See https://bugs.python.org/issue38242 for more details
This commit is contained in:
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1c19d656a7
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@ -132,47 +132,23 @@ High-level APIs to work with network IO.
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:widths: 50 50
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:class: full-width-table
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* - ``await`` :func:`connect`
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- Establish a TCP connection to send and receive data.
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* - ``await`` :func:`open_connection`
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- Establish a TCP connection. (Deprecated in favor of :func:`connect`)
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* - ``await`` :func:`connect_unix`
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- Establish a Unix socket connection to send and receive data.
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- Establish a TCP connection.
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* - ``await`` :func:`open_unix_connection`
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- Establish a Unix socket connection. (Deprecated in favor of :func:`connect_unix`)
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* - :class:`StreamServer`
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- Start a TCP server.
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- Establish a Unix socket connection.
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* - ``await`` :func:`start_server`
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- Start a TCP server. (Deprecated in favor of :class:`StreamServer`)
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* - :class:`UnixStreamServer`
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- Start a Unix socket server.
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- Start a TCP server.
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* - ``await`` :func:`start_unix_server`
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- Start a Unix socket server. (Deprecated in favor of :class:`UnixStreamServer`)
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* - :func:`connect_read_pipe`
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- Establish a connection to :term:`file-like object <file object>` *pipe*
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to receive data.
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* - :func:`connect_write_pipe`
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- Establish a connection to :term:`file-like object <file object>` *pipe*
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to send data.
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* - :class:`Stream`
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- Stream is a single object combining APIs of :class:`StreamReader` and
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:class:`StreamWriter`.
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- Start a Unix socket server.
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* - :class:`StreamReader`
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- High-level async/await object to receive network data. (Deprecated in favor of :class:`Stream`)
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- High-level async/await object to receive network data.
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* - :class:`StreamWriter`
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- High-level async/await object to send network data. (Deprecated in favor of :class:`Stream`)
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- High-level async/await object to send network data.
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.. rubric:: Examples
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@ -1625,7 +1625,8 @@ Wait until a file descriptor received some data using the
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:meth:`loop.create_connection` method.
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* Another similar :ref:`example <asyncio_example_create_connection-streams>`
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using the high-level :func:`asyncio.connect` function and streams.
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using the high-level :func:`asyncio.open_connection` function
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and streams.
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.. _asyncio_example_unix_signals:
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@ -809,7 +809,7 @@ data, and waits until the connection is closed::
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.. seealso::
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The :ref:`TCP echo client using streams <asyncio-tcp-echo-client-streams>`
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example uses the high-level :func:`asyncio.connect` function.
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example uses the high-level :func:`asyncio.open_connection` function.
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.. _asyncio-udp-echo-server-protocol:
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@ -978,7 +978,7 @@ Wait until a socket receives data using the
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The :ref:`register an open socket to wait for data using streams
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<asyncio_example_create_connection-streams>` example uses high-level streams
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created by the :func:`asyncio.connect` function in a coroutine.
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created by the :func:`open_connection` function in a coroutine.
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.. _asyncio_example_subprocess_proto:
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@ -18,13 +18,20 @@ streams::
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import asyncio
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async def tcp_echo_client(message):
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async with asyncio.connect('127.0.0.1', 8888) as stream:
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print(f'Send: {message!r}')
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await stream.write(message.encode())
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reader, writer = await asyncio.open_connection(
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'127.0.0.1', 8888)
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data = await stream.read(100)
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print(f'Send: {message!r}')
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writer.write(message.encode())
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await writer.drain()
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data = await reader.read(100)
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print(f'Received: {data.decode()!r}')
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print('Close the connection')
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writer.close()
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await writer.wait_closed()
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asyncio.run(tcp_echo_client('Hello World!'))
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@ -37,31 +44,6 @@ The following top-level asyncio functions can be used to create
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and work with streams:
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.. coroutinefunction:: connect(host=None, port=None, \*, \
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limit=2**16, ssl=None, family=0, \
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proto=0, flags=0, sock=None, local_addr=None, \
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server_hostname=None, ssl_handshake_timeout=None, \
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happy_eyeballs_delay=None, interleave=None)
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Connect to TCP socket on *host* : *port* address and return a :class:`Stream`
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object of mode :attr:`StreamMode.READWRITE`.
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*limit* determines the buffer size limit used by the returned :class:`Stream`
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instance. By default the *limit* is set to 64 KiB.
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The rest of the arguments are passed directly to :meth:`loop.create_connection`.
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The function can be used with ``await`` to get a connected stream::
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stream = await asyncio.connect('127.0.0.1', 8888)
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The function can also be used as an async context manager::
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async with asyncio.connect('127.0.0.1', 8888) as stream:
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...
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.. versionadded:: 3.8
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.. coroutinefunction:: open_connection(host=None, port=None, \*, \
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loop=None, limit=None, ssl=None, family=0, \
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proto=0, flags=0, sock=None, local_addr=None, \
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@ -87,12 +69,8 @@ and work with streams:
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The *ssl_handshake_timeout* parameter.
