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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.
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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 "LayerFactory.h"
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17
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18 #include "WaveformLayer.h"
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19 #include "SpectrogramLayer.h"
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20 #include "TimeRulerLayer.h"
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21 #include "TimeInstantLayer.h"
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22 #include "TimeValueLayer.h"
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23 #include "NoteLayer.h"
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24 #include "TextLayer.h"
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25 #include "Colour3DPlotLayer.h"
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26 #include "SpectrumLayer.h"
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27 #include "SliceLayer.h"
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28 #include "SliceableLayer.h"
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29
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30 #include "data/model/RangeSummarisableTimeValueModel.h"
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31 #include "data/model/DenseTimeValueModel.h"
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32 #include "data/model/SparseOneDimensionalModel.h"
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33 #include "data/model/SparseTimeValueModel.h"
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34 #include "data/model/NoteModel.h"
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35 #include "data/model/TextModel.h"
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36 #include "data/model/DenseThreeDimensionalModel.h"
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37 #include "data/model/WaveFileModel.h"
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38 #include "data/model/WritableWaveFileModel.h"
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39
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40 LayerFactory *
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41 LayerFactory::m_instance = new LayerFactory;
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42
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43 LayerFactory *
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44 LayerFactory::getInstance()
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45 {
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46 return m_instance;
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47 }
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48
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49 LayerFactory::~LayerFactory()
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50 {
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51 }
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52
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53 QString
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54 LayerFactory::getLayerPresentationName(LayerType type)
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55 {
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56 switch (type) {
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57 case Waveform: return Layer::tr("Waveform");
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58 case Spectrogram: return Layer::tr("Spectrogram");
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59 case TimeRuler: return Layer::tr("Ruler");
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60 case TimeInstants: return Layer::tr("Time Instants");
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61 case TimeValues: return Layer::tr("Time Values");
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62 case Notes: return Layer::tr("Notes");
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63 case Text: return Layer::tr("Text");
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64 case Colour3DPlot: return Layer::tr("Colour 3D Plot");
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65 case Spectrum: return Layer::tr("Spectrum");
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66 case Slice: return Layer::tr("Time Slice");
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67
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68 case MelodicRangeSpectrogram:
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69 // The user can change all the parameters of this after the
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70 // fact -- there's nothing permanently melodic-range about it
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71 // that should be encoded in its name
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72 return Layer::tr("Spectrogram");
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73
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74 case PeakFrequencySpectrogram:
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75 // likewise
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76 return Layer::tr("Spectrogram");
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77
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78 default: break;
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79 }
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80
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81 return Layer::tr("Layer");
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82 }
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83
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84 bool
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85 LayerFactory::isLayerSliceable(const Layer *layer)
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86 {
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87 if (dynamic_cast<const SliceableLayer *>(layer)) {
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88 if (dynamic_cast<const SpectrogramLayer *>(layer)) {
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89
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90 //!!! We can create slices of spectrograms, but there's a
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91 // problem managing the models. The source model for the
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92 // slice layer has to be one of the spectrogram's FFT
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93 // models -- that's fine, except that we can't store &
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94 // recall the slice layer with a reference to that model
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95 // because the model is internal to the spectrogram layer
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96 // and the document has no record of it. We would need
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97 // some other way of managing models that are used in this
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98 // way. For the moment we just don't allow slices of
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99 // spectrograms -- and provide a spectrum layer for this
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100 // instead.
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101 //
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102 // This business needs a bit more thought -- either come
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103 // up with a sensible way to deal with that stuff, or
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104 // simplify the existing slice layer logic so that it
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105 // doesn't have to deal with models disappearing on it at
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106 // all (and use the normal Document setModel mechanism to
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107 // set its sliceable model instead of the fancy pants
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108 // nonsense it's doing at the moment).
