
2036 #endif
|
Chris@137
|
2037
|
Chris@35
|
2038 for (int x = 0; x < w; ++x) {
|
Chris@35
|
2039
|
Chris@35
|
2040 for (int y = 0; y < h; ++y) {
|
Chris@134
|
2041 ymag[y] = 0.f;
|
Chris@134
|
2042 ydiv[y] = 0.f;
|
Chris@35
|
2043 }
|
Chris@35
|
2044
|
Chris@35
|
2045 float s0 = 0, s1 = 0;
|
Chris@35
|
2046
|
Chris@44
|
2047 if (!getXBinRange(v, x0 + x, s0, s1)) {
|
Chris@95
|
2048 assert(x <= m_drawBuffer.width());
|
Chris@35
|
2049 continue;
|
Chris@35
|
2050 }
|
Chris@35
|
2051
|
Chris@35
|
2052 int s0i = int(s0 + 0.001);
|
Chris@35
|
2053 int s1i = int(s1);
|
Chris@35
|
2054
|
Chris@114
|
2055 if (s1i >= fft->getWidth()) {
|
Chris@114
|
2056 if (s0i >= fft->getWidth()) {
|
Chris@45
|
2057 continue;
|
Chris@45
|
2058 } else {
|
Chris@45
|
2059 s1i = s0i;
|
Chris@45
|
2060 }
|
Chris@45
|
2061 }
|
Chris@92
|
2062
|
Chris@92
|
2063 for (int s = s0i; s <= s1i; ++s) {
|
Chris@92
|
2064
|
Chris@160
|
2065 if (!fft->isColumnAvailable(s)) continue;
|
Chris@162
|
2066
|
Chris@162
|
2067 if (!fftSuspended) {
|
Chris@162
|
2068 fft->suspendWrites();
|
Chris@162
|
2069 fftSuspended = true;
|
Chris@162
|
2070 }
|
Chris@162
|
2071
|
Chris@119
|
2072 MagnitudeRange mag;
|
Chris@92
|
2073
|
Chris@184
|
2074 for (size_t q = minbin; q < maxbin; ++q) {
|
Chris@92
|
2075
|
Chris@92
|
2076 float y0 = yval[q + 1];
|
Chris@92
|
2077 float y1 = yval[q];
|
Chris@92
|
2078
|
Chris@40
|
2079 if (m_binDisplay == PeakBins ||
|
Chris@40
|
2080 m_binDisplay == PeakFrequencies) {
|
Chris@114
|
2081 if (!fft->isLocalPeak(s, q)) continue;
|
Chris@40
|
2082 }
|
Chris@114
|
2083
|
Chris@114
|
2084 if (m_threshold != 0.f &&
|
Chris@114
|
2085 !fft->isOverThreshold(s, q, m_threshold)) {
|
Chris@114
|
2086 continue;
|
Chris@114
|
2087 }
|
Chris@40
|
2088
|
Chris@35
|
2089 float sprop = 1.0;
|
Chris@35
|
2090 if (s == s0i) sprop *= (s + 1) - s0;
|
Chris@35
|
2091 if (s == s1i) sprop *= s1 - s;
|
Chris@35
|
2092
|
Chris@38
|
2093 if (m_binDisplay == PeakFrequencies &&
|
Chris@114
|
2094 s < int(fft->getWidth()) - 1) {
|
Chris@35
|
2095
|
Chris@38
|
2096 bool steady = false;
|
Chris@92
|
2097 float f = calculateFrequency(q,
|
Chris@38
|
2098 m_windowSize,
|
Chris@38
|
2099 increment,
|
Chris@38
|
2100 sr,
|
Chris@114
|
2101 fft->getPhaseAt(s, q),
|
Chris@114
|
2102 fft->getPhaseAt(s+1, q),
|
Chris@38
|
2103 steady);
|
Chris@40
|
2104
|
Chris@44
|
2105 y0 = y1 = v->getYForFrequency
|
Chris@122
|
2106 (f, displayMinFreq, displayMaxFreq, logarithmic);
|
Chris@35
|
2107 }
|
Chris@38
|
2108
|
Chris@35
|
2109 int y0i = int(y0 + 0.001);
|
Chris@35
|
2110 int y1i = int(y1);
|
Chris@35
|
2111
|
Chris@92
|
2112 float value;
|
Chris@92
|
2113
|
Chris@92
|
2114 if (m_colourScale == PhaseColourScale) {
|
Chris@114
|
2115 value = fft->getPhaseAt(s, q);
|
Chris@92
|
2116 } else if (m_normalizeColumns) {
|
Chris@119
|
2117 value = fft->getNormalizedMagnitudeAt(s, q);
|
Chris@119
|
2118 mag.sample(value);
|
Chris@119
|
2119 value *= m_gain;
|
Chris@92
|
2120 } else {
|
Chris@119
|
2121 value = fft->getMagnitudeAt(s, q);
|
Chris@119
|
2122 mag.sample(value);
|
Chris@119
|
2123 value *= m_gain;
|
Chris@92
|
2124 }
|
Chris@92
|
2125
|
Chris@221
|
2126 if (interpolate) {
|
Chris@221
|
2127
|
Chris@221
|
2128 int ypi = y0i;
|
Chris@221
|
2129 if (q < maxbin - 1) ypi = int(yval[q + 2]);
|
Chris@221
|
2130
|
Chris@221
|
2131 for (int y = ypi; y <= y1i; ++y) {
|
Chris@221
|
2132
|
Chris@221
|
2133 if (y < 0 || y >= h) continue;
|
Chris@221
|
2134
|
Chris@221
|
2135 float yprop = sprop;
|
Chris@221
|
2136 float iprop = yprop;
|
Chris@221
|
2137
|
Chris@221
|
2138 if (ypi < y0i && y <= y0i) {
|
Chris@221
|
2139
|
Chris@221
|
2140 float half = float(y0i - ypi) / 2;
|
Chris@221
|
2141 float dist = y - (ypi + half);
|
Chris@221
|
2142
|
Chris@221
|
2143 if (dist >= 0) {
|
Chris@221
|
2144 iprop = (iprop * dist) / half;
|
Chris@221
|
2145 ymag[y] += iprop * value;
|
Chris@221
|
2146 }
|
Chris@221
|
2147 } else {
|
Chris@221
|
2148 if (y1i > y0i) {
|
Chris@221
|
2149
|
Chris@221
|
2150 float half = float(y1i - y0i) / 2;
|
Chris@221
|
2151 float dist = y - (y0i + half);
|
Chris@221
|
2152
|
Chris@221
|
2153 if (dist >= 0) {
|
Chris@221
|
2154 iprop = (iprop * (half - dist)) / half;
|
Chris@221
|
2155 }
|
Chris@221
|
2156 }
|
Chris@221
|
2157
|
Chris@221
|
2158 ymag[y] += iprop * value;
|
Chris@221
|
2159 ydiv[y] += yprop;
|
Chris@221
|
2160 }
|
Chris@221
|
2161 }
|
Chris@221
|
2162
|
Chris@221
|
2163 } else {
|
Chris@221
|
2164
|
Chris@221
|
2165 for (int y = y0i; y <= y1i; ++y) {
|
Chris@221
|
2166
|
Chris@221
|
2167 if (y < 0 || y >= h) continue;
|
Chris@221
|
2168
|
Chris@221
|
2169 float yprop = sprop;
|
Chris@221
|
2170 if (y == y0i) yprop *= (y + 1) - y0;
|
Chris@221
|
2171 if (y == y1i) yprop *= y1 - y;
|
Chris@221
|
2172
|
Chris@221
|
2173 for (int y = y0i; y <= y1i; ++y) {
|
Chris@35
|
2174
|
Chris@221
|
2175 if (y < 0 || y >= h) continue;
|
Chris@221
|
2176
|
Chris@221
|
2177 float yprop = sprop;
|
Chris@221
|
2178 if (y == y0i) yprop *= (y + 1) - y0;
|
Chris@221
|
2179 if (y == y1i) yprop *= y1 - y;
|
Chris@221
|
2180 ymag[y] += yprop * value;
|
Chris@221
|
2181 ydiv[y] += yprop;
|
Chris@221
|
2182 }
|
Chris@221
|
2183 }
|
Chris@221
|
2184 }
|
Chris@35
|
2185 }
|
Chris@119
|
2186
|
Chris@119
|
2187 if (mag.isSet()) {
|
Chris@119
|
2188
|
Chris@203
|
2189 if (s >= m_columnMags.size()) {
|
Chris@203
|
2190 std::cerr << "INTERNAL ERROR: " << s << " >= "
|
Chris@203
|
2191 << m_columnMags.size() << " at SpectrogramLayer.cpp:2087" << std::endl;
|
Chris@203
|
2192 }
|
Chris@203
|
2193
|
Chris@119
|
2194 m_columnMags[s].sample(mag);
|
Chris@119
|
2195
|
Chris@119
|
2196 if (overallMag.sample(mag)) {
|
Chris@119
|
2197 //!!! scaling would change here
|
