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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 "Colour3DPlotLayer.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/LogRange.h"
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21 #include "ColourMapper.h"
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22
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23 #include <QPainter>
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24 #include <QImage>
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25 #include <QRect>
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26
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27 #include <iostream>
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28
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29 #include <cassert>
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30
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31 //#define DEBUG_COLOUR_3D_PLOT_LAYER_PAINT 1
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32
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33
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34 Colour3DPlotLayer::Colour3DPlotLayer() :
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35 m_model(0),
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36 m_cache(0),
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37 m_cacheStart(0),
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38 m_colourScale(LinearScale),
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39 m_colourMap(0),
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40 m_normalizeColumns(false),
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41 m_normalizeVisibleArea(false)
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42 {
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43
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44 }
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45
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46 Colour3DPlotLayer::~Colour3DPlotLayer()
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47 {
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48 }
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49
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50 void
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51 Colour3DPlotLayer::setModel(const DenseThreeDimensionalModel *model)
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52 {
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53 if (m_model == model) return;
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54 const DenseThreeDimensionalModel *oldModel = m_model;
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55 m_model = model;
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56 if (!m_model || !m_model->isOK()) return;
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57
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58 connect(m_model, SIGNAL(modelChanged()), this, SIGNAL(modelChanged()));
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59 connect(m_model, SIGNAL(modelChanged(size_t, size_t)),
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60 this, SIGNAL(modelChanged(size_t, size_t)));
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61
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62 connect(m_model, SIGNAL(completionChanged()),
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63 this, SIGNAL(modelCompletionChanged()));
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64
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65 connect(m_model, SIGNAL(modelChanged()), this, SLOT(cacheInvalid()));
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66 connect(m_model, SIGNAL(modelChanged(size_t, size_t)),
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67 this, SLOT(cacheInvalid(size_t, size_t)));
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68
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69 emit modelReplaced();
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70 emit sliceableModelReplaced(oldModel, model);
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71 }
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72
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73 void
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74 Colour3DPlotLayer::cacheInvalid()
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75 {
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76 delete m_cache;
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77 m_cache = 0;
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78 }
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79
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80 void
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81 Colour3DPlotLayer::cacheInvalid(size_t, size_t)
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82 {
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83 cacheInvalid();
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84 }
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85
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86 Layer::PropertyList
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87 Colour3DPlotLayer::getProperties() const
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88 {
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89 PropertyList list;
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90 list.push_back("Colour");
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91 list.push_back("Colour Scale");
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92 list.push_back("Normalize Columns");
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93 list.push_back("Normalize Visible Area");
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94 return list;
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95 }
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96
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97 QString
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98 Colour3DPlotLayer::getPropertyLabel(const PropertyName &name) const
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99 {
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100 if (name == "Colour") return tr("Colour");
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101 if (name == "Colour Scale") return tr("Scale");
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102 if (name == "Normalize Columns") return tr("Normalize Columns");
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103 if (name == "Normalize Visible Area") return tr("Normalize Visible Area");
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104 return "";
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105 }
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106
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107 Layer::PropertyType
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108 Colour3DPlotLayer::getPropertyType(const PropertyName &name) const
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109 {
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110 if (name == "Normalize Columns") return ToggleProperty;
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111 if (name == "Normalize Visible Area") return ToggleProperty;
