mirror of
https://github.com/Sneed-Group/Poodletooth-iLand
synced 2024-12-27 05:32:41 -06:00
505 lines
16 KiB
Python
Executable file
505 lines
16 KiB
Python
Executable file
# Copyright (c) 2009-2012 Denis Bilenko. See LICENSE for details.
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"""Synchronized queues.
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The :mod:`gevent.queue` module implements multi-producer, multi-consumer queues
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that work across greenlets, with the API similar to the classes found in the
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standard :mod:`Queue` and :class:`multiprocessing <multiprocessing.Queue>` modules.
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Changed in version 1.0: Queue(0) now means queue of infinite size, not a channel.
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The classes in this module implement iterator protocol. Iterating over queue
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means repeatedly calling :meth:`get <Queue.get>` until :meth:`get <Queue.get>` returns ``StopIteration``.
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>>> queue = gevent.queue.Queue()
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>>> queue.put(1)
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>>> queue.put(2)
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>>> queue.put(StopIteration)
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>>> for item in queue:
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... print item
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1
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2
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"""
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from __future__ import absolute_import
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import sys
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import heapq
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import collections
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if sys.version_info[0] == 2:
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import Queue as __queue__
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else:
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import queue as __queue__
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Full = __queue__.Full
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Empty = __queue__.Empty
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from gevent.timeout import Timeout
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from gevent.hub import get_hub, Waiter, getcurrent
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__all__ = ['Queue', 'PriorityQueue', 'LifoQueue', 'JoinableQueue', 'Channel']
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class Queue(object):
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"""Create a queue object with a given maximum size.
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If *maxsize* is less than or equal to zero or ``None``, the queue size is infinite.
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"""
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def __init__(self, maxsize=None, items=None):
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if maxsize is not None and maxsize <= 0:
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self.maxsize = None
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if maxsize == 0:
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import warnings
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warnings.warn('Queue(0) now equivalent to Queue(None); if you want a channel, use Channel',
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DeprecationWarning, stacklevel=2)
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else:
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self.maxsize = maxsize
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self.getters = set()
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self.putters = set()
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self.hub = get_hub()
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self._event_unlock = None
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if items:
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self._init(maxsize, items)
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else:
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self._init(maxsize)
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# QQQ make maxsize into a property with setter that schedules unlock if necessary
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def copy(self):
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return type(self)(self.maxsize, self.queue)
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def _init(self, maxsize, items=None):
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if items:
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self.queue = collections.deque(items)
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else:
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self.queue = collections.deque()
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def _get(self):
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return self.queue.popleft()
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def _peek(self):
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return self.queue[0]
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def _put(self, item):
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self.queue.append(item)
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def __repr__(self):
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return '<%s at %s%s>' % (type(self).__name__, hex(id(self)), self._format())
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def __str__(self):
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return '<%s%s>' % (type(self).__name__, self._format())
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def _format(self):
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result = []
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if self.maxsize is not None:
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result.append('maxsize=%r' % (self.maxsize, ))
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if getattr(self, 'queue', None):
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result.append('queue=%r' % (self.queue, ))
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if self.getters:
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result.append('getters[%s]' % len(self.getters))
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if self.putters:
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result.append('putters[%s]' % len(self.putters))
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if result:
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return ' ' + ' '.join(result)
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else:
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return ''
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def qsize(self):
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"""Return the size of the queue."""
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return len(self.queue)
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def empty(self):
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"""Return ``True`` if the queue is empty, ``False`` otherwise."""
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return not self.qsize()
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def full(self):
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"""Return ``True`` if the queue is full, ``False`` otherwise.
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``Queue(None)`` is never full.
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"""
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return self.maxsize is not None and self.qsize() >= self.maxsize
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def put(self, item, block=True, timeout=None):
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"""Put an item into the queue.
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If optional arg *block* is true and *timeout* is ``None`` (the default),
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block if necessary until a free slot is available. If *timeout* is
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a positive number, it blocks at most *timeout* seconds and raises
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the :class:`Full` exception if no free slot was available within that time.
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Otherwise (*block* is false), put an item on the queue if a free slot
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is immediately available, else raise the :class:`Full` exception (*timeout*
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is ignored in that case).
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"""
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if self.maxsize is None or self.qsize() < self.maxsize:
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# there's a free slot, put an item right away
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self._put(item)
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if self.getters:
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self._schedule_unlock()
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elif self.hub is getcurrent():
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# We're in the mainloop, so we cannot wait; we can switch to other greenlets though.
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# Check if possible to get a free slot in the queue.
