mirror of
https://github.com/PiBrewing/craftbeerpi4.git
synced 2024-12-01 11:14:15 +01:00
698 lines
24 KiB
Python
698 lines
24 KiB
Python
"""WebSocket protocol versions 13 and 8."""
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import asyncio
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import collections
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import json
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import random
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import re
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import sys
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import zlib
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from enum import IntEnum
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from struct import Struct
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from typing import Any, Callable, List, Optional, Tuple, Union
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from .base_protocol import BaseProtocol
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from .helpers import NO_EXTENSIONS
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from .streams import DataQueue
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__all__ = (
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"WS_CLOSED_MESSAGE",
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"WS_CLOSING_MESSAGE",
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"WS_KEY",
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"WebSocketReader",
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"WebSocketWriter",
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"WSMessage",
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"WebSocketError",
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"WSMsgType",
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"WSCloseCode",
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)
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class WSCloseCode(IntEnum):
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OK = 1000
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GOING_AWAY = 1001
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PROTOCOL_ERROR = 1002
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UNSUPPORTED_DATA = 1003
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INVALID_TEXT = 1007
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POLICY_VIOLATION = 1008
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MESSAGE_TOO_BIG = 1009
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MANDATORY_EXTENSION = 1010
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INTERNAL_ERROR = 1011
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SERVICE_RESTART = 1012
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TRY_AGAIN_LATER = 1013
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ALLOWED_CLOSE_CODES = {int(i) for i in WSCloseCode}
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class WSMsgType(IntEnum):
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# websocket spec types
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CONTINUATION = 0x0
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TEXT = 0x1
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BINARY = 0x2
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PING = 0x9
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PONG = 0xA
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CLOSE = 0x8
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# aiohttp specific types
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CLOSING = 0x100
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CLOSED = 0x101
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ERROR = 0x102
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text = TEXT
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binary = BINARY
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ping = PING
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pong = PONG
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close = CLOSE
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closing = CLOSING
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closed = CLOSED
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error = ERROR
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WS_KEY = b"258EAFA5-E914-47DA-95CA-C5AB0DC85B11"
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UNPACK_LEN2 = Struct("!H").unpack_from
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UNPACK_LEN3 = Struct("!Q").unpack_from
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UNPACK_CLOSE_CODE = Struct("!H").unpack
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PACK_LEN1 = Struct("!BB").pack
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PACK_LEN2 = Struct("!BBH").pack
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PACK_LEN3 = Struct("!BBQ").pack
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PACK_CLOSE_CODE = Struct("!H").pack
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MSG_SIZE = 2 ** 14
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DEFAULT_LIMIT = 2 ** 16
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_WSMessageBase = collections.namedtuple("_WSMessageBase", ["type", "data", "extra"])
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class WSMessage(_WSMessageBase):
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def json(self, *, loads: Callable[[Any], Any] = json.loads) -> Any:
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"""Return parsed JSON data.
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.. versionadded:: 0.22
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"""
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return loads(self.data)
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WS_CLOSED_MESSAGE = WSMessage(WSMsgType.CLOSED, None, None)
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WS_CLOSING_MESSAGE = WSMessage(WSMsgType.CLOSING, None, None)
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class WebSocketError(Exception):
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"""WebSocket protocol parser error."""
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def __init__(self, code: int, message: str) -> None:
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self.code = code
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super().__init__(code, message)
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def __str__(self) -> str:
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return self.args[1]
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class WSHandshakeError(Exception):
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"""WebSocket protocol handshake error."""
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native_byteorder = sys.byteorder
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# Used by _websocket_mask_python
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_XOR_TABLE = [bytes(a ^ b for a in range(256)) for b in range(256)]
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def _websocket_mask_python(mask: bytes, data: bytearray) -> None:
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"""Websocket masking function.
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`mask` is a `bytes` object of length 4; `data` is a `bytearray`
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object of any length. The contents of `data` are masked with `mask`,
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as specified in section 5.3 of RFC 6455.
