ref: 212da72b71106bfcb89e043ad41b8422e30de274
parent: dddf1f5c839a1e984c3365718e6f47f34dab85e3
parent: 69134340c402870c34c3670cc4c791dfce6c2c78
author: Paul Brossier <piem@piem.org>
date: Mon Dec 3 05:57:52 EST 2007
merge from main branch
--- a/README
+++ b/README
@@ -118,6 +118,6 @@
CONTACT
-The home page of this project can be found at http://aubio.piem.org/. Feel free
+The home page of this project can be found at http://aubio.org/. Feel free
to drop me a comment (piem@altern.org) or on the mailing list, aubio@piem.org.
Suggestions and feedback are most welcome.
--- a/configure.ac
+++ b/configure.ac
@@ -81,6 +81,8 @@
dnl Check for libtool
AC_LIBTOOL_DLOPEN
dnl AC_DISABLE_STATIC
+dnl allow cross compiling
+AC_LIBTOOL_WIN32_DLL
AC_PROG_LIBTOOL
AC_CONFIG_HEADERS(src/config.h)
@@ -88,7 +90,7 @@
AM_CONDITIONAL(MINGW, false)
AM_CONDITIONAL(DARWIN, false)
-case "${build_os}" in
+case "${host_os}" in
*mingw* | *cygwin*)
mingw32_support="yes"
AC_CHECK_HEADER(windows.h)
--- a/examples/utils.c
+++ b/examples/utils.c
@@ -21,7 +21,6 @@
int lash_main (void);
void save_data (void);
void restore_data(lash_config_t * lash_config);
-void flush_process(aubio_process_func_t process_func, aubio_print_func_t print);
pthread_t lash_thread;
#endif /* LASH_SUPPORT */
@@ -409,7 +408,7 @@
}
void flush_process(aubio_process_func_t process_func, aubio_print_func_t print){
- uint i,j;
+ uint_t i,j;
for (i = 0; i < channels; i++) {
for (j = 0; j < obuf->length; j++) {
fvec_write_sample(obuf,0.,i,j);
--- a/examples/utils.h
+++ b/examples/utils.h
@@ -56,6 +56,7 @@
(smpl_t **input, smpl_t **output, int nframes);
#endif
void examples_common_process(aubio_process_func_t process_func, aubio_print_func_t print);
+void flush_process(aubio_process_func_t process_func, aubio_print_func_t print);
void send_noteon(int pitch, int velo);
--- a/src/Makefile.am
+++ b/src/Makefile.am
@@ -1,87 +1,87 @@
-noinst_HEADERS = aubio_priv.h
+noinst_HEADERS = \
+ aubio_priv.h \
+ temporal/filter_priv.h
+
pkginclude_HEADERS = aubio.h \
types.h \
fvec.h \
+ lvec.h \
cvec.h \
- mathutils.h \
+ mathutils.h
+
+pkgincludeutilsdir = $(pkgincludedir)/utils
+pkgincludetemporaldir = $(pkgincludedir)/temporal
+pkgincludespectraldir = $(pkgincludedir)/spectral
+pkgincludepitchdir = $(pkgincludedir)/pitch
+pkgincludeonsetdir = $(pkgincludedir)/onset
+pkgincludetempodir = $(pkgincludedir)/tempo
+
+pkgincludeutils_HEADERS = \
utils/hist.h \
- utils/scale.h \
+ utils/scale.h
+
+pkgincludetemporal_HEADERS = \
temporal/resample.h \
temporal/biquad.h \
temporal/filter.h \
+ temporal/adesign.h \
+ temporal/cdesign.h
+
+pkgincludespectral_HEADERS = \
spectral/filterbank.h \
- spectral/mfcc.c \
+ spectral/mfcc.h \
spectral/phasevoc.h \
spectral/fft.h \
spectral/tss.h \
- spectral/spectral_centroid.h \
+ spectral/spectral_centroid.h
+
+pkgincludepitch_HEADERS = \
pitch/pitchdetection.h \
pitch/pitchmcomb.h \
pitch/pitchyin.h \
pitch/pitchschmitt.h \
pitch/pitchfcomb.h \
- pitch/pitchyinfft.h \
+ pitch/pitchyinfft.h
+
+pkgincludeonset_HEADERS = \
onset/onset.h \
onset/onsetdetection.h \
- onset/peakpick.h \
+ onset/peakpick.h
+
+pkgincludetempo_HEADERS = \
tempo/tempo.h \
tempo/beattracking.h
-nodist_pkginclude_HEADERS = config.h
-
lib_LTLIBRARIES = libaubio.la
-libaubio_la_SOURCES = aubio.h \
- types.h \
+libaubio_la_SOURCES = \
fvec.c \
- fvec.h \
+ lvec.c \
cvec.c \
- cvec.h \
mathutils.c \
- mathutils.h \
utils/hist.c \
- utils/hist.h \
utils/scale.c \
- utils/scale.h \
temporal/resample.c \
- temporal/resample.h \
temporal/biquad.c \
- temporal/biquad.h \
temporal/filter.c \
- temporal/filter.h \
+ temporal/adesign.c \
+ temporal/cdesign.c \
spectral/filterbank.c \
- spectral/filterbank.h \
- spectral/mfcc.h \
spectral/mfcc.c \
spectral/phasevoc.c \
- spectral/phasevoc.h \
spectral/fft.c \
- spectral/fft.h \
spectral/tss.c \
- spectral/tss.h \
spectral/spectral_centroid.c \
- spectral/spectral_centroid.h \
pitch/pitchdetection.c \
- pitch/pitchdetection.h \
pitch/pitchmcomb.c \
- pitch/pitchmcomb.h \
pitch/pitchyin.c \
- pitch/pitchyin.h \
pitch/pitchschmitt.c \
- pitch/pitchschmitt.h \
pitch/pitchfcomb.c \
- pitch/pitchfcomb.h \
pitch/pitchyinfft.c \
- pitch/pitchyinfft.h \
onset/onset.c \
- onset/onset.h \
onset/onsetdetection.c \
- onset/onsetdetection.h \
onset/peakpick.c \
- onset/peakpick.h \
tempo/tempo.c \
- tempo/tempo.h \
- tempo/beattracking.c \
- tempo/beattracking.h
+ tempo/beattracking.c
AM_CFLAGS = @AUBIO_CFLAGS@ @FFTWLIB_CFLAGS@ @SAMPLERATE_CFLAGS@
libaubio_la_LIBADD = @FFTWLIB_LIBS@ @SAMPLERATE_LIBS@ @LTLIBOBJS@
--- a/src/aubio.h
+++ b/src/aubio.h
@@ -60,6 +60,7 @@
#include "types.h"
#include "fvec.h"
#include "cvec.h"
+#include "lvec.h"
#include "mathutils.h"
#include "utils/scale.h"
#include "utils/hist.h"
@@ -67,6 +68,8 @@
#include "temporal/resample.h"
#include "temporal/biquad.h"
#include "temporal/filter.h"
+#include "temporal/adesign.h"
+#include "temporal/cdesign.h"
#include "spectral/filterbank.h"
#include "spectral/mfcc.h"
#include "spectral/fft.h"
--- a/src/aubio_priv.h
+++ b/src/aubio_priv.h
@@ -169,6 +169,8 @@
#define ELEM_SWAP(a,b) { register smpl_t t=(a);(a)=(b);(b)=t; }
+#define ISDENORMAL(f) f < 1.e-37
+
#define UNUSED __attribute__((unused))
#endif/*_AUBIO_PRIV_H*/
--- /dev/null
+++ b/src/lvec.c
@@ -1,0 +1,63 @@
+/*
+ Copyright (C) 2003-2007 Paul Brossier <piem@piem.org>
+
+ This program is free software; you can redistribute it and/or modify
+ it under the terms of the GNU General Public License as published by
+ the Free Software Foundation; either version 2 of the License, or
+ (at your option) any later version.
+
+ This program is distributed in the hope that it will be useful,
+ but WITHOUT ANY WARRANTY; without even the implied warranty of
+ MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ GNU General Public License for more details.
+
+ You should have received a copy of the GNU General Public License
+ along with this program; if not, write to the Free Software
+ Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+
+*/
+
+#include "aubio_priv.h"
+#include "lvec.h"
+
+lvec_t * new_lvec( uint_t length, uint_t channels) {
+ lvec_t * s = AUBIO_NEW(lvec_t);
+ uint_t i,j;
+ s->channels = channels;
+ s->length = length;
+ s->data = AUBIO_ARRAY(lsmp_t*,s->channels);
+ for (i=0; i< s->channels; i++) {
+ s->data[i] = AUBIO_ARRAY(lsmp_t, s->length);
+ for (j=0; j< s->length; j++) {
+ s->data[i][j]=0.;
+ }
+ }
+ return s;
+}
+
+void del_lvec(lvec_t *s) {
+ uint_t i;
+ for (i=0; i<s->channels; i++) {
+ AUBIO_FREE(s->data[i]);
+ }
+ AUBIO_FREE(s->data);
+ AUBIO_FREE(s);
+}
+
+void lvec_write_sample(lvec_t *s, lsmp_t data, uint_t channel, uint_t position) {
+ s->data[channel][position] = data;
+}
+lsmp_t lvec_read_sample(lvec_t *s, uint_t channel, uint_t position) {
+ return s->data[channel][position];
+}
+void lvec_put_channel(lvec_t *s, lsmp_t * data, uint_t channel) {
+ s->data[channel] = data;
+}
+lsmp_t * lvec_get_channel(lvec_t *s, uint_t channel) {
+ return s->data[channel];
+}
+
+lsmp_t ** lvec_get_data(lvec_t *s) {
+ return s->data;
+}
+
--- /dev/null
+++ b/src/lvec.h
@@ -1,0 +1,120 @@
+/*
+ Copyright (C) 2003-2007 Paul Brossier <piem@piem.org>
+
+ This program is free software; you can redistribute it and/or modify
+ it under the terms of the GNU General Public License as published by
+ the Free Software Foundation; either version 2 of the License, or
+ (at your option) any later version.
+
+ This program is distributed in the hope that it will be useful,
+ but WITHOUT ANY WARRANTY; without even the implied warranty of
+ MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ GNU General Public License for more details.
+
+ You should have received a copy of the GNU General Public License
+ along with this program; if not, write to the Free Software
+ Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+
+*/
+
+#ifndef _LVEC_H
+#define _LVEC_H
+
+#ifdef __cplusplus
+extern "C" {
+#endif
+
+/** \file
+
+ Real buffers
+
+ This file specifies the lvec_t buffer type, which is used in aubio to
+ store double precision real data.
+
+*/
+
+/** Sample buffer type */
+typedef struct _lvec_t lvec_t;
+/** Buffer for real values */
+struct _lvec_t {
+ uint_t length; /**< length of buffer */
+ uint_t channels; /**< number of channels */
+ lsmp_t **data; /**< data array of size [length] * [channels] */
+};
+/** lvec_t buffer creation function
+
+ \param length the length of the buffer to create
+ \param channels the number of channels in the buffer
+
+*/
+lvec_t * new_lvec(uint_t length, uint_t channels);
+/** lvec_t buffer deletion function
+
+ \param s buffer to delete as returned by new_lvec()
+
+*/
+void del_lvec(lvec_t *s);
+/** read sample value in a buffer
+
+ Note that this function is not used in the aubio library, since the same
+ result can be obtained using vec->data[channel][position]. Its purpose is to
+ access these values from wrappers, as created by swig.
+
+ \param s vector to read from
+ \param channel channel to read from
+ \param position sample position to read from
+
+*/
+lsmp_t lvec_read_sample(lvec_t *s, uint_t channel, uint_t position);
+/** write sample value in a buffer
+
+ Note that this function is not used in the aubio library, since the same
+ result can be obtained by assigning vec->data[channel][position]. Its purpose
+ is to access these values from wrappers, as created by swig.
+
+ \param s vector to write to
+ \param data value to write in s->data[channel][position]
+ \param channel channel to write to
+ \param position sample position to write to
+
+*/
+void lvec_write_sample(lvec_t *s, lsmp_t data, uint_t channel, uint_t position);
+/** read channel vector from a buffer
+
+ Note that this function is not used in the aubio library, since the same
+ result can be obtained with vec->data[channel]. Its purpose is to access
+ these values from wrappers, as created by swig.
+
+ \param s vector to read from
+ \param channel channel to read from
+
+*/
+lsmp_t * lvec_get_channel(lvec_t *s, uint_t channel);
+/** write channel vector into a buffer
+
+ Note that this function is not used in the aubio library, since the same
+ result can be obtained by assigning vec->data[channel]. Its purpose is to
+ access these values from wrappers, as created by swig.
+
+ \param s vector to write to
+ \param data vector of [length] values to write
+ \param channel channel to write to
+
+*/
+void lvec_put_channel(lvec_t *s, lsmp_t * data, uint_t channel);
+/** read data from a buffer
+
+ Note that this function is not used in the aubio library, since the same
+ result can be obtained with vec->data. Its purpose is to access these values
+ from wrappers, as created by swig.
+
+ \param s vector to read from
+
+*/
+lsmp_t ** lvec_get_data(lvec_t *s);
+
+#ifdef __cplusplus
+}
+#endif
+
+#endif /* _LVEC_H */
--- a/src/pitch/pitchdetection.c
+++ b/src/pitch/pitchdetection.c
@@ -21,7 +21,7 @@
#include "cvec.h"
#include "spectral/phasevoc.h"
#include "mathutils.h"
-#include "temporal/filter.h"
+#include "temporal/cdesign.h"
#include "pitch/pitchmcomb.h"
#include "pitch/pitchyin.h"
#include "pitch/pitchfcomb.h"
@@ -102,7 +102,7 @@
p->pv = new_aubio_pvoc(bufsize, hopsize, channels);
p->fftgrain = new_cvec(bufsize, channels);
p->mcomb = new_aubio_pitchmcomb(bufsize,hopsize,channels,samplerate);
- p->filter = new_aubio_cdsgn_filter(samplerate);
+ p->filter = new_aubio_cdsgn_filter(samplerate, channels);
p->callback = aubio_pitchdetection_mcomb;
break;
case aubio_pitch_fcomb:
--- a/src/spectral/fft.c
+++ b/src/spectral/fft.c
@@ -154,6 +154,8 @@
for (i = 0; i < spectrum->channels; i++) {
spectrum->phas[i][0] = 0.;
for (j=1; j < spectrum->length - 1; j++) {
+ if (compspec->data[i][j] == 0.) spectrum->phas[i][j] = 0;
+ else
spectrum->phas[i][j] = atan2f(compspec->data[i][compspec->length-j],
compspec->data[i][j]);
}
--- /dev/null
+++ b/src/temporal/adesign.c
@@ -1,0 +1,58 @@
+/*
+ Copyright (C) 2003-2007 Paul Brossier
+
+ This program is free software; you can redistribute it and/or modify
+ it under the terms of the GNU General Public License as published by
+ the Free Software Foundation; either version 2 of the License, or
+ (at your option) any later version.
+
+ This program is distributed in the hope that it will be useful,
+ but WITHOUT ANY WARRANTY; without even the implied warranty of
+ MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ GNU General Public License for more details.
+
+ You should have received a copy of the GNU General Public License
+ along with this program; if not, write to the Free Software
+ Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+
+*/
+
+
+#include "aubio_priv.h"
+#include "types.h"
+#include "fvec.h"
+#include "temporal/filter.h"
+#include "temporal/filter_priv.h"
+#include "temporal/adesign.h"
+
+aubio_filter_t * new_aubio_adsgn_filter(uint_t samplerate, uint_t channels) {
+ aubio_filter_t * f = new_aubio_filter(samplerate, 7, channels);
+ lsmp_t * a = f->a->data[0];
+ lsmp_t * b = f->b->data[0];
+ /* uint_t l; */
+ /* for now, 44100, adsgn */
+ a[0] = 1.00000000000000000000000000000000000000000000000000000;
+ a[1] = -4.01957618111583236952810693765059113502502441406250000;
+ a[2] = 6.18940644292069386267485242569819092750549316406250000;
+ a[3] = -4.45319890354411640487342083360999822616577148437500000;
+ a[4] = 1.42084294962187751565352300531230866909027099609375000;
+ a[5] = -0.14182547383030480458998567883099894970655441284179688;
+ a[6] = 0.00435117723349511334451911181986361043527722358703613;
+ b[0] = 0.25574112520425740235907596797915175557136535644531250;
+ b[1] = -0.51148225040851391653973223583307117223739624023437500;
+ b[2] = -0.25574112520426162120656954357400536537170410156250000;
+ b[3] = 1.02296450081703405032840237254276871681213378906250000;
+ b[4] = -0.25574112520426051098354491841746494174003601074218750;
+ b[5] = -0.51148225040851369449512731080176308751106262207031250;
+ b[6] = 0.25574112520425729133677350546349771320819854736328125;
+ /* DBG: filter coeffs at creation time */
+ /*
+ for (l=0; l<f->order; l++){
+ AUBIO_DBG("a[%d]=\t%1.16f\tb[%d]=\t%1.16f\n",l,a[l],l,b[l]);
+ }
+ */
+ f->a->data[0] = a;
+ f->b->data[0] = b;
+ return f;
+}
+
--- /dev/null
+++ b/src/temporal/adesign.h
@@ -1,0 +1,28 @@
+/*
+ Copyright (C) 2003-2007 Paul Brossier
+
+ This program is free software; you can redistribute it and/or modify
+ it under the terms of the GNU General Public License as published by
+ the Free Software Foundation; either version 2 of the License, or
+ (at your option) any later version.
+
+ This program is distributed in the hope that it will be useful,
+ but WITHOUT ANY WARRANTY; without even the implied warranty of
+ MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ GNU General Public License for more details.
+
+ You should have received a copy of the GNU General Public License
+ along with this program; if not, write to the Free Software
+ Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+
+*/
+
+/** create a new A-design filter
+
+ \param samplerate sampling-rate of the signal to filter
+
+*/
+aubio_filter_t * new_aubio_adsgn_filter(uint_t samplerate, uint_t channels);
+
+#define aubio_adsgn_filter_do aubio_filter_do
+#define del_aubio_adsgn_filter del_aubio_filter
--- /dev/null
+++ b/src/temporal/cdesign.c
@@ -1,0 +1,54 @@
+/*
+ Copyright (C) 2003-2007 Paul Brossier
+
+ This program is free software; you can redistribute it and/or modify
+ it under the terms of the GNU General Public License as published by
+ the Free Software Foundation; either version 2 of the License, or
+ (at your option) any later version.
+
+ This program is distributed in the hope that it will be useful,
+ but WITHOUT ANY WARRANTY; without even the implied warranty of
+ MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ GNU General Public License for more details.
+
+ You should have received a copy of the GNU General Public License
+ along with this program; if not, write to the Free Software
+ Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+
+*/
+
+
+#include "aubio_priv.h"
+#include "types.h"
+#include "fvec.h"
+#include "temporal/filter.h"
+#include "temporal/filter_priv.h"
+#include "temporal/adesign.h"
+
+aubio_filter_t * new_aubio_cdsgn_filter(uint_t samplerate, uint_t channels) {
+ aubio_filter_t * f = new_aubio_filter(samplerate, 5, channels);
+ lsmp_t * a = f->a->data[0];
+ lsmp_t * b = f->b->data[0];
+ /* uint_t l; */
+ /* for now, 44100, cdsgn */
+ a[0] = 1.000000000000000000000000000000000000000000000000000000000000;
+ a[1] = -2.134674963687040794013682898366823792457580566406250000000000;
+ a[2] = 1.279333533236063358273781886964570730924606323242187500000000;
+ a[3] = -0.149559846089396208945743182994192466139793395996093750000000;
+ a[4] = 0.004908700174624848651394604104325480875559151172637939453125;
+ b[0] = 0.217008561949218803377448239189106971025466918945312500000000;
+ b[1] = -0.000000000000000222044604925031308084726333618164062500000000;
+ b[2] = -0.434017123898438272888711253472138196229934692382812500000000;
+ b[3] = 0.000000000000000402455846426619245903566479682922363281250000;
+ b[4] = 0.217008561949218969910901932962588034570217132568359375000000;
+ /* DBG: filter coeffs at creation time */
+ /*
+ for (l=0; l<f->order; l++){
+ AUBIO_DBG("a[%d]=\t%1.16f\tb[%d]=\t%1.16f\n",l,a[l],l,b[l]);
+ }
+ */
+ f->a->data[0] = a;
+ f->b->data[0] = b;
+ return f;
+}
+
--- /dev/null
+++ b/src/temporal/cdesign.h
@@ -1,0 +1,30 @@
+/*
+ Copyright (C) 2003-2007 Paul Brossier
+
+ This program is free software; you can redistribute it and/or modify
+ it under the terms of the GNU General Public License as published by
+ the Free Software Foundation; either version 2 of the License, or
+ (at your option) any later version.
+
+ This program is distributed in the hope that it will be useful,
+ but WITHOUT ANY WARRANTY; without even the implied warranty of
+ MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ GNU General Public License for more details.
+
+ You should have received a copy of the GNU General Public License
+ along with this program; if not, write to the Free Software
+ Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+
+*/
+
+#include "temporal/filter.h"
+
+/** create a new C-design filter
+
+ \param samplerate sampling-rate of the signal to filter
+
+*/
+aubio_filter_t * new_aubio_cdsgn_filter(uint_t samplerate, uint_t channels);
+
+#define aubio_cdsgn_filter_do aubio_filter_do
+#define del_aubio_cdsgn_filter del_aubio_filter
--- a/src/temporal/filter.c
+++ b/src/temporal/filter.c
@@ -23,79 +23,49 @@
#include "aubio_priv.h"
#include "fvec.h"
+#include "lvec.h"
#include "mathutils.h"
#include "temporal/filter.h"
+#include "temporal/filter_priv.h"
-struct _aubio_filter_t {
- uint_t order;
- lsmp_t * a;
- lsmp_t * b;
- lsmp_t * y;
- lsmp_t * x;
-};
-
-/* bug: mono only */
void aubio_filter_do(aubio_filter_t * f, fvec_t * in) {
- uint_t i,j,l, order = f->order;
- lsmp_t *x = f->x;
- lsmp_t *y = f->y;
- lsmp_t *a = f->a;
- lsmp_t *b = f->b;
- i=0;//for (i=0;i<in->channels;i++) {
- for (j = 0; j < in->length; j++) {
- /* new input */
- //AUBIO_DBG("befor %f\t", in->data[i][j]);
- x[0] = in->data[i][j];
- y[0] = b[0] * x[0];
- for (l=1;l<order; l++) {
- y[0] += b[l] * x[l];
- y[0] -= a[l] * y[l];
- } /* + 1e-37; for denormal ? */
- /* new output */
- in->data[i][j] = y[0];
- //AUBIO_DBG("after %f\n", in->data[i][j]);
- /* store states for next sample */
- for (l=order-1; l>0; l--){
- x[l] = x[l-1];
- y[l] = y[l-1];
- }
- }
- /* store states for next buffer */
- f->x = x;
- f->y = y;
- //}
+ aubio_filter_do_outplace(f, in, in);
}
void aubio_filter_do_outplace(aubio_filter_t * f, fvec_t * in, fvec_t * out) {
uint_t i,j,l, order = f->order;
- lsmp_t *x = f->x;
- lsmp_t *y = f->y;
- lsmp_t *a = f->a;
- lsmp_t *b = f->b;
+ lsmp_t *x;
+ lsmp_t *y;
+ lsmp_t *a = f->a->data[0];
+ lsmp_t *b = f->b->data[0];
- i=0; // works in mono only !!!
