346 lines
11 KiB
Python
346 lines
11 KiB
Python
# -*- coding: utf-8 -*-
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"""
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The MIT License (MIT)
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Copyright (c) 2015-2019 Rapptz
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Permission is hereby granted, free of charge, to any person obtaining a
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copy of this software and associated documentation files (the "Software"),
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to deal in the Software without restriction, including without limitation
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the rights to use, copy, modify, merge, publish, distribute, sublicense,
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and/or sell copies of the Software, and to permit persons to whom the
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Software is furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
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OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
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DEALINGS IN THE SOFTWARE.
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"""
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import threading
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import subprocess
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import audioop
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import asyncio
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import logging
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import shlex
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import time
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from .errors import ClientException
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from .opus import Encoder as OpusEncoder
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log = logging.getLogger(__name__)
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__all__ = (
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'AudioSource',
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'PCMAudio',
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'FFmpegPCMAudio',
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'PCMVolumeTransformer',
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)
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class AudioSource:
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"""Represents an audio stream.
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The audio stream can be Opus encoded or not, however if the audio stream
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is not Opus encoded then the audio format must be 16-bit 48KHz stereo PCM.
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.. warning::
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The audio source reads are done in a separate thread.
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"""
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def read(self):
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"""Reads 20ms worth of audio.
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Subclasses must implement this.
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If the audio is complete, then returning an empty
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:term:`py:bytes-like object` to signal this is the way to do so.
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If :meth:`is_opus` method returns ``True``, then it must return
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20ms worth of Opus encoded audio. Otherwise, it must be 20ms
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worth of 16-bit 48KHz stereo PCM, which is about 3,840 bytes
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per frame (20ms worth of audio).
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Returns
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--------
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:class:`bytes`
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A bytes like object that represents the PCM or Opus data.
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"""
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raise NotImplementedError
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def is_opus(self):
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"""Checks if the audio source is already encoded in Opus."""
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return False
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def cleanup(self):
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"""Called when clean-up is needed to be done.
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Useful for clearing buffer data or processes after
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it is done playing audio.
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"""
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pass
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def __del__(self):
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self.cleanup()
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class PCMAudio(AudioSource):
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"""Represents raw 16-bit 48KHz stereo PCM audio source.
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Attributes
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-----------
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stream: :term:`py:file object`
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A file-like object that reads byte data representing raw PCM.
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"""
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def __init__(self, stream):
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self.stream = stream
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def read(self):
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ret = self.stream.read(OpusEncoder.FRAME_SIZE)
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if len(ret) != OpusEncoder.FRAME_SIZE:
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return b''
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return ret
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class FFmpegPCMAudio(AudioSource):
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"""An audio source from FFmpeg (or AVConv).
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This launches a sub-process to a specific input file given.
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.. warning::
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You must have the ffmpeg or avconv executable in your path environment
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variable in order for this to work.
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Parameters
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------------
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source: Union[:class:`str`, :class:`io.BufferedIOBase`]
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The input that ffmpeg will take and convert to PCM bytes.
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If ``pipe`` is True then this is a file-like object that is
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passed to the stdin of ffmpeg.
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executable: :class:`str`
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The executable name (and path) to use. Defaults to ``ffmpeg``.
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pipe: :class:`bool`
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If ``True``, denotes that ``source`` parameter will be passed
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to the stdin of ffmpeg. Defaults to ``False``.
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stderr: Optional[:term:`py:file object`]
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A file-like object to pass to the Popen constructor.
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Could also be an instance of ``subprocess.PIPE``.
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options: Optional[:class:`str`]
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Extra command line arguments to pass to ffmpeg after the ``-i`` flag.
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before_options: Optional[:class:`str`]
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Extra command line arguments to pass to ffmpeg before the ``-i`` flag.
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Raises
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--------
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ClientException
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The subprocess failed to be created.