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Note that this function mutates the `data` argument.
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This pure-python implementation may be replaced by an optimized
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version when available.
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"""
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assert isinstance(data, bytearray), data
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assert len(mask) == 4, mask
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if data:
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a, b, c, d = (_XOR_TABLE[n] for n in mask)
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data[::4] = data[::4].translate(a)
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data[1::4] = data[1::4].translate(b)
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data[2::4] = data[2::4].translate(c)
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data[3::4] = data[3::4].translate(d)
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if NO_EXTENSIONS: # pragma: no cover
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_websocket_mask = _websocket_mask_python
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else:
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try:
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from ._websocket import _websocket_mask_cython # type: ignore
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_websocket_mask = _websocket_mask_cython
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except ImportError: # pragma: no cover
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_websocket_mask = _websocket_mask_python
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_WS_DEFLATE_TRAILING = bytes([0x00, 0x00, 0xFF, 0xFF])
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_WS_EXT_RE = re.compile(
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r"^(?:;\s*(?:"
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r"(server_no_context_takeover)|"
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r"(client_no_context_takeover)|"
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r"(server_max_window_bits(?:=(\d+))?)|"
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r"(client_max_window_bits(?:=(\d+))?)))*$"
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)
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_WS_EXT_RE_SPLIT = re.compile(r"permessage-deflate([^,]+)?")
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def ws_ext_parse(extstr: Optional[str], isserver: bool = False) -> Tuple[int, bool]:
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if not extstr:
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return 0, False
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compress = 0
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notakeover = False
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for ext in _WS_EXT_RE_SPLIT.finditer(extstr):
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defext = ext.group(1)
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# Return compress = 15 when get `permessage-deflate`
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if not defext:
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compress = 15
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break
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match = _WS_EXT_RE.match(defext)
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if match:
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compress = 15
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if isserver:
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# Server never fail to detect compress handshake.
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# Server does not need to send max wbit to client
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if match.group(4):
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compress = int(match.group(4))
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# Group3 must match if group4 matches
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# Compress wbit 8 does not support in zlib
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# If compress level not support,
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# CONTINUE to next extension
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if compress > 15 or compress < 9:
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compress = 0
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continue
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if match.group(1):
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notakeover = True
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# Ignore regex group 5 & 6 for client_max_window_bits
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break
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else:
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if match.group(6):
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compress = int(match.group(6))
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# Group5 must match if group6 matches
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# Compress wbit 8 does not support in zlib
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# If compress level not support,
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# FAIL the parse progress
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if compress > 15 or compress < 9:
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raise WSHandshakeError("Invalid window size")
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if match.group(2):
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notakeover = True
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# Ignore regex group 5 & 6 for client_max_window_bits
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break
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# Return Fail if client side and not match
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elif not isserver:
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raise WSHandshakeError("Extension for deflate not supported" + ext.group(1))
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return compress, notakeover
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def ws_ext_gen(
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compress: int = 15, isserver: bool = False, server_notakeover: bool = False
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) -> str:
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# client_notakeover=False not used for server
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# compress wbit 8 does not support in zlib
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if compress < 9 or compress > 15:
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raise ValueError(
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"Compress wbits must between 9 and 15, " "zlib does not support wbits=8"
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)
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enabledext = ["permessage-deflate"]
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if not isserver:
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enabledext.append("client_max_window_bits")
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if compress < 15:
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enabledext.append("server_max_window_bits=" + str(compress))
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if server_notakeover:
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enabledext.append("server_no_context_takeover")
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# if client_notakeover:
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# enabledext.append('client_no_context_takeover')
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return "; ".join(enabledext)
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class WSParserState(IntEnum):
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READ_HEADER = 1
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READ_PAYLOAD_LENGTH = 2
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READ_PAYLOAD_MASK = 3
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READ_PAYLOAD = 4
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class WebSocketReader:
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def __init__(
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self, queue: DataQueue[WSMessage], max_msg_size: int, compress: bool = True
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) -> None:
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self.queue = queue