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112 return ValueProperty;
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113 }
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114
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115 QString
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116 Colour3DPlotLayer::getPropertyGroupName(const PropertyName &name) const
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117 {
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118 if (name == "Normalize Columns" ||
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119 name == "Normalize Visible Area" ||
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120 name == "Colour Scale") return tr("Scale");
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121 return QString();
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122 }
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123
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124 int
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125 Colour3DPlotLayer::getPropertyRangeAndValue(const PropertyName &name,
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126 int *min, int *max, int *deflt) const
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127 {
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128 int val = 0;
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129
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130 int garbage0, garbage1, garbage2;
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131 if (!min) min = &garbage0;
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132 if (!max) max = &garbage1;
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133 if (!deflt) deflt = &garbage2;
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134
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135 if (name == "Colour Scale") {
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136
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137 *min = 0;
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138 *max = 2;
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139 *deflt = (int)LinearScale;
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140
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141 val = (int)m_colourScale;
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142
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143 } else if (name == "Colour") {
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144
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145 *min = 0;
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146 *max = ColourMapper::getColourMapCount() - 1;
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147 *deflt = 0;
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148
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149 val = m_colourMap;
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150
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151 } else if (name == "Normalize Columns") {
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152
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153 *deflt = 0;
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154 val = (m_normalizeColumns ? 1 : 0);
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155
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156 } else if (name == "Normalize Visible Area") {
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157
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158 *deflt = 0;
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159 val = (m_normalizeVisibleArea ? 1 : 0);
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160
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161 } else {
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162 val = Layer::getPropertyRangeAndValue(name, min, max, deflt);
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163 }
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164
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165 return val;
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166 }
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167
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168 QString
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169 Colour3DPlotLayer::getPropertyValueLabel(const PropertyName &name,
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170 int value) const
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171 {
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172 if (name == "Colour") {
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173 return ColourMapper::getColourMapName(value);
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174 }
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175 if (name == "Colour Scale") {
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176 switch (value) {
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177 default:
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178 case 0: return tr("Linear");
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179 case 1: return tr("Log");
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180 case 2: return tr("+/-1");
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181 }
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182 }
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183 return tr("<unknown>");
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184 }
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185
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186 void
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187 Colour3DPlotLayer::setProperty(const PropertyName &name, int value)
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188 {
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189 if (name == "Colour Scale") {
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190 switch (value) {
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191 default:
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192 case 0: setColourScale(LinearScale); break;
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193 case 1: setColourScale(LogScale); break;
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194 case 2: setColourScale(PlusMinusOneScale); break;
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195 }
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196 } else if (name == "Colour") {
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197 setColourMap(value);
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198 } else if (name == "Normalize Columns") {
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199 setNormalizeColumns(value ? true : false);
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200 } else if (name == "Normalize Visible Area") {
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201 setNormalizeVisibleArea(value ? true : false);
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202 }
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203 }
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204
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205 void
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206 Colour3DPlotLayer::setColourScale(ColourScale scale)
