mirror of https://github.com/morpheus65535/bazarr
518 lines
15 KiB
Python
518 lines
15 KiB
Python
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"""
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Module for low-level audio input-output operations.
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Class summary
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=============
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.. autosummary::
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AudioSource
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Rewindable
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BufferAudioSource
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WaveAudioSource
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PyAudioSource
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StdinAudioSource
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PyAudioPlayer
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Function summary
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================
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.. autosummary::
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from_file
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player_for
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"""
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from abc import ABCMeta, abstractmethod
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import wave
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import sys
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__all__ = ["AudioSource", "Rewindable", "BufferAudioSource", "WaveAudioSource",
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"PyAudioSource", "StdinAudioSource", "PyAudioPlayer", "from_file", "player_for"]
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DEFAULT_SAMPLE_RATE = 16000
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DEFAULT_SAMPLE_WIDTH = 2
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DEFAULT_NB_CHANNELS = 1
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class AudioSource():
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"""
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Base class for audio source objects.
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Subclasses should implement methods to open/close and audio stream
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and read the desired amount of audio samples.
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:Parameters:
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`sampling_rate` : int
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Number of samples per second of audio stream. Default = 16000.
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`sample_width` : int
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Size in bytes of one audio sample. Possible values : 1, 2, 4.
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Default = 2.
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`channels` : int
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Number of channels of audio stream. The current version supports
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only mono audio streams (i.e. one channel).
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"""
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__metaclass__ = ABCMeta
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def __init__(self, sampling_rate=DEFAULT_SAMPLE_RATE,
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sample_width=DEFAULT_SAMPLE_WIDTH,
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channels=DEFAULT_NB_CHANNELS):
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if not sample_width in (1, 2, 4):
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raise ValueError("Sample width must be one of: 1, 2 or 4 (bytes)")
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if channels != 1:
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raise ValueError("Only mono audio is currently handled")
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self._sampling_rate = sampling_rate
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self._sample_width = sample_width
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self._channels = channels
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@abstractmethod
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def is_open(self):
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""" Return True if audio source is open, False otherwise """
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@abstractmethod
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def open(self):
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""" Open audio source """
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@abstractmethod
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def close(self):
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""" Close audio source """
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@abstractmethod
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def read(self, size):
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"""
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Read and return `size` audio samples at most.
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:Parameters:
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`size` : int
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the number of samples to read.
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:Returns:
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Audio data as a string of length 'N' * 'sample_width' * 'channels', where 'N' is:
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- `size` if `size` < 'left_samples'
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- 'left_samples' if `size` > 'left_samples'
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"""
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def get_sampling_rate(self):
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""" Return the number of samples per second of audio stream """
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return self.sampling_rate
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@property
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def sampling_rate(self):
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""" Number of samples per second of audio stream """
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return self._sampling_rate
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@property
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def sr(self):
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""" Number of samples per second of audio stream """
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return self._sampling_rate
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def get_sample_width(self):
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""" Return the number of bytes used to represent one audio sample """
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return self.sample_width
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@property
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def sample_width(self):
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""" Number of bytes used to represent one audio sample """
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return self._sample_width
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@property
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def sw(self):
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""" Number of bytes used to represent one audio sample """
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return self._sample_width
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def get_channels(self):
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""" Return the number of channels of this audio source """
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return self.channels
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@property
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def channels(self):
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""" Number of channels of this audio source """
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return self._channels
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@property
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def ch(self):
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""" Return the number of channels of this audio source """
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return self.channels
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class Rewindable():
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"""
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Base class for rewindable audio streams.
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Subclasses should implement methods to return to the beginning of an
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audio stream as well as method to move to an absolute audio position
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expressed in time or in number of samples.
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"""
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__metaclass__ = ABCMeta
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@abstractmethod
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def rewind(self):
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""" Go back to the beginning of audio stream """
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pass
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@abstractmethod
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def get_position(self):
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""" Return the total number of already read samples """
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@abstractmethod
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def get_time_position(self):
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""" Return the total duration in seconds of already read data """
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@abstractmethod
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def set_position(self, position):
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""" Move to an absolute position
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:Parameters:
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`position` : int
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number of samples to skip from the start of the stream
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"""
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@abstractmethod
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def set_time_position(self, time_position):
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""" Move to an absolute position expressed in seconds
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:Parameters:
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`time_position` : float
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seconds to skip from the start of the stream
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"""
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pass
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class BufferAudioSource(AudioSource, Rewindable):
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"""
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An :class:`AudioSource` that encapsulates and reads data from a memory buffer.