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self._max_msg_size = max_msg_size
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self._exc = None # type: Optional[BaseException]
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self._partial = bytearray()
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self._state = WSParserState.READ_HEADER
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self._opcode = None # type: Optional[int]
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self._frame_fin = False
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self._frame_opcode = None # type: Optional[int]
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self._frame_payload = bytearray()
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self._tail = b""
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self._has_mask = False
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self._frame_mask = None # type: Optional[bytes]
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self._payload_length = 0
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self._payload_length_flag = 0
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self._compressed = None # type: Optional[bool]
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self._decompressobj = None # type: Any # zlib.decompressobj actually
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self._compress = compress
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def feed_eof(self) -> None:
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self.queue.feed_eof()
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def feed_data(self, data: bytes) -> Tuple[bool, bytes]:
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if self._exc:
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return True, data
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try:
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return self._feed_data(data)
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except Exception as exc:
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self._exc = exc
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self.queue.set_exception(exc)
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return True, b""
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def _feed_data(self, data: bytes) -> Tuple[bool, bytes]:
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for fin, opcode, payload, compressed in self.parse_frame(data):
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if compressed and not self._decompressobj:
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self._decompressobj = zlib.decompressobj(wbits=-zlib.MAX_WBITS)
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if opcode == WSMsgType.CLOSE:
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if len(payload) >= 2:
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close_code = UNPACK_CLOSE_CODE(payload[:2])[0]
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if close_code < 3000 and close_code not in ALLOWED_CLOSE_CODES:
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raise WebSocketError(
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WSCloseCode.PROTOCOL_ERROR,
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f"Invalid close code: {close_code}",
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)
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try:
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close_message = payload[2:].decode("utf-8")
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except UnicodeDecodeError as exc:
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raise WebSocketError(
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WSCloseCode.INVALID_TEXT, "Invalid UTF-8 text message"
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) from exc
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msg = WSMessage(WSMsgType.CLOSE, close_code, close_message)
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elif payload:
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raise WebSocketError(
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WSCloseCode.PROTOCOL_ERROR,
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f"Invalid close frame: {fin} {opcode} {payload!r}",
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)
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else:
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msg = WSMessage(WSMsgType.CLOSE, 0, "")
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self.queue.feed_data(msg, 0)
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elif opcode == WSMsgType.PING:
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self.queue.feed_data(
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WSMessage(WSMsgType.PING, payload, ""), len(payload)
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)
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elif opcode == WSMsgType.PONG:
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self.queue.feed_data(
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WSMessage(WSMsgType.PONG, payload, ""), len(payload)
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)
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elif (
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opcode not in (WSMsgType.TEXT, WSMsgType.BINARY)
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and self._opcode is None
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):
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raise WebSocketError(
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WSCloseCode.PROTOCOL_ERROR, f"Unexpected opcode={opcode!r}"
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)
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else:
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# load text/binary
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if not fin:
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# got partial frame payload
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if opcode != WSMsgType.CONTINUATION:
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self._opcode = opcode
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self._partial.extend(payload)
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if self._max_msg_size and len(self._partial) >= self._max_msg_size:
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raise WebSocketError(
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WSCloseCode.MESSAGE_TOO_BIG,
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"Message size {} exceeds limit {}".format(
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len(self._partial), self._max_msg_size
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),
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)
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else:
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# previous frame was non finished
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# we should get continuation opcode
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if self._partial:
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if opcode != WSMsgType.CONTINUATION:
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raise WebSocketError(
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WSCloseCode.PROTOCOL_ERROR,
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"The opcode in non-fin frame is expected "
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"to be zero, got {!r}".format(opcode),
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)
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if opcode == WSMsgType.CONTINUATION:
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assert self._opcode is not None
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opcode = self._opcode
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self._opcode = None
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self._partial.extend(payload)
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if self._max_msg_size and len(self._partial) >= self._max_msg_size:
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raise WebSocketError(
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WSCloseCode.MESSAGE_TOO_BIG,
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"Message size {} exceeds limit {}".format(
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len(self._partial), self._max_msg_size
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),
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)
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# Decompress process must to be done after all packets
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# received.
