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				https://github.com/python/cpython.git
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	* Replaced list(<generator expression>) with list comprehension * Replaced dict(<generator expression>) with dict comprehension * Replaced set(<list literal>) with set literal * Replaced builtin func(<list comprehension>) with func(<generator expression>) when supported (e.g. any(), all(), tuple(), min(), & max())
		
			
				
	
	
		
			357 lines
		
	
	
	
		
			11 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
			
		
		
	
	
			357 lines
		
	
	
	
		
			11 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
import os
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import sys
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import threading
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from . import process
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from . import reduction
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__all__ = []            # things are copied from here to __init__.py
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#
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# Exceptions
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#
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class ProcessError(Exception):
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    pass
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class BufferTooShort(ProcessError):
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    pass
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class TimeoutError(ProcessError):
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    pass
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class AuthenticationError(ProcessError):
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    pass
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#
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# Base type for contexts
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#
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class BaseContext(object):
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    ProcessError = ProcessError
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    BufferTooShort = BufferTooShort
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    TimeoutError = TimeoutError
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    AuthenticationError = AuthenticationError
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    current_process = staticmethod(process.current_process)
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    active_children = staticmethod(process.active_children)
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    def cpu_count(self):
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        '''Returns the number of CPUs in the system'''
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        num = os.cpu_count()
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        if num is None:
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            raise NotImplementedError('cannot determine number of cpus')
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        else:
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            return num
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    def Manager(self):
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        '''Returns a manager associated with a running server process
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        The managers methods such as `Lock()`, `Condition()` and `Queue()`
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        can be used to create shared objects.
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        '''
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        from .managers import SyncManager
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        m = SyncManager(ctx=self.get_context())
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        m.start()
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        return m
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    def Pipe(self, duplex=True):
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        '''Returns two connection object connected by a pipe'''
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        from .connection import Pipe
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        return Pipe(duplex)
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    def Lock(self):
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        '''Returns a non-recursive lock object'''
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        from .synchronize import Lock
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        return Lock(ctx=self.get_context())
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    def RLock(self):
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        '''Returns a recursive lock object'''
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        from .synchronize import RLock
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        return RLock(ctx=self.get_context())
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    def Condition(self, lock=None):
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        '''Returns a condition object'''
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        from .synchronize import Condition
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        return Condition(lock, ctx=self.get_context())
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    def Semaphore(self, value=1):
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        '''Returns a semaphore object'''
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        from .synchronize import Semaphore
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        return Semaphore(value, ctx=self.get_context())
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    def BoundedSemaphore(self, value=1):
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        '''Returns a bounded semaphore object'''
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        from .synchronize import BoundedSemaphore
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        return BoundedSemaphore(value, ctx=self.get_context())
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    def Event(self):
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        '''Returns an event object'''
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        from .synchronize import Event
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        return Event(ctx=self.get_context())
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    def Barrier(self, parties, action=None, timeout=None):
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        '''Returns a barrier object'''
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        from .synchronize import Barrier
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        return Barrier(parties, action, timeout, ctx=self.get_context())
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    def Queue(self, maxsize=0):
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        '''Returns a queue object'''
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        from .queues import Queue
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        return Queue(maxsize, ctx=self.get_context())
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    def JoinableQueue(self, maxsize=0):
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        '''Returns a queue object'''
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        from .queues import JoinableQueue
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        return JoinableQueue(maxsize, ctx=self.get_context())
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    def SimpleQueue(self):
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        '''Returns a queue object'''
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        from .queues import SimpleQueue
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        return SimpleQueue(ctx=self.get_context())
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    def Pool(self, processes=None, initializer=None, initargs=(),
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             maxtasksperchild=None):
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        '''Returns a process pool object'''
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        from .pool import Pool
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        return Pool(processes, initializer, initargs, maxtasksperchild,
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                    context=self.get_context())
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    def RawValue(self, typecode_or_type, *args):
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        '''Returns a shared object'''
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        from .sharedctypes import RawValue
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        return RawValue(typecode_or_type, *args)
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    def RawArray(self, typecode_or_type, size_or_initializer):
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        '''Returns a shared array'''
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        from .sharedctypes import RawArray
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        return RawArray(typecode_or_type, size_or_initializer)
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    def Value(self, typecode_or_type, *args, lock=True):
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        '''Returns a synchronized shared object'''
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        from .sharedctypes import Value
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        return Value(typecode_or_type, *args, lock=lock,
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                     ctx=self.get_context())
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    def Array(self, typecode_or_type, size_or_initializer, *, lock=True):
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        '''Returns a synchronized shared array'''
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        from .sharedctypes import Array
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        return Array(typecode_or_type, size_or_initializer, lock=lock,
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                     ctx=self.get_context())
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    def freeze_support(self):
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        '''Check whether this is a fake forked process in a frozen executable.
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        If so then run code specified by commandline and exit.
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        '''
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        if sys.platform == 'win32' and getattr(sys, 'frozen', False):
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            from .spawn import freeze_support
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            freeze_support()
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    def get_logger(self):
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        '''Return package logger -- if it does not already exist then
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        it is created.
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        '''
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        from .util import get_logger
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        return get_logger()
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    def log_to_stderr(self, level=None):
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        '''Turn on logging and add a handler which prints to stderr'''
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        from .util import log_to_stderr
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        return log_to_stderr(level)
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    def allow_connection_pickling(self):
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        '''Install support for sending connections and sockets
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        between processes
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        '''
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        # This is undocumented.  In previous versions of multiprocessing
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        # its only effect was to make socket objects inheritable on Windows.
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        from . import connection
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    def set_executable(self, executable):
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        '''Sets the path to a python.exe or pythonw.exe binary used to run
