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# Copyright 2019, David Wilson
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#
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# Redistribution and use in source and binary forms, with or without
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# modification, are permitted provided that the following conditions are met:
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#
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# 1. Redistributions of source code must retain the above copyright notice,
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# this list of conditions and the following disclaimer.
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#
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# 2. Redistributions in binary form must reproduce the above copyright notice,
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# this list of conditions and the following disclaimer in the documentation
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# and/or other materials provided with the distribution.
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#
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# 3. Neither the name of the copyright holder nor the names of its contributors
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# may be used to endorse or promote products derived from this software without
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# specific prior written permission.
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#
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# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
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# LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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# POSSIBILITY OF SUCH DAMAGE.
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from __future__ import absolute_import
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import os
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import signal
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import threading
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import mitogen.core
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ansible: new multiplexer/workers configuration
Following on from 152effc26c9a5918cb7ead7a97fe7fa7f81b6764,
* Pin mux to CPU 0
* Pin top-level CPU 1
* Pin workers sequentially to CPU 2..n
Nets 19.5% improvement on issue_140__thread_pileup.yml when targetting
64 Docker containers on the same 8 core/16 thread machine.
Before (prior to last scheme, no affinity at all):
2294528.731458 task-clock (msec) # 6.443 CPUs utilized
10,429,745 context-switches # 0.005 M/sec
2,049,618 cpu-migrations # 0.893 K/sec
8,258,952 page-faults # 0.004 M/sec
5,532,719,253,824 cycles # 2.411 GHz (83.35%)
3,267,471,616,230 instructions # 0.59 insn per cycle
# 1.22 stalled cycles per insn (83.35%)
662,006,455,943 branches # 288.515 M/sec (83.33%)
39,453,895,977 branch-misses # 5.96% of all branches (83.37%)
356.148064576 seconds time elapsed
After:
2226463.958975 task-clock (msec) # 7.784 CPUs utilized
9,831,466 context-switches # 0.004 M/sec
180,065 cpu-migrations # 0.081 K/sec
5,082,278 page-faults # 0.002 M/sec
5,592,548,587,259 cycles # 2.512 GHz (83.35%)
3,135,038,855,414 instructions # 0.56 insn per cycle
# 1.32 stalled cycles per insn (83.32%)
636,397,509,232 branches # 285.833 M/sec (83.30%)
39,135,441,790 branch-misses # 6.15% of all branches (83.35%)
286.036681644 seconds time elapsed
6 years ago
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import ansible_mitogen.affinity
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import ansible_mitogen.loaders
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import ansible_mitogen.mixins
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import ansible_mitogen.process
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import ansible.executor.process.worker
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def _patch_awx_callback():
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"""
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issue #400: AWX loads a display callback that suffers from thread-safety
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issues. Detect the presence of older AWX versions and patch the bug.
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"""
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# AWX uses sitecustomize.py to force-load this package. If it exists, we're
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# running under AWX.
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try:
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from awx_display_callback.events import EventContext
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from awx_display_callback.events import event_context
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except ImportError:
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return
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if hasattr(EventContext(), '_local'):
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# Patched version.
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return
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def patch_add_local(self, **kwargs):
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tls = vars(self._local)
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ctx = tls.setdefault('_ctx', {})
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ctx.update(kwargs)
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EventContext._local = threading.local()
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EventContext.add_local = patch_add_local
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_patch_awx_callback()
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def wrap_action_loader__get(name, *args, **kwargs):
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"""
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While the mitogen strategy is active, trap action_loader.get() calls,
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augmenting any fetched class with ActionModuleMixin, which replaces various
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helper methods inherited from ActionBase with implementations that avoid
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the use of shell fragments wherever possible.
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This is used instead of static subclassing as it generalizes to third party
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action modules outside the Ansible tree.
