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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 Silvet
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5
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6 A Vamp plugin for note transcription.
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7 Centre for Digital Music, Queen Mary University of London.
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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 "Silvet.h"
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17 #include "EM.h"
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18
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19 #include <cq/CQSpectrogram.h>
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20
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21 #include "MedianFilter.h"
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22 #include "AgentFeederPoly.h"
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23 #include "NoteHypothesis.h"
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24
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25 #include "constant-q-cpp/src/dsp/Resampler.h"
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26
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27 #include <vector>
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28
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29 #include <cstdio>
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30
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31 using std::vector;
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32 using std::cout;
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33 using std::cerr;
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34 using std::endl;
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Chris@40
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35 using Vamp::RealTime;
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36
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37 static int processingSampleRate = 44100;
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38 static int processingBPO = 60;
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39
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40 Silvet::Silvet(float inputSampleRate) :
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41 Plugin(inputSampleRate),
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42 m_instruments(InstrumentPack::listInstrumentPacks()),
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43 m_resampler(0),
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44 m_cq(0),
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45 m_hqMode(true),
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46 m_fineTuning(false),
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47 m_instrument(0),
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48 m_colsPerSec(50),
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49 m_agentFeeder(0)
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50 {
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51 }
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52
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53 Silvet::~Silvet()
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54 {
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55 delete m_resampler;
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56 delete m_cq;
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57 for (int i = 0; i < (int)m_postFilter.size(); ++i) {
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58 delete m_postFilter[i];
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59 }
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60 delete m_agentFeeder;
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61 }
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62
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63 string
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64 Silvet::getIdentifier() const
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65 {
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66 return "silvet";
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67 }
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68
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69 string
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70 Silvet::getName() const
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71 {
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72 return "Silvet Note Transcription";
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73 }
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74
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75 string
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76 Silvet::getDescription() const
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77 {
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78 // Return something helpful here!
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79 return "";
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80 }
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81
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82 string
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83 Silvet::getMaker() const
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84 {
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85 // Your name here
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86 return "";
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87 }
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88
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89 int
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90 Silvet::getPluginVersion() const
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91 {
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92 return 1;
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93 }
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94
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95 string
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96 Silvet::getCopyright() const
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97 {
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98 // This function is not ideally named. It does not necessarily
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99 // need to say who made the plugin -- getMaker does that -- but it