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while self.getters and self.qsize() and self.qsize() >= self.maxsize:
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getter = self.getters.pop()
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getter.switch(getter)
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if self.qsize() < self.maxsize:
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self._put(item)
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return
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raise Full
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elif block:
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waiter = ItemWaiter(item, self)
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self.putters.add(waiter)
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timeout = Timeout.start_new(timeout, Full)
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try:
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if self.getters:
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self._schedule_unlock()
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result = waiter.get()
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assert result is waiter, "Invalid switch into Queue.put: %r" % (result, )
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finally:
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timeout.cancel()
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self.putters.discard(waiter)
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else:
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raise Full
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def put_nowait(self, item):
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"""Put an item into the queue without blocking.
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Only enqueue the item if a free slot is immediately available.
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Otherwise raise the :class:`Full` exception.
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"""
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self.put(item, False)
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def get(self, block=True, timeout=None):
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"""Remove and return an item from the queue.
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If optional args *block* is true and *timeout* is ``None`` (the default),
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block if necessary until an item is available. If *timeout* is a positive number,
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it blocks at most *timeout* seconds and raises the :class:`Empty` exception
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if no item was available within that time. Otherwise (*block* is false), return
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an item if one is immediately available, else raise the :class:`Empty` exception
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(*timeout* is ignored in that case).
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"""
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if self.qsize():
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if self.putters:
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self._schedule_unlock()
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return self._get()
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elif self.hub is getcurrent():
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# special case to make get_nowait() runnable in the mainloop greenlet
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# there are no items in the queue; try to fix the situation by unlocking putters
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while self.putters:
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self.putters.pop().put_and_switch()
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if self.qsize():
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return self._get()
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raise Empty
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elif block:
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waiter = Waiter()
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timeout = Timeout.start_new(timeout, Empty)
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try:
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self.getters.add(waiter)
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if self.putters:
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self._schedule_unlock()
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result = waiter.get()
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assert result is waiter, 'Invalid switch into Queue.get: %r' % (result, )
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return self._get()
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finally:
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self.getters.discard(waiter)
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timeout.cancel()
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else:
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raise Empty
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def get_nowait(self):
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"""Remove and return an item from the queue without blocking.
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Only get an item if one is immediately available. Otherwise
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raise the :class:`Empty` exception.
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"""
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return self.get(False)
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def peek(self, block=True, timeout=None):
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"""Return an item from the queue without removing it.
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If optional args *block* is true and *timeout* is ``None`` (the default),
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block if necessary until an item is available. If *timeout* is a positive number,
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it blocks at most *timeout* seconds and raises the :class:`Empty` exception
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if no item was available within that time. Otherwise (*block* is false), return
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an item if one is immediately available, else raise the :class:`Empty` exception
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(*timeout* is ignored in that case).
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"""
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if self.qsize():
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return self._peek()
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elif self.hub is getcurrent():
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# special case to make peek(False) runnable in the mainloop greenlet
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# there are no items in the queue; try to fix the situation by unlocking putters
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while self.putters:
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self.putters.pop().put_and_switch()
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if self.qsize():
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return self._peek()
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raise Empty
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elif block:
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waiter = Waiter()
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timeout = Timeout.start_new(timeout, Empty)
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try:
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self.getters.add(waiter)
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if self.putters:
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self._schedule_unlock()
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result = waiter.get()
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assert result is waiter, 'Invalid switch into Queue.peek: %r' % (result, )
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return self._peek()
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finally:
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self.getters.discard(waiter)
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timeout.cancel()
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else:
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raise Empty
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def peek_nowait(self):
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return self.peek(False)
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def _unlock(self):
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while True:
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repeat = False
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if self.putters and (self.maxsize is None or self.qsize() < self.maxsize):
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repeat = True
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try:
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putter = self.putters.pop()
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self._put(putter.item)
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except:
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putter.throw(*sys.exc_info())
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else:
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putter.switch(putter)
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if self.getters and self.qsize():
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repeat = True
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getter = self.getters.pop()
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getter.switch(getter)
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if not repeat:
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return
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def _schedule_unlock(self):
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if not self._event_unlock:
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self._event_unlock = self.hub.loop.run_callback(self._unlock)
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def __iter__(self):
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return self
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def next(self):
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result = self.get()
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if result is StopIteration:
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raise result
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return result
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class ItemWaiter(Waiter):
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__slots__ = ['item', 'queue']
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def __init__(self, item, queue):
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Waiter.__init__(self)
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self.item = item
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self.queue = queue
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def put_and_switch(self):
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self.queue._put(self.item)
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self.queue = None
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self.item = None
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return self.switch(self)
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class PriorityQueue(Queue):
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'''A subclass of :class:`Queue` that retrieves entries in priority order (lowest first).
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Entries are typically tuples of the form: ``(priority number, data)``.
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'''
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def _init(self, maxsize, items=None):
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if items:
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self.queue = list(items)
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else:
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self.queue = []
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def _put(self, item, heappush=heapq.heappush):
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heappush(self.queue, item)
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def _get(self, heappop=heapq.heappop):
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return heappop(self.queue)
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class LifoQueue(Queue):
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'''A subclass of :class:`Queue` that retrieves most recently added entries first.'''