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109
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110 return false;
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111 }
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112 return true;
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113 }
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114 return false;
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115 }
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116
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117 LayerFactory::LayerTypeSet
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118 LayerFactory::getValidLayerTypes(Model *model)
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119 {
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120 LayerTypeSet types;
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121
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122 if (dynamic_cast<DenseThreeDimensionalModel *>(model)) {
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123 types.insert(Colour3DPlot);
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124 types.insert(Slice);
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125 }
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126
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127 if (dynamic_cast<RangeSummarisableTimeValueModel *>(model)) {
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128 types.insert(Waveform);
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129 }
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130
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131 if (dynamic_cast<DenseTimeValueModel *>(model)) {
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132 types.insert(Spectrogram);
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133 types.insert(MelodicRangeSpectrogram);
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134 types.insert(PeakFrequencySpectrogram);
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135 }
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136
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137 if (dynamic_cast<SparseOneDimensionalModel *>(model)) {
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138 types.insert(TimeInstants);
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139 }
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140
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141 if (dynamic_cast<SparseTimeValueModel *>(model)) {
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142 types.insert(TimeValues);
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143
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144 }
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145 if (dynamic_cast<NoteModel *>(model)) {
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146 types.insert(Notes);
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147 }
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148
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149 if (dynamic_cast<TextModel *>(model)) {
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150 types.insert(Text);
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151 }
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152
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153 if (dynamic_cast<DenseTimeValueModel *>(model)) {
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154 types.insert(Spectrum);
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155 }
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156
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157 // We don't count TimeRuler here as it doesn't actually display
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158 // the data, although it can be backed by any model
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159
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160 return types;
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161 }
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162
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163 LayerFactory::LayerTypeSet
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164 LayerFactory::getValidEmptyLayerTypes()
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165 {
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166 LayerTypeSet types;
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167 types.insert(TimeInstants);
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168 types.insert(TimeValues);
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169 types.insert(Notes);
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170 types.insert(Text);
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171 //!!! and in principle Colour3DPlot -- now that's a challenge
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172 return types;
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173 }
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174
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175 LayerFactory::LayerType
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176 LayerFactory::getLayerType(const Layer *layer)
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177 {
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178 if (dynamic_cast<const WaveformLayer *>(layer)) return Waveform;
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179 if (dynamic_cast<const SpectrogramLayer *>(layer)) return Spectrogram;
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180 if (dynamic_cast<const TimeRulerLayer *>(layer)) return TimeRuler;
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181 if (dynamic_cast<const TimeInstantLayer *>(layer)) return TimeInstants;
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182 if (dynamic_cast<const TimeValueLayer *>(layer)) return TimeValues;
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183 if (dynamic_cast<const NoteLayer *>(layer)) return Notes;
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184 if (dynamic_cast<const TextLayer *>(layer)) return Text;
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185 if (dynamic_cast<const Colour3DPlotLayer *>(layer)) return Colour3DPlot;
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186 if (dynamic_cast<const SpectrumLayer *>(layer)) return Spectrum;
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187 if (dynamic_cast<const SliceLayer *>(layer)) return Slice;
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188 return UnknownLayer;
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189 }
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190
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191 QString
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192 LayerFactory::getLayerIconName(LayerType type)
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193 {
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194 switch (type) {
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195 case Waveform: return "waveform";
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196 case Spectrogram: return "spectrogram";
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197 case TimeRuler: return "timeruler";
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198 case TimeInstants: return "instants";
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199 case TimeValues: return "values";
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200 case Notes: return "notes";
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201 case Text: return "text";
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202 case Colour3DPlot: return "colour3d";
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203 case Spectrum: return "spectrum";
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204 case Slice: return "spectrum";
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205 default: return "unknown";
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206 }
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207 }
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208
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209 QString
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210 LayerFactory::getLayerTypeName(LayerType type)
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211 {
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212 switch (type) {
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213 case Waveform: return "waveform";
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214 case Spectrogram: return "spectrogram";
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215 case TimeRuler: return "timeruler";
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216 case TimeInstants: return "timeinstants";
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217 case TimeValues: return "timevalues";
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218 case Notes: return "notes";
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219 case Text: return "text";
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220 case Colour3DPlot: return "colour3dplot";
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221 case Spectrum: return "spectrum";
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222 case Slice: return "slice";
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223 default: return "unknown";
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224 }
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225 }
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226
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227 LayerFactory::LayerType
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228 LayerFactory::getLayerTypeForName(QString name)
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229 {
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230 if (name == "waveform") return Waveform;
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231 if (name == "spectrogram") return Spectrogram;
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232 if (name == "timeruler") return TimeRuler;
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233 if (name == "timeinstants") return TimeInstants;
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234 if (name == "timevalues") return TimeValues;
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235 if (name == "notes") return Notes;
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236 if (name == "text") return Text;
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237 if (name == "colour3dplot") return Colour3DPlot;
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238 if (name == "spectrum") return Spectrum;
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239 if (name == "slice") return Slice;
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240 return UnknownLayer;
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241 }
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242
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243 void
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244 LayerFactory::setModel(Layer *layer, Model *model)
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245 {
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246 // if (trySetModel<WaveformLayer, RangeSummarisableTimeValueModel>(layer, model))
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247 // return;
