source: src/spectral/mfcc.c @ c9ca2608

feature/autosinkfeature/cnnfeature/cnn_orgfeature/constantqfeature/crepefeature/crepe_orgfeature/pitchshiftfeature/pydocstringsfeature/timestretchfix/ffmpeg5
Last change on this file since c9ca2608 was d8b1161, checked in by Paul Brossier <piem@piem.org>, 6 years ago

src/spectral/mfcc.c: use dct to compute mfcc

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[88199ce]1/*
[7a84b21]2  Copyright (C) 2007-2009 Paul Brossier <piem@aubio.org>
3                      and Amaury Hazan <ahazan@iua.upf.edu>
[88199ce]4
[1c2e186]5  This file is part of aubio.
[88199ce]6
[1c2e186]7  aubio is free software: you can redistribute it and/or modify
[7a84b21]8  it under the terms of the GNU General Public License as published by
9  the Free Software Foundation, either version 3 of the License, or
10  (at your option) any later version.
[88199ce]11
[1c2e186]12  aubio is distributed in the hope that it will be useful,
[7a84b21]13  but WITHOUT ANY WARRANTY; without even the implied warranty of
14  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15  GNU General Public License for more details.
16
17  You should have received a copy of the GNU General Public License
[1c2e186]18  along with aubio.  If not, see <http://www.gnu.org/licenses/>.
[88199ce]19
20*/
21
[7c6c806d]22#include "aubio_priv.h"
[6c7d49b]23#include "fvec.h"
[d95ff38]24#include "fmat.h"
[6c7d49b]25#include "cvec.h"
[d37400c]26#include "mathutils.h"
[d0dca26]27#include "vecutils.h"
[32d6958]28#include "spectral/fft.h"
[d90db7d4]29#include "spectral/filterbank.h"
[06cae6c]30#include "spectral/filterbank_mel.h"
[d8b1161]31#include "spectral/dct.h"
[32d6958]32#include "spectral/mfcc.h"
[88199ce]33
[d8b1161]34#undef HAVE_SLOW_DCT
35
[7a84b21]36/** Internal structure for mfcc object */
[88199ce]37
[d99d819]38struct _aubio_mfcc_t
[7a84b21]39{
[34d72f0]40  uint_t win_s;             /** grain length */
41  uint_t samplerate;        /** sample rate (needed?) */
[f2a0769]42  uint_t n_filters;         /** number of filters */
[7a46bf6]43  uint_t n_coefs;           /** number of coefficients (<= n_filters/2 +1) */
[7a84b21]44  aubio_filterbank_t *fb;   /** filter bank */
45  fvec_t *in_dct;           /** input buffer for dct * [fb->n_filters] */
[d8b1161]46#if defined(HAVE_SLOW_DCT)
[d95ff38]47  fmat_t *dct_coeffs;       /** DCT transform n_filters * n_coeffs */
[d8b1161]48#else
49  aubio_dct_t *dct;
50  fvec_t *output;
51#endif
[8708556]52};
53
54
[7a84b21]55aubio_mfcc_t *
[41bf913]56new_aubio_mfcc (uint_t win_s, uint_t n_filters, uint_t n_coefs,
57    uint_t samplerate)
[7a84b21]58{
59
60  /* allocate space for mfcc object */
61  aubio_mfcc_t *mfcc = AUBIO_NEW (aubio_mfcc_t);
[d8b1161]62#if defined(HAVE_SLOW_DCT)
[78c21cf]63  smpl_t scaling;
[c185ebb]64
65  uint_t i, j;
[d8b1161]66#endif
[c185ebb]67
[7a84b21]68  mfcc->win_s = win_s;
69  mfcc->samplerate = samplerate;
70  mfcc->n_filters = n_filters;
71  mfcc->n_coefs = n_coefs;
[cfe4038]72
[7a84b21]73  /* filterbank allocation */
74  mfcc->fb = new_aubio_filterbank (n_filters, mfcc->win_s);
75  aubio_filterbank_set_mel_coeffs_slaney (mfcc->fb, samplerate);
[8708556]76
[7a84b21]77  /* allocating buffers */
[d95ff38]78  mfcc->in_dct = new_fvec (n_filters);
[8708556]79
[d8b1161]80#if defined(HAVE_SLOW_DCT)
[c02a1cc]81  mfcc->dct_coeffs = new_fmat (n_coefs, n_filters);
[c185ebb]82
[c02a1cc]83  /* compute DCT transform dct_coeffs[j][i] as
[7a84b21]84     cos ( j * (i+.5) * PI / n_filters ) */
[78c21cf]85  scaling = 1. / SQRT (n_filters / 2.);
[7a84b21]86  for (i = 0; i < n_filters; i++) {
[c185ebb]87    for (j = 0; j < n_coefs; j++) {
[c02a1cc]88      mfcc->dct_coeffs->data[j][i] =
[7a84b21]89          scaling * COS (j * (i + 0.5) * PI / n_filters);
[c185ebb]90    }
[c02a1cc]91    mfcc->dct_coeffs->data[0][i] *= SQRT (2.) / 2.;
[c185ebb]92  }
[d8b1161]93#else
94  mfcc->dct = new_aubio_dct (n_filters);
95  mfcc->output = new_fvec (n_filters);
96#endif
[8708556]97
98  return mfcc;
[163d159]99}
[8708556]100
[7a84b21]101void
102del_aubio_mfcc (aubio_mfcc_t * mf)
103{
104
105  /* delete filterbank */
106  del_aubio_filterbank (mf->fb);
107
108  /* delete buffers */
109  del_fvec (mf->in_dct);
[d8b1161]110#if defined(HAVE_SLOW_DCT)
[fc759f3]111  del_fmat (mf->dct_coeffs);
[d8b1161]112#else
113  del_aubio_dct (mf->dct);
114  del_fvec (mf->output);
115#endif
[7a84b21]116
117  /* delete mfcc object */
118  AUBIO_FREE (mf);
[88199ce]119}
120
[177f09a]121
[7a84b21]122void
[feb694b]123aubio_mfcc_do (aubio_mfcc_t * mf, const cvec_t * in, fvec_t * out)
[7a84b21]124{
125  /* compute filterbank */
126  aubio_filterbank_do (mf->fb, in, mf->in_dct);
[c185ebb]127
[d37400c]128  /* compute log10 */
129  fvec_log10 (mf->in_dct);
130
131  /* raise power */
[5c4ec3c]132  //fvec_pow (mf->in_dct, 3.);
[d37400c]133
[73e8f65]134  /* compute mfccs */
[d8b1161]135#if defined(HAVE_SLOW_DCT)
[73e8f65]136  fmat_vecmul(mf->dct_coeffs, mf->in_dct, out);
[d8b1161]137#else
138  aubio_dct_do(mf->dct, mf->in_dct, mf->output);
139  // copy only first n_coeffs elements
140  // TODO assert mf->output->length == n_coeffs
141  fvec_t tmp;
142  tmp.data = mf->output->data;
143  tmp.length = out->length;
144  fvec_copy(&tmp, out);
145#endif
[cfe4038]146
[c185ebb]147  return;
148}
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