- //for (i=0;i<in->channels;i++) {
- for (j = 0; j < in->length; j++) {
- /* new input */
- x[0] = in->data[i][j];
- y[0] = b[0] * x[0];
- for (l=1;l<order; l++) {
- y[0] += b[l] * x[l];
- y[0] -= a[l] * y[l];
+ for (i = 0; i < in->channels; i++) {
+ x = f->x->data[i];
+ y = f->y->data[i];
+ for (j = 0; j < in->length; j++) {
+ /* new input */
+ if (ISDENORMAL(in->data[i][j])) {
+ x[0] = y[0] = 0.;
+ } else {
+ x[0] = in->data[i][j];
+ y[0] = b[0] * x[0];
+ for (l=1;l<order; l++) {
+ y[0] += b[l] * x[l];
+ y[0] -= a[l] * y[l];
+ }
+ }
+ /* new output */
+ out->data[i][j] = y[0];
+ /* store for next sample */
+ for (l=order-1; l>0; l--){
+ x[l] = x[l-1];
+ y[l] = y[l-1];
+ }
}
- // + 1e-37;
- /* new output */
- out->data[i][j] = y[0];
- /* store for next sample */
- for (l=order-1; l>0; l--){
- x[l] = x[l-1];
- y[l] = y[l-1];
- }
+ /* store for next run */
+ f->x->data[i] = x;
+ f->y->data[i] = y;
}
- /* store for next run */
- f->x = x;
- f->y = y;
- //}
}
/*
@@ -132,86 +102,14 @@
in->data[i][j] = tmp->data[i][length-j-1];
}
-
-aubio_filter_t * new_aubio_adsgn_filter(uint_t samplerate) {
- aubio_filter_t * f = new_aubio_filter(samplerate, 7);
- lsmp_t * a = f->a;
- lsmp_t * b = f->b;
- /* uint_t l; */
- /* for now, 44100, adsgn */
- a[0] = 1.00000000000000000000000000000000000000000000000000000;
- a[1] = -4.01957618111583236952810693765059113502502441406250000;
- a[2] = 6.18940644292069386267485242569819092750549316406250000;
- a[3] = -4.45319890354411640487342083360999822616577148437500000;
- a[4] = 1.42084294962187751565352300531230866909027099609375000;
- a[5] = -0.14182547383030480458998567883099894970655441284179688;
- a[6] = 0.00435117723349511334451911181986361043527722358703613;
- b[0] = 0.25574112520425740235907596797915175557136535644531250;
- b[1] = -0.51148225040851391653973223583307117223739624023437500;
- b[2] = -0.25574112520426162120656954357400536537170410156250000;
- b[3] = 1.02296450081703405032840237254276871681213378906250000;
- b[4] = -0.25574112520426051098354491841746494174003601074218750;
- b[5] = -0.51148225040851369449512731080176308751106262207031250;
- b[6] = 0.25574112520425729133677350546349771320819854736328125;
- /* DBG: filter coeffs at creation time */
- /*
- for (l=0; l<f->order; l++){
- AUBIO_DBG("a[%d]=\t%1.16f\tb[%d]=\t%1.16f\n",l,a[l],l,b[l]);
- }
- */
- f->a = a;
- f->b = b;
- return f;
-}
-
-aubio_filter_t * new_aubio_cdsgn_filter(uint_t samplerate) {
- aubio_filter_t * f = new_aubio_filter(samplerate, 5);
- lsmp_t * a = f->a;
- lsmp_t * b = f->b;
- /* uint_t l; */
- /* for now, 44100, cdsgn */
- a[0] = 1.000000000000000000000000000000000000000000000000000000000000;
- a[1] = -2.134674963687040794013682898366823792457580566406250000000000;
- a[2] = 1.279333533236063358273781886964570730924606323242187500000000;
- a[3] = -0.149559846089396208945743182994192466139793395996093750000000;
- a[4] = 0.004908700174624848651394604104325480875559151172637939453125;
- b[0] = 0.217008561949218803377448239189106971025466918945312500000000;
- b[1] = -0.000000000000000222044604925031308084726333618164062500000000;
- b[2] = -0.434017123898438272888711253472138196229934692382812500000000;
- b[3] = 0.000000000000000402455846426619245903566479682922363281250000;
- b[4] = 0.217008561949218969910901932962588034570217132568359375000000;
- /* DBG: filter coeffs at creation time */
- /*
- for (l=0; l<f->order; l++){
- AUBIO_DBG("a[%d]=\t%1.16f\tb[%d]=\t%1.16f\n",l,a[l],l,b[l]);
- }
- */
- f->a = a;
- f->b = b;
- return f;
-}
-
-aubio_filter_t * new_aubio_filter(uint_t samplerate UNUSED, uint_t order) {
+aubio_filter_t * new_aubio_filter(uint_t samplerate UNUSED, uint_t order, uint_t channels) {
aubio_filter_t * f = AUBIO_NEW(aubio_filter_t);
- lsmp_t * x = f->x;
- lsmp_t * y = f->y;
- lsmp_t * a = f->a;
- lsmp_t * b = f->b;
- uint_t l;
+ f->x = new_lvec(order, channels);
+ f->y = new_lvec(order, channels);
+ f->a = new_lvec(order, 1);
+ f->b = new_lvec(order, 1);
+ f->a->data[0][1] = 1.;
f->order = order;
- a = AUBIO_ARRAY(lsmp_t,f->order);
- b = AUBIO_ARRAY(lsmp_t,f->order);
- x = AUBIO_ARRAY(lsmp_t,f->order);
- y = AUBIO_ARRAY(lsmp_t,f->order);
- /* initial states to zeros */
- for (l=0; l<f->order; l++){
- x[l] = 0.;
- y[l] = 0.;
- }
- f->x = x;
- f->y = y;
- f->a = a;
- f->b = b;
return f;
}
--- a/src/temporal/filter.h
+++ b/src/temporal/filter.h
@@ -68,21 +68,10 @@
\param samplerate signal sampling rate
\param order order of the filter (number of coefficients)
+ \param channels number of channels to allocate
*/
-aubio_filter_t * new_aubio_filter(uint_t samplerate, uint_t order);
-/** create a new A-design filter
-
- \param samplerate sampling-rate of the signal to filter
-
-*/
-aubio_filter_t * new_aubio_adsgn_filter(uint_t samplerate);
-/** create a new C-design filter
-
- \param samplerate sampling-rate of the signal to filter
-
-*/
-aubio_filter_t * new_aubio_cdsgn_filter(uint_t samplerate);
+aubio_filter_t * new_aubio_filter(uint_t samplerate, uint_t order, uint_t channels);
/** delete a filter object
\param f filter object to delete
--- /dev/null
+++ b/src/temporal/filter_priv.h
@@ -1,0 +1,29 @@
+/*
+ Copyright (C) 2003-2008 Paul Brossier
+
+ This program is free software; you can redistribute it and/or modify
+ it under the terms of the GNU General Public License as published by
+ the Free Software Foundation; either version 2 of the License, or
+ (at your option) any later version.
+
+ This program is distributed in the hope that it will be useful,
+ but WITHOUT ANY WARRANTY; without even the implied warranty of
+ MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ GNU General Public License for more details.
+
+ You should have received a copy of the GNU General Public License
+ along with this program; if not, write to the Free Software
+ Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+
+*/
+
+#include "lvec.h"
+struct _aubio_filter_t {
+ uint_t order;
+ lvec_t * a;
+ lvec_t * b;
+ lvec_t * y;
+ lvec_t * x;
+};
+
+
--- a/swig/aubio.i
+++ b/swig/aubio.i
@@ -85,14 +85,20 @@
extern void aubio_fft_get_real(cvec_t * spectrum, fvec_t * compspec);
/* filter */
-extern aubio_filter_t * new_aubio_filter(uint_t samplerate, uint_t order);
-extern aubio_filter_t * new_aubio_adsgn_filter(uint_t samplerate);
-extern aubio_filter_t * new_aubio_cdsgn_filter(uint_t samplerate);
+extern aubio_filter_t * new_aubio_filter(uint_t samplerate, uint_t order, uint_t channels);
extern void aubio_filter_do(aubio_filter_t * b, fvec_t * in);
extern void aubio_filter_do_outplace(aubio_filter_t * b, fvec_t * in, fvec_t * out);
extern void aubio_filter_do_filtfilt(aubio_filter_t * b, fvec_t * in, fvec_t * tmp);
-/*extern int del_aubio_filter(aubio_filter_t * b);*/
+extern void del_aubio_filter(aubio_filter_t * b);
+extern aubio_filter_t * new_aubio_adsgn_filter(uint_t samplerate, uint_t channels);
+extern void aubio_adsgn_filter_do(aubio_filter_t * b, fvec_t * in);
+extern void del_aubio_adsgn_filter(aubio_filter_t * b);
+
+extern aubio_filter_t * new_aubio_cdsgn_filter(uint_t samplerate, uint_t channels);
+extern void aubio_cdsgn_filter_do(aubio_filter_t * b, fvec_t * in);
+extern void del_aubio_cdsgn_filter(aubio_filter_t * b);
+
/* biquad */
extern aubio_biquad_t * new_aubio_biquad(lsmp_t b1, lsmp_t b2, lsmp_t b3, lsmp_t a2, lsmp_t a3);
extern void aubio_biquad_do(aubio_biquad_t * b, fvec_t * in);
@@ -167,7 +173,7 @@
void aubio_mfcc_do(aubio_mfcc_t *mf, cvec_t *in, fvec_t *out);
/* scale */
-extern aubio_scale_t * new_aubio_scale(smpl_t flow, smpl_t fhig, smpl_t ilow, smpl_t ihig );
+extern aubio_scale_t * new_aubio_scale(smpl_t flow, smpl_t fhig, smpl_t ilow, smpl_t ihig);
extern void aubio_scale_set (aubio_scale_t *s, smpl_t ilow, smpl_t ihig, smpl_t olow, smpl_t ohig);
extern void aubio_scale_do(aubio_scale_t *s, fvec_t * input);
extern void del_aubio_scale(aubio_scale_t *s);
@@ -213,7 +219,7 @@
aubio_pitch_mcomb,
aubio_pitch_schmitt,
aubio_pitch_fcomb,
- aubio_pitch_yinfft
+ aubio_pitch_yinfft
} aubio_pitchdetection_type;
typedef enum {
@@ -230,11 +236,11 @@
void del_aubio_pitchdetection(aubio_pitchdetection_t * p);
aubio_pitchdetection_t * new_aubio_pitchdetection(uint_t bufsize,
- uint_t hopsize,
- uint_t channels,
- uint_t samplerate,
- aubio_pitchdetection_type type,
- aubio_pitchdetection_mode mode);
+ uint_t hopsize,
+ uint_t channels,
+ uint_t samplerate,
+ aubio_pitchdetection_type type,
+ aubio_pitchdetection_mode mode);
/* pitch mcomb */
@@ -262,9 +268,11 @@
/* peakpicker */
aubio_pickpeak_t * new_aubio_peakpicker(smpl_t threshold);
uint_t aubio_peakpick_pimrt(fvec_t * DF, aubio_pickpeak_t * p);
-smpl_t aubio_peakpick_pimrt_getval(aubio_pickpeak_t* p);
uint_t aubio_peakpick_pimrt_wt( fvec_t* DF, aubio_pickpeak_t* p, smpl_t* peakval );
+smpl_t aubio_peakpick_pimrt_getval(aubio_pickpeak_t* p);
void del_aubio_peakpicker(aubio_pickpeak_t * p);
+void aubio_peakpicker_set_threshold(aubio_pickpeak_t * p, smpl_t threshold);
+smpl_t aubio_peakpicker_get_threshold(aubio_pickpeak_t * p);
/* transient/steady state separation */
aubio_tss_t * new_aubio_tss(smpl_t thrs, smpl_t alfa, smpl_t beta,
@@ -474,9 +482,9 @@
sint_t aubio_midi_player_set_bpm(aubio_midi_player_t* player, sint_t bpm);
sint_t aubio_midi_player_join(aubio_midi_player_t* player);
sint_t aubio_track_send_events(aubio_track_t* track,
-/* aubio_synth_t* synth, */
- aubio_midi_player_t* player,
- uint_t ticks);
+ /* aubio_synth_t* synth, */
+ aubio_midi_player_t* player,
+ uint_t ticks);
sint_t aubio_midi_send_event(aubio_midi_player_t* player, aubio_midi_event_t* event);
/* midi parser */
--- /dev/null
+++ b/tests/demo/bench/onset/Makefile.am
@@ -1,0 +1,44 @@
+export BASEDIR=../../../..
+export PYTHONPATH=$(BASEDIR)/python
+export LD_LIBRARY_PATH=$(BASEDIR)/src/.libs:$(BASEDIR)/ext/.libs
+
+DETAILSOURCE = \
+ /var/tmp/Onset-Mirex2005/poly_pitched \
+ /var/tmp/Onset-Mirex2005/solo_bars_and_bells \
+ /var/tmp/Onset-Mirex2005/solo_brass \
+ /var/tmp/Onset-Mirex2005/solo_drums \
+ /var/tmp/Onset-Mirex2005/solo_plucked_strings \
+ /var/tmp/Onset-Mirex2005/solo_singing_voice \
+ /var/tmp/Onset-Mirex2005/solo_sustained_strings \
+ /var/tmp/Onset-Mirex2005/solo_winds \
+ /var/tmp/Onset-Mirex2005/complex
+
+SOURCE = /var/tmp/Onset-Mirex2005
+
+TESTSOURCE = \
+ /var/tmp/Onset-Mirex2005/solo_bars_and_bells \
+ /var/tmp/Onset-Mirex2005/solo_winds \
+ /archives/samples/DB/PercussivePhrases/CM18/Samba_Audio
+
+test-aubiocut: $(patsubst %, %.aubiocut, $(TESTSOURCE))
+test-aubiodelay: $(patsubst %, %.aubiodelay, $(TESTSOURCE))
+test-aubiowindow: $(patsubst %, %.aubiowindow, $(TESTSOURCE))
+
+final-aubiocut: $(patsubst %, %.aubiocut, $(DETAILSOURCE) $(SOURCE))
+final-aubiodelay: $(patsubst %, %.aubiodelay, $(SOURCE))
+final-aubiowindow: $(patsubst %, %.aubiowindow, $(SOURCE))
+
+%.aubiocut: %
+ rm -f `basename $@`
+ ./bench-onset $< | tee `basename $@`
+ -diff `basename $@`.ref `basename $@`
+
+%.aubiodelay: %
+ rm -f `basename $@`
+ ./bench-delay $< | tee `basename $@`
+ -diff `basename $@`.ref `basename $@`
+
+%.aubiowindow: %
+ rm -f `basename $@`
+ ./bench-window $< | tee `basename $@`
+ -diff `basename $@`.ref `basename $@`
--- /dev/null
+++ b/tests/demo/bench/onset/bench-delay
@@ -1,0 +1,62 @@
+#! /usr/bin/python
+
+from aubio.bench.onset import benchonset
+from aubio.task.onset import taskonset
+from aubio.task.params import taskparams
+
+class mybenchonset(benchonset):
+
+ def run_bench(self,modes=['dual'],thresholds=[0.5]):
+ from os.path import dirname,basename
+ self.thresholds = thresholds
+ self.pretty_titles()
+
+ for mode in modes:
+ d = []
+ self.params.onsetmode = mode
+ self.params.localmin = True
+ self.params.delay = 1.
+ self.params.threshold = thresholds[0]
+ #
+ self.params.localmin = False
+ self.params.delay = 0.
+ self.dir_eval_print()
+ self.plotdiffs(d,plottitle="Causal")
+ #
+ self.params.localmin = True
+ self.params.delay = 0.
+ self.dir_eval_print()
+ self.plotdiffs(d,plottitle="Local min")
+
+ self.params.localmin = False
+ self.params.delay = 6.
+ self.dir_eval_print()
+ self.plotdiffs(d,plottitle="Fixed delay")
+
+ #self.plotplotdiffs(d)
+ outplot = "_-_".join(("delay",mode,basename(self.datadir) ))
+ for ext in ("png","svg","ps"):
+ self.plotplotdiffs(d,outplot=outplot,extension=ext)
+
+if __name__ == "__main__":
+ import sys
+ if len(sys.argv) > 1: datapath = sys.argv[1]
+ else: print "ERR: a path is required"; sys.exit(1)
+ modes = ['complex', 'energy', 'phase', 'hfc', 'specdiff', 'kl', 'mkl', 'dual']
+ #thresholds = [ 0.01, 0.05, 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7, 0.8, 0.9, 1.0, 1.1, 1.2]
+ #modes = [ 'hfc' ]
+ thresholds = [0.5]
+
+ #datapath = "%s%s" % (DATADIR,'/onset/DB/*/')
+ respath = '/var/tmp/DB-testings'
+
+ benchonset = mybenchonset(datapath,respath,checkres=True,checkanno=True)
+ benchonset.params = taskparams()
+ benchonset.task = taskonset
+ benchonset.valuesdict = {}
+
+ try:
+ #benchonset.auto_learn2(modes=modes)
+ benchonset.run_bench(modes=modes,thresholds=thresholds)
+ except KeyboardInterrupt:
+ sys.exit(1)
--- /dev/null
+++ b/tests/demo/bench/onset/bench-onset
@@ -1,0 +1,68 @@
+#! /usr/bin/python
+
+from aubio.task import *
+
+from aubio.bench.onset import mmean, stdev, benchonset
+
+class mybenchonset(benchonset):
+
+ def run_bench(self,modes=['dual'],thresholds=[0.5]):
+ from os.path import dirname,basename
+ self.thresholds = thresholds
+ self.pretty_titles()
+ d,e,f,g = [],[],[],[]
+ for mode in modes:
+ self.vlist = []
+ self.params.onsetmode = mode
+ #self.params.localmin = True
+
+ for threshold in self.thresholds:
+ self.params.threshold = threshold
+ self.dir_eval_print()
+ self.vlist.append(self.v)
+ self.plotroc(d)
+ self.plotfmeas(e)
+ self.plotpr(f)
+ #self.plothistcat(g)
+
+
+
+ #self.plotplotroc(d)
+ #self.plotplotfmeas(e)
+ #self.plotplotpr(f)
+ outplot = basename(self.datadir)
+ for ext in ("png","svg","ps"):
+ self.plotplotroc(d,outplot=outplot,extension=ext)
+ self.plotplotfmeas(e,outplot=outplot,extension=ext)
+ self.plotplotpr(f,outplot=outplot,extension=ext)
+ #self.plotplothistcat(g,outplot=outplot,extension=ext)
+
+if __name__ == "__main__":
+ import sys
+ if len(sys.argv) > 1: datapath = sys.argv[1]
+ else: print "ERR: a path is required"; sys.exit(1)
+ modes = ['complex', 'energy', 'phase', 'hfc', 'specdiff', 'kl', 'mkl', 'dual']
+ thresholds = [ 0.01, 0.05, 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7, 0.8, 0.9, 1.0, 1.1, 1.2]
+ #modes = [ 'hfc' ]
+ #thresholds = [0.5]
+
+ #datapath = "%s%s" % (DATADIR,'/onset/DB/*/')
+ respath = '/var/tmp/DB-testings'
+
+ benchonset = mybenchonset(datapath,respath,checkres=True,checkanno=True)
+ benchonset.params = taskparams()
+ benchonset.params.dcthreshold = -1.
+ benchonset.params.silence = -100.
+ benchonset.params.delay = 5.
+ benchonset.params.bufsize = 1024
+ benchonset.params.hopsize = 256
+ benchonset.params.step = float(benchonset.params.hopsize)/float(benchonset.params.samplerate)
+ benchonset.params.mintol = 4.1
+ benchonset.task = taskonset
+ benchonset.valuesdict = {}
+
+ try:
+ #benchonset.auto_learn2(modes=modes)
+ benchonset.run_bench(modes=modes,thresholds=thresholds)
+ except KeyboardInterrupt:
+ sys.exit(1)
--- /dev/null
+++ b/tests/demo/bench/onset/bench-window
@@ -1,0 +1,59 @@
+#! /usr/bin/python
+
+from aubio.bench.onset import benchonset
+from aubio.task.onset import taskonset
+from aubio.task.params import taskparams
+
+class mybenchonset(benchonset):
+
+ def run_bench(self,modes=['dual'],thresholds=[0.5]):
+ from os.path import dirname,basename
+ self.thresholds = thresholds
+ self.pretty_titles()
+
+ for mode in modes:
+
+ self.params.onsetmode = mode
+ self.params.localmin = True
+ self.params.delay = 1.
+ self.params.threshold = thresholds[0]
+ self.params.localmin = False
+ #
+ for delay in (0., 4.):
+ d = []
+ self.params.delay = delay
+ for buf in (2048, 1024, 512):
+ for hop in (buf/2, buf/4):
+ self.params.bufsize = buf
+ self.params.hopsize = hop
+ self.params.step = float(self.params.hopsize)/float(self.params.samplerate)
+ self.dir_eval_print()
+ self.plotdiffs(d,plottitle="%s %s" % (buf,hop))
+ #plotplotdiffs(d)
+ outplot = "_-_".join(("window",mode,"delay-%s" % int(delay),
+ basename(self.datadir) ))
+ for ext in ("png","svg","ps"):
+ self.plotplotdiffs(d,outplot=outplot,extension=ext)
+
+if __name__ == "__main__":
+ import sys
+ if len(sys.argv) > 1: datapath = sys.argv[1]
+ else: print "ERR: a path is required"; sys.exit(1)
+ modes = ['complex', 'energy', 'phase', 'hfc', 'specdiff', 'kl', 'mkl', 'dual']
+ #thresholds = [ 0.01, 0.05, 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7, 0.8, 0.9, 1.0, 1.1, 1.2]
+ #modes = [ 'hfc' ]
+ thresholds = [0.5]
+
+ #datapath = "%s%s" % (DATADIR,'/onset/DB/*/')
+ respath = '/var/tmp/DB-testings'
+
+ benchonset = mybenchonset(datapath,respath,checkres=True,checkanno=True)
+ benchonset.params = taskparams()
+ benchonset.task = taskonset
+ benchonset.valuesdict = {}
+
+ try:
+ #benchonset.auto_learn2(modes=modes)
+ benchonset.run_bench(modes=modes,thresholds=thresholds)
+ except KeyboardInterrupt:
+ sys.exit(1)
--- /dev/null
+++ b/tests/demo/bench/pitch/Makefile.am
@@ -1,0 +1,59 @@
+export AUBIODIR=../../../..
