source: src/pitch/pitch.h

Last change on this file was 482641d, checked in by Paul Brossier <piem@piem.org>, 7 years ago

src/pitch/pitch.h: add missing space

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[96fb8ad]1/*
[b235c0e]2  Copyright (C) 2003-2013 Paul Brossier <piem@aubio.org>
[e6a78ea]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*/
[96fb8ad]20
[6f42c16]21#ifndef AUBIO_PITCH_H
22#define AUBIO_PITCH_H
[96fb8ad]23
24#ifdef __cplusplus
25extern "C" {
26#endif
27
[f44b111]28/** \file
29
[f0dd5fb]30  Pitch detection object
[f44b111]31
32  This file creates the objects required for the computation of the selected
33  pitch detection algorithm and output the results, in midi note or Hz.
34
[f0dd5fb]35  \section pitch Pitch detection methods
36
37  A list of the pitch detection methods currently available follows.
38
39  \b \p default : use the default method
40
41  Currently, the default method is set to \p yinfft .
42
43  \b \p schmitt : Schmitt trigger
44
45  This pitch extraction method implements a Schmitt trigger to estimate the
46  period of a signal.
47
48  This file was derived from the tuneit project, written by Mario Lang to
49  detect the fundamental frequency of a sound.
50
51  See http://delysid.org/tuneit.html
52
53  \b \p fcomb : a fast harmonic comb filter
54
55  This pitch extraction method implements a fast harmonic comb filter to
56  determine the fundamental frequency of a harmonic sound.
57
58  This file was derived from the tuneit project, written by Mario Lang to
59  detect the fundamental frequency of a sound.
60
61  See http://delysid.org/tuneit.html
62
63  \b \p mcomb : multiple-comb filter
64
65  This fundamental frequency estimation algorithm implements spectral
66  flattening, multi-comb filtering and peak histogramming.
67
68  This method was designed by Juan P. Bello and described in:
69
70  Juan-Pablo Bello. ``Towards the Automated Analysis of Simple Polyphonic
71  Music''.  PhD thesis, Centre for Digital Music, Queen Mary University of
72  London, London, UK, 2003.
73
74  \b \p yin : YIN algorithm
75
[7f0fd1d]76  This algorithm was developed by A. de Cheveigne and H. Kawahara and
[f0dd5fb]77  published in:
78
79  De Cheveigné, A., Kawahara, H. (2002) "YIN, a fundamental frequency
80  estimator for speech and music", J. Acoust. Soc. Am. 111, 1917-1930.
81
82  see http://recherche.ircam.fr/equipes/pcm/pub/people/cheveign.html
83
[482641d]84  \b \p yinfast : Yinfast algorithm
[48fa81d]85
86  This algorithm is equivalent to the YIN algorithm, but computed in the
87  spectral domain for efficiency. See also `python/demos/demo_yin_compare.py`.
88
[f0dd5fb]89  \b \p yinfft : Yinfft algorithm
90
91  This algorithm was derived from the YIN algorithm. In this implementation, a
92  Fourier transform is used to compute a tapered square difference function,
93  which allows spectral weighting. Because the difference function is tapered,
94  the selection of the period is simplified.
95
96  Paul Brossier, [Automatic annotation of musical audio for interactive
97  systems](http://aubio.org/phd/), Chapter 3, Pitch Analysis, PhD thesis,
98  Centre for Digital music, Queen Mary University of London, London, UK, 2006.
99
[69b11d8]100  \example pitch/test-pitch.c
[f0dd5fb]101  \example examples/aubiopitch.c
[69b11d8]102
[f44b111]103*/
104
105/** pitch detection object */
[ca1abdd]106typedef struct _aubio_pitch_t aubio_pitch_t;
