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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 Vamp feature extraction plugins using Paul Brossier's Aubio library.
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5
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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
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17 #include <math.h>
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18 #include "Notes.h"
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19
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20 using std::string;
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21 using std::vector;
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22 using std::cerr;
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23 using std::endl;
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24
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25 Notes::Notes(float inputSampleRate) :
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26 Plugin(inputSampleRate),
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27 m_ibuf(0),
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28 m_fftgrain(0),
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29 m_onset(0),
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30 m_pv(0),
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31 m_peakpick(0),
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32 m_onsetdet(0),
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33 m_onsettype(aubio_onset_complex),
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34 m_pitchdet(0),
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35 m_pitchtype(aubio_pitch_yinfft),
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36 m_pitchmode(aubio_pitchm_freq),
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37 m_threshold(0.3),
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38 m_silence(-90),
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39 m_median(6),
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40 m_minpitch(32),
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41 m_maxpitch(95),
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42 m_wrapRange(false),
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43 m_avoidLeaps(false),
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44 m_prevPitch(-1)
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45 {
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46 }
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47
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48 Notes::~Notes()
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49 {
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50 if (m_onsetdet) aubio_onsetdetection_free(m_onsetdet);
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51 if (m_pitchdet) del_aubio_pitchdetection(m_pitchdet);
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52 if (m_ibuf) del_fvec(m_ibuf);
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53 if (m_onset) del_fvec(m_onset);
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54 if (m_fftgrain) del_cvec(m_fftgrain);
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55 if (m_pv) del_aubio_pvoc(m_pv);
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56 if (m_peakpick) del_aubio_peakpicker(m_peakpick);
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57 }
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58
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59 string
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60 Notes::getName() const
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61 {
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62 return "aubionotes";
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63 }
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64
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65 string
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66 Notes::getDescription() const
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67 {
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68 return "Aubio Note Tracker";
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69 }
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70
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71 string
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72 Notes::getMaker() const
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73 {
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74 return "Paul Brossier (plugin by Chris Cannam)";
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75 }
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76
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77 int
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78 Notes::getPluginVersion() const
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79 {
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80 return 1;
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81 }
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82
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83 string
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84 Notes::getCopyright() const
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85 {
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86 return "GPL";
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87 }
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88
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89 bool
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90 Notes::initialise(size_t channels, size_t stepSize, size_t blockSize)
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91 {
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92 m_channelCount = channels;
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93 m_stepSize = stepSize;
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94 m_blockSize = blockSize;
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95
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96 size_t processingBlockSize;
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97 if (m_onsettype == aubio_onset_energy ||
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98 m_onsettype == aubio_onset_hfc) {
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99 processingBlockSize = stepSize * 2;
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100 } else {
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101 processingBlockSize = stepSize * 4;
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102 }
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103
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104 m_ibuf = new_fvec(stepSize, channels);
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105 m_onset = new_fvec(1, channels);
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106 m_fftgrain = new_cvec(processingBlockSize, channels);
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107 m_pv = new_aubio_pvoc(processingBlockSize, stepSize, channels);
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108 m_peakpick = new_aubio_peakpicker(m_threshold);
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109
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110 m_onsetdet = new_aubio_onsetdetection(m_onsettype, processingBlockSize, channels);
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111
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112 m_pitchdet = new_aubio_pitchdetection(processingBlockSize * 4,
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113 stepSize,
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114 channels,
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115 lrintf(m_inputSampleRate),
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116 m_pitchtype,
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117 m_pitchmode);
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118
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119 m_count = 0;
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120 m_delay = Vamp::RealTime::frame2RealTime((4 + m_median) * m_stepSize,
