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312 lines
13 KiB
Python
312 lines
13 KiB
Python
#!/usr/bin/env python
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#
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# Module author:
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# Tymofii A. Khodniev (thodnev) <thodnev@mail.ru>
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#
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# A library that provides a Python interface to the Telegram Bot API
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# Copyright (C) 2015-2017
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# Leandro Toledo de Souza <devs@python-telegram-bot.org>
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#
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU Lesser Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU Lesser Public License for more details.
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#
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# You should have received a copy of the GNU Lesser Public License
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# along with this program. If not, see [http://www.gnu.org/licenses/]
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"""A throughput-limiting message processor for Telegram bots."""
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from telegram.utils import promise
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import functools
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import sys
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import time
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import threading
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if sys.version_info.major > 2:
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import queue as q
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else:
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import Queue as q
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# We need to count < 1s intervals, so the most accurate timer is needed
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# Starting from Python 3.3 we have time.perf_counter which is the clock
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# with the highest resolution available to the system, so let's use it there.
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# In Python 2.7, there's no perf_counter yet, so fallback on what we have:
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# on Windows, the best available is time.clock while time.time is on
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# another platforms (M. Lutz, "Learning Python," 4ed, p.630-634)
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if sys.version_info.major == 3 and sys.version_info.minor >= 3:
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curtime = time.perf_counter # pylint: disable=E1101
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else:
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curtime = time.clock if sys.platform[:3] == 'win' else time.time
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class DelayQueueError(RuntimeError):
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"""Indicates processing errors."""
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pass
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class DelayQueue(threading.Thread):
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"""
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Processes callbacks from queue with specified throughput limits. Creates a separate thread to
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process callbacks with delays.
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Attributes:
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burst_limit (:obj:`int`): Number of maximum callbacks to process per time-window.
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time_limit (:obj:`int`): Defines width of time-window used when each processing limit is
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calculated.
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exc_route (:obj:`callable`): A callable, accepting 1 positional argument; used to route
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exceptions from processor thread to main thread;
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name (:obj:`str`): Thread's name.
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Args:
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queue (:obj:`Queue`, optional): Used to pass callbacks to thread. Creates ``Queue``
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implicitly if not provided.
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burst_limit (:obj:`int`, optional): Number of maximum callbacks to process per time-window
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defined by :attr:`time_limit_ms`. Defaults to 30.
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time_limit_ms (:obj:`int`, optional): Defines width of time-window used when each
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processing limit is calculated. Defaults to 1000.
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exc_route (:obj:`callable`, optional): A callable, accepting 1 positional argument; used to
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route exceptions from processor thread to main thread; is called on `Exception`
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subclass exceptions. If not provided, exceptions are routed through dummy handler,
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which re-raises them.
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autostart (:obj:`bool`, optional): If True, processor is started immediately after object's
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creation; if ``False``, should be started manually by `start` method. Defaults to True.
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name (:obj:`str`, optional): Thread's name. Defaults to ``'DelayQueue-N'``, where N is
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sequential number of object created.
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"""
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_instcnt = 0 # instance counter
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def __init__(self,
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queue=None,
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burst_limit=30,
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time_limit_ms=1000,
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exc_route=None,
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autostart=True,
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name=None):
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self._queue = queue if queue is not None else q.Queue()
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self.burst_limit = burst_limit
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self.time_limit = time_limit_ms / 1000
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self.exc_route = (exc_route if exc_route is not None else self._default_exception_handler)
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self.__exit_req = False # flag to gently exit thread
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self.__class__._instcnt += 1
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if name is None:
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name = '%s-%s' % (self.__class__.__name__, self.__class__._instcnt)
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super(DelayQueue, self).__init__(name=name)
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self.daemon = False
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if autostart: # immediately start processing
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super(DelayQueue, self).start()
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def run(self):
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"""
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Do not use the method except for unthreaded testing purposes, the method normally is
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automatically called by autostart argument.