Chris@119
|
2198 overallMagChanged = true;
|
Chris@209
|
2199 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@119
|
2200 std::cerr << "Overall mag changed (again?) at column " << s << ", to [" << overallMag.getMin() << "->" << overallMag.getMax() << "]" << std::endl;
|
Chris@209
|
2201 #endif
|
Chris@119
|
2202 }
|
Chris@119
|
2203 }
|
Chris@35
|
2204 }
|
Chris@35
|
2205
|
Chris@35
|
2206 for (int y = 0; y < h; ++y) {
|
Chris@35
|
2207
|
Chris@35
|
2208 if (ydiv[y] > 0.0) {
|
Chris@40
|
2209
|
Chris@40
|
2210 unsigned char pixel = 0;
|
Chris@40
|
2211
|
Chris@38
|
2212 float avg = ymag[y] / ydiv[y];
|
Chris@138
|
2213 pixel = getDisplayValue(v, avg);
|
Chris@40
|
2214
|
Chris@95
|
2215 assert(x <= m_drawBuffer.width());
|
Chris@197
|
2216 QColor c = m_palette.getColour(pixel);
|
Chris@95
|
2217 m_drawBuffer.setPixel(x, y,
|
Chris@95
|
2218 qRgb(c.red(), c.green(), c.blue()));
|
Chris@35
|
2219 }
|
Chris@35
|
2220 }
|
Chris@35
|
2221 }
|
Chris@35
|
2222
|
Chris@119
|
2223 if (overallMagChanged) {
|
Chris@119
|
2224 m_viewMags[v] = overallMag;
|
Chris@209
|
2225 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@119
|
2226 std::cerr << "Overall mag is now [" << m_viewMags[v].getMin() << "->" << m_viewMags[v].getMax() << "] - will be updating" << std::endl;
|
Chris@209
|
2227 #endif
|
Chris@119
|
2228 } else {
|
Chris@209
|
2229 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@119
|
2230 std::cerr << "Overall mag unchanged at [" << m_viewMags[v].getMin() << "->" << m_viewMags[v].getMax() << "]" << std::endl;
|
Chris@209
|
2231 #endif
|
Chris@119
|
2232 }
|
Chris@119
|
2233
|
Chris@161
|
2234 Profiler profiler2("SpectrogramLayer::paint: draw image", true);
|
Chris@137
|
2235
|
Chris@95
|
2236 paint.drawImage(x0, y0, m_drawBuffer, 0, 0, w, h);
|
Chris@0
|
2237
|
Chris@0
|
2238 if (recreateWholePixmapCache) {
|
Chris@95
|
2239 cache.pixmap = QPixmap(v->width(), v->height());
|
Chris@0
|
2240 }
|
Chris@0
|
2241
|
Chris@95
|
2242 QPainter cachePainter(&cache.pixmap);
|
Chris@95
|
2243 cachePainter.drawImage(x0, y0, m_drawBuffer, 0, 0, w, h);
|
Chris@0
|
2244 cachePainter.end();
|
Chris@119
|
2245
|
Chris@120
|
2246 if (!m_normalizeVisibleArea || !overallMagChanged) {
|
Chris@0
|
2247
|
Chris@119
|
2248 cache.startFrame = startFrame;
|
Chris@119
|
2249 cache.zoomLevel = zoomLevel;
|
Chris@119
|
2250
|
Chris@119
|
2251 if (cache.validArea.x() > 0) {
|
Chris@95
|
2252 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@158
|
2253 std::cerr << "SpectrogramLayer::paint() updating left (0, "
|
Chris@158
|
2254 << cache.validArea.x() << ")" << std::endl;
|
Chris@95
|
2255 #endif
|
Chris@119
|
2256 v->update(0, 0, cache.validArea.x(), v->height());
|
Chris@119
|
2257 }
|
Chris@119
|
2258
|
Chris@119
|
2259 if (cache.validArea.x() + cache.validArea.width() <
|
Chris@119
|
2260 cache.pixmap.width()) {
|
Chris@95
|
2261 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@119
|
2262 std::cerr << "SpectrogramLayer::paint() updating right ("
|
Chris@119
|
2263 << cache.validArea.x() + cache.validArea.width()
|
Chris@119
|
2264 << ", "
|
Chris@119
|
2265 << cache.pixmap.width() - (cache.validArea.x() +
|
Chris@119
|
2266 cache.validArea.width())
|
Chris@119
|
2267 << ")" << std::endl;
|
Chris@95
|
2268 #endif
|
Chris@119
|
2269 v->update(cache.validArea.x() + cache.validArea.width(),
|
Chris@119
|
2270 0,
|
Chris@119
|
2271 cache.pixmap.width() - (cache.validArea.x() +
|
Chris@119
|
2272 cache.validArea.width()),
|
Chris@119
|
2273 v->height());
|
Chris@119
|
2274 }
|
Chris@119
|
2275 } else {
|
Chris@119
|
2276 // overallMagChanged
|
Chris@119
|
2277 cache.validArea = QRect();
|
Chris@119
|
2278 v->update();
|
Chris@95
|
2279 }
|
Chris@0
|
2280
|
Chris@121
|
2281 illuminateLocalFeatures(v, paint);
|
Chris@120
|
2282
|
Chris@0
|
2283 #ifdef DEBUG_SPECTROGRAM_REPAINT
|
Chris@0
|
2284 std::cerr << "SpectrogramLayer::paint() returning" << std::endl;
|
Chris@0
|
2285 #endif
|
Chris@131
|
2286
|
Chris@215
|
2287 m_lastPaintBlockWidth = paintBlockWidth;
|
Chris@215
|
2288 (void)gettimeofday(&tv, 0);
|
Chris@215
|
2289 m_lastPaintTime = RealTime::fromTimeval(tv) - mainPaintStart;
|
Chris@215
|
2290
|
Chris@162
|
2291 if (fftSuspended) fft->resume();
|
Chris@0
|
2292 }
|
Chris@0
|
2293
|
Chris@121
|
2294 void
|
Chris@121
|
2295 SpectrogramLayer::illuminateLocalFeatures(View *v, QPainter &paint) const
|
Chris@121
|
2296 {
|
Chris@121
|
2297 QPoint localPos;
|
Chris@121
|
2298 if (!v->shouldIlluminateLocalFeatures(this, localPos) || !m_model) {
|
Chris@121
|
2299 return;
|
Chris@121
|
2300 }
|
Chris@121
|
2301
|
Chris@180
|
2302 // std::cerr << "SpectrogramLayer: illuminateLocalFeatures("
|
Chris@180
|
2303 // << localPos.x() << "," << localPos.y() << ")" << std::endl;
|
Chris@121
|
2304
|
Chris@121
|
2305 float s0, s1;
|
Chris@121
|
2306 float f0, f1;
|
Chris@121
|
2307
|
Chris@121
|
2308 if (getXBinRange(v, localPos.x(), s0, s1) &&
|
Chris@121
|
2309 getYBinSourceRange(v, localPos.y(), f0, f1)) {
|
Chris@121
|
2310
|
Chris@121
|
2311 int s0i = int(s0 + 0.001);
|
Chris@121
|
2312 int s1i = int(s1);
|
Chris@121
|
2313
|
Chris@121
|
2314 int x0 = v->getXForFrame(s0i * getWindowIncrement());
|
Chris@121
|
2315 int x1 = v->getXForFrame((s1i + 1) * getWindowIncrement());
|
Chris@121
|
2316
|
Chris@121
|
2317 int y1 = getYForFrequency(v, f1);
|
Chris@121
|
2318 int y0 = getYForFrequency(v, f0);
|
Chris@121
|
2319
|
Chris@180
|
2320 // std::cerr << "SpectrogramLayer: illuminate "
|
Chris@180
|
2321 // << x0 << "," << y1 << " -> " << x1 << "," << y0 << std::endl;
|
Chris@121
|
2322
|
Chris@121
|
2323 paint.setPen(Qt::white);
|
Chris@133
|
2324
|
Chris@133
|
2325 //!!! should we be using paintCrosshairs for this?
