mirror of https://github.com/nocturn9x/giambio.git
281 lines
7.8 KiB
Python
281 lines
7.8 KiB
Python
"""
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Basic abstraction layers for all async I/O primitives
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Copyright (C) 2020 nocturn9x
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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"""
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from giambio.exceptions import ResourceClosed
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from giambio.traps import want_write, want_read, io_release
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try:
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from ssl import SSLWantReadError, SSLWantWriteError
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WantRead = (BlockingIOError, InterruptedError, SSLWantReadError)
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WantWrite = (BlockingIOError, InterruptedError, SSLWantWriteError)
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except ImportError:
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WantRead = (BlockingIOError, InterruptedError)
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WantWrite = (BlockingIOError, InterruptedError)
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class AsyncSocket:
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"""
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Abstraction layer for asynchronous sockets
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"""
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def __init__(self, sock, do_handshake_on_connect: bool = True):
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self.sock = sock
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self.do_handshake_on_connect = do_handshake_on_connect
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self._fd = sock.fileno()
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self.sock.setblocking(False)
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async def receive(self, max_size: int, flags: int = 0) -> bytes:
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"""
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Receives up to max_size bytes from a socket asynchronously
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"""
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assert max_size >= 1, "max_size must be >= 1"
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if self._fd == -1:
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raise ResourceClosed("I/O operation on closed socket")
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while True:
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try:
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return self.sock.recv(max_size, flags)
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except WantRead:
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await want_read(self.sock)
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except WantWrite:
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await want_write(self.sock)
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async def connect(self, address):
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"""
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Wrapper socket method
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"""
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if self._fd == -1:
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raise ResourceClosed("I/O operation on closed socket")
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while True:
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try:
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self.sock.connect(address)
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if self.do_handshake_on_connect:
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await self.do_handshake()
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return
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except WantWrite:
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await want_write(self.sock)
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async def accept(self):
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"""
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Accepts the socket, completing the 3-step TCP handshake asynchronously
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"""
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if self._fd == -1:
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raise ResourceClosed("I/O operation on closed socket")
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while True:
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try:
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remote, addr = self.sock.accept()
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return type(self)(remote), addr
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except WantRead:
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await want_read(self.sock)
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async def send_all(self, data: bytes, flags: int = 0):
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"""
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Sends all data inside the buffer asynchronously until it is empty
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"""
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if self._fd == -1:
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raise ResourceClosed("I/O operation on closed socket")
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while data:
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try:
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sent_no = self.sock.send(data, flags)
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except WantRead:
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await want_read(self.sock)
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except WantWrite:
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await want_write(self.sock)
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data = data[sent_no:]
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async def close(self):
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"""
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Closes the socket asynchronously
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"""
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if self._fd == -1:
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raise ResourceClosed("I/O operation on closed socket")
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await io_release(self.sock)
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self.sock.close()
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self._fd = -1
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self.sock = None
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async def shutdown(self, how):
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"""
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Wrapper socket method
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"""
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if self.sock:
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self.sock.shutdown(how)
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async def bind(self, addr: tuple):
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"""
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Binds the socket to an address
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:param addr: The address, port tuple to bind to
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:type addr: tuple
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"""
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if self._fd == -1:
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raise ResourceClosed("I/O operation on closed socket")
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self.sock.bind(addr)
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async def listen(self, backlog: int):
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"""
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Starts listening with the given backlog
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:param backlog: The socket's backlog
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:type backlog: int
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"""
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if self._fd == -1:
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raise ResourceClosed("I/O operation on closed socket")
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self.sock.listen(backlog)
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async def __aenter__(self):
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self.sock.__enter__()
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return self
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async def __aexit__(self, *args):
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if self.sock:
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self.sock.__exit__(*args)
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# Yes, I stole these from Curio because I could not be
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# arsed to write a bunch of uninteresting simple socket
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# methods from scratch, deal with it.
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def fileno(self):
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"""
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Wrapper socket method
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"""
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return self._fd
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def settimeout(self, seconds):
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"""
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Wrapper socket method
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"""
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raise RuntimeError("Use with_timeout() to set a timeout")
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def gettimeout(self):
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"""
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Wrapper socket method
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"""
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return None
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def dup(self):
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"""
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Wrapper socket method
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"""
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return type(self)(self._socket.dup())
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async def do_handshake(self):
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"""
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Wrapper socket method
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"""
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while True:
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try:
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return self.sock.do_handshake()
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except WantRead:
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await want_read(self.sock)
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except WantWrite:
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await want_write(self.sock)
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async def recvfrom(self, buffersize, flags=0):
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"""
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Wrapper socket method
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"""
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while True:
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try:
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return self.sock.recvfrom(buffersize, flags)
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except WantRead:
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await want_read(self.sock)
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except WantWrite:
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await want_write(self.sock)
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async def recvfrom_into(self, buffer, bytes=0, flags=0):
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"""
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Wrapper socket method
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"""
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while True:
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try:
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return self.sock.recvfrom_into(buffer, bytes, flags)
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except WantRead:
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await want_read(self.sock)
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except WantWrite:
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await want_write(self.sock)
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async def sendto(self, bytes, flags_or_address, address=None):
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"""
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Wrapper socket method
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"""
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if address:
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flags = flags_or_address
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else:
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address = flags_or_address
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flags = 0
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while True:
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try:
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return self.sock.sendto(bytes, flags, address)
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except WantWrite:
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await want_write(self.sock)
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except WantRead:
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await want_read(self.sock)
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async def recvmsg(self, bufsize, ancbufsize=0, flags=0):
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"""
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Wrapper socket method
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"""
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while True:
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try:
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return self.sock.recvmsg(bufsize, ancbufsize, flags)
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except WantRead:
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await want_read(self.sock)
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async def recvmsg_into(self, buffers, ancbufsize=0, flags=0):
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"""
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Wrapper socket method
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"""
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while True:
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try:
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return self.sock.recvmsg_into(buffers, ancbufsize, flags)
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except WantRead:
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await want_read(self.sock)
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async def sendmsg(self, buffers, ancdata=(), flags=0, address=None):
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"""
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Wrapper socket method
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"""
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while True:
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try:
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return self.sock.sendmsg(buffers, ancdata, flags, address)
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except WantRead:
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await want_write(self.sock)
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def __repr__(self):
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return f"AsyncSocket({self.sock})"
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