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1 /*
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2 * AudioEventMatcher.cpp
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3 * MultipleAudioMathcher
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4 *
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5 * Created by Andrew on 31/01/2012.
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6 * Copyright 2012 QMUL. All rights reserved.
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7 *
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8 */
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9
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10 #include "AudioEventMatcher.h"
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11
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12
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13 const int matchWindowWidth = 6000;
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14
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15 AudioEventMatcher::AudioEventMatcher(){
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16
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17
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18 pitchLikelihoodToNoise = 0.7;//more noise
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19
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20 onsetLikelihoodToNoise = 0.5;
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21 onsetLikelihoodWidth = 10;//in ms
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22
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23 setArraySizes();
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24
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25 usingRealTime = false;
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26 bayesianStruct.realTimeMode = &usingRealTime;
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27 recentPitch = 0;
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28 currentAlignmentPosition = 0;
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29
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30
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31
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32 followingLiveInput = true;
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33 startedPlaying = false;
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34 }
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35
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36
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37 void AudioEventMatcher::setWindowDimensions(){
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38 double startHeight = recordedTracks.numberOfAudioTracks * recordedTracks.trackScreenHeight;
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39 double heightAvailable = 1 - startHeight;
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40 heightAvailable /= 3.0;
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41
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42 bayesPositionWindow.setToRelativeSize(0, startHeight, 1, heightAvailable);
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43 bayesLikelihoodWindow.setToRelativeSize(0, startHeight + 1*heightAvailable, 1, heightAvailable);
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44 bayesTempoWindow.setToRelativeSize(0, startHeight + 2*heightAvailable, 1, heightAvailable);
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45
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46
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47 }
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48
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49 void AudioEventMatcher::setArraySizes(){
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50 bayesianStruct.resetSpeedSize(200);
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51 bayesianStruct.setRelativeSpeedScalar(0.01);
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52 bayesianStruct.setSpeedPrior(1.0);
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53 bayesianStruct.relativeSpeedPrior.getMaximum();
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54
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55 bayesianStruct.resetSize(matchWindowWidth);
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56 bayesianStruct.setPositionDistributionScalar(1);
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57
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58 }
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59
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60 void AudioEventMatcher::loadAudioFiles(){
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61 recordedTracks.loadTestAudio();
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62 synchroniser.fileLengthSamples = recordedTracks.loadedAudioFiles[0].fileLoader.totalNumberOfSamples;
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63 printf("synchroniser has %f samples\n", synchroniser.fileLengthSamples);
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64 }
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65
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66 void AudioEventMatcher::startPlaying(){
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67 bayesianStruct.setStartPlaying();
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68 currentAlignmentPosition = 0;
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69 startTime = ofGetElapsedTimeMillis();
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70
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71 projectedPrior = bayesianStruct.prior;
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72 startedPlaying = true;
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73 synchroniser.reset();
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74
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75 //bayesianStruct.posterior.printArray();
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76 }
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77
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78
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79 void AudioEventMatcher::stopPlaying(){
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80 startedPlaying = false;
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81 }
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82
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83 void AudioEventMatcher::updatePosition(){
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84 if (!followingLiveInput)
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85 recordedTracks.updatePosition();
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86 else if (startedPlaying)
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87 recordedTracks.updatePositionToMillis(currentAlignmentPosition);
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88