|
Chris@133
|
2326
|
Chris@121
|
2327 paint.drawRect(x0, y1, x1 - x0 + 1, y0 - y1 + 1);
|
Chris@121
|
2328 }
|
Chris@121
|
2329 }
|
Chris@121
|
2330
|
Chris@42
|
2331 float
|
Chris@44
|
2332 SpectrogramLayer::getYForFrequency(View *v, float frequency) const
|
Chris@42
|
2333 {
|
Chris@44
|
2334 return v->getYForFrequency(frequency,
|
Chris@44
|
2335 getEffectiveMinFrequency(),
|
Chris@44
|
2336 getEffectiveMaxFrequency(),
|
Chris@44
|
2337 m_frequencyScale == LogFrequencyScale);
|
Chris@42
|
2338 }
|
Chris@42
|
2339
|
Chris@42
|
2340 float
|
Chris@44
|
2341 SpectrogramLayer::getFrequencyForY(View *v, int y) const
|
Chris@42
|
2342 {
|
Chris@44
|
2343 return v->getFrequencyForY(y,
|
Chris@44
|
2344 getEffectiveMinFrequency(),
|
Chris@44
|
2345 getEffectiveMaxFrequency(),
|
Chris@44
|
2346 m_frequencyScale == LogFrequencyScale);
|
Chris@42
|
2347 }
|
Chris@42
|
2348
|
Chris@0
|
2349 int
|
Chris@115
|
2350 SpectrogramLayer::getCompletion(View *v) const
|
Chris@0
|
2351 {
|
Chris@115
|
2352 if (m_updateTimer == 0) return 100;
|
Chris@130
|
2353 if (m_fftModels.find(v) == m_fftModels.end()) return 100;
|
Chris@130
|
2354
|
Chris@130
|
2355 size_t completion = m_fftModels[v].first->getCompletion();
|
Chris@115
|
2356 std::cerr << "SpectrogramLayer::getCompletion: completion = " << completion << std::endl;
|
Chris@0
|
2357 return completion;
|
Chris@0
|
2358 }
|
Chris@0
|
2359
|
Chris@28
|
2360 bool
|
Chris@101
|
2361 SpectrogramLayer::getValueExtents(float &min, float &max,
|
Chris@101
|
2362 bool &logarithmic, QString &unit) const
|
Chris@79
|
2363 {
|
Chris@133
|
2364 if (!m_model) return false;
|
Chris@133
|
2365
|
Chris@133
|
2366 int sr = m_model->getSampleRate();
|
Chris@133
|
2367 min = float(sr) / m_fftSize;
|
Chris@133
|
2368 max = float(sr) / 2;
|
Chris@133
|
2369
|
Chris@101
|
2370 logarithmic = (m_frequencyScale == LogFrequencyScale);
|
Chris@79
|
2371 unit = "Hz";
|
Chris@79
|
2372 return true;
|
Chris@79
|
2373 }
|
Chris@79
|
2374
|
Chris@79
|
2375 bool
|
Chris@101
|
2376 SpectrogramLayer::getDisplayExtents(float &min, float &max) const
|
Chris@101
|
2377 {
|
Chris@101
|
2378 min = getEffectiveMinFrequency();
|
Chris@101
|
2379 max = getEffectiveMaxFrequency();
|
Chris@187
|
2380 std::cerr << "SpectrogramLayer::getDisplayExtents: " << min << "->" << max << std::endl;
|
Chris@101
|
2381 return true;
|
Chris@101
|
2382 }
|
Chris@101
|
2383
|
Chris@101
|
2384 bool
|
Chris@120
|
2385 SpectrogramLayer::setDisplayExtents(float min, float max)
|
Chris@120
|
2386 {
|
Chris@120
|
2387 if (!m_model) return false;
|
Chris@187
|
2388
|
Chris@187
|
2389 std::cerr << "SpectrogramLayer::setDisplayExtents: " << min << "->" << max << std::endl;
|
Chris@187
|
2390
|
Chris@120
|
2391 if (min < 0) min = 0;
|
Chris@120
|
2392 if (max > m_model->getSampleRate()/2) max = m_model->getSampleRate()/2;
|
Chris@120
|
2393
|
Chris@120
|
2394 size_t minf = lrintf(min);
|
Chris@120
|
2395 size_t maxf = lrintf(max);
|
Chris@120
|
2396
|
Chris@120
|
2397 if (m_minFrequency == minf && m_maxFrequency == maxf) return true;
|
Chris@120
|
2398
|
Chris@120
|
2399 invalidatePixmapCaches();
|
Chris@120
|
2400 invalidateMagnitudes();
|
Chris@120
|
2401
|
Chris@120
|
2402 m_minFrequency = minf;
|
Chris@120
|
2403 m_maxFrequency = maxf;
|
Chris@120
|
2404
|
Chris@120
|
2405 emit layerParametersChanged();
|
Chris@120
|
2406
|
Chris@133
|
2407 int vs = getCurrentVerticalZoomStep();
|
Chris@133
|
2408 if (vs != m_lastEmittedZoomStep) {
|
Chris@133
|
2409 emit verticalZoomChanged();
|
Chris@133
|
2410 m_lastEmittedZoomStep = vs;
|
Chris@133
|
2411 }
|
Chris@133
|
2412
|
Chris@120
|
2413 return true;
|
Chris@120
|
2414 }
|
Chris@120
|
2415
|
Chris@120
|
2416 bool
|
Chris@44
|
2417 SpectrogramLayer::snapToFeatureFrame(View *v, int &frame,
|
Chris@28
|
2418 size_t &resolution,
|
Chris@28
|
2419 SnapType snap) const
|
Chris@13
|
2420 {
|
Chris@13
|
2421 resolution = getWindowIncrement();
|
Chris@28
|
2422 int left = (frame / resolution) * resolution;
|
Chris@28
|
2423 int right = left + resolution;
|
Chris@28
|
2424
|
Chris@28
|
2425 switch (snap) {
|
Chris@28
|
2426 case SnapLeft: frame = left; break;
|
Chris@28
|
2427 case SnapRight: frame = right; break;
|
Chris@28
|
2428 case SnapNearest:
|
Chris@28
|
2429 case SnapNeighbouring:
|
Chris@28
|
2430 if (frame - left > right - frame) frame = right;
|
Chris@28
|
2431 else frame = left;
|
Chris@28
|
2432 break;
|
Chris@28
|
2433 }
|
Chris@28
|
2434
|
Chris@28
|
2435 return true;
|
Chris@28
|
2436 }
|
Chris@13
|
2437
|
Chris@77
|
2438 bool
|
Chris@77
|
2439 SpectrogramLayer::getCrosshairExtents(View *v, QPainter &paint,
|
Chris@77
|
2440 QPoint cursorPos,
|
Chris@77
|
2441 std::vector<QRect> &extents) const
|
Chris@77
|
2442 {
|
Chris@77
|
2443 QRect vertical(cursorPos.x() - 12, 0, 12, v->height());
|
Chris@77
|
2444 extents.push_back(vertical);
|
Chris@77
|
2445
|
Chris@77
|
2446 QRect horizontal(0, cursorPos.y(), cursorPos.x(), 1);
|
Chris@77
|
2447 extents.push_back(horizontal);
|
Chris@77
|
2448
|
Chris@77
|
2449 return true;
|
Chris@77
|
2450 }
|
Chris@77
|
2451
|
Chris@77
|
2452 void