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"""
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times = [] # used to store each callable processing time
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while True:
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item = self._queue.get()
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if self.__exit_req:
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return # shutdown thread
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# delay routine
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now = curtime()
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t_delta = now - self.time_limit # calculate early to improve perf.
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if times and t_delta > times[-1]:
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# if last call was before the limit time-window
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# used to impr. perf. in long-interval calls case
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times = [now]
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else:
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# collect last in current limit time-window
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times = [t for t in times if t >= t_delta]
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times.append(now)
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if len(times) >= self.burst_limit: # if throughput limit was hit
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time.sleep(times[1] - t_delta)
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# finally process one
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try:
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func, args, kwargs = item
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func(*args, **kwargs)
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except Exception as exc: # re-route any exceptions
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self.exc_route(exc) # to prevent thread exit
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def stop(self, timeout=None):
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"""Used to gently stop processor and shutdown its thread.
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Args:
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timeout (:obj:`float`): Indicates maximum time to wait for processor to stop and its
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thread to exit. If timeout exceeds and processor has not stopped, method silently
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returns. :attr:`is_alive` could be used afterwards to check the actual status.
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``timeout`` set to None, blocks until processor is shut down. Defaults to None.
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"""
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self.__exit_req = True # gently request
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self._queue.put(None) # put something to unfreeze if frozen
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super(DelayQueue, self).join(timeout=timeout)
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@staticmethod
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def _default_exception_handler(exc):
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"""
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Dummy exception handler which re-raises exception in thread. Could be possibly overwritten
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by subclasses.
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"""
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raise exc
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def __call__(self, func, *args, **kwargs):
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"""Used to process callbacks in throughput-limiting thread through queue.
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Args:
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func (:obj:`callable`): The actual function (or any callable) that is processed through
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queue.
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*args (:obj:`list`): Variable-length `func` arguments.
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**kwargs (:obj:`dict`): Arbitrary keyword-arguments to `func`.
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"""
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if not self.is_alive() or self.__exit_req:
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raise DelayQueueError('Could not process callback in stopped thread')
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self._queue.put((func, args, kwargs))
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# The most straightforward way to implement this is to use 2 sequenital delay
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# queues, like on classic delay chain schematics in electronics.
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# So, message path is:
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# msg --> group delay if group msg, else no delay --> normal msg delay --> out
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# This way OS threading scheduler cares of timings accuracy.
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# (see time.time, time.clock, time.perf_counter, time.sleep @ docs.python.org)
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class MessageQueue(object):
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"""
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Implements callback processing with proper delays to avoid hitting Telegram's message limits.
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Contains two ``DelayQueue``, for group and for all messages, interconnected in delay chain.
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Callables are processed through *group* ``DelayQueue``, then through *all* ``DelayQueue`` for
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group-type messages. For non-group messages, only the *all* ``DelayQueue`` is used.
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Args:
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all_burst_limit (:obj:`int`, optional): Number of maximum *all-type* callbacks to process
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per time-window defined by :attr:`all_time_limit_ms`. Defaults to 30.
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all_time_limit_ms (:obj:`int`, optional): Defines width of *all-type* time-window used when
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each processing limit is calculated. Defaults to 1000 ms.
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group_burst_limit (:obj:`int`, optional): Number of maximum *group-type* callbacks to
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process per time-window defined by :attr:`group_time_limit_ms`. Defaults to 20.
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group_time_limit_ms (:obj:`int`, optional): Defines width of *group-type* time-window used
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when each processing limit is calculated. Defaults to 60000 ms.
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exc_route (:obj:`callable`, optional): A callable, accepting one positional argument; used
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to route exceptions from processor threads to main thread; is called on ``Exception``
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subclass exceptions. If not provided, exceptions are routed through dummy handler,
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which re-raises them.
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autostart (:obj:`bool`, optional): If True, processors are started immediately after
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object's creation; if ``False``, should be started manually by :attr:`start` method.
