annotate dsp/keydetection/GetKeyMode.cpp @ 233:b478b1e23ab2

...
author Chris Cannam <c.cannam@qmul.ac.uk>
date Tue, 12 Dec 2006 10:34:38 +0000
parents 2b74f9646331
children 381758cfbe64
rev   line source
c@232 1 // GetKeyMode.cpp: implementation of the CGetKeyMode class.
c@232 2 //
c@232 3 //////////////////////////////////////////////////////////////////////
c@232 4
c@232 5 #include "GetKeyMode.h"
c@232 6 #include "dsp/maths/MathUtilities.h"
c@232 7
c@232 8 // Chords profile
c@232 9 static double MajProfile[36] =
c@232 10 { 0.0384, 0.0629, 0.0258, 0.0121, 0.0146, 0.0106, 0.0364, 0.0610, 0.0267,
c@232 11 0.0126, 0.0121, 0.0086, 0.0364, 0.0623, 0.0279, 0.0275, 0.0414, 0.0186,
c@232 12 0.0173, 0.0248, 0.0145, 0.0364, 0.0631, 0.0262, 0.0129, 0.0150, 0.0098,
c@232 13 0.0312, 0.0521, 0.0235, 0.0129, 0.0142, 0.0095, 0.0289, 0.0478, 0.0239};
c@232 14
c@232 15 static double MinProfile[36] =
c@232 16 { 0.0375, 0.0682, 0.0299, 0.0119, 0.0138, 0.0093, 0.0296, 0.0543, 0.0257,
c@232 17 0.0292, 0.0519, 0.0246, 0.0159, 0.0234, 0.0135, 0.0291, 0.0544, 0.0248,
c@232 18 0.0137, 0.0176, 0.0104, 0.0352, 0.0670, 0.0302, 0.0222, 0.0349, 0.0164,
c@232 19 0.0174, 0.0297, 0.0166, 0.0222, 0.0401, 0.0202, 0.0175, 0.0270, 0.0146};
c@232 20 //
c@232 21
c@232 22 //////////////////////////////////////////////////////////////////////
c@232 23 // Construction/Destruction
c@232 24 //////////////////////////////////////////////////////////////////////
c@232 25
c@232 26 GetKeyMode::GetKeyMode( double hpcpAverage, double medianAverage )
c@232 27 :
c@232 28 m_hpcpAverage( hpcpAverage ),
c@232 29 m_medianAverage( medianAverage ),
c@232 30 m_ChrPointer(0),
c@232 31 m_DecimatedBuffer(0),
c@232 32 m_ChromaBuffer(0),
c@232 33 m_MeanHPCP(0),
c@232 34 m_MajCorr(0),
c@232 35 m_MinCorr(0),
c@232 36 m_Keys(0),
c@232 37 m_MedianFilterBuffer(0),
c@232 38 m_SortedBuffer(0)
c@232 39 {
c@232 40 m_DecimationFactor = 8;
c@232 41
c@232 42 //Chromagram configuration parameters
c@232 43 m_CromaConfig.isNormalised = 1;
c@232 44 m_CromaConfig.FS = lrint(44100.0/(double)m_DecimationFactor);
c@232 45 m_CromaConfig.min = 111.0641;
c@232 46 m_CromaConfig.max = 1.7770e+003;
c@232 47 m_CromaConfig.BPO = 36;
c@232 48 m_CromaConfig.CQThresh = 0.0054;
c@232 49
c@232 50 //Chromagram inst.