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89 updateBestAlignmentPosition();
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90 }
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91
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92 void AudioEventMatcher::updateBestAlignmentPosition(){
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93 //THIS DEALS WITH WHERE WE ARE NOW! ON THE SCREEN
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94 //DIFFERENT TO WHEN EVENTS COME IN AS THEY ARE TIMESTAMPED - SO EG A PITCH EVENT MAY ARRIVE 16 CHROMA FRAMES LATER - BIG DIFFERENCE
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95
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96 int newTime = ofGetElapsedTimeMillis() - startTime;
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97 // double tmp = bayesianStruct.posterior.getIndexInRealTerms(bayesianStruct.posterior.MAPestimate);;
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98 // double timetmp = (newTime - lastAlignmentTime);
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99 // double speedtmp = bayesianStruct.relativeSpeedPosterior.getIndexInRealTerms(bayesianStruct.relativeSpeedPosterior.MAPestimate);
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100 // currentAlignmentTime = newTime;
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101 currentAlignmentPosition = bayesianStruct.posterior.getIndexInRealTerms(bayesianStruct.posterior.MAPestimate);
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102 currentAlignmentPosition += (newTime - lastAlignmentTime) * bayesianStruct.relativeSpeedPosterior.getIndexInRealTerms(bayesianStruct.relativeSpeedPosterior.MAPestimate);
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103
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104
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105 synchroniser.updateRecordedPosition(currentAlignmentPosition, newTime);
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106
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107 synchroniser.updateOutputSpeed();
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108
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109 bayesianStruct.projectDistribution(newTime, currentAlignmentPosition, projectedPrior);//prior gets updated to where we are now
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110
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111 // printf("ALIGN pos %f time diff %f (now %f , last %f)speed %f :: ALIGN BEST %f\n", tmp, timetmp, (double)ofGetElapsedTimeMillis(), lastAlignmentTime, speedtmp, currentAlignmentPosition);
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112 }
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113
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114 void AudioEventMatcher::draw(){
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115 //draw some outlines in blue
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116 ofSetColor(20,200,200);
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117 bayesPositionWindow.drawOutline();
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118 bayesTempoWindow.drawOutline();
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119
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120 //draw the scrolling audio tracks
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121 recordedTracks.drawTracks();
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122
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123 ofSetColor(255);
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124 // bayesianStruct.relativeSpeedPrior.drawVector(0, 200, bayesTempoWindow);
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125
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126 setScreenDisplayTimes();
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127 drawBayesianDistributions();
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128
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129 //bayesianStruct.posterior.drawVector(0, bayesianStruct.posterior.getRealTermsAsIndex(screenWidthMillis), bayesPositionWindow);
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130 //bayesianStruct.posterior.drawVector(bayesianStruct.posterior.getRealTermsAsIndex(0), bayesianStruct.posterior.getRealTermsAsIndex(screenWidthMillis), bayesPositionWindow);
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131 //bayesianStruct.relativeSpeedPosterior.drawVector(0, bayesianStruct.relativeSpeedPosterior.getRealTermsAsIndex(2), bayesTempoWindow);
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132
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133 ofDrawBitmapString("pitch "+ofToString(recentPitch, 2)+", Time "+ofToString(recentTime, 0), 20, 20);
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134
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135 string alignString = " align "+ofToString(currentAlignmentPosition, 2);
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136 alignString += " playing "+ofToString(synchroniser.playingPositionRatio, 5);
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137 alignString += " pos "+ofToString(synchroniser.playingPositionMillis,0)+" ms";
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138 alignString += " rec pos "+ofToString(synchroniser.recordedPositionMillis,0)+" ms";
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139 ofDrawBitmapString(alignString, 20, 50);
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140
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141 ofDrawBitmapString("pos "+ofToString(recordedTracks.loadedAudioFiles[0].fileLoader.onsetDetect.playPosition), 200,600);
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142 }
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143
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144 void AudioEventMatcher::setScreenDisplayTimes(){
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145 screenWidthMillis = recordedTracks.loadedAudioFiles[0].fileLoader.onsetDetect.framesToMillis(recordedTracks.loadedAudioFiles[0].fileLoader.onsetDetect.amplitudeNumber);
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146 // if (!followingLiveInput){
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147
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148 screenStartTimeMillis = recordedTracks.loadedAudioFiles[0].fileLoader.onsetDetect.framesToMillis(recordedTracks.loadedAudioFiles[0].fileLoader.onsetDetect.drawParams.windowStartFrame);
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149 screenEndTimeMillis = screenStartTimeMillis + screenWidthMillis;
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150
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151 //need PRECISION in this alignment
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152
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153
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154 /*}else{
