annotate src/FeatureExtractor.cpp @ 172:30d59e1e4232 structure

Minor tidy
author Chris Cannam
date Fri, 06 Feb 2015 18:09:18 +0000
parents cfba9aec7569
children cdbee79699b0
rev   line source
Chris@37 1 /* -*- c-basic-offset: 4 indent-tabs-mode: nil -*- vi:set ts=8 sts=4 sw=4: */
Chris@37 2
Chris@37 3 /*
Chris@37 4 Vamp feature extraction plugin using the MATCH audio alignment
Chris@37 5 algorithm.
Chris@37 6
Chris@37 7 Centre for Digital Music, Queen Mary, University of London.
Chris@37 8 This file copyright 2007 Simon Dixon, Chris Cannam and QMUL.
Chris@37 9
Chris@37 10 This program is free software; you can redistribute it and/or
Chris@37 11 modify it under the terms of the GNU General Public License as
Chris@37 12 published by the Free Software Foundation; either version 2 of the
Chris@37 13 License, or (at your option) any later version. See the file
Chris@37 14 COPYING included with this distribution for more information.
Chris@37 15 */
Chris@37 16
Chris@37 17 #include "FeatureExtractor.h"
Chris@37 18
Chris@37 19 #include <iostream>
Chris@37 20
Chris@37 21 #include <cstdlib>
Chris@37 22 #include <cassert>
Chris@37 23 #include <cmath>
Chris@37 24
Chris@37 25 using namespace std;
Chris@37 26
Chris@140 27 //#define DEBUG_FEATURE_EXTRACTOR 1
Chris@140 28
Chris@37 29 FeatureExtractor::FeatureExtractor(Parameters parameters) :
Chris@103 30 m_params(parameters)
Chris@37 31 {
Chris@74 32 m_featureSize = getFeatureSizeFor(parameters);
Chris@37 33 makeFreqMap();
Chris@140 34
Chris@140 35 #ifdef DEBUG_FEATURE_EXTRACTOR
Chris@140 36 cerr << "*** FeatureExtractor: sampleRate = " << parameters.sampleRate
Chris@140 37 << ", useChromaFrequencyMap = " << parameters.useChromaFrequencyMap
Chris@140 38 << ", fftSize = " << parameters.fftSize << endl;
Chris@140 39 #endif
Chris@37 40 }
Chris@37 41
Chris@74 42 int
Chris@74 43 FeatureExtractor::getFeatureSizeFor(Parameters parameters)
Chris@74 44 {
Chris@74 45 if (parameters.useChromaFrequencyMap) {
Chris@74 46 return 13;
Chris@74 47 } else {
Chris@74 48 return 84;
Chris@74 49 }
Chris@74 50 }
Chris@74 51
Chris@37 52 void
Chris@37 53 FeatureExtractor::makeFreqMap()
Chris@37 54 {
Chris@37 55 m_freqMap = vector<int>(m_params.fftSize / 2 + 1, 0);
Chris@37 56
Chris@37 57 if (m_params.useChromaFrequencyMap) {
Chris@140 58 #ifdef DEBUG_FEATURE_EXTRACTOR
Chris@37 59 cerr << "makeFreqMap: calling makeChromaFrequencyMap" << endl;
Chris@37 60 #endif
Chris@37 61 makeChromaFrequencyMap();
Chris@37 62 } else {
Chris@140 63 #ifdef DEBUG_FEATURE_EXTRACTOR
Chris@37 64 cerr << "makeFreqMap: calling makeStandardFrequencyMap" << endl;
Chris@37 65 #endif
Chris@37 66 makeStandardFrequencyMap();
Chris@37 67 }
Chris@37 68 }
Chris@37 69
Chris@37 70 void
Chris@37 71 FeatureExtractor::makeStandardFrequencyMap()
Chris@37 72 {
Chris@37 73 double binWidth = m_params.sampleRate / m_params.fftSize;
Chris@37 74 int crossoverBin = (int)(2 / (pow(2, 1/12.0) - 1));
Chris@37 75 int crossoverMidi = lrint(log(crossoverBin*binWidth/440.0)/
Chris@37 76 log(2.0) * 12 + 69);
Chris@37 77
Chris@37 78 // freq = 440 * Math.pow(2, (midi-69)/12.0) / binWidth;
Chris@37 79
Chris@37 80 int i = 0;
Chris@37 81 while (i <= crossoverBin) {
Chris@37 82 m_freqMap[i] = i;
Chris@37 83 ++i;
Chris@37 84 }
Chris@37 85
Chris@37 86 while (i <= m_params.fftSize/2) {
Chris@37 87 double midi = log(i*binWidth/440.0) / log(2.0) * 12 + 69;
Chris@37 88 if (midi > 127) midi = 127;
Chris@40 89 int target = crossoverBin + lrint(midi) - crossoverMidi;
Chris@40 90 if (target >= m_featureSize) target = m_featureSize - 1;
Chris@40 91 m_freqMap[i++] = target;
Chris@37 92 }
Chris@37 93 }
Chris@37 94
Chris@37 95 void
Chris@37 96 FeatureExtractor::makeChromaFrequencyMap()
Chris@37 97 {
Chris@37 98 double binWidth = m_params.sampleRate / m_params.fftSize;
Chris@37 99 int crossoverBin = (int)(1 / (pow(2, 1/12.0) - 1));
Chris@37 100 int i = 0;
Chris@37 101 while (i <= crossoverBin) {
Chris@37 102 m_freqMap[i++] = 0;
Chris@37 103 }
Chris@37 104 while (i <= m_params.fftSize/2) {
Chris@37 105 double midi = log(i*binWidth/440.0) / log(2.0) * 12 + 69;
Chris@37 106 m_freqMap[i++] = (lrint(midi)) % 12 + 1;
Chris@37 107 }
Chris@37 108 }
Chris@37 109
Chris@37 110 vector<double>
Chris@37 111 FeatureExtractor::process(const vector<double> &real, const vector<double> &imag)
Chris@37 112 {
Chris@37 113 vector<double> frame(m_featureSize, 0.0);
Chris@37 114
Chris@37 115 for (int i = 0; i <= m_params.fftSize/2; i++) {
Chris@37 116 double mag = real[i] * real[i] + imag[i] * imag[i];
Chris@37 117 frame[m_freqMap[i]] += mag;
Chris@37 118 }
Chris@37 119
Chris@103 120 return frame;
Chris@74 121 }
Chris@74 122
Chris@74 123 vector<double>
Chris@74 124 FeatureExtractor::process(const float *cframe)
Chris@74 125 {
Chris@74 126 vector<double> frame(m_featureSize, 0.0);
Chris@74 127
Chris@74 128 for (int i = 0; i <= m_params.fftSize/2; i++) {
Chris@74 129 double mag = cframe[i*2] * cframe[i*2] + cframe[i*2+1] * cframe[i*2+1];
Chris@74 130 frame[m_freqMap[i]] += mag;
Chris@74 131 }
Chris@74 132
Chris@103 133 return frame;
Chris@74 134 }
Chris@74 135