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100 // should indicate the terms under which it is distributed. For
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101 // example, "Copyright (year). All Rights Reserved", or "GPL"
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102 return "";
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103 }
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104
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105 Silvet::InputDomain
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106 Silvet::getInputDomain() const
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107 {
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108 return TimeDomain;
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109 }
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110
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111 size_t
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112 Silvet::getPreferredBlockSize() const
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113 {
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114 return 0;
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115 }
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116
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117 size_t
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118 Silvet::getPreferredStepSize() const
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119 {
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120 return 0;
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121 }
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122
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123 size_t
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124 Silvet::getMinChannelCount() const
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125 {
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126 return 1;
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127 }
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128
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129 size_t
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130 Silvet::getMaxChannelCount() const
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131 {
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132 return 1;
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133 }
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134
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135 Silvet::ParameterList
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136 Silvet::getParameterDescriptors() const
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137 {
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138 ParameterList list;
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139
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140 ParameterDescriptor desc;
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141 desc.identifier = "mode";
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142 desc.name = "Processing mode";
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143 desc.unit = "";
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144 desc.description = "Determines the tradeoff of processing speed against transcription quality";
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145 desc.minValue = 0;
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146 desc.maxValue = 1;
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147 desc.defaultValue = 1;
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148 desc.isQuantized = true;
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149 desc.quantizeStep = 1;
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150 desc.valueNames.push_back("Draft (faster)");
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151 desc.valueNames.push_back("Intensive (higher quality)");
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152 list.push_back(desc);
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153
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154 desc.identifier = "instrument";
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155 desc.name = "Instrument";
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156 desc.unit = "";
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157 desc.description = "The instrument known to be present in the recording, if there is only one";
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158 desc.minValue = 0;
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159 desc.maxValue = m_instruments.size()-1;
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160 desc.defaultValue = 0;
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161 desc.isQuantized = true;
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162 desc.quantizeStep = 1;
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163 desc.valueNames.clear();
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164 for (int i = 0; i < int(m_instruments.size()); ++i) {
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165 desc.valueNames.push_back(m_instruments[i].name);
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166 }
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167 list.push_back(desc);
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168
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169 desc.identifier = "finetune";
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170 desc.name = "Return fine pitch estimates";
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171 desc.unit = "";
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172 desc.description = "Return pitch estimates at finer than semitone resolution (works only in Intensive mode)";
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173 desc.minValue = 0;
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174 desc.maxValue = 1;
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175 desc.defaultValue = 0;
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176 desc.isQuantized = true;
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177 desc.quantizeStep = 1;
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178 desc.valueNames.clear();
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179 list.push_back(desc);
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180