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155
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156 screenStartTimeMillis = (int)(currentAlignmentPosition/screenWidthMillis) * screenWidthMillis;
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157 screenEndTimeMillis = screenStartTimeMillis + screenWidthMillis;
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158 }*/
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159 }
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160
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161 void AudioEventMatcher::drawBayesianDistributions(){
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162
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163
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164 int startIndex = bayesianStruct.posterior.getRealTermsAsIndex(screenStartTimeMillis);
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165 int endIndex = bayesianStruct.posterior.getRealTermsAsIndex(screenEndTimeMillis);
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166
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167 bayesianStruct.posterior.drawConstrainedVector(startIndex, endIndex, 0, ofGetWidth(), bayesPositionWindow);
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168
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169 string tmpString = "start "+ofToString(screenStartTimeMillis)+" (index "+ofToString(startIndex)+"), end "+ofToString(screenEndTimeMillis);
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170 ofDrawBitmapString(tmpString, bayesPositionWindow.x+20, bayesPositionWindow.y+20);
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171
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172 // bayesianStruct.likelihood.drawConstrainedVector(startIndex, endIndex, 0, ofGetWidth(), bayesLikelihoodWindow);
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173
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174 bayesianStruct.relativeSpeedPosterior.drawConstrainedVector(0, bayesianStruct.relativeSpeedPosterior.arraySize, 0, ofGetWidth(), bayesTempoWindow);
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175
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176 string tmpStr = "zero is "+ofToString(bayesianStruct.posterior.getRealTermsAsIndex(0));
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177 tmpStr += " offsetis "+ofToString(bayesianStruct.posterior.offset);
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178 tmpStr += " screenWidth = "+ofToString(bayesianStruct.posterior.getRealTermsAsIndex(screenWidthMillis));
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179 ofDrawBitmapString(tmpStr, 20,140);
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180 tmpStr = "best est "+ofToString(bayesianStruct.bestEstimate);
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181 ofDrawBitmapString(tmpStr, 20, 180);
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182
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183 ofDrawBitmapString("screenwidth "+ofToString(screenWidthMillis), 20, 800);
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184
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185 //green line at current best estimate
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186 ofSetColor(0,255,0);//green scrolling line best position
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187 double currentEstimateIndex = (currentAlignmentPosition - screenStartTimeMillis)*ofGetWidth()/screenWidthMillis;
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188 ofLine(currentEstimateIndex, bayesPositionWindow.y, currentEstimateIndex, bayesPositionWindow.y + bayesPositionWindow.height);
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189
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190
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191 ofSetColor(0,255,255);//synchroniser position
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192 currentEstimateIndex = (synchroniser.playingPositionMillis - screenStartTimeMillis)*ofGetWidth()/screenWidthMillis;
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193 ofLine(currentEstimateIndex, bayesLikelihoodWindow.y, currentEstimateIndex, bayesLikelihoodWindow.y + bayesPositionWindow.height);
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194
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195
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196
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197 //draw track by track likelihoods
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198 for (int i = 0; i <recordedTracks.numberOfAudioTracks;i++){
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199 ofSetColor(200,255,50);//channel likelihoods in yellow
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200 likelihoodVisualisation[i].drawConstrainedVector(likelihoodVisualisation[i].getRealTermsAsIndex(screenStartTimeMillis), likelihoodVisualisation[i].getRealTermsAsIndex(screenEndTimeMillis), 0, ofGetWidth(), recordedTracks.loadedAudioFiles[i].fileLoader.onsetDetect.window);
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201
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202 ofSetColor(0,255,150);//channel priors
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203 recentPriors[i].drawConstrainedVector(recentPriors[i].getRealTermsAsIndex(screenStartTimeMillis), recentPriors[i].getRealTermsAsIndex(screenEndTimeMillis), 0, ofGetWidth(), recordedTracks.loadedAudioFiles[i].fileLoader.onsetDetect.window);
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204
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205
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206 ofSetColor(255);
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207 ofDrawBitmapString("recent event "+ofToString(recentEventTime[i]), recordedTracks.loadedAudioFiles[i].fileLoader.onsetDetect.window.x + 20, recordedTracks.loadedAudioFiles[i].fileLoader.onsetDetect.window.y + recordedTracks.loadedAudioFiles[i].fileLoader.onsetDetect.window.height - 10);
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208 }
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209
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210 int priorStartIndex = bayesianStruct.prior.getRealTermsAsIndex(screenStartTimeMillis);
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211 int priorEndIndex = bayesianStruct.prior.getRealTermsAsIndex(screenEndTimeMillis);
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212 // ofSetColor(0,200,200);//recent prior
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213 // recentPrior.drawConstrainedVector(priorStartIndex, priorEndIndex, 0, ofGetWidth(), bayesPositionWindow);
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214
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215 ofSetColor(255,0,100);//purple prior