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It implements methods from :class:`Rewindable` and is therefore a navigable :class:`AudioSource`.
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"""
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def __init__(self, data_buffer,
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sampling_rate=DEFAULT_SAMPLE_RATE,
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sample_width=DEFAULT_SAMPLE_WIDTH,
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channels=DEFAULT_NB_CHANNELS):
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if len(data_buffer) % (sample_width * channels) != 0:
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raise ValueError("length of data_buffer must be a multiple of (sample_width * channels)")
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AudioSource.__init__(self, sampling_rate, sample_width, channels)
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self._buffer = data_buffer
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self._index = 0
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self._left = 0 if self._buffer is None else len(self._buffer)
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self._is_open = False
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def is_open(self):
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return self._is_open
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def open(self):
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self._is_open = True
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def close(self):
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self._is_open = False
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self.rewind()
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def read(self, size):
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if not self._is_open:
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raise IOError("Stream is not open")
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if self._left > 0:
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to_read = size * self.sample_width * self.channels
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if to_read > self._left:
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to_read = self._left
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data = self._buffer[self._index: self._index + to_read]
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self._index += to_read
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self._left -= to_read
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return data
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return None
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def get_data_buffer(self):
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""" Return all audio data as one string buffer. """
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return self._buffer
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def set_data(self, data_buffer):
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""" Set new data for this audio stream.
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:Parameters:
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`data_buffer` : str, basestring, Bytes
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a string buffer with a length multiple of (sample_width * channels)
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"""
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if len(data_buffer) % (self.sample_width * self.channels) != 0:
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raise ValueError("length of data_buffer must be a multiple of (sample_width * channels)")
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self._buffer = data_buffer
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self._index = 0
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self._left = 0 if self._buffer is None else len(self._buffer)
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def append_data(self, data_buffer):
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""" Append data to this audio stream
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:Parameters:
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`data_buffer` : str, basestring, Bytes
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a buffer with a length multiple of (sample_width * channels)
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"""
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if len(data_buffer) % (self.sample_width * self.channels) != 0:
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raise ValueError("length of data_buffer must be a multiple of (sample_width * channels)")
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self._buffer += data_buffer
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self._left += len(data_buffer)
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def rewind(self):
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self.set_position(0)
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def get_position(self):
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return self._index / self.sample_width
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def get_time_position(self):
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return float(self._index) / (self.sample_width * self.sampling_rate)
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def set_position(self, position):
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if position < 0:
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raise ValueError("position must be >= 0")
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if self._buffer is None:
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self._index = 0
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self._left = 0
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return
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position *= self.sample_width
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self._index = position if position < len(self._buffer) else len(self._buffer)
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self._left = len(self._buffer) - self._index
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def set_time_position(self, time_position): # time in seconds
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position = int(self.sampling_rate * time_position)
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self.set_position(position)
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class WaveAudioSource(AudioSource):
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"""
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A class for an `AudioSource` that reads data from a wave file.
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:Parameters:
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`filename` :
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path to a valid wave file
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"""
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def __init__(self, filename):
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self._filename = filename
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self._audio_stream = None
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stream = wave.open(self._filename)
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AudioSource.__init__(self, stream.getframerate(),
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stream.getsampwidth(),
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stream.getnchannels())
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stream.close()
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def is_open(self):
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return self._audio_stream is not None
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def open(self):
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if(self._audio_stream is None):
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self._audio_stream = wave.open(self._filename)
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def close(self):
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if self._audio_stream is not None:
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self._audio_stream.close()
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self._audio_stream = None
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def read(self, size):
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if self._audio_stream is None:
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raise IOError("Stream is not open")
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else:
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data = self._audio_stream.readframes(size)
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if data is None or len(data) < 1:
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return None
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return data
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class PyAudioSource(AudioSource):
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"""
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A class for an `AudioSource` that reads data the built-in microphone using PyAudio.