+export PYTHONPATH=$(AUBIODIR)/python
+export LD_LIBRARY_PATH=$(AUBIODIR)/src/.libs:$(AUBIODIR)/ext/.libs
+
+CP=cp -a
+
+SOURCE = \
+ $(BASEDIR)/isolated/vibraphone \
+ $(BASEDIR)/isolated/clavinet \
+ $(BASEDIR)/isolated/elecguitar \
+ $(BASEDIR)/isolated/piano \
+ $(BASEDIR)/isolated/rhodes \
+ $(BASEDIR)/isolated
+
+
+MONOSOURCE = \
+ $(BASEDIR)/monophonic/Mirex04/daisy \
+ $(BASEDIR)/monophonic/Mirex04/midi \
+ $(BASEDIR)/monophonic/Mirex04/jazz \
+ $(BASEDIR)/monophonic/Mirex04/pop \
+ $(BASEDIR)/monophonic/Mirex04/opera \
+ $(BASEDIR)/monophonic/Mirex04
+
+POLYSOURCE = \
+ $(BASEDIR)/polyphonic/Mirex04/daisy \
+ $(BASEDIR)/polyphonic/Mirex04/midi \
+ $(BASEDIR)/polyphonic/Mirex04/jazz \
+ $(BASEDIR)/polyphonic/Mirex04/pop \
+ $(BASEDIR)/polyphonic/Mirex04/opera \
+ $(BASEDIR)/polyphonic/Mirex04
+
+test-aubiopitch-isolated: $(patsubst %, %.aubiopitch-isolated, $(SOURCE))
+test-aubiopitch-monophonic: $(patsubst %, %.aubiopitch-monophonic, $(MONOSOURCE))
+test-aubiopitch-polyphonic: $(patsubst %, %.aubiopitch-polyphonic, $(POLYSOURCE))
+
+plotpitch:
+ ../../../aubiopitch -m fcomb,mcomb,yinfft,yin,schmitt -i jazz2REF.wav -p -t 0.2 -l 100 -M 600 -O jazz2REF.ps
+ ../../../aubiopitch -m fcomb,mcomb,yinfft,yin,schmitt -p -t 0.2 -l 300 -M 900 -i opera_fem2REF.wav -O opera_fem2REF.ps
+
+timings:
+ ./bench-timings $(BASEDIR)/polyphonic/Mirex04/opera
+
+%.aubiopitch-isolated: %
+ $(CP) isolated/`basename $@` isolated/`basename $@`.old
+ ./bench-pitch-isolated $< | tee isolated/`basename $@`
+ -diff isolated/`basename $@`.old isolated/`basename $@`
+ -diff isolated/`basename $@`.ref isolated/`basename $@`
+
+%.aubiopitch-monophonic: %
+ $(CP) monophonic/`basename $@` monophonic/`basename $@`.old
+ ./bench-pitch-monophonic $< | tee monophonic/`basename $@`
+ -diff monophonic/`basename $@`.ref monophonic/`basename $@`
+ -diff monophonic/`basename $@`.old monophonic/`basename $@`
+
+%.aubiopitch-polyphonic: %
+ $(CP) polyphonic/`basename $@` polyphonic/`basename $@`.old
+ ./bench-pitch-polyphonic $< | tee polyphonic/`basename $@`
+ -diff polyphonic/`basename $@`.ref polyphonic/`basename $@`
+ -diff polyphonic/`basename $@`.old polyphonic/`basename $@`
--- /dev/null
+++ b/tests/demo/bench/pitch/bench-pitch-isolated
@@ -1,0 +1,198 @@
+#! /usr/bin/python
+
+from aubio.bench.node import *
+from aubio.task import *
+
+class benchpitch(bench):
+
+ """ list of values to store per file """
+ valuenames = ['mode']
+ """ list of lists to store per file """
+ valuelists = ['truth', 'osil', 'esil', 'opit', 'epit', 'echr',
+ 'Msil', 'Mpit', 'Mchr',
+ 'TotalPit', 'TotalPit', 'TotalChr' ]
+ """ list of values to print per dir """
+ printnames_total = [ 'mode', 'MinPit', 'MaxPit', 'TotalSil', 'TotalPit', 'TotalChr']
+ printnames_notes = [ 'mode', 'Note', 'Sil', 'Pit', 'Chr']
+ printnames = printnames_notes
+
+ """ per dir """
+ formats = {'mode': "%12s" ,
+ 'truth': "%s",
+ 'osil': "%s", 'esil': "%s",
+ 'opit': "%s", 'epit': "%s", 'echr': "%s",
+ 'Note': "%s", 'Sil': "%s", 'Chr': "%s", 'Pit': "%s",
+ 'TotalPit': "%s", 'TotalSil': "%s", 'TotalChr': "%s",
+ 'MinPit': "%s", 'MaxPit': "%s",
+ 'Msil': "%s", 'Mpit': "%s", 'Mchr': "%s"}
+
+ def dir_eval(self):
+ """ evaluate statistical data over the directory """
+ v = self.v
+ v['mode'] = self.params.pitchmode
+
+ def file_exec(self,input,output):
+ filetask = self.task(input,params=self.params)
+ computed_data = filetask.compute_all()
+ osil, esil, opit, epit, echr = filetask.eval(computed_data,tol=0.5)
+ self.v['truth'].append(int(filetask.truth))
+ assert opit > 0
+
+ self.v['osil'].append(osil)
+ self.v['esil'].append(esil)
+ self.v['opit'].append(opit)
+ self.v['epit'].append(epit)
+ self.v['echr'].append(echr)
+
+ self.v['Msil'].append(esil/float(osil)*100.)
+ self.v['Mpit'].append(epit/float(opit)*100.)
+ self.v['Mchr'].append(echr/float(opit)*100.)
+ #print results#, computed_data
+ #print input, results, results - float(input.split('.')[-2])
+
+ def run_bench(self,modes=['schmitt'],multiplot=0):
+ from os.path import basename
+ self.modes = modes
+ self.pretty_titles()
+ d = []
+ for mode in self.modes:
+ self.params.pitchmode = mode
+ self.dir_exec()
+ self.dir_eval()
+ truth = [i for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
+ allOsil = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
+ allEsil = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
+ allOpit = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
+ allEpit = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
+ allEchr = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
+ allMsil = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
+ allMpit = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
+ allMchr = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
+ for i in range(len(self.v['truth'])):
+ allOsil[self.v['truth'][i]-min(self.v['truth'])] += self.v['osil'][i]
+ allEsil[self.v['truth'][i]-min(self.v['truth'])] += self.v['esil'][i]
+ allOpit[self.v['truth'][i]-min(self.v['truth'])] += self.v['opit'][i]
+ allEpit[self.v['truth'][i]-min(self.v['truth'])] += self.v['epit'][i]
+ allEchr[self.v['truth'][i]-min(self.v['truth'])] += self.v['echr'][i]
+ for i in range(len(truth)):
+ allOsil[i] = max(1,allOsil[i])
+ allOpit[i] = max(1,allOpit[i])
+ allMsil[i] = allEsil[i]/float(allOsil[i])*100.
+ allMpit[i] = allEpit[i]/float(allOpit[i])*100.
+ allMchr[i] = allEchr[i]/float(allOpit[i])*100.
+ self.v['Sil'], self.v['Pit'], self.v['Chr'] = allMsil[i], allMpit[i], allMchr[i]
+ self.v['Note'] = truth[i]
+ #self.printnames = self.printnames_notes
+ self.pretty_print()
+ self.v['TotalSil'] = sum(allMsil)/len(truth)
+ self.v['TotalPit'] = sum(allMpit)/len(truth)
+ self.v['TotalChr'] = sum(allMchr)/len(truth)
+ self.v['MinPit'] = min(truth)
+ self.v['MaxPit'] = max(truth)
+ #self.printnames = self.printnames_total
+ #self.pretty_print()
+
+ plot = []
+ self.plotpitchtessiture(plot,
+ truth,
+ allMpit,
+ plottitle="%s %s" % (self.v['mode'],self.params.bufsize),
+ plotmode='lines')
+ """
+ self.plotpitchtessiture(plot,
+ truth,
+ allMchr,
+ plottitle="%s %s" % (self.v['mode'],"%12"),
+ plotmode='lines')
+ self.plotpitchtessiture(plot,
+ truth,
+ allMsil,
+ plottitle="%s %s" % (self.v['mode'],"sil"),
+ plotmode='lines')
+ """
+ title = basename(self.datadir)
+ if multiplot:
+ d.append(plot)
+ else:
+ d += plot
+ outplot = "_-_".join(('pitchtessiture',title))
+ self.xmin = min(self.v['truth']) #20.
+ self.xmax = max(self.v['truth'])
+ for ext in ('ps','png','svg'): #,''):
+ self.plotplotpitchtessiture(d,
+ plottitle="".join(['Performance against MIDI Note number (',
+ title,
+ ", %s" % len(self.sndlist), " samples)"]),
+ outplot=outplot,
+ extension=ext,multiplot=multiplot)
+ #d.append('beta = .25,orig(x) title \"-2 octave\"')
+ #d.append('beta = .50,orig(x) title \"-1 octave\"')
+ #d.append('beta = 1.0,orig(x) title \"original\"')
+ #d.append('beta = 2.0,orig(x) title \"+1 octave\"')
+
+ """
+ Plot functions
+ """
+
+ def plotpitchtessiture(self,d,lx,ly,plottitle="",plotmode='linespoints'):
+ import Gnuplot, Gnuplot.funcutils
+ d.append(Gnuplot.Data(lx, ly, with=plotmode, title="%s" % (plottitle) ))
+
+ def plotplotpitchtessiture(self,d,plottitle='',outplot=0,extension='',multiplot=1):
+ from aubio.gnuplot import gnuplot_create
+ g = gnuplot_create(outplot=outplot,extension=extension)
+ #g.title(plottitle)
+ #g('orig(x) = beta*x')
+ g.title(plottitle)
+ g('set yrange [50:100]')
+ # erase axis
+ g('set xrange [%f:%f]' % (self.xmin,self.xmax)) #(self.xmax - (self.xmax-self.xmin)*5./4.,self.xmax))
+ #g.plot(*d)
+ g('set border 3')
+ g('set xtics nomirror')
+ g('set ytics nomirror')
+ g('set key bottom')
+ if multiplot:
+ g('set multiplot')
+ for i in range(len(d)):
+ # plot onset detection functions
+ g('set size 1,%f' % ( 1.0/float(len(d)) ) )
+ g('set origin 0,%f' % ( 1.0*float(len(d)-i-1)/float(len(d)) ) )
+ #g.ylabel('%Correct detections')
+ g('set xrange [%f:%f]' % (self.xmin,self.xmax)) #(self.xmax - (self.xmax-self.xmin)*5./4.,self.xmax))
+ g.plot(*d[i])
+ g('unset title')
+ g('unset multiplot')
+ else:
+ g.plot(*d)
+
+
+if __name__ == "__main__":
+ import sys
+ if len(sys.argv) > 1: datapath = sys.argv[1]
+ else: print "error: a path is required"; sys.exit(1)
+ if len(sys.argv) > 2:
+ for each in sys.argv[3:-1]: print each
+ modes = ['schmitt', 'yin', 'yinfft', 'mcomb', 'fcomb']
+ #modes = ['mcomb']
+
+ params = taskparams()
+ params.bufsize = 2048 # 4096
+ params.hopsize = 256
+ params.silence = -60.
+ params.pitchsmooth = 0
+ params.pitchmax = 20000
+ params.pitchmin = 20
+ params.pitchyinfft = 0.95
+ benchpitch = benchpitch(datapath,params=params)
+ benchpitch.task = taskpitch
+
+ #benchpitch.titles = [ 'mode', 'thres', 'avg', 'avgdist' ]
+ #benchpitch.formats = ["%12s" , "| %6s", "| %6s", "| %6s", "| %6s", "| %6s" ]
+ try:
+ benchpitch.run_bench(modes=modes)
+ except KeyboardInterrupt:
+ print "Interrupted by user"
+ sys.exit(1)
+
+ sys.exit(0)
--- /dev/null
+++ b/tests/demo/bench/pitch/bench-pitch-plot-isolated
@@ -1,0 +1,63 @@
+#! /usr/bin/python
+
+if __name__ == '__main__':
+ import sys, Gnuplot
+ from aubio.gnuplot import gnuplot_create
+ from aubio.txtfile import read_datafile
+ from aubio.plot.keyboard import draw_keyboard
+ lines = []
+ titles = []
+ for file in range(len(sys.argv)-1):
+ l = read_datafile(sys.argv[file+1])
+ notes, score = [],[]
+ for i in range(len(l)):
+ notes.append(l[i][0])
+ score.append(l[i][2])
+ lines.append(Gnuplot.Data(notes,score,
+ with='linespoints',
+ title=sys.argv[file+1].split('.')[-1]))
+ titles.append(sys.argv[file+1].split('.')[-1])
+ blacks,whites = draw_keyboard(firstnote = notes[0], lastnote = notes[-1],
+ y0= 40, y1 = 50)
+
+ g = gnuplot_create(sys.argv[file+1].split('.')[-3],'ps')
+ #g = gnuplot_create('','')
+ #g = gnuplot_create('/tmp/test','eps')
+ g('set yrange [40:100]')
+ #g('set xrange [%f:%f]' % (notes[0],notes[-1]+60))
+ g('set size 0.5')
+ g('set key outside')
+
+ g('set border 3')
+ g('set xtics nomirror')
+ g('set ytics nomirror')
+ multiplot = 1
+ oplots = lines
+ g('set size 1,2')
+ if multiplot:
+ height = 2.
+ g('set lmargin 10')
+ #g('set rmargin 15')
+ g('set multiplot')
+ g('set yrange [50:100]')
+ g('set xrange [%f:%f]' % (notes[0],notes[-1]))
+ g('set xtics %f,12' % notes[0])
+ g('set nokey')
+ for i in range(len(oplots)):
+ g.ylabel(titles[i])
+ g('set size %f,%f' % (1.,height*.85/float(len(oplots))))
+ g('set origin 0,%f' % (height*(.15+.85*float(len(oplots)-i-1)/float(len(oplots)))))
+ g.plot(oplots[i])
+ g('set title "Raw pitch accuracy (%) against midi note numbers"')
+ g('set noxtics')
+ g('set noytics')
+ g('set size %f,%f' % (1.,.15*height))
+ g('set origin 0,%f' % 0)
+ g('set yrange [40:50]')
+ g('set xrange [%f:%f]' % (notes[0],notes[-1]))
+ g.xlabel('')
+ g.ylabel('')
+ g.plot(whites,blacks)
+ g('unset multiplot')
+ else:
+ g.plot(whites,blacks,*lines)
--- /dev/null
+++ b/tests/demo/bench/tempo/demo-tempo
@@ -1,0 +1,313 @@
+#! /usr/bin/python
+
+""" this file was written by Paul Brossier
+ it is released under the GNU/GPL license.
+"""
+
+import sys,time
+from aubio.task import taskbeat,taskparams
+from aubio.aubioclass import fvec, aubio_autocorr
+from aubio.gnuplot import gnuplot_create, gnuplot_addargs
+from aubio.aubiowrapper import *
+from math import exp,log
+
+usage = "usage: %s [options] -i soundfile" % sys.argv[0]
+
+def parse_args():
+ from optparse import OptionParser
+ parser = OptionParser(usage=usage)
+ parser.add_option("-i","--input",
+ action="store", dest="filename",
+ help="input sound file")
+ parser.add_option("-n","--printframe",
+ action="store", dest="printframe", default=-1,
+ help="make a plot of the n_th frame")
+ gnuplot_addargs(parser)
+ (options, args) = parser.parse_args()
+ if not options.filename:
+ print "no file name given\n", usage
+ sys.exit(1)
+ return options, args
+
+def plotdata(x,y,plottitle="",**keyw):
+ import Gnuplot
+ return Gnuplot.Data(x, y, title="%s" % plottitle,**keyw)
+
+options, args = parse_args()
+filename = options.filename
+xsize = float(options.xsize)
+ysize = float(options.ysize)
+
+printframe = int(options.printframe)
+
+if options.outplot and printframe > 0:
+ extension = options.outplot.split('.')[-1]
+ outplot = '.'.join(options.outplot.split('.')[:-1])
+else:
+ extension = ''
+ outplot = None
+f = gnuplot_create(outplot=outplot,extension=extension,options=options)
+
+params = taskparams()
+params.onsetmode = 'specdiff'
+task = taskbeat(filename,params=params)
+
+hopsize = params.hopsize
+bufsize = params.bufsize
+btstep = task.btstep
+winlen = task.btwinlen
+laglen = winlen/4
+step = winlen/4
+
+timesig = 0
+maxnumelem = 4
+gp = 0
+counter = 0
+flagconst = 0
+constthresh = 3.901
+g_var = 3.901
+rp = 0
+rp1 = 0
+rp2 = 0
+g_mu = 0
+
+rayparam = 48/512.*winlen
+
+#t = [i for i in range(hopsize)]
+#tlong = [i for i in range(hopsize*(btstep-1))]
+#tall = [i for i in range(hopsize*btstep)]
+#a = [0 for i in range(hopsize*btstep)]
+dfx = [i for i in range(winlen)]
+dfframe = [0 for i in range(winlen)]
+dfrev = [0 for i in range(winlen)]
+acframe = [0 for i in range(winlen)]
+
+localacf = [0 for i in range(winlen)]
+inds = [0 for i in range(maxnumelem)]
+
+acx = [i for i in range(laglen)]
+acfout = [0 for i in range(laglen)]
+
+phwv = [0 for i in range(2*laglen)]
+phwvx = [i for i in range(2*laglen)]
+
+dfwvnorm = exp(log(2.0)*(winlen+2.)/rayparam);
+dfwv = [exp(log(2.)*(i+1.)/rayparam)/dfwvnorm for i in range(winlen)]
+
+gwv = [exp(-.5*(j+1.-g_mu)**2/g_var**2) for j in range(laglen)]
+rwv = [(i+1.)/rayparam**2 * exp(-(i+1.)**2 / (2.*rayparam)**2)
+ for i in range(0,laglen)]
+acf = fvec(winlen,1)
+
+nrframe = 0
+while (task.readsize == params.hopsize):
+ task()
+ #print task.pos2
+ #a[:-hopsize] = [i for i in a[-(btstep-1)*hopsize:]]
+ #a[-hopsize:] = [task.myvec.get(i,0) for i in t]
+
+ #g('set xrange [%f:%f]' % (t[0],t[-1]))
+ #time.sleep(.2)
+ if task.pos2==btstep-1:
+ nrframe += 1
+ dfframe = [task.dfframe.get(i,0) for i in range(winlen)]
+ if printframe == nrframe or printframe == -1:
+ d = [[plotdata(range(-winlen,0),dfframe,plottitle="onset detection", with='lines')]]
+ # start beattracking_do
+ for i in range(winlen):
+ dfrev[winlen-1-i] = 0.
+ dfrev[winlen-1-i] = dfframe[i]*dfwv[i]
+ aubio_autocorr(task.dfframe(),acf());
+ acframe = [acf.get(i,0) for i in range(winlen)]
+ if not timesig:
+ numelem = 4
+ else:
+ numelem = timesig
+
+ old = 0
+ acfout = [0 for i in range(winlen/4)]
+ for i in range(1,laglen-1):
+ for a in range(1,numelem+1):
+ for b in range (1-a,a):
+ acfout[i] += acframe[a*(i+1)+b-1] * 1./(2.*a-1.)*rwv[i]
+ if old < acfout[i]:
+ old = acfout[i]
+ maxi = i
+ rp = max(maxi,1);
+
+ if printframe == nrframe or printframe == -1:
+ rwvs = [rwv[i]*max(acframe) for i in range(len(rwv))]
+ d += [[plotdata(acx,acfout,plottitle="comb filterbank", with='lines', axes='x1y1'),
+ plotdata([rp,rp],[1.2*old,min(acfout)],plottitle="period", with='impulses', axes='x1y1'),
+ plotdata(acx,rwvs,plottitle="L_w", with='lines', axes='x1y1')]]
+
+ # getperiod
+ inds = [0 for i in range(maxnumelem)]
+ localacf = [0 for i in range(winlen)]
+ period = 0
+ for a in range(1,4+1):
+ for b in range(1-a,a):
+ localacf[a*rp+b-1] = acframe[a*rp+b-1]
+ for i in range(numelem):
+ maxindex = 0
+ maxval = 0.0
+ for j in range(rp*(i+1)+i):
+ if localacf[j] > maxval:
+ maxval = localacf[j]
+ maxind = j
+ localacf[j] = 0
+ inds[i] = maxind
+ for i in range(numelem):
+ period += inds[i]/(i+1.)
+ period = period/numelem
+ #print "period", period
+
+ # checkstate
+ if gp:
+ # context dependant model
+ acfout = [0 for i in range(winlen/4)]
+ old = 0
+ for i in range(laglen-1):
+ for a in range(timesig):
+ for b in range(1-a,a):
+ acfout[i] += acframe[a*(i+1)+b-1] * gwv[i]
+ if old < acfout[i]:
+ old = acfout[i]
+ maxi = i
+ gp = maxi
+ else:
+ # general model
+ gp = 0
+ #print "gp", gp
+ if printframe == nrframe or printframe == -1:
+ gwvs = [gwv[i]*max(acfout) for i in range(len(gwv))]
+ d += [[plotdata(acx,acfout,plottitle="comb filterbank", with='lines', axes='x1y1'),
+ plotdata(gp,old,plottitle="period", with='impulses', axes='x1y1'),
+ plotdata(acx,gwvs,plottitle="L_{gw}", with='lines', axes='x1y1')]]
+
+ if counter == 0:
+ # initial step
+ if abs(gp-rp) > 2.*constthresh:
+ flagstep = 1
+ counter = 3
+ else:
+ flagstep = 0
+ #print "flagstep", flagstep
+ #print "rp2,rp1,rp", rp2,rp1,rp
+ acfw = [dfframe[i]*dfwv[i] for i in range(winlen)]
+
+ if counter == 1 and flagstep == 1:
+ # "3rd frame after flagstep set"
+ if abs(2.*rp-rp1- rp2) < constthresh:
+ flagconst = 1
+ counter = 0
+ else:
+ flagconst = 0
+ counter = 2
+ elif counter > 0:
+ counter -= 1
+
+ rp2 = rp1; rp1 = rp
+
+ if flagconst:
+ # "first run of new hypothesis"
+ gp = rp
+ g_mu = gp
+ timesig = 4 #FIXME
+ gwv = [exp(-.5*(j+1.-g_mu)**2/g_var**2) for j in range(laglen)]
+ flagconst = 0
+ bp = gp
+ phwv = [1 for i in range(2*laglen)]
+ elif timesig:
+ # "contex dependant"
+ bp = gp
+ if step > lastbeat:
+ phwv = [exp(-.5*(1.+j-step+lastbeat)**2/(bp/8.)) for j in range(2*laglen)]
+ else:
+ print "NOT using phase weighting"
+ phwv = [1 for i in range(2*laglen)]
+ else:
+ # "initial state"
+ bp = rp
+ phwv = [1 for i in range(2*laglen)]
+
+ while bp < 25:
+ print "WARNING, doubling the beat period"
+ bp *= 2
+
+ #
+ phout = [0. for i in range(winlen)]
+
+ kmax = int(winlen/float(bp));
+
+ old = 0
+ for i in range(bp):
+ phout[i] = 0.