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.. deprecated-removed:: 3.8 3.10
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`open_connection()` is deprecated in favor of :func:`connect`.
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.. coroutinefunction:: start_server(client_connected_cb, host=None, \
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port=None, \*, loop=None, limit=2**16, \
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port=None, \*, loop=None, limit=None, \
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family=socket.AF_UNSPEC, \
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flags=socket.AI_PASSIVE, sock=None, \
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backlog=100, ssl=None, reuse_address=None, \
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@ -124,60 +102,9 @@ and work with streams:
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The *ssl_handshake_timeout* and *start_serving* parameters.
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.. deprecated-removed:: 3.8 3.10
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`start_server()` is deprecated if favor of :class:`StreamServer`
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.. coroutinefunction:: connect_read_pipe(pipe, *, limit=2**16)
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Takes a :term:`file-like object <file object>` *pipe* to return a
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:class:`Stream` object of the mode :attr:`StreamMode.READ` that has
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similar API of :class:`StreamReader`. It can also be used as an async context manager.
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*limit* determines the buffer size limit used by the returned :class:`Stream`
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instance. By default the limit is set to 64 KiB.
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.. versionadded:: 3.8
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.. coroutinefunction:: connect_write_pipe(pipe, *, limit=2**16)
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Takes a :term:`file-like object <file object>` *pipe* to return a
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:class:`Stream` object of the mode :attr:`StreamMode.WRITE` that has
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similar API of :class:`StreamWriter`. It can also be used as an async context manager.
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*limit* determines the buffer size limit used by the returned :class:`Stream`
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instance. By default the limit is set to 64 KiB.
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.. versionadded:: 3.8
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.. rubric:: Unix Sockets
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.. function:: connect_unix(path=None, *, limit=2**16, ssl=None, \
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sock=None, server_hostname=None, \
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ssl_handshake_timeout=None)
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Establish a Unix socket connection to socket with *path* address and
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return an awaitable :class:`Stream` object of the mode :attr:`StreamMode.READWRITE`
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that can be used as a reader and a writer.
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*limit* determines the buffer size limit used by the returned :class:`Stream`
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instance. By default the *limit* is set to 64 KiB.
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The rest of the arguments are passed directly to :meth:`loop.create_unix_connection`.
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The function can be used with ``await`` to get a connected stream::
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stream = await asyncio.connect_unix('/tmp/example.sock')
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The function can also be used as an async context manager::
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async with asyncio.connect_unix('/tmp/example.sock') as stream:
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...
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.. availability:: Unix.
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.. versionadded:: 3.8
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.. coroutinefunction:: open_unix_connection(path=None, \*, loop=None, \
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limit=None, ssl=None, sock=None, \
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server_hostname=None, ssl_handshake_timeout=None)
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The *path* parameter can now be a :term:`path-like object`
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.. deprecated-removed:: 3.8 3.10
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``open_unix_connection()`` is deprecated if favor of :func:`connect_unix`.
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.. coroutinefunction:: start_unix_server(client_connected_cb, path=None, \
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\*, loop=None, limit=None, sock=None, \
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@ -225,349 +148,6 @@ and work with streams:
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The *path* parameter can now be a :term:`path-like object`.
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.. deprecated-removed:: 3.8 3.10
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``start_unix_server()`` is deprecated in favor of :class:`UnixStreamServer`.
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---------
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StreamServer
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============
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.. class:: StreamServer(client_connected_cb, /, host=None, port=None, *, \
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limit=2**16, family=socket.AF_UNSPEC, \
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flags=socket.AI_PASSIVE, sock=None, backlog=100, \
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ssl=None, reuse_address=None, reuse_port=None, \
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ssl_handshake_timeout=None, shutdown_timeout=60)
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The *client_connected_cb* callback is called whenever a new client
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connection is established. It receives a :class:`Stream` object of the
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mode :attr:`StreamMode.READWRITE`.
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*client_connected_cb* can be a plain callable or a
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:ref:`coroutine function <coroutine>`; if it is a coroutine function,
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it will be automatically scheduled as a :class:`Task`.
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*limit* determines the buffer size limit used by the
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returned :class:`Stream` instance. By default the *limit*
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is set to 64 KiB.
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The rest of the arguments are passed directly to
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:meth:`loop.create_server`.
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.. coroutinemethod:: start_serving()
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Binds to the given host and port to start the server.
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.. coroutinemethod:: serve_forever()
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Start accepting connections until the coroutine is cancelled.
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Cancellation of ``serve_forever`` task causes the server
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to be closed.
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This method can be called if the server is already accepting
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connections. Only one ``serve_forever`` task can exist per
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one *Server* object.
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.. method:: is_serving()
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Returns ``True`` if the server is bound and currently serving.
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.. method:: bind()
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Bind the server to the given *host* and *port*. This method is
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automatically called during ``__aenter__`` when :class:`StreamServer` is
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used as an async context manager.
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.. method:: is_bound()
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Return ``True`` if the server is bound.