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181 return list;
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182 }
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183
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184 float
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185 Silvet::getParameter(string identifier) const
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186 {
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187 if (identifier == "mode") {
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188 return m_hqMode ? 1.f : 0.f;
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189 } else if (identifier == "finetune") {
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190 return m_fineTuning ? 1.f : 0.f;
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191 } else if (identifier == "instrument") {
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192 return m_instrument;
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193 }
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194 return 0;
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195 }
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196
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197 void
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198 Silvet::setParameter(string identifier, float value)
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199 {
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200 if (identifier == "mode") {
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201 m_hqMode = (value > 0.5);
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202 } else if (identifier == "finetune") {
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203 m_fineTuning = (value > 0.5);
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204 } else if (identifier == "instrument") {
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205 m_instrument = lrintf(value);
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206 }
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207 }
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208
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209 Silvet::ProgramList
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210 Silvet::getPrograms() const
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211 {
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212 ProgramList list;
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213 return list;
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214 }
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215
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216 string
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217 Silvet::getCurrentProgram() const
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218 {
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219 return "";
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220 }
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221
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222 void
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223 Silvet::selectProgram(string name)
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224 {
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225 }
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226
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227 Silvet::OutputList
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228 Silvet::getOutputDescriptors() const
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229 {
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230 OutputList list;
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231
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232 OutputDescriptor d;
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233 d.identifier = "notes";
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234 d.name = "Note transcription";
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235 d.description = "Overall note transcription across selected instruments";
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236 d.unit = "Hz";
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237 d.hasFixedBinCount = true;
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238 d.binCount = 2;
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239 d.binNames.push_back("Frequency");
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240 d.binNames.push_back("Velocity");
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241 d.hasKnownExtents = false;
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242 d.isQuantized = false;
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243 d.sampleType = OutputDescriptor::VariableSampleRate;
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244 d.sampleRate = m_inputSampleRate / (m_cq ? m_cq->getColumnHop() : 62);
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245 d.hasDuration = true;
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246 m_notesOutputNo = list.size();
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247 list.push_back(d);
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248
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249 d.identifier = "timefreq";
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250 d.name = "Time-frequency distribution";
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251 d.description = "Filtered constant-Q time-frequency distribution used as input to the expectation-maximisation algorithm";
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252 d.unit = "";
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253 d.hasFixedBinCount = true;
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254 d.binCount = m_instruments[0].templateHeight;
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255 d.binNames.clear();
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256 if (m_cq) {
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257 char name[20];
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258 for (int i = 0; i < m_instruments[0].templateHeight; ++i) {
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259 // We have a 600-bin (10 oct 60-bin CQ) of which the
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260 // lowest-frequency 55 bins have been dropped, for a
