427 lines
15 KiB
Python
427 lines
15 KiB
Python
"""WebSocket client for asyncio."""
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import asyncio
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import sys
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from types import TracebackType
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from typing import Any, Optional, Type, cast
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import attr
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from ._websocket.reader import WebSocketDataQueue
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from .client_exceptions import ClientError, ServerTimeoutError, WSMessageTypeError
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from .client_reqrep import ClientResponse
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from .helpers import calculate_timeout_when, set_result
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from .http import (
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WS_CLOSED_MESSAGE,
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WS_CLOSING_MESSAGE,
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WebSocketError,
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WSCloseCode,
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WSMessage,
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WSMsgType,
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)
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from .http_websocket import _INTERNAL_RECEIVE_TYPES, WebSocketWriter
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from .streams import EofStream
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from .typedefs import (
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DEFAULT_JSON_DECODER,
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DEFAULT_JSON_ENCODER,
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JSONDecoder,
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JSONEncoder,
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)
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if sys.version_info >= (3, 11):
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import asyncio as async_timeout
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else:
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import async_timeout
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@attr.s(frozen=True, slots=True)
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class ClientWSTimeout:
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ws_receive = attr.ib(type=Optional[float], default=None)
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ws_close = attr.ib(type=Optional[float], default=None)
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DEFAULT_WS_CLIENT_TIMEOUT = ClientWSTimeout(ws_receive=None, ws_close=10.0)
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class ClientWebSocketResponse:
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def __init__(
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self,
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reader: WebSocketDataQueue,
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writer: WebSocketWriter,
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protocol: Optional[str],
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response: ClientResponse,
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timeout: ClientWSTimeout,
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autoclose: bool,
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autoping: bool,
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loop: asyncio.AbstractEventLoop,
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*,
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heartbeat: Optional[float] = None,
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compress: int = 0,
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client_notakeover: bool = False,
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) -> None:
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self._response = response
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self._conn = response.connection
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self._writer = writer
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self._reader = reader
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self._protocol = protocol
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self._closed = False
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self._closing = False
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self._close_code: Optional[int] = None
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self._timeout = timeout
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self._autoclose = autoclose
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self._autoping = autoping
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self._heartbeat = heartbeat
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self._heartbeat_cb: Optional[asyncio.TimerHandle] = None
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self._heartbeat_when: float = 0.0
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if heartbeat is not None:
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self._pong_heartbeat = heartbeat / 2.0
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self._pong_response_cb: Optional[asyncio.TimerHandle] = None
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self._loop = loop
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self._waiting: bool = False
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self._close_wait: Optional[asyncio.Future[None]] = None
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self._exception: Optional[BaseException] = None
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self._compress = compress
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self._client_notakeover = client_notakeover
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self._ping_task: Optional[asyncio.Task[None]] = None
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self._reset_heartbeat()
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def _cancel_heartbeat(self) -> None:
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self._cancel_pong_response_cb()
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if self._heartbeat_cb is not None:
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self._heartbeat_cb.cancel()
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self._heartbeat_cb = None
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if self._ping_task is not None:
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self._ping_task.cancel()
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self._ping_task = None
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def _cancel_pong_response_cb(self) -> None:
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if self._pong_response_cb is not None:
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self._pong_response_cb.cancel()
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self._pong_response_cb = None
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def _reset_heartbeat(self) -> None:
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if self._heartbeat is None:
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return
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self._cancel_pong_response_cb()
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loop = self._loop
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assert loop is not None
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conn = self._conn
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timeout_ceil_threshold = (
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conn._connector._timeout_ceil_threshold if conn is not None else 5
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)
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now = loop.time()
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when = calculate_timeout_when(now, self._heartbeat, timeout_ceil_threshold)
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self._heartbeat_when = when
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if self._heartbeat_cb is None:
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# We do not cancel the previous heartbeat_cb here because
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# it generates a significant amount of TimerHandle churn
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# which causes asyncio to rebuild the heap frequently.
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# Instead _send_heartbeat() will reschedule the next
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# heartbeat if it fires too early.
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self._heartbeat_cb = loop.call_at(when, self._send_heartbeat)
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def _send_heartbeat(self) -> None:
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self._heartbeat_cb = None
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loop = self._loop
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now = loop.time()
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if now < self._heartbeat_when:
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# Heartbeat fired too early, reschedule
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self._heartbeat_cb = loop.call_at(
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self._heartbeat_when, self._send_heartbeat
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)
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return
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conn = self._conn
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timeout_ceil_threshold = (
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conn._connector._timeout_ceil_threshold if conn is not None else 5
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)
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when = calculate_timeout_when(now, self._pong_heartbeat, timeout_ceil_threshold)
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self._cancel_pong_response_cb()
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self._pong_response_cb = loop.call_at(when, self._pong_not_received)
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coro = self._writer.send_frame(b"", WSMsgType.PING)
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if sys.version_info >= (3, 12):
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# Optimization for Python 3.12, try to send the ping
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# immediately to avoid having to schedule
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# the task on the event loop.