+ for k in range(kmax):
+ phout[i] += dfrev[i+bp*k] * phwv[i]
+ if phout[i] > old:
+ old = phout[i]
+ maxi = i
+ maxindex = maxi
+ if (maxindex == winlen - 1): maxindex = 0
+ phase = 1 + maxindex
+ i = 1
+ beat = bp - phase
+ beats= []
+ if beat >= 0: beats.append(beat)
+ while beat+bp < step:
+ beat += bp
+ beats.append(beat)
+ lastbeat = beat
+ #print beats,
+ #print "the lastbeat is", lastbeat
+
+ # plot all this
+ if printframe == nrframe or printframe == -1:
+ phwvs = [phwv[i]*max(phout) for i in range(len(phwv))]
+ d += [[plotdata(range(-laglen,0),phwvs[laglen:0:-1],plottitle="A_{gw}", with='lines',axes='x1y1'),
+ plotdata(range(-laglen,0),phout[laglen:0:-1],plottitle="df", with='lines'),
+ plotdata(-phase,old,plottitle="phase", with='impulses', axes='x1y1'),
+ plotdata([i for i in beats],[old for i in beats],plottitle="predicted", with='impulses')
+ ]]
+ #d += [[plotdata(dfx,dfwv,plottitle="phase weighting", with='lines', axes='x1y2'),
+ # plotdata(dfx,dfrev,plottitle="df reverse", with='lines', axes='x1y1')]]
+ #d += [[plotdata(dfx,phout,plottitle="phase", with='lines', axes='x1y2')]]
+ #d += [[plotdata(dfx,dfwv,plottitle="phase weighting", with='lines', axes='x1y2'),
+ # plotdata(dfx,dfrev,plottitle="df reverse", with='lines', axes='x1y1')]]
+ #d += [[plotdata(dfx,phout,plottitle="phase", with='lines', axes='x1y2')]]
+
+ f('set lmargin 4')
+ f('set rmargin 4')
+ f('set size %f,%f' % (1.0*xsize,1.0*ysize) )
+ f('set key spacing 1.3')
+ f('set multiplot')
+
+ f('set size %f,%f' % (1.0*xsize,0.33*ysize) )
+ f('set orig %f,%f' % (0.0*xsize,0.66*ysize) )
+ f('set xrange [%f:%f]' % (-winlen,0) )
+ f.title('Onset detection function')
+ f.xlabel('time (df samples)')
+ f.plot(*d[0])
+ f('set size %f,%f' % (0.5*xsize,0.33*ysize) )
+ f('set orig %f,%f' % (0.0*xsize,0.33*ysize) )
+ f('set xrange [%f:%f]' % (0,laglen) )
+ f.title('Period detection: Rayleygh weighting')
+ f.xlabel('lag (df samples)')
+ f.plot(*d[1])
+ f('set size %f,%f' % (0.5*xsize,0.33*ysize) )
+ f('set orig %f,%f' % (0.5*xsize,0.33*ysize) )
+ f('set xrange [%f:%f]' % (0,laglen) )
+ f.title('Period detection: Gaussian weighting')
+ f.xlabel('lag (df samples)')
+ f.plot(*d[2])
+ f('set size %f,%f' % (1.0*xsize,0.33*ysize) )
+ f('set orig %f,%f' % (0.0*xsize,0.00*ysize) )
+ f('set xrange [%f:%f]' % (-laglen,laglen) )
+ f.title('Phase detection and predicted beats')
+ f.xlabel('time (df samples)')
+ f.plot(*d[3])
+ f('set nomultiplot')
+ if printframe == -1: a = sys.stdin.read()
+ elif 0 < printframe and printframe < nrframe:
+ break
--- /dev/null
+++ b/tests/demo/bench/tempo/demo-tempo-acf
@@ -1,0 +1,157 @@
+#! /usr/bin/python
+
+""" this file was written by Paul Brossier
+ it is released under the GNU/GPL license.
+"""
+
+import sys,time
+from aubio.task import taskbeat,taskparams
+from aubio.aubioclass import fvec, aubio_autocorr
+from aubio.gnuplot import gnuplot_create, gnuplot_addargs
+from aubio.aubiowrapper import *
+from math import exp,log
+
+usage = "usage: %s [options] -i soundfile" % sys.argv[0]
+
+def parse_args():
+ from optparse import OptionParser
+ parser = OptionParser(usage=usage)
+ parser.add_option("-i","--input",
+ action="store", dest="filename",
+ help="input sound file")
+ parser.add_option("-n","--printframe",
+ action="store", dest="printframe", default=-1,
+ help="make a plot of the n_th frame")
+ gnuplot_addargs(parser)
+ (options, args) = parser.parse_args()
+ if not options.filename:
+ print "no file name given\n", usage
+ sys.exit(1)
+ return options, args
+
+def plotdata(x,y,plottitle="",**keyw):
+ import Gnuplot
+ return Gnuplot.Data(x, y, title="%s" % plottitle,**keyw)
+
+options, args = parse_args()
+filename = options.filename
+xsize = float(options.xsize)
+ysize = float(options.ysize)
+
+printframe = int(options.printframe)
+
+if options.outplot and printframe > 0:
+ extension = options.outplot.split('.')[-1]
+ outplot = '.'.join(options.outplot.split('.')[:-1])
+else:
+ extension = ''
+ outplot = None
+f = gnuplot_create(outplot,extension,options)
+
+params = taskparams()
+params.onsetmode = 'specdiff'
+task = taskbeat(filename,params=params)
+
+hopsize = params.hopsize
+bufsize = params.bufsize
+btstep = task.btstep
+winlen = task.btwinlen
+laglen = winlen/4
+step = winlen/4
+
+timesig = 0
+maxnumelem = 4
+gp = 0
+counter = 0
+flagconst = 0
+constthresh = 3.901
+g_var = 3.901
+rp = 0
+rp1 = 0
+rp2 = 0
+g_mu = 0
+
+rayparam = 48/512.*winlen
+
+t = [i for i in range(hopsize)]
+#tlong = [i for i in range(hopsize*(btstep-1))]
+#tall = [i for i in range(hopsize*btstep)]
+sig = [0 for i in range(hopsize*btstep*4)]
+dfx = [i for i in range(winlen)]
+dfframe = [0 for i in range(winlen)]
+dfrev = [0 for i in range(winlen)]
+acframe = [0 for i in range(winlen/2)]
+
+localacf = [0 for i in range(winlen)]
+inds = [0 for i in range(maxnumelem)]
+
+acx = [i for i in range(laglen)]
+acfout = [0 for i in range(laglen)]
+
+phwv = [0 for i in range(2*laglen)]
+phwvx = [i for i in range(2*laglen)]
+
+dfwvnorm = exp(log(2.0)*(winlen+2.)/rayparam);
+dfwv = [exp(log(2.)*(i+1.)/rayparam)/dfwvnorm for i in range(winlen)]
+
+gwv = [exp(-.5*(j+1.-g_mu)**2/g_var**2) for j in range(laglen)]
+rwv = [(i+1.)/rayparam**2 * exp(-(i+1.)**2 / (2.*rayparam)**2)
+ for i in range(0,laglen)]
+acf = fvec(winlen,1)
+
+nrframe = 0
+while (task.readsize == params.hopsize):
+ task()
+ #print task.pos2
+ sig[:-hopsize] = [i for i in sig[-(btstep*4-1)*hopsize:]]
+ sig[-hopsize:] = [task.myvec.get(i,0) for i in t]
+
+ #g('set xrange [%f:%f]' % (t[0],t[-1]))
+ #time.sleep(.2)
+ if task.pos2==btstep-1:
+ nrframe += 1
+ dfframe = [task.dfframe.get(i,0) for i in range(winlen)]
+ # start beattracking_do
+ for i in range(winlen):
+ dfrev[winlen-1-i] = 0.
+ dfrev[winlen-1-i] = dfframe[i]*dfwv[i]
+ aubio_autocorr(task.dfframe(),acf());
+ acframe = [acf.get(i,0) for i in range(winlen/2)]
+ if printframe == nrframe or printframe == -1:
+ d = [[plotdata(range(0,btstep*hopsize*4,4),sig[0:-1:4],plottitle="input signal", with='lines')]]
+ d += [[plotdata(range(-winlen,0),dfframe,plottitle="onset detection", with='lines')]]
+ d += [[plotdata(range(winlen/2),acframe,plottitle="autocorrelation", with='lines')]]
+
+ # plot all this
+ if printframe == nrframe or printframe == -1:
+
+ f('set lmargin 4')
+ f('set rmargin 4')
+ f('set size %f,%f' % (1.0*xsize,1.0*ysize) )
+ f('set key spacing 1.3')
+ f('set multiplot')
+
+ f('set size %f,%f' % (1.0*xsize,0.33*ysize) )
+ f('set orig %f,%f' % (0.0*xsize,0.66*ysize) )
+ f('set xrange [%f:%f]' % (0,btstep*hopsize*4) )
+ f('set yrange [%f:%f]' % (-1.2*max(sig),1.2*max(sig)) )
+ f.title('Input signal')
+ f.xlabel('time (samples)')
+ f.plot(*d[0])
+ f('set size %f,%f' % (1.0*xsize,0.33*ysize) )
+ f('set orig %f,%f' % (0.0*xsize,0.33*ysize) )
+ f('set xrange [%f:%f]' % (-winlen,0) )
+ f('set autoscale y')
+ f.title('Onset detection function')
+ f.xlabel('time (df samples)')
+ f.plot(*d[1])
+ f('set size %f,%f' % (1.0*xsize,0.33*ysize) )
+ f('set orig %f,%f' % (0.0*xsize,0.00*ysize) )
+ f('set xrange [%f:%f]' % (0,winlen/2) )
+ f.title('Autocorrelation')
+ f.xlabel('lag (df samples)')
+ f.plot(*d[2])
+ f('set nomultiplot')
+ if printframe == -1: a = sys.stdin.read()
+ elif 0 < printframe and printframe < nrframe:
+ break
--- /dev/null
+++ b/tests/demo/localaubio.py
@@ -1,0 +1,13 @@
+
+try:
+ from aubio.aubiowrapper import *
+except ImportError:
+ try:
+ import os
+ import sys
+ cur_dir = os.path.dirname(sys.argv[0])
+ sys.path.append(os.path.join(cur_dir,'..','..','python'))
+ sys.path.append(os.path.join(cur_dir,'..','..','python','aubio','.libs'))
+ from aubio.aubiowrapper import *
+ except ImportError:
+ raise
--- /dev/null
+++ b/tests/demo/plot_mfcc_filterbank.py
@@ -1,0 +1,42 @@
+#!/usr/bin/env python
+
+import pylab
+import numpy
+import sys
+
+from localaubio import *
+
+win_size = 2048
+channels = 1
+n_filters = 40
+samplerate = 44100
+
+filterbank = new_aubio_filterbank_mfcc(n_filters, win_size, samplerate,
+ 0., samplerate)
+
+mfcc_filters = []
+for channel in range(n_filters):
+ vec = aubio_filterbank_getchannel(filterbank,channel)
+ mfcc_filters.append([])
+ for index in range(win_size):
+ mfcc_filters[channel].append(fvec_read_sample(vec,0,index))
+
+doLog=False
+if len(sys.argv)>1:
+ if sys.argv[1]=='log':
+ doLog=True
+
+nmat= numpy.array(mfcc_filters)
+
+pylab.hold(True)
+
+n_filters=numpy.shape(nmat)[0]
+for i in range(n_filters):
+ if doLog==True:
+ pylab.semilogx(nmat[i,:])
+ else:
+ pylab.plot(nmat[i,:])
+
+pylab.hold(False)
+#pylab.savefig('test.png')
+pylab.show()
--- a/tests/python/bench/onset/Makefile.am
+++ /dev/null
@@ -1,44 +1,0 @@
-export BASEDIR=../../../..
-export PYTHONPATH=$(BASEDIR)/python
-export LD_LIBRARY_PATH=$(BASEDIR)/src/.libs:$(BASEDIR)/ext/.libs
-
-DETAILSOURCE = \
- /var/tmp/Onset-Mirex2005/poly_pitched \
- /var/tmp/Onset-Mirex2005/solo_bars_and_bells \
- /var/tmp/Onset-Mirex2005/solo_brass \
- /var/tmp/Onset-Mirex2005/solo_drums \
- /var/tmp/Onset-Mirex2005/solo_plucked_strings \
- /var/tmp/Onset-Mirex2005/solo_singing_voice \
- /var/tmp/Onset-Mirex2005/solo_sustained_strings \
- /var/tmp/Onset-Mirex2005/solo_winds \
- /var/tmp/Onset-Mirex2005/complex
-
-SOURCE = /var/tmp/Onset-Mirex2005
-
-TESTSOURCE = \
- /var/tmp/Onset-Mirex2005/solo_bars_and_bells \
- /var/tmp/Onset-Mirex2005/solo_winds \
- /archives/samples/DB/PercussivePhrases/CM18/Samba_Audio
-
-test-aubiocut: $(patsubst %, %.aubiocut, $(TESTSOURCE))
-test-aubiodelay: $(patsubst %, %.aubiodelay, $(TESTSOURCE))
-test-aubiowindow: $(patsubst %, %.aubiowindow, $(TESTSOURCE))
-
-final-aubiocut: $(patsubst %, %.aubiocut, $(DETAILSOURCE) $(SOURCE))
-final-aubiodelay: $(patsubst %, %.aubiodelay, $(SOURCE))
-final-aubiowindow: $(patsubst %, %.aubiowindow, $(SOURCE))
-
-%.aubiocut: %
- rm -f `basename $@`
- ./bench-onset $< | tee `basename $@`
- -diff `basename $@`.ref `basename $@`
-
-%.aubiodelay: %
- rm -f `basename $@`
- ./bench-delay $< | tee `basename $@`
- -diff `basename $@`.ref `basename $@`
-
-%.aubiowindow: %
- rm -f `basename $@`
- ./bench-window $< | tee `basename $@`
- -diff `basename $@`.ref `basename $@`
--- a/tests/python/bench/onset/bench-delay
+++ /dev/null
@@ -1,62 +1,0 @@
-#! /usr/bin/python
-
-from aubio.bench.onset import benchonset
-from aubio.task.onset import taskonset
-from aubio.task.params import taskparams
-
-class mybenchonset(benchonset):
-
- def run_bench(self,modes=['dual'],thresholds=[0.5]):
- from os.path import dirname,basename
- self.thresholds = thresholds
- self.pretty_titles()
-
- for mode in modes:
- d = []
- self.params.onsetmode = mode
- self.params.localmin = True
- self.params.delay = 1.
- self.params.threshold = thresholds[0]
- #
- self.params.localmin = False
- self.params.delay = 0.
- self.dir_eval_print()
- self.plotdiffs(d,plottitle="Causal")
- #
- self.params.localmin = True
- self.params.delay = 0.
- self.dir_eval_print()
- self.plotdiffs(d,plottitle="Local min")
-
- self.params.localmin = False
- self.params.delay = 6.
- self.dir_eval_print()
- self.plotdiffs(d,plottitle="Fixed delay")
-
- #self.plotplotdiffs(d)
- outplot = "_-_".join(("delay",mode,basename(self.datadir) ))
- for ext in ("png","svg","ps"):
- self.plotplotdiffs(d,outplot=outplot,extension=ext)
-
-if __name__ == "__main__":
- import sys
- if len(sys.argv) > 1: datapath = sys.argv[1]
- else: print "ERR: a path is required"; sys.exit(1)
- modes = ['complex', 'energy', 'phase', 'hfc', 'specdiff', 'kl', 'mkl', 'dual']
- #thresholds = [ 0.01, 0.05, 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7, 0.8, 0.9, 1.0, 1.1, 1.2]
- #modes = [ 'hfc' ]
- thresholds = [0.5]
-
- #datapath = "%s%s" % (DATADIR,'/onset/DB/*/')
- respath = '/var/tmp/DB-testings'
-
- benchonset = mybenchonset(datapath,respath,checkres=True,checkanno=True)
- benchonset.params = taskparams()
- benchonset.task = taskonset
- benchonset.valuesdict = {}
-
- try:
- #benchonset.auto_learn2(modes=modes)
- benchonset.run_bench(modes=modes,thresholds=thresholds)
- except KeyboardInterrupt:
- sys.exit(1)
--- a/tests/python/bench/onset/bench-onset
+++ /dev/null
@@ -1,68 +1,0 @@
-#! /usr/bin/python
-
-from aubio.task import *
-
-from aubio.bench.onset import mmean, stdev, benchonset
-
-class mybenchonset(benchonset):
-
- def run_bench(self,modes=['dual'],thresholds=[0.5]):
- from os.path import dirname,basename
- self.thresholds = thresholds
- self.pretty_titles()
- d,e,f,g = [],[],[],[]
- for mode in modes:
- self.vlist = []
- self.params.onsetmode = mode
- #self.params.localmin = True
-
- for threshold in self.thresholds:
- self.params.threshold = threshold
- self.dir_eval_print()
- self.vlist.append(self.v)
- self.plotroc(d)
- self.plotfmeas(e)
- self.plotpr(f)
- #self.plothistcat(g)
-
-
-
- #self.plotplotroc(d)
- #self.plotplotfmeas(e)
- #self.plotplotpr(f)
- outplot = basename(self.datadir)
- for ext in ("png","svg","ps"):
- self.plotplotroc(d,outplot=outplot,extension=ext)
- self.plotplotfmeas(e,outplot=outplot,extension=ext)
- self.plotplotpr(f,outplot=outplot,extension=ext)
- #self.plotplothistcat(g,outplot=outplot,extension=ext)
-
-if __name__ == "__main__":
- import sys
- if len(sys.argv) > 1: datapath = sys.argv[1]
- else: print "ERR: a path is required"; sys.exit(1)
- modes = ['complex', 'energy', 'phase', 'hfc', 'specdiff', 'kl', 'mkl', 'dual']
- thresholds = [ 0.01, 0.05, 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7, 0.8, 0.9, 1.0, 1.1, 1.2]
- #modes = [ 'hfc' ]
- #thresholds = [0.5]
-
- #datapath = "%s%s" % (DATADIR,'/onset/DB/*/')
- respath = '/var/tmp/DB-testings'
-
- benchonset = mybenchonset(datapath,respath,checkres=True,checkanno=True)
- benchonset.params = taskparams()
- benchonset.params.dcthreshold = -1.
- benchonset.params.silence = -100.
- benchonset.params.delay = 5.
- benchonset.params.bufsize = 1024
- benchonset.params.hopsize = 256
- benchonset.params.step = float(benchonset.params.hopsize)/float(benchonset.params.samplerate)
- benchonset.params.mintol = 4.1
- benchonset.task = taskonset
- benchonset.valuesdict = {}
-
- try:
- #benchonset.auto_learn2(modes=modes)
- benchonset.run_bench(modes=modes,thresholds=thresholds)
- except KeyboardInterrupt:
- sys.exit(1)
--- a/tests/python/bench/onset/bench-window
+++ /dev/null
@@ -1,59 +1,0 @@
-#! /usr/bin/python
-
-from aubio.bench.onset import benchonset
-from aubio.task.onset import taskonset
-from aubio.task.params import taskparams
-
-class mybenchonset(benchonset):
-
- def run_bench(self,modes=['dual'],thresholds=[0.5]):
- from os.path import dirname,basename
- self.thresholds = thresholds
- self.pretty_titles()
-
- for mode in modes:
-
- self.params.onsetmode = mode
- self.params.localmin = True
- self.params.delay = 1.
- self.params.threshold = thresholds[0]
- self.params.localmin = False
- #
- for delay in (0., 4.):
- d = []
- self.params.delay = delay
- for buf in (2048, 1024, 512):
- for hop in (buf/2, buf/4):
- self.params.bufsize = buf
- self.params.hopsize = hop
- self.params.step = float(self.params.hopsize)/float(self.params.samplerate)
- self.dir_eval_print()
- self.plotdiffs(d,plottitle="%s %s" % (buf,hop))
- #plotplotdiffs(d)
- outplot = "_-_".join(("window",mode,"delay-%s" % int(delay),
- basename(self.datadir) ))
- for ext in ("png","svg","ps"):
- self.plotplotdiffs(d,outplot=outplot,extension=ext)
-
-if __name__ == "__main__":
- import sys
- if len(sys.argv) > 1: datapath = sys.argv[1]
- else: print "ERR: a path is required"; sys.exit(1)
- modes = ['complex', 'energy', 'phase', 'hfc', 'specdiff', 'kl', 'mkl', 'dual']
- #thresholds = [ 0.01, 0.05, 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7, 0.8, 0.9, 1.0, 1.1, 1.2]
- #modes = [ 'hfc' ]
- thresholds = [0.5]
-
- #datapath = "%s%s" % (DATADIR,'/onset/DB/*/')
- respath = '/var/tmp/DB-testings'
-
- benchonset = mybenchonset(datapath,respath,checkres=True,checkanno=True)
- benchonset.params = taskparams()
- benchonset.task = taskonset
- benchonset.valuesdict = {}
-
- try:
- #benchonset.auto_learn2(modes=modes)
- benchonset.run_bench(modes=modes,thresholds=thresholds)
- except KeyboardInterrupt:
- sys.exit(1)
--- a/tests/python/bench/pitch/Makefile.am
+++ /dev/null
@@ -1,59 +1,0 @@
-export AUBIODIR=../../../..
