annotate dsp/tempotracking/TempoTrackV2.h @ 515:08bcc06c38ec tip master

Remove fast-math
author Chris Cannam <cannam@all-day-breakfast.com>
date Tue, 28 Jan 2020 15:27:37 +0000
parents bb78ca3fe7de
children
rev   line source
c@277 1 /* -*- c-basic-offset: 4 indent-tabs-mode: nil -*- vi:set ts=8 sts=4 sw=4: */
c@277 2
c@277 3 /*
c@277 4 QM DSP Library
c@277 5
c@277 6 Centre for Digital Music, Queen Mary, University of London.
c@277 7 This file copyright 2008-2009 Matthew Davies and QMUL.
c@309 8
c@309 9 This program is free software; you can redistribute it and/or
c@309 10 modify it under the terms of the GNU General Public License as
c@309 11 published by the Free Software Foundation; either version 2 of the
c@309 12 License, or (at your option) any later version. See the file
c@309 13 COPYING included with this distribution for more information.
c@277 14 */
c@277 15
cannam@489 16 #ifndef QM_DSP_TEMPOTRACKV2_H
cannam@489 17 #define QM_DSP_TEMPOTRACKV2_H
c@277 18
c@277 19 #include <vector>
c@277 20
c@279 21 //!!! Question: how far is this actually sample rate dependent? I
c@279 22 // think it does produce plausible results for e.g. 48000 as well as
c@279 23 // 44100, but surely the fixed window sizes and comb filtering will
c@279 24 // make it prefer double or half time when run at e.g. 96000?
c@279 25
luis@327 26 class TempoTrackV2
c@277 27 {
c@277 28 public:
c@279 29 /**
c@279 30 * Construct a tempo tracker that will operate on beat detection
c@279 31 * function data calculated from audio at the given sample rate
c@279 32 * with the given frame increment.
c@279 33 *
c@279 34 * Currently the sample rate and increment are used only for the
c@279 35 * conversion from beat frame location to bpm in the tempo array.
c@279 36 */
cannam@493 37 TempoTrackV2(float sampleRate, int dfIncrement);
c@277 38 ~TempoTrackV2();
c@277 39
luis@327 40 // Returned beat periods are given in df increment units; inputtempo and tempi in bpm
cannam@493 41 void calculateBeatPeriod(const std::vector<double> &df,
cannam@493 42 std::vector<double> &beatPeriod,
cannam@493 43 std::vector<double> &tempi) {
c@386 44 calculateBeatPeriod(df, beatPeriod, tempi, 120.0, false);
c@386 45 }
c@386 46
c@386 47 // Returned beat periods are given in df increment units; inputtempo and tempi in bpm
c@386 48 // MEPD 28/11/12 Expose inputtempo and constraintempo parameters
c@386 49 // Note, if inputtempo = 120 and constraintempo = false, then functionality is as it was before
cannam@493 50 void calculateBeatPeriod(const std::vector<double> &df,
cannam@493 51 std::vector<double> &beatPeriod,
cannam@493 52 std::vector<double> &tempi,
c@386 53 double inputtempo, bool constraintempo);
c@386 54
c@386 55 // Returned beat positions are given in df increment units
cannam@493 56 void calculateBeats(const std::vector<double> &df,
cannam@493 57 const std::vector<double> &beatPeriod,
cannam@493 58 std::vector<double> &beats) {
c@386 59 calculateBeats(df, beatPeriod, beats, 0.9, 4.0);
c@386 60 }
c@277 61
c@279 62 // Returned beat positions are given in df increment units
luis@327 63 // MEPD 28/11/12 Expose alpha and tightness parameters
c@386 64 // Note, if alpha = 0.9 and tightness = 4, then functionality is as it was before
cannam@493 65 void calculateBeats(const std::vector<double> &df,
cannam@493 66 const std::vector<double> &beatPeriod,
cannam@493 67 std::vector<double> &beats,
c@386 68 double alpha, double tightness);
c@277 69
c@277 70 private:
cannam@493 71 typedef std::vector<int> i_vec_t;
cannam@493 72 typedef std::vector<std::vector<int> > i_mat_t;
cannam@493 73 typedef std::vector<double> d_vec_t;
cannam@493 74 typedef std::vector<std::vector<double> > d_mat_t;
c@277 75
c@279 76 float m_rate;
cannam@493 77 int m_increment;
c@279 78
c@277 79 void adapt_thresh(d_vec_t &df);
c@277 80 double mean_array(const d_vec_t &dfin, int start, int end);
c@277 81 void filter_df(d_vec_t &df);
c@277 82 void get_rcf(const d_vec_t &dfframe, const d_vec_t &wv, d_vec_t &rcf);
c@278 83 void viterbi_decode(const d_mat_t &rcfmat, const d_vec_t &wv,
c@278 84 d_vec_t &bp, d_vec_t &tempi);
c@277 85 double get_max_val(const d_vec_t &df);
c@277 86 int get_max_ind(const d_vec_t &df);
c@277 87 void normalise_vec(d_vec_t &df);
c@277 88 };
c@277 89
c@277 90 #endif