mirror of https://github.com/python/cpython
329 lines
9.4 KiB
ReStructuredText
329 lines
9.4 KiB
ReStructuredText
.. currentmodule:: asyncio
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.. _asyncio-policies:
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========
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Policies
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========
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An event loop policy is a global object
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used to get and set the current :ref:`event loop <asyncio-event-loop>`,
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as well as create new event loops.
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The default policy can be :ref:`replaced <asyncio-policy-get-set>` with
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:ref:`built-in alternatives <asyncio-policy-builtin>`
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to use different event loop implementations,
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or substituted by a :ref:`custom policy <asyncio-custom-policies>`
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that can override these behaviors.
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The :ref:`policy object <asyncio-policy-objects>`
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gets and sets a separate event loop per *context*.
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This is per-thread by default,
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though custom policies could define *context* differently.
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Custom event loop policies can control the behavior of
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:func:`get_event_loop`, :func:`set_event_loop`, and :func:`new_event_loop`.
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Policy objects should implement the APIs defined
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in the :class:`AbstractEventLoopPolicy` abstract base class.
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.. _asyncio-policy-get-set:
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Getting and Setting the Policy
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==============================
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The following functions can be used to get and set the policy
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for the current process:
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.. function:: get_event_loop_policy()
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Return the current process-wide policy.
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.. function:: set_event_loop_policy(policy)
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Set the current process-wide policy to *policy*.
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If *policy* is set to ``None``, the default policy is restored.
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.. _asyncio-policy-objects:
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Policy Objects
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==============
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The abstract event loop policy base class is defined as follows:
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.. class:: AbstractEventLoopPolicy
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An abstract base class for asyncio policies.
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.. method:: get_event_loop()
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Get the event loop for the current context.
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Return an event loop object implementing the
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:class:`AbstractEventLoop` interface.
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This method should never return ``None``.
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.. versionchanged:: 3.6
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.. method:: set_event_loop(loop)
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Set the event loop for the current context to *loop*.
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.. method:: new_event_loop()
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Create and return a new event loop object.
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This method should never return ``None``.
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.. method:: get_child_watcher()
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Get a child process watcher object.
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Return a watcher object implementing the
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:class:`AbstractChildWatcher` interface.
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This function is Unix specific.
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.. deprecated:: 3.12
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.. method:: set_child_watcher(watcher)
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Set the current child process watcher to *watcher*.
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This function is Unix specific.
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.. deprecated:: 3.12
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.. _asyncio-policy-builtin:
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asyncio ships with the following built-in policies:
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.. class:: DefaultEventLoopPolicy
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The default asyncio policy. Uses :class:`SelectorEventLoop`
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on Unix and :class:`ProactorEventLoop` on Windows.
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There is no need to install the default policy manually. asyncio
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is configured to use the default policy automatically.
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.. versionchanged:: 3.8
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On Windows, :class:`ProactorEventLoop` is now used by default.
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.. deprecated:: 3.12
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The :meth:`get_event_loop` method of the default asyncio policy now emits
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a :exc:`DeprecationWarning` if there is no current event loop set and it
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decides to create one.
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In some future Python release this will become an error.
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.. class:: WindowsSelectorEventLoopPolicy
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An alternative event loop policy that uses the
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:class:`SelectorEventLoop` event loop implementation.
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.. availability:: Windows.
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.. class:: WindowsProactorEventLoopPolicy
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An alternative event loop policy that uses the
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:class:`ProactorEventLoop` event loop implementation.
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.. availability:: Windows.
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.. _asyncio-watchers:
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Process Watchers
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================
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A process watcher allows customization of how an event loop monitors
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child processes on Unix. Specifically, the event loop needs to know
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when a child process has exited.
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In asyncio, child processes are created with
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:func:`create_subprocess_exec` and :meth:`loop.subprocess_exec`
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functions.
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asyncio defines the :class:`AbstractChildWatcher` abstract base class, which child
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watchers should implement, and has four different implementations:
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:class:`ThreadedChildWatcher` (configured to be used by default),
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:class:`MultiLoopChildWatcher`, :class:`SafeChildWatcher`, and
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:class:`FastChildWatcher`.
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See also the :ref:`Subprocess and Threads <asyncio-subprocess-threads>`
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section.
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The following two functions can be used to customize the child process watcher
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implementation used by the asyncio event loop:
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.. function:: get_child_watcher()
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Return the current child watcher for the current policy.