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261 // 545-bin template. The native CQ bins go high->low
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262 // frequency though, so these are still the first 545 bins
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263 // as reported by getBinFrequency, though in reverse order
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264 float freq = m_cq->getBinFrequency
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265 (m_instruments[0].templateHeight - i - 1);
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266 sprintf(name, "%.1f Hz", freq);
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267 d.binNames.push_back(name);
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268 }
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269 }
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270 d.hasKnownExtents = false;
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271 d.isQuantized = false;
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272 d.sampleType = OutputDescriptor::FixedSampleRate;
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273 d.sampleRate = m_colsPerSec;
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274 d.hasDuration = false;
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275 m_fcqOutputNo = list.size();
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276 list.push_back(d);
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277
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278 return list;
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279 }
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280
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281 std::string
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282 Silvet::noteName(int note, int shift, int shiftCount) const
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283 {
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284 static const char *names[] = {
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285 "A", "A#", "B", "C", "C#", "D", "D#", "E", "F", "F#", "G", "G#"
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286 };
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287
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288 const char *n = names[note % 12];
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289
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290 int oct = (note + 9) / 12;
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291
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292 char buf[30];
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293
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294 float pshift = 0.f;
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295 if (shiftCount > 1) {
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296 // see noteFrequency below
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297 pshift =
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298 float((shiftCount - shift) - int(shiftCount / 2) - 1) / shiftCount;
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299 }
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300
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301 if (pshift > 0.f) {
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302 sprintf(buf, "%s%d+%dc", n, oct, int(round(pshift * 100)));
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303 } else if (pshift < 0.f) {
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304 sprintf(buf, "%s%d-%dc", n, oct, int(round((-pshift) * 100)));
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305 } else {
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306 sprintf(buf, "%s%d", n, oct);
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307 }
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308
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309 return buf;
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310 }
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311
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312 float
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313 Silvet::noteFrequency(int note, int shift, int shiftCount) const
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314 {
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315 // Convert shift number to a pitch shift. The given shift number
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316 // is an offset into the template array, which starts with some
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317 // zeros, followed by the template, then some trailing zeros.
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318 //
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319 // Example: if we have templateMaxShift == 2 and thus shiftCount
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320 // == 5, then the number will be in the range 0-4 and the template
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321 // will have 2 zeros at either end. Thus number 2 represents the
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322 // template "as recorded", for a pitch shift of 0; smaller indices
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323 // represent moving the template *up* in pitch (by introducing
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324 // zeros at the start, which is the low-frequency end), for a
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325 // positive pitch shift; and higher values represent moving it
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326 // down in pitch, for a negative pitch shift.
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327
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328 float pshift = 0.f;
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329 if (shiftCount > 1) {
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330 pshift =
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331 float((shiftCount - shift) - int(shiftCount / 2) - 1) / shiftCount;
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332 }
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333
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334 return float(27.5 * pow(2.0, (note + pshift) / 12.0));
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335 }
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336
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337 bool