|
Chris@77
|
2453 SpectrogramLayer::paintCrosshairs(View *v, QPainter &paint,
|
Chris@77
|
2454 QPoint cursorPos) const
|
Chris@77
|
2455 {
|
Chris@77
|
2456 paint.save();
|
Chris@77
|
2457 paint.setPen(m_crosshairColour);
|
Chris@77
|
2458
|
Chris@77
|
2459 paint.drawLine(0, cursorPos.y(), cursorPos.x() - 1, cursorPos.y());
|
Chris@77
|
2460 paint.drawLine(cursorPos.x(), 0, cursorPos.x(), v->height());
|
Chris@77
|
2461
|
Chris@77
|
2462 float fundamental = getFrequencyForY(v, cursorPos.y());
|
Chris@77
|
2463
|
Chris@77
|
2464 int harmonic = 2;
|
Chris@77
|
2465
|
Chris@77
|
2466 while (harmonic < 100) {
|
Chris@77
|
2467
|
Chris@77
|
2468 float hy = lrintf(getYForFrequency(v, fundamental * harmonic));
|
Chris@77
|
2469 if (hy < 0 || hy > v->height()) break;
|
Chris@77
|
2470
|
Chris@77
|
2471 int len = 7;
|
Chris@77
|
2472
|
Chris@77
|
2473 if (harmonic % 2 == 0) {
|
Chris@77
|
2474 if (harmonic % 4 == 0) {
|
Chris@77
|
2475 len = 12;
|
Chris@77
|
2476 } else {
|
Chris@77
|
2477 len = 10;
|
Chris@77
|
2478 }
|
Chris@77
|
2479 }
|
Chris@77
|
2480
|
Chris@77
|
2481 paint.drawLine(cursorPos.x() - len,
|
Chris@77
|
2482 hy,
|
Chris@77
|
2483 cursorPos.x(),
|
Chris@77
|
2484 hy);
|
Chris@77
|
2485
|
Chris@77
|
2486 ++harmonic;
|
Chris@77
|
2487 }
|
Chris@77
|
2488
|
Chris@77
|
2489 paint.restore();
|
Chris@77
|
2490 }
|
Chris@77
|
2491
|
Chris@25
|
2492 QString
|
Chris@44
|
2493 SpectrogramLayer::getFeatureDescription(View *v, QPoint &pos) const
|
Chris@25
|
2494 {
|
Chris@25
|
2495 int x = pos.x();
|
Chris@25
|
2496 int y = pos.y();
|
Chris@0
|
2497
|
Chris@25
|
2498 if (!m_model || !m_model->isOK()) return "";
|
Chris@0
|
2499
|
Chris@38
|
2500 float magMin = 0, magMax = 0;
|
Chris@38
|
2501 float phaseMin = 0, phaseMax = 0;
|
Chris@0
|
2502 float freqMin = 0, freqMax = 0;
|
Chris@35
|
2503 float adjFreqMin = 0, adjFreqMax = 0;
|
Chris@25
|
2504 QString pitchMin, pitchMax;
|
Chris@0
|
2505 RealTime rtMin, rtMax;
|
Chris@0
|
2506
|
Chris@38
|
2507 bool haveValues = false;
|
Chris@0
|
2508
|
Chris@44
|
2509 if (!getXBinSourceRange(v, x, rtMin, rtMax)) {
|
Chris@38
|
2510 return "";
|
Chris@38
|
2511 }
|
Chris@44
|
2512 if (getXYBinSourceRange(v, x, y, magMin, magMax, phaseMin, phaseMax)) {
|
Chris@38
|
2513 haveValues = true;
|
Chris@38
|
2514 }
|
Chris@0
|
2515
|
Chris@35
|
2516 QString adjFreqText = "", adjPitchText = "";
|
Chris@35
|
2517
|
Chris@38
|
2518 if (m_binDisplay == PeakFrequencies) {
|
Chris@35
|
2519
|
Chris@44
|
2520 if (!getAdjustedYBinSourceRange(v, x, y, freqMin, freqMax,
|
Chris@38
|
2521 adjFreqMin, adjFreqMax)) {
|
Chris@38
|
2522 return "";
|
Chris@38
|
2523 }
|
Chris@35
|
2524
|
Chris@35
|
2525 if (adjFreqMin != adjFreqMax) {
|
Chris@65
|
2526 adjFreqText = tr("Peak Frequency:\t%1 - %2 Hz\n")
|
Chris@35
|
2527 .arg(adjFreqMin).arg(adjFreqMax);
|
Chris@35
|
2528 } else {
|
Chris@65
|
2529 adjFreqText = tr("Peak Frequency:\t%1 Hz\n")
|
Chris@35
|
2530 .arg(adjFreqMin);
|
Chris@38
|
2531 }
|
Chris@38
|
2532
|
Chris@38
|
2533 QString pmin = Pitch::getPitchLabelForFrequency(adjFreqMin);
|
Chris@38
|
2534 QString pmax = Pitch::getPitchLabelForFrequency(adjFreqMax);
|
Chris@38
|
2535
|
Chris@38
|
2536 if (pmin != pmax) {
|
Chris@65
|
2537 adjPitchText = tr("Peak Pitch:\t%3 - %4\n").arg(pmin).arg(pmax);
|
Chris@38
|
2538 } else {
|
Chris@65
|
2539 adjPitchText = tr("Peak Pitch:\t%2\n").arg(pmin);
|
Chris@35
|
2540 }
|
Chris@35
|
2541
|
Chris@35
|
2542 } else {
|
Chris@35
|
2543
|
Chris@44
|
2544 if (!getYBinSourceRange(v, y, freqMin, freqMax)) return "";
|
Chris@35
|
2545 }
|
Chris@35
|
2546
|
Chris@25
|
2547 QString text;
|
Chris@25
|
2548
|
Chris@25
|
2549 if (rtMin != rtMax) {
|
Chris@25
|
2550 text += tr("Time:\t%1 - %2\n")
|
Chris@25
|
2551 .arg(rtMin.toText(true).c_str())
|
Chris@25
|
2552 .arg(rtMax.toText(true).c_str());
|
Chris@25
|
2553 } else {
|
Chris@25
|
2554 text += tr("Time:\t%1\n")
|
Chris@25
|
2555 .arg(rtMin.toText(true).c_str());
|
Chris@0
|
2556 }
|
Chris@0
|
2557
|
Chris@25
|
2558 if (freqMin != freqMax) {
|
Chris@65
|
2559 text += tr("%1Bin Frequency:\t%2 - %3 Hz\n%4Bin Pitch:\t%5 - %6\n")
|
Chris@65
|
2560 .arg(adjFreqText)
|
Chris@25
|
2561 .arg(freqMin)
|
Chris@25
|
2562 .arg(freqMax)
|
Chris@65
|
2563 .arg(adjPitchText)
|
Chris@65
|
2564 .arg(Pitch::getPitchLabelForFrequency(freqMin))
|
Chris@65
|
2565 .arg(Pitch::getPitchLabelForFrequency(freqMax));
|
Chris@65
|
2566 } else {
|
Chris@65
|
2567 text += tr("%1Bin Frequency:\t%2 Hz\n%3Bin Pitch:\t%4\n")
|
Chris@35
|
2568 .arg(adjFreqText)
|
Chris@25
|
2569 .arg(freqMin)
|
Chris@65
|
2570 .arg(adjPitchText)
|
Chris@65
|
2571 .arg(Pitch::getPitchLabelForFrequency(freqMin));
|
Chris@25
|
2572 }
|
Chris@25
|
2573
|
Chris@38
|
2574 if (haveValues) {
|
Chris@38
|
2575 float dbMin = AudioLevel::multiplier_to_dB(magMin);
|
Chris@38
|
2576 float dbMax = AudioLevel::multiplier_to_dB(magMax);
|
Chris@43
|
2577 QString dbMinString;
|
Chris@43
|
2578 QString dbMaxString;
|
Chris@43
|
2579 if (dbMin == AudioLevel::DB_FLOOR) {
|
Chris@43
|
2580 dbMinString = tr("-Inf");
|
Chris@43
|
2581 } else {
|
Chris@43
|
