source: src/onset/onset.c @ 65c352e

feature/autosinkfeature/cnnfeature/cnn_orgfeature/constantqfeature/crepefeature/crepe_orgfeature/pitchshiftfeature/pydocstringsfeature/timestretchfix/ffmpeg5sampler
Last change on this file since 65c352e was 65c352e, checked in by Paul Brossier <piem@piem.org>, 9 years ago

src/onset/onset.c: add aubio_onset_default_parameters

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1/*
2  Copyright (C) 2006-2013 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#include "aubio_priv.h"
22#include "fvec.h"
23#include "cvec.h"
24#include "spectral/specdesc.h"
25#include "spectral/phasevoc.h"
26#include "spectral/awhitening.h"
27#include "onset/peakpicker.h"
28#include "mathutils.h"
29#include "onset/onset.h"
30
31void aubio_onset_default_parameters (aubio_onset_t *o, char_t * method);
32
33/** structure to store object state */
34struct _aubio_onset_t {
35  aubio_pvoc_t * pv;            /**< phase vocoder */
36  aubio_specdesc_t * od;        /**< spectral descriptor */
37  aubio_peakpicker_t * pp;      /**< peak picker */
38  cvec_t * fftgrain;            /**< phase vocoder output */
39  fvec_t * desc;                /**< spectral description */
40  smpl_t silence;               /**< silence threhsold */
41  uint_t minioi;                /**< minimum inter onset interval */
42  uint_t delay;                 /**< constant delay, in samples, removed from detected onset times */
43  uint_t samplerate;            /**< sampling rate of the input signal */
44  uint_t hop_size;              /**< number of samples between two runs */
45
46  uint_t total_frames;          /**< total number of frames processed since the beginning */
47  uint_t last_onset;            /**< last detected onset location, in frames */
48
49  uint_t apply_adaptive_whitening;
50  aubio_spectral_whitening_t *spectral_whitening;
51};
52
53/* execute onset detection function on iput buffer */
54void aubio_onset_do (aubio_onset_t *o, fvec_t * input, fvec_t * onset)
55{
56  smpl_t isonset = 0;
57  aubio_pvoc_do (o->pv,input, o->fftgrain);
58  /*
59  if (apply_filtering) {
60  }
61  if (apply_compression) {
62  }
63  */
64  if (o->apply_adaptive_whitening) {
65    aubio_spectral_whitening_do(o->spectral_whitening, o->fftgrain);
66  }
67  aubio_specdesc_do (o->od, o->fftgrain, o->desc);
68  aubio_peakpicker_do(o->pp, o->desc, onset);
69  isonset = onset->data[0];
70  if (isonset > 0.) {
71    if (aubio_silence_detection(input, o->silence)==1) {
72      //AUBIO_DBG ("silent onset, not marking as onset\n");
73      isonset  = 0;
74    } else {
75      uint_t new_onset = o->total_frames + (uint_t)ROUND(isonset * o->hop_size);
76      if (o->last_onset + o->minioi < new_onset) {
77        //AUBIO_DBG ("accepted detection, marking as onset\n");
78        o->last_onset = new_onset;
79      } else {
80        //AUBIO_DBG ("doubled onset, not marking as onset\n");
81        isonset  = 0;
82      }
83    }
84  } else {
85    // we are at the beginning of the file
86    if (o->total_frames <= o->delay) {
87      // and we don't find silence
88      if (aubio_silence_detection(input, o->silence) == 0) {
89        uint_t new_onset = o->total_frames;