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.. deprecated:: 3.12
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.. function:: set_child_watcher(watcher)
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Set the current child watcher to *watcher* for the current
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policy. *watcher* must implement methods defined in the
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:class:`AbstractChildWatcher` base class.
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.. deprecated:: 3.12
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.. note::
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Third-party event loops implementations might not support
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custom child watchers. For such event loops, using
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:func:`set_child_watcher` might be prohibited or have no effect.
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.. class:: AbstractChildWatcher
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.. method:: add_child_handler(pid, callback, *args)
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Register a new child handler.
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Arrange for ``callback(pid, returncode, *args)`` to be called
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when a process with PID equal to *pid* terminates. Specifying
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another callback for the same process replaces the previous
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handler.
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The *callback* callable must be thread-safe.
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.. method:: remove_child_handler(pid)
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Removes the handler for process with PID equal to *pid*.
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The function returns ``True`` if the handler was successfully
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removed, ``False`` if there was nothing to remove.
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.. method:: attach_loop(loop)
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Attach the watcher to an event loop.
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If the watcher was previously attached to an event loop, then
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it is first detached before attaching to the new loop.
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Note: loop may be ``None``.
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.. method:: is_active()
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Return ``True`` if the watcher is ready to use.
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Spawning a subprocess with *inactive* current child watcher raises
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:exc:`RuntimeError`.
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.. versionadded:: 3.8
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.. method:: close()
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Close the watcher.
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This method has to be called to ensure that underlying
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resources are cleaned-up.
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.. deprecated:: 3.12
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.. class:: ThreadedChildWatcher
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This implementation starts a new waiting thread for every subprocess spawn.
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It works reliably even when the asyncio event loop is run in a non-main OS thread.
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There is no noticeable overhead when handling a big number of children (*O*\ (1) each
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time a child terminates), but starting a thread per process requires extra memory.
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This watcher is used by default.
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.. versionadded:: 3.8
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.. class:: MultiLoopChildWatcher
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This implementation registers a :py:data:`SIGCHLD` signal handler on
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instantiation. That can break third-party code that installs a custom handler for
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:py:data:`SIGCHLD` signal.
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The watcher avoids disrupting other code spawning processes
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by polling every process explicitly on a :py:data:`SIGCHLD` signal.
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There is no limitation for running subprocesses from different threads once the
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watcher is installed.
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The solution is safe but it has a significant overhead when
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handling a big number of processes (*O*\ (*n*) each time a
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:py:data:`SIGCHLD` is received).
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.. versionadded:: 3.8
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.. deprecated:: 3.12
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.. class:: SafeChildWatcher
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This implementation uses active event loop from the main thread to handle
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:py:data:`SIGCHLD` signal. If the main thread has no running event loop another
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thread cannot spawn a subprocess (:exc:`RuntimeError` is raised).
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The watcher avoids disrupting other code spawning processes
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by polling every process explicitly on a :py:data:`SIGCHLD` signal.
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This solution is as safe as :class:`MultiLoopChildWatcher` and has the same *O*\ (*n*)
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complexity but requires a running event loop in the main thread to work.
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.. deprecated:: 3.12
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.. class:: FastChildWatcher
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This implementation reaps every terminated processes by calling
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``os.waitpid(-1)`` directly, possibly breaking other code spawning
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processes and waiting for their termination.
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There is no noticeable overhead when handling a big number of
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children (*O*\ (1) each time a child terminates).
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This solution requires a running event loop in the main thread to work, as
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:class:`SafeChildWatcher`.
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.. deprecated:: 3.12
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.. class:: PidfdChildWatcher
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This implementation polls process file descriptors (pidfds) to await child
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process termination. In some respects, :class:`PidfdChildWatcher` is a
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"Goldilocks" child watcher implementation. It doesn't require signals or
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threads, doesn't interfere with any processes launched outside the event
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loop, and scales linearly with the number of subprocesses launched by the
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event loop. The main disadvantage is that pidfds are specific to Linux, and
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only work on recent (5.3+) kernels.
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.. versionadded:: 3.9
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.. _asyncio-custom-policies:
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Custom Policies
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===============
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To implement a new event loop policy, it is recommended to subclass
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:class:`DefaultEventLoopPolicy` and override the methods for which
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custom behavior is wanted, e.g.::
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class MyEventLoopPolicy(asyncio.DefaultEventLoopPolicy):
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def get_event_loop(self):
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"""Get the event loop.
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This may be None or an instance of EventLoop.
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"""
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loop = super().get_event_loop()
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# Do something with loop ...
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return loop
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asyncio.set_event_loop_policy(MyEventLoopPolicy())
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