2582 dbMinString = QString("%1").arg(lrintf(dbMin));
|
Chris@43
|
2583 }
|
Chris@43
|
2584 if (dbMax == AudioLevel::DB_FLOOR) {
|
Chris@43
|
2585 dbMaxString = tr("-Inf");
|
Chris@43
|
2586 } else {
|
Chris@43
|
2587 dbMaxString = QString("%1").arg(lrintf(dbMax));
|
Chris@43
|
2588 }
|
Chris@25
|
2589 if (lrintf(dbMin) != lrintf(dbMax)) {
|
Chris@199
|
2590 text += tr("dB:\t%1 - %2").arg(dbMinString).arg(dbMaxString);
|
Chris@25
|
2591 } else {
|
Chris@199
|
2592 text += tr("dB:\t%1").arg(dbMinString);
|
Chris@25
|
2593 }
|
Chris@38
|
2594 if (phaseMin != phaseMax) {
|
Chris@38
|
2595 text += tr("\nPhase:\t%1 - %2").arg(phaseMin).arg(phaseMax);
|
Chris@38
|
2596 } else {
|
Chris@38
|
2597 text += tr("\nPhase:\t%1").arg(phaseMin);
|
Chris@38
|
2598 }
|
Chris@25
|
2599 }
|
Chris@25
|
2600
|
Chris@25
|
2601 return text;
|
Chris@0
|
2602 }
|
Chris@25
|
2603
|
Chris@0
|
2604 int
|
Chris@40
|
2605 SpectrogramLayer::getColourScaleWidth(QPainter &paint) const
|
Chris@40
|
2606 {
|
Chris@40
|
2607 int cw;
|
Chris@40
|
2608
|
Chris@119
|
2609 cw = paint.fontMetrics().width("-80dB");
|
Chris@119
|
2610
|
Chris@40
|
2611 return cw;
|
Chris@40
|
2612 }
|
Chris@40
|
2613
|
Chris@40
|
2614 int
|
Chris@44
|
2615 SpectrogramLayer::getVerticalScaleWidth(View *v, QPainter &paint) const
|
Chris@0
|
2616 {
|
Chris@0
|
2617 if (!m_model || !m_model->isOK()) return 0;
|
Chris@0
|
2618
|
Chris@40
|
2619 int cw = getColourScaleWidth(paint);
|
Chris@40
|
2620
|
Chris@0
|
2621 int tw = paint.fontMetrics().width(QString("%1")
|
Chris@0
|
2622 .arg(m_maxFrequency > 0 ?
|
Chris@0
|
2623 m_maxFrequency - 1 :
|
Chris@0
|
2624 m_model->getSampleRate() / 2));
|
Chris@0
|
2625
|
Chris@0
|
2626 int fw = paint.fontMetrics().width(QString("43Hz"));
|
Chris@0
|
2627 if (tw < fw) tw = fw;
|
Chris@40
|
2628
|
Chris@40
|
2629 int tickw = (m_frequencyScale == LogFrequencyScale ? 10 : 4);
|
Chris@0
|
2630
|
Chris@40
|
2631 return cw + tickw + tw + 13;
|
Chris@0
|
2632 }
|
Chris@0
|
2633
|
Chris@0
|
2634 void
|
Chris@44
|
2635 SpectrogramLayer::paintVerticalScale(View *v, QPainter &paint, QRect rect) const
|
Chris@0
|
2636 {
|
Chris@0
|
2637 if (!m_model || !m_model->isOK()) {
|
Chris@0
|
2638 return;
|
Chris@0
|
2639 }
|
Chris@0
|
2640
|
Chris@161
|
2641 Profiler profiler("SpectrogramLayer::paintVerticalScale", true);
|
Chris@122
|
2642
|
Chris@120
|
2643 //!!! cache this?
|
Chris@120
|
2644
|
Chris@0
|
2645 int h = rect.height(), w = rect.width();
|
Chris@0
|
2646
|
Chris@40
|
2647 int tickw = (m_frequencyScale == LogFrequencyScale ? 10 : 4);
|
Chris@40
|
2648 int pkw = (m_frequencyScale == LogFrequencyScale ? 10 : 0);
|
Chris@40
|
2649
|
Chris@107
|
2650 size_t bins = m_fftSize / 2;
|
Chris@0
|
2651 int sr = m_model->getSampleRate();
|
Chris@0
|
2652
|
Chris@0
|
2653 if (m_maxFrequency > 0) {
|
Chris@107
|
2654 bins = int((double(m_maxFrequency) * m_fftSize) / sr + 0.1);
|
Chris@107
|
2655 if (bins > m_fftSize / 2) bins = m_fftSize / 2;
|
Chris@0
|
2656 }
|
Chris@0
|
2657
|
Chris@40
|
2658 int cw = getColourScaleWidth(paint);
|
Chris@119
|
2659 int cbw = paint.fontMetrics().width("dB");
|
Chris@40
|
2660
|
Chris@0
|
2661 int py = -1;
|
Chris@0
|
2662 int textHeight = paint.fontMetrics().height();
|
Chris@0
|
2663 int toff = -textHeight + paint.fontMetrics().ascent() + 2;
|
Chris@0
|
2664
|
Chris@119
|
2665 if (h > textHeight * 3 + 10) {
|
Chris@119
|
2666
|
Chris@119
|
2667 int topLines = 2;
|
Chris@119
|
2668 if (m_colourScale == PhaseColourScale) topLines = 1;
|
Chris@119
|
2669
|
Chris@119
|
2670 int ch = h - textHeight * (topLines + 1) - 8;
|
Chris@119
|
2671 // paint.drawRect(4, textHeight + 4, cw - 1, ch + 1);
|
Chris@119
|
2672 paint.drawRect(4 + cw - cbw, textHeight * topLines + 4, cbw - 1, ch + 1);
|
Chris@40
|
2673
|
Chris@40
|
2674 QString top, bottom;
|
Chris@119
|
2675 float min = m_viewMags[v].getMin();
|
Chris@119
|
2676 float max = m_viewMags[v].getMax();
|
Chris@119
|
2677
|
Chris@119
|
2678 float dBmin = AudioLevel::multiplier_to_dB(min);
|
Chris@119
|
2679 float dBmax = AudioLevel::multiplier_to_dB(max);
|
Chris@119
|
2680
|
Chris@120
|
2681 if (dBmax < -60.f) dBmax = -60.f;
|
Chris@120
|
2682 else top = QString("%1").arg(lrintf(dBmax));
|
Chris@120
|
2683
|
Chris@120
|
2684 if (dBmin < dBmax - 60.f) dBmin = dBmax - 60.f;
|
Chris@119
|
2685 bottom = QString("%1").arg(lrintf(dBmin));
|
Chris@119
|
2686
|
Chris@119
|
2687 //!!! & phase etc
|
Chris@119
|
2688
|
Chris@119
|
2689 if (m_colourScale != PhaseColourScale) {
|
Chris@119
|
2690 paint.drawText((cw + 6 - paint.fontMetrics().width("dBFS")) / 2,
|
Chris@119
|
2691 2 + textHeight + toff, "dBFS");
|
Chris@119
|
2692 }
|
Chris@119
|
2693
|
Chris@119
|
2694 // paint.drawText((cw + 6 - paint.fontMetrics().width(top)) / 2,
|
Chris@119
|
2695 paint.drawText(3 + cw - cbw - paint.fontMetrics().width(top),
|
Chris@119
|
2696 2 + textHeight * topLines + toff + textHeight/2, top);
|
Chris@119
|
2697
|
Chris@119
|
2698 paint.drawText(3 + cw - cbw - paint.fontMetrics().width(bottom),
|
Chris@119
|
2699 h + toff - 3 - textHeight/2, bottom);
|
Chris@40
|
2700
|
Chris@40
|