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.. coroutinemethod:: abort()
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Closes the connection and cancels all pending tasks.
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.. coroutinemethod:: close()
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Closes the connection. This method is automatically called during
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``__aexit__`` when :class:`StreamServer` is used as an async context
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manager.
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.. attribute:: sockets
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Returns a tuple of socket objects the server is bound to.
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.. versionadded:: 3.8
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UnixStreamServer
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================
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.. class:: UnixStreamServer(client_connected_cb, /, path=None, *, \
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limit=2**16, sock=None, backlog=100, \
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ssl=None, ssl_handshake_timeout=None, shutdown_timeout=60)
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The *client_connected_cb* callback is called whenever a new client
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connection is established. It receives a :class:`Stream` object of the
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mode :attr:`StreamMode.READWRITE`.
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*client_connected_cb* can be a plain callable or a
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:ref:`coroutine function <coroutine>`; if it is a coroutine function,
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it will be automatically scheduled as a :class:`Task`.
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*limit* determines the buffer size limit used by the
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returned :class:`Stream` instance. By default the *limit*
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is set to 64 KiB.
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The rest of the arguments are passed directly to
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:meth:`loop.create_unix_server`.
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.. coroutinemethod:: start_serving()
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Binds to the given host and port to start the server.
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.. method:: is_serving()
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Returns ``True`` if the server is bound and currently serving.
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.. method:: bind()
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Bind the server to the given *host* and *port*. This method is
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automatically called during ``__aenter__`` when :class:`UnixStreamServer` is
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used as an async context manager.
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.. method:: is_bound()
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Return ``True`` if the server is bound.
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.. coroutinemethod:: abort()
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Closes the connection and cancels all pending tasks.
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.. coroutinemethod:: close()
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Closes the connection. This method is automatically called during
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``__aexit__`` when :class:`UnixStreamServer` is used as an async context
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manager.
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.. attribute:: sockets
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Returns a tuple of socket objects the server is bound to.
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.. availability:: Unix.
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.. versionadded:: 3.8
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Stream
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======
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.. class:: Stream
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Represents a Stream object that provides APIs to read and write data
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to the IO stream . It includes the API provided by :class:`StreamReader`
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and :class:`StreamWriter`. It can also be used as :term:`asynchronous iterator`
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where :meth:`readline` is used. It raises :exc:`StopAsyncIteration` when
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:meth:`readline` returns empty data.
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Do not instantiate *Stream* objects directly; use API like :func:`connect`
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and :class:`StreamServer` instead.
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.. versionadded:: 3.8
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.. attribute:: mode
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Returns the mode of the stream which is a :class:`StreamMode` value. It could
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be one of the below:
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* :attr:`StreamMode.READ` - Connection can receive data.
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* :attr:`StreamMode.WRITE` - Connection can send data.
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* :attr:`StreamMode.READWRITE` - Connection can send and receive data.
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.. coroutinemethod:: abort()
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Aborts the connection immediately, without waiting for the send buffer to drain.
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.. method:: at_eof()
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Return ``True`` if the buffer is empty.
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.. method:: can_write_eof()
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Return *True* if the underlying transport supports
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the :meth:`write_eof` method, *False* otherwise.
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.. method:: close()
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The method closes the stream and the underlying socket.
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It is possible to directly await on the `close()` method::
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await stream.close()
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The ``await`` pauses the current coroutine until the stream and the underlying
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socket are closed (and SSL shutdown is performed for a secure connection).
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.. coroutinemethod:: drain()
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Wait until it is appropriate to resume writing to the stream.
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Example::
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stream.write(data)
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await stream.drain()
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This is a flow control method that interacts with the underlying
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IO write buffer. When the size of the buffer reaches
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the high watermark, *drain()* blocks until the size of the
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buffer is drained down to the low watermark and writing can
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be resumed. When there is nothing to wait for, the :meth:`drain`
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returns immediately.
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.. deprecated:: 3.8
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It is recommended to directly await on the `write()` method instead::
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await stream.write(data)
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.. method:: get_extra_info(name, default=None)
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Access optional transport information; see
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:meth:`BaseTransport.get_extra_info` for details.
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.. method:: is_closing()
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Return ``True`` if the stream is closed or in the process of
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being closed.
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.. coroutinemethod:: read(n=-1)
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Read up to *n* bytes. If *n* is not provided, or set to ``-1``,
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read until EOF and return all read bytes.
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If EOF was received and the internal buffer is empty,
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return an empty ``bytes`` object.
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.. coroutinemethod:: readexactly(n)
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Read exactly *n* bytes.
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Raise an :exc:`IncompleteReadError` if EOF is reached before *n*
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can be read. Use the :attr:`IncompleteReadError.partial`
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attribute to get the partially read data.
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.. coroutinemethod:: readline()
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Read one line, where "line" is a sequence of bytes
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ending with ``\n``.
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If EOF is received and ``\n`` was not found, the method
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returns partially read data.