90        if (o->total_frames == 0 || o->last_onset + o->minioi < new_onset) {
91          isonset = o->delay / o->hop_size;
92          o->last_onset = o->total_frames + o->delay;
93        }
94      }
95    }
96  }
97  onset->data[0] = isonset;
98  o->total_frames += o->hop_size;
99  return;
100}
101
102uint_t aubio_onset_get_last (aubio_onset_t *o)
103{
104  return o->last_onset - o->delay;
105}
106
107smpl_t aubio_onset_get_last_s (aubio_onset_t *o)
108{
109  return aubio_onset_get_last (o) / (smpl_t) (o->samplerate);
110}
111
112smpl_t aubio_onset_get_last_ms (aubio_onset_t *o)
113{
114  return aubio_onset_get_last_s (o) * 1000.;
115}
116
117uint_t aubio_onset_set_adaptive_whitening (aubio_onset_t *o, uint_t apply_adaptive_whitening)
118{
119  o->apply_adaptive_whitening = apply_adaptive_whitening;
120  return AUBIO_OK;
121}
122
123uint_t aubio_onset_get_adaptive_whitening (aubio_onset_t *o)
124{
125  return o->apply_adaptive_whitening;
126}
127
128uint_t aubio_onset_set_silence(aubio_onset_t * o, smpl_t silence) {
129  o->silence = silence;
130  return AUBIO_OK;
131}
132
133smpl_t aubio_onset_get_silence(aubio_onset_t * o) {
134  return o->silence;
135}
136
137uint_t aubio_onset_set_threshold(aubio_onset_t * o, smpl_t threshold) {
138  aubio_peakpicker_set_threshold(o->pp, threshold);
139  return AUBIO_OK;
140}
141
142smpl_t aubio_onset_get_threshold(aubio_onset_t * o) {
143  return aubio_peakpicker_get_threshold(o->pp);
144}
145
146uint_t aubio_onset_set_minioi(aubio_onset_t * o, uint_t minioi) {
147  o->minioi = minioi;
148  return AUBIO_OK;
149}
150
151uint_t aubio_onset_get_minioi(aubio_onset_t * o) {
152  return o->minioi;
153}
154
155uint_t aubio_onset_set_minioi_s(aubio_onset_t * o, smpl_t minioi) {
156  return aubio_onset_set_minioi (o, minioi * o->samplerate);
157}
158
159smpl_t aubio_onset_get_minioi_s(aubio_onset_t * o) {
160  return aubio_onset_get_minioi (o) / (smpl_t) o->samplerate;
161}
162
163uint_t aubio_onset_set_minioi_ms(aubio_onset_t * o, smpl_t minioi) {
164  return aubio_onset_set_minioi_s (o, minioi / 1000.);
165}
166
167smpl_t aubio_onset_get_minioi_ms(aubio_onset_t * o) {
168  return aubio_onset_get_minioi_s (o) * 1000.;
169}
170
171uint_t aubio_onset_set_delay(aubio_onset_t * o, uint_t delay) {
172  o->delay = delay;
173  return AUBIO_OK;
174}
175
176uint_t aubio_onset_get_delay(aubio_onset_t * o) {
177  return o->delay;
178}
179
180uint_t aubio_onset_set_delay_s(aubio_onset_t * o, smpl_t delay) {
181  return aubio_onset_set_delay (o, delay * o->samplerate);
182}
183
184smpl_t aubio_onset_get_delay_s(aubio_onset_t * o) {
185  return aubio_onset_get_delay (o) / (smpl_t) o->samplerate;
186}
187
188uint_t aubio_onset_set_delay_ms(aubio_onset_t * o, smpl_t delay) {
189  return aubio_onset_set_delay_s (o, delay / 1000.);
190}
191
192smpl_t aubio_onset_get_delay_ms(aubio_onset_t * o) {
193  return aubio_onset_get_delay_s (o) * 1000.;
194}
195
196smpl_t aubio_onset_get_descriptor(aubio_onset_t * o) {
197  return o->desc->data[0];
198}
199
200smpl_t aubio_onset_get_thresholded_descriptor(aubio_onset_t * o) {
201  fvec_t * thresholded = aubio_peakpicker_get_thresholded_input(o->pp);
202  return thresholded->data[0];
203}
204
