280 lines
10 KiB
Python
280 lines
10 KiB
Python
import asyncio
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from typing import Any # noqa: F401
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from typing import Dict, List, Optional, Tuple
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from libp2p.exceptions import ParseError
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from libp2p.io.exceptions import IncompleteReadError
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from libp2p.network.typing import GenericProtocolHandlerFn
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from libp2p.peer.id import ID
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from libp2p.protocol_muxer.exceptions import MultiselectError
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from libp2p.security.secure_conn_interface import ISecureConn
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from libp2p.stream_muxer.abc import IMuxedConn, IMuxedStream
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from libp2p.typing import TProtocol
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from libp2p.utils import (
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decode_uvarint_from_stream,
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encode_uvarint,
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encode_varint_prefixed,
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read_varint_prefixed_bytes,
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)
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from .constants import HeaderTags
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from .datastructures import StreamID
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from .mplex_stream import MplexStream
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MPLEX_PROTOCOL_ID = TProtocol("/mplex/6.7.0")
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class Mplex(IMuxedConn):
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"""
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reference: https://github.com/libp2p/go-mplex/blob/master/multiplex.go
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"""
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secured_conn: ISecureConn
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peer_id: ID
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# TODO: `dataIn` in go implementation. Should be size of 8.
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# TODO: Also, `dataIn` is closed indicating EOF in Go. We don't have similar strategies
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# to let the `MplexStream`s know that EOF arrived (#235).
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next_channel_id: int
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streams: Dict[StreamID, MplexStream]
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streams_lock: asyncio.Lock
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shutdown: asyncio.Event
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_tasks: List["asyncio.Future[Any]"]
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# TODO: `generic_protocol_handler` should be refactored out of mplex conn.
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def __init__(
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self,
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secured_conn: ISecureConn,
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generic_protocol_handler: GenericProtocolHandlerFn,
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peer_id: ID,
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) -> None:
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"""
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create a new muxed connection
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:param secured_conn: an instance of ``ISecureConn``
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:param generic_protocol_handler: generic protocol handler
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for new muxed streams
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:param peer_id: peer_id of peer the connection is to
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"""
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self.secured_conn = secured_conn
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self.next_channel_id = 0
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# Store generic protocol handler
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self.generic_protocol_handler = generic_protocol_handler
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# Set peer_id
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self.peer_id = peer_id
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# Mapping from stream ID -> buffer of messages for that stream
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self.streams = {}
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self.streams_lock = asyncio.Lock()
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self.shutdown = asyncio.Event()
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self._tasks = []
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# Kick off reading
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self._tasks.append(asyncio.ensure_future(self.handle_incoming()))
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@property
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def initiator(self) -> bool:
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return self.secured_conn.initiator
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async def close(self) -> None:
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"""
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close the stream muxer and underlying secured connection
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"""
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for task in self._tasks:
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task.cancel()
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await self.secured_conn.close()
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def is_closed(self) -> bool:
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"""
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check connection is fully closed
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:return: true if successful
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"""
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raise NotImplementedError()
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def _get_next_channel_id(self) -> int:
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"""
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Get next available stream id
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:return: next available stream id for the connection
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"""
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next_id = self.next_channel_id
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self.next_channel_id += 1
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return next_id
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async def _initialize_stream(self, stream_id: StreamID, name: str) -> MplexStream:
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async with self.streams_lock:
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stream = MplexStream(name, stream_id, self)
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self.streams[stream_id] = stream
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return stream
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async def open_stream(self) -> IMuxedStream:
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"""
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creates a new muxed_stream
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:return: a new ``MplexStream``
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"""
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channel_id = self._get_next_channel_id()
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stream_id = StreamID(channel_id=channel_id, is_initiator=True)
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# Default stream name is the `channel_id`
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name = str(channel_id)
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stream = await self._initialize_stream(stream_id, name)
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await self.send_message(HeaderTags.NewStream, name.encode(), stream_id)
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return stream
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async def accept_stream(self, stream_id: StreamID, name: str) -> None:
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"""
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accepts a muxed stream opened by the other end
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"""
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stream = await self._initialize_stream(stream_id, name)
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# Perform protocol negotiation for the stream.