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"""
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klass = action_loader__get(name, class_only=True)
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if klass:
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bases = (ansible_mitogen.mixins.ActionModuleMixin, klass)
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adorned_klass = type(str(name), bases, {})
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if kwargs.get('class_only'):
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return adorned_klass
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return adorned_klass(*args, **kwargs)
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def wrap_connection_loader__get(name, *args, **kwargs):
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"""
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While the strategy is active, rewrite connection_loader.get() calls for
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some transports into requests for a compatible Mitogen transport.
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"""
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if name in ('docker', 'kubectl', 'jail', 'local', 'lxc',
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'lxd', 'machinectl', 'setns', 'ssh'):
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ansible: connection delegation v1
This implements the first edition of Connection Delegation, where
delegating connection establishment is initially single-threaded.
ansible_mitogen/strategy.py:
ansible_mitogen/plugins/connection/*:
Begin splitting connection.Connection into subclasses, exposing them
directly as "mitogen_ssh", "mitogen_local", etc. connection types.
This is far from removing strategy.py, but it's a tiny start.
ansible_mitogen/connection.py:
* config_from_play_context() and config_from_host_vars() build up a
huge dictionary containing either more or less PlayContext contents,
or our best attempt at reconstructing a host's connection config
from its hostvars, where that config is not the current
WorkerProcess target.
They both produce the same format with the same keys, allowing
remaining code to have a single input format.
These dicts contain fields named after how Ansible refers to them,
e.g. "sudo_exe".
* _config_from_via() parses a basic connection specification like
"username@inventory_name" into one of the aforementioned dicts.
* _stack_from_config() produces a list of dicts describing the order
in which (Mitogen) connections should be established, such that each
element is proxied via= the previous element. The dicts produced by
this function use Mitogen keyword arguments, the former di.
These dicts contain fields named after how Mitogen refers to them,
e.g. "sudo_path".
* Pass the stack to ContextService, which is responsible for actual
setup of the full chain.
ansible_mitogen/services.py:
Teach get() to walk the supplied stack, establishing each connection
in turn, creating refounts for it before continuing.
TODO: refcounting is broken in a variety of cases.
7 years ago
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name = 'mitogen_' + name
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return connection_loader__get(name, *args, **kwargs)
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def wrap_worker__run(*args, **kwargs):
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"""
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While the strategy is active, rewrite connection_loader.get() calls for
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some transports into requests for a compatible Mitogen transport.
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"""
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# Ignore parent's attempts to murder us when we still need to write
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# profiling output.
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if mitogen.core._profile_hook.__name__ != '_profile_hook':
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signal.signal(signal.SIGTERM, signal.SIG_IGN)
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ansible_mitogen.affinity.policy.assign_worker()
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return mitogen.core._profile_hook('WorkerProcess',
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lambda: worker__run(*args, **kwargs)
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)
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class StrategyMixin(object):
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"""
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This mix-in enhances any built-in strategy by arranging for various Mitogen
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services to be initialized in the Ansible top-level process, and for worker
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processes to grow support for using those top-level services to communicate
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with and execute modules on remote hosts.
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Mitogen:
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A private Broker IO multiplexer thread is created to dispatch IO
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between the local Router and any connected streams, including streams
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connected to Ansible WorkerProcesses, and SSH commands implementing
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connections to remote machines.
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A Router is created that implements message dispatch to any locally
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registered handlers, and message routing for remote streams. Router is
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the junction point through which WorkerProceses and remote SSH contexts
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can communicate.
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Router additionally adds message handlers for a variety of base
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services, review the Standard Handles section of the How It Works guide
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in the documentation.
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A ContextService is installed as a message handler in the master
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process and run on a private thread. It is responsible for accepting
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requests to establish new SSH connections from worker processes, and
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ensuring precisely one connection exists and is reused for subsequent
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playbook steps. The service presently runs in a single thread, so to
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begin with, new SSH connections are serialized.