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If EOF is received and the internal buffer is empty,
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return an empty ``bytes`` object.
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.. coroutinemethod:: readuntil(separator=b'\\n')
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Read data from the stream until *separator* is found.
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On success, the data and separator will be removed from the
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internal buffer (consumed). Returned data will include the
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separator at the end.
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If the amount of data read exceeds the configured stream limit, a
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:exc:`LimitOverrunError` exception is raised, and the data
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is left in the internal buffer and can be read again.
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If EOF is reached before the complete separator is found,
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an :exc:`IncompleteReadError` exception is raised, and the internal
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buffer is reset. The :attr:`IncompleteReadError.partial` attribute
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may contain a portion of the separator.
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.. coroutinemethod:: sendfile(file, offset=0, count=None, *, fallback=True)
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Sends a *file* over the stream using an optimized syscall if available.
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|
||||
For other parameters meaning please see :meth:`AbstractEventloop.sendfile`.
|
||||
|
||||
.. coroutinemethod:: start_tls(sslcontext, *, server_hostname=None, \
|
||||
ssl_handshake_timeout=None)
|
||||
|
||||
Upgrades the existing transport-based connection to TLS.
|
||||
|
||||
For other parameters meaning please see :meth:`AbstractEventloop.start_tls`.
|
||||
|
||||
.. coroutinemethod:: wait_closed()
|
||||
|
||||
Wait until the stream is closed.
|
||||
|
||||
Should be called after :meth:`close` to wait until the underlying
|
||||
connection is closed.
|
||||
|
||||
.. coroutinemethod:: write(data)
|
||||
|
||||
Write *data* to the underlying socket; wait until the data is sent, e.g.::
|
||||
|
||||
await stream.write(data)
|
||||
|
||||
.. method:: write(data)
|
||||
|
||||
The method attempts to write the *data* to the underlying socket immediately.
|
||||
If that fails, the data is queued in an internal write buffer until it can be
|
||||
sent. :meth:`drain` can be used to flush the underlying buffer once writing is
|
||||
available::
|
||||
|
||||
stream.write(data)
|
||||
await stream.drain()
|
||||
|
||||
.. deprecated:: 3.8
|
||||
|
||||
It is recommended to directly await on the `write()` method instead::
|
||||
|
||||
await stream.write(data)
|
||||
|
||||
.. method:: writelines(data)
|
||||
|
||||
The method writes a list (or any iterable) of bytes to the underlying socket
|
||||
immediately.
|
||||
If that fails, the data is queued in an internal write buffer until it can be
|
||||
sent.
|
||||
|
||||
It is possible to directly await on the `writelines()` method::
|
||||
|
||||
await stream.writelines(lines)
|
||||
|
||||
The ``await`` pauses the current coroutine until the data is written to the
|
||||
socket.
|
||||
|
||||
.. method:: write_eof()
|
||||
|
||||
Close the write end of the stream after the buffered write
|
||||
data is flushed.
|
||||
|
||||
|
||||
StreamMode
|
||||
==========
|
||||
|
||||
.. class:: StreamMode
|
||||
|
||||
A subclass of :class:`enum.Flag` that defines a set of values that can be
|
||||
used to determine the ``mode`` of :class:`Stream` objects.
|
||||
|
||||
.. data:: READ
|
||||
|
||||
The stream object is readable and provides the API of :class:`StreamReader`.
|
||||
|
||||
.. data:: WRITE
|
||||
|
||||
The stream object is writeable and provides the API of :class:`StreamWriter`.
|
||||
|
||||
.. data:: READWRITE
|
||||
|
||||
The stream object is readable and writeable and provides the API of both
|
||||
:class:`StreamReader` and :class:`StreamWriter`.
|
||||
|
||||
.. versionadded:: 3.8
|
||||
|
||||
|
||||
StreamReader
|
||||
============
|
||||
|
@ -629,7 +209,8 @@ StreamReader
|
|||
|
||||
.. method:: at_eof()
|
||||
|
||||
Return ``True`` if the buffer is empty.
|
||||
Return ``True`` if the buffer is empty and :meth:`feed_eof`
|
||||
was called.
|
||||
|
||||
|
||||
StreamWriter
|
||||
|
@ -650,22 +231,11 @@ StreamWriter
|
|||
If that fails, the data is queued in an internal write buffer until it can be
|
||||
sent.
|
||||
|
||||
Starting with Python 3.8, it is possible to directly await on the `write()`
|
||||
method::
|
||||
|
||||
await stream.write(data)
|
||||
|
||||
The ``await`` pauses the current coroutine until the data is written to the
|
||||
socket.
|
||||
|
||||
Below is an equivalent code that works with Python <= 3.7::
|
||||
The method should be used along with the ``drain()`` method::
|
||||
|
||||
stream.write(data)
|
||||
await stream.drain()
|
||||
|
||||
.. versionchanged:: 3.8
|
||||
Support ``await stream.write(...)`` syntax.