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207 {
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208 if (m_colourScale == scale) return;
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209 m_colourScale = scale;
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210 cacheInvalid();
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211 emit layerParametersChanged();
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212 }
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213
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214 void
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215 Colour3DPlotLayer::setColourMap(int map)
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216 {
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217 if (m_colourMap == map) return;
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218 m_colourMap = map;
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219 cacheInvalid();
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220 emit layerParametersChanged();
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221 }
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222
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223 void
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224 Colour3DPlotLayer::setNormalizeColumns(bool n)
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225 {
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226 if (m_normalizeColumns == n) return;
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227 m_normalizeColumns = n;
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228 cacheInvalid();
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229 emit layerParametersChanged();
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230 }
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231
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232 bool
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233 Colour3DPlotLayer::getNormalizeColumns() const
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234 {
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235 return m_normalizeColumns;
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236 }
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237
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238 void
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239 Colour3DPlotLayer::setNormalizeVisibleArea(bool n)
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240 {
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241 if (m_normalizeVisibleArea == n) return;
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242 m_normalizeVisibleArea = n;
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243 cacheInvalid();
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244 emit layerParametersChanged();
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245 }
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246
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247 bool
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248 Colour3DPlotLayer::getNormalizeVisibleArea() const
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249 {
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250 return m_normalizeVisibleArea;
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251 }
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252
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253 bool
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254 Colour3DPlotLayer::isLayerScrollable(const View *v) const
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255 {
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256 if (m_normalizeVisibleArea) return false;
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257 QPoint discard;
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258 return !v->shouldIlluminateLocalFeatures(this, discard);
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259 }
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260
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261 QString
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262 Colour3DPlotLayer::getFeatureDescription(View *v, QPoint &pos) const
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263 {
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264 if (!m_model) return "";
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265
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266 int x = pos.x();
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267 int y = pos.y();
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268
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269 size_t modelStart = m_model->getStartFrame();
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270 size_t modelResolution = m_model->getResolution();
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271
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272 float srRatio =
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273 float(v->getViewManager()->getMainModelSampleRate()) /
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274 float(m_model->getSampleRate());
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275
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276 int sx0 = int((v->getFrameForX(x) / srRatio - long(modelStart)) /
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277 long(modelResolution));
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278
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279 int f0 = sx0 * modelResolution;
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280 int f1 = f0 + modelResolution;
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281
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282 float binHeight = float(v->height()) / m_model->getHeight();
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283 int sy = int((v->height() - y) / binHeight);
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284
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285 float value = m_model->getValueAt(sx0, sy);
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286
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287 // std::cerr << "bin value (" << sx0 << "," << sy << ") is " << value << std::endl;
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288
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289 QString binName = m_model->getBinName(sy);
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290 if (binName == "") binName = QString("[%1]").arg(sy + 1);
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291 else binName = QString("%1 [%2]").arg(binName).arg(sy + 1);
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292
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293 QString text = tr("Time:\t%1 - %2\nBin:\t%3\nValue:\t%4")
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294 .arg(RealTime::frame2RealTime(f0, m_model->getSampleRate())
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295 .toText(true).c_str())
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296 .arg(RealTime::frame2RealTime(f1, m_model->getSampleRate())
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297 .toText(true).c_str())