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Defaults to ``True``.
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"""
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def __init__(self,
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all_burst_limit=30,
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all_time_limit_ms=1000,
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group_burst_limit=20,
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group_time_limit_ms=60000,
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exc_route=None,
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autostart=True):
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# create accoring delay queues, use composition
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self._all_delayq = DelayQueue(
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burst_limit=all_burst_limit,
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time_limit_ms=all_time_limit_ms,
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exc_route=exc_route,
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autostart=autostart)
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self._group_delayq = DelayQueue(
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burst_limit=group_burst_limit,
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time_limit_ms=group_time_limit_ms,
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exc_route=exc_route,
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autostart=autostart)
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def start(self):
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"""Method is used to manually start the ``MessageQueue`` processing."""
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self._all_delayq.start()
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self._group_delayq.start()
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def stop(self, timeout=None):
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self._group_delayq.stop(timeout=timeout)
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self._all_delayq.stop(timeout=timeout)
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stop.__doc__ = DelayQueue.stop.__doc__ or '' # reuse docsting if any
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def __call__(self, promise, is_group_msg=False):
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"""
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Processes callables in troughput-limiting queues to avoid hitting limits (specified with
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:attr:`burst_limit` and :attr:`time_limit`.
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Args:
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promise (:obj:`callable`): Mainly the ``telegram.utils.promise.Promise`` (see Notes for
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other callables), that is processed in delay queues.
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is_group_msg (:obj:`bool`, optional): Defines whether ``promise`` would be processed in
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group*+*all* ``DelayQueue``s (if set to ``True``), or only through *all*
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``DelayQueue`` (if set to ``False``), resulting in needed delays to avoid
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hitting specified limits. Defaults to ``True``.
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Notes:
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Method is designed to accept ``telegram.utils.promise.Promise`` as ``promise``
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argument, but other callables could be used too. For example, lambdas or simple
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functions could be used to wrap original func to be called with needed args. In that
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case, be sure that either wrapper func does not raise outside exceptions or the proper
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:attr:`exc_route` handler is provided.
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Returns:
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:obj:`callable`: Used as ``promise`` argument.
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"""
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if not is_group_msg: # ignore middle group delay
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self._all_delayq(promise)
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else: # use middle group delay
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self._group_delayq(self._all_delayq, promise)
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return promise
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def queuedmessage(method):
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"""A decorator to be used with :attr:`telegram.Bot` send* methods.
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Note:
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As it probably wouldn't be a good idea to make this decorator a property, it has been coded
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as decorator function, so it implies that first positional argument to wrapped MUST be
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self.
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The next object attributes are used by decorator:
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Attributes:
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self._is_messages_queued_default (:obj:`bool`): Value to provide class-defaults to
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``queued`` kwarg if not provided during wrapped method call.
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self._msg_queue (:class:`telegram.ext.messagequeue.MessageQueue`): The actual
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``MessageQueue`` used to delay outbound messages according to specified time-limits.
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Wrapped method starts accepting the next kwargs:
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Args:
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queued (:obj:`bool`, optional): If set to ``True``, the ``MessageQueue`` is used to process
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output messages. Defaults to `self._is_queued_out`.
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isgroup (:obj:`bool`, optional): If set to ``True``, the message is meant to be group-type
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(as there's no obvious way to determine its type in other way at the moment).
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Group-type messages could have additional processing delay according to limits set
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in `self._out_queue`. Defaults to ``False``.
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Returns:
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``telegram.utils.promise.Promise``: In case call is queued or original method's return
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value if it's not.
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"""
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@functools.wraps(method)
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def wrapped(self, *args, **kwargs):
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queued = kwargs.pop('queued', self._is_messages_queued_default)
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isgroup = kwargs.pop('isgroup', False)
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if queued:
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prom = promise.Promise(method, (self, ) + args, kwargs)
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return self._msg_queue(prom, isgroup)
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return method(self, *args, **kwargs)
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return wrapped
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