|
||||
|
||||
.. method:: writelines(data)
|
||||
|
||||
The method writes a list (or any iterable) of bytes to the underlying socket
|
||||
|
@ -673,42 +243,20 @@ StreamWriter
|
|||
If that fails, the data is queued in an internal write buffer until it can be
|
||||
sent.
|
||||
|
||||
Starting with Python 3.8, it is possible to directly await on the `writelines()`
|
||||
method::
|
||||
|
||||
await stream.writelines(lines)
|
||||
|
||||
The ``await`` pauses the current coroutine until the data is written to the
|
||||
socket.
|
||||
|
||||
Below is an equivalent code that works with Python <= 3.7::
|
||||
The method should be used along with the ``drain()`` method::
|
||||
|
||||
stream.writelines(lines)
|
||||
await stream.drain()
|
||||
|
||||
.. versionchanged:: 3.8
|
||||
Support ``await stream.writelines()`` syntax.
|
||||
|
||||
.. method:: close()
|
||||
|
||||
The method closes the stream and the underlying socket.
|
||||
|
||||
Starting with Python 3.8, it is possible to directly await on the `close()`
|
||||
method::
|
||||
|
||||
await stream.close()
|
||||
|
||||
The ``await`` pauses the current coroutine until the stream and the underlying
|
||||
socket are closed (and SSL shutdown is performed for a secure connection).
|
||||
|
||||
Below is an equivalent code that works with Python <= 3.7::
|
||||
The method should be used along with the ``wait_closed()`` method::
|
||||
|
||||
stream.close()
|
||||
await stream.wait_closed()
|
||||
|
||||
.. versionchanged:: 3.8
|
||||
Support ``await stream.close()`` syntax.
|
||||
|
||||
.. method:: can_write_eof()
|
||||
|
||||
Return *True* if the underlying transport supports
|
||||
|
@ -768,18 +316,23 @@ Examples
|
|||
TCP echo client using streams
|
||||
-----------------------------
|
||||
|
||||
TCP echo client using the :func:`asyncio.connect` function::
|
||||
TCP echo client using the :func:`asyncio.open_connection` function::
|
||||
|
||||
import asyncio
|
||||
|
||||
async def tcp_echo_client(message):
|
||||
async with asyncio.connect('127.0.0.1', 8888) as stream:
|
||||
print(f'Send: {message!r}')
|
||||
await stream.write(message.encode())
|
||||
reader, writer = await asyncio.open_connection(
|
||||
'127.0.0.1', 8888)
|
||||
|
||||
data = await stream.read(100)
|
||||
print(f'Send: {message!r}')
|
||||
writer.write(message.encode())
|
||||
|
||||
data = await reader.read(100)
|
||||
print(f'Received: {data.decode()!r}')
|
||||
|
||||
print('Close the connection')
|
||||
writer.close()
|
||||
|
||||
asyncio.run(tcp_echo_client('Hello World!'))
|
||||
|
||||
|
||||
|
@ -794,28 +347,32 @@ TCP echo client using the :func:`asyncio.connect` function::
|
|||
TCP echo server using streams
|
||||
-----------------------------
|
||||
|
||||
TCP echo server using the :class:`asyncio.StreamServer` class::
|
||||
TCP echo server using the :func:`asyncio.start_server` function::
|
||||
|
||||
import asyncio
|
||||
|
||||
async def handle_echo(stream):
|
||||
data = await stream.read(100)
|
||||
async def handle_echo(reader, writer):
|
||||
data = await reader.read(100)
|
||||
message = data.decode()
|
||||
addr = stream.get_extra_info('peername')
|
||||
addr = writer.get_extra_info('peername')
|
||||
|
||||
print(f"Received {message!r} from {addr!r}")
|
||||
|
||||
print(f"Send: {message!r}")
|
||||
await stream.write(data)
|
||||
writer.write(data)
|
||||
await writer.drain()
|
||||
|
||||
print("Close the connection")
|
||||
await stream.close()
|
||||
writer.close()
|
||||
|
||||
async def main():
|
||||
async with asyncio.StreamServer(
|
||||
handle_echo, '127.0.0.1', 8888) as server:
|
||||
server = await asyncio.start_server(
|
||||
handle_echo, '127.0.0.1', 8888)
|
||||
|
||||
addr = server.sockets[0].getsockname()
|
||||
print(f'Serving on {addr}')
|
||||
|
||||
async with server:
|
||||
await server.serve_forever()
|
||||
|
||||
asyncio.run(main())
|
||||
|
@ -839,9 +396,11 @@ Simple example querying HTTP headers of the URL passed on the command line::
|
|||
async def print_http_headers(url):
|
||||
url = urllib.parse.urlsplit(url)
|
||||