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Finally a mitogen.unix listener is created through which WorkerProcess
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can establish a connection back into the master process, in order to
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avail of ContextService. A UNIX listener socket is necessary as there
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is no more sane mechanism to arrange for IPC between the Router in the
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master process, and the corresponding Router in the worker process.
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Ansible:
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PluginLoader monkey patches are installed to catch attempts to create
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connection and action plug-ins.
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For connection plug-ins, if the desired method is "local" or "ssh", it
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is redirected to the "mitogen" connection plug-in. That plug-in
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implements communication via a UNIX socket connection to the top-level
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Ansible process, and uses ContextService running in the top-level
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process to actually establish and manage the connection.
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For action plug-ins, the original class is looked up as usual, but a
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new subclass is created dynamically in order to mix-in
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ansible_mitogen.target.ActionModuleMixin, which overrides many of the
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methods usually inherited from ActionBase in order to replace them with
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pure-Python equivalents that avoid the use of shell.
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In particular, _execute_module() is overridden with an implementation
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that uses ansible_mitogen.target.run_module() executed in the target
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Context. run_module() implements module execution by importing the
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module as if it were a normal Python module, and capturing its output
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in the remote process. Since the Mitogen module loader is active in the
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remote process, all the heavy lifting of transferring the action module
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and its dependencies are automatically handled by Mitogen.
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"""
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def _install_wrappers(self):
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"""
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Install our PluginLoader monkey patches and update global variables
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with references to the real functions.
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"""
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global action_loader__get
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action_loader__get = ansible_mitogen.loaders.action_loader.get
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ansible_mitogen.loaders.action_loader.get = wrap_action_loader__get
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global connection_loader__get
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connection_loader__get = ansible_mitogen.loaders.connection_loader.get
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ansible_mitogen.loaders.connection_loader.get = wrap_connection_loader__get
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global worker__run
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worker__run = ansible.executor.process.worker.WorkerProcess.run
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ansible.executor.process.worker.WorkerProcess.run = wrap_worker__run
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def _remove_wrappers(self):
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"""
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Uninstall the PluginLoader monkey patches.
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"""
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ansible_mitogen.loaders.action_loader.get = action_loader__get
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ansible_mitogen.loaders.connection_loader.get = connection_loader__get
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ansible.executor.process.worker.WorkerProcess.run = worker__run
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def _add_plugin_paths(self):
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"""
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Add the Mitogen plug-in directories to the ModuleLoader path, avoiding
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the need for manual configuration.
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"""
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base_dir = os.path.join(os.path.dirname(__file__), 'plugins')
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ansible_mitogen.loaders.connection_loader.add_directory(
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os.path.join(base_dir, 'connection')
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)
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ansible_mitogen.loaders.action_loader.add_directory(
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os.path.join(base_dir, 'action')
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)
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def _queue_task(self, host, task, task_vars, play_context):
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"""
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Many PluginLoader caches are defective as they are only populated in
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the ephemeral WorkerProcess. Touch each plug-in path before forking to
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ensure all workers receive a hot cache.
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"""
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ansible_mitogen.loaders.module_loader.find_plugin(
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name=task.action,
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mod_type='',
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)
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ansible_mitogen.loaders.connection_loader.get(
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name=play_context.connection,
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class_only=True,
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)
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ansible_mitogen.loaders.action_loader.get(
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name=task.action,
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class_only=True,
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)
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return super(StrategyMixin, self)._queue_task(
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host=host,
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task=task,
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task_vars=task_vars,
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play_context=play_context,
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)
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def run(self, iterator, play_context, result=0):
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"""
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Arrange for a mitogen.master.Router to be available for the duration of
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the strategy's real run() method.
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"""
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ansible_mitogen.process.MuxProcess.start()
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run = super(StrategyMixin, self).run
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self._add_plugin_paths()
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self._install_wrappers()
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try:
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return mitogen.core._profile_hook('Strategy',
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lambda: run(iterator, play_context)
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)
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finally:
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self._remove_wrappers()
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