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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 2007 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 "AlignmentModel.h"
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17
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18 #include "SparseTimeValueModel.h"
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19
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20 AlignmentModel::AlignmentModel(Model *reference,
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21 Model *aligned,
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22 Model *inputModel,
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23 SparseTimeValueModel *path) :
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24 m_reference(reference),
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25 m_aligned(aligned),
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26 m_inputModel(inputModel),
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27 m_path(path),
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28 m_reversePath(0),
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29 m_pathComplete(false)
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30 {
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31 connect(m_path, SIGNAL(modelChanged()),
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32 this, SLOT(pathChanged()));
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33
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34 connect(m_path, SIGNAL(modelChanged(size_t, size_t)),
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35 this, SLOT(pathChanged(size_t, size_t)));
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36
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37 connect(m_path, SIGNAL(completionChanged()),
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38 this, SLOT(pathCompletionChanged()));
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39
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40 constructReversePath();
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41 }
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42
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43 AlignmentModel::~AlignmentModel()
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44 {
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45 delete m_inputModel;
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46 delete m_path;
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47 delete m_reversePath;
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48 }
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49
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50 bool
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51 AlignmentModel::isOK() const
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52 {
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53 return m_path->isOK();
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54 }
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55
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56 size_t
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57 AlignmentModel::getStartFrame() const
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58 {
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59 //!!! do we care about distinct rates?
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60 size_t a = m_reference->getStartFrame();
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61 size_t b = m_aligned->getStartFrame();
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62 return std::min(a, b);
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63 }
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64
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65 size_t
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66 AlignmentModel::getEndFrame() const
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67 {
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68 //!!! do we care about distinct rates?
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69 size_t a = m_reference->getEndFrame();
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70 size_t b = m_aligned->getEndFrame();
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71 return std::max(a, b);
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72 }
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73
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74 size_t
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75 AlignmentModel::getSampleRate() const
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76 {
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77 return m_reference->getSampleRate();
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78 }
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79
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80 Model *
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81 AlignmentModel::clone() const
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82 {
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83 return new AlignmentModel
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84 (m_reference, m_aligned,
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85 m_inputModel ? m_inputModel->clone() : 0,
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86 m_path ? static_cast<SparseTimeValueModel *>(m_path->clone()) : 0);
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87 }
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88
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89 bool
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90 AlignmentModel::isReady(int *completion) const
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91 {
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92 return m_path->isReady(completion);
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93 }
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94
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95 const ZoomConstraint *
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96 AlignmentModel::getZoomConstraint() const
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97 {
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98 return m_path->getZoomConstraint();
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99 }
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100
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101 const Model *
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102 AlignmentModel::getReferenceModel() const
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103 {
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104 return m_reference;
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105 }
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106
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107 const Model *
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108 AlignmentModel::getAlignedModel() const
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109 {
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110 return m_aligned;
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111 }
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112
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113 size_t
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114 AlignmentModel::toReference(size_t frame) const
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115 {
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116 // std::cerr << "AlignmentModel::toReference(" << frame << ")" << std::endl;
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117 if (!m_reversePath) constructReversePath();
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118 return align(m_reversePath, frame);
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119 }
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120
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121 size_t
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122 AlignmentModel::fromReference(size_t frame) const
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123 {
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124 // std::cerr << "AlignmentModel::fromReference(" << frame << ")" << std::endl;
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125 return align(m_path, frame);
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126 }
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127
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128 void
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129 AlignmentModel::pathChanged()
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130 {
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131 }
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132
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133 void
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134 AlignmentModel::pathChanged(size_t, size_t)
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135 {
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136 if (!m_pathComplete) return;
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137 constructReversePath();
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138 }
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139
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140 void
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141 AlignmentModel::pathCompletionChanged()
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142 {
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143 if (!m_pathComplete) {
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144 int completion = 0;
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145 m_path->isReady(&completion);
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146 std::cerr << "AlignmentModel::pathCompletionChanged: completion = "
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147 << completion << std::endl;
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148 m_pathComplete = (completion == 100); //!!! a bit of a hack
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149 if (m_pathComplete) {
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150 constructReversePath();
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151 delete m_inputModel;
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152 m_inputModel = 0;
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153 }
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154 }
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155 emit completionChanged();
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156 }
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157
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158 void
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159 AlignmentModel::constructReversePath() const
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160 {
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161 if (!m_reversePath) {
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162 m_reversePath = new SparseTimeValueModel
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163 (m_path->getSampleRate(), m_path->getResolution(), false);
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164 }
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165
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166 m_reversePath->clear();
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167
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168 SparseTimeValueModel::PointList points = m_path->getPoints();
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169
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170 for (SparseTimeValueModel::PointList::const_iterator i = points.begin();
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171 i != points.end(); ++i) {
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172 long frame = i->frame;
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173 float value = i->value;
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174 long rframe = lrintf(value * m_aligned->getSampleRate());
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175 float rvalue = (float)frame / (float)m_reference->getSampleRate();
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176 m_reversePath->addPoint
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177 (SparseTimeValueModel::Point(rframe, rvalue, ""));
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178 }
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179
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180 std::cerr << "AlignmentModel::constructReversePath: " << m_reversePath->getPointCount() << " points" << std::endl;
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181 }
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182
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183 size_t
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184 AlignmentModel::align(SparseTimeValueModel *path, size_t frame) const
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185 {
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186 // The path consists of a series of points, each with x (time)
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187 // equal to the time on the source model and y (value) equal to
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188 // the time on the target model. Times and values are both
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189 // monotonically increasing.
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190
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191 const SparseTimeValueModel::PointList &points = path->getPoints();
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192
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193 if (points.empty()) {
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194 // std::cerr << "AlignmentModel::align: No points" << std::endl;
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195 return frame;
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196 }
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197
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198 SparseTimeValueModel::Point point(frame);
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199 SparseTimeValueModel::PointList::const_iterator i = points.lower_bound(point);
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200 if (i == points.end()) --i;
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201 float time = i->value;
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202 size_t rv = lrintf(time * getSampleRate());
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203
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204 //!!! interpolate!
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205
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206 // std::cerr << "AlignmentModel::align: rv = " << rv << std::endl;
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207
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208 return rv;
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209 }
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210
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