if url.scheme == 'https':
|
||||
stream = await asyncio.connect(url.hostname, 443, ssl=True)
|
||||
reader, writer = await asyncio.open_connection(
|
||||
url.hostname, 443, ssl=True)
|
||||
else:
|
||||
stream = await asyncio.connect(url.hostname, 80)
|
||||
reader, writer = await asyncio.open_connection(
|
||||
url.hostname, 80)
|
||||
|
||||
query = (
|
||||
f"HEAD {url.path or '/'} HTTP/1.0\r\n"
|
||||
|
@ -849,14 +408,18 @@ Simple example querying HTTP headers of the URL passed on the command line::
|
|||
f"\r\n"
|
||||
)
|
||||
|
||||
stream.write(query.encode('latin-1'))
|
||||
while (line := await stream.readline()):
|
||||
writer.write(query.encode('latin-1'))
|
||||
while True:
|
||||
line = await reader.readline()
|
||||
if not line:
|
||||
break
|
||||
|
||||
line = line.decode('latin1').rstrip()
|
||||
if line:
|
||||
print(f'HTTP header> {line}')
|
||||
|
||||
# Ignore the body, close the socket
|
||||
await stream.close()
|
||||
writer.close()
|
||||
|
||||
url = sys.argv[1]
|
||||
asyncio.run(print_http_headers(url))
|
||||
|
@ -877,7 +440,7 @@ Register an open socket to wait for data using streams
|
|||
------------------------------------------------------
|
||||
|
||||
Coroutine waiting until a socket receives data using the
|
||||
:func:`asyncio.connect` function::
|
||||
:func:`open_connection` function::
|
||||
|
||||
import asyncio
|
||||
import socket
|
||||
|
@ -891,15 +454,17 @@ Coroutine waiting until a socket receives data using the
|
|||
rsock, wsock = socket.socketpair()
|
||||
|
||||
# Register the open socket to wait for data.
|
||||
async with asyncio.connect(sock=rsock) as stream:
|
||||
reader, writer = await asyncio.open_connection(sock=rsock)
|
||||
|
||||
# Simulate the reception of data from the network
|
||||
loop.call_soon(wsock.send, 'abc'.encode())
|
||||
|
||||
# Wait for data
|
||||
data = await stream.read(100)
|
||||
data = await reader.read(100)
|
||||
|
||||
# Got data, we are done: close the socket
|
||||
print("Received:", data.decode())
|
||||
writer.close()
|
||||
|
||||
# Close the second socket
|
||||
wsock.close()
|
||||
|
|
|
@ -3,7 +3,6 @@
|
|||
# flake8: noqa
|
||||
|
||||
import sys
|
||||
import warnings
|
||||
|
||||
# This relies on each of the submodules having an __all__ variable.
|
||||
from .base_events import *
|
||||
|
@ -44,40 +43,3 @@ if sys.platform == 'win32': # pragma: no cover
|
|||
else:
|
||||
from .unix_events import * # pragma: no cover
|
||||
__all__ += unix_events.__all__
|
||||
|
||||
|
||||
__all__ += ('StreamReader', 'StreamWriter', 'StreamReaderProtocol') # deprecated
|
||||
|
||||
|
||||
def __getattr__(name):
|
||||
global StreamReader, StreamWriter, StreamReaderProtocol
|
||||
if name == 'StreamReader':
|
||||
warnings.warn("StreamReader is deprecated since Python 3.8 "
|
||||
"in favor of Stream, and scheduled for removal "
|
||||
"in Python 3.10",
|
||||
DeprecationWarning,
|
||||
stacklevel=2)
|
||||
from .streams import StreamReader as sr
|
||||
StreamReader = sr
|
||||
return StreamReader
|
||||
if name == 'StreamWriter':
|
||||
warnings.warn("StreamWriter is deprecated since Python 3.8 "
|
||||
"in favor of Stream, and scheduled for removal "
|
||||
"in Python 3.10",
|
||||
DeprecationWarning,
|
||||
stacklevel=2)
|
||||
from .streams import StreamWriter as sw
|
||||
StreamWriter = sw
|
||||
return StreamWriter
|
||||
if name == 'StreamReaderProtocol':
|
||||
warnings.warn("Using asyncio internal class StreamReaderProtocol "
|
||||
"is deprecated since Python 3.8 "
|
||||
" and scheduled for removal "
|
||||
"in Python 3.10",
|
||||
DeprecationWarning,
|
||||
stacklevel=2)
|
||||
from .streams import StreamReaderProtocol as srp
|
||||
StreamReaderProtocol = srp
|
||||
return StreamReaderProtocol
|
||||
|
||||
raise AttributeError(f"module {__name__} has no attribute {name}")
|
||||
|
|
File diff suppressed because it is too large
Load Diff
|
@ -19,16 +19,14 @@ class SubprocessStreamProtocol(streams.FlowControlMixin,
|
|||
protocols.SubprocessProtocol):
|
||||
"""Like StreamReaderProtocol, but for a subprocess."""