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216 bayesianStruct.prior.drawConstrainedVector(bayesianStruct.prior.getRealTermsAsIndex(screenStartTimeMillis), bayesianStruct.prior.getRealTermsAsIndex(screenEndTimeMillis), 0, ofGetWidth(), bayesPositionWindow);
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217
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218 ofSetColor(255,0,0);
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219 projectedPrior.drawConstrainedVector(bayesianStruct.prior.getRealTermsAsIndex(screenStartTimeMillis), bayesianStruct.prior.getRealTermsAsIndex(screenEndTimeMillis), 0, ofGetWidth(), bayesPositionWindow);
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220
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221 }
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222
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223 void AudioEventMatcher::newPitchEvent(const int& channel, const double& pitchIn, const double& timeIn){
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224 if (pitchIn > 0){
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225 liveInput.addPitchEvent(pitchIn, timeIn);
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226
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227 //printPosteriorMAPinfo();
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228
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229 matchNewPitchEvent(channel, pitchIn, timeIn);//main pitch matching fn
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230
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231 likelihoodVisualisation[1] = bayesianStruct.likelihood;
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232
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233 recentPitch = pitchIn;//for drawing
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234 recentTime = timeIn;
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235 }
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236
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237 }
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238
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239 void AudioEventMatcher::newKickEvent(const double& timeIn){
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240 // liveInput.addKickEvent(timeIn);
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241 matchNewOnsetEvent(0, timeIn);
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242 likelihoodVisualisation[0] = bayesianStruct.likelihood;
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243 }
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244
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245 void AudioEventMatcher::newKickEvent(const int& channel, const double& timeIn){
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246 // liveInput.addKickEvent(timeIn);
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247 matchNewOnsetEvent(channel, timeIn);
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248 likelihoodVisualisation[0] = bayesianStruct.likelihood;
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249 }
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250
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251
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252 void AudioEventMatcher::newSnareEvent(const double& timeIn){
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253 matchNewOnsetEvent(2, timeIn);
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254 likelihoodVisualisation[2] = bayesianStruct.likelihood;
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255 }
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256
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257
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258 void AudioEventMatcher::newSnareEvent(const int& channel, const double& timeIn){
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259 matchNewOnsetEvent(channel, timeIn);
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260 likelihoodVisualisation[2] = bayesianStruct.likelihood;
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261 }
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262
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263 //Needs just to set bounds for the matching process, not have TimeIn
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264 void AudioEventMatcher::matchNewOnsetEvent(const int& channel, const double& timeIn){
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265
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266 bayesianStruct.updateBayesianDistributions(timeIn);//moves the posterior up into prior given the time interval and calculates new offsets
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267
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268 //start at beginning but OPTIMISE later
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269
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270
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271 bayesianStruct.likelihood.offset = bayesianStruct.prior.offset;
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272 bayesianStruct.likelihood.zero();//set to zero
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273
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274 double quantity = 1;//likelihoodToNoiseRatio / numberOfMatches;
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275 int numberOfMatchesFound = 0;
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276
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277
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278 double startMatchingTime = bayesianStruct.likelihood.offset;
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279 double endMatchingTime = bayesianStruct.likelihood.offset + matchWindowWidth;
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280
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281 if (channel <= recordedTracks.numberOfAudioTracks){
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282 for (int i = 0;i < recordedTracks.loadedAudioFiles[channel].fileLoader.onsetDetect.chromaOnsets.size();i++){
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283 double millisTime = recordedTracks.loadedAudioFiles[channel].fileLoader.onsetDetect.chromaOnsets[i].millisTime;
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284 if (millisTime >= startMatchingTime && millisTime <= endMatchingTime){
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285 bayesianStruct.likelihood.addGaussianShapeFromRealTime(millisTime, onsetLikelihoodWidth, quantity);
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286 numberOfMatchesFound++;
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287 // printf("Adding Gaussian for onset at time %f offset %f\n", millisTime, bayesianStruct.likelihood.offset);
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288
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289 }
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290 }