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if compressed:
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self._partial.extend(_WS_DEFLATE_TRAILING)
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payload_merged = self._decompressobj.decompress(
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self._partial, self._max_msg_size
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)
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if self._decompressobj.unconsumed_tail:
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left = len(self._decompressobj.unconsumed_tail)
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raise WebSocketError(
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WSCloseCode.MESSAGE_TOO_BIG,
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"Decompressed message size {} exceeds limit {}".format(
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self._max_msg_size + left, self._max_msg_size
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),
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)
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else:
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payload_merged = bytes(self._partial)
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self._partial.clear()
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if opcode == WSMsgType.TEXT:
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try:
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text = payload_merged.decode("utf-8")
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self.queue.feed_data(
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WSMessage(WSMsgType.TEXT, text, ""), len(text)
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)
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except UnicodeDecodeError as exc:
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raise WebSocketError(
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WSCloseCode.INVALID_TEXT, "Invalid UTF-8 text message"
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) from exc
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else:
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self.queue.feed_data(
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WSMessage(WSMsgType.BINARY, payload_merged, ""),
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len(payload_merged),
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)
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return False, b""
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def parse_frame(
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self, buf: bytes
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) -> List[Tuple[bool, Optional[int], bytearray, Optional[bool]]]:
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"""Return the next frame from the socket."""
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frames = []
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if self._tail:
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buf, self._tail = self._tail + buf, b""
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start_pos = 0
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buf_length = len(buf)
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while True:
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# read header
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if self._state == WSParserState.READ_HEADER:
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if buf_length - start_pos >= 2:
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data = buf[start_pos : start_pos + 2]
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start_pos += 2
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first_byte, second_byte = data
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fin = (first_byte >> 7) & 1
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rsv1 = (first_byte >> 6) & 1
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rsv2 = (first_byte >> 5) & 1
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rsv3 = (first_byte >> 4) & 1
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opcode = first_byte & 0xF
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# frame-fin = %x0 ; more frames of this message follow
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# / %x1 ; final frame of this message
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# frame-rsv1 = %x0 ;
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# 1 bit, MUST be 0 unless negotiated otherwise
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# frame-rsv2 = %x0 ;
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# 1 bit, MUST be 0 unless negotiated otherwise
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# frame-rsv3 = %x0 ;
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# 1 bit, MUST be 0 unless negotiated otherwise
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#
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# Remove rsv1 from this test for deflate development
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if rsv2 or rsv3 or (rsv1 and not self._compress):
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raise WebSocketError(
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WSCloseCode.PROTOCOL_ERROR,
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"Received frame with non-zero reserved bits",
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)
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if opcode > 0x7 and fin == 0:
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raise WebSocketError(
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WSCloseCode.PROTOCOL_ERROR,
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"Received fragmented control frame",
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)
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has_mask = (second_byte >> 7) & 1
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length = second_byte & 0x7F
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# Control frames MUST have a payload
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# length of 125 bytes or less
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if opcode > 0x7 and length > 125:
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raise WebSocketError(
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WSCloseCode.PROTOCOL_ERROR,