c@232 51 m_Chroma = new Chromagram( m_CromaConfig );
c@232 52
c@232 53 //Get calculated parameters from chroma object
c@232 54 m_ChromaFrameSize = m_Chroma->getFrameSize();
c@232 55 //override hopsize for this application
c@232 56 m_ChromaHopSize = m_ChromaFrameSize;//m_Chroma->GetHopSize();
c@232 57 m_BPO = m_CromaConfig.BPO;
c@232 58
c@232 59 //Chromagram average and estimated key median filter lengths
c@232 60 m_ChromaBuffersize = (int)ceil( m_hpcpAverage * m_CromaConfig.FS/m_ChromaFrameSize );
c@232 61 m_MedianWinsize = (int)ceil( m_medianAverage * m_CromaConfig.FS/m_ChromaFrameSize );
c@232 62
c@232 63 //Reset counters
c@232 64 m_bufferindex = 0;
c@232 65 m_ChromaBufferFilling = 0;
c@232 66 m_MedianBufferFilling = 0;
c@232 67
c@232 68
c@232 69 //Spawn objectc/arrays
c@232 70 m_DecimatedBuffer = new double[m_ChromaFrameSize];
c@232 71
c@232 72 m_ChromaBuffer = new double[m_BPO * m_ChromaBuffersize];
c@232 73 memset( m_ChromaBuffer, 0, sizeof(double) * m_BPO * m_ChromaBuffersize);
c@232 74
c@232 75 m_MeanHPCP = new double[m_BPO];
c@232 76
c@232 77 m_MajCorr = new double[m_BPO];
c@232 78 m_MinCorr = new double[m_BPO];
c@232 79 m_Keys = new double[2*m_BPO];
c@232 80
c@232 81 m_MedianFilterBuffer = new int[ m_MedianWinsize ];
c@232 82 memset( m_MedianFilterBuffer, 0, sizeof(int)*m_MedianWinsize);
c@232 83
c@232 84 m_SortedBuffer = new int[ m_MedianWinsize ];
c@232 85 memset( m_SortedBuffer, 0, sizeof(int)*m_MedianWinsize);
c@232 86
c@232 87 m_Decimator = new Decimator( m_ChromaFrameSize*m_DecimationFactor, m_DecimationFactor );
c@232 88 }
c@232 89
c@232 90 GetKeyMode::~GetKeyMode()
c@232 91 {
c@232 92
c@232 93 delete m_Chroma;
c@232 94 delete m_Decimator;
c@232 95
c@232 96 delete [] m_DecimatedBuffer;
c@232 97 delete [] m_ChromaBuffer;
c@232 98 delete [] m_MeanHPCP;
c@232 99 delete [] m_MajCorr;
c@232 100 delete [] m_MinCorr;
c@232 101 delete [] m_Keys;
c@232 102 delete [] m_MedianFilterBuffer;
c@232 103 delete [] m_SortedBuffer;
c@232 104 }
c@232 105
c@232 106 double GetKeyMode::krumCorr(double *pData1, double *pData2, unsigned int length)
c@232 107 {
c@232 108 double retVal= 0.0;
c@232 109
c@232 110 double num = 0;
c@232 111 double den = 0;
c@232 112 double mX = MathUtilities::mean( pData1, length );
c@232 113 double mY = MathUtilities::mean( pData2, length );
c@232 114
c@232 115 double sum1 = 0;
c@232 116 double sum2 = 0;
c@232 117
c@232 118 for( unsigned int i = 0; i <length; i++ )
c@232 119 {
c@232 120 num += ( pData1[i] - mX ) * ( pData2[i] - mY );
c@232 121
c@232 122 sum1 += ( (pData1[i]-mX) * (pData1[i]-mX) );
c@232 123 sum2 += ( (pData2[i]-mY) * (pData2[i]-mY) );
c@232 124 }
c@232 125
c@232 126 den = sqrt(sum1 * sum2);
c@232 127
c@232 128 if( den>0 )
c@232 129 retVal = num/den;
c@232 130 else
c@232 131 retVal = 0;
c@232 132
c@232 133
c@232 134 return retVal;
c@232 135 }
c@232 136
c@232 137 int GetKeyMode::process(double *PCMData)
c@232 138 {
c@232 139 int key;
c@232 140
c@232 141 unsigned int j,k;
c@232 142
c@232 143 //////////////////////////////////////////////
