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422 lines
14 KiB
Python
422 lines
14 KiB
Python
import builtins
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import copy
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import ctypes
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import random
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import struct
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from typing import (
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Optional,
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Union,
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BinaryIO
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)
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from . import ogg
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from . import opus
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from .opus_buffered_encoder import OpusBufferedEncoder
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#from .opus_encoder import OpusEncoder
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from .pyogg_error import PyOggError
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class OggOpusWriter():
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"""Encodes PCM data into an OggOpus file."""
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def __init__(self,
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f: Union[BinaryIO, str],
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encoder: OpusBufferedEncoder,
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custom_pre_skip: Optional[int] = None) -> None:
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"""Construct an OggOpusWriter.
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f may be either a string giving the path to the file, or
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an already-opened file handle.
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If f is an already-opened file handle, then it is the
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user's responsibility to close the file when they are
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finished with it. The file should be opened for writing
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in binary (not text) mode.
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The encoder should be a
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OpusBufferedEncoder and should be fully configured before the
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first call to the `write()` method.
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The Opus encoder requires an amount of "warm up" and when
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stored in an Ogg container that warm up can be skipped. When
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`custom_pre_skip` is None, the required amount of warm up
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silence is automatically calculated and inserted. If a custom
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(non-silent) pre-skip is desired, then `custom_pre_skip`
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should be specified as the number of samples (per channel).
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It is then the user's responsibility to pass the non-silent
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pre-skip samples to `encode()`.
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"""
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# Store the Opus encoder
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self._encoder = encoder
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# Store the custom pre skip
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self._custom_pre_skip = custom_pre_skip
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# Create a new stream state with a random serial number
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self._stream_state = self._create_stream_state()
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# Create a packet (reused for each pass)
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self._ogg_packet = ogg.ogg_packet()
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self._packet_valid = False
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# Create a page (reused for each pass)
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self._ogg_page = ogg.ogg_page()
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# Counter for the number of packets written into Ogg stream
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self._count_packets = 0
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# Counter for the number of samples encoded into Opus
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# packets
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self._count_samples = 0
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# Flag to indicate if the headers have been written
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self._headers_written = False
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# Flag to indicate that the stream has been finished (the
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# EOS bit was set in a final packet)
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self._finished = False
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# Reference to the current encoded packet (written only
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# when we know if it the last)
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self._current_encoded_packet: Optional[bytes] = None
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# Open file if required. Given this may raise an exception,
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# it should be the last step of initialisation.
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self._i_opened_the_file = False
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if isinstance(f, str):
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self._file = builtins.open(f, 'wb')
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self._i_opened_the_file = True
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else:
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# Assume it's already opened file
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self._file = f
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def __del__(self) -> None:
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if not self._finished:
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self.close()
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#
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# User visible methods
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#
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def write(self, pcm: memoryview) -> None:
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"""Encode the PCM and write out the Ogg Opus stream.
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Encoders the PCM using the provided encoder.
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"""
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# Check that the stream hasn't already been finished
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if self._finished:
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raise PyOggError(
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"Stream has already ended. Perhaps close() was "+
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"called too early?")
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# If we haven't already written out the headers, do so
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# now. Then, write a frame of silence to warm up the
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# encoder.