|
||||
|
||||
def __init__(self, limit, loop, *, _asyncio_internal=False):
|
||||
super().__init__(loop=loop, _asyncio_internal=_asyncio_internal)
|
||||
def __init__(self, limit, loop):
|
||||
super().__init__(loop=loop)
|
||||
self._limit = limit
|
||||
self.stdin = self.stdout = self.stderr = None
|
||||
self._transport = None
|
||||
self._process_exited = False
|
||||
self._pipe_fds = []
|
||||
self._stdin_closed = self._loop.create_future()
|
||||
self._stdout_closed = self._loop.create_future()
|
||||
self._stderr_closed = self._loop.create_future()
|
||||
|
||||
def __repr__(self):
|
||||
info = [self.__class__.__name__]
|
||||
|
@ -42,35 +40,27 @@ class SubprocessStreamProtocol(streams.FlowControlMixin,
|
|||
|
||||
def connection_made(self, transport):
|
||||
self._transport = transport
|
||||
|
||||
stdout_transport = transport.get_pipe_transport(1)
|
||||
if stdout_transport is not None:
|
||||
self.stdout = streams.Stream(mode=streams.StreamMode.READ,
|
||||
transport=stdout_transport,
|
||||
protocol=self,
|
||||
limit=self._limit,
|
||||
loop=self._loop,
|
||||
_asyncio_internal=True)
|
||||
self.stdout._set_transport(stdout_transport)
|
||||
self.stdout = streams.StreamReader(limit=self._limit,
|
||||
loop=self._loop)
|
||||
self.stdout.set_transport(stdout_transport)
|
||||
self._pipe_fds.append(1)
|
||||
|
||||
stderr_transport = transport.get_pipe_transport(2)
|
||||
if stderr_transport is not None:
|
||||
self.stderr = streams.Stream(mode=streams.StreamMode.READ,
|
||||
transport=stderr_transport,
|
||||
protocol=self,
|
||||
limit=self._limit,
|
||||
loop=self._loop,
|
||||
_asyncio_internal=True)
|
||||
self.stderr._set_transport(stderr_transport)
|
||||
self.stderr = streams.StreamReader(limit=self._limit,
|
||||
loop=self._loop)
|
||||
self.stderr.set_transport(stderr_transport)
|
||||
self._pipe_fds.append(2)
|
||||
|
||||
stdin_transport = transport.get_pipe_transport(0)
|
||||
if stdin_transport is not None:
|
||||
self.stdin = streams.Stream(mode=streams.StreamMode.WRITE,
|
||||
transport=stdin_transport,
|
||||
self.stdin = streams.StreamWriter(stdin_transport,
|
||||
protocol=self,
|
||||
loop=self._loop,
|
||||
_asyncio_internal=True)
|
||||
reader=None,
|
||||
loop=self._loop)
|
||||
|
||||
def pipe_data_received(self, fd, data):
|
||||
if fd == 1:
|
||||
|
@ -80,7 +70,7 @@ class SubprocessStreamProtocol(streams.FlowControlMixin,
|
|||
else:
|
||||
reader = None
|
||||
if reader is not None:
|
||||
reader._feed_data(data)
|
||||
reader.feed_data(data)
|
||||
|
||||
def pipe_connection_lost(self, fd, exc):
|
||||
if fd == 0:
|
||||
|
@ -101,9 +91,9 @@ class SubprocessStreamProtocol(streams.FlowControlMixin,
|
|||
reader = None
|
||||
if reader is not None:
|
||||
if exc is None:
|
||||
reader._feed_eof()
|
||||
reader.feed_eof()
|
||||
else:
|
||||
reader._set_exception(exc)
|
||||
reader.set_exception(exc)
|
||||
|
||||
if fd in self._pipe_fds:
|
||||
self._pipe_fds.remove(fd)
|
||||
|
@ -121,20 +111,10 @@ class SubprocessStreamProtocol(streams.FlowControlMixin,
|
|||
def _get_close_waiter(self, stream):
|
||||
if stream is self.stdin:
|
||||
return self._stdin_closed
|
||||
elif stream is self.stdout:
|
||||
return self._stdout_closed
|
||||
elif stream is self.stderr:
|
||||
return self._stderr_closed
|
||||
|
||||
|
||||
class Process:
|
||||
def __init__(self, transport, protocol, loop, *, _asyncio_internal=False):
|
||||
if not _asyncio_internal:
|
||||
warnings.warn(f"{self.__class__} should be instaniated "
|
||||
"by asyncio internals only, "
|
||||
"please avoid its creation from user code",
|
||||
DeprecationWarning)
|
||||
|
||||
def __init__(self, transport, protocol, loop):
|
||||
self._transport = transport
|
||||
self._protocol = protocol
|
||||
self._loop = loop
|
||||
|
@ -232,13 +212,12 @@ async def create_subprocess_shell(cmd, stdin=None, stdout=None, stderr=None,
|
|||
)
|
||||
|
||||
protocol_factory = lambda: SubprocessStreamProtocol(limit=limit,
|
||||
loop=loop,
|
||||
