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1 import os
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2 import sys
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3 import math
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4 from array import array
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5 from auditok.io import DATA_FORMAT
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6
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7
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8 if sys.version_info >= (3, 0):
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9 PYTHON_3 = True
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10 else:
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11 PYTHON_3 = False
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12
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13
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14 def _sample_generator(*data_buffers):
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15 """
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16 Takes a list of many mono audio data buffers and makes a sample generator
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17 of interleaved audio samples, one sample from each channel. The resulting
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18 generator can be used to build a multichannel audio buffer.
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19 >>> gen = _sample_generator("abcd", "ABCD")
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20 >>> list(gen)
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21 ["a", "A", "b", "B", "c", "C", "d", "D"]
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22 """
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23 frame_gen = zip(*data_buffers)
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24 return (sample for frame in frame_gen for sample in frame)
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25
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26
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27 def _array_to_bytes(a):
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28 """
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29 Converts an `array.array` to `bytes`.
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30 """
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31 if PYTHON_3:
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32 return a.tobytes()
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33 else:
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34 return a.tostring()
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35
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36
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37 def _generate_pure_tone(
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38 frequency, duration_sec=1, sampling_rate=16000, sample_width=2, volume=1e4
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39 ):
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40 """
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41 Generates a pure tone with the given frequency.
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42 """
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43 assert frequency <= sampling_rate / 2
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44 max_value = (2 ** (sample_width * 8) // 2) - 1
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45 if volume > max_value:
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46 volume = max_value
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47 fmt = DATA_FORMAT[sample_width]
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48 total_samples = int(sampling_rate * duration_sec)
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49 step = frequency / sampling_rate
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50 two_pi_step = 2 * math.pi * step
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51 data = array(
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52 fmt,
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53 (
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54 int(math.sin(two_pi_step * i) * volume)
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55 for i in range(total_samples)
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56 ),
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57 )
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58 return data
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59
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60
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61 PURE_TONE_DICT = {
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62 freq: _generate_pure_tone(freq, 1, 16000, 2) for freq in (400, 800, 1600)
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63 }
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64 PURE_TONE_DICT.update(
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65 {
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66 freq: _generate_pure_tone(freq, 0.1, 16000, 2)
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67 for freq in (600, 1150, 2400, 7220)
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68 }
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69 )
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