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"Control frame payload cannot be " "larger than 125 bytes",
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)
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# Set compress status if last package is FIN
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# OR set compress status if this is first fragment
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# Raise error if not first fragment with rsv1 = 0x1
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if self._frame_fin or self._compressed is None:
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self._compressed = True if rsv1 else False
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elif rsv1:
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raise WebSocketError(
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WSCloseCode.PROTOCOL_ERROR,
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"Received frame with non-zero reserved bits",
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)
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self._frame_fin = bool(fin)
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self._frame_opcode = opcode
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self._has_mask = bool(has_mask)
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self._payload_length_flag = length
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self._state = WSParserState.READ_PAYLOAD_LENGTH
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else:
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break
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# read payload length
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if self._state == WSParserState.READ_PAYLOAD_LENGTH:
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length = self._payload_length_flag
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if length == 126:
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if buf_length - start_pos >= 2:
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data = buf[start_pos : start_pos + 2]
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start_pos += 2
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length = UNPACK_LEN2(data)[0]
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self._payload_length = length
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self._state = (
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WSParserState.READ_PAYLOAD_MASK
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if self._has_mask
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else WSParserState.READ_PAYLOAD
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)
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else:
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break
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elif length > 126:
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if buf_length - start_pos >= 8:
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data = buf[start_pos : start_pos + 8]
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start_pos += 8
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length = UNPACK_LEN3(data)[0]
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self._payload_length = length
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self._state = (
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WSParserState.READ_PAYLOAD_MASK
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if self._has_mask
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else WSParserState.READ_PAYLOAD
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)
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else:
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break
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else:
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self._payload_length = length
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self._state = (
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WSParserState.READ_PAYLOAD_MASK
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if self._has_mask
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else WSParserState.READ_PAYLOAD
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)
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# read payload mask
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if self._state == WSParserState.READ_PAYLOAD_MASK:
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if buf_length - start_pos >= 4:
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self._frame_mask = buf[start_pos : start_pos + 4]
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start_pos += 4
|
|
self._state = WSParserState.READ_PAYLOAD
|
|
else:
|
|
break
|
|
|
|
if self._state == WSParserState.READ_PAYLOAD:
|
|
length = self._payload_length
|
|
payload = self._frame_payload
|
|
|
|
chunk_len = buf_length - start_pos
|
|
if length >= chunk_len:
|
|
self._payload_length = length - chunk_len
|
|
payload.extend(buf[start_pos:])
|
|
start_pos = buf_length
|
|
else:
|
|
self._payload_length = 0
|
|
payload.extend(buf[start_pos : start_pos + length])
|
|
start_pos = start_pos + length
|
|
|
|
if self._payload_length == 0:
|
|
if self._has_mask:
|
|
assert self._frame_mask is not None
|
|
_websocket_mask(self._frame_mask, payload)
|
|
|
|
frames.append(
|
|
(self._frame_fin, self._frame_opcode, payload, self._compressed)
|
|
)
|
|
|
|
self._frame_payload = bytearray()
|
|
self._state = WSParserState.READ_HEADER
|
|
else:
|
|
break
|
|
|
|
self._tail = buf[start_pos:]
|
|
|
|
return frames
|
|
|
|
|
|
class WebSocketWriter:
|
|
def __init__(
|
|
self,
|
|
protocol: BaseProtocol,
|
|
transport: asyncio.Transport,
|
|
*,
|
|
use_mask: bool = False,
|
|
limit: int = DEFAULT_LIMIT,
|
|
random: Any = random.Random(),
|
|
compress: int = 0,
|
|
notakeover: bool = False,
|
|
) -> None:
|
|
self.protocol = protocol
|
|
self.transport = transport
|
|
self.use_mask = use_mask
|
|
self.randrange = random.randrange
|
|
self.compress = compress
|
|
self.notakeover = notakeover
|
|
self._closing = False
|
|
self._limit = limit
|
|
self._output_size = 0
|
|
self._compressobj = None # type: Any # actually compressobj
|
|
|
|
async def _send_frame(
|
|
self, message: bytes, opcode: int, compress: Optional[int] = None
|
|
) -> None:
|
|
"""Send a frame over the websocket with message as its payload."""