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        child processes instead of sys.executable when using the 'spawn'
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        start method.  Useful for people embedding Python.
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        '''
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        from .spawn import set_executable
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        set_executable(executable)
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    def set_forkserver_preload(self, module_names):
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        '''Set list of module names to try to load in forkserver process.
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        This is really just a hint.
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        '''
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        from .forkserver import set_forkserver_preload
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        set_forkserver_preload(module_names)
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    def get_context(self, method=None):
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        if method is None:
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            return self
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        try:
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            ctx = _concrete_contexts[method]
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        except KeyError:
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            raise ValueError('cannot find context for %r' % method) from None
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        ctx._check_available()
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        return ctx
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    def get_start_method(self, allow_none=False):
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        return self._name
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    def set_start_method(self, method, force=False):
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        raise ValueError('cannot set start method of concrete context')
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    @property
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    def reducer(self):
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        '''Controls how objects will be reduced to a form that can be
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        shared with other processes.'''
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        return globals().get('reduction')
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    @reducer.setter
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    def reducer(self, reduction):
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        globals()['reduction'] = reduction
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    def _check_available(self):
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        pass
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#
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# Type of default context -- underlying context can be set at most once
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#
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class Process(process.BaseProcess):
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    _start_method = None
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    @staticmethod
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    def _Popen(process_obj):
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        return _default_context.get_context().Process._Popen(process_obj)
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class DefaultContext(BaseContext):
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    Process = Process
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    def __init__(self, context):
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        self._default_context = context
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        self._actual_context = None
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    def get_context(self, method=None):
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        if method is None:
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            if self._actual_context is None:
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                self._actual_context = self._default_context
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            return self._actual_context
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        else:
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            return super().get_context(method)
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    def set_start_method(self, method, force=False):
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        if self._actual_context is not None and not force:
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            raise RuntimeError('context has already been set')
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        if method is None and force:
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            self._actual_context = None
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            return
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        self._actual_context = self.get_context(method)
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    def get_start_method(self, allow_none=False):
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        if self._actual_context is None:
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            if allow_none:
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                return None
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            self._actual_context = self._default_context
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        return self._actual_context._name
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    def get_all_start_methods(self):
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        if sys.platform == 'win32':
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            return ['spawn']
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        else:
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            if reduction.HAVE_SEND_HANDLE:
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                return ['fork', 'spawn', 'forkserver']
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            else:
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                return ['fork', 'spawn']
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DefaultContext.__all__ = [x for x in dir(DefaultContext) if x[0] != '_']
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#
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# Context types for fixed start method
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#
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if sys.platform != 'win32':
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    class ForkProcess(process.BaseProcess):
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        _start_method = 'fork'
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        @staticmethod
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        def _Popen(process_obj):
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            from .popen_fork import Popen
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            return Popen(process_obj)
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    class SpawnProcess(process.BaseProcess):
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        _start_method = 'spawn'
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        @staticmethod
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        def _Popen(process_obj):
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            from .popen_spawn_posix import Popen
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            return Popen(process_obj)
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    class ForkServerProcess(process.BaseProcess):
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        _start_method = 'forkserver'
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        @staticmethod
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        def _Popen(process_obj):
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            from .popen_forkserver import Popen
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            return Popen(process_obj)
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    class ForkContext(BaseContext):
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        _name = 'fork'
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        Process = ForkProcess
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    class SpawnContext(BaseContext):
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        _name = 'spawn'
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        Process = SpawnProcess
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    class ForkServerContext(BaseContext):
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        _name = 'forkserver'
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        Process = ForkServerProcess
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        def _check_available(self):
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            if not reduction.HAVE_SEND_HANDLE:
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                raise ValueError('forkserver start method not available')
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    _concrete_contexts = {
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        'fork': ForkContext(),
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        'spawn': SpawnContext(),
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        'forkserver': ForkServerContext(),
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    }
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    _default_context = DefaultContext(_concrete_contexts['fork'])
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else:
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    class SpawnProcess(process.BaseProcess):
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        _start_method = 'spawn'
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        @staticmethod
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        def _Popen(process_obj):
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            from .popen_spawn_win32 import Popen
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            return Popen(process_obj)
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    class SpawnContext(BaseContext):
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        _name = 'spawn'
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        Process = SpawnProcess
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    _concrete_contexts = {
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        'spawn': SpawnContext(),
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    }
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    _default_context = DefaultContext(_concrete_contexts['spawn'])
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#
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# Force the start method
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#
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def _force_start_method(method):
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    _default_context._actual_context = _concrete_contexts[method]
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#
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# Check that the current thread is spawning a child process
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#
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_tls = threading.local()
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def get_spawning_popen():
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    return getattr(_tls, 'spawning_popen', None)
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def set_spawning_popen(popen):
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    _tls.spawning_popen = popen
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def assert_spawning(obj):
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    if get_spawning_popen() is None:
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        raise RuntimeError(
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            '%s objects should only be shared between processes'
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            ' through inheritance' % type(obj).__name__
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            )
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