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338 Silvet::initialise(size_t channels, size_t stepSize, size_t blockSize)
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339 {
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340 if (channels < getMinChannelCount() ||
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341 channels > getMaxChannelCount()) return false;
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342
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343 if (stepSize != blockSize) {
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344 cerr << "Silvet::initialise: Step size must be the same as block size ("
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345 << stepSize << " != " << blockSize << ")" << endl;
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346 return false;
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347 }
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348
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349 m_blockSize = blockSize;
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350
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351 reset();
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352
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353 return true;
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354 }
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355
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356 void
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357 Silvet::reset()
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358 {
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359 delete m_resampler;
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360 delete m_cq;
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361 delete m_agentFeeder;
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362
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363 if (m_inputSampleRate != processingSampleRate) {
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364 m_resampler = new Resampler(m_inputSampleRate, processingSampleRate);
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365 } else {
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366 m_resampler = 0;
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367 }
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368
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369 double minFreq = 27.5;
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370
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371 if (!m_hqMode) {
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Chris@173
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372 // We don't actually return any notes from the bottom octave,
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373 // so we can just pad with zeros
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374 minFreq *= 2;
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375 }
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376
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377 CQParameters params(processingSampleRate,
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378 minFreq,
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379 processingSampleRate / 3,
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380 processingBPO);
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381
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382 params.q = 0.95; // MIREX code uses 0.8, but it seems 0.9 or lower
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Chris@155
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383 // drops the FFT size to 512 from 1024 and alters
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Chris@155
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384 // some other processing parameters, making
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Chris@155
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385 // everything much, much slower. Could be a flaw
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Chris@155
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386 // in the CQ parameter calculations, must check
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387 params.atomHopFactor = 0.3;
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388 params.threshold = 0.0005;
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389 params.window = CQParameters::Hann;
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390
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391 m_cq = new CQSpectrogram(params, CQSpectrogram::InterpolateLinear);
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392
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393 m_colsPerSec = m_hqMode ? 50 : 25;
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394
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395 for (int i = 0; i < (int)m_postFilter.size(); ++i) {
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396 delete m_postFilter[i];
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397 }
|
Chris@41
|
398 m_postFilter.clear();
|
Chris@176
|
399 for (int i = 0; i < m_instruments[0].templateNoteCount; ++i) {
|
Chris@41
|
400 m_postFilter.push_back(new MedianFilter<double>(3));
|
Chris@41
|
401 }
|
Chris@184
|
402
|
Chris@184
|
403 m_columnCountIn = 0;
|
Chris@184
|
404 m_columnCountOut = 0;
|
Chris@40
|
405 m_startTime = RealTime::zeroTime;
|
Chris@184
|
406
|
Chris@184
|
407 m_agentFeeder = new AgentFeederPoly<NoteHypothesis>();
|
Chris@31
|
408 }
|
Chris@31
|
409
|
Chris@31
|
410 Silvet::FeatureSet
|
Chris@31
|
411 Silvet::process(const float *const *inputBuffers, Vamp::RealTime timestamp)
|
Chris@31
|
412 {
|
Chris@184
|
413 if (m_columnCountIn == 0) {
|
Chris@40
|
414 m_startTime = timestamp;
|
Chris@40
|
415 }
|
Chris@40
|
416
|
Chris@31
|
417 vector<double> data;
|
Chris@40
|
418 for (int i = 0; i < m_blockSize; ++i) {
|
Chris@40
|
419 data.push_back(inputBuffers[0][i]);
|
Chris@40
|
420 }
|
Chris@31
|
421
|
Chris@31
|
422 if (m_resampler) {
|
Chris@31
|
423 data = m_resampler->process(data.data(), data.size());
|
Chris@31
|
424 }
|
Chris@31
|
425
|
Chris@32
|
426 Grid cqout = m_cq->process(data);
|
Chris@51
|
427 FeatureSet fs = transcribe(cqout);
|
Chris@51
|
428 return fs;
|
Chris@34
|
429 }
|
Chris@34
|
430
|
Chris@34
|
431 Silvet::FeatureSet