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298 .arg(binName)
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299 .arg(value);
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300
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301 return text;
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302 }
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303
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304 int
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305 Colour3DPlotLayer::getColourScaleWidth(QPainter &) const
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306 {
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307 int cw = 20;
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308 return cw;
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309 }
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310
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311 int
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312 Colour3DPlotLayer::getVerticalScaleWidth(View *, QPainter &paint) const
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313 {
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314 if (!m_model) return 0;
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315
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316 QString sampleText = QString("[%1]").arg(m_model->getHeight());
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317 int tw = paint.fontMetrics().width(sampleText);
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318 bool another = false;
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319
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320 for (size_t i = 0; i < m_model->getHeight(); ++i) {
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321 if (m_model->getBinName(i).length() > sampleText.length()) {
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322 sampleText = m_model->getBinName(i);
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323 another = true;
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324 }
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325 }
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326 if (another) {
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327 tw = std::max(tw, paint.fontMetrics().width(sampleText));
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328 }
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329
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330 return tw + 13 + getColourScaleWidth(paint);
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331 }
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332
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333 void
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334 Colour3DPlotLayer::paintVerticalScale(View *v, QPainter &paint, QRect rect) const
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335 {
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336 if (!m_model) return;
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337
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338 int h = rect.height(), w = rect.width();
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339 float binHeight = float(v->height()) / m_model->getHeight();
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340
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341 int cw = getColourScaleWidth(paint);
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342
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343 int ch = h - 20;
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344 if (ch > 20 && m_cache) {
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345
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346 paint.setPen(Qt::black);
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347 paint.drawRect(4, 10, cw - 8, ch - 19);
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348
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349 for (int y = 0; y < ch - 20; ++y) {
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350 QRgb c = m_cache->color(((ch - 20 - y) * 255) / (ch - 20));
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351 // std::cerr << "y = " << y << ": rgb " << qRed(c) << "," << qGreen(c) << "," << qBlue(c) << std::endl;
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352 paint.setPen(QColor(qRed(c), qGreen(c), qBlue(c)));
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353 paint.drawLine(5, 11 + y, cw - 5, 11 + y);
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354 }
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355 }
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356
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357 paint.setPen(Qt::black);
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358
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359 int count = v->height() / paint.fontMetrics().height();
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360 int step = m_model->getHeight() / count;
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361 if (step == 0) step = 1;
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362
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363 for (size_t i = 0; i < m_model->getHeight(); ++i) {
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364
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365 if ((i % step) != 0) continue;
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366
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367 int y0 = int(v->height() - (i * binHeight) - 1);
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368
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369 QString text = m_model->getBinName(i);
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370 if (text == "") text = QString("[%1]").arg(i + 1);
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371
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372 paint.drawLine(cw, y0, w, y0);
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373
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374 int cy = int(y0 - (step * binHeight)/2);
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375 int ty = cy + paint.fontMetrics().ascent()/2;
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376
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377 paint.drawText(cw + 5, ty, text);
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378 }
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379 }
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380
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381 void
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382 Colour3DPlotLayer::getColumn(size_t col,
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383 DenseThreeDimensionalModel::Column &values) const
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384 {
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385 m_model->getColumn(col, values);
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386
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Chris@224
|
387 float colMax = 0.f, colMin = 0.f;
|
Chris@197
|
388
|
Chris@197
|
389 float min = 0.f, max = 0.f;
|
Chris@197
|
390 if (m_normalizeColumns) {
|
Chris@197
|
391 min = m_model->getMinimumLevel();