c@232 144 m_Decimator->process( PCMData, m_DecimatedBuffer);
c@232 145
c@232 146 m_ChrPointer = m_Chroma->process( m_DecimatedBuffer );
c@232 147
c@232 148 // populate hpcp values;
c@232 149 int cbidx;
c@232 150 for( j = 0; j < m_BPO; j++ )
c@232 151 {
c@232 152 cbidx = (m_bufferindex * m_BPO) + j;
c@232 153 m_ChromaBuffer[ cbidx ] = m_ChrPointer[j];
c@232 154 }
c@232 155
c@232 156 //keep track of input buffers;
c@232 157 if( m_bufferindex++ >= m_ChromaBuffersize - 1)
c@232 158 m_bufferindex = 0;
c@232 159
c@232 160 // track filling of chroma matrix
c@232 161 if( m_ChromaBufferFilling++ >= m_ChromaBuffersize)
c@232 162 m_ChromaBufferFilling = m_ChromaBuffersize;
c@232 163
c@232 164 //calculate mean
c@232 165 for( k = 0; k < m_BPO; k++ )
c@232 166 {
c@232 167 double mnVal = 0.0;
c@232 168 for( j = 0; j < m_ChromaBufferFilling; j++ )
c@232 169 {
c@232 170 mnVal += m_ChromaBuffer[ k + (j*m_BPO) ];
c@232 171 }
c@232 172
c@232 173 m_MeanHPCP[k] = mnVal/(double)m_ChromaBufferFilling;
c@232 174 }
c@232 175
c@232 176
c@232 177 for( k = 0; k < m_BPO; k++ )
c@232 178 {
c@232 179 m_MajCorr[k] = krumCorr( m_MeanHPCP, MajProfile, m_BPO );
c@232 180 m_MinCorr[k] = krumCorr( m_MeanHPCP, MinProfile, m_BPO );
c@232 181
c@232 182 MathUtilities::circShift( MajProfile, m_BPO, 1 );
c@232 183 MathUtilities::circShift( MinProfile, m_BPO, 1 );
c@232 184 }
c@232 185
c@232 186 for( k = 0; k < m_BPO; k++ )
c@232 187 {
c@232 188 m_Keys[k] = m_MajCorr[k];
c@232 189 m_Keys[k+m_BPO] = m_MinCorr[k];
c@232 190 }
c@232 191
c@232 192
c@232 193 double dummy;
c@232 194 key = 1 + (int)ceil( (double)MathUtilities::getMax( m_Keys, 2* m_BPO, &dummy )/3 );
c@232 195
c@232 196
c@232 197 //Median filtering
c@232 198
c@232 199 // track Median buffer initial filling
c@232 200 if( m_MedianBufferFilling++ >= m_MedianWinsize)
c@232 201 m_MedianBufferFilling = m_MedianWinsize;
c@232 202
c@232 203 //shift median buffer
c@232 204 for( k = 1; k < m_MedianWinsize; k++ )
c@232 205 {
c@232 206 m_MedianFilterBuffer[ k - 1 ] = m_MedianFilterBuffer[ k ];
c@232 207 }
c@232 208
c@232 209 //write new key value into median buffer
c@232 210 m_MedianFilterBuffer[ m_MedianWinsize - 1 ] = key;
c@232 211
c@232 212
c@232 213 //Copy median into sorting buffer, reversed
c@232 214 unsigned int ijx = 0;
c@232 215 for( k = 0; k < m_MedianWinsize; k++ )
c@232 216 {
c@232 217 m_SortedBuffer[k] = m_MedianFilterBuffer[m_MedianWinsize-1-ijx];
c@232 218 ijx++;
c@232 219 }
c@232 220
c@232 221
c@232 222 //quicksort
c@232 223 qsort(m_SortedBuffer, m_MedianBufferFilling, sizeof(unsigned int), MathUtilities::compareInt);
c@232 224
c@232 225 int sortlength = m_MedianBufferFilling;
c@232 226 int midpoint = (int)ceil((double)sortlength/2);
c@232 227
c@232 228 if( midpoint <= 0 )
c@232 229 midpoint = 1;
c@232 230
c@232 231 key = m_SortedBuffer[midpoint-1];
c@232 232
c@232 233 return key;
c@232 234 }
c@232 235
c@232 236
c@232 237 int GetKeyMode::isModeMinor( int key )
c@232 238 {
c@233 239 // return ((key-1 - (int)MathUtilities::mod((double)(key-1),(double)12))/12);
c@233 240 return (key > 12);
c@232 241 }