2701 paint.save();
|
Chris@40
|
2702 paint.setBrush(Qt::NoBrush);
|
Chris@119
|
2703
|
Chris@119
|
2704 int lasty = 0;
|
Chris@119
|
2705 int lastdb = 0;
|
Chris@119
|
2706
|
Chris@40
|
2707 for (int i = 0; i < ch; ++i) {
|
Chris@119
|
2708
|
Chris@119
|
2709 float dBval = dBmin + (((dBmax - dBmin) * i) / (ch - 1));
|
Chris@119
|
2710 int idb = int(dBval);
|
Chris@119
|
2711
|
Chris@119
|
2712 float value = AudioLevel::dB_to_multiplier(dBval);
|
Chris@119
|
2713 int colour = getDisplayValue(v, value * m_gain);
|
Chris@210
|
2714
|
Chris@197
|
2715 paint.setPen(m_palette.getColour(colour));
|
Chris@119
|
2716
|
Chris@119
|
2717 int y = textHeight * topLines + 4 + ch - i;
|
Chris@119
|
2718
|
Chris@119
|
2719 paint.drawLine(5 + cw - cbw, y, cw + 2, y);
|
Chris@119
|
2720
|
Chris@119
|
2721 if (i == 0) {
|
Chris@119
|
2722 lasty = y;
|
Chris@119
|
2723 lastdb = idb;
|
Chris@119
|
2724 } else if (i < ch - paint.fontMetrics().ascent() &&
|
Chris@120
|
2725 idb != lastdb &&
|
Chris@119
|
2726 ((abs(y - lasty) > textHeight &&
|
Chris@119
|
2727 idb % 10 == 0) ||
|
Chris@119
|
2728 (abs(y - lasty) > paint.fontMetrics().ascent() &&
|
Chris@119
|
2729 idb % 5 == 0))) {
|
Chris@119
|
2730 paint.setPen(Qt::black);
|
Chris@119
|
2731 QString text = QString("%1").arg(idb);
|
Chris@119
|
2732 paint.drawText(3 + cw - cbw - paint.fontMetrics().width(text),
|
Chris@119
|
2733 y + toff + textHeight/2, text);
|
Chris@119
|
2734 paint.setPen(Qt::white);
|
Chris@119
|
2735 paint.drawLine(5 + cw - cbw, y, 8 + cw - cbw, y);
|
Chris@119
|
2736 lasty = y;
|
Chris@119
|
2737 lastdb = idb;
|
Chris@119
|
2738 }
|
Chris@40
|
2739 }
|
Chris@40
|
2740 paint.restore();
|
Chris@40
|
2741 }
|
Chris@40
|
2742
|
Chris@40
|
2743 paint.drawLine(cw + 7, 0, cw + 7, h);
|
Chris@40
|
2744
|
Chris@0
|
2745 int bin = -1;
|
Chris@0
|
2746
|
Chris@44
|
2747 for (int y = 0; y < v->height(); ++y) {
|
Chris@0
|
2748
|
Chris@0
|
2749 float q0, q1;
|
Chris@44
|
2750 if (!getYBinRange(v, v->height() - y, q0, q1)) continue;
|
Chris@0
|
2751
|
Chris@0
|
2752 int vy;
|
Chris@0
|
2753
|
Chris@0
|
2754 if (int(q0) > bin) {
|
Chris@0
|
2755 vy = y;
|
Chris@0
|
2756 bin = int(q0);
|
Chris@0
|
2757 } else {
|
Chris@0
|
2758 continue;
|
Chris@0
|
2759 }
|
Chris@0
|
2760
|
Chris@107
|
2761 int freq = (sr * bin) / m_fftSize;
|
Chris@0
|
2762
|
Chris@0
|
2763 if (py >= 0 && (vy - py) < textHeight - 1) {
|
Chris@40
|
2764 if (m_frequencyScale == LinearFrequencyScale) {
|
Chris@40
|
2765 paint.drawLine(w - tickw, h - vy, w, h - vy);
|
Chris@40
|
2766 }
|
Chris@0
|
2767 continue;
|
Chris@0
|
2768 }
|
Chris@0
|
2769
|
Chris@0
|
2770 QString text = QString("%1").arg(freq);
|
Chris@40
|
2771 if (bin == 1) text = QString("%1Hz").arg(freq); // bin 0 is DC
|
Chris@40
|
2772 paint.drawLine(cw + 7, h - vy, w - pkw - 1, h - vy);
|
Chris@0
|
2773
|
Chris@0
|
2774 if (h - vy - textHeight >= -2) {
|
Chris@40
|
2775 int tx = w - 3 - paint.fontMetrics().width(text) - std::max(tickw, pkw);
|
Chris@0
|
2776 paint.drawText(tx, h - vy + toff, text);
|
Chris@0
|
2777 }
|
Chris@0
|
2778
|
Chris@0
|
2779 py = vy;
|
Chris@0
|
2780 }
|
Chris@40
|
2781
|
Chris@40
|
2782 if (m_frequencyScale == LogFrequencyScale) {
|
Chris@40
|
2783
|
Chris@40
|
2784 paint.drawLine(w - pkw - 1, 0, w - pkw - 1, h);
|
Chris@40
|
2785
|
Chris@110
|
2786 int sr = m_model->getSampleRate();
|
Chris@40
|
2787 float minf = getEffectiveMinFrequency();
|
Chris@40
|
2788 float maxf = getEffectiveMaxFrequency();
|
Chris@40
|
2789
|
Chris@122
|
2790 int py = h, ppy = h;
|
Chris@40
|
2791 paint.setBrush(paint.pen().color());
|
Chris@40
|
2792
|
Chris@40
|
2793 for (int i = 0; i < 128; ++i) {
|
Chris@40
|
2794
|
Chris@40
|
2795 float f = Pitch::getFrequencyForPitch(i);
|
Chris@44
|
2796 int y = lrintf(v->getYForFrequency(f, minf, maxf, true));
|
Chris@122
|
2797
|
Chris@122
|
2798 if (y < -2) break;
|
Chris@122
|
2799 if (y > h + 2) {
|
Chris@122
|
2800 continue;
|
Chris@122
|
2801 }
|
Chris@122
|
2802
|
Chris@40
|
2803 int n = (i % 12);
|
Chris@122
|
2804
|
Chris@122
|
2805 if (n == 1) {
|
Chris@122
|
2806 // C# -- fill the C from here
|
Chris@122
|
2807 if (ppy - y > 2) {
|
Chris@122
|
2808 paint.fillRect(w - pkw,
|
Chris@122
|
2809 // y - (py - y) / 2 - (py - y) / 4,
|
Chris@122
|
2810 y,
|
Chris@122
|
2811 pkw,
|
Chris@122
|
2812 (py + ppy) / 2 - y,
|
Chris@122
|
2813 // py - y + 1,
|
Chris@122
|
2814 Qt::gray);
|
Chris@122
|
2815 }
|
Chris@122
|
2816 }
|
Chris@122
|
2817
|
Chris@40
|
2818 if (n == 1 || n == 3 || n == 6 || n == 8 || n == 10) {
|
Chris@40
|
2819 // black notes
|
Chris@40
|
2820 paint.drawLine(w - pkw, y, w, y);
|
Chris@41
|
2821 int rh = ((py - y) / 4) * 2;
|
Chris@41
|
2822 if (rh < 2) rh = 2;
|
Chris@41
|
2823 paint.drawRect(w - pkw, y - (py-y)/4, pkw/2, rh);
|
Chris@40
|
2824 } else if (n == 0 || n == 5) {
|
Chris@122
|
2825 // C, F
|
Chris@40
|
2826 if (py < h) {
|
Chris@40
|
2827 paint.drawLine(w - pkw, (y + py) / 2, w, (y + py) / 2);
|
Chris@40
|
2828 }
|
Chris@40
|
2829 }
|
Chris@40
|
2830
|
Chris@122
|
2831 ppy = py;
|
Chris@40
|
2832 py = y;
|
Chris@40
|
2833 }
|
Chris@40
|
2834 }
|
Chris@0
|