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248
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249 if (trySetModel<WaveformLayer, WaveFileModel>(layer, model))
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250 return;
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251
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252 if (trySetModel<WaveformLayer, WritableWaveFileModel>(layer, model))
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253 return;
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254
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255 if (trySetModel<SpectrogramLayer, DenseTimeValueModel>(layer, model))
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256 return;
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257
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258 if (trySetModel<TimeRulerLayer, Model>(layer, model))
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259 return;
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260
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261 if (trySetModel<TimeInstantLayer, SparseOneDimensionalModel>(layer, model))
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262 return;
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263
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264 if (trySetModel<TimeValueLayer, SparseTimeValueModel>(layer, model))
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265 return;
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266
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267 if (trySetModel<NoteLayer, NoteModel>(layer, model))
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268 return;
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269
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270 if (trySetModel<TextLayer, TextModel>(layer, model))
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271 return;
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272
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273 if (trySetModel<Colour3DPlotLayer, DenseThreeDimensionalModel>(layer, model))
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274 return;
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275
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276 if (trySetModel<SpectrogramLayer, DenseTimeValueModel>(layer, model))
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277 return;
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278
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279 if (trySetModel<SpectrumLayer, DenseTimeValueModel>(layer, model))
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280 return;
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281
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282 // if (trySetModel<SliceLayer, DenseThreeDimensionalModel>(layer, model))
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283 // return;
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284 }
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285
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286 Model *
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287 LayerFactory::createEmptyModel(LayerType layerType, Model *baseModel)
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288 {
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289 if (layerType == TimeInstants) {
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290 return new SparseOneDimensionalModel(baseModel->getSampleRate(), 1);
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291 } else if (layerType == TimeValues) {
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292 return new SparseTimeValueModel(baseModel->getSampleRate(), 1, true);
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293 } else if (layerType == Notes) {
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294 return new NoteModel(baseModel->getSampleRate(), 1, true);
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295 } else if (layerType == Text) {
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296 return new TextModel(baseModel->getSampleRate(), 1, true);
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297 } else {
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298 return 0;
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299 }
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300 }
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301
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302 int
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303 LayerFactory::getChannel(Layer *layer)
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304 {
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305 if (dynamic_cast<WaveformLayer *>(layer)) {
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306 return dynamic_cast<WaveformLayer *>(layer)->getChannel();
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307 }
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308 if (dynamic_cast<SpectrogramLayer *>(layer)) {
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309 return dynamic_cast<SpectrogramLayer *>(layer)->getChannel();
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310 }
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311 return -1;
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312 }
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313
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314 void
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315 LayerFactory::setChannel(Layer *layer, int channel)
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316 {
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317 if (dynamic_cast<WaveformLayer *>(layer)) {
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318 dynamic_cast<WaveformLayer *>(layer)->setChannel(channel);
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319 return;
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320 }
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321 if (dynamic_cast<SpectrogramLayer *>(layer)) {
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322 dynamic_cast<SpectrogramLayer *>(layer)->setChannel(channel);
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323 return;
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324 }
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325 }
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326
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327 Layer *
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328 LayerFactory::createLayer(LayerType type)
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329 {
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330 Layer *layer = 0;
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331
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332 switch (type) {
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333
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334 case Waveform:
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335 layer = new WaveformLayer;
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336 break;
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337
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338 case Spectrogram:
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339 layer = new SpectrogramLayer;
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340 break;
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341
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342 case TimeRuler:
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343 layer = new TimeRulerLayer;
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344 break;
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345
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346 case TimeInstants:
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347 layer = new TimeInstantLayer;
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348 break;
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349
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350 case TimeValues:
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351 layer = new TimeValueLayer;
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352 break;
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353
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354 case Notes:
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355 layer = new NoteLayer;
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356 break;
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357
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358 case Text:
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359 layer = new TextLayer;
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360 break;
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361
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362 case Colour3DPlot:
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363 layer = new Colour3DPlotLayer;
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364 break;
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365
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366 case Spectrum:
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367 layer = new SpectrumLayer;
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368 break;
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369
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370 case Slice:
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371 layer = new SliceLayer;
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372 break;
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373
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374 case MelodicRangeSpectrogram:
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375 layer = new SpectrogramLayer(SpectrogramLayer::MelodicRange);
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376 break;
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377
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378 case PeakFrequencySpectrogram:
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379 layer = new SpectrogramLayer(SpectrogramLayer::MelodicPeaks);
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380 break;
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381
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382 default: break;
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383 }
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384
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Chris@0
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385 if (!layer) {
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386 std::cerr << "LayerFactory::createLayer: Unknown layer type "
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387 << type << std::endl;
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388 } else {
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389 // std::cerr << "LayerFactory::createLayer: Setting object name "
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Chris@101
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390 // << getLayerPresentationName(type).toStdString() << " on " << layer << std::endl;
|
Chris@0
|
391 layer->setObjectName(getLayerPresentationName(type));
|
Chris@0
|
392 }
|
Chris@0
|
393
|
Chris@0
|
394 return layer;
|
Chris@0
|
395 }
|
Chris@0
|
396
|