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"""
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def __init__(self, source, *, executable='ffmpeg', pipe=False, stderr=None, before_options=None, options=None):
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stdin = None if not pipe else source
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args = [executable]
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if isinstance(before_options, str):
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args.extend(shlex.split(before_options))
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args.append('-i')
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args.append('-' if pipe else source)
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args.extend(('-f', 's16le', '-ar', '48000', '-ac', '2', '-loglevel', 'warning'))
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if isinstance(options, str):
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args.extend(shlex.split(options))
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args.append('pipe:1')
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self._process = None
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try:
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self._process = subprocess.Popen(args, stdin=stdin, stdout=subprocess.PIPE, stderr=stderr)
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self._stdout = self._process.stdout
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except FileNotFoundError:
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raise ClientException(executable + ' was not found.') from None
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except subprocess.SubprocessError as exc:
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raise ClientException('Popen failed: {0.__class__.__name__}: {0}'.format(exc)) from exc
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def read(self):
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ret = self._stdout.read(OpusEncoder.FRAME_SIZE)
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if len(ret) != OpusEncoder.FRAME_SIZE:
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return b''
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return ret
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def cleanup(self):
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proc = self._process
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if proc is None:
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return
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log.info('Preparing to terminate ffmpeg process %s.', proc.pid)
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proc.kill()
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if proc.poll() is None:
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log.info('ffmpeg process %s has not terminated. Waiting to terminate...', proc.pid)
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proc.communicate()
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log.info('ffmpeg process %s should have terminated with a return code of %s.', proc.pid, proc.returncode)
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else:
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log.info('ffmpeg process %s successfully terminated with return code of %s.', proc.pid, proc.returncode)
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self._process = None
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class PCMVolumeTransformer(AudioSource):
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"""Transforms a previous :class:`AudioSource` to have volume controls.
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This does not work on audio sources that have :meth:`AudioSource.is_opus`
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set to ``True``.
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Parameters
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------------
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original: :class:`AudioSource`
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The original AudioSource to transform.
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volume: :class:`float`
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The initial volume to set it to.
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See :attr:`volume` for more info.
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Raises
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-------
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TypeError
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Not an audio source.
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ClientException
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The audio source is opus encoded.
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"""
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def __init__(self, original, volume=1.0):
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if not isinstance(original, AudioSource):
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raise TypeError('expected AudioSource not {0.__class__.__name__}.'.format(original))
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if original.is_opus():
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raise ClientException('AudioSource must not be Opus encoded.')
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self.original = original
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self.volume = volume
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@property
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def volume(self):
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"""Retrieves or sets the volume as a floating point percentage (e.g. 1.0 for 100%)."""
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return self._volume
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@volume.setter
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def volume(self, value):
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self._volume = max(value, 0.0)
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def cleanup(self):
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self.original.cleanup()
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def read(self):
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ret = self.original.read()
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return audioop.mul(ret, 2, min(self._volume, 2.0))
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class AudioPlayer(threading.Thread):
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DELAY = OpusEncoder.FRAME_LENGTH / 1000.0
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def __init__(self, source, client, *, after=None):
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threading.Thread.__init__(self)
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self.daemon = True
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self.source = source
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self.client = client
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self.after = after
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self._end = threading.Event()
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self._resumed = threading.Event()
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self._resumed.set() # we are not paused
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self._current_error = None
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self._connected = client._connected
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self._lock = threading.Lock()
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if after is not None and not callable(after):
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raise TypeError('Expected a callable for the "after" parameter.')
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def _do_run(self):
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self.loops = 0
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self._start = time.time()
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# getattr lookup speed ups
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play_audio = self.client.send_audio_packet
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self._speak(True)
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while not self._end.is_set():
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# are we paused?
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if not self._resumed.is_set():
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# wait until we aren't
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self._resumed.wait()
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continue
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# are we disconnected from voice?
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if not self._connected.is_set():
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# wait until we are connected
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self._connected.wait()
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# reset our internal data
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self.loops = 0
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self._start = time.time()
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self.loops += 1
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data = self.source.read()
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if not data:
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self.stop()
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break
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play_audio(data, encode=not self.source.is_opus())
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next_time = self._start + self.DELAY * self.loops
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delay = max(0, self.DELAY + (next_time - time.time()))
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time.sleep(delay)
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def run(self):
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try:
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self._do_run()
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except Exception as exc:
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self._current_error = exc
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self.stop()
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finally:
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self.source.cleanup()
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self._call_after()
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def _call_after(self):
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if self.after is not None:
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try:
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self.after(self._current_error)
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except Exception:
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log.exception('Calling the after function failed.')
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def stop(self):
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self._end.set()
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self._resumed.set()
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self._speak(False)
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def pause(self, *, update_speaking=True):
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self._resumed.clear()
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if update_speaking:
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self._speak(False)
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def resume(self, *, update_speaking=True):
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self.loops = 0
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self._start = time.time()
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self._resumed.set()
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if update_speaking:
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self._speak(True)
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def is_playing(self):
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return self._resumed.is_set() and not self._end.is_set()
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def is_paused(self):
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return not self._end.is_set() and not self._resumed.is_set()
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def _set_source(self, source):
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with self._lock:
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self.pause(update_speaking=False)
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self.source = source
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self.resume(update_speaking=False)
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def _speak(self, speaking):
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try:
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asyncio.run_coroutine_threadsafe(self.client.ws.speak(speaking), self.client.loop)
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except Exception as e:
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log.info("Speaking call in player failed: %s", e)
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