[f44b111]107
108/** execute pitch detection on an input signal frame
[6d4ec49]109
[ca1abdd]110  \param o pitch detection object as returned by new_aubio_pitch()
[168337e]111  \param in input signal of size [hop_size]
112  \param out output pitch candidates of size [1]
[6d4ec49]113
[f44b111]114*/
[ce3ff2b]115void aubio_pitch_do (aubio_pitch_t * o, const fvec_t * in, fvec_t * out);
[96fb8ad]116
[f44b111]117/** change yin or yinfft tolerance threshold
[6d4ec49]118
[ca1abdd]119  \param o pitch detection object as returned by new_aubio_pitch()
[93177fa]120  \param tol tolerance default is 0.15 for yin and 0.85 for yinfft
[6d4ec49]121
[f44b111]122*/
[fddfa64]123uint_t aubio_pitch_set_tolerance (aubio_pitch_t * o, smpl_t tol);
[f44b111]124
[0cf2b44]125/** get yin or yinfft tolerance threshold
126
127  \param o pitch detection object as returned by new_aubio_pitch()
128  \return tolerance (default is 0.15 for yin and 0.85 for yinfft)
129
130*/
131smpl_t aubio_pitch_get_tolerance (aubio_pitch_t * o);
132
[f44b111]133/** deletion of the pitch detection object
[6d4ec49]134
[ca1abdd]135  \param o pitch detection object as returned by new_aubio_pitch()
[6d4ec49]136
[f44b111]137*/
[ca1abdd]138void del_aubio_pitch (aubio_pitch_t * o);
[96fb8ad]139
[f44b111]140/** creation of the pitch detection object
[6d4ec49]141
[3ac7cb0]142  \param method set pitch detection algorithm
143  \param buf_size size of the input buffer to analyse
144  \param hop_size step size between two consecutive analysis instant
[6d4ec49]145  \param samplerate sampling rate of the signal
146
[f0dd5fb]147  \return newly created ::aubio_pitch_t
148
[f44b111]149*/
[ce3ff2b]150aubio_pitch_t *new_aubio_pitch (const char_t * method,
[168337e]151    uint_t buf_size, uint_t hop_size, uint_t samplerate);
[fe163ad]152
[f0dd5fb]153/** set the output unit of the pitch detection object
[93177fa]154
[ca1abdd]155  \param o pitch detection object as returned by new_aubio_pitch()
[93177fa]156  \param mode set pitch units for output
157
[9ad0dcc]158  mode can be one of "Hz", "midi", "cent", or "bin". Defaults to "Hz".
159
[4b7a740]160  \return 0 if successfull, non-zero otherwise
161
[93177fa]162*/
[ce3ff2b]163uint_t aubio_pitch_set_unit (aubio_pitch_t * o, const char_t * mode);
[96fb8ad]164
[8c3f717]165/** set the silence threshold of the pitch detection object
166
167  \param o pitch detection object as returned by new_aubio_pitch()
168  \param silence level threshold under which pitch should be ignored, in dB
169
[4b7a740]170  \return 0 if successfull, non-zero otherwise
171
[8c3f717]172*/
173uint_t aubio_pitch_set_silence (aubio_pitch_t * o, smpl_t silence);
174
175/** set the silence threshold of the pitch detection object
176
[4b7a740]177  \param o pitch detection object as returned by ::new_aubio_pitch()
[8c3f717]178
[4b7a740]179  \return level threshold under which pitch should be ignored, in dB
[8c3f717]180
181*/
182smpl_t aubio_pitch_get_silence (aubio_pitch_t * o);
183
[426e6f7]184/** get the current confidence
185
186  \param o pitch detection object as returned by new_aubio_pitch()
187
[4b7a740]188  \return the current confidence of the pitch algorithm
[426e6f7]189
190*/
191smpl_t aubio_pitch_get_confidence (aubio_pitch_t * o);
192
[96fb8ad]193#ifdef __cplusplus
194}
195#endif
196
[6f42c16]197#endif /* AUBIO_PITCH_H */
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