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if not self._headers_written:
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pre_skip = self._write_headers(self._custom_pre_skip)
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if self._custom_pre_skip is None:
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self._write_silence(pre_skip)
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# Call the internal method to encode the bytes
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self._write_to_oggopus(pcm)
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def _write_to_oggopus(self, pcm: memoryview, flush: bool = False) -> None:
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assert self._encoder is not None
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def handle_encoded_packet(encoded_packet: memoryview,
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samples: int,
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end_of_stream: bool) -> None:
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# Cast memoryview to ctypes Array
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Buffer = ctypes.c_ubyte * len(encoded_packet)
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encoded_packet_ctypes = Buffer.from_buffer(encoded_packet)
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# Obtain a pointer to the encoded packet
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encoded_packet_ptr = ctypes.cast(
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encoded_packet_ctypes,
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ctypes.POINTER(ctypes.c_ubyte)
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)
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# Increase the count of the number of samples written
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self._count_samples += samples
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# Place data into the packet
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self._ogg_packet.packet = encoded_packet_ptr
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self._ogg_packet.bytes = len(encoded_packet)
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self._ogg_packet.b_o_s = 0
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self._ogg_packet.e_o_s = end_of_stream
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self._ogg_packet.granulepos = self._count_samples
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self._ogg_packet.packetno = self._count_packets
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# Increase the counter of the number of packets
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# in the stream
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self._count_packets += 1
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# Write the packet into the stream
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self._write_packet()
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# Encode the PCM data into an Opus packet
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self._encoder.buffered_encode(
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pcm,
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flush=flush,
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callback=handle_encoded_packet
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)
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def close(self) -> None:
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# Check we haven't already closed this stream
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if self._finished:
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# We're attempting to close an already closed stream,
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# do nothing more.
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return
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# Flush the underlying buffered encoder
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self._write_to_oggopus(memoryview(bytearray(b"")), flush=True)
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# The current packet must be the end of the stream, update
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# the packet's details
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self._ogg_packet.e_o_s = 1
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# Write the packet to the stream
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if self._packet_valid:
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self._write_packet()
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# Flush the stream of any unwritten pages
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self._flush()
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# Mark the stream as finished
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self._finished = True
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# Close the file if we opened it
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if self._i_opened_the_file:
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self._file.close()
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self._i_opened_the_file = False
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# Clean up the Ogg-related memory
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ogg.ogg_stream_clear(self._stream_state)
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# Clean up the reference to the encoded packet (as it must
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# now have been written)
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del self._current_encoded_packet
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#
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# Internal methods
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#
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def _create_random_serial_no(self) -> ctypes.c_int:
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sizeof_c_int = ctypes.sizeof(ctypes.c_int)
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min_int = -2**(sizeof_c_int*8-1)
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max_int = 2**(sizeof_c_int*8-1)-1
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serial_no = ctypes.c_int(random.randint(min_int, max_int))
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return serial_no
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def _create_stream_state(self) -> ogg.ogg_stream_state:
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# Create a random serial number
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serial_no = self._create_random_serial_no()
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# Create an ogg_stream_state
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ogg_stream_state = ogg.ogg_stream_state()
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# Initialise the stream state
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ogg.ogg_stream_init(
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ctypes.pointer(ogg_stream_state),
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serial_no
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)
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return ogg_stream_state
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def _make_identification_header(self, pre_skip: int, input_sampling_rate: int = 0) -> bytes:
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"""Make the OggOpus identification header.
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An input_sampling rate may be set to zero to mean 'unspecified'.
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Only channel mapping family 0 is currently supported.
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This allows mono and stereo signals.
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See https://tools.ietf.org/html/rfc7845#page-12 for more
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details.
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"""
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signature = b"OpusHead"
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version = 1
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output_channels = self._encoder._channels
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output_gain = 0
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channel_mapping_family = 0
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data = struct.pack(
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"<BBHIHB",
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version,
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output_channels,
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pre_skip,
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input_sampling_rate,
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output_gain,
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channel_mapping_family
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)
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return signature+data
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def _write_identification_header_packet(self, custom_pre_skip: int) -> int:
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""" Returns pre-skip. """
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if custom_pre_skip is not None:
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# Use the user-specified amount of pre-skip
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pre_skip = custom_pre_skip
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else:
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# Obtain the algorithmic delay of the Opus encoder. See
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# https://tools.ietf.org/html/rfc7845#page-27
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delay_samples = self._encoder.get_algorithmic_delay()
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# Extra samples are recommended. See
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# https://tools.ietf.org/html/rfc7845#page-27
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extra_samples = 120
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# We will just fill a whole frame with silence. Calculate
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# the minimum frame length, which we'll use as the
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# pre-skip.