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291 }
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292
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293 if (numberOfMatchesFound > 0){
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294 // bayesianStruct.likelihood.addConstant((1-likelihoodToNoiseRatio)/bayesianStruct.likelihood.length);
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295 bayesianStruct.likelihood.addConstant(numberOfMatchesFound*(1-onsetLikelihoodToNoise)/(onsetLikelihoodToNoise*bayesianStruct.likelihood.length));
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296 bayesianStruct.likelihood.renormalise();
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297
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298 bayesianStruct.calculatePosterior();
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299 lastAlignmentTime = timeIn;//use TIMESTAMP
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300 recentEventTime[channel] = timeIn;//ofGetElapsedTimeMillis() - startTime;
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301
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302 recentPriors[channel] = bayesianStruct.prior;
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303 projectedPrior = bayesianStruct.prior;
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304 }
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305
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306
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307
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308 }
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309
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310
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311
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312 void AudioEventMatcher::matchNewPitchEvent(const int& channel, const double& pitchIn, const double& timeIn){
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313 //start at beginning but OPTIMISE later
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314 /*printf("TIME %i\n", ofGetElapsedTimeMillis());
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315 //tmp debug
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316 updateBestAlignmentPosition();
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317 printf("current alignment best estimate %f\n", currentAlignmentPosition);
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318 */
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319 bayesianStruct.updateBayesianDistributions(timeIn);//moves the posterior up into prior given the time interval and calculates new offsets
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andrew@8
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320
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andrew@7
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321 //set the lielihoods by matching the pitched note
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andrew@7
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322
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andrew@15
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323
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andrew@3
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324 int numberOfMatches = 0;
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andrew@3
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325 bayesianStruct.likelihood.zero();//set to zero
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andrew@3
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326
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andrew@3
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327 double quantity = 0;
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andrew@3
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328 if (channel <= recordedTracks.numberOfAudioTracks){
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andrew@3
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329 for (int i = 0;i < recordedTracks.loadedAudioFiles[channel].fileLoader.onsetDetect.chromaOnsets.size();i++){
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andrew@3
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330
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andrew@3
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331 if (checkMatch(recordedTracks.loadedAudioFiles[channel].fileLoader.onsetDetect.chromaOnsets[i].aubioPitch, pitchIn)) {
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andrew@16
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332 quantity = getPitchDistance(recordedTracks.loadedAudioFiles[channel].fileLoader.onsetDetect.chromaOnsets[i].aubioPitch, pitchIn, 16);
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andrew@3
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333 bayesianStruct.likelihood.addGaussianShapeFromRealTime(recordedTracks.loadedAudioFiles[channel].fileLoader.onsetDetect.chromaOnsets[i].millisTime, 30, quantity);
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andrew@3
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334 recordedTracks.loadedAudioFiles[channel].fileLoader.onsetDetect.chromaOnsets[i].matched = true;
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andrew@3
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335 numberOfMatches++;
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andrew@3
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336 }
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andrew@3
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337 else{
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andrew@3
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338 recordedTracks.loadedAudioFiles[channel].fileLoader.onsetDetect.chromaOnsets[i].matched = false;
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andrew@3
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339 }
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andrew@3
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340
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andrew@3
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341 }
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andrew@3
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342 }
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andrew@6
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343
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andrew@8
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344
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andrew@8
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345
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andrew@6
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346 if (numberOfMatches > 0){//no point updating unless there is a match
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andrew@7
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347