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"""
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def __init__(self, sampling_rate=DEFAULT_SAMPLE_RATE,
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sample_width=DEFAULT_SAMPLE_WIDTH,
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channels=DEFAULT_NB_CHANNELS,
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frames_per_buffer=1024,
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input_device_index=None):
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AudioSource.__init__(self, sampling_rate, sample_width, channels)
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self._chunk_size = frames_per_buffer
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self.input_device_index = input_device_index
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import pyaudio
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self._pyaudio_object = pyaudio.PyAudio()
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self._pyaudio_format = self._pyaudio_object.get_format_from_width(self.sample_width)
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self._audio_stream = None
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def is_open(self):
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return self._audio_stream is not None
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def open(self):
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self._audio_stream = self._pyaudio_object.open(format=self._pyaudio_format,
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channels=self.channels,
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rate=self.sampling_rate,
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input=True,
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output=False,
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input_device_index=self.input_device_index,
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frames_per_buffer=self._chunk_size)
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def close(self):
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if self._audio_stream is not None:
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self._audio_stream.stop_stream()
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self._audio_stream.close()
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self._audio_stream = None
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def read(self, size):
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if self._audio_stream is None:
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raise IOError("Stream is not open")
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if self._audio_stream.is_active():
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data = self._audio_stream.read(size)
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if data is None or len(data) < 1:
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return None
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return data
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return None
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class StdinAudioSource(AudioSource):
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"""
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A class for an :class:`AudioSource` that reads data from standard input.
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"""
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def __init__(self, sampling_rate=DEFAULT_SAMPLE_RATE,
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sample_width=DEFAULT_SAMPLE_WIDTH,
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channels=DEFAULT_NB_CHANNELS):
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AudioSource.__init__(self, sampling_rate, sample_width, channels)
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self._is_open = False
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def is_open(self):
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return self._is_open
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def open(self):
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self._is_open = True
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def close(self):
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self._is_open = False
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def read(self, size):
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if not self._is_open:
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raise IOError("Stream is not open")
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to_read = size * self.sample_width * self.channels
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if sys.version_info >= (3, 0):
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data = sys.stdin.buffer.read(to_read)
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else:
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data = sys.stdin.read(to_read)
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if data is None or len(data) < 1:
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return None
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return data
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class PyAudioPlayer():
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"""
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A class for audio playback using Pyaudio
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"""
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def __init__(self, sampling_rate=DEFAULT_SAMPLE_RATE,
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sample_width=DEFAULT_SAMPLE_WIDTH,
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channels=DEFAULT_NB_CHANNELS):
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if not sample_width in (1, 2, 4):
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raise ValueError("Sample width must be one of: 1, 2 or 4 (bytes)")
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self.sampling_rate = sampling_rate
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self.sample_width = sample_width
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self.channels = channels
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import pyaudio
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self._p = pyaudio.PyAudio()
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self.stream = self._p.open(format=self._p.get_format_from_width(self.sample_width),
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channels=self.channels, rate=self.sampling_rate,
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input=False, output=True)
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def play(self, data):
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if self.stream.is_stopped():
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self.stream.start_stream()
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for chunk in self._chunk_data(data):
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self.stream.write(chunk)
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self.stream.stop_stream()
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def stop(self):
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if not self.stream.is_stopped():
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self.stream.stop_stream()
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self.stream.close()
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self._p.terminate()
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def _chunk_data(self, data):
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# make audio chunks of 100 ms to allow interruption (like ctrl+c)
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chunk_size = int((self.sampling_rate * self.sample_width * self.channels) / 10)
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start = 0
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while start < len(data):
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yield data[start: start + chunk_size]
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start += chunk_size
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def from_file(filename):
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"""
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Create an `AudioSource` object using the audio file specified by `filename`.
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The appropriate :class:`AudioSource` class is guessed from file's extension.
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:Parameters:
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`filename` :
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path to an audio file.
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:Returns:
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an `AudioSource` object that reads data from the given file.
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"""
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if filename.lower().endswith(".wav"):
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return WaveAudioSource(filename)
|
||
|
|
||
|
raise Exception("Can not create an AudioSource object from '%s'" % (filename))
|
||
|
|
||
|
|
||
|
def player_for(audio_source):
|
||
|
"""
|
||
|
Return a :class:`PyAudioPlayer` that can play data from `audio_source`.
|
||
|
|
||
|
:Parameters:
|
||
|
|
||
|
`audio_source` :
|
||
|
an `AudioSource` object.
|
||
|
|
||
|
:Returns:
|
||
|
|
||
|
`PyAudioPlayer` that has the same sampling rate, sample width and number of channels
|
||
|
as `audio_source`.
|
||
|
"""
|
||
|
|
||
|
return PyAudioPlayer(audio_source.get_sampling_rate(),
|
||
|
audio_source.get_sample_width(),
|
||
|
audio_source.get_channels())
|