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def _init(self, maxsize, items=None):
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if items:
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self.queue = list(items)
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else:
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self.queue = []
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def _put(self, item):
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self.queue.append(item)
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def _get(self):
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return self.queue.pop()
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class JoinableQueue(Queue):
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'''A subclass of :class:`Queue` that additionally has :meth:`task_done` and :meth:`join` methods.'''
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def __init__(self, maxsize=None, items=None, unfinished_tasks=None):
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from gevent.event import Event
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Queue.__init__(self, maxsize, items)
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self.unfinished_tasks = unfinished_tasks or 0
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self._cond = Event()
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self._cond.set()
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def copy(self):
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return type(self)(self.maxsize, self.queue, self.unfinished_tasks)
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def _format(self):
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result = Queue._format(self)
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if self.unfinished_tasks:
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result += ' tasks=%s _cond=%s' % (self.unfinished_tasks, self._cond)
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return result
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def _put(self, item):
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Queue._put(self, item)
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self.unfinished_tasks += 1
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self._cond.clear()
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def task_done(self):
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'''Indicate that a formerly enqueued task is complete. Used by queue consumer threads.
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For each :meth:`get <Queue.get>` used to fetch a task, a subsequent call to :meth:`task_done` tells the queue
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that the processing on the task is complete.
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If a :meth:`join` is currently blocking, it will resume when all items have been processed
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(meaning that a :meth:`task_done` call was received for every item that had been
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:meth:`put <Queue.put>` into the queue).
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Raises a :exc:`ValueError` if called more times than there were items placed in the queue.
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'''
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if self.unfinished_tasks <= 0:
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raise ValueError('task_done() called too many times')
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self.unfinished_tasks -= 1
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if self.unfinished_tasks == 0:
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self._cond.set()
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def join(self):
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'''Block until all items in the queue have been gotten and processed.
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The count of unfinished tasks goes up whenever an item is added to the queue.
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The count goes down whenever a consumer thread calls :meth:`task_done` to indicate
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that the item was retrieved and all work on it is complete. When the count of
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unfinished tasks drops to zero, :meth:`join` unblocks.
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'''
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self._cond.wait()
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class Channel(object):
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def __init__(self):
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self.getters = collections.deque()
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self.putters = collections.deque()
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self.hub = get_hub()
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self._event_unlock = None
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def __repr__(self):
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return '<%s at %s %s>' % (type(self).__name__, hex(id(self)), self._format())
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def __str__(self):
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return '<%s %s>' % (type(self).__name__, self._format())
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def _format(self):
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result = ''
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if self.getters:
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result += ' getters[%s]' % len(self.getters)
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if self.putters:
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result += ' putters[%s]' % len(self.putters)
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return result
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@property
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def balance(self):
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return len(self.putters) - len(self.getters)
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def qsize(self):
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return 0
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def empty(self):
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return True
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def full(self):
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return True
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def put(self, item, block=True, timeout=None):
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if self.hub is getcurrent():
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if self.getters:
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getter = self.getters.popleft()
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getter.switch(item)
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return
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raise Full
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if not block:
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timeout = 0
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waiter = Waiter()
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item = (item, waiter)
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self.putters.append(item)
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timeout = Timeout.start_new(timeout, Full)
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try:
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if self.getters:
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self._schedule_unlock()
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result = waiter.get()
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assert result is waiter, "Invalid switch into Channel.put: %r" % (result, )
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except:
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self._discard(item)
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raise
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finally:
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timeout.cancel()
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def _discard(self, item):
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try:
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self.putters.remove(item)
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except ValueError:
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pass
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def put_nowait(self, item):
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self.put(item, False)
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def get(self, block=True, timeout=None):
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if self.hub is getcurrent():
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if self.putters:
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item, putter = self.putters.popleft()
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self.hub.loop.run_callback(putter.switch, putter)
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return item
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if not block:
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timeout = 0
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waiter = Waiter()
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timeout = Timeout.start_new(timeout, Empty)
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try:
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self.getters.append(waiter)
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if self.putters:
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self._schedule_unlock()
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return waiter.get()
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except:
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self.getters.remove(waiter)
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raise
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finally:
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timeout.cancel()
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def get_nowait(self):
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return self.get(False)
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def _unlock(self):
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while self.putters and self.getters:
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getter = self.getters.popleft()
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item, putter = self.putters.popleft()
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getter.switch(item)
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putter.switch(putter)
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def _schedule_unlock(self):
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if not self._event_unlock:
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self._event_unlock = self.hub.loop.run_callback(self._unlock)
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def __iter__(self):
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return self
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def next(self):
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result = self.get()
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if result is StopIteration:
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raise result
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return result
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