-export PYTHONPATH=$(AUBIODIR)/python
-export LD_LIBRARY_PATH=$(AUBIODIR)/src/.libs:$(AUBIODIR)/ext/.libs
-
-CP=cp -a
-
-SOURCE = \
- $(BASEDIR)/isolated/vibraphone \
- $(BASEDIR)/isolated/clavinet \
- $(BASEDIR)/isolated/elecguitar \
- $(BASEDIR)/isolated/piano \
- $(BASEDIR)/isolated/rhodes \
- $(BASEDIR)/isolated
-
-
-MONOSOURCE = \
- $(BASEDIR)/monophonic/Mirex04/daisy \
- $(BASEDIR)/monophonic/Mirex04/midi \
- $(BASEDIR)/monophonic/Mirex04/jazz \
- $(BASEDIR)/monophonic/Mirex04/pop \
- $(BASEDIR)/monophonic/Mirex04/opera \
- $(BASEDIR)/monophonic/Mirex04
-
-POLYSOURCE = \
- $(BASEDIR)/polyphonic/Mirex04/daisy \
- $(BASEDIR)/polyphonic/Mirex04/midi \
- $(BASEDIR)/polyphonic/Mirex04/jazz \
- $(BASEDIR)/polyphonic/Mirex04/pop \
- $(BASEDIR)/polyphonic/Mirex04/opera \
- $(BASEDIR)/polyphonic/Mirex04
-
-test-aubiopitch-isolated: $(patsubst %, %.aubiopitch-isolated, $(SOURCE))
-test-aubiopitch-monophonic: $(patsubst %, %.aubiopitch-monophonic, $(MONOSOURCE))
-test-aubiopitch-polyphonic: $(patsubst %, %.aubiopitch-polyphonic, $(POLYSOURCE))
-
-plotpitch:
- ../../../aubiopitch -m fcomb,mcomb,yinfft,yin,schmitt -i jazz2REF.wav -p -t 0.2 -l 100 -M 600 -O jazz2REF.ps
- ../../../aubiopitch -m fcomb,mcomb,yinfft,yin,schmitt -p -t 0.2 -l 300 -M 900 -i opera_fem2REF.wav -O opera_fem2REF.ps
-
-timings:
- ./bench-timings $(BASEDIR)/polyphonic/Mirex04/opera
-
-%.aubiopitch-isolated: %
- $(CP) isolated/`basename $@` isolated/`basename $@`.old
- ./bench-pitch-isolated $< | tee isolated/`basename $@`
- -diff isolated/`basename $@`.old isolated/`basename $@`
- -diff isolated/`basename $@`.ref isolated/`basename $@`
-
-%.aubiopitch-monophonic: %
- $(CP) monophonic/`basename $@` monophonic/`basename $@`.old
- ./bench-pitch-monophonic $< | tee monophonic/`basename $@`
- -diff monophonic/`basename $@`.ref monophonic/`basename $@`
- -diff monophonic/`basename $@`.old monophonic/`basename $@`
-
-%.aubiopitch-polyphonic: %
- $(CP) polyphonic/`basename $@` polyphonic/`basename $@`.old
- ./bench-pitch-polyphonic $< | tee polyphonic/`basename $@`
- -diff polyphonic/`basename $@`.ref polyphonic/`basename $@`
- -diff polyphonic/`basename $@`.old polyphonic/`basename $@`
--- a/tests/python/bench/pitch/bench-pitch-isolated
+++ /dev/null
@@ -1,198 +1,0 @@
-#! /usr/bin/python
-
-from aubio.bench.node import *
-from aubio.task import *
-
-class benchpitch(bench):
-
- """ list of values to store per file """
- valuenames = ['mode']
- """ list of lists to store per file """
- valuelists = ['truth', 'osil', 'esil', 'opit', 'epit', 'echr',
- 'Msil', 'Mpit', 'Mchr',
- 'TotalPit', 'TotalPit', 'TotalChr' ]
- """ list of values to print per dir """
- printnames_total = [ 'mode', 'MinPit', 'MaxPit', 'TotalSil', 'TotalPit', 'TotalChr']
- printnames_notes = [ 'mode', 'Note', 'Sil', 'Pit', 'Chr']
- printnames = printnames_notes
-
- """ per dir """
- formats = {'mode': "%12s" ,
- 'truth': "%s",
- 'osil': "%s", 'esil': "%s",
- 'opit': "%s", 'epit': "%s", 'echr': "%s",
- 'Note': "%s", 'Sil': "%s", 'Chr': "%s", 'Pit': "%s",
- 'TotalPit': "%s", 'TotalSil': "%s", 'TotalChr': "%s",
- 'MinPit': "%s", 'MaxPit': "%s",
- 'Msil': "%s", 'Mpit': "%s", 'Mchr': "%s"}
-
- def dir_eval(self):
- """ evaluate statistical data over the directory """
- v = self.v
- v['mode'] = self.params.pitchmode
-
- def file_exec(self,input,output):
- filetask = self.task(input,params=self.params)
- computed_data = filetask.compute_all()
- osil, esil, opit, epit, echr = filetask.eval(computed_data,tol=0.5)
- self.v['truth'].append(int(filetask.truth))
- assert opit > 0
-
- self.v['osil'].append(osil)
- self.v['esil'].append(esil)
- self.v['opit'].append(opit)
- self.v['epit'].append(epit)
- self.v['echr'].append(echr)
-
- self.v['Msil'].append(esil/float(osil)*100.)
- self.v['Mpit'].append(epit/float(opit)*100.)
- self.v['Mchr'].append(echr/float(opit)*100.)
- #print results#, computed_data
- #print input, results, results - float(input.split('.')[-2])
-
- def run_bench(self,modes=['schmitt'],multiplot=0):
- from os.path import basename
- self.modes = modes
- self.pretty_titles()
- d = []
- for mode in self.modes:
- self.params.pitchmode = mode
- self.dir_exec()
- self.dir_eval()
- truth = [i for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
- allOsil = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
- allEsil = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
- allOpit = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
- allEpit = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
- allEchr = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
- allMsil = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
- allMpit = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
- allMchr = [0 for i in range(min(self.v['truth']),max(self.v['truth'])+1)]
- for i in range(len(self.v['truth'])):
- allOsil[self.v['truth'][i]-min(self.v['truth'])] += self.v['osil'][i]
- allEsil[self.v['truth'][i]-min(self.v['truth'])] += self.v['esil'][i]
- allOpit[self.v['truth'][i]-min(self.v['truth'])] += self.v['opit'][i]
- allEpit[self.v['truth'][i]-min(self.v['truth'])] += self.v['epit'][i]
- allEchr[self.v['truth'][i]-min(self.v['truth'])] += self.v['echr'][i]
- for i in range(len(truth)):
- allOsil[i] = max(1,allOsil[i])
- allOpit[i] = max(1,allOpit[i])
- allMsil[i] = allEsil[i]/float(allOsil[i])*100.
- allMpit[i] = allEpit[i]/float(allOpit[i])*100.
- allMchr[i] = allEchr[i]/float(allOpit[i])*100.
- self.v['Sil'], self.v['Pit'], self.v['Chr'] = allMsil[i], allMpit[i], allMchr[i]
- self.v['Note'] = truth[i]
- #self.printnames = self.printnames_notes
- self.pretty_print()
- self.v['TotalSil'] = sum(allMsil)/len(truth)
- self.v['TotalPit'] = sum(allMpit)/len(truth)
- self.v['TotalChr'] = sum(allMchr)/len(truth)
- self.v['MinPit'] = min(truth)
- self.v['MaxPit'] = max(truth)
- #self.printnames = self.printnames_total
- #self.pretty_print()
-
- plot = []
- self.plotpitchtessiture(plot,
- truth,
- allMpit,
- plottitle="%s %s" % (self.v['mode'],self.params.bufsize),
- plotmode='lines')
- """
- self.plotpitchtessiture(plot,
- truth,
- allMchr,
- plottitle="%s %s" % (self.v['mode'],"%12"),
- plotmode='lines')
- self.plotpitchtessiture(plot,
- truth,
- allMsil,
- plottitle="%s %s" % (self.v['mode'],"sil"),
- plotmode='lines')
- """
- title = basename(self.datadir)
- if multiplot:
- d.append(plot)
- else:
- d += plot
- outplot = "_-_".join(('pitchtessiture',title))
- self.xmin = min(self.v['truth']) #20.
- self.xmax = max(self.v['truth'])
- for ext in ('ps','png','svg'): #,''):
- self.plotplotpitchtessiture(d,
- plottitle="".join(['Performance against MIDI Note number (',
- title,
- ", %s" % len(self.sndlist), " samples)"]),
- outplot=outplot,
- extension=ext,multiplot=multiplot)
- #d.append('beta = .25,orig(x) title \"-2 octave\"')
- #d.append('beta = .50,orig(x) title \"-1 octave\"')
- #d.append('beta = 1.0,orig(x) title \"original\"')
- #d.append('beta = 2.0,orig(x) title \"+1 octave\"')
-
- """
- Plot functions
- """
-
- def plotpitchtessiture(self,d,lx,ly,plottitle="",plotmode='linespoints'):
- import Gnuplot, Gnuplot.funcutils
- d.append(Gnuplot.Data(lx, ly, with=plotmode, title="%s" % (plottitle) ))
-
- def plotplotpitchtessiture(self,d,plottitle='',outplot=0,extension='',multiplot=1):
- from aubio.gnuplot import gnuplot_create
- g = gnuplot_create(outplot=outplot,extension=extension)
- #g.title(plottitle)
- #g('orig(x) = beta*x')
- g.title(plottitle)
- g('set yrange [50:100]')
- # erase axis
- g('set xrange [%f:%f]' % (self.xmin,self.xmax)) #(self.xmax - (self.xmax-self.xmin)*5./4.,self.xmax))
- #g.plot(*d)
- g('set border 3')
- g('set xtics nomirror')
- g('set ytics nomirror')
- g('set key bottom')
- if multiplot:
- g('set multiplot')
- for i in range(len(d)):
- # plot onset detection functions
- g('set size 1,%f' % ( 1.0/float(len(d)) ) )
- g('set origin 0,%f' % ( 1.0*float(len(d)-i-1)/float(len(d)) ) )
- #g.ylabel('%Correct detections')
- g('set xrange [%f:%f]' % (self.xmin,self.xmax)) #(self.xmax - (self.xmax-self.xmin)*5./4.,self.xmax))
- g.plot(*d[i])
- g('unset title')
- g('unset multiplot')
- else:
- g.plot(*d)
-
-
-if __name__ == "__main__":
- import sys
- if len(sys.argv) > 1: datapath = sys.argv[1]
- else: print "error: a path is required"; sys.exit(1)
- if len(sys.argv) > 2:
- for each in sys.argv[3:-1]: print each
- modes = ['schmitt', 'yin', 'yinfft', 'mcomb', 'fcomb']
- #modes = ['mcomb']
-
- params = taskparams()
- params.bufsize = 2048 # 4096
- params.hopsize = 256
- params.silence = -60.
- params.pitchsmooth = 0
- params.pitchmax = 20000
- params.pitchmin = 20
- params.pitchyinfft = 0.95
- benchpitch = benchpitch(datapath,params=params)
- benchpitch.task = taskpitch
-
- #benchpitch.titles = [ 'mode', 'thres', 'avg', 'avgdist' ]
- #benchpitch.formats = ["%12s" , "| %6s", "| %6s", "| %6s", "| %6s", "| %6s" ]
- try:
- benchpitch.run_bench(modes=modes)
- except KeyboardInterrupt:
- print "Interrupted by user"
- sys.exit(1)
-
- sys.exit(0)
--- a/tests/python/bench/pitch/bench-pitch-plot-isolated
+++ /dev/null
@@ -1,63 +1,0 @@
-#! /usr/bin/python
-
-if __name__ == '__main__':
- import sys, Gnuplot
- from aubio.gnuplot import gnuplot_create
- from aubio.txtfile import read_datafile
- from aubio.plot.keyboard import draw_keyboard
- lines = []
- titles = []
- for file in range(len(sys.argv)-1):
- l = read_datafile(sys.argv[file+1])
- notes, score = [],[]
- for i in range(len(l)):
- notes.append(l[i][0])
- score.append(l[i][2])
- lines.append(Gnuplot.Data(notes,score,
- with='linespoints',
- title=sys.argv[file+1].split('.')[-1]))
- titles.append(sys.argv[file+1].split('.')[-1])
- blacks,whites = draw_keyboard(firstnote = notes[0], lastnote = notes[-1],
- y0= 40, y1 = 50)
-
- g = gnuplot_create(sys.argv[file+1].split('.')[-3],'ps')
- #g = gnuplot_create('','')
- #g = gnuplot_create('/tmp/test','eps')
- g('set yrange [40:100]')
- #g('set xrange [%f:%f]' % (notes[0],notes[-1]+60))
- g('set size 0.5')
- g('set key outside')
-
- g('set border 3')
- g('set xtics nomirror')
- g('set ytics nomirror')
- multiplot = 1
- oplots = lines
- g('set size 1,2')
- if multiplot:
- height = 2.
- g('set lmargin 10')
- #g('set rmargin 15')
- g('set multiplot')
- g('set yrange [50:100]')
- g('set xrange [%f:%f]' % (notes[0],notes[-1]))
- g('set xtics %f,12' % notes[0])
- g('set nokey')
- for i in range(len(oplots)):
- g.ylabel(titles[i])
- g('set size %f,%f' % (1.,height*.85/float(len(oplots))))
- g('set origin 0,%f' % (height*(.15+.85*float(len(oplots)-i-1)/float(len(oplots)))))
- g.plot(oplots[i])
- g('set title "Raw pitch accuracy (%) against midi note numbers"')
- g('set noxtics')
- g('set noytics')
- g('set size %f,%f' % (1.,.15*height))
- g('set origin 0,%f' % 0)
- g('set yrange [40:50]')
- g('set xrange [%f:%f]' % (notes[0],notes[-1]))
- g.xlabel('')
- g.ylabel('')
- g.plot(whites,blacks)
- g('unset multiplot')
- else:
- g.plot(whites,blacks,*lines)
--- a/tests/python/bench/tempo/demo-tempo
+++ /dev/null
@@ -1,313 +1,0 @@
-#! /usr/bin/python
-
-""" this file was written by Paul Brossier
- it is released under the GNU/GPL license.
-"""
-
-import sys,time
-from aubio.task import taskbeat,taskparams
-from aubio.aubioclass import fvec, aubio_autocorr
-from aubio.gnuplot import gnuplot_create, gnuplot_addargs
-from aubio.aubiowrapper import *
-from math import exp,log
-
-usage = "usage: %s [options] -i soundfile" % sys.argv[0]
-
-def parse_args():
- from optparse import OptionParser
- parser = OptionParser(usage=usage)
- parser.add_option("-i","--input",
- action="store", dest="filename",
- help="input sound file")
- parser.add_option("-n","--printframe",
- action="store", dest="printframe", default=-1,
- help="make a plot of the n_th frame")
- gnuplot_addargs(parser)
- (options, args) = parser.parse_args()
- if not options.filename:
- print "no file name given\n", usage
- sys.exit(1)
- return options, args
-
-def plotdata(x,y,plottitle="",**keyw):
- import Gnuplot
- return Gnuplot.Data(x, y, title="%s" % plottitle,**keyw)
-
-options, args = parse_args()
-filename = options.filename
-xsize = float(options.xsize)
-ysize = float(options.ysize)
-
-printframe = int(options.printframe)
-
-if options.outplot and printframe > 0:
- extension = options.outplot.split('.')[-1]
- outplot = '.'.join(options.outplot.split('.')[:-1])
-else:
- extension = ''
- outplot = None
-f = gnuplot_create(outplot=outplot,extension=extension,options=options)
-
-params = taskparams()
-params.onsetmode = 'specdiff'
-task = taskbeat(filename,params=params)
-
-hopsize = params.hopsize
-bufsize = params.bufsize
-btstep = task.btstep
-winlen = task.btwinlen
-laglen = winlen/4
-step = winlen/4
-
-timesig = 0
-maxnumelem = 4
-gp = 0
-counter = 0
-flagconst = 0
-constthresh = 3.901
-g_var = 3.901
-rp = 0
-rp1 = 0
-rp2 = 0
-g_mu = 0
-
-rayparam = 48/512.*winlen
-
-#t = [i for i in range(hopsize)]
-#tlong = [i for i in range(hopsize*(btstep-1))]
-#tall = [i for i in range(hopsize*btstep)]
-#a = [0 for i in range(hopsize*btstep)]
-dfx = [i for i in range(winlen)]
-dfframe = [0 for i in range(winlen)]
-dfrev = [0 for i in range(winlen)]
-acframe = [0 for i in range(winlen)]
-
-localacf = [0 for i in range(winlen)]
-inds = [0 for i in range(maxnumelem)]
-
-acx = [i for i in range(laglen)]
-acfout = [0 for i in range(laglen)]
-
-phwv = [0 for i in range(2*laglen)]
-phwvx = [i for i in range(2*laglen)]
-
-dfwvnorm = exp(log(2.0)*(winlen+2.)/rayparam);
-dfwv = [exp(log(2.)*(i+1.)/rayparam)/dfwvnorm for i in range(winlen)]
-
-gwv = [exp(-.5*(j+1.-g_mu)**2/g_var**2) for j in range(laglen)]
-rwv = [(i+1.)/rayparam**2 * exp(-(i+1.)**2 / (2.*rayparam)**2)
- for i in range(0,laglen)]
-acf = fvec(winlen,1)
-
-nrframe = 0
-while (task.readsize == params.hopsize):
- task()
- #print task.pos2
- #a[:-hopsize] = [i for i in a[-(btstep-1)*hopsize:]]
- #a[-hopsize:] = [task.myvec.get(i,0) for i in t]
-
- #g('set xrange [%f:%f]' % (t[0],t[-1]))
- #time.sleep(.2)
- if task.pos2==btstep-1:
- nrframe += 1
- dfframe = [task.dfframe.get(i,0) for i in range(winlen)]
- if printframe == nrframe or printframe == -1:
- d = [[plotdata(range(-winlen,0),dfframe,plottitle="onset detection", with='lines')]]
- # start beattracking_do
- for i in range(winlen):
- dfrev[winlen-1-i] = 0.
- dfrev[winlen-1-i] = dfframe[i]*dfwv[i]
- aubio_autocorr(task.dfframe(),acf());
- acframe = [acf.get(i,0) for i in range(winlen)]
- if not timesig:
- numelem = 4
- else:
- numelem = timesig
-
- old = 0
- acfout = [0 for i in range(winlen/4)]
- for i in range(1,laglen-1):
- for a in range(1,numelem+1):
- for b in range (1-a,a):
- acfout[i] += acframe[a*(i+1)+b-1] * 1./(2.*a-1.)*rwv[i]
- if old < acfout[i]:
- old = acfout[i]
- maxi = i
- rp = max(maxi,1);
-
- if printframe == nrframe or printframe == -1:
- rwvs = [rwv[i]*max(acframe) for i in range(len(rwv))]
- d += [[plotdata(acx,acfout,plottitle="comb filterbank", with='lines', axes='x1y1'),
- plotdata([rp,rp],[1.2*old,min(acfout)],plottitle="period", with='impulses', axes='x1y1'),
- plotdata(acx,rwvs,plottitle="L_w", with='lines', axes='x1y1')]]
-
- # getperiod
- inds = [0 for i in range(maxnumelem)]
- localacf = [0 for i in range(winlen)]
- period = 0
- for a in range(1,4+1):
- for b in range(1-a,a):
- localacf[a*rp+b-1] = acframe[a*rp+b-1]
- for i in range(numelem):
- maxindex = 0
- maxval = 0.0
- for j in range(rp*(i+1)+i):
- if localacf[j] > maxval:
- maxval = localacf[j]
- maxind = j
- localacf[j] = 0
- inds[i] = maxind
- for i in range(numelem):
- period += inds[i]/(i+1.)
- period = period/numelem
- #print "period", period
-
- # checkstate
- if gp:
- # context dependant model
- acfout = [0 for i in range(winlen/4)]
- old = 0
- for i in range(laglen-1):
- for a in range(timesig):
- for b in range(1-a,a):
- acfout[i] += acframe[a*(i+1)+b-1] * gwv[i]
- if old < acfout[i]:
- old = acfout[i]
- maxi = i
- gp = maxi
- else:
- # general model
- gp = 0
- #print "gp", gp
- if printframe == nrframe or printframe == -1:
- gwvs = [gwv[i]*max(acfout) for i in range(len(gwv))]
- d += [[plotdata(acx,acfout,plottitle="comb filterbank", with='lines', axes='x1y1'),
- plotdata(gp,old,plottitle="period", with='impulses', axes='x1y1'),
- plotdata(acx,gwvs,plottitle="L_{gw}", with='lines', axes='x1y1')]]
-
- if counter == 0:
- # initial step
- if abs(gp-rp) > 2.*constthresh:
- flagstep = 1
- counter = 3
- else:
- flagstep = 0
- #print "flagstep", flagstep
- #print "rp2,rp1,rp", rp2,rp1,rp
- acfw = [dfframe[i]*dfwv[i] for i in range(winlen)]
-
- if counter == 1 and flagstep == 1:
- # "3rd frame after flagstep set"
- if abs(2.*rp-rp1- rp2) < constthresh:
- flagconst = 1
- counter = 0
- else:
- flagconst = 0
- counter = 2
- elif counter > 0:
- counter -= 1
-
- rp2 = rp1; rp1 = rp
-
- if flagconst:
- # "first run of new hypothesis"
- gp = rp
- g_mu = gp
- timesig = 4 #FIXME
- gwv = [exp(-.5*(j+1.-g_mu)**2/g_var**2) for j in range(laglen)]
- flagconst = 0
- bp = gp
- phwv = [1 for i in range(2*laglen)]
- elif timesig:
- # "contex dependant"
- bp = gp
- if step > lastbeat:
- phwv = [exp(-.5*(1.+j-step+lastbeat)**2/(bp/8.)) for j in range(2*laglen)]
- else:
- print "NOT using phase weighting"
- phwv = [1 for i in range(2*laglen)]
- else:
- # "initial state"
- bp = rp
- phwv = [1 for i in range(2*laglen)]
-
- while bp < 25:
- print "WARNING, doubling the beat period"
- bp *= 2
-
- #
- phout = [0. for i in range(winlen)]
-
- kmax = int(winlen/float(bp));
-
- old = 0
- for i in range(bp):
- phout[i] = 0.