|
Chris@197
|
392 max = m_model->getMaximumLevel();
|
Chris@197
|
393 }
|
Chris@197
|
394
|
Chris@197
|
395 if (m_normalizeColumns) {
|
Chris@197
|
396 for (size_t y = 0; y < values.size(); ++y) {
|
Chris@224
|
397 if (y == 0 || values[y] > colMax) colMax = values[y];
|
Chris@224
|
398 if (y == 0 || values[y] < colMin) colMin = values[y];
|
Chris@197
|
399 }
|
Chris@224
|
400 if (colMin == colMax) colMax = colMin + 1;
|
Chris@197
|
401 }
|
Chris@197
|
402
|
Chris@197
|
403 for (size_t y = 0; y < values.size(); ++y) {
|
Chris@197
|
404
|
Chris@197
|
405 float value = min;
|
Chris@197
|
406
|
Chris@197
|
407 value = values[y];
|
Chris@197
|
408
|
Chris@197
|
409 if (m_normalizeColumns) {
|
Chris@224
|
410 float norm = (value - colMin) / (colMax - colMin);
|
Chris@224
|
411 value = min + (max - min) * norm;
|
Chris@197
|
412 }
|
Chris@197
|
413
|
Chris@197
|
414 values[y] = value;
|
Chris@197
|
415 }
|
Chris@197
|
416 }
|
Chris@197
|
417
|
Chris@197
|
418 void
|
Chris@197
|
419 Colour3DPlotLayer::fillCache(size_t firstBin, size_t lastBin) const
|
Chris@197
|
420 {
|
Chris@197
|
421 size_t modelStart = m_model->getStartFrame();
|
Chris@197
|
422 size_t modelEnd = m_model->getEndFrame();
|
Chris@197
|
423 size_t modelResolution = m_model->getResolution();
|
Chris@197
|
424
|
Chris@224
|
425 // std::cerr << "Colour3DPlotLayer::fillCache: " << firstBin << " -> " << lastBin << std::endl;
|
Chris@197
|
426
|
Chris@197
|
427 if (!m_normalizeVisibleArea || m_normalizeColumns) {
|
Chris@197
|
428 firstBin = modelStart / modelResolution;
|
Chris@197
|
429 lastBin = modelEnd / modelResolution;
|
Chris@197
|
430 }
|
Chris@197
|
431
|
Chris@197
|
432 size_t cacheWidth = lastBin - firstBin + 1;
|
Chris@197
|
433 size_t cacheHeight = m_model->getHeight();
|
Chris@197
|
434
|
Chris@197
|
435 if (m_cache &&
|
Chris@197
|
436 (m_cacheStart != firstBin ||
|
Chris@248
|
437 m_cache->width() != int(cacheWidth) ||
|
Chris@248
|
438 m_cache->height() != int(cacheHeight))) {
|
Chris@197
|
439
|
Chris@197
|
440 delete m_cache;
|
Chris@197
|
441 m_cache = 0;
|
Chris@197
|
442 }
|
Chris@197
|
443
|
Chris@197
|
444 if (m_cache) return;
|
Chris@197
|
445
|
Chris@197
|
446 m_cache = new QImage(cacheWidth, cacheHeight, QImage::Format_Indexed8);
|
Chris@197
|
447 m_cacheStart = firstBin;
|
Chris@197
|
448
|
Chris@224
|
449 // std::cerr << "Cache size " << cacheWidth << "x" << cacheHeight << " starting " << m_cacheStart << std::endl;
|
Chris@197
|
450
|
Chris@197
|
451 m_cache->setNumColors(256);
|
Chris@197
|
452 DenseThreeDimensionalModel::Column values;
|
Chris@197
|
453
|
Chris@197
|
454 float min = m_model->getMinimumLevel();
|
Chris@197
|
455 float max = m_model->getMaximumLevel();
|
Chris@197
|
456
|
Chris@197
|
457 if (m_colourScale == LogScale) {
|
Chris@197
|
458 LogRange::mapRange(min, max);
|
Chris@197
|
459 } else if (m_colourScale == PlusMinusOneScale) {
|
Chris@197
|
460 min = -1.f;
|
Chris@197
|
461 max = 1.f;
|
Chris@197
|
462 }
|
Chris@197
|
463
|
Chris@197
|
464 if (max == min) max = min + 1.0;
|
Chris@197
|
465
|
Chris@197
|
466 ColourMapper mapper(m_colourMap, 0.f, 255.f);
|
Chris@197
|
467
|
Chris@197
|
468 for (int index = 0; index < 256; ++index) {
|
Chris@197
|
469
|
Chris@197
|
470 QColor colour = mapper.map(index);
|
Chris@197
|
471 m_cache->setColor(index, qRgb(colour.red(), colour.green(), colour.blue()));
|
Chris@197
|
472 }
|
Chris@197
|
473
|
Chris@197
|
474 m_cache->fill(0);
|
Chris@197
|
475
|
Chris@224
|
476 float visibleMax = 0.f, visibleMin = 0.f;
|
Chris@197
|
477
|
Chris@197
|
478 if (m_normalizeVisibleArea && !m_normalizeColumns) {
|
Chris@197
|
479
|
Chris@197
|
480 for (size_t c = firstBin; c <= lastBin; ++c) {
|
Chris@197
|
481
|
Chris@197
|
482 values.clear();
|
Chris@197
|
483 getColumn(c, values);
|
Chris@197
|
484
|
Chris@224
|
485 float colMax = 0.f, colMin = 0.f;
|
Chris@197
|
486
|
Chris@197
|
487 for (size_t y = 0; y < m_model->getHeight(); ++y) {
|
Chris@197
|
488 if (y >= values.size()) break;
|
Chris@197
|
489 if (y == 0 || values[y] > colMax) colMax = values[y];
|
Chris@224
|
490 if (y == 0 || values[y] < colMin) colMin = values[y];
|
Chris@197
|
491 }
|
Chris@197
|
492
|
Chris@197
|
493 if (c == firstBin || colMax > visibleMax) visibleMax = colMax;
|
Chris@224
|
494 if (c == firstBin || colMin < visibleMin) visibleMin = colMin;
|
Chris@197
|
495 }
|
Chris@197
|
496 }
|
Chris@197
|
497
|
Chris@224
|
498 if (visibleMin == visibleMax) visibleMax = visibleMin + 1;
|
Chris@224
|
499
|
Chris@197
|
500 for (size_t c = firstBin; c <= lastBin; ++c) {
|
Chris@197
|
501
|
Chris@197
|
502 values.clear();
|
Chris@197
|
503 getColumn(c, values);
|
Chris@197
|
504
|
Chris@197
|
505 for (size_t y = 0; y < m_model->getHeight(); ++y) {
|
Chris@197
|
506
|
Chris@197
|
507 float value = min;
|
Chris@197
|
508 if (y < values.size()) {
|
Chris@197
|
509 value = values[y];
|
Chris@197
|
510 }
|
Chris@197
|
511
|
Chris@197
|
512 if (m_normalizeVisibleArea && !m_normalizeColumns) {
|
Chris@224
|
513 float norm = (value - visibleMin) / (visibleMax - visibleMin);
|
Chris@224
|
514 value = min + (max - min) * norm;
|
Chris@224
|
515 }
|
Chris@224
|
516
|
Chris@224
|
517 if (m_colourScale == LogScale) {
|
Chris@224
|
518 value = LogRange::map(value);
|
Chris@197
|
519 }
|
Chris@197
|
520
|
Chris@197
|
521 int pixel = int(((value - min) * 256) / (max - min));
|
Chris@197
|
522 if (pixel < 0) pixel = 0;
|
Chris@197
|
523 if (pixel > 255) pixel = 255;
|
Chris@197
|
524
|
Chris@197
|
525 m_cache->setPixel(c - firstBin, y, pixel);
|
Chris@197
|
526 }
|
Chris@197
|
527 }
|
Chris@197
|
528 }
|
Chris@197
|
529
|
Chris@197
|
530 void
|
Chris@44
|
531 Colour3DPlotLayer::paint(View *v, QPainter &paint, QRect rect) const
|
Chris@0
|
532 {
|
Chris@0
|
533 // Profiler profiler("Colour3DPlotLayer::paint");
|
Chris@125
|
534 #ifdef DEBUG_COLOUR_3D_PLOT_LAYER_PAINT
|
Chris@125
|
535 std::cerr << "Colour3DPlotLayer::paint(): m_model is " << m_model << ", zoom level is " << v->getZoomLevel() << std::endl;
|
Chris@125
|
536 #endif
|
Chris@0
|
537
|
Chris@0
|
538 int completion = 0;
|
Chris@0
|
539 if (!m_model || !m_model->isOK() || !m_model->isReady(&completion)) {
|
Chris@0
|
540 if (completion > 0) {
|
Chris@44
|
541 paint.fillRect(0, 10, v->width() * completion / 100,
|
Chris@0
|
542 10, QColor(120, 120, 120));
|
Chris@0
|
543 }
|
Chris@0
|
544 return;
|
Chris@0
|
545 }
|
Chris@0
|
546
|
Chris@197
|
547 if (m_normalizeVisibleArea && !m_normalizeColumns) rect = v->rect();
|
Chris@197
|
548
|
Chris@0
|
549 size_t modelStart = m_model->getStartFrame();
|
Chris@0
|
550 size_t modelEnd = m_model->getEndFrame();
|
Chris@130
|
551 size_t modelResolution = m_model->getResolution();
|
Chris@0
|
552
|
Chris@197
|
553 // The cache is from the model's start frame to the model's end
|
Chris@197
|
554 // frame at the model's window increment frames per pixel. We
|
Chris@197
|
555 // want to draw from our start frame + x0 * zoomLevel to our start
|
Chris@197
|
556 // frame + x1 * zoomLevel at zoomLevel frames per pixel.
|
Chris@12
|
557
|
Chris@197
|
558 // We have quite different paint mechanisms for rendering "large"
|
Chris@197
|
559 // bins (more than one bin per pixel in both directions) and
|
Chris@197
|
560 // "small". This is "large"; see paintDense below for "small".
