annotate dsp/signalconditioning/Filter.cpp @ 298:255e431ae3d4

* Key detector: when returning key strengths, use the peak value of the three underlying chromagram correlations (from 36-bin chromagram) corresponding to each key, instead of the mean. Rationale: This is the same method as used when returning the key value, and it's nice to have the same results in both returned value and plot. The peak performed better than the sum with a simple test set of triads, so it seems reasonable to change the plot to match the key output rather than the other way around. * FFT: kiss_fftr returns only the non-conjugate bins, synthesise the rest rather than leaving them (perhaps dangerously) undefined. Fixes an uninitialised data error in chromagram that could cause garbage results from key detector. * Constant Q: remove precalculated values again, I reckon they're not proving such a good tradeoff.
author Chris Cannam <c.cannam@qmul.ac.uk>
date Fri, 05 Jun 2009 15:12:39 +0000
parents 49844bc8a895
children e5907ae6de17
rev   line source
c@225 1 /* -*- c-basic-offset: 4 indent-tabs-mode: nil -*- vi:set ts=8 sts=4 sw=4: */
c@225 2
c@225 3 /*
c@225 4 QM DSP Library
c@225 5
c@225 6 Centre for Digital Music, Queen Mary, University of London.
c@225 7 This file copyright 2005-2006 Christian Landone.
c@225 8 All rights reserved.
c@225 9 */
c@225 10
c@225 11 #include "Filter.h"
c@225 12
c@225 13 //////////////////////////////////////////////////////////////////////
c@225 14 // Construction/Destruction
c@225 15 //////////////////////////////////////////////////////////////////////
c@225 16
c@225 17 Filter::Filter( FilterConfig Config )
c@225 18 {
c@225 19 m_ord = 0;
c@225 20 m_outBuffer = NULL;
c@225 21 m_inBuffer = NULL;
c@225 22
c@225 23 initialise( Config );
c@225 24 }
c@225 25
c@225 26 Filter::~Filter()
c@225 27 {
c@225 28 deInitialise();
c@225 29 }
c@225 30
c@225 31 void Filter::initialise( FilterConfig Config )
c@225 32 {
c@225 33 m_ord = Config.ord;
c@225 34 m_ACoeffs = Config.ACoeffs;
c@225 35 m_BCoeffs = Config.BCoeffs;
c@225 36
c@225 37 m_inBuffer = new double[ m_ord + 1 ];
c@225 38 m_outBuffer = new double[ m_ord + 1 ];
c@225 39
c@225 40 reset();
c@225 41 }
c@225 42
c@225 43 void Filter::deInitialise()
c@225 44 {
c@225 45 delete[] m_inBuffer;
c@225 46 delete[] m_outBuffer;
c@225 47 }
c@225 48
c@225 49 void Filter::reset()
c@225 50 {
c@225 51 for( unsigned int i = 0; i < m_ord+1; i++ ){ m_inBuffer[ i ] = 0.0; }
c@225 52 for(unsigned int i = 0; i < m_ord+1; i++ ){ m_outBuffer[ i ] = 0.0; }
c@225 53 }
c@225 54
c@225 55 void Filter::process( double *src, double *dst, unsigned int length )
c@225 56 {
c@225 57 unsigned int SP,i,j;
c@225 58
c@225 59 double xin,xout;
c@225 60
c@225 61 for (SP=0;SP<length;SP++)
c@225 62 {
c@225 63 xin=src[SP];
c@225 64 /* move buffer */
c@225 65 for ( i = 0; i < m_ord; i++) {m_inBuffer[ m_ord - i ]=m_inBuffer[ m_ord - i - 1 ];}
c@225 66 m_inBuffer[0]=xin;
c@225 67
c@225 68 xout=0.0;
c@225 69 for (j=0;j< m_ord + 1; j++)
c@225 70 xout = xout + m_BCoeffs[ j ] * m_inBuffer[ j ];
c@225 71 for (j = 0; j < m_ord; j++)
c@225 72 xout= xout - m_ACoeffs[ j + 1 ] * m_outBuffer[ j ];
c@225 73
c@225 74 dst[ SP ] = xout;
c@225 75 for ( i = 0; i < m_ord - 1; i++ ) { m_outBuffer[ m_ord - i - 1 ] = m_outBuffer[ m_ord - i - 2 ];}
c@225 76 m_outBuffer[0]=xout;
c@225 77
c@225 78 } /* end of SP loop */
c@225 79 }
c@225 80
c@225 81
c@225 82