|
|
if self._closing and not (opcode & WSMsgType.CLOSE):
|
|
raise ConnectionResetError("Cannot write to closing transport")
|
|
|
|
rsv = 0
|
|
|
|
# Only compress larger packets (disabled)
|
|
# Does small packet needs to be compressed?
|
|
# if self.compress and opcode < 8 and len(message) > 124:
|
|
if (compress or self.compress) and opcode < 8:
|
|
if compress:
|
|
# Do not set self._compress if compressing is for this frame
|
|
compressobj = zlib.compressobj(level=zlib.Z_BEST_SPEED, wbits=-compress)
|
|
else: # self.compress
|
|
if not self._compressobj:
|
|
self._compressobj = zlib.compressobj(
|
|
level=zlib.Z_BEST_SPEED, wbits=-self.compress
|
|
)
|
|
compressobj = self._compressobj
|
|
|
|
message = compressobj.compress(message)
|
|
message = message + compressobj.flush(
|
|
zlib.Z_FULL_FLUSH if self.notakeover else zlib.Z_SYNC_FLUSH
|
|
)
|
|
if message.endswith(_WS_DEFLATE_TRAILING):
|
|
message = message[:-4]
|
|
rsv = rsv | 0x40
|
|
|
|
msg_length = len(message)
|
|
|
|
use_mask = self.use_mask
|
|
if use_mask:
|
|
mask_bit = 0x80
|
|
else:
|
|
mask_bit = 0
|
|
|
|
if msg_length < 126:
|
|
header = PACK_LEN1(0x80 | rsv | opcode, msg_length | mask_bit)
|
|
elif msg_length < (1 << 16):
|
|
header = PACK_LEN2(0x80 | rsv | opcode, 126 | mask_bit, msg_length)
|
|
else:
|
|
header = PACK_LEN3(0x80 | rsv | opcode, 127 | mask_bit, msg_length)
|
|
if use_mask:
|
|
mask = self.randrange(0, 0xFFFFFFFF)
|
|
mask = mask.to_bytes(4, "big")
|
|
message = bytearray(message)
|
|
_websocket_mask(mask, message)
|
|
self._write(header + mask + message)
|
|
self._output_size += len(header) + len(mask) + len(message)
|
|
else:
|
|
if len(message) > MSG_SIZE:
|
|
self._write(header)
|
|
self._write(message)
|
|
else:
|
|
self._write(header + message)
|
|
|
|
self._output_size += len(header) + len(message)
|
|
|
|
if self._output_size > self._limit:
|
|
self._output_size = 0
|
|
await self.protocol._drain_helper()
|
|
|
|
def _write(self, data: bytes) -> None:
|
|
if self.transport is None or self.transport.is_closing():
|
|
raise ConnectionResetError("Cannot write to closing transport")
|
|
self.transport.write(data)
|
|
|
|
async def pong(self, message: bytes = b"") -> None:
|
|
"""Send pong message."""
|
|
if isinstance(message, str):
|
|
message = message.encode("utf-8")
|
|
await self._send_frame(message, WSMsgType.PONG)
|
|
|
|
async def ping(self, message: bytes = b"") -> None:
|
|
"""Send ping message."""
|
|
if isinstance(message, str):
|
|
message = message.encode("utf-8")
|
|
await self._send_frame(message, WSMsgType.PING)
|
|
|
|
async def send(
|
|
self,
|
|
message: Union[str, bytes],
|
|
binary: bool = False,
|
|
compress: Optional[int] = None,
|
|
) -> None:
|
|
"""Send a frame over the websocket with message as its payload."""
|
|
if isinstance(message, str):
|
|
message = message.encode("utf-8")
|
|
if binary:
|
|
await self._send_frame(message, WSMsgType.BINARY, compress)
|
|
else:
|
|
await self._send_frame(message, WSMsgType.TEXT, compress)
|
|
|
|
async def close(self, code: int = 1000, message: bytes = b"") -> None:
|
|
"""Close the websocket, sending the specified code and message."""
|
|
if isinstance(message, str):
|
|
message = message.encode("utf-8")
|
|
try:
|
|
await self._send_frame(
|
|
PACK_CLOSE_CODE(code) + message, opcode=WSMsgType.CLOSE
|
|
)
|
|
finally:
|
|
self._closing = True
|