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121 lrintf(m_inputSampleRate));
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122 m_currentOnset = Vamp::RealTime::zeroTime;
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123 m_haveCurrent = false;
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124 m_prevPitch = -1;
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125
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126 return true;
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127 }
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128
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129 void
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130 Notes::reset()
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131 {
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132 }
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133
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134 size_t
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135 Notes::getPreferredStepSize() const
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136 {
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137 return 512;
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138 }
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139
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140 size_t
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141 Notes::getPreferredBlockSize() const
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142 {
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143 return 4 * getPreferredStepSize();
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144 }
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145
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146 Notes::ParameterList
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147 Notes::getParameterDescriptors() const
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148 {
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149 ParameterList list;
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150
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151 ParameterDescriptor desc;
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152 desc.name = "onsettype";
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153 desc.description = "Onset Detection Function Type";
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154 desc.minValue = 0;
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155 desc.maxValue = 6;
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156 desc.defaultValue = (int)aubio_onset_complex;
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157 desc.isQuantized = true;
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158 desc.quantizeStep = 1;
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159 desc.valueNames.push_back("Energy Based");
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160 desc.valueNames.push_back("Spectral Difference");
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161 desc.valueNames.push_back("High-Frequency Content");
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162 desc.valueNames.push_back("Complex Domain");
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163 desc.valueNames.push_back("Phase Deviation");
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164 desc.valueNames.push_back("Kullback-Liebler");
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165 desc.valueNames.push_back("Modified Kullback-Liebler");
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166 list.push_back(desc);
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167
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168 desc = ParameterDescriptor();
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169 desc.name = "pitchtype";
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170 desc.description = "Pitch Detection Function Type";
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171 desc.minValue = 0;
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172 desc.maxValue = 4;
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173 desc.defaultValue = (int)aubio_pitch_yinfft;
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174 desc.isQuantized = true;
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175 desc.quantizeStep = 1;
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176 desc.valueNames.push_back("YIN Frequency Estimator");
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177 desc.valueNames.push_back("Spectral Comb");
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178 desc.valueNames.push_back("Schmitt");
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179 desc.valueNames.push_back("Fast Harmonic Comb");
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180 desc.valueNames.push_back("YIN with FFT");
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181 list.push_back(desc);
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182
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183 desc = ParameterDescriptor();
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184 desc.name = "minpitch";
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185 desc.description = "Minimum Pitch";
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186 desc.minValue = 0;
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187 desc.maxValue = 127;
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188 desc.defaultValue = 32;
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189 desc.unit = "MIDI units";
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190 desc.isQuantized = true;
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191 desc.quantizeStep = 1;
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192 list.push_back(desc);
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193
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194 desc = ParameterDescriptor();
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195 desc.name = "maxpitch";
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196 desc.description = "Maximum Pitch";
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197 desc.minValue = 0;
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198 desc.maxValue = 127;
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199 desc.defaultValue = 95;
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200 desc.unit = "MIDI units";
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201 desc.isQuantized = true;
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202 desc.quantizeStep = 1;
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203 list.push_back(desc);
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204
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205 desc = ParameterDescriptor();
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206 desc.name = "wraprange";
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207 desc.description = "Fold Higher or Lower Notes into Range";
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208 desc.minValue = 0;
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209 desc.maxValue = 1;
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210 desc.defaultValue = 0;
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211 desc.isQuantized = true;
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212 desc.quantizeStep = 1;
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213 list.push_back(desc);
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214
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215 desc = ParameterDescriptor();
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216 desc.name = "avoidleaps";
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217 desc.description = "Avoid Multi-Octave Jumps";
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218 desc.minValue = 0;
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219 desc.maxValue = 1;
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220 desc.defaultValue = 0;
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221 desc.isQuantized = true;
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222 desc.quantizeStep = 1;
