source: src/utils/hist.c @ fd9590f

feature/autosinkfeature/cnnfeature/cnn_orgfeature/constantqfeature/crepefeature/crepe_orgfeature/pitchshiftfeature/pydocstringsfeature/timestretchfix/ffmpeg5sampleryinfft+
Last change on this file since fd9590f was 55d1fa4, checked in by Paul Brossier <piem@piem.org>, 9 years ago

src/utils/: add const qualifiers

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File size: 3.5 KB
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[96fb8ad]1/*
[e6a78ea]2  Copyright (C) 2003-2009 Paul Brossier <piem@aubio.org>
[96fb8ad]3
[e6a78ea]4  This file is part of aubio.
[96fb8ad]5
[e6a78ea]6  aubio is free software: you can redistribute it and/or modify
7  it under the terms of the GNU General Public License as published by
8  the Free Software Foundation, either version 3 of the License, or
9  (at your option) any later version.
10
11  aubio is distributed in the hope that it will be useful,
12  but WITHOUT ANY WARRANTY; without even the implied warranty of
13  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14  GNU General Public License for more details.
15
16  You should have received a copy of the GNU General Public License
17  along with aubio.  If not, see <http://www.gnu.org/licenses/>.
[96fb8ad]18
[3c707f7]19*/
[96fb8ad]20
21#include "aubio_priv.h"
[6c7d49b]22#include "fvec.h"
[32d6958]23#include "utils/scale.h"
[2f64b0e]24#include "mathutils.h" //fvec_min fvec_max
[32d6958]25#include "utils/hist.h"
[96fb8ad]26
27/********
28 * Object Structure
29 */
30
31struct _aubio_hist_t {
[3c707f7]32  fvec_t * hist;
33  uint_t nelems;
34  fvec_t * cent;
35  aubio_scale_t *scaler;
[96fb8ad]36};
37
[dde06ad]38/**
39 * Object creation/deletion calls
[96fb8ad]40 */
[32082e5]41aubio_hist_t * new_aubio_hist (smpl_t flow, smpl_t fhig, uint_t nelems){
[3c707f7]42  aubio_hist_t * s = AUBIO_NEW(aubio_hist_t);
[32082e5]43  smpl_t step = (fhig-flow)/(smpl_t)(nelems);
[3c707f7]44  smpl_t accum = step;
45  uint_t i;
46  s->nelems = nelems;
[fc61225]47  s->hist = new_fvec(nelems);
48  s->cent = new_fvec(nelems);
[3c707f7]49
[32082e5]50  /* use scale to map flow/fhig -> 0/nelems */
51  s->scaler = new_aubio_scale(flow,fhig,0,nelems);
[3c707f7]52  /* calculate centers now once */
[32082e5]53  s->cent->data[0] = flow + 0.5 * step;
[3c707f7]54  for (i=1; i < s->nelems; i++, accum+=step )
[fc61225]55    s->cent->data[i] = s->cent->data[0] + accum;
[3c707f7]56
57  return s;
[96fb8ad]58}
59
60void del_aubio_hist(aubio_hist_t *s) {
[274839f]61  del_fvec(s->hist);
[3c707f7]62  del_fvec(s->cent);
63  del_aubio_scale(s->scaler);
64  AUBIO_FREE(s);
[96fb8ad]65}
66
67/***
68 * do it
69 */
[3c707f7]70void aubio_hist_do (aubio_hist_t *s, fvec_t *input) {
[fc61225]71  uint_t j;
[3c707f7]72  sint_t tmp = 0;
73  aubio_scale_do(s->scaler, input);
74  /* reset data */
[fc61225]75  fvec_zeros(s->hist);
[3c707f7]76  /* run accum */
[fc61225]77  for (j=0;  j < input->length; j++)
78  {
79    tmp = (sint_t)FLOOR(input->data[j]);
80    if ((tmp >= 0) && (tmp < (sint_t)s->nelems)) {
81      s->hist->data[tmp] += 1;
[3c707f7]82    }
[fc61225]83  }
[96fb8ad]84}
85
[3c707f7]86void aubio_hist_do_notnull (aubio_hist_t *s, fvec_t *input) {
[fc61225]87  uint_t j;
[3c707f7]88  sint_t tmp = 0;
89  aubio_scale_do(s->scaler, input);
90  /* reset data */
[fc61225]91  fvec_zeros(s->hist);
[3c707f7]92  /* run accum */
[fc61225]93  for (j=0;  j < input->length; j++) {
94    if (input->data[j] != 0) {
95      tmp = (sint_t)FLOOR(input->data[j]);
96      if ((tmp >= 0) && (tmp < (sint_t)s->nelems))
97        s->hist->data[tmp] += 1;
[3c707f7]98    }
[fc61225]99  }
[96fb8ad]100}
101
102
[3c707f7]103void aubio_hist_dyn_notnull (aubio_hist_t *s, fvec_t *input) {
[fc61225]104  uint_t i;
[3c707f7]105  sint_t tmp = 0;
[2f64b0e]106  smpl_t ilow = fvec_min(input);
[1e2c82f]107  smpl_t ihig = fvec_max(input);
[3c707f7]108  smpl_t step = (ihig-ilow)/(smpl_t)(s->nelems);
109
110  /* readapt */
[0ce97483]111  aubio_scale_set_limits (s->scaler, ilow, ihig, 0, s->nelems);
[3c707f7]112
113  /* recalculate centers */
[fc61225]114  s->cent->data[0] = ilow + 0.5f * step;
[3c707f7]115  for (i=1; i < s->nelems; i++)
[fc61225]116    s->cent->data[i] = s->cent->data[0] + i * step;
[3c707f7]117
118  /* scale */
119  aubio_scale_do(s->scaler, input);
120
121  /* reset data */
[fc61225]122  fvec_zeros(s->hist);
[3c707f7]123  /* run accum */
[fc61225]124  for (i=0;  i < input->length; i++) {
125    if (input->data[i] != 0) {
126      tmp = (sint_t)FLOOR(input->data[i]);
127      if ((tmp >= 0) && (tmp < (sint_t)s->nelems))
128        s->hist->data[tmp] += 1;
[3c707f7]129    }
[fc61225]130  }
[96fb8ad]131}
132
[3c707f7]133void aubio_hist_weight (aubio_hist_t *s) {
[fc61225]134  uint_t j;
135  for (j=0; j < s->nelems; j++) {
136    s->hist->data[j] *= s->cent->data[j];
137  }
[96fb8ad]138}
139
[55d1fa4]140smpl_t aubio_hist_mean (const aubio_hist_t *s) {
[fc61225]141  uint_t j;
[acf7d30]142  smpl_t tmp = 0.0;
[fc61225]143  for (j=0; j < s->nelems; j++)
144    tmp += s->hist->data[j];
[3c707f7]145  return tmp/(smpl_t)(s->nelems);
[96fb8ad]146}
147
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