|
Chris@12
|
561
|
Chris@197
|
562 int x0 = rect.left();
|
Chris@197
|
563 int x1 = rect.right() + 1;
|
Chris@12
|
564
|
Chris@197
|
565 int h = v->height();
|
Chris@0
|
566
|
Chris@197
|
567 float srRatio =
|
Chris@197
|
568 float(v->getViewManager()->getMainModelSampleRate()) /
|
Chris@197
|
569 float(m_model->getSampleRate());
|
Chris@0
|
570
|
Chris@197
|
571 int sx0 = int((v->getFrameForX(x0) / srRatio - long(modelStart))
|
Chris@197
|
572 / long(modelResolution));
|
Chris@197
|
573 int sx1 = int((v->getFrameForX(x1) / srRatio - long(modelStart))
|
Chris@197
|
574 / long(modelResolution));
|
Chris@197
|
575 int sh = m_model->getHeight();
|
Chris@159
|
576
|
Chris@197
|
577 if (sx0 > 0) --sx0;
|
Chris@197
|
578 fillCache(sx0 < 0 ? 0 : sx0,
|
Chris@197
|
579 sx1 < 0 ? 0 : sx1);
|
Chris@0
|
580
|
Chris@248
|
581 if (int(m_model->getHeight()) >= v->height() ||
|
Chris@248
|
582 int(modelResolution) < v->getZoomLevel() / 2) {
|
Chris@98
|
583 paintDense(v, paint, rect);
|
Chris@98
|
584 return;
|
Chris@98
|
585 }
|
Chris@98
|
586
|
Chris@125
|
587 #ifdef DEBUG_COLOUR_3D_PLOT_LAYER_PAINT
|
Chris@0
|
588 std::cerr << "Colour3DPlotLayer::paint: w " << w << ", h " << h << ", sx0 " << sx0 << ", sx1 " << sx1 << ", sw " << sw << ", sh " << sh << std::endl;
|
Chris@130
|
589 std::cerr << "Colour3DPlotLayer: sample rate is " << m_model->getSampleRate() << ", resolution " << m_model->getResolution() << std::endl;
|
Chris@125
|
590 #endif
|
Chris@0
|
591
|
Chris@25
|
592 QPoint illuminatePos;
|
Chris@44
|
593 bool illuminate = v->shouldIlluminateLocalFeatures(this, illuminatePos);
|
Chris@54
|
594 char labelbuf[10];
|
Chris@25
|
595
|
Chris@197
|
596 for (int sx = sx0; sx <= sx1; ++sx) {
|
Chris@0
|
597
|
Chris@197
|
598 int scx = 0;
|
Chris@248
|
599 if (sx > int(m_cacheStart)) scx = sx - m_cacheStart;
|
Chris@197
|
600
|
Chris@130
|
601 int fx = sx * int(modelResolution);
|
Chris@0
|
602
|
Chris@248
|
603 if (fx + int(modelResolution) < int(modelStart) ||
|
Chris@0
|
604 fx > int(modelEnd)) continue;
|
Chris@0
|
605
|
Chris@248
|
606 int rx0 = v->getXForFrame(int((fx + int(modelStart)) * srRatio));
|
Chris@248
|
607 int rx1 = v->getXForFrame(int((fx + int(modelStart) + int(modelResolution) + 1) * srRatio));
|
Chris@54
|
608
|
Chris@159
|
609 int rw = rx1 - rx0;
|
Chris@159
|
610 if (rw < 1) rw = 1;
|
Chris@54
|
611
|
Chris@159
|
612 bool showLabel = (rw > 10 &&
|
Chris@159
|
613 paint.fontMetrics().width("0.000000") < rw - 3 &&
|
Chris@54
|
614 paint.fontMetrics().height() < (h / sh));
|
Chris@98
|
615
|
Chris@0
|
616 for (int sy = 0; sy < sh; ++sy) {
|
Chris@0
|
617
|
Chris@0
|
618 int ry0 = h - (sy * h) / sh - 1;
|
Chris@0
|
619 QRgb pixel = qRgb(255, 255, 255);
|
Chris@197
|
620 if (scx >= 0 && scx < m_cache->width() &&
|
Chris@0
|
621 sy >= 0 && sy < m_cache->height()) {
|
Chris@197
|
622 pixel = m_cache->pixel(scx, sy);
|
Chris@0
|
623 }
|
Chris@0
|
624
|
Chris@159
|
625 QRect r(rx0, ry0 - h / sh - 1, rw, h / sh + 1);
|
Chris@159
|
626
|
Chris@159
|
627 if (rw == 1) {
|
Chris@159
|
628 paint.setPen(pixel);
|
Chris@159
|
629 paint.setBrush(Qt::NoBrush);
|
Chris@159
|
630 paint.drawLine(r.x(), r.y(), r.x(), r.y() + r.height() - 1);
|
Chris@159
|
631 continue;
|
Chris@159
|
632 }
|
Chris@159
|
633
|
Chris@0
|
634 QColor pen(255, 255, 255, 80);
|
Chris@0
|
635 QColor brush(pixel);
|
Chris@159
|
636
|
Chris@159
|
637 if (rw > 3 && r.height() > 3) {
|
Chris@159
|
638 brush.setAlpha(160);
|
Chris@159
|
639 }
|
Chris@159
|
640
|
Chris@0
|
641 paint.setPen(Qt::NoPen);
|
Chris@0
|
642 paint.setBrush(brush);
|
Chris@0
|
643
|
Chris@25
|
644 if (illuminate) {
|
Chris@25
|
645 if (r.contains(illuminatePos)) {
|
Chris@25
|
646 paint.setPen(Qt::black);//!!!