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frame_durations = [2.5, 5, 10, 20, 40, 60] # milliseconds
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frame_lengths = [
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x * self._encoder._samples_per_second // 1000
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for x in frame_durations
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]
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for frame_length in frame_lengths:
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if frame_length > delay_samples + extra_samples:
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pre_skip = frame_length
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break
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# Create the identification header
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id_header = self._make_identification_header(
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pre_skip = pre_skip
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)
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# Specify the packet containing the identification header
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self._ogg_packet.packet = ctypes.cast(id_header, ogg.c_uchar_p) # type: ignore
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self._ogg_packet.bytes = len(id_header)
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self._ogg_packet.b_o_s = 1
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self._ogg_packet.e_o_s = 0
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self._ogg_packet.granulepos = 0
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self._ogg_packet.packetno = self._count_packets
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self._count_packets += 1
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# Write the identification header
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result = ogg.ogg_stream_packetin(
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self._stream_state,
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self._ogg_packet
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)
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if result != 0:
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raise PyOggError(
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"Failed to write Opus identification header"
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)
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return pre_skip
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def _make_comment_header(self):
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"""Make the OggOpus comment header.
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See https://tools.ietf.org/html/rfc7845#page-22 for more
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details.
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"""
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signature = b"OpusTags"
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vendor_string = b"ENCODER=PyOgg"
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vendor_string_length = struct.pack("<I",len(vendor_string))
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user_comments_length = struct.pack("<I",0)
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return (
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signature
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+ vendor_string_length
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+ vendor_string
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+ user_comments_length
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)
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def _write_comment_header_packet(self):
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# Specify the comment header
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comment_header = self._make_comment_header()
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# Specify the packet containing the identification header
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self._ogg_packet.packet = ctypes.cast(comment_header, ogg.c_uchar_p)
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self._ogg_packet.bytes = len(comment_header)
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self._ogg_packet.b_o_s = 0
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self._ogg_packet.e_o_s = 0
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self._ogg_packet.granulepos = 0
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self._ogg_packet.packetno = self._count_packets
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self._count_packets += 1
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# Write the header
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result = ogg.ogg_stream_packetin(
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self._stream_state,
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self._ogg_packet
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)
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if result != 0:
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raise PyOggError(
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"Failed to write Opus comment header"
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)
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def _write_page(self):
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""" Write page to file """
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# Cast pointer to ctypes array, which can then be passed to
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# write without issues.
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HeaderBufferPtr = ctypes.POINTER(ctypes.c_ubyte * self._ogg_page.header_len)
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header = HeaderBufferPtr(self._ogg_page.header.contents)[0]
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self._file.write(header)
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BodyBufferPtr = ctypes.POINTER(ctypes.c_ubyte * self._ogg_page.body_len)
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body = BodyBufferPtr(self._ogg_page.body.contents)[0]
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self._file.write(body)
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def _flush(self):
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""" Flush all pages to the file. """
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while ogg.ogg_stream_flush(
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ctypes.pointer(self._stream_state),
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ctypes.pointer(self._ogg_page)) != 0:
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self._write_page()
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def _write_headers(self, custom_pre_skip):
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""" Write the two Opus header packets."""
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pre_skip = self._write_identification_header_packet(
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custom_pre_skip
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)
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self._write_comment_header_packet()
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# Store that the headers have been written
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self._headers_written = True
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# Write out pages to file to ensure that the headers are
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# the only packets to appear on the first page. If this
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# is not done, the file cannot be read by the library
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# opusfile.
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self._flush()
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return pre_skip
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def _write_packet(self):
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# Place the packet into the stream
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result = ogg.ogg_stream_packetin(
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self._stream_state,
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self._ogg_packet
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)
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# Check for errors
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if result != 0:
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raise PyOggError(
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"Error while placing packet in Ogg stream"
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)
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# Write out pages to file
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while ogg.ogg_stream_pageout(
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ctypes.pointer(self._stream_state),
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ctypes.pointer(self._ogg_page)) != 0:
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self._write_page()
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def _write_silence(self, samples):
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""" Write a frame of silence. """
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silence_length = (
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samples
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* self._encoder._channels
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* ctypes.sizeof(opus.opus_int16)
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)
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silence_pcm = \
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memoryview(bytearray(b"\x00" * silence_length))
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self._write_to_oggopus(silence_pcm)
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