1 | #! /usr/bin/env python |
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2 | |
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3 | from unittest import TestCase |
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4 | from numpy.testing import assert_equal, assert_almost_equal |
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5 | from numpy import random, sin, arange, mean, median, isnan |
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6 | from math import pi |
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7 | from aubio import fvec, pitch, freqtomidi |
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8 | |
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9 | class aubio_pitch_Good_Values(TestCase): |
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10 | |
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11 | def skip_test_new_default(self): |
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12 | " creating a pitch object without parameters " |
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13 | p = pitch() |
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14 | assert_equal ( [p.method, p.buf_size, p.hop_size, p.samplerate], |
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15 | ['default', 1024, 512, 44100]) |
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16 | |
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17 | def test_run_on_silence(self): |
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18 | " creating a pitch object with parameters " |
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19 | p = pitch('default', 2048, 512, 32000) |
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20 | assert_equal ( [p.method, p.buf_size, p.hop_size, p.samplerate], |
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21 | ['default', 2048, 512, 32000]) |
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22 | |
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23 | def test_run_on_zeros(self): |
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24 | " running on silence gives 0 " |
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25 | p = pitch('default', 2048, 512, 32000) |
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26 | f = fvec (512) |
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27 | for i in range(10): assert_equal (p(f), 0.) |
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28 | |
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29 | def test_run_on_ones(self): |
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30 | " running on ones gives 0 " |
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31 | p = pitch('default', 2048, 512, 32000) |
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32 | f = fvec (512) |
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33 | f[:] = 1 |
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34 | for i in range(10): assert_equal (p(f), 0.) |
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35 | |
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36 | class aubio_pitch_Sinusoid(TestCase): |
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37 | |
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38 | def run_pitch_on_sinusoid(self, method, buf_size, hop_size, samplerate, freq): |
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39 | # create pitch object |
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40 | p = pitch(method, buf_size, hop_size, samplerate) |
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41 | # duration in seconds |
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42 | seconds = .3 |
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43 | # duration in samples |
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44 | duration = seconds * samplerate |
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45 | # increase to the next multiple of hop_size |
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46 | duration = duration - duration % hop_size + hop_size; |
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47 | # build sinusoid |
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48 | sinvec = self.build_sinusoid(duration, freq, samplerate) |
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49 | |
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50 | self.run_pitch(p, sinvec, freq) |
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51 | |
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52 | def build_sinusoid(self, length, freq, samplerate): |
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53 | return sin( 2. * pi * arange(length).astype('float32') * freq / samplerate) |
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54 | |
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55 | def run_pitch(self, p, input_vec, freq): |
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56 | count = 0 |
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57 | pitches, errors = [], [] |
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58 | input_blocks = input_vec.reshape((-1, p.hop_size)) |
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59 | for new_block in input_blocks: |
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60 | pitch = p(new_block)[0] |
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61 | pitches.append(pitch) |
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62 | errors.append(1. - freqtomidi(pitch) / freqtomidi(freq)) |
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63 | assert_equal ( len(input_blocks), len(pitches) ) |
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64 | assert_equal ( isnan(pitches), False ) |
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65 | # cut the first candidates |
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66 | cut = ( p.buf_size - p.hop_size ) / p.hop_size |
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67 | pitches = pitches[2:] |
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68 | errors = errors[2:] |
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69 | # check that the mean of all relative errors is less than 10% |
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70 | #assert abs (mean(errors) ) < 0.1, pitches |
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71 | assert abs (median(errors) ) < 0.06, "median of relative errors is bigger than 0.06 (%f)\n found %s\n errors %s" % (mean(errors), pitches, errors) |
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72 | #print 'len(pitches), cut:', len(pitches), cut |
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73 | #print 'median errors: ', median(errors), 'median pitches: ', median(pitches) |
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74 | |
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75 | pitch_algorithms = [ "default", "yinfft", "yin", "schmitt", "mcomb", "fcomb" , "specacf" ] |
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76 | pitch_algorithms = [ "default", "yinfft", "yin", "schmitt", "mcomb", "fcomb" ] |
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77 | |
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78 | #freqs = [ 27.5, 55., 110., 220., 440., 880., 1760., 3520. ] |
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79 | freqs = [ 110., 220., 440., 880., 1760., 3520. ] |
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80 | signal_modes = [] |
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81 | for freq in freqs: |
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82 | signal_modes += [ |
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83 | ( 4096, 2048, 44100, freq ), |
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84 | ( 2048, 512, 44100, freq ), |
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85 | ( 2048, 1024, 44100, freq ), |
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86 | ( 2048, 1024, 32000, freq ), |
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87 | ] |
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88 | |
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89 | freqs = [ ] #55., 110., 220., 440., 880., 1760., 3520. ] |
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90 | for freq in freqs: |
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91 | signal_modes += [ |
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92 | ( 2048, 1024, 22050, freq ), |
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93 | ( 1024, 256, 16000, freq ), |
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94 | ( 1024, 256, 8000, freq ), |
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95 | ( 1024, 512+256, 8000, freq ), |
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96 | ] |
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97 | |
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98 | """ |
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99 | signal_modes = [ |
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100 | ( 4096, 512, 44100, 2.*882. ), |
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101 | ( 4096, 512, 44100, 882. ), |
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102 | ( 4096, 512, 44100, 440. ), |
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103 | ( 2048, 512, 44100, 440. ), |
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104 | ( 2048, 1024, 44100, 440. ), |
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105 | ( 2048, 1024, 44100, 440. ), |
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106 | ( 2048, 1024, 32000, 440. ), |
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107 | ( 2048, 1024, 22050, 440. ), |
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108 | ( 1024, 256, 16000, 440. ), |
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109 | ( 1024, 256, 8000, 440. ), |
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110 | ( 1024, 512+256, 8000, 440. ), |
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111 | ] |
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112 | """ |
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113 | |
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114 | def create_test (algo, mode): |
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115 | def do_test_pitch(self): |
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116 | self.run_pitch_on_sinusoid(algo, mode[0], mode[1], mode[2], mode[3]) |
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117 | return do_test_pitch |
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118 | |
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119 | for algo in pitch_algorithms: |
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120 | for mode in signal_modes: |
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121 | test_method = create_test (algo, mode) |
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122 | test_method.__name__ = 'test_pitch_%s_%d_%d_%dHz_sin_%.0f' % ( algo, |
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123 | mode[0], mode[1], mode[2], mode[3] ) |
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124 | setattr (aubio_pitch_Sinusoid, test_method.__name__, test_method) |
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125 | |
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126 | if __name__ == '__main__': |
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127 | from unittest import main |
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128 | main() |
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