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ping_task = asyncio.Task(coro, loop=loop, eager_start=True)
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else:
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ping_task = loop.create_task(coro)
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if not ping_task.done():
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self._ping_task = ping_task
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ping_task.add_done_callback(self._ping_task_done)
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else:
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self._ping_task_done(ping_task)
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def _ping_task_done(self, task: "asyncio.Task[None]") -> None:
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"""Callback for when the ping task completes."""
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if not task.cancelled() and (exc := task.exception()):
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self._handle_ping_pong_exception(exc)
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self._ping_task = None
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def _pong_not_received(self) -> None:
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self._handle_ping_pong_exception(ServerTimeoutError())
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def _handle_ping_pong_exception(self, exc: BaseException) -> None:
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"""Handle exceptions raised during ping/pong processing."""
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if self._closed:
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return
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self._set_closed()
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self._close_code = WSCloseCode.ABNORMAL_CLOSURE
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self._exception = exc
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self._response.close()
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if self._waiting and not self._closing:
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self._reader.feed_data(WSMessage(WSMsgType.ERROR, exc, None), 0)
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def _set_closed(self) -> None:
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"""Set the connection to closed.
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Cancel any heartbeat timers and set the closed flag.
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"""
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self._closed = True
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self._cancel_heartbeat()
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def _set_closing(self) -> None:
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"""Set the connection to closing.
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Cancel any heartbeat timers and set the closing flag.
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"""
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self._closing = True
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self._cancel_heartbeat()
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@property
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def closed(self) -> bool:
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return self._closed
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@property
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def close_code(self) -> Optional[int]:
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return self._close_code
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@property
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def protocol(self) -> Optional[str]:
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return self._protocol
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@property
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def compress(self) -> int:
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return self._compress
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@property
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def client_notakeover(self) -> bool:
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return self._client_notakeover
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def get_extra_info(self, name: str, default: Any = None) -> Any:
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"""extra info from connection transport"""
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conn = self._response.connection
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if conn is None:
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return default
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transport = conn.transport
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if transport is None:
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return default
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return transport.get_extra_info(name, default)
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def exception(self) -> Optional[BaseException]:
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return self._exception
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async def ping(self, message: bytes = b"") -> None:
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await self._writer.send_frame(message, WSMsgType.PING)
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async def pong(self, message: bytes = b"") -> None:
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await self._writer.send_frame(message, WSMsgType.PONG)
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async def send_frame(
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self, message: bytes, opcode: WSMsgType, compress: Optional[int] = None
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) -> None:
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"""Send a frame over the websocket."""
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await self._writer.send_frame(message, opcode, compress)
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async def send_str(self, data: str, compress: Optional[int] = None) -> None:
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if not isinstance(data, str):
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raise TypeError("data argument must be str (%r)" % type(data))
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await self._writer.send_frame(
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data.encode("utf-8"), WSMsgType.TEXT, compress=compress
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)
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async def send_bytes(self, data: bytes, compress: Optional[int] = None) -> None:
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if not isinstance(data, (bytes, bytearray, memoryview)):
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raise TypeError("data argument must be byte-ish (%r)" % type(data))
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await self._writer.send_frame(data, WSMsgType.BINARY, compress=compress)
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async def send_json(
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self,
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data: Any,
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compress: Optional[int] = None,
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*,
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dumps: JSONEncoder = DEFAULT_JSON_ENCODER,
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) -> None:
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await self.send_str(dumps(data), compress=compress)
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async def close(self, *, code: int = WSCloseCode.OK, message: bytes = b"") -> bool:
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# we need to break `receive()` cycle first,
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# `close()` may be called from different task
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if self._waiting and not self._closing:
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assert self._loop is not None
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self._close_wait = self._loop.create_future()
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self._set_closing()
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self._reader.feed_data(WS_CLOSING_MESSAGE, 0)
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await self._close_wait
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if self._closed:
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return False
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self._set_closed()
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try:
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await self._writer.close(code, message)
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except asyncio.CancelledError:
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self._close_code = WSCloseCode.ABNORMAL_CLOSURE
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self._response.close()
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raise
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except Exception as exc:
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self._close_code = WSCloseCode.ABNORMAL_CLOSURE
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self._exception = exc
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self._response.close()
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return True
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if self._close_code:
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self._response.close()
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return True
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while True:
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try:
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async with async_timeout.timeout(self._timeout.ws_close):
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msg = await self._reader.read()
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except asyncio.CancelledError:
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self._close_code = WSCloseCode.ABNORMAL_CLOSURE
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self._response.close()
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raise
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except Exception as exc:
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self._close_code = WSCloseCode.ABNORMAL_CLOSURE
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self._exception = exc
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self._response.close()
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return True
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if msg.type is WSMsgType.CLOSE:
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self._close_code = msg.data
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self._response.close()
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return True
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async def receive(self, timeout: Optional[float] = None) -> WSMessage:
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receive_timeout = timeout or self._timeout.ws_receive
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while True:
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if self._waiting:
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raise RuntimeError("Concurrent call to receive() is not allowed")
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if self._closed:
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return WS_CLOSED_MESSAGE
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elif self._closing:
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await self.close()
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return WS_CLOSED_MESSAGE
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try:
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self._waiting = True
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try:
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if receive_timeout:
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# Entering the context manager and creating
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# Timeout() object can take almost 50% of the
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# run time in this loop so we avoid it if
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# there is no read timeout.