_asyncio_internal=True)
|
||||
loop=loop)
|
||||
transport, protocol = await loop.subprocess_shell(
|
||||
protocol_factory,
|
||||
cmd, stdin=stdin, stdout=stdout,
|
||||
stderr=stderr, **kwds)
|
||||
return Process(transport, protocol, loop, _asyncio_internal=True)
|
||||
return Process(transport, protocol, loop)
|
||||
|
||||
|
||||
async def create_subprocess_exec(program, *args, stdin=None, stdout=None,
|
||||
|
@ -253,11 +232,10 @@ async def create_subprocess_exec(program, *args, stdin=None, stdout=None,
|
|||
stacklevel=2
|
||||
)
|
||||
protocol_factory = lambda: SubprocessStreamProtocol(limit=limit,
|
||||
loop=loop,
|
||||
_asyncio_internal=True)
|
||||
loop=loop)
|
||||
transport, protocol = await loop.subprocess_exec(
|
||||
protocol_factory,
|
||||
program, *args,
|
||||
stdin=stdin, stdout=stdout,
|
||||
stderr=stderr, **kwds)
|
||||
return Process(transport, protocol, loop, _asyncio_internal=True)
|
||||
return Process(transport, protocol, loop)
|
||||
|
|
|
@ -58,7 +58,6 @@ class BaseTestBufferedProtocol(func_tests.FunctionalTestCaseMixin):
|
|||
writer.close()
|
||||
await writer.wait_closed()
|
||||
|
||||
with self.assertWarns(DeprecationWarning):
|
||||
srv = self.loop.run_until_complete(
|
||||
asyncio.start_server(
|
||||
on_server_client, '127.0.0.1', 0))
|
||||
|
|
|
@ -95,11 +95,9 @@ class StreamReaderTests(BaseTest):
|
|||
def test_readline(self):
|
||||
DATA = b'line1\nline2\nline3'
|
||||
|
||||
stream = asyncio.Stream(mode=asyncio.StreamMode.READ,
|
||||
loop=self.loop,
|
||||
_asyncio_internal=True)
|
||||
stream._feed_data(DATA)
|
||||
stream._feed_eof()
|
||||
stream = asyncio.StreamReader(loop=self.loop)
|
||||
stream.feed_data(DATA)
|
||||
stream.feed_eof()
|
||||
|
||||
async def reader():
|
||||
data = []
|
||||
|
|
File diff suppressed because it is too large
Load Diff
|
@ -582,18 +582,6 @@ class SubprocessMixin:
|
|||
|
||||
self.loop.run_until_complete(execute())
|
||||
|
||||
def test_subprocess_protocol_create_warning(self):
|
||||
with self.assertWarns(DeprecationWarning):
|
||||
subprocess.SubprocessStreamProtocol(limit=10, loop=self.loop)
|
||||
|
||||
def test_process_create_warning(self):
|
||||
proto = subprocess.SubprocessStreamProtocol(limit=10, loop=self.loop,
|
||||
_asyncio_internal=True)
|
||||
transp = mock.Mock()
|
||||
|
||||
with self.assertWarns(DeprecationWarning):
|
||||
subprocess.Process(transp, proto, loop=self.loop)
|
||||
|
||||
def test_create_subprocess_exec_text_mode_fails(self):
|
||||
async def execute():
|
||||
with self.assertRaises(ValueError):
|
||||
|
|
|
@ -15,7 +15,6 @@ import _winapi
|
|||
|
||||
import asyncio
|
||||
from asyncio import windows_events
|
||||
from asyncio.streams import _StreamProtocol
|
||||
from test.test_asyncio import utils as test_utils
|
||||
|
||||
|
||||
|
@ -118,16 +117,14 @@ class ProactorTests(test_utils.TestCase):
|
|||
|
||||
clients = []
|
||||
for i in range(5):
|
||||
stream = asyncio.Stream(mode=asyncio.StreamMode.READ,
|
||||
loop=self.loop, _asyncio_internal=True)
|
||||
protocol = _StreamProtocol(stream,
|
||||
loop=self.loop,
|
||||
_asyncio_internal=True)
|
||||
stream_reader = asyncio.StreamReader(loop=self.loop)
|
||||
protocol = asyncio.StreamReaderProtocol(stream_reader,
|
||||
loop=self.loop)
|
||||
trans, proto = await self.loop.create_pipe_connection(
|
||||
lambda: protocol, ADDRESS)
|
||||
self.assertIsInstance(trans, asyncio.Transport)
|
||||
self.assertEqual(protocol, proto)
|
||||
clients.append((stream, trans))
|
||||
clients.append((stream_reader, trans))
|
||||
|
||||
for i, (r, w) in enumerate(clients):
|
||||
w.write('lower-{}\n'.format(i).encode())
|
||||
|
@ -136,7 +133,6 @@ class ProactorTests(test_utils.TestCase):
|
|||
response = await r.readline()
|
||||
self.assertEqual(response, 'LOWER-{}\n'.format(i).encode())
|
||||
w.close()
|
||||
await r.close()
|
||||
|
||||
server.close()
|
||||
|
||||
|
|
|
@ -0,0 +1 @@
|
|||
Revert the new asyncio Streams API
|
Loading…
Reference in New Issue