|
Chris@34
|
432 Silvet::getRemainingFeatures()
|
Chris@34
|
433 {
|
Chris@145
|
434 Grid cqout = m_cq->getRemainingOutput();
|
Chris@184
|
435
|
Chris@51
|
436 FeatureSet fs = transcribe(cqout);
|
Chris@184
|
437
|
Chris@184
|
438 m_agentFeeder->finish();
|
Chris@184
|
439
|
Chris@184
|
440 FeatureList noteFeatures = obtainNotes();
|
Chris@184
|
441 for (FeatureList::const_iterator fi = noteFeatures.begin();
|
Chris@184
|
442 fi != noteFeatures.end(); ++fi) {
|
Chris@184
|
443 fs[m_notesOutputNo].push_back(*fi);
|
Chris@184
|
444 }
|
Chris@184
|
445
|
Chris@51
|
446 return fs;
|
Chris@34
|
447 }
|
Chris@34
|
448
|
Chris@34
|
449 Silvet::FeatureSet
|
Chris@34
|
450 Silvet::transcribe(const Grid &cqout)
|
Chris@34
|
451 {
|
Chris@32
|
452 Grid filtered = preProcess(cqout);
|
Chris@31
|
453
|
Chris@32
|
454 FeatureSet fs;
|
Chris@32
|
455
|
Chris@104
|
456 if (filtered.empty()) return fs;
|
Chris@170
|
457
|
Chris@170
|
458 const InstrumentPack &pack = m_instruments[m_instrument];
|
Chris@104
|
459
|
Chris@178
|
460 for (int i = 0; i < (int)filtered.size(); ++i) {
|
Chris@178
|
461 Feature f;
|
Chris@178
|
462 for (int j = 0; j < pack.templateHeight; ++j) {
|
Chris@178
|
463 f.values.push_back(float(filtered[i][j]));
|
Chris@178
|
464 }
|
Chris@178
|
465 fs[m_fcqOutputNo].push_back(f);
|
Chris@178
|
466 }
|
Chris@178
|
467
|
Chris@34
|
468 int width = filtered.size();
|
Chris@34
|
469
|
Chris@164
|
470 int iterations = m_hqMode ? 20 : 10;
|
Chris@34
|
471
|
Chris@170
|
472 //!!! pitches or notes? [terminology]
|
Chris@176
|
473 Grid localPitches(width, vector<double>(pack.templateNoteCount, 0.0));
|
Chris@170
|
474
|
Chris@184
|
475 bool wantShifts = m_hqMode;
|
Chris@170
|
476 int shiftCount = 1;
|
Chris@170
|
477 if (wantShifts) {
|
Chris@170
|
478 shiftCount = pack.templateMaxShift * 2 + 1;
|
Chris@170
|
479 }
|
Chris@170
|
480
|
Chris@170
|
481 vector<vector<int> > localBestShifts;
|
Chris@170
|
482 if (wantShifts) {
|
Chris@170
|
483 localBestShifts =
|
Chris@176
|
484 vector<vector<int> >(width, vector<int>(pack.templateNoteCount, 0));
|
Chris@170
|
485 }
|
Chris@170
|
486
|
Chris@170
|
487 vector<bool> present(width, false);
|
Chris@37
|
488
|
Chris@123
|
489 #pragma omp parallel for
|
Chris@123
|
490 for (int i = 0; i < width; ++i) {
|
Chris@104
|
491
|
Chris@170
|
492 double sum = 0.0;
|
Chris@176
|
493 for (int j = 0; j < pack.templateHeight; ++j) {
|
Chris@170
|
494 sum += filtered.at(i).at(j);
|
Chris@170
|
495 }
|
Chris@170
|
496 if (sum < 1e-5) continue;
|
Chris@170
|
497
|
Chris@170
|
498 present[i] = true;
|
Chris@170
|
499
|
Chris@170
|
500 EM em(&pack, m_hqMode);
|
Chris@170
|
501
|
Chris@183
|
502 em.setPitchSparsity(pack.pitchSparsity);
|
Chris@183
|
503
|
Chris@170
|
504 for (int j = 0; j < iterations; ++j) {
|
Chris@170
|
505 em.iterate(filtered.at(i).data());
|
Chris@37
|
506 }
|
Chris@37
|
507
|
Chris@170
|
508 const float *pitchDist = em.getPitchDistribution();
|
Chris@170
|
509 const float *const *shiftDist = em.getShifts();
|
Chris@37
|
510
|
Chris@176
|
511 for (int j = 0; j < pack.templateNoteCount; ++j) {
|
Chris@104
|
512
|
Chris@170
|
513 localPitches[i][j] = pitchDist[j] * sum;
|
Chris@170
|
514
|
Chris@170
|
515 int bestShift = 0;
|
Chris@179
|
516 float bestShiftValue = 0.0;
|
Chris@170
|
517 if (wantShifts) {
|
Chris@170
|
518 for (int k = 0; k < shiftCount; ++k) {
|
Chris@179
|
519 float value = shiftDist[k][j];
|
Chris@179
|
520 if (k == 0 || value > bestShiftValue) {
|
Chris@179
|
521 bestShiftValue = value;
|
Chris@170
|
522 bestShift = k;
|
Chris@170
|
523 }
|
Chris@170
|
524 }
|
Chris@170
|
525 localBestShifts[i][j] = bestShift;
|
Chris@170
|
526 }
|
Chris@123
|
527 }
|
Chris@123
|
528 }
|
Chris@166
|
529
|
Chris@166
|
530 for (int i = 0; i < width; ++i) {
|
Chris@37
|
531
|
Chris@170
|
532 if (!present[i]) {
|
Chris@170
|
533 // silent column
|
Chris@176
|
534 for (int j = 0; j < pack.templateNoteCount; ++j) {
|
Chris@170
|
535 m_postFilter[j]->push(0.0);
|
Chris@170
|
536 }
|
Chris@186
|
537 } else {
|
Chris@186
|
538
|
Chris@186
|
539 postProcess(localPitches[i], localBestShifts[i],
|
Chris@186
|
540 wantShifts, shiftCount);
|
Chris@186
|
541
|
Chris@186
|
542 FeatureList noteFeatures = obtainNotes();
|
Chris@186
|
543
|
Chris@186
|
544 for (FeatureList::const_iterator fi = noteFeatures.begin();
|
Chris@186
|
545 fi != noteFeatures.end(); ++fi) {
|
Chris@186
|
546 fs[m_notesOutputNo].push_back(*fi);
|
Chris@186
|
547 }
|
Chris@166
|
548 }
|
Chris@166
|
549
|
Chris@186
|
550 ++m_columnCountOut;
|
Chris@34
|
551 }
|
Chris@34
|
552
|
Chris@32
|
553 return fs;
|
Chris@31
|
554 }
|
Chris@31
|
555
|
Chris@32
|
556 Silvet::Grid
|
Chris@32
|
557 Silvet::preProcess(const Grid &in)
|
Chris@32
|
558 {
|
Chris@32
|
559 int width = in.size();
|
Chris@32
|
560
|
Chris@165
|
561 int spacing = processingSampleRate / m_colsPerSec;
|
Chris@32
|
562
|
Chris@165
|
563 // need to be careful that col spacing is an integer number of samples!
|
Chris@165
|
564 assert(spacing * m_colsPerSec == processingSampleRate);
|
Chris@32
|
565
|
Chris@32
|
566 Grid out;
|
Chris@32
|
567
|
Chris@58
|
568 // We count the CQ latency in terms of processing hops, but
|
Chris@58
|
569 // actually it probably isn't an exact number of hops so this
|
Chris@58
|
570 // isn't quite accurate. But the small constant offset is
|
Chris@165
|
571 // practically irrelevant compared to the jitter from the frame
|
Chris@165
|
572 // size we reduce to in a moment
|
Chris@33
|
573 int latentColumns = m_cq->getLatency() / m_cq->getColumnHop();
|
Chris@33
|
574
|
Chris@176
|
575 const InstrumentPack &pack = m_instruments[m_instrument];
|
Chris@176
|
576
|
Chris@32
|
577 for (int i = 0; i < width; ++i) {
|
Chris@32
|
578
|
Chris@184
|
579 if (m_columnCountIn < latentColumns) {
|
Chris@184
|
580 ++m_columnCountIn;
|
Chris@33
|
581 continue;
|
Chris@33
|
582 }
|
Chris@33
|
583
|
Chris@184
|
584 int prevSampleNo = (m_columnCountIn - 1) * m_cq->getColumnHop();
|
Chris@184
|
585 int sampleNo = m_columnCountIn * m_cq->getColumnHop();
|
Chris@32
|
586
|
Chris@32
|
587 bool select = (sampleNo / spacing != prevSampleNo / spacing);
|
Chris@32
|
588
|
Chris@32
|
589 if (select) {
|
Chris@32
|
590 vector<double> inCol = in[i];
|
Chris@176
|
591 vector<double> outCol(pack.templateHeight);
|
Chris@32
|
592
|
Chris@178
|
593 // In HQ mode, the CQ returns 600 bins and we ignore the
|
Chris@178
|
594 // lowest 55 of them.