- for k in range(kmax):
- phout[i] += dfrev[i+bp*k] * phwv[i]
- if phout[i] > old:
- old = phout[i]
- maxi = i
- maxindex = maxi
- if (maxindex == winlen - 1): maxindex = 0
- phase = 1 + maxindex
- i = 1
- beat = bp - phase
- beats= []
- if beat >= 0: beats.append(beat)
- while beat+bp < step:
- beat += bp
- beats.append(beat)
- lastbeat = beat
- #print beats,
- #print "the lastbeat is", lastbeat
-
- # plot all this
- if printframe == nrframe or printframe == -1:
- phwvs = [phwv[i]*max(phout) for i in range(len(phwv))]
- d += [[plotdata(range(-laglen,0),phwvs[laglen:0:-1],plottitle="A_{gw}", with='lines',axes='x1y1'),
- plotdata(range(-laglen,0),phout[laglen:0:-1],plottitle="df", with='lines'),
- plotdata(-phase,old,plottitle="phase", with='impulses', axes='x1y1'),
- plotdata([i for i in beats],[old for i in beats],plottitle="predicted", with='impulses')
- ]]
- #d += [[plotdata(dfx,dfwv,plottitle="phase weighting", with='lines', axes='x1y2'),
- # plotdata(dfx,dfrev,plottitle="df reverse", with='lines', axes='x1y1')]]
- #d += [[plotdata(dfx,phout,plottitle="phase", with='lines', axes='x1y2')]]
- #d += [[plotdata(dfx,dfwv,plottitle="phase weighting", with='lines', axes='x1y2'),
- # plotdata(dfx,dfrev,plottitle="df reverse", with='lines', axes='x1y1')]]
- #d += [[plotdata(dfx,phout,plottitle="phase", with='lines', axes='x1y2')]]
-
- f('set lmargin 4')
- f('set rmargin 4')
- f('set size %f,%f' % (1.0*xsize,1.0*ysize) )
- f('set key spacing 1.3')
- f('set multiplot')
-
- f('set size %f,%f' % (1.0*xsize,0.33*ysize) )
- f('set orig %f,%f' % (0.0*xsize,0.66*ysize) )
- f('set xrange [%f:%f]' % (-winlen,0) )
- f.title('Onset detection function')
- f.xlabel('time (df samples)')
- f.plot(*d[0])
- f('set size %f,%f' % (0.5*xsize,0.33*ysize) )
- f('set orig %f,%f' % (0.0*xsize,0.33*ysize) )
- f('set xrange [%f:%f]' % (0,laglen) )
- f.title('Period detection: Rayleygh weighting')
- f.xlabel('lag (df samples)')
- f.plot(*d[1])
- f('set size %f,%f' % (0.5*xsize,0.33*ysize) )
- f('set orig %f,%f' % (0.5*xsize,0.33*ysize) )
- f('set xrange [%f:%f]' % (0,laglen) )
- f.title('Period detection: Gaussian weighting')
- f.xlabel('lag (df samples)')
- f.plot(*d[2])
- f('set size %f,%f' % (1.0*xsize,0.33*ysize) )
- f('set orig %f,%f' % (0.0*xsize,0.00*ysize) )
- f('set xrange [%f:%f]' % (-laglen,laglen) )
- f.title('Phase detection and predicted beats')
- f.xlabel('time (df samples)')
- f.plot(*d[3])
- f('set nomultiplot')
- if printframe == -1: a = sys.stdin.read()
- elif 0 < printframe and printframe < nrframe:
- break
--- a/tests/python/bench/tempo/demo-tempo-acf
+++ /dev/null
@@ -1,157 +1,0 @@
-#! /usr/bin/python
-
-""" this file was written by Paul Brossier
- it is released under the GNU/GPL license.
-"""
-
-import sys,time
-from aubio.task import taskbeat,taskparams
-from aubio.aubioclass import fvec, aubio_autocorr
-from aubio.gnuplot import gnuplot_create, gnuplot_addargs
-from aubio.aubiowrapper import *
-from math import exp,log
-
-usage = "usage: %s [options] -i soundfile" % sys.argv[0]
-
-def parse_args():
- from optparse import OptionParser
- parser = OptionParser(usage=usage)
- parser.add_option("-i","--input",
- action="store", dest="filename",
- help="input sound file")
- parser.add_option("-n","--printframe",
- action="store", dest="printframe", default=-1,
- help="make a plot of the n_th frame")
- gnuplot_addargs(parser)
- (options, args) = parser.parse_args()
- if not options.filename:
- print "no file name given\n", usage
- sys.exit(1)
- return options, args
-
-def plotdata(x,y,plottitle="",**keyw):
- import Gnuplot
- return Gnuplot.Data(x, y, title="%s" % plottitle,**keyw)
-
-options, args = parse_args()
-filename = options.filename
-xsize = float(options.xsize)
-ysize = float(options.ysize)
-
-printframe = int(options.printframe)
-
-if options.outplot and printframe > 0:
- extension = options.outplot.split('.')[-1]
- outplot = '.'.join(options.outplot.split('.')[:-1])
-else:
- extension = ''
- outplot = None
-f = gnuplot_create(outplot,extension,options)
-
-params = taskparams()
-params.onsetmode = 'specdiff'
-task = taskbeat(filename,params=params)
-
-hopsize = params.hopsize
-bufsize = params.bufsize
-btstep = task.btstep
-winlen = task.btwinlen
-laglen = winlen/4
-step = winlen/4
-
-timesig = 0
-maxnumelem = 4
-gp = 0
-counter = 0
-flagconst = 0
-constthresh = 3.901
-g_var = 3.901
-rp = 0
-rp1 = 0
-rp2 = 0
-g_mu = 0
-
-rayparam = 48/512.*winlen
-
-t = [i for i in range(hopsize)]
-#tlong = [i for i in range(hopsize*(btstep-1))]
-#tall = [i for i in range(hopsize*btstep)]
-sig = [0 for i in range(hopsize*btstep*4)]
-dfx = [i for i in range(winlen)]
-dfframe = [0 for i in range(winlen)]
-dfrev = [0 for i in range(winlen)]
-acframe = [0 for i in range(winlen/2)]
-
-localacf = [0 for i in range(winlen)]
-inds = [0 for i in range(maxnumelem)]
-
-acx = [i for i in range(laglen)]
-acfout = [0 for i in range(laglen)]
-
-phwv = [0 for i in range(2*laglen)]
-phwvx = [i for i in range(2*laglen)]
-
-dfwvnorm = exp(log(2.0)*(winlen+2.)/rayparam);
-dfwv = [exp(log(2.)*(i+1.)/rayparam)/dfwvnorm for i in range(winlen)]
-
-gwv = [exp(-.5*(j+1.-g_mu)**2/g_var**2) for j in range(laglen)]
-rwv = [(i+1.)/rayparam**2 * exp(-(i+1.)**2 / (2.*rayparam)**2)
- for i in range(0,laglen)]
-acf = fvec(winlen,1)
-
-nrframe = 0
-while (task.readsize == params.hopsize):
- task()
- #print task.pos2
- sig[:-hopsize] = [i for i in sig[-(btstep*4-1)*hopsize:]]
- sig[-hopsize:] = [task.myvec.get(i,0) for i in t]
-
- #g('set xrange [%f:%f]' % (t[0],t[-1]))
- #time.sleep(.2)
- if task.pos2==btstep-1:
- nrframe += 1
- dfframe = [task.dfframe.get(i,0) for i in range(winlen)]
- # start beattracking_do
- for i in range(winlen):
- dfrev[winlen-1-i] = 0.
- dfrev[winlen-1-i] = dfframe[i]*dfwv[i]
- aubio_autocorr(task.dfframe(),acf());
- acframe = [acf.get(i,0) for i in range(winlen/2)]
- if printframe == nrframe or printframe == -1:
- d = [[plotdata(range(0,btstep*hopsize*4,4),sig[0:-1:4],plottitle="input signal", with='lines')]]
- d += [[plotdata(range(-winlen,0),dfframe,plottitle="onset detection", with='lines')]]
- d += [[plotdata(range(winlen/2),acframe,plottitle="autocorrelation", with='lines')]]
-
- # plot all this
- if printframe == nrframe or printframe == -1:
-
- f('set lmargin 4')
- f('set rmargin 4')
- f('set size %f,%f' % (1.0*xsize,1.0*ysize) )
- f('set key spacing 1.3')
- f('set multiplot')
-
- f('set size %f,%f' % (1.0*xsize,0.33*ysize) )
- f('set orig %f,%f' % (0.0*xsize,0.66*ysize) )
- f('set xrange [%f:%f]' % (0,btstep*hopsize*4) )
- f('set yrange [%f:%f]' % (-1.2*max(sig),1.2*max(sig)) )
- f.title('Input signal')
- f.xlabel('time (samples)')
- f.plot(*d[0])
- f('set size %f,%f' % (1.0*xsize,0.33*ysize) )
- f('set orig %f,%f' % (0.0*xsize,0.33*ysize) )
- f('set xrange [%f:%f]' % (-winlen,0) )
- f('set autoscale y')
- f.title('Onset detection function')
- f.xlabel('time (df samples)')
- f.plot(*d[1])
- f('set size %f,%f' % (1.0*xsize,0.33*ysize) )
- f('set orig %f,%f' % (0.0*xsize,0.00*ysize) )
- f('set xrange [%f:%f]' % (0,winlen/2) )
- f.title('Autocorrelation')
- f.xlabel('lag (df samples)')
- f.plot(*d[2])
- f('set nomultiplot')
- if printframe == -1: a = sys.stdin.read()
- elif 0 < printframe and printframe < nrframe:
- break
--- a/tests/python/cvec.py
+++ /dev/null
@@ -1,51 +1,0 @@
-import unittest
-
-from aubio.aubiowrapper import *
-
-buf_size = 2048
-channels = 3
-
-class cvec_test_case(unittest.TestCase):
-
- def setUp(self):
- self.vector = new_cvec(buf_size, channels)
-
- def tearDown(self):
- del_cvec(self.vector)
-
- def test_cvec(self):
- """ create and delete cvec """
- pass
-
- def test_cvec_read_norm(self):
- """ check new cvec norm elements are set to 0. """
- for index in range(buf_size/2+1):
- for channel in range(channels):
- self.assertEqual(cvec_read_norm(self.vector,channel,index),0.)
-
- def test_cvec_read_phas(self):
- """ check new cvec phas elements are set to 0. """
- for index in range(buf_size/2+1):
- for channel in range(channels):
- self.assertEqual(cvec_read_phas(self.vector,channel,index),0.)
-
- def test_cvec_write_norm(self):
- """ check new cvec norm elements are set with cvec_write_norm """
- for index in range(buf_size/2+1):
- for channel in range(channels):
- cvec_write_norm(self.vector,1.,channel,index)
- for index in range(buf_size/2+1):
- for channel in range(channels):
- self.assertEqual(cvec_read_norm(self.vector,channel,index),1.)
-
- def test_cvec_write_phas(self):
- """ check new cvec phas elements are set with cvec_write_phas """
- for index in range(buf_size/2+1):
- for channel in range(channels):
- cvec_write_phas(self.vector,1.,channel,index)
- for index in range(buf_size/2+1):
- for channel in range(channels):
- self.assertEqual(cvec_read_phas(self.vector,channel,index),1.)
-
-if __name__ == '__main__':
- unittest.main()
--- a/tests/python/demo/plot_mfcc_filterbank.py
+++ /dev/null
@@ -1,43 +1,0 @@
-#!/usr/bin/env python
-
-import pylab
-import numpy
-import sys
-
-from aubio.aubiowrapper import *
-
-win_size = 2048
-channels = 1
-n_filters = 40
-samplerate = 44100
-
-filterbank = new_aubio_filterbank_mfcc(n_filters, win_size, samplerate,
- 0., samplerate)
-
-
-mfcc_filters = []
-for channel in range(n_filters):
- vec = aubio_filterbank_getchannel(filterbank,channel)
- mfcc_filters.append([])
- for index in range(win_size):
- mfcc_filters[channel].append(fvec_read_sample(vec,0,index))
-
-doLog=False
-if len(sys.argv)>1:
- if sys.argv[1]=='log':
- doLog=True
-
-nmat= numpy.array(mfcc_filters)
-
-pylab.hold(True)
-
-n_filters=numpy.shape(nmat)[0]
-for i in range(n_filters):
- if doLog==True:
- pylab.semilogx(nmat[i,:])
- else:
- pylab.plot(nmat[i,:])
-
-pylab.hold(False)
-#pylab.savefig('test.png')
-pylab.show()
--- a/tests/python/examples/aubioonset.py
+++ b/tests/python/examples/aubioonset.py
@@ -1,6 +1,6 @@
from template import *
-class aubioonset_test_case(program_test_case):
+class aubioonset_unit(program_test_case):
import os.path
filename = os.path.join('..','..','sounds','woodblock.aiff')
@@ -23,14 +23,17 @@
self.command += " -s -100 "
self.getOutput()
# only one onset in woodblock.aiff
- assert len(str(self.output)) != 0, "no output produced with command:\n" \
- + self.command
- assert len(self.output.split('\n')) == 1
+ self.assertNotEqual(0, len(str(self.output)), \
+ "no output produced with command:\n" + self.command)
+ self.assertEqual(1, len(self.output.split('\n')) )
# onset should be at 0.00000
- assert float(self.output.strip()) == 0.
+ self.assertEqual(0, float(self.output.strip()))
-for name in ["energy", "specdiff", "hfc", "complex", "phase", "kl", "mkl"]:
- exec("class aubioonset_test_case_"+name+"(aubioonset_test_case):\n\
+list_of_onset_modes = ["energy", "specdiff", "hfc", "complex", "phase", \
+ "kl", "mkl", "specflux"]
+
+for name in list_of_onset_modes:
+ exec("class aubioonset_"+name+"_unit(aubioonset_unit):\n\
options = \" -O "+name+" \"")
if __name__ == '__main__': unittest.main()
--- a/tests/python/fft.py
+++ /dev/null
@@ -1,155 +1,0 @@
-import math
-
-from template import aubio_unit_template
-
-from aubio.aubiowrapper import *
-
-buf_size = 1024
-channels = 4
-
-class fft_unit(aubio_unit_template):
-
- def setUp(self):
- self.o = new_aubio_fft(buf_size, channels)
-
- def tearDown(self):
- del_aubio_fft(self.o)
-
- def test_create(self):
- """ test creation and deletion of fft object """
- pass
-
- def test_do_zeroes(self):
- """ test aubio_fft_do on zeroes """
- input = new_fvec(buf_size, channels)
- fftgrain = new_cvec(buf_size, channels)
- for index in range(buf_size):
- for channel in range(channels):
- self.assertCloseEnough(0., fvec_read_sample(input, channel, index))
- aubio_fft_do(self.o, input, fftgrain)
- for index in range(buf_size/2+1):
- for channel in range(channels):
- self.assertCloseEnough(0., cvec_read_norm(fftgrain, channel, index))
- for index in range(buf_size/2+1):
- for channel in range(channels):
- self.assertCloseEnough(0., cvec_read_phas(fftgrain, channel, index))
- del fftgrain
- del input
-
- def test_rdo_zeroes(self):
- """ test aubio_fft_rdo on zeroes """
- fftgrain = new_cvec(buf_size, channels)
- output = new_fvec(buf_size, channels)
- aubio_fft_rdo(self.o, fftgrain, output)
- # check output
- for index in range(buf_size):
- for channel in range(channels):
- self.assertEqual(0., fvec_read_sample(output, channel, index))
- del fftgrain
- del output
-
- def test_do_impulse(self):
- """ test aubio_fft_do with an impulse on one channel """
- input = new_fvec(buf_size, channels)
- fftgrain = new_cvec(buf_size, channels)
- # write impulse in channel 0, sample 0.
- some_constant = 0.3412432456
- fvec_write_sample(input, some_constant, 0, 0)
- aubio_fft_do(self.o, input, fftgrain)
- # check norm
- for index in range(buf_size/2+1):
- self.assertCloseEnough(some_constant, cvec_read_norm(fftgrain, 0, index))
- for index in range(buf_size/2+1):
- for channel in range(1, channels):
- self.assertEqual(0., cvec_read_norm(fftgrain, channel, index))
- # check phas
- for index in range(buf_size/2+1):
- for channel in range(channels):
- self.assertEqual(0., cvec_read_phas(fftgrain, channel, index))
- del fftgrain
- del input
-
- def test_do_constant(self):
- """ test aubio_fft_do with a constant on one channel """
- input = new_fvec(buf_size, channels)
- fftgrain = new_cvec(buf_size, channels)
- # write impulse in channel 0, sample 0.
- some_constant = 0.003412432456
- for index in range(1,buf_size):
- fvec_write_sample(input, some_constant, 0, index)
- aubio_fft_do(self.o, input, fftgrain)
- # check norm and phase == 0 in all other channels
- for index in range(buf_size/2+1):
- for channel in range(1, channels):
- self.assertEqual(0., cvec_read_norm(fftgrain, channel, index))
- self.assertEqual(0., cvec_read_phas(fftgrain, channel, index))
-
- # check norm and phase == 0 in first first and last bin of first channel
- # check unwrap2pi(phas) ~= pi everywhere but in first and last bin
- self.assertCloseEnough(0., cvec_read_phas(fftgrain, 0, 0))
- for index in range(1,buf_size/2):
- self.assertCloseEnough(math.pi, aubio_unwrap2pi(cvec_read_phas(fftgrain, 0, index)))
- self.assertCloseEnough(0., cvec_read_phas(fftgrain, 0, buf_size/2))
- self.assertCloseEnough(0., cvec_read_phas(fftgrain, 0, buf_size/2+1))
-
- self.assertCloseEnough((buf_size-1)*some_constant, cvec_read_norm(fftgrain, 0, 0))
- for index in range(1,buf_size/2+1):
- self.assertCloseEnough(some_constant, abs(cvec_read_norm(fftgrain, 0, index)))
- self.assertCloseEnough(0., cvec_read_norm(fftgrain, 0, buf_size/2+1))
-
- del fftgrain
- del input
-
- def test_do_impulse_multichannel(self):
- " test aubio_fft_do on impulse two channels "
- input = new_fvec(buf_size, channels)
- fftgrain = new_cvec(buf_size, channels)
- # put an impulse in first an last channel, at first and last index
- fvec_write_sample(input, 1., 0, 0)
- fvec_write_sample(input, 1., channels-1, 0)
- aubio_fft_do(self.o, input, fftgrain)
- # check the norm
- for index in range(buf_size/2+1):
- self.assertEqual(1., cvec_read_norm(fftgrain, 0, index))
- for index in range(buf_size/2+1):
- for channel in range(1, channels-1):
- self.assertEqual(0., cvec_read_norm(fftgrain, channel, index))
- for index in range(buf_size/2+1):
- self.assertEqual(1., cvec_read_norm(fftgrain, channels-1, index))
- # check the phase
- for index in range(buf_size/2+1):
- for channel in range(channels):
- self.assertEqual(0., cvec_read_phas(fftgrain, channel, index))
- del fftgrain
- del input
-
- def test_rdo_impulse(self):
- """ test aubio_fft_rdo on impulse """
- fftgrain = new_cvec(buf_size, channels)
- for channel in range(channels):
- cvec_write_norm(fftgrain, 1., channel, 0)
- output = new_fvec(buf_size, channels)
- aubio_fft_rdo(self.o, fftgrain, output)
- for index in range(buf_size/2+1):
- for channel in range(channels):
- self.assertCloseEnough(fvec_read_sample(output, channel, index), 1./buf_size)
- del fftgrain
- del output
-
- def test_do_back_and_forth(self):
- """ test aubio_fft_rdo on a constant """
- input = new_fvec(buf_size, channels)
- output = new_fvec(buf_size, channels)
- fftgrain = new_cvec(buf_size, channels)
- for index in range(buf_size/2+1):
- for channel in range(channels):
- fvec_write_sample(input, 0.67, channel, index)
- aubio_fft_do(self.o, input, fftgrain)
- aubio_fft_rdo(self.o, fftgrain, output)
- for index in range(buf_size/2+1):
- for channel in range(channels):
- self.assertCloseEnough(0.67, fvec_read_sample(output, channel, index))
- del fftgrain
- del output
-
-if __name__ == '__main__': unittest.main()
--- a/tests/python/filterbank.py
+++ /dev/null
@@ -1,110 +1,0 @@
-
-import unittest
-from aubio.aubiowrapper import *
-
-win_size = 2048
-channels = 1
-n_filters = 40
-samplerate = 44100
-zerodb = -96.015602111816406
-
-class filterbank_test_case(unittest.TestCase):
-
- def setUp(self):
- self.input_spectrum = new_cvec(win_size,channels)
- self.output_banks = new_fvec(n_filters,channels)
- self.filterbank = new_aubio_filterbank(n_filters,win_size)
-
- def tearDown(self):
- del_aubio_filterbank(self.filterbank)
- del_cvec(self.input_spectrum)
- del_fvec(self.output_banks)
-
- def testzeroes(self):
- """ check the output of the filterbank is -96 when input spectrum is 0 """
- aubio_filterbank_do(self.filterbank,self.input_spectrum,
- self.output_banks)
- for channel in range(channels):
- for index in range(n_filters):
- self.assertEqual(fvec_read_sample(self.output_banks,channel,index), zerodb)
-
- def testphase(self):
- """ check the output of the filterbank is -96 when input phase is pi """
- from math import pi
- for channel in range(channels):
- for index in range(win_size/2+1):
- cvec_write_phas(self.input_spectrum,pi,channel,index)
- aubio_filterbank_do(self.filterbank,self.input_spectrum,
- self.output_banks)
- for channel in range(channels):
- for index in range(n_filters):
- self.assertEqual(fvec_read_sample(self.output_banks,channel,index), zerodb)
-
- def testones(self):
- """ check the output of the filterbank is -96 when input norm is 1
- (the filterbank is currently set to 0).