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try:
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await self.generic_protocol_handler(stream)
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except MultiselectError:
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# Un-register and reset the stream
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del self.streams[stream_id]
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await stream.reset()
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return
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async def send_message(
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self, flag: HeaderTags, data: Optional[bytes], stream_id: StreamID
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) -> int:
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"""
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sends a message over the connection
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:param header: header to use
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:param data: data to send in the message
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:param stream_id: stream the message is in
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"""
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# << by 3, then or with flag
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header = encode_uvarint((stream_id.channel_id << 3) | flag.value)
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if data is None:
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data = b""
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_bytes = header + encode_varint_prefixed(data)
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return await self.write_to_stream(_bytes)
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async def write_to_stream(self, _bytes: bytes) -> int:
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"""
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writes a byte array to a secured connection
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:param _bytes: byte array to write
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:return: length written
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"""
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await self.secured_conn.write(_bytes)
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return len(_bytes)
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async def handle_incoming(self) -> None:
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"""
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Read a message off of the secured connection and add it to the corresponding message buffer
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"""
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# TODO Deal with other types of messages using flag (currently _)
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while True:
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channel_id, flag, message = await self.read_message()
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if channel_id is not None and flag is not None and message is not None:
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stream_id = StreamID(channel_id=channel_id, is_initiator=bool(flag & 1))
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is_stream_id_seen: bool
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stream: MplexStream
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async with self.streams_lock:
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is_stream_id_seen = stream_id in self.streams
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if is_stream_id_seen:
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stream = self.streams[stream_id]
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# Other consequent stream message should wait until the stream get accepted
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# TODO: Handle more tags, and refactor `HeaderTags`
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if flag == HeaderTags.NewStream.value:
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if is_stream_id_seen:
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# `NewStream` for the same id is received twice...
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# TODO: Shutdown
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pass
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self._tasks.append(
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asyncio.ensure_future(
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self.accept_stream(stream_id, message.decode())
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)
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)
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elif flag in (
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HeaderTags.MessageInitiator.value,
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HeaderTags.MessageReceiver.value,
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):
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if not is_stream_id_seen:
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# We receive a message of the stream `stream_id` which is not accepted
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# before. It is abnormal. Possibly disconnect?
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# TODO: Warn and emit logs about this.
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continue
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async with stream.close_lock:
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if stream.event_remote_closed.is_set():
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# TODO: Warn "Received data from remote after stream was closed by them. (len = %d)" # noqa: E501
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continue
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await stream.incoming_data.put(message)
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elif flag in (
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HeaderTags.CloseInitiator.value,
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HeaderTags.CloseReceiver.value,
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):
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if not is_stream_id_seen:
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continue
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# NOTE: If remote is already closed, then return: Technically a bug
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# on the other side. We should consider killing the connection.
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async with stream.close_lock:
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if stream.event_remote_closed.is_set():
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continue
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is_local_closed: bool
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async with stream.close_lock:
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stream.event_remote_closed.set()
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is_local_closed = stream.event_local_closed.is_set()
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# If local is also closed, both sides are closed. Then, we should clean up
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# the entry of this stream, to avoid others from accessing it.
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if is_local_closed:
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async with self.streams_lock:
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del self.streams[stream_id]
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elif flag in (
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HeaderTags.ResetInitiator.value,
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HeaderTags.ResetReceiver.value,
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):
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if not is_stream_id_seen:
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# This is *ok*. We forget the stream on reset.
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continue
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async with stream.close_lock:
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if not stream.event_remote_closed.is_set():
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# TODO: Why? Only if remote is not closed before then reset.
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stream.event_reset.set()
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stream.event_remote_closed.set()
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# If local is not closed, we should close it.
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if not stream.event_local_closed.is_set():
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stream.event_local_closed.set()
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async with self.streams_lock:
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del self.streams[stream_id]
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else:
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# TODO: logging
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if is_stream_id_seen:
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await stream.reset()
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# Force context switch
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await asyncio.sleep(0)
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async def read_message(self) -> Tuple[int, int, bytes]:
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"""
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Read a single message off of the secured connection
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:return: stream_id, flag, message contents
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"""
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# FIXME: No timeout is used in Go implementation.
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# Timeout is set to a relatively small value to alleviate wait time to exit
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# loop in handle_incoming
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try:
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header = await decode_uvarint_from_stream(self.secured_conn)
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except ParseError:
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return None, None, None
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try:
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message = await asyncio.wait_for(
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read_varint_prefixed_bytes(self.secured_conn), timeout=5
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)
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except (ParseError, IncompleteReadError, asyncio.TimeoutError):
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# TODO: Investigate what we should do if time is out.
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return None, None, None
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flag = header & 0x07
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channel_id = header >> 3
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return channel_id, flag, message
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