|
Chris@178
|
595 //
|
Chris@178
|
596 // In draft mode the CQ is an octave shorter, returning
|
Chris@178
|
597 // 540 bins, so we instead pad them with an additional 5
|
Chris@178
|
598 // zeros.
|
Chris@178
|
599 //
|
Chris@178
|
600 // We also need to reverse the column as we go, since the
|
Chris@178
|
601 // raw CQ has the high frequencies first and we need it
|
Chris@178
|
602 // the other way around.
|
Chris@32
|
603
|
Chris@178
|
604 if (m_hqMode) {
|
Chris@178
|
605 for (int j = 0; j < pack.templateHeight; ++j) {
|
Chris@178
|
606 int ix = inCol.size() - j - 55;
|
Chris@178
|
607 outCol[j] = inCol[ix];
|
Chris@178
|
608 }
|
Chris@178
|
609 } else {
|
Chris@178
|
610 for (int j = 0; j < 5; ++j) {
|
Chris@178
|
611 outCol[j] = 0.0;
|
Chris@178
|
612 }
|
Chris@178
|
613 for (int j = 5; j < pack.templateHeight; ++j) {
|
Chris@178
|
614 int ix = inCol.size() - j + 4;
|
Chris@178
|
615 outCol[j] = inCol[ix];
|
Chris@178
|
616 }
|
Chris@46
|
617 }
|
Chris@32
|
618
|
Chris@46
|
619 vector<double> noiseLevel1 =
|
Chris@46
|
620 MedianFilter<double>::filter(40, outCol);
|
Chris@176
|
621 for (int j = 0; j < pack.templateHeight; ++j) {
|
Chris@46
|
622 noiseLevel1[j] = std::min(outCol[j], noiseLevel1[j]);
|
Chris@46
|
623 }
|
Chris@32
|
624
|
Chris@46
|
625 vector<double> noiseLevel2 =
|
Chris@46
|
626 MedianFilter<double>::filter(40, noiseLevel1);
|
Chris@176
|
627 for (int j = 0; j < pack.templateHeight; ++j) {
|
Chris@46
|
628 outCol[j] = std::max(outCol[j] - noiseLevel2[j], 0.0);
|
Chris@32
|
629 }
|
Chris@32
|
630
|
Chris@165
|
631 out.push_back(outCol);
|
Chris@32
|
632 }
|
Chris@32
|
633
|
Chris@184
|
634 ++m_columnCountIn;
|
Chris@32
|
635 }
|
Chris@32
|
636
|
Chris@32
|
637 return out;
|
Chris@32
|
638 }
|
Chris@32
|
639
|
Chris@168
|
640 void
|
Chris@170
|
641 Silvet::postProcess(const vector<double> &pitches,
|
Chris@170
|
642 const vector<int> &bestShifts,
|
Chris@184
|
643 bool wantShifts,
|
Chris@184
|
644 int shiftCount)
|
Chris@166
|
645 {
|
Chris@176
|
646 const InstrumentPack &pack = m_instruments[m_instrument];
|
Chris@176
|
647
|
Chris@41
|
648 vector<double> filtered;
|
Chris@41
|
649
|
Chris@176
|
650 for (int j = 0; j < pack.templateNoteCount; ++j) {
|
Chris@170
|
651 m_postFilter[j]->push(pitches[j]);
|
Chris@41
|
652 filtered.push_back(m_postFilter[j]->get());
|
Chris@41
|
653 }
|
Chris@41
|
654
|
Chris@185
|
655 double threshold = 1; //!!! pack.levelThreshold
|
Chris@41
|
656
|
Chris@184
|
657 double columnDuration = 1.0 / m_colsPerSec;
|
Chris@184
|
658 int postFilterLatency = int(m_postFilter[0]->getSize() / 2);
|
Chris@184
|
659 RealTime t = RealTime::fromSeconds
|
Chris@184
|
660 (columnDuration * (m_columnCountOut - postFilterLatency) + 0.02);
|
Chris@166
|
661
|
Chris@176
|
662 for (int j = 0; j < pack.templateNoteCount; ++j) {
|
Chris@184
|
663
|
Chris@166
|
664 double strength = filtered[j];
|
Chris@184
|
665 if (strength < threshold) {
|
Chris@184
|
666 continue;
|
Chris@184
|
667 }
|
Chris@184
|
668
|
Chris@184
|
669 double freq;
|
Chris@184
|
670 if (wantShifts) {
|
Chris@184
|
671 freq = noteFrequency(j, bestShifts[j], shiftCount);
|
Chris@184
|
672 } else {
|
Chris@184
|
673 freq = noteFrequency(j, 0, shiftCount);
|
Chris@184
|
674 }
|
Chris@184
|
675
|
Chris@184
|
676 double confidence = strength / 50.0; //!!!???