- """
- for channel in range(channels):
- for index in range(win_size/2+1):
- cvec_write_norm(self.input_spectrum,1.,channel,index)
- aubio_filterbank_do(self.filterbank,self.input_spectrum,
- self.output_banks)
- for channel in range(channels):
- for index in range(n_filters):
- self.assertEqual(fvec_read_sample(self.output_banks,channel,index), zerodb)
-
- def testmfcc_zeroes(self):
- """ check the mfcc filterbank output is -96 when input is 0 """
- self.filterbank = new_aubio_filterbank_mfcc(n_filters, win_size, samplerate, 0., samplerate)
- aubio_filterbank_do(self.filterbank,self.input_spectrum,
- self.output_banks)
- for channel in range(channels):
- for index in range(n_filters):
- self.assertEqual(fvec_read_sample(self.output_banks,channel,index), zerodb)
-
- def testmfcc_phasepi(self):
- """ check the mfcc filterbank output is -96 when input phase is pi """
- self.filterbank = new_aubio_filterbank_mfcc(n_filters, win_size, samplerate, 0., samplerate)
- from math import pi
- for channel in range(channels):
- for index in range(win_size/2+1):
- cvec_write_phas(self.input_spectrum,pi,channel,index)
- aubio_filterbank_do(self.filterbank,self.input_spectrum,
- self.output_banks)
- for channel in range(channels):
- for index in range(n_filters):
- self.assertEqual(fvec_read_sample(self.output_banks,channel,index), zerodb)
-
- def testmfcc_ones(self):
- """ check setting the input spectrum to 1 gives something between -3. and -4. """
- self.filterbank = new_aubio_filterbank_mfcc(n_filters, win_size, samplerate, 0., samplerate)
- for channel in range(channels):
- for index in range(win_size/2+1):
- cvec_write_norm(self.input_spectrum,1.,channel,index)
- aubio_filterbank_do(self.filterbank,self.input_spectrum,
- self.output_banks)
- for channel in range(channels):
- for index in range(n_filters):
- val = fvec_read_sample(self.output_banks,channel,index)
- self.failIf(val > -2.5 , val )
- self.failIf(val < -4. , val )
-
- def testmfcc_channels(self):
- """ check the values of each filters in the mfcc filterbank """
- self.filterbank = new_aubio_filterbank_mfcc(n_filters, win_size, samplerate,
- 0., samplerate)
- filterbank_mfcc = [ [float(f) for f in line.strip().split()]
- for line in open('filterbank_mfcc.txt').readlines()]
- for channel in range(n_filters):
- vec = aubio_filterbank_getchannel(self.filterbank,channel)
- for index in range(win_size):
- self.assertAlmostEqual(fvec_read_sample(vec,0,index),
- filterbank_mfcc[channel][index])
- aubio_filterbank_do(self.filterbank,self.input_spectrum,
- self.output_banks)
- for channel in range(channels):
- for index in range(n_filters):
- self.assertEqual(fvec_read_sample(self.output_banks,channel,index), zerodb)
-
-if __name__ == '__main__':
- unittest.main()
--- a/tests/python/filterbank_mfcc.txt
+++ /dev/null
@@ -1,40 +1,0 @@
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\ No newline at end of file
--- a/tests/python/fvec.py
+++ /dev/null
@@ -1,36 +1,0 @@
-import unittest
-
-from aubio.aubiowrapper import *
-
-buf_size = 2048
-channels = 3
-
-class fvec_test_case(unittest.TestCase):
-
- def setUp(self):
- self.vector = new_fvec(buf_size, channels)
-
- def tearDown(self):
- del_fvec(self.vector)
-
- def test_fvec(self):
- """ create and delete fvec """
- pass
-
- def test_fvec_read_sample(self):
- """ check new fvec elements are set to 0. """
- for index in range(buf_size):
- for channel in range(channels):
- self.assertEqual(0., fvec_read_sample(self.vector,channel,index))
-
- def test_fvec_write_sample(self):
- """ check new fvec elements are set with fvec_write_sample """
- for index in range(buf_size):
- for channel in range(channels):
- fvec_write_sample(self.vector,1.,channel,index)
- for index in range(buf_size):
- for channel in range(channels):
- self.assertEqual(1., fvec_read_sample(self.vector,channel,index))
-
-if __name__ == '__main__':
- unittest.main()
--- /dev/null
+++ b/tests/python/localaubio.py
@@ -1,0 +1,18 @@
+
+# add ${src}/python and ${src}/python/aubio/.libs to python path
+# so the script is runnable from a compiled source tree.
+
+try:
+ from aubio.aubiowrapper import *
+except ImportError:
+ try:
+ import os
+ import sys
+ cur_dir = os.path.dirname(sys.argv[0])
+ sys.path.append(os.path.join(cur_dir,'..','..','python'))
+ sys.path.append(os.path.join(cur_dir,'..','..','python','aubio','.libs'))
+ from aubio.aubiowrapper import *
+ except ImportError:
+ raise
+else:
+ raise ImportError, "Note: the aubio module could be imported without adding the source directory to your path."
--- a/tests/python/phasevoc.py
+++ /dev/null
@@ -1,62 +1,0 @@
-import unittest
-
-from aubio.aubiowrapper import *
-
-buf_size = 1024
-hop_size = 256
-channels = 2
-
-precision = 6
-
-class phasevoc_unit(unittest.TestCase):
-
- def setUp(self):
- self.o = new_aubio_pvoc(buf_size, hop_size, channels)
-
- def tearDown(self):
- del_aubio_pvoc(self.o)
-
- def test_create(self):
- """ create and delete phasevoc object """
- pass
-
- def test_zeroes(self):
- """ run phasevoc object on zeroes """
- input = new_fvec(hop_size, channels)
- fftgrain = new_cvec(buf_size, channels)
- output = new_fvec(hop_size, channels)
- for index in range(hop_size):
- for channel in range(channels):
- self.assertEqual(0., fvec_read_sample(input, channel, index))
- aubio_pvoc_do (self.o, input, fftgrain)
- aubio_pvoc_rdo(self.o, fftgrain, output)
- for index in range(hop_size):
- for channel in range(channels):
- self.assertEqual(0., fvec_read_sample(output, channel, index))
- del input
- del fftgrain
-
- def test_ones(self):
- """ run phasevoc object on ones """
- input = new_fvec(hop_size, channels)
- fftgrain = new_cvec(buf_size, channels)
- output = new_fvec(hop_size, channels)
- for index in range(hop_size):
- for channel in range(channels):
- fvec_write_sample(input, 1., channel, index)
- self.assertEqual(1., fvec_read_sample(input, channel, index))
- # make sure the first buf_size-hop_size samples are zeroes
- for i in range(buf_size/hop_size - 1):
- aubio_pvoc_do (self.o, input, fftgrain)
- aubio_pvoc_rdo(self.o, fftgrain, output)
- for index in range(hop_size):
- for channel in range(channels):
- self.assertAlmostEqual(0., fvec_read_sample(output, channel, index), precision)
- # make sure the first non zero input is correctly resynthesised
- aubio_pvoc_do (self.o, input, fftgrain)
- aubio_pvoc_rdo(self.o, fftgrain, output)
- for index in range(hop_size):
- for channel in range(channels):
- self.assertAlmostEqual(1., fvec_read_sample(output, channel, index), precision)
- del input
- del fftgrain
--- a/tests/python/pitchdetection.py
+++ /dev/null
@@ -1,106 +1,0 @@
-import unittest
-
-from aubio.aubiowrapper import *
-
-buf_size = 4096
-hop_size = 512
-channels = 1
-samplerate = 44100.
-
-class pitchdetection_test_case(unittest.TestCase):
-
- def setUp(self, type = aubio_pitch_yinfft, mode = aubio_pitchm_freq):
- self.create(type=type)
-
- def create(self, type = aubio_pitch_yinfft,
- mode = aubio_pitchm_freq):
- self.type = type
- self.o = new_aubio_pitchdetection(buf_size, hop_size,
- channels, int(samplerate), type, mode)
-
- def tearDown(self):
- del_aubio_pitchdetection(self.o)
-
- def test_pitchdetection(self):
- """ create and delete pitchdetection """
- pass
-
- def test_pitchdetection_run_zeroes(self):
- """ run pitchdetection on an empty buffer """
- vec = new_fvec(buf_size, channels)
- for i in range(100):
- self.assertEqual(aubio_pitchdetection(self.o,vec),0.)
- del vec
-
- def test_pitchdetection_run_4_impulses(self):
- """ run pitchdetection on a train of 4 impulses """
- vec = new_fvec(buf_size, channels)
- fvec_write_sample(vec,-1.,0, 0)
- fvec_write_sample(vec, 1.,0, buf_size/4)
- fvec_write_sample(vec,-1.,0, buf_size/2)
- fvec_write_sample(vec, 1.,0,3*buf_size/4)
- frequency = samplerate/2*4/buf_size
- for i in range(100):
- self.assertEqual(aubio_pitchdetection(self.o,vec),frequency)
- del vec
-
- def test_pitchdetection_run_4_positive_impulses(self):
- """ run pitchdetection on a train of 4 positive impulses of arbitrary size """
- vec = new_fvec(buf_size, channels)
- frequency = samplerate/2*8/buf_size
- for i in range(100):
- fvec_write_sample(vec, 2.-.01*i,0, 0)
- fvec_write_sample(vec, 2.-.01*i,0, buf_size/4)
- fvec_write_sample(vec, 2.-.01*i,0, buf_size/2)
- fvec_write_sample(vec, 2.-.01*i,0,3*buf_size/4)
- self.assertAlmostEqual(aubio_pitchdetection(self.o,vec),frequency,1)
- del vec
-
- def test_pitchdetection_run_4_negative_impulses(self):
- """ run pitchdetection on a train of 4 negative impulses of arbitrary size """
- vec = new_fvec(buf_size, channels)
- frequency = samplerate/2*8/buf_size
- for i in range(1,100):
- fvec_write_sample(vec,-.01*i,0, 0)
- fvec_write_sample(vec,-.01*i,0, buf_size/4)
- fvec_write_sample(vec,-.01*i,0, buf_size/2)
- fvec_write_sample(vec,-.01*i,0,3*buf_size/4)
- self.assertAlmostEqual(aubio_pitchdetection(self.o,vec),frequency,1)
- del vec
-
- def test_pitchdetection_run_8_impulses(self):
- """ run pitchdetection on a train of 8 impulses """
- vec = new_fvec(buf_size, channels)
- fvec_write_sample(vec, 1.,0, 0)
- fvec_write_sample(vec,-1.,0, buf_size/8)
- fvec_write_sample(vec, 1.,0, buf_size/4)
- fvec_write_sample(vec,-1.,0,3*buf_size/8)
- fvec_write_sample(vec, 1.,0, buf_size/2)
- fvec_write_sample(vec,-1.,0,5*buf_size/8)
- fvec_write_sample(vec, 1.,0,3*buf_size/4)
- fvec_write_sample(vec,-1.,0,7*buf_size/8)
- for i in range(100):
- self.assertAlmostEqual(aubio_pitchdetection(self.o,vec),
- samplerate/2/buf_size*8, 1)
- del vec
-
-"""
-class pitchdetection_yin_test_case(pitchdetection_test_case):
- def setUp(self, type = aubio_pitch_yin):
- self.create(type=type)
-
-class pitchdetection_fcomb_test_case(pitchdetection_test_case):
- def setUp(self, type = aubio_pitch_fcomb):
- self.create(type=type)
-
-class pitchdetection_mcomb_test_case(pitchdetection_test_case):
- def setUp(self, type = aubio_pitch_mcomb):
- self.create(type=type)
-
-class pitchdetection_schmitt_test_case(pitchdetection_test_case):
- def setUp(self, type = aubio_pitch_schmitt):
- self.create(type=type)
-"""
-
-if __name__ == '__main__':
- unittest.main()
--- a/tests/python/run_all_tests
+++ b/tests/python/run_all_tests
@@ -1,13 +1,5 @@
#! /usr/bin/python
-# add ${src}/python and ${src}/python/aubio/.libs to python path
-# so the script is runnable from a compiled source tree.
-import sys, os
-
-cur_dir = os.path.dirname(sys.argv[0])
-sys.path.append(os.path.join(cur_dir,'..','..','python'))
-sys.path.append(os.path.join(cur_dir,'..','..','python','aubio','.libs'))
-
import unittest
from glob import glob
@@ -14,8 +6,11 @@
def list_of_test_files(path):
return [i.split('.')[0].replace('/','.') for i in glob(path)]
-modules_to_test = list_of_test_files('*.py')
+modules_to_test = []
+modules_to_test += list_of_test_files('src/*.py')
+modules_to_test += list_of_test_files('src/*/*.py')
modules_to_test += list_of_test_files('examples/aubio*.py')
+modules_to_test += list_of_test_files('*.py')
if __name__ == '__main__':
for module in modules_to_test:
--- /dev/null
+++ b/tests/python/src/cvec.py
@@ -1,0 +1,50 @@
+from template import aubio_unit_template
+from localaubio import *
+
+buf_size = 2048
+channels = 3
+
+class cvec_unit(aubio_unit_template):
+
+ def setUp(self):
+ self.vector = new_cvec(buf_size, channels)
+
+ def tearDown(self):
+ del_cvec(self.vector)
+
+ def test_cvec(self):
+ """ create and delete cvec """
+ pass
+
+ def test_cvec_read_norm(self):
+ """ check new cvec norm elements are set to 0. """
+ for index in range(buf_size/2+1):
+ for channel in range(channels):
+ self.assertEqual(cvec_read_norm(self.vector,channel,index),0.)
+
+ def test_cvec_read_phas(self):
+ """ check new cvec phas elements are set to 0. """
+ for index in range(buf_size/2+1):
+ for channel in range(channels):
+ self.assertEqual(cvec_read_phas(self.vector,channel,index),0.)
+
+ def test_cvec_write_norm(self):
+ """ check new cvec norm elements are set with cvec_write_norm """
+ for index in range(buf_size/2+1):
+ for channel in range(channels):
+ cvec_write_norm(self.vector,1.,channel,index)
+ for index in range(buf_size/2+1):
+ for channel in range(channels):
+ self.assertEqual(cvec_read_norm(self.vector,channel,index),1.)
+
+ def test_cvec_write_phas(self):
+ """ check new cvec phas elements are set with cvec_write_phas """
+ for index in range(buf_size/2+1):
+ for channel in range(channels):
+ cvec_write_phas(self.vector,1.,channel,index)
+ for index in range(buf_size/2+1):
+ for channel in range(channels):
+ self.assertEqual(cvec_read_phas(self.vector,channel,index),1.)
+
+if __name__ == '__main__':
+ unittest.main()
--- /dev/null
+++ b/tests/python/src/fvec.py
@@ -1,0 +1,35 @@
+from template import aubio_unit_template
+from localaubio import *
+
+buf_size = 2048
+channels = 3
+
+class fvec_unit(aubio_unit_template):
+
+ def setUp(self):
+ self.vector = new_fvec(buf_size, channels)
+
+ def tearDown(self):
+ del_fvec(self.vector)
+
+ def test_fvec(self):
+ """ create and delete fvec """
+ pass
+
+ def test_fvec_read_sample(self):
+ """ check new fvec elements are set to 0. """
+ for index in range(buf_size):
+ for channel in range(channels):
+ self.assertEqual(0., fvec_read_sample(self.vector,channel,index))
+
+ def test_fvec_write_sample(self):
+ """ check new fvec elements are set with fvec_write_sample """
+ for index in range(buf_size):
+ for channel in range(channels):
+ fvec_write_sample(self.vector,1.,channel,index)
+ for index in range(buf_size):
+ for channel in range(channels):
+ self.assertEqual(1., fvec_read_sample(self.vector,channel,index))
+
+if __name__ == '__main__':
+ unittest.main()
--- /dev/null
+++ b/tests/python/src/onset/peakpick.py
@@ -1,0 +1,76 @@
+from template import aubio_unit_template
+from localaubio import *
+
+buf_size = 7
+channels = 1
+
+class peakpick_unit(aubio_unit_template):
+
+ def setUp(self):
+ self.o = new_aubio_peakpicker(0.1)
+ pass
+
+ def tearDown(self):
+ del_aubio_peakpicker(self.o)
+ pass
+
+ def test_peakpick(self):
+ """ create and delete peakpick """
+ pass
+
+ def test_peakpick_zeroes(self):
+ """ check peakpick run on a vector full of zero returns no peak. """
+ self.assertEqual(0., aubio_peakpick_pimrt_getval(self.o))
+
+ def test_peakpick_impulse(self):
+ """ check peakpick detects a single impulse as a peak. """
+ """ check two consecutive peaks are detected as one. """
+ for index in range(0,buf_size-1):
+ input = new_fvec(buf_size, channels)
+ fvec_write_sample(input, 1000., 0, index)
+ fvec_write_sample(input, 1000./2, 0, index+1)
+ #print "%2s" % index, aubio_peakpick_pimrt(input, self.o), "|",
+ #for i in range(buf_size): print fvec_read_sample(input, 0, i),
+ del_fvec(input)
+
+ def test_peakpick_consecutive_peaks(self):
+ """ check two consecutive peaks are detected as one. """
+ for index in range(0,buf_size-4):
+ input = new_fvec(buf_size, channels)
+ fvec_write_sample(input, 1000./2, 0, index)
+ fvec_write_sample(input, 1000., 0, index+1)
+ fvec_write_sample(input, 1000., 0, index+3)
+ fvec_write_sample(input, 1000./2, 0, index+4)
+ peak_pick_result = aubio_peakpick_pimrt(input, self.o)
+ if index == 2: self.assertEqual(1., peak_pick_result)
+ else: self.assertEqual(0., peak_pick_result)
+ #print "%2s" % index, peak_pick_result, "|",
+ #for i in range(buf_size): print fvec_read_sample(input, 0, i),
+ del_fvec(input)
+ for index in range(buf_size-4,buf_size-1):
+ input = new_fvec(buf_size, channels)
+ fvec_write_sample(input, 1000./2, 0, index)
+ fvec_write_sample(input, 1000., 0, index+1)
+ #print "%2s" % index, aubio_peakpick_pimrt(input, self.o), "|",
+ #for i in range(buf_size): print fvec_read_sample(input, 0, i),
+ del_fvec(input)
+
+ def test_peakpick_set_threshold(self):
+ """ test aubio_peakpicker_set_threshold """
+ new_threshold = 0.1
+ aubio_peakpicker_set_threshold(self.o, new_threshold)
+ self.assertCloseEnough(new_threshold, aubio_peakpicker_get_threshold(self.o))
+
+ def test_peakpick_get_threshold(self):
+ """ test aubio_peakpicker_get_threshold """
+ new_threshold = aubio_peakpicker_get_threshold(self.o)
+ aubio_peakpicker_set_threshold(self.o, new_threshold)
+ self.assertCloseEnough(new_threshold, aubio_peakpicker_get_threshold(self.o))
+
+if __name__ == '__main__':
+ unittest.main()
--- /dev/null
+++ b/tests/python/src/pitch/pitchdetection.py
@@ -1,0 +1,106 @@
+import unittest
+
+from aubio.aubiowrapper import *
+
+buf_size = 4096
+hop_size = 512
+channels = 1
+samplerate = 44100.
+
+class pitchdetection_test_case(unittest.TestCase):
+
+ def setUp(self, type = aubio_pitch_yinfft, mode = aubio_pitchm_freq):
+ self.create(type=type)
+
+ def create(self, type = aubio_pitch_yinfft,
+ mode = aubio_pitchm_freq):
+ self.type = type
+ self.o = new_aubio_pitchdetection(buf_size, hop_size,
+ channels, int(samplerate), type, mode)
+
+ def tearDown(self):
+ del_aubio_pitchdetection(self.o)
+
+ def test_pitchdetection(self):
+ """ create and delete pitchdetection """
+ pass
+
+ def test_pitchdetection_run_zeroes(self):
+ """ run pitchdetection on an empty buffer """
+ vec = new_fvec(buf_size, channels)
+ for i in range(100):
+ self.assertEqual(aubio_pitchdetection(self.o,vec),0.)
+ del vec
+
+ def test_pitchdetection_run_4_impulses(self):
+ """ run pitchdetection on a train of 4 impulses """
+ vec = new_fvec(buf_size, channels)
+ fvec_write_sample(vec,-1.,0, 0)
+ fvec_write_sample(vec, 1.,0, buf_size/4)
+ fvec_write_sample(vec,-1.,0, buf_size/2)
+ fvec_write_sample(vec, 1.,0,3*buf_size/4)
+ frequency = samplerate/2*4/buf_size
+ for i in range(100):
+ self.assertEqual(aubio_pitchdetection(self.o,vec),frequency)
+ del vec
+
+ def test_pitchdetection_run_4_positive_impulses(self):
+ """ run pitchdetection on a train of 4 positive impulses of arbitrary size """
+ vec = new_fvec(buf_size, channels)
+ frequency = samplerate/2*8/buf_size
+ for i in range(100):
+ fvec_write_sample(vec, 2.-.01*i,0, 0)
+ fvec_write_sample(vec, 2.-.01*i,0, buf_size/4)
+ fvec_write_sample(vec, 2.-.01*i,0, buf_size/2)
+ fvec_write_sample(vec, 2.-.01*i,0,3*buf_size/4)
+ self.assertAlmostEqual(aubio_pitchdetection(self.o,vec),frequency,1)
+ del vec
+
+ def test_pitchdetection_run_4_negative_impulses(self):
+ """ run pitchdetection on a train of 4 negative impulses of arbitrary size """
+ vec = new_fvec(buf_size, channels)
+ frequency = samplerate/2*8/buf_size
+ for i in range(1,100):
+ fvec_write_sample(vec,-.01*i,0, 0)
+ fvec_write_sample(vec,-.01*i,0, buf_size/4)
+ fvec_write_sample(vec,-.01*i,0, buf_size/2)
+ fvec_write_sample(vec,-.01*i,0,3*buf_size/4)
+ self.assertAlmostEqual(aubio_pitchdetection(self.o,vec),frequency,1)
+ del vec
+
+ def test_pitchdetection_run_8_impulses(self):
+ """ run pitchdetection on a train of 8 impulses """
+ vec = new_fvec(buf_size, channels)
+ fvec_write_sample(vec, 1.,0, 0)
+ fvec_write_sample(vec,-1.,0, buf_size/8)
+ fvec_write_sample(vec, 1.,0, buf_size/4)
+ fvec_write_sample(vec,-1.,0,3*buf_size/8)
+ fvec_write_sample(vec, 1.,0, buf_size/2)
+ fvec_write_sample(vec,-1.,0,5*buf_size/8)
+ fvec_write_sample(vec, 1.,0,3*buf_size/4)
+ fvec_write_sample(vec,-1.,0,7*buf_size/8)
+ for i in range(100):
+ self.assertAlmostEqual(aubio_pitchdetection(self.o,vec),
+ samplerate/2/buf_size*8, 1)
+ del vec
+
+"""
+class pitchdetection_yin_test_case(pitchdetection_test_case):
+ def setUp(self, type = aubio_pitch_yin):
+ self.create(type=type)
+
+class pitchdetection_fcomb_test_case(pitchdetection_test_case):
+ def setUp(self, type = aubio_pitch_fcomb):
+ self.create(type=type)
+
+class pitchdetection_mcomb_test_case(pitchdetection_test_case):
+ def setUp(self, type = aubio_pitch_mcomb):
+ self.create(type=type)
+
+class pitchdetection_schmitt_test_case(pitchdetection_test_case):
+ def setUp(self, type = aubio_pitch_schmitt):
+ self.create(type=type)
+"""
+
+if __name__ == '__main__':
+ unittest.main()
--- /dev/null
+++ b/tests/python/src/spectral/fft.py
@@ -1,0 +1,155 @@
+import math
+
+from template import aubio_unit_template
+
+from aubio.aubiowrapper import *
+
+buf_size = 1024
+channels = 4
+
+class fft_unit(aubio_unit_template):
+
+ def setUp(self):
+ self.o = new_aubio_fft(buf_size, channels)
+
+ def tearDown(self):
+ del_aubio_fft(self.o)
+
+ def test_create(self):
+ """ test creation and deletion of fft object """
+ pass
+
+ def test_do_zeroes(self):
+ """ test aubio_fft_do on zeroes """
+ input = new_fvec(buf_size, channels)
+ fftgrain = new_cvec(buf_size, channels)
+ for index in range(buf_size):
+ for channel in range(channels):
+ self.assertCloseEnough(0., fvec_read_sample(input, channel, index))
+ aubio_fft_do(self.o, input, fftgrain)
+ for index in range(buf_size/2+1):
+ for channel in range(channels):
+ self.assertCloseEnough(0., cvec_read_norm(fftgrain, channel, index))
+ for index in range(buf_size/2+1):
+ for channel in range(channels):
+ self.assertCloseEnough(0., cvec_read_phas(fftgrain, channel, index))
+ del fftgrain
+ del input
+
+ def test_rdo_zeroes(self):
+ """ test aubio_fft_rdo on zeroes """
+ fftgrain = new_cvec(buf_size, channels)
+ output = new_fvec(buf_size, channels)
+ aubio_fft_rdo(self.o, fftgrain, output)
+ # check output
+ for index in range(buf_size):
+ for channel in range(channels):
+ self.assertEqual(0., fvec_read_sample(output, channel, index))
+ del fftgrain
+ del output
+
+ def test_do_impulse(self):
+ """ test aubio_fft_do with an impulse on one channel """
+ input = new_fvec(buf_size, channels)
+ fftgrain = new_cvec(buf_size, channels)
+ # write impulse in channel 0, sample 0.