2835 }
|
Chris@0
|
2836
|
Chris@187
|
2837 class SpectrogramRangeMapper : public RangeMapper
|
Chris@187
|
2838 {
|
Chris@187
|
2839 public:
|
Chris@187
|
2840 SpectrogramRangeMapper(int sr, int fftsize) :
|
Chris@187
|
2841 m_dist(float(sr) / 2),
|
Chris@187
|
2842 m_s2(sqrtf(sqrtf(2))) { }
|
Chris@187
|
2843 ~SpectrogramRangeMapper() { }
|
Chris@187
|
2844
|
Chris@187
|
2845 virtual int getPositionForValue(float value) const {
|
Chris@187
|
2846
|
Chris@187
|
2847 float dist = m_dist;
|
Chris@187
|
2848
|
Chris@187
|
2849 int n = 0;
|
Chris@187
|
2850 int discard = 0;
|
Chris@187
|
2851
|
Chris@187
|
2852 while (dist > (value + 0.00001) && dist > 0.1f) {
|
Chris@187
|
2853 dist /= m_s2;
|
Chris@187
|
2854 ++n;
|
Chris@187
|
2855 }
|
Chris@187
|
2856
|
Chris@187
|
2857 return n;
|
Chris@187
|
2858 }
|
Chris@187
|
2859
|
Chris@187
|
2860 virtual float getValueForPosition(int position) const {
|
Chris@187
|
2861
|
Chris@187
|
2862 // Vertical zoom step 0 shows the entire range from DC ->
|
Chris@187
|
2863 // Nyquist frequency. Step 1 shows 2^(1/4) of the range of
|
Chris@187
|
2864 // step 0, and so on until the visible range is smaller than
|
Chris@187
|
2865 // the frequency step between bins at the current fft size.
|
Chris@187
|
2866
|
Chris@187
|
2867 float dist = m_dist;
|
Chris@187
|
2868
|
Chris@187
|
2869 int n = 0;
|
Chris@187
|
2870 while (n < position) {
|
Chris@187
|
2871 dist /= m_s2;
|
Chris@187
|
2872 ++n;
|
Chris@187
|
2873 }
|
Chris@187
|
2874
|
Chris@187
|
2875 return dist;
|
Chris@187
|
2876 }
|
Chris@187
|
2877
|
Chris@187
|
2878 virtual QString getUnit() const { return "Hz"; }
|
Chris@187
|
2879
|
Chris@187
|
2880 protected:
|
Chris@187
|
2881 float m_dist;
|
Chris@187
|
2882 float m_s2;
|
Chris@187
|
2883 };
|
Chris@187
|
2884
|
Chris@133
|
2885 int
|
Chris@133
|
2886 SpectrogramLayer::getVerticalZoomSteps(int &defaultStep) const
|
Chris@133
|
2887 {
|
Chris@135
|
2888 if (!m_model) return 0;
|
Chris@187
|
2889
|
Chris@187
|
2890 int sr = m_model->getSampleRate();
|
Chris@187
|
2891
|
Chris@187
|
2892 SpectrogramRangeMapper mapper(sr, m_fftSize);
|
Chris@187
|
2893
|
Chris@187
|
2894 // int maxStep = mapper.getPositionForValue((float(sr) / m_fftSize) + 0.001);
|
Chris@187
|
2895 int maxStep = mapper.getPositionForValue(0);
|
Chris@187
|
2896 int minStep = mapper.getPositionForValue(float(sr) / 2);
|
Chris@135
|
2897
|
Chris@187
|
2898 defaultStep = mapper.getPositionForValue(m_initialMaxFrequency) - minStep;
|
Chris@187
|
2899
|
Chris@187
|
2900 std::cerr << "SpectrogramLayer::getVerticalZoomSteps: " << maxStep - minStep << " (" << maxStep <<"-" << minStep << "), default is " << defaultStep << " (from initial max freq " << m_initialMaxFrequency << ")" << std::endl;
|
Chris@187
|
2901
|
Chris@187
|
2902 return maxStep - minStep;
|
Chris@133
|
2903 }
|
Chris@133
|
2904
|
Chris@133
|
2905 int
|
Chris@133
|
2906 SpectrogramLayer::getCurrentVerticalZoomStep() const
|
Chris@133
|
2907 {
|
Chris@133
|
2908 if (!m_model) return 0;
|
Chris@133
|
2909
|
Chris@133
|
2910 float dmin, dmax;
|
Chris@133
|
2911 getDisplayExtents(dmin, dmax);
|
Chris@133
|
2912
|
Chris@187
|
2913 SpectrogramRangeMapper mapper(m_model->getSampleRate(), m_fftSize);
|
Chris@187
|
2914 int n = mapper.getPositionForValue(dmax - dmin);
|
Chris@187
|
2915 std::cerr << "SpectrogramLayer::getCurrentVerticalZoomStep: " << n << std::endl;
|
Chris@133
|
2916 return n;
|
Chris@133
|
2917 }
|
Chris@133
|
2918
|
Chris@133
|
2919 void
|
Chris@133
|
2920 SpectrogramLayer::setVerticalZoomStep(int step)
|
Chris@133
|
2921 {
|
Chris@133
|
2922 //!!! does not do the right thing for log scale
|
Chris@133
|
2923
|
Chris@187
|
2924 if (!m_model) return;
|
Chris@187
|
2925
|
Chris@133
|
2926 float dmin, dmax;
|
Chris@133
|
2927 getDisplayExtents(dmin, dmax);
|
Chris@133
|
2928
|
Chris@133
|
2929 int sr = m_model->getSampleRate();
|
Chris@187
|
2930 SpectrogramRangeMapper mapper(sr, m_fftSize);
|
Chris@187
|
2931 float ddist = mapper.getValueForPosition(step);
|
Chris@133
|
2932
|
Chris@133
|
2933 float dmid = (dmax + dmin) / 2;
|
Chris@133
|
2934 float newmin = dmid - ddist / 2;
|
Chris@133
|
2935 float newmax = dmid + ddist / 2;
|
Chris@187
|
2936
|
Chris@187
|
2937 float mmin, mmax;
|
Chris@187
|
2938 mmin = 0;
|
Chris@187
|
2939 mmax = float(sr) / 2;
|
Chris@133
|
2940
|
Chris@187
|
2941 if (newmin < mmin) {
|
Chris@187
|
2942 newmax += (mmin - newmin);
|
Chris@187
|
2943 newmin = mmin;
|
Chris@187
|
2944 }
|
Chris@187
|
2945 if (newmax > mmax) {
|
Chris@187
|
2946 newmax = mmax;
|
Chris@187
|
2947 }
|
Chris@133
|
2948
|
Chris@187
|
2949 std::cerr << "SpectrogramLayer::setVerticalZoomStep: " << step << ": " << newmin << " -> " << newmax << " (range " << ddist << ")" << std::endl;
|
Chris@187
|
2950
|
Chris@187
|
2951 setMinFrequency(int(newmin));
|
Chris@187
|
2952 setMaxFrequency(int(newmax));
|
Chris@187
|
2953 }
|
Chris@187
|
2954
|
Chris@187
|
2955 RangeMapper *
|
Chris@187
|
2956 SpectrogramLayer::getNewVerticalZoomRangeMapper() const
|
Chris@187
|
2957 {
|
Chris@187
|
2958 if (!m_model) return 0;
|
Chris@187
|