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async with async_timeout.timeout(receive_timeout):
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msg = await self._reader.read()
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else:
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msg = await self._reader.read()
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self._reset_heartbeat()
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finally:
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self._waiting = False
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if self._close_wait:
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set_result(self._close_wait, None)
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except (asyncio.CancelledError, asyncio.TimeoutError):
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self._close_code = WSCloseCode.ABNORMAL_CLOSURE
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raise
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except EofStream:
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self._close_code = WSCloseCode.OK
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await self.close()
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return WSMessage(WSMsgType.CLOSED, None, None)
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except ClientError:
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# Likely ServerDisconnectedError when connection is lost
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self._set_closed()
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self._close_code = WSCloseCode.ABNORMAL_CLOSURE
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return WS_CLOSED_MESSAGE
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except WebSocketError as exc:
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self._close_code = exc.code
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await self.close(code=exc.code)
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return WSMessage(WSMsgType.ERROR, exc, None)
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except Exception as exc:
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self._exception = exc
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self._set_closing()
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self._close_code = WSCloseCode.ABNORMAL_CLOSURE
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await self.close()
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return WSMessage(WSMsgType.ERROR, exc, None)
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if msg.type not in _INTERNAL_RECEIVE_TYPES:
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# If its not a close/closing/ping/pong message
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# we can return it immediately
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return msg
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if msg.type is WSMsgType.CLOSE:
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self._set_closing()
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self._close_code = msg.data
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if not self._closed and self._autoclose:
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await self.close()
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elif msg.type is WSMsgType.CLOSING:
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self._set_closing()
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elif msg.type is WSMsgType.PING and self._autoping:
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await self.pong(msg.data)
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continue
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elif msg.type is WSMsgType.PONG and self._autoping:
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continue
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return msg
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async def receive_str(self, *, timeout: Optional[float] = None) -> str:
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msg = await self.receive(timeout)
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if msg.type is not WSMsgType.TEXT:
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raise WSMessageTypeError(
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f"Received message {msg.type}:{msg.data!r} is not WSMsgType.TEXT"
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)
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return cast(str, msg.data)
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async def receive_bytes(self, *, timeout: Optional[float] = None) -> bytes:
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msg = await self.receive(timeout)
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if msg.type is not WSMsgType.BINARY:
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raise WSMessageTypeError(
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f"Received message {msg.type}:{msg.data!r} is not WSMsgType.BINARY"
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)
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return cast(bytes, msg.data)
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async def receive_json(
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self,
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*,
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loads: JSONDecoder = DEFAULT_JSON_DECODER,
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timeout: Optional[float] = None,
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) -> Any:
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data = await self.receive_str(timeout=timeout)
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return loads(data)
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def __aiter__(self) -> "ClientWebSocketResponse":
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return self
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async def __anext__(self) -> WSMessage:
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msg = await self.receive()
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if msg.type in (WSMsgType.CLOSE, WSMsgType.CLOSING, WSMsgType.CLOSED):
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raise StopAsyncIteration
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return msg
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async def __aenter__(self) -> "ClientWebSocketResponse":
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return self
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async def __aexit__(
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self,
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exc_type: Optional[Type[BaseException]],
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exc_val: Optional[BaseException],
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exc_tb: Optional[TracebackType],
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) -> None:
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await self.close()
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