1 | #! /usr/bin/env python |
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2 | |
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3 | import sys |
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4 | from math import pi, e |
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5 | from aubio import sink |
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6 | from numpy import arange, sin, exp, zeros |
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7 | |
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8 | if len(sys.argv) < 2: |
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9 | print 'usage: %s <outputfile> [samplerate]' % sys.argv[0] |
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10 | sys.exit(1) |
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11 | |
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12 | samplerate = 44100 # samplerate in Hz |
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13 | if len( sys.argv ) > 2: samplerate = int(sys.argv[2]) |
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14 | |
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15 | pitch = 2200 # in Hz |
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16 | blocksize = 256 # in samples |
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17 | duration = 0.02 # in seconds |
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18 | |
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19 | twopi = pi * 2. |
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20 | |
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21 | duration = int ( samplerate * duration ) # convert to samples |
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22 | attack = int (samplerate * .001 ) |
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23 | decay = .5 |
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24 | |
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25 | period = float(samplerate) / pitch |
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26 | # create a sine lookup table |
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27 | tablelen = 1000 |
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28 | sinetable = arange(tablelen + 1, dtype = 'float32') |
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29 | sinetable = 0.7 * sin(twopi * sinetable/tablelen) |
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30 | sinetone = zeros((duration,), dtype = 'float32') |
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31 | |
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32 | # compute sinetone at floating point period |
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33 | for i in range(duration): |
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34 | x = int((i % period) / float(period) * tablelen) |
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35 | idx = int(x) |
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36 | frac = x - idx |
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37 | a = sinetable[idx] |
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38 | b = sinetable[idx + 1] |
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39 | sinetone[i] = a + frac * (b -a) |
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40 | |
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41 | # apply some envelope |
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42 | float_ramp = arange(duration, dtype = 'float32') |
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43 | sinetone *= exp( - e * float_ramp / duration / decay) |
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44 | sinetone[:attack] *= exp( e * ( float_ramp[:attack] / attack - 1 ) ) |
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45 | |
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46 | if 1: |
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47 | import matplotlib.pyplot as plt |
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48 | plt.plot(sinetone) |
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49 | plt.show() |
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50 | |
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51 | my_sink = sink(sys.argv[1], samplerate) |
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52 | |
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53 | total_frames = 0 |
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54 | while total_frames + blocksize < duration: |
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55 | my_sink(sinetone[total_frames:total_frames+blocksize], blocksize) |
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56 | total_frames += blocksize |
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57 | my_sink(sinetone[total_frames:duration], duration - total_frames) |
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