205/* Allocate memory for an onset detection */
206aubio_onset_t * new_aubio_onset (char_t * onset_mode, 
207    uint_t buf_size, uint_t hop_size, uint_t samplerate)
208{
209  aubio_onset_t * o = AUBIO_NEW(aubio_onset_t);
210
211  /* check parameters are valid */
212  if ((sint_t)hop_size < 1) {
213    AUBIO_ERR("onset: got hop_size %d, but can not be < 1\n", hop_size);
214    goto beach;
215  } else if ((sint_t)buf_size < 1) {
216    AUBIO_ERR("onset: got buffer_size %d, but can not be < 1\n", buf_size);
217    goto beach;
218  } else if (buf_size < hop_size) {
219    AUBIO_ERR("onset: hop size (%d) is larger than win size (%d)\n", buf_size, hop_size);
220    goto beach;
221  } else if ((sint_t)samplerate < 1) {
222    AUBIO_ERR("onset: samplerate (%d) can not be < 1\n", samplerate);
223    goto beach;
224  }
225
226  /* store creation parameters */
227  o->samplerate = samplerate;
228  o->hop_size = hop_size;
229
230  /* allocate memory */
231  o->pv = new_aubio_pvoc(buf_size, o->hop_size);
232  o->pp = new_aubio_peakpicker();
233  o->od = new_aubio_specdesc(onset_mode,buf_size);
234  o->fftgrain = new_cvec(buf_size);
235  o->desc = new_fvec(1);
236
237  o->spectral_whitening = new_aubio_spectral_whitening(buf_size, hop_size, samplerate);
238
239  aubio_onset_default_parameters (o, onset_mode);
240
241  /* initialize internal variables */
242  o->last_onset = 0;
243  o->total_frames = 0;
244  return o;
245
246beach:
247  AUBIO_FREE(o);
248  return NULL;
249}
250
251void aubio_onset_default_parameters (aubio_onset_t * o, char_t * onset_mode)
252{
253  /* set some default parameter */
254  aubio_onset_set_threshold (o, 0.3);
255  aubio_onset_set_delay (o, 4.3 * o->hop_size);
256  aubio_onset_set_minioi_ms (o, 50.);
257  aubio_onset_set_silence (o, -70.);
258  aubio_onset_set_adaptive_whitening (o, 1);
259
260  /* method specific optimisations */
261  if (strcmp (onset_mode, "energy") == 0) {
262  } else if (strcmp (onset_mode, "hfc") == 0) {
263    aubio_onset_set_adaptive_whitening (o, 0);
264  } else if (strcmp (onset_mode, "complexdomain") == 0
265             || strcmp (onset_mode, "complex") == 0) {
266    aubio_onset_set_delay (o, 4.6 * o->hop_size);
267    aubio_onset_set_threshold (o, 0.15);
268  } else if (strcmp (onset_mode, "phase") == 0) {
269    aubio_onset_set_adaptive_whitening (o, 0);
270  } else if (strcmp (onset_mode, "mkl") == 0) {
271    aubio_onset_set_threshold (o, 0.05);
272  } else if (strcmp (onset_mode, "kl") == 0) {
273    aubio_onset_set_threshold (o, 0.35);
274  } else if (strcmp (onset_mode, "specflux") == 0) {
275    aubio_onset_set_threshold (o, 0.4);
276  } else if (strcmp (onset_mode, "specdiff") == 0) {
277  } else if (strcmp (onset_mode, "default") == 0) {
278  } else {
279    AUBIO_ERR ("onset: unknown spectral descriptor type %s, "
280               "using default parameters.\n", onset_mode);
281  }
282}
283
284void del_aubio_onset (aubio_onset_t *o)
285{
286  del_aubio_spectral_whitening(o->spectral_whitening);
287  del_aubio_specdesc(o->od);
288  del_aubio_peakpicker(o->pp);
289  del_aubio_pvoc(o->pv);
290  del_fvec(o->desc);
291  del_cvec(o->fftgrain);
292  AUBIO_FREE(o);
293}
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