+ some_constant = 0.3412432456
+ fvec_write_sample(input, some_constant, 0, 0)
+ aubio_fft_do(self.o, input, fftgrain)
+ # check norm
+ for index in range(buf_size/2+1):
+ self.assertCloseEnough(some_constant, cvec_read_norm(fftgrain, 0, index))
+ for index in range(buf_size/2+1):
+ for channel in range(1, channels):
+ self.assertEqual(0., cvec_read_norm(fftgrain, channel, index))
+ # check phas
+ for index in range(buf_size/2+1):
+ for channel in range(channels):
+ self.assertEqual(0., cvec_read_phas(fftgrain, channel, index))
+ del fftgrain
+ del input
+
+ def test_do_constant(self):
+ """ test aubio_fft_do with a constant on one channel """
+ input = new_fvec(buf_size, channels)
+ fftgrain = new_cvec(buf_size, channels)
+ # write impulse in channel 0, sample 0.
+ some_constant = 0.003412432456
+ for index in range(1,buf_size):
+ fvec_write_sample(input, some_constant, 0, index)
+ aubio_fft_do(self.o, input, fftgrain)
+ # check norm and phase == 0 in all other channels
+ for index in range(buf_size/2+1):
+ for channel in range(1, channels):
+ self.assertEqual(0., cvec_read_norm(fftgrain, channel, index))
+ self.assertEqual(0., cvec_read_phas(fftgrain, channel, index))
+
+ # check norm and phase == 0 in first first and last bin of first channel
+ # check unwrap2pi(phas) ~= pi everywhere but in first and last bin
+ self.assertCloseEnough(0., cvec_read_phas(fftgrain, 0, 0))
+ for index in range(1,buf_size/2):
+ self.assertCloseEnough(math.pi, aubio_unwrap2pi(cvec_read_phas(fftgrain, 0, index)))
+ self.assertCloseEnough(0., cvec_read_phas(fftgrain, 0, buf_size/2))
+ self.assertCloseEnough(0., cvec_read_phas(fftgrain, 0, buf_size/2+1))
+
+ self.assertCloseEnough((buf_size-1)*some_constant, cvec_read_norm(fftgrain, 0, 0))
+ for index in range(1,buf_size/2+1):
+ self.assertCloseEnough(some_constant, abs(cvec_read_norm(fftgrain, 0, index)))
+ self.assertCloseEnough(0., cvec_read_norm(fftgrain, 0, buf_size/2+1))
+
+ del fftgrain
+ del input
+
+ def test_do_impulse_multichannel(self):
+ " test aubio_fft_do on impulse two channels "
+ input = new_fvec(buf_size, channels)
+ fftgrain = new_cvec(buf_size, channels)
+ # put an impulse in first an last channel, at first and last index
+ fvec_write_sample(input, 1., 0, 0)
+ fvec_write_sample(input, 1., channels-1, 0)
+ aubio_fft_do(self.o, input, fftgrain)
+ # check the norm
+ for index in range(buf_size/2+1):
+ self.assertEqual(1., cvec_read_norm(fftgrain, 0, index))
+ for index in range(buf_size/2+1):
+ for channel in range(1, channels-1):
+ self.assertEqual(0., cvec_read_norm(fftgrain, channel, index))
+ for index in range(buf_size/2+1):
+ self.assertEqual(1., cvec_read_norm(fftgrain, channels-1, index))
+ # check the phase
+ for index in range(buf_size/2+1):
+ for channel in range(channels):
+ self.assertEqual(0., cvec_read_phas(fftgrain, channel, index))
+ del fftgrain
+ del input
+
+ def test_rdo_impulse(self):
+ """ test aubio_fft_rdo on impulse """
+ fftgrain = new_cvec(buf_size, channels)
+ for channel in range(channels):
+ cvec_write_norm(fftgrain, 1., channel, 0)
+ output = new_fvec(buf_size, channels)
+ aubio_fft_rdo(self.o, fftgrain, output)
+ for index in range(buf_size/2+1):
+ for channel in range(channels):
+ self.assertCloseEnough(fvec_read_sample(output, channel, index), 1./buf_size)
+ del fftgrain
+ del output
+
+ def test_do_back_and_forth(self):
+ """ test aubio_fft_rdo on a constant """
+ input = new_fvec(buf_size, channels)
+ output = new_fvec(buf_size, channels)
+ fftgrain = new_cvec(buf_size, channels)
+ for index in range(buf_size/2+1):
+ for channel in range(channels):
+ fvec_write_sample(input, 0.67, channel, index)
+ aubio_fft_do(self.o, input, fftgrain)
+ aubio_fft_rdo(self.o, fftgrain, output)
+ for index in range(buf_size/2+1):
+ for channel in range(channels):
+ self.assertCloseEnough(0.67, fvec_read_sample(output, channel, index))
+ del fftgrain
+ del output
+
+if __name__ == '__main__': unittest.main()
--- /dev/null
+++ b/tests/python/src/spectral/filterbank.py
@@ -1,0 +1,111 @@
+
+import unittest
+from aubio.aubiowrapper import *
+
+win_size = 2048
+channels = 1
+n_filters = 40
+samplerate = 44100
+zerodb = -96.015602111816406
+
+class filterbank_test_case(unittest.TestCase):
+
+ def setUp(self):
+ self.input_spectrum = new_cvec(win_size,channels)
+ self.output_banks = new_fvec(n_filters,channels)
+ self.filterbank = new_aubio_filterbank(n_filters,win_size)
+
+ def tearDown(self):
+ del_aubio_filterbank(self.filterbank)
+ del_cvec(self.input_spectrum)
+ del_fvec(self.output_banks)
+
+ def testzeroes(self):
+ """ check the output of the filterbank is -96 when input spectrum is 0 """
+ aubio_filterbank_do(self.filterbank,self.input_spectrum,
+ self.output_banks)
+ for channel in range(channels):
+ for index in range(n_filters):
+ self.assertEqual(fvec_read_sample(self.output_banks,channel,index), zerodb)
+
+ def testphase(self):
+ """ check the output of the filterbank is -96 when input phase is pi """
+ from math import pi
+ for channel in range(channels):
+ for index in range(win_size/2+1):
+ cvec_write_phas(self.input_spectrum,pi,channel,index)
+ aubio_filterbank_do(self.filterbank,self.input_spectrum,
+ self.output_banks)
+ for channel in range(channels):
+ for index in range(n_filters):
+ self.assertEqual(fvec_read_sample(self.output_banks,channel,index), zerodb)
+
+ def testones(self):
+ """ check the output of the filterbank is -96 when input norm is 1
+ (the filterbank is currently set to 0).
+ """
+ for channel in range(channels):
+ for index in range(win_size/2+1):
+ cvec_write_norm(self.input_spectrum,1.,channel,index)
+ aubio_filterbank_do(self.filterbank,self.input_spectrum,
+ self.output_banks)
+ for channel in range(channels):
+ for index in range(n_filters):
+ self.assertEqual(fvec_read_sample(self.output_banks,channel,index), zerodb)
+
+ def testmfcc_zeroes(self):
+ """ check the mfcc filterbank output is -96 when input is 0 """
+ self.filterbank = new_aubio_filterbank_mfcc(n_filters, win_size, samplerate, 0., samplerate)
+ aubio_filterbank_do(self.filterbank,self.input_spectrum,
+ self.output_banks)
+ for channel in range(channels):
+ for index in range(n_filters):
+ self.assertEqual(fvec_read_sample(self.output_banks,channel,index), zerodb)
+
+ def testmfcc_phasepi(self):
+ """ check the mfcc filterbank output is -96 when input phase is pi """
+ self.filterbank = new_aubio_filterbank_mfcc(n_filters, win_size, samplerate, 0., samplerate)
+ from math import pi
+ for channel in range(channels):
+ for index in range(win_size/2+1):
+ cvec_write_phas(self.input_spectrum,pi,channel,index)
+ aubio_filterbank_do(self.filterbank,self.input_spectrum,
+ self.output_banks)
+ for channel in range(channels):
+ for index in range(n_filters):
+ self.assertEqual(fvec_read_sample(self.output_banks,channel,index), zerodb)
+
+ def testmfcc_ones(self):
+ """ check setting the input spectrum to 1 gives something between -3. and -4. """
+ self.filterbank = new_aubio_filterbank_mfcc(n_filters, win_size, samplerate, 0., samplerate)
+ for channel in range(channels):
+ for index in range(win_size/2+1):
+ cvec_write_norm(self.input_spectrum,1.,channel,index)
+ aubio_filterbank_do(self.filterbank,self.input_spectrum,
+ self.output_banks)
+ for channel in range(channels):
+ for index in range(n_filters):
+ val = fvec_read_sample(self.output_banks,channel,index)
+ self.failIf(val > -2.5 , val )
+ self.failIf(val < -4. , val )
+
+ def testmfcc_channels(self):
+ """ check the values of each filters in the mfcc filterbank """
+ import os.path
+ self.filterbank = new_aubio_filterbank_mfcc(n_filters, win_size, samplerate,
+ 0., samplerate)
+ filterbank_mfcc = [ [float(f) for f in line.strip().split()]
+ for line in open(os.path.join('src','spectral','filterbank_mfcc.txt')).readlines()]
+ for channel in range(n_filters):
+ vec = aubio_filterbank_getchannel(self.filterbank,channel)
+ for index in range(win_size):
+ self.assertAlmostEqual(fvec_read_sample(vec,0,index),
+ filterbank_mfcc[channel][index])
+ aubio_filterbank_do(self.filterbank,self.input_spectrum,
+ self.output_banks)
+ for channel in range(channels):
+ for index in range(n_filters):
+ self.assertEqual(fvec_read_sample(self.output_banks,channel,index), zerodb)
+
+if __name__ == '__main__':
+ unittest.main()
--- /dev/null
+++ b/tests/python/src/spectral/filterbank_mfcc.txt
@@ -1,0 +1,40 @@
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--- /dev/null
+++ b/tests/python/src/spectral/phasevoc.py
@@ -1,0 +1,62 @@
+import unittest
+
+from aubio.aubiowrapper import *
+
+buf_size = 1024
+hop_size = 256
+channels = 2
+
+precision = 6
+
+class phasevoc_unit(unittest.TestCase):
+
+ def setUp(self):
+ self.o = new_aubio_pvoc(buf_size, hop_size, channels)
+
+ def tearDown(self):
+ del_aubio_pvoc(self.o)
+
+ def test_create(self):
+ """ create and delete phasevoc object """
+ pass
+
+ def test_zeroes(self):
+ """ run phasevoc object on zeroes """
+ input = new_fvec(hop_size, channels)
+ fftgrain = new_cvec(buf_size, channels)
+ output = new_fvec(hop_size, channels)
+ for index in range(hop_size):
+ for channel in range(channels):
+ self.assertEqual(0., fvec_read_sample(input, channel, index))
+ aubio_pvoc_do (self.o, input, fftgrain)
+ aubio_pvoc_rdo(self.o, fftgrain, output)
+ for index in range(hop_size):
+ for channel in range(channels):
+ self.assertEqual(0., fvec_read_sample(output, channel, index))
+ del input
+ del fftgrain
+
+ def test_ones(self):
+ """ run phasevoc object on ones """
+ input = new_fvec(hop_size, channels)
+ fftgrain = new_cvec(buf_size, channels)
+ output = new_fvec(hop_size, channels)
+ for index in range(hop_size):
+ for channel in range(channels):
+ fvec_write_sample(input, 1., channel, index)
+ self.assertEqual(1., fvec_read_sample(input, channel, index))
+ # make sure the first buf_size-hop_size samples are zeroes
+ for i in range(buf_size/hop_size - 1):
+ aubio_pvoc_do (self.o, input, fftgrain)
+ aubio_pvoc_rdo(self.o, fftgrain, output)
+ for index in range(hop_size):
+ for channel in range(channels):
+ self.assertAlmostEqual(0., fvec_read_sample(output, channel, index), precision)
+ # make sure the first non zero input is correctly resynthesised
+ aubio_pvoc_do (self.o, input, fftgrain)
+ aubio_pvoc_rdo(self.o, fftgrain, output)
+ for index in range(hop_size):
+ for channel in range(channels):
+ self.assertAlmostEqual(1., fvec_read_sample(output, channel, index), precision)
+ del input
+ del fftgrain
--- /dev/null
+++ b/tests/python/src/temporal/adesign.py
@@ -1,0 +1,51 @@
+from template import aubio_unit_template
+from aubio.aubiowrapper import *
+
+samplerate = 44100
+buf_size = 1024
+channels = 2
+
+class adsgn_filter_unit(aubio_unit_template):
+
+ def setUp(self):
+ self.o = new_aubio_adsgn_filter(samplerate, channels)
+
+ def tearDown(self):
+ del_aubio_adsgn_filter(self.o)
+
+ def test_creation(self):
+ pass
+
+ def test_filter_zeroes(self):
+ """ check filter run on a vector full of zeroes returns zeros """
+ vec = new_fvec(buf_size, channels)
+ aubio_adsgn_filter_do(self.o, vec)
+ for index in range(buf_size):
+ for channel in range(channels):
+ self.assertEqual(0., fvec_read_sample(vec,channel,index))
+ del_fvec(vec)
+
+ def test_filter_ones(self):
+ vec = new_fvec(buf_size, channels)
+ for index in range(buf_size):
+ for channel in range(channels):
+ fvec_write_sample(vec, 1., channel, index)
+ aubio_adsgn_filter_do(self.o, vec)
+ for index in range(buf_size):
+ for channel in range(channels):
+ self.assertNotEqual(0., fvec_read_sample(vec,channel,index))
+ del_fvec(vec)
+
+ def test_filter_denormal(self):
+ vec = new_fvec(buf_size, channels)
+ for index in range(buf_size):
+ for channel in range(channels):
+ fvec_write_sample(vec, 1.e-37, channel, index)
+ aubio_adsgn_filter_do(self.o, vec)
+ for index in range(buf_size):
+ for channel in range(channels):
+ self.assertEqual(0., fvec_read_sample(vec,channel,index))
+ del_fvec(vec)
+
+if __name__ == '__main__':
+ unittest.main()
--- /dev/null
+++ b/tests/python/src/temporal/filter.py
@@ -1,0 +1,30 @@
+from template import aubio_unit_template
+from aubio.aubiowrapper import *
+
+samplerate = 44100
+buf_size = 1024
+channels = 2
+
+class filter_unit(aubio_unit_template):
+
+ def setUp(self):
+ self.o = new_aubio_filter(samplerate, 8, channels)
+
+ def tearDown(self):
+ del_aubio_filter(self.o)
+
+ def test_creation(self):
+ """ check filter creation and deletion """
+ pass
+
+ def test_filter_zeroes(self):
+ """ check filter run on a vector full of zeroes returns zeros """
+ vec = new_fvec(buf_size, channels)
+ aubio_filter_do(self.o, vec)
+ for index in range(buf_size/2+1):
+ for channel in range(channels):
+ self.assertEqual(fvec_read_sample(vec,channel,index),0.)
+ del_fvec(vec)
+
+if __name__ == '__main__':
+ unittest.main()
--- /dev/null
+++ b/tests/python/src/utils/hist.py
@@ -1,0 +1,51 @@
+import unittest
+
+from template import aubio_unit_template
+from aubio.aubiowrapper import *
+
+buf_size = 2048
+channels = 1
+flow = 0.
+fhig = 100.
+
+nelems = 1000
+
+class hist_unit(aubio_unit_template):
+
+ def setUp(self):
+ self.o = new_aubio_hist(flow, fhig, nelems, channels)
+
+ def tearDown(self):
+ del_aubio_hist(self.o)
+
+ def test_hist(self):
+ """ create and delete hist """
+ pass
+
+ def test_hist_zeroes(self):
+ """ test hist on zeroes """
+ input = new_fvec(buf_size, channels)
+ aubio_hist_do_notnull(self.o, input)
+ aubio_hist_weight(self.o)
+ self.assertEqual(0., aubio_hist_mean(self.o))
+ del_fvec(input)
+
+ def test_hist_impulse(self):
+ """ test hist on impulse """
+ input = new_fvec(buf_size, channels)
+ constant = fhig - 1.
+ fvec_write_sample(input,constant,0,0)
+ aubio_hist_do_notnull(self.o, input)
+ self.assertCloseEnough(1./nelems, aubio_hist_mean(self.o))
+ del_fvec(input)
+
+ def test_hist_impulse2(self):
+ """ test hist on impulse """
+ input = new_fvec(buf_size, channels)
+ constant = fhig + 1.
+ fvec_write_sample(input,constant,0,0)
+ aubio_hist_do_notnull(self.o, input)
+ self.assertCloseEnough(1./nelems, aubio_hist_mean(self.o))
+ del_fvec(input)
+
+if __name__ == '__main__': unittest.main()
--- /dev/null
+++ b/tests/python/src/utils/scale.py
@@ -1,0 +1,95 @@
+import unittest
+
+from template import aubio_unit_template
+from aubio.aubiowrapper import *
+
+buf_size = 2000
+channels = 2
+
+ilow = .40
+ihig = 40.00
+olow = 100.0
+ohig = 1000.
+
+class scale_unit(aubio_unit_template):
+
+ def setUp(self):
+ self.o = new_aubio_scale(ilow, ihig, olow, ohig)
+
+ def tearDown(self):
+ del_aubio_scale(self.o)
+
+ def test(self):
+ """ create and delete scale """
+ pass
+
+ def test_zeroes(self):
+ """ test scale on zeroes """
+ input = new_fvec(buf_size, channels)
+ aubio_scale_do(self.o, input)
+ for index in range(buf_size):
+ for channel in range(channels):
+ expval = (- ilow) * (ohig - olow) / \
+ (ihig - ilow) + olow
+ val = fvec_read_sample(input, channel, index)
+ self.assertCloseEnough(expval, val)
+ del_fvec(input)
+
+ def test_ilow(self):
+ """ test scale on ilow """
+ input = new_fvec(buf_size, channels)
+ for index in range(buf_size):
+ for channel in range(channels):
+ fvec_write_sample(input, ilow, channel, index)
+ aubio_scale_do(self.o, input)
+ for index in range(buf_size):
+ for channel in range(channels):
+ val = fvec_read_sample(input, channel, index)
+ self.assertAlmostEqual(olow, val)
+ del_fvec(input)
+
+ def test_ihig(self):
+ """ test scale on ihig """
+ input = new_fvec(buf_size, channels)
+ for index in range(buf_size):
+ for channel in range(channels):
+ fvec_write_sample(input, ihig, channel, index)
+ aubio_scale_do(self.o, input)
+ for index in range(buf_size):
+ for channel in range(channels):
+ val = fvec_read_sample(input, channel, index)
+ self.assertCloseEnough(ohig, val)
+ del_fvec(input)
+
+ def test_climbing_ramp(self):
+ """ test scale on climbing ramp """
+ input = new_fvec(buf_size, channels)
+ for index in range(buf_size):
+ for channel in range(channels):
+ rampval = index*(ihig-ilow)/buf_size + ilow
+ fvec_write_sample(input, rampval, channel, index)
+ aubio_scale_do(self.o, input)
+ for index in range(buf_size):
+ for channel in range(channels):
+ expval = index*(ohig-olow)/buf_size + olow
+ self.assertCloseEnough(expval, \
+ fvec_read_sample(input, channel, index))
+ del_fvec(input)
+
+ def test_falling_ramp(self):
+ """ test scale on falling ramp """
+ input = new_fvec(buf_size, channels)
+ for index in range(buf_size):
+ for channel in range(channels):
+ fvec_write_sample(input, ihig \
+ - index*(ihig-ilow)/buf_size, \
+ channel, index)
+ aubio_scale_do(self.o, input)
+ for index in range(buf_size):
+ for channel in range(channels):
+ expval = ohig - index*(ohig-olow)/buf_size
+ self.assertCloseEnough(expval, \
+ fvec_read_sample(input, channel, index))
+ del_fvec(input)
+
+if __name__ == '__main__': unittest.main()
--- a/tests/python/template.py
+++ b/tests/python/template.py
@@ -1,18 +1,17 @@
-
import unittest
class aubio_unit_template(unittest.TestCase):
def assertCloseEnough(self, first, second, places=5, msg=None):
- """Fail if the two objects are unequal as determined by their
- *relative* difference rounded to the given number of decimal places
- (default 7) and comparing to zero.
- """
- if round(first, places) == 0:
- if round(second-first, places) != 0:
- raise self.failureException, \
- (msg or '%r != %r within %r places' % (first, second, places))
- else:
- if round((second-first)/first, places) != 0:
- raise self.failureException, \
- (msg or '%r != %r within %r places' % (first, second, places))
+ """Fail if the two objects are unequal as determined by their
+ *relative* difference rounded to the given number of decimal places
+ (default 7) and comparing to zero.
+ """
+ if round(first, places) == 0:
+ if round(second-first, places) != 0:
+ raise self.failureException, \
+ (msg or '%r != %r within %r places' % (first, second, places))
+ else:
+ if round((second-first)/first, places) != 0:
+ raise self.failureException, \
+ (msg or '%r != %r within %r places' % (first, second, places))