1 | #! /usr/bin/python |
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2 | |
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3 | from numpy import random, sin, arange, ones, zeros |
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4 | from math import pi |
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5 | from aubio import fvec, pitch |
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6 | |
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7 | def build_sinusoid(length, freqs, samplerate): |
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8 | return sin( 2. * pi * arange(length) * freqs / samplerate) |
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9 | |
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10 | def run_pitch(p, input_vec): |
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11 | f = fvec (p.hop_size) |
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12 | cands = [] |
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13 | count = 0 |
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14 | for vec_slice in input_vec.reshape((-1, p.hop_size)): |
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15 | f[:] = vec_slice |
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16 | cands.append(p(f)) |
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17 | return cands |
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18 | |
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19 | methods = ['default', 'schmitt', 'fcomb', 'mcomb', 'yin', 'yinfft'] |
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20 | |
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21 | cands = {} |
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22 | buf_size = 2048 |
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23 | hop_size = 512 |
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24 | samplerate = 44100 |
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25 | sin_length = (samplerate * 10) % 512 * 512 |
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26 | freqs = zeros(sin_length) |
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27 | |
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28 | partition = sin_length / 8 |
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29 | pointer = 0 |
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30 | |
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31 | pointer += partition |
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32 | freqs[pointer: pointer + partition] = 440 |
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33 | |
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34 | pointer += partition |
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35 | pointer += partition |
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36 | freqs[ pointer : pointer + partition ] = 740 |
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37 | |
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38 | pointer += partition |
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39 | freqs[ pointer : pointer + partition ] = 1480 |
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40 | |
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41 | pointer += partition |
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42 | pointer += partition |
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43 | freqs[ pointer : pointer + partition ] = 400 + 5 * random.random(sin_length/8) |
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44 | |
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45 | a = build_sinusoid(sin_length, freqs, samplerate) |
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46 | |
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47 | for method in methods: |
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48 | p = pitch(method, buf_size, hop_size, samplerate) |
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49 | cands[method] = run_pitch(p, a) |
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50 | |
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51 | print "done computing" |
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52 | |
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53 | if 1: |
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54 | from pylab import plot, show, xlabel, ylabel, legend, ylim |
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55 | ramp = arange(0, sin_length / hop_size).astype('float') * hop_size / samplerate |
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56 | for method in methods: |
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57 | plot(ramp, cands[method],'.-') |
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58 | |
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59 | # plot ground truth |
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60 | ramp = arange(0, sin_length).astype('float') / samplerate |
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61 | plot(ramp, freqs, ':') |
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62 | |
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63 | legend(methods+['ground truth'], 'upper right') |
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64 | xlabel('time (s)') |
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65 | ylabel('frequency (Hz)') |
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66 | ylim([0,2000]) |
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67 | show() |
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68 | |
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