source: src/io/source_sndfile.c @ d3b1eb1

feature/autosinkfeature/cnnfeature/cnn_orgfeature/constantqfeature/crepefeature/crepe_orgfeature/pitchshiftfeature/pydocstringsfeature/timestretchfix/ffmpeg5pitchshiftsamplertimestretchyinfft+
Last change on this file since d3b1eb1 was 6fd8d7e, checked in by Paul Brossier <piem@piem.org>, 12 years ago

src/io/source_sndfile.c: use linear resampling to make sure all output samples are created on first read

  • Property mode set to 100644
File size: 5.0 KB
Line 
1/*
2  Copyright (C) 2012 Paul Brossier <piem@aubio.org>
3
4  This file is part of aubio.
5
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/>.
18
19*/
20
21
22#include "config.h"
23
24#ifdef HAVE_SNDFILE
25
26#include <sndfile.h>
27
28#include "aubio_priv.h"
29#include "source_sndfile.h"
30#include "fvec.h"
31
32#include "temporal/resampler.h"
33
34#define MAX_CHANNELS 6
35#define MAX_SIZE 4096
36#define MAX_SAMPLES MAX_CHANNELS * MAX_SIZE
37
38struct _aubio_source_sndfile_t {
39  uint_t hop_size;
40  uint_t samplerate;
41  uint_t channels;
42
43  // some data about the file
44  char_t *path;
45  SNDFILE *handle;
46  int input_samplerate;
47  int input_channels;
48  int input_format;
49
50  // resampling stuff
51  smpl_t ratio;
52  uint_t input_hop_size;
53#ifdef HAVE_SAMPLERATE
54  aubio_resampler_t *resampler;
55  fvec_t *input_data;
56#endif /* HAVE_SAMPLERATE */
57
58  // some temporary memory for sndfile to write at
59  uint_t scratch_size;
60  smpl_t *scratch_data;
61};
62
63aubio_source_sndfile_t * new_aubio_source_sndfile(char_t * path, uint_t samplerate, uint_t hop_size) {
64  aubio_source_sndfile_t * s = AUBIO_NEW(aubio_source_sndfile_t);
65
66  if (path == NULL) {
67    AUBIO_ERR("Aborted opening null path\n");
68    return NULL;
69  }
70
71  s->hop_size = hop_size;
72  s->samplerate = samplerate;
73  s->channels = 1;
74  s->path = path;
75
76  // try opening the file, geting the info in sfinfo
77  SF_INFO sfinfo;
78  AUBIO_MEMSET(&sfinfo, 0, sizeof (sfinfo));
79  s->handle = sf_open (s->path, SFM_READ, &sfinfo);
80
81  if (s->handle == NULL) {
82    /* show libsndfile err msg */
83    AUBIO_ERR("Failed opening %s: %s\n", s->path, sf_strerror (NULL));
84    goto beach;
85  }     
86
87  /* get input specs */
88  s->input_samplerate = sfinfo.samplerate;
89  s->input_channels   = sfinfo.channels;
90  s->input_format     = sfinfo.format;
91
92  /* compute input block size required before resampling */
93  s->ratio = s->samplerate/(float)s->input_samplerate;
94  s->input_hop_size = (uint_t)FLOOR(s->hop_size / s->ratio + .5);
95
96  if (s->input_hop_size * s->input_channels > MAX_SAMPLES) {
97    AUBIO_ERR("Not able to process more than %d frames of %d channels\n",
98        MAX_SAMPLES / s->input_channels, s->input_channels);
99    goto beach;
100  }
101
102#ifdef HAVE_SAMPLERATE
103  s->resampler = NULL;
104  s->input_data = NULL;
105  if (s->ratio != 1) {
106    s->input_data = new_fvec(s->input_hop_size);
107    s->resampler = new_aubio_resampler(s->ratio, 4);
108    if (s->ratio > 1) {
109      // we would need to add a ring buffer for these
110      if ( (uint_t)(s->input_hop_size * s->ratio + .5)  != s->hop_size ) {
111        AUBIO_ERR("can not upsample from %d to %d\n", s->input_samplerate, s->samplerate);
112        goto beach;
113      }
114      AUBIO_WRN("upsampling %s from %d to % d\n", s->path, s->input_samplerate, s->samplerate);
115    }
116  }
117#else
118  if (s->ratio != 1) {
119    AUBIO_ERR("aubio was compiled without aubio_resampler\n");
120    goto beach;
121  }
122#endif /* HAVE_SAMPLERATE */
123
124  /* allocate data for de/interleaving reallocated when needed. */
125  s->scratch_size = s->input_hop_size * s->input_channels;
126  s->scratch_data = AUBIO_ARRAY(float,s->scratch_size);
127
128  return s;
129
130beach:
131  AUBIO_ERR("can not read %s at samplerate %dHz with a hop_size of %d\n",
132      s->path, s->samplerate, s->hop_size);
133  del_aubio_source_sndfile(s);
134  return NULL;
135}
136
137void aubio_source_sndfile_do(aubio_source_sndfile_t * s, fvec_t * read_data, uint_t * read){
138  uint_t i,j, input_channels = s->input_channels;
139  /* do actual reading */
140  sf_count_t read_samples = sf_read_float (s->handle, s->scratch_data, s->scratch_size);
141
142  smpl_t *data;
143
144#ifdef HAVE_SAMPLERATE
145  if (s->ratio != 1) {
146    data = s->input_data->data;
147  } else
148#endif /* HAVE_SAMPLERATE */
149  {
150    data = read_data->data;
151  }
152
153  /* de-interleaving and down-mixing data  */
154  for (j = 0; j < read_samples / input_channels; j++) {
155    data[j] = 0;
156    for (i = 0; i < input_channels; i++) {
157      data[j] += (smpl_t)s->scratch_data[input_channels*j+i];
158    }
159    data[j] /= (smpl_t)input_channels;
160  }
161
162#ifdef HAVE_SAMPLERATE
163  if (s->resampler) {
164    aubio_resampler_do(s->resampler, s->input_data, read_data);
165  }
166#endif /* HAVE_SAMPLERATE */
167
168  *read = (int)FLOOR(s->ratio * read_samples / input_channels + .5);
169}
170
171void del_aubio_source_sndfile(aubio_source_sndfile_t * s){
172  if (!s) return;
173  if (sf_close(s->handle)) {
174    AUBIO_ERR("Error closing file %s: %s", s->path, sf_strerror (NULL));
175  }
176#ifdef HAVE_SAMPLERATE
177  if (s->resampler != NULL) {
178    del_aubio_resampler(s->resampler);
179  }
180  if (s->input_data) {
181    del_fvec(s->input_data);
182  }
183#endif /* HAVE_SAMPLERATE */
184  AUBIO_FREE(s->scratch_data);
185  AUBIO_FREE(s);
186}
187
188#endif /* HAVE_SNDFILE */
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