|
Chris@25
|
647 }
|
Chris@25
|
648 }
|
Chris@76
|
649
|
Chris@125
|
650 #ifdef DEBUG_COLOUR_3D_PLOT_LAYER_PAINT
|
Chris@159
|
651 std::cerr << "rect " << r.x() << "," << r.y() << " "
|
Chris@159
|
652 << r.width() << "x" << r.height() << std::endl;
|
Chris@125
|
653 #endif
|
Chris@25
|
654
|
Chris@25
|
655 paint.drawRect(r);
|
Chris@0
|
656
|
Chris@54
|
657 if (showLabel) {
|
Chris@197
|
658 if (scx >= 0 && scx < m_cache->width() &&
|
Chris@54
|
659 sy >= 0 && sy < m_cache->height()) {
|
Chris@197
|
660 float value = m_model->getValueAt(scx, sy);
|
Chris@54
|
661 sprintf(labelbuf, "%06f", value);
|
Chris@54
|
662 QString text(labelbuf);
|
Chris@54
|
663 paint.setPen(Qt::white);
|
Chris@54
|
664 paint.drawText(rx0 + 2,
|
Chris@54
|
665 ry0 - h / sh - 1 + 2 + paint.fontMetrics().ascent(),
|
Chris@54
|
666 text);
|
Chris@0
|
667 }
|
Chris@0
|
668 }
|
Chris@0
|
669 }
|
Chris@0
|
670 }
|
Chris@98
|
671 }
|
Chris@0
|
672
|
Chris@98
|
673 void
|
Chris@98
|
674 Colour3DPlotLayer::paintDense(View *v, QPainter &paint, QRect rect) const
|
Chris@98
|
675 {
|
Chris@98
|
676 size_t modelStart = m_model->getStartFrame();
|
Chris@130
|
677 size_t modelResolution = m_model->getResolution();
|
Chris@0
|
678
|
Chris@159
|
679 float srRatio =
|
Chris@159
|
680 float(v->getViewManager()->getMainModelSampleRate()) /
|
Chris@159
|
681 float(m_model->getSampleRate());
|
Chris@159
|
682
|
Chris@98
|
683 int x0 = rect.left();
|
Chris@98
|
684 int x1 = rect.right() + 1;
|
Chris@0
|
685
|
Chris@98
|
686 int w = x1 - x0;
|
Chris@98
|
687 int h = v->height();
|
Chris@160
|
688 int sh = m_model->getHeight();
|
Chris@98
|
689
|
Chris@98
|
690 QImage img(w, h, QImage::Format_RGB32);
|
Chris@98
|
691
|
Chris@98
|
692 for (int x = x0; x < x1; ++x) {
|
Chris@98
|
693
|
Chris@248
|
694 long xf = long(v->getFrameForX(x) / srRatio);
|
Chris@105
|
695 if (xf < 0) {
|
Chris@105
|
696 for (int y = 0; y < h; ++y) {
|
Chris@105
|
697 img.setPixel(x - x0, y, m_cache->color(0));
|
Chris@105
|
698 }
|
Chris@105
|
699 continue;
|
Chris@105
|
700 }
|
Chris@105
|
701
|
Chris@130
|
702 float sx0 = (float(xf) - modelStart) / modelResolution;
|
Chris@159
|
703 float sx1 = (float(v->getFrameForX(x+1) / srRatio) - modelStart) / modelResolution;
|
Chris@98
|
704
|
Chris@98
|
705 int sx0i = int(sx0 + 0.001);
|
Chris@98
|
706 int sx1i = int(sx1);
|
Chris@98
|
707
|
Chris@98
|
708 for (int y = 0; y < h; ++y) {
|
Chris@98
|
709
|
Chris@98
|
710 float sy0 = (float(h - y - 1) * sh) / h;
|
Chris@98
|
711 float sy1 = (float(h - y) * sh) / h;
|
Chris@98
|
712
|
Chris@98
|
713 int sy0i = int(sy0 + 0.001);
|
Chris@98
|
714 int sy1i = int(sy1);
|
Chris@98
|
715
|
Chris@98
|
716 float mag = 0.0, div = 0.0;
|
Chris@159
|
717 int max = 0;
|
Chris@98
|
718
|
Chris@98
|
719 for (int sx = sx0i; sx <= sx1i; ++sx) {
|
Chris@98
|
720
|
Chris@197
|
721 int scx = 0;
|
Chris@248
|
722 if (sx > int(m_cacheStart)) scx = sx - int(m_cacheStart);
|
Chris@197
|
723
|
Chris@197
|
724 if (scx < 0 || scx >= m_cache->width()) continue;
|
Chris@98
|
725
|
Chris@98
|
726 for (int sy = sy0i; sy <= sy1i; ++sy) {
|
Chris@98
|
727
|
Chris@98
|
728 if (sy < 0 || sy >= m_cache->height()) continue;
|
Chris@98
|
729
|
Chris@98
|
730 float prop = 1.0;
|
Chris@98
|
731 if (sx == sx0i) prop *= (sx + 1) - sx0;
|
Chris@98
|
732 if (sx == sx1i) prop *= sx1 - sx;
|
Chris@98
|
733 if (sy == sy0i) prop *= (sy + 1) - sy0;
|