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223 list.push_back(desc);
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224
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225 desc = ParameterDescriptor();
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226 desc.name = "peakpickthreshold";
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227 desc.description = "Peak Picker Threshold";
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228 desc.minValue = 0;
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229 desc.maxValue = 1;
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230 desc.defaultValue = 0.3;
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231 desc.isQuantized = false;
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232 list.push_back(desc);
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233
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234 desc = ParameterDescriptor();
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235 desc.name = "silencethreshold";
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236 desc.description = "Silence Threshold";
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237 desc.minValue = -120;
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238 desc.maxValue = 0;
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239 desc.defaultValue = -90;
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240 desc.unit = "dB";
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241 desc.isQuantized = false;
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242 list.push_back(desc);
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243
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244 return list;
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245 }
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246
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247 float
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248 Notes::getParameter(std::string param) const
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249 {
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250 if (param == "onsettype") {
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251 return m_onsettype;
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252 } else if (param == "pitchtype") {
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253 return m_pitchtype;
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254 } else if (param == "peakpickthreshold") {
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255 return m_threshold;
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cannam@0
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256 } else if (param == "silencethreshold") {
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257 return m_silence;
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cannam@7
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258 } else if (param == "minpitch") {
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259 return m_minpitch;
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260 } else if (param == "maxpitch") {
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261 return m_maxpitch;
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cannam@7
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262 } else if (param == "wraprange") {
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263 return m_wrapRange ? 1.0 : 0.0;
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264 } else if (param == "avoidleaps") {
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265 return m_avoidLeaps ? 1.0 : 0.0;
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266 } else {
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267 return 0.0;
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268 }
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269 }
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270
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271 void
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272 Notes::setParameter(std::string param, float value)
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273 {
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274 if (param == "onsettype") {
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275 switch (lrintf(value)) {
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276 case 0: m_onsettype = aubio_onset_energy; break;
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277 case 1: m_onsettype = aubio_onset_specdiff; break;
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278 case 2: m_onsettype = aubio_onset_hfc; break;
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279 case 3: m_onsettype = aubio_onset_complex; break;
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280 case 4: m_onsettype = aubio_onset_phase; break;
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281 case 5: m_onsettype = aubio_onset_kl; break;
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282 case 6: m_onsettype = aubio_onset_mkl; break;
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283 }
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284 } else if (param == "pitchtype") {
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285 switch (lrintf(value)) {
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286 case 0: m_pitchtype = aubio_pitch_yin; break;
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287 case 1: m_pitchtype = aubio_pitch_mcomb; break;
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288 case 2: m_pitchtype = aubio_pitch_schmitt; break;
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289 case 3: m_pitchtype = aubio_pitch_fcomb; break;
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290 case 4: m_pitchtype = aubio_pitch_yinfft; break;
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291 }
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cannam@0
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292 } else if (param == "peakpickthreshold") {
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293 m_threshold = value;
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cannam@0
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294 } else if (param == "silencethreshold") {
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295 m_silence = value;
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cannam@7
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296 } else if (param == "minpitch") {
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cannam@7
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297 m_minpitch = lrintf(value);
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cannam@7
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298 } else if (param == "maxpitch") {
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cannam@7
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299 m_maxpitch = lrintf(value);
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cannam@7
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300 } else if (param == "wraprange") {
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cannam@7
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301 m_wrapRange = (value > 0.5);
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cannam@7
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302 } else if (param == "avoidleaps") {
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cannam@7
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303 m_avoidLeaps = (value > 0.5);
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cannam@0
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304 }
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cannam@0
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305 }
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cannam@0
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306
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307 Notes::OutputList
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308 Notes::getOutputDescriptors() const
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cannam@0