2959 return new SpectrogramRangeMapper(m_model->getSampleRate(), m_fftSize);
|
Chris@133
|
2960 }
|
Chris@133
|
2961
|
Chris@6
|
2962 QString
|
Chris@6
|
2963 SpectrogramLayer::toXmlString(QString indent, QString extraAttributes) const
|
Chris@6
|
2964 {
|
Chris@6
|
2965 QString s;
|
Chris@6
|
2966
|
Chris@6
|
2967 s += QString("channel=\"%1\" "
|
Chris@6
|
2968 "windowSize=\"%2\" "
|
Chris@153
|
2969 "windowHopLevel=\"%3\" "
|
Chris@153
|
2970 "gain=\"%4\" "
|
Chris@153
|
2971 "threshold=\"%5\" ")
|
Chris@6
|
2972 .arg(m_channel)
|
Chris@6
|
2973 .arg(m_windowSize)
|
Chris@97
|
2974 .arg(m_windowHopLevel)
|
Chris@37
|
2975 .arg(m_gain)
|
Chris@37
|
2976 .arg(m_threshold);
|
Chris@37
|
2977
|
Chris@37
|
2978 s += QString("minFrequency=\"%1\" "
|
Chris@37
|
2979 "maxFrequency=\"%2\" "
|
Chris@37
|
2980 "colourScale=\"%3\" "
|
Chris@37
|
2981 "colourScheme=\"%4\" "
|
Chris@37
|
2982 "colourRotation=\"%5\" "
|
Chris@37
|
2983 "frequencyScale=\"%6\" "
|
Chris@37
|
2984 "binDisplay=\"%7\" "
|
Chris@153
|
2985 "normalizeColumns=\"%8\" "
|
Chris@153
|
2986 "normalizeVisibleArea=\"%9\"")
|
Chris@37
|
2987 .arg(m_minFrequency)
|
Chris@6
|
2988 .arg(m_maxFrequency)
|
Chris@6
|
2989 .arg(m_colourScale)
|
Chris@197
|
2990 .arg(m_colourMap)
|
Chris@37
|
2991 .arg(m_colourRotation)
|
Chris@35
|
2992 .arg(m_frequencyScale)
|
Chris@37
|
2993 .arg(m_binDisplay)
|
Chris@153
|
2994 .arg(m_normalizeColumns ? "true" : "false")
|
Chris@153
|
2995 .arg(m_normalizeVisibleArea ? "true" : "false");
|
Chris@6
|
2996
|
Chris@6
|
2997 return Layer::toXmlString(indent, extraAttributes + " " + s);
|
Chris@6
|
2998 }
|
Chris@6
|
2999
|
Chris@11
|
3000 void
|
Chris@11
|
3001 SpectrogramLayer::setProperties(const QXmlAttributes &attributes)
|
Chris@11
|
3002 {
|
Chris@11
|
3003 bool ok = false;
|
Chris@11
|
3004
|
Chris@11
|
3005 int channel = attributes.value("channel").toInt(&ok);
|
Chris@11
|
3006 if (ok) setChannel(channel);
|
Chris@11
|
3007
|
Chris@11
|
3008 size_t windowSize = attributes.value("windowSize").toUInt(&ok);
|
Chris@11
|
3009 if (ok) setWindowSize(windowSize);
|
Chris@11
|
3010
|
Chris@97
|
3011 size_t windowHopLevel = attributes.value("windowHopLevel").toUInt(&ok);
|
Chris@97
|
3012 if (ok) setWindowHopLevel(windowHopLevel);
|
Chris@97
|
3013 else {
|
Chris@97
|
3014 size_t windowOverlap = attributes.value("windowOverlap").toUInt(&ok);
|
Chris@97
|
3015 // a percentage value
|
Chris@97
|
3016 if (ok) {
|
Chris@97
|
3017 if (windowOverlap == 0) setWindowHopLevel(0);
|
Chris@97
|
3018 else if (windowOverlap == 25) setWindowHopLevel(1);
|
Chris@97
|
3019 else if (windowOverlap == 50) setWindowHopLevel(2);
|
Chris@97
|
3020 else if (windowOverlap == 75) setWindowHopLevel(3);
|
Chris@97
|
3021 else if (windowOverlap == 90) setWindowHopLevel(4);
|
Chris@97
|
3022 }
|
Chris@97
|
3023 }
|
Chris@11
|
3024
|
Chris@11
|
3025 float gain = attributes.value("gain").toFloat(&ok);
|
Chris@11
|
3026 if (ok) setGain(gain);
|
Chris@11
|
3027
|
Chris@37
|
3028 float threshold = attributes.value("threshold").toFloat(&ok);
|
Chris@37
|
3029 if (ok) setThreshold(threshold);
|
Chris@37
|
3030
|
Chris@37
|
3031 size_t minFrequency = attributes.value("minFrequency").toUInt(&ok);
|
Chris@187
|
3032 if (ok) {
|
Chris@187
|
3033 std::cerr << "SpectrogramLayer::setProperties: setting min freq to " << minFrequency << std::endl;
|
Chris@187
|
3034 setMinFrequency(minFrequency);
|
Chris@187
|
3035 }
|
Chris@37
|
3036
|
Chris@11
|
3037 size_t maxFrequency = attributes.value("maxFrequency").toUInt(&ok);
|
Chris@187
|
3038 if (ok) {
|
Chris@187
|
3039 std::cerr << "SpectrogramLayer::setProperties: setting max freq to " << maxFrequency << std::endl;
|
Chris@187
|
3040 setMaxFrequency(maxFrequency);
|
Chris@187
|
3041 }
|
Chris@11
|
3042
|
Chris@11
|
3043 ColourScale colourScale = (ColourScale)
|
Chris@11
|
3044 attributes.value("colourScale").toInt(&ok);
|
Chris@11
|
3045 if (ok) setColourScale(colourScale);
|
Chris@11
|
3046
|
Chris@197
|
3047 int colourMap = attributes.value("colourScheme").toInt(&ok);
|
Chris@197
|
3048 if (ok) setColourMap(colourMap);
|
Chris@11
|
3049
|
Chris@37
|
3050 int colourRotation = attributes.value("colourRotation").toInt(&ok);
|
Chris@37
|
3051 if (ok) setColourRotation(colourRotation);
|
Chris@37
|
3052
|
Chris@11
|
3053 FrequencyScale frequencyScale = (FrequencyScale)
|
Chris@11
|
3054 attributes.value("frequencyScale").toInt(&ok);
|
Chris@11
|
3055 if (ok) setFrequencyScale(frequencyScale);
|
Chris@35
|
3056
|
Chris@37
|
3057 BinDisplay binDisplay = (BinDisplay)
|
Chris@37
|
3058 attributes.value("binDisplay").toInt(&ok);
|
Chris@37
|
3059 if (ok) setBinDisplay(binDisplay);
|
Chris@36
|
3060
|
Chris@36
|
3061 bool normalizeColumns =
|
Chris@36
|
3062 (attributes.value("normalizeColumns").trimmed() == "true");
|
Chris@36
|
3063 setNormalizeColumns(normalizeColumns);
|
Chris@153
|
3064
|
Chris@153
|
3065 bool normalizeVisibleArea =
|
Chris@153
|
3066 (attributes.value("normalizeVisibleArea").trimmed() == "true");
|
Chris@153
|
3067 setNormalizeVisibleArea(normalizeVisibleArea);
|
Chris@11
|
3068 }
|
Chris@11
|
3069
|