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andrew@6
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348 bayesianStruct.likelihood.addConstant(numberOfMatches*(1-pitchLikelihoodToNoise)/(pitchLikelihoodToNoise*bayesianStruct.likelihood.length));
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andrew@4
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349
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andrew@4
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350 //tmp set likelihood constant and calculate using that
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andrew@6
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351 //bayesianStruct.likelihood.zero();
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andrew@6
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352 //bayesianStruct.likelihood.addConstant(1);
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andrew@7
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353
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andrew@6
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354 bayesianStruct.calculatePosterior();
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andrew@11
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355 lastAlignmentTime = timeIn;//has to use the STAMPED time
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andrew@11
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356 recentEventTime[channel] = timeIn;
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andrew@11
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357
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andrew@11
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358 recentPriors[channel] = bayesianStruct.prior;
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andrew@13
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359 projectedPrior = bayesianStruct.prior;
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andrew@6
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360 }
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andrew@4
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361
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andrew@11
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362
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andrew@1
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363 }
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andrew@1
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364
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andrew@3
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365 double AudioEventMatcher::getPitchDistance(const double& pitchOne, const double& pitchTwo, const double& scale){
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andrew@3
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366
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andrew@16
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367 double scaleFactor = scale ;//* pitchOne / 110.0;
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andrew@16
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368
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andrew@16
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369
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andrew@3
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370 double distance = abs(pitchOne - pitchTwo);
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andrew@16
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371 if (distance < scaleFactor)
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andrew@16
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372 distance = 1 - (distance/scaleFactor);
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andrew@3
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373 else
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andrew@3
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374 distance = 0;
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andrew@3
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375
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andrew@3
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376 // printf("[pitch distance %f vs %f = %f\n", pitchOne, pitchTwo, distance);
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andrew@3
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377 return distance;
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andrew@3
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378
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andrew@3
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379 }
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andrew@3
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380
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andrew@3
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381
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andrew@3
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382 bool AudioEventMatcher::checkMatch(const double& recordedPitch, const double& livePitch){
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andrew@16
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383 if (abs(recordedPitch - livePitch) < 16)
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andrew@3
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384 return true;
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andrew@3
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385 else
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andrew@3
|
386 return false;
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andrew@3
|
387 }
|
andrew@3
|
388
|
andrew@3
|
389
|
andrew@1
|
390
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andrew@1
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391 void AudioEventMatcher::windowResized(const int& w, const int& h){
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andrew@1
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392 recordedTracks.windowResized(w,h);
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andrew@3
|
393 bayesTempoWindow.resized(w,h);
|
andrew@3
|
394 bayesPositionWindow.resized(w,h);
|
andrew@3
|
395 }
|
andrew@3
|
396
|
andrew@10
|
397 /*
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andrew@10
|
398
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andrew@10
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399 void printPosteriorMAPinfo(){ //tmp print stuff
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andrew@10
|
400 printf("New pitch MAP post estimate now %i, ", bayesianStruct.posterior.MAPestimate);
|
andrew@10
|
401 double tmp = bayesianStruct.posterior.getMAPestimate();
|
andrew@10
|
402 printf(" getting it %f and offset %f == %f ms\n", tmp, bayesianStruct.posterior.offset, bayesianStruct.posterior.getIndexInRealTerms(tmp));
|
andrew@10
|
403
|
andrew@10
|
404 }
|
andrew@10
|
405 */
|
andrew@3
|
406
|