|
Chris@184
|
677 if (confidence > 1.0) confidence = 1.0;
|
Chris@184
|
678
|
Chris@184
|
679 AgentHypothesis::Observation obs(freq, t, confidence);
|
Chris@184
|
680 m_agentFeeder->feed(obs);
|
Chris@168
|
681 }
|
Chris@166
|
682 }
|
Chris@166
|
683
|
Chris@166
|
684 Vamp::Plugin::FeatureList
|
Chris@184
|
685 Silvet::obtainNotes()
|
Chris@166
|
686 {
|
Chris@41
|
687 FeatureList noteFeatures;
|
Chris@41
|
688
|
Chris@184
|
689 typedef AgentFeederPoly<NoteHypothesis> NoteFeeder;
|
Chris@184
|
690
|
Chris@184
|
691 NoteFeeder *feeder = dynamic_cast<NoteFeeder *>(m_agentFeeder);
|
Chris@184
|
692
|
Chris@184
|
693 if (!feeder) {
|
Chris@184
|
694 cerr << "INTERNAL ERROR: Feeder is not a poly-note-hypothesis-feeder!"
|
Chris@184
|
695 << endl;
|
Chris@41
|
696 return noteFeatures;
|
Chris@41
|
697 }
|
Chris@150
|
698
|
Chris@184
|
699 std::set<NoteHypothesis> hh = feeder->getAcceptedHypotheses();
|
Chris@41
|
700
|
Chris@184
|
701 //!!! inefficient
|
Chris@184
|
702 for (std::set<NoteHypothesis>::const_iterator hi = hh.begin();
|
Chris@184
|
703 hi != hh.end(); ++hi) {
|
Chris@184
|
704
|
Chris@184
|
705 NoteHypothesis h(*hi);
|
Chris@184
|
706
|
Chris@184
|
707 if (m_emitted.find(h) != m_emitted.end()) {
|
Chris@184
|
708 continue; // already returned this one
|
Chris@41
|
709 }
|
Chris@41
|
710
|
Chris@184
|
711 m_emitted.insert(h);
|
Chris@41
|
712
|
Chris@184
|
713 NoteHypothesis::Note n = h.getAveragedNote();
|
Chris@41
|
714
|
Chris@184
|
715 int velocity = n.confidence * 127;
|
Chris@184
|
716 if (velocity > 127) velocity = 127;
|
Chris@41
|
717
|
Chris@184
|
718 Feature f;
|
Chris@184
|
719 f.hasTimestamp = true;
|
Chris@184
|
720 f.hasDuration = true;
|
Chris@184
|
721 f.timestamp = n.time;
|
Chris@184
|
722 f.duration = n.duration;
|
Chris@184
|
723 f.values.clear();
|
Chris@184
|
724 f.values.push_back(n.freq);
|
Chris@184
|
725 f.values.push_back(velocity);
|
Chris@184
|
726 // f.label = noteName(note, partShift, shiftCount);
|
Chris@184
|
727 noteFeatures.push_back(f);
|
Chris@41
|
728 }
|
Chris@41
|
729
|
Chris@41
|
730 return noteFeatures;
|
Chris@41
|
731 }
|