Chris@98
|
734 if (sy == sy1i) prop *= sy1 - sy;
|
Chris@98
|
735
|
Chris@197
|
736 mag += prop * m_cache->pixelIndex(scx, sy);
|
Chris@197
|
737 max = std::max(max, m_cache->pixelIndex(scx, sy));
|
Chris@98
|
738 div += prop;
|
Chris@98
|
739 }
|
Chris@98
|
740 }
|
Chris@98
|
741
|
Chris@98
|
742 if (div != 0) mag /= div;
|
Chris@98
|
743 if (mag < 0) mag = 0;
|
Chris@98
|
744 if (mag > 255) mag = 255;
|
Chris@159
|
745 if (max < 0) max = 0;
|
Chris@159
|
746 if (max > 255) max = 255;
|
Chris@98
|
747
|
Chris@98
|
748 img.setPixel(x - x0, y, m_cache->color(int(mag + 0.001)));
|
Chris@159
|
749 // img.setPixel(x - x0, y, m_cache->color(max));
|
Chris@98
|
750 }
|
Chris@0
|
751 }
|
Chris@0
|
752
|
Chris@98
|
753 paint.drawImage(x0, 0, img);
|
Chris@0
|
754 }
|
Chris@0
|
755
|
Chris@28
|
756 bool
|
Chris@44
|
757 Colour3DPlotLayer::snapToFeatureFrame(View *v, int &frame,
|
Chris@28
|
758 size_t &resolution,
|
Chris@28
|
759 SnapType snap) const
|
Chris@24
|
760 {
|
Chris@24
|
761 if (!m_model) {
|
Chris@44
|
762 return Layer::snapToFeatureFrame(v, frame, resolution, snap);
|
Chris@24
|
763 }
|
Chris@24
|
764
|
Chris@130
|
765 resolution = m_model->getResolution();
|
Chris@28
|
766 int left = (frame / resolution) * resolution;
|
Chris@28
|
767 int right = left + resolution;
|
Chris@28
|
768
|
Chris@28
|
769 switch (snap) {
|
Chris@28
|
770 case SnapLeft: frame = left; break;
|
Chris@28
|
771 case SnapRight: frame = right; break;
|
Chris@28
|
772 case SnapNearest:
|
Chris@28
|
773 case SnapNeighbouring:
|
Chris@28
|
774 if (frame - left > right - frame) frame = right;
|
Chris@28
|
775 else frame = left;
|
Chris@28
|
776 break;
|
Chris@28
|
777 }
|
Chris@24
|
778
|
Chris@28
|
779 return true;
|
Chris@24
|
780 }
|
Chris@24
|
781
|
Chris@197
|
782 QString
|
Chris@197
|
783 Colour3DPlotLayer::toXmlString(QString indent, QString extraAttributes) const
|
Chris@197
|
784 {
|
Chris@197
|
785 QString s;
|
Chris@197
|
786
|
Chris@197
|
787 s += QString("scale=\"%1\" "
|
Chris@197
|
788 "colourScheme=\"%2\" "
|
Chris@197
|
789 "normalizeColumns=\"%3\" "
|
Chris@197
|
790 "normalizeVisibleArea=\"%4\"")
|
Chris@197
|
791 .arg((int)m_colourScale)
|
Chris@197
|
792 .arg(m_colourMap)
|
Chris@197
|
793 .arg(m_normalizeColumns ? "true" : "false")
|
Chris@197
|
794 .arg(m_normalizeVisibleArea ? "true" : "false");
|
Chris@197
|
795
|
Chris@197
|
796 return Layer::toXmlString(indent, extraAttributes + " " + s);
|
Chris@197
|
797 }
|
Chris@197
|
798
|
Chris@197
|
799 void
|
Chris@197
|
800 Colour3DPlotLayer::setProperties(const QXmlAttributes &attributes)
|
Chris@197
|
801 {
|
Chris@197
|
802 bool ok = false;
|
Chris@197
|
803
|
Chris@197
|
804 ColourScale scale = (ColourScale)attributes.value("scale").toInt(&ok);
|
Chris@197
|
805 if (ok) setColourScale(scale);
|
Chris@197
|
806
|
Chris@197
|
807 int colourMap = attributes.value("colourScheme").toInt(&ok);
|
Chris@197
|
808 if (ok) setColourMap(colourMap);
|
Chris@197
|
809
|
Chris@197
|
810 bool normalizeColumns =
|
Chris@197
|
811 (attributes.value("normalizeColumns").trimmed() == "true");
|
Chris@197
|
812 setNormalizeColumns(normalizeColumns);
|
Chris@197
|
813
|
Chris@197
|
814 bool normalizeVisibleArea =
|
Chris@197
|
815 (attributes.value("normalizeVisibleArea").trimmed() == "true");
|
Chris@197
|
816 setNormalizeVisibleArea(normalizeVisibleArea);
|
Chris@197
|
817 }
|
Chris@197
|
818
|