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309 {
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310 OutputList list;
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311
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312 OutputDescriptor d;
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313 d.name = "notes";
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314 d.unit = "Hz";
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cannam@0
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315 d.description = "Notes";
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cannam@0
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316 d.hasFixedBinCount = true;
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cannam@0
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317 d.binCount = 2;
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cannam@0
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318 d.binNames.push_back("Frequency");
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cannam@0
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319 d.binNames.push_back("Duration");
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cannam@0
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320 d.binNames.push_back("Velocity");
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cannam@0
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321 d.hasKnownExtents = false;
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cannam@0
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322 d.isQuantized = false;
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cannam@0
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323 d.sampleType = OutputDescriptor::VariableSampleRate;
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cannam@0
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324 d.sampleRate = 0;
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cannam@0
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325 list.push_back(d);
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cannam@0
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326
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327 return list;
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cannam@0
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328 }
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cannam@0
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329
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cannam@0
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330 Notes::FeatureSet
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cannam@0
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331 Notes::process(float **inputBuffers, Vamp::RealTime timestamp)
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cannam@0
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332 {
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cannam@0
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333 for (size_t i = 0; i < m_stepSize; ++i) {
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cannam@0
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334 for (size_t j = 0; j < m_channelCount; ++j) {
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cannam@0
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335 fvec_write_sample(m_ibuf, inputBuffers[j][i], j, i);
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cannam@0
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336 }
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cannam@0
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337 }
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cannam@0
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338
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cannam@0
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339 aubio_pvoc_do(m_pv, m_ibuf, m_fftgrain);
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cannam@0
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340 aubio_onsetdetection(m_onsetdet, m_fftgrain, m_onset);
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cannam@0
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341
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cannam@0
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342 bool isonset = aubio_peakpick_pimrt(m_onset, m_peakpick);
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cannam@0
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343
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cannam@0
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344 float frequency = aubio_pitchdetection(m_pitchdet, m_ibuf);
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cannam@0
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345
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346 m_notebuf.push_back(frequency);
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cannam@0
|
347 if (m_notebuf.size() > m_median) m_notebuf.pop_front();
|
cannam@0
|
348
|
cannam@0
|
349 float level = aubio_level_detection(m_ibuf, m_silence);
|
cannam@0
|
350
|
cannam@0
|
351 FeatureSet returnFeatures;
|
cannam@0
|
352
|
cannam@0
|
353 if (isonset) {
|
cannam@0
|
354 if (level == 1.) {
|
cannam@0
|
355 isonset = false;
|
cannam@0
|
356 m_count = 0;
|
cannam@0
|
357 if (m_haveCurrent) pushNote(returnFeatures, timestamp);
|
cannam@0
|
358 } else {
|
cannam@0
|
359 m_count = 1;
|
cannam@0
|
360 }
|
cannam@0
|
361 } else {
|
cannam@0
|
362 if (m_count > 0) ++m_count;
|
cannam@0
|
363 if (m_count == m_median) {
|
cannam@0
|
364 if (m_haveCurrent) pushNote(returnFeatures, timestamp);
|
cannam@0
|
365 m_currentOnset = timestamp;
|
cannam@0
|
366 m_currentLevel = level;
|
cannam@0
|
367 m_haveCurrent = true;
|
cannam@0
|
368 }
|
cannam@0
|
369 }
|
cannam@0
|
370
|
cannam@0
|
371 m_lastTimeStamp = timestamp;
|
cannam@0
|
372 return returnFeatures;
|
cannam@0
|
373 }
|
cannam@0
|
374
|
cannam@0
|
375 Notes::FeatureSet
|
cannam@0
|
376 Notes::getRemainingFeatures()
|
cannam@0
|
377 {
|
cannam@0
|
378 FeatureSet returnFeatures;
|
cannam@0
|
379 if (m_haveCurrent) pushNote(returnFeatures, m_lastTimeStamp);
|
cannam@0
|
380 return returnFeatures;
|
cannam@0
|
381 }
|
cannam@0
|
382
|
cannam@0
|
383 void
|
cannam@0
|
384 Notes::pushNote(FeatureSet &fs, const Vamp::RealTime &offTime)
|
cannam@0
|
385 {
|
cannam@0
|
386 std::deque<float> toSort = m_notebuf;
|
cannam@0
|
387 std::sort(toSort.begin(), toSort.end());
|
cannam@0
|
388 float median = toSort[toSort.size()/2];
|
cannam@0
|
389 if (median < 45.0) return;
|
cannam@0
|
390
|
cannam@7
|
391 float freq = median;
|
cannam@7
|
392 int midiPitch = (int)FLOOR(aubio_freqtomidi(freq) + 0.5);
|
cannam@7
|
393
|
cannam@7
|
394 if (m_avoidLeaps) {
|
cannam@7
|
395 if (m_prevPitch >= 0) {
|
cannam@7
|
396 while (midiPitch < m_prevPitch - 12) {
|
cannam@7
|
397 midiPitch += 12;
|
cannam@7
|
398 freq *= 2;
|
cannam@7
|
399 }
|
cannam@7
|
400 while (midiPitch > m_prevPitch + 12) {
|
cannam@7
|
401 midiPitch -= 12;
|
cannam@7
|
402 freq /= 2;
|
cannam@7
|
403 }
|
cannam@7
|
404 }
|
cannam@7
|
405 }
|
cannam@7
|
406
|
cannam@7
|
407 while (midiPitch < m_minpitch) {
|
cannam@7
|
408 if (!m_wrapRange) return;
|
cannam@7
|
409 midiPitch += 12;
|
cannam@7
|
410 freq *= 2;
|
cannam@7
|
411 }
|
cannam@7
|
412
|
cannam@7
|
413 while (midiPitch > m_maxpitch) {
|
cannam@7
|
414 if (!m_wrapRange) return;
|
cannam@7
|
415 midiPitch -= 12;
|
cannam@7
|
416 freq /= 2;
|
cannam@7
|
417 }
|
cannam@7
|
418
|
cannam@7
|
419 m_prevPitch = midiPitch;
|
cannam@7
|
420
|
cannam@0
|
421 Feature feature;
|
cannam@0
|
422 feature.hasTimestamp = true;
|
piem@5
|
423 if (m_currentOnset < m_delay) m_currentOnset = m_delay;
|
piem@5
|
424 feature.timestamp = m_currentOnset - m_delay;
|
cannam@7
|
425 feature.values.push_back(freq);
|
cannam@0
|
426 feature.values.push_back
|
cannam@0
|
427 (Vamp::RealTime::realTime2Frame(offTime, lrintf(m_inputSampleRate)) -
|
cannam@0
|
428 Vamp::RealTime::realTime2Frame(m_currentOnset, lrintf(m_inputSampleRate)));
|
cannam@0
|
429 feature.values.push_back(m_currentLevel);
|
cannam@0
|
430 fs[0].push_back(feature);
|
cannam@0
|
431 }
|
cannam@0
|
432
|