mirror of
https://github.com/django-q2/django-q2.git
synced 2026-09-15 13:37:56 +08:00
463 lines
16 KiB
Python
463 lines
16 KiB
Python
# Future
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from __future__ import unicode_literals
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from __future__ import print_function
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from __future__ import division
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from __future__ import absolute_import
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from builtins import range
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from future import standard_library
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standard_library.install_aliases()
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# Standard
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import importlib
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import os
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import signal
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import socket
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import sys
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import ast
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from time import sleep
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from multiprocessing import Queue, Event, Process, Value, current_process
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# external
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import arrow
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# Django
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from django.utils import timezone
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from django.utils.translation import ugettext_lazy as _
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# Local
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import signing
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import tasks
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from django_q.conf import Conf, redis_client, logger
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from django_q.models import Task, Success, Schedule
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from django_q.monitor import Status, Stat
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class Cluster(object):
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def __init__(self, list_key=Conf.Q_LIST):
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try:
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redis_client.ping()
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except Exception as e:
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logger.exception(e)
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raise e
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self.sentinel = None
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self.stop_event = None
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self.start_event = None
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self.pid = current_process().pid
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self.host = socket.gethostname()
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self.list_key = list_key
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self.timeout = Conf.TIMEOUT
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signal.signal(signal.SIGTERM, self.sig_handler)
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signal.signal(signal.SIGINT, self.sig_handler)
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def start(self):
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# This is just for PyCharm to not crash. Ignore it.
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if not hasattr(sys.stdin, 'close'):
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def dummy_close():
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pass
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sys.stdin.close = dummy_close
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# Start Sentinel
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self.stop_event = Event()
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self.start_event = Event()
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self.sentinel = Process(target=Sentinel, args=(self.stop_event, self.start_event, self.list_key, self.timeout))
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self.sentinel.start()
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logger.info(_('Q Cluster-{} starting.').format(self.pid))
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while not self.start_event.is_set():
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sleep(0.2)
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return self.pid
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def stop(self):
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if not self.sentinel.is_alive():
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return False
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logger.info(_('Q Cluster-{} stopping.').format(self.pid))
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self.stop_event.set()
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self.sentinel.join()
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logger.info(_('Q Cluster-{} has stopped.').format(self.pid))
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self.start_event = None
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self.stop_event = None
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return True
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def sig_handler(self, signum, frame):
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logger.debug(_('{} got signal {}').format(current_process().name, Conf.SIGNAL_NAMES.get(signum, 'UNKNOWN')))
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self.stop()
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@property
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def stat(self):
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if self.sentinel:
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return Stat.get(self.pid)
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return Status(self.pid)
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@property
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def is_starting(self):
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return self.stop_event and self.start_event and not self.start_event.is_set()
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@property
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def is_running(self):
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return self.stop_event and self.start_event and self.start_event.is_set()
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@property
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def is_stopping(self):
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return self.stop_event and self.start_event and self.start_event.is_set() and self.stop_event.is_set()
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@property
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def has_stopped(self):
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return self.start_event is None and self.stop_event is None and self.sentinel
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class Sentinel(object):
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def __init__(self, stop_event, start_event, list_key=Conf.Q_LIST, timeout=Conf.TIMEOUT, start=True):
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# Make sure we catch signals for the pool
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signal.signal(signal.SIGINT, signal.SIG_IGN)
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signal.signal(signal.SIGTERM, signal.SIG_DFL)
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self.pid = current_process().pid
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self.parent_pid = os.getppid()
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self.name = current_process().name
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self.list_key = list_key
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self.r = redis_client
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self.reincarnations = 0
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self.tob = timezone.now()
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self.stop_event = stop_event
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self.start_event = start_event
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self.pool_size = Conf.WORKERS
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self.pool = []
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self.timeout = timeout
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self.task_queue = Queue()
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self.result_queue = Queue()
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self.event_out = Event()
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self.monitor = Process()
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self.pusher = Process()
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if start:
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self.start()
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def start(self):
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self.spawn_cluster()
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self.guard()
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def status(self):
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if not self.start_event.is_set() and not self.stop_event.is_set():
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return Conf.STARTING
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elif self.start_event.is_set() and not self.stop_event.is_set():
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if self.result_queue.qsize() == 0 and self.task_queue.qsize() == 0:
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return Conf.IDLE
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return Conf.WORKING
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elif self.stop_event.is_set() and self.start_event.is_set():
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if self.monitor.is_alive() or self.pusher.is_alive() or len(self.pool) > 0:
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return Conf.STOPPING
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return Conf.STOPPED
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def spawn_process(self, target, *args):
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"""
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:type target: function or class
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"""
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# This is just for PyCharm to not crash. Ignore it.
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if not hasattr(sys.stdin, 'close'):
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def dummy_close():
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pass
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sys.stdin.close = dummy_close
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p = Process(target=target, args=args)
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p.daemon = True
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if target == worker:
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p.timer = args[2]
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self.pool.append(p)
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p.start()
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return p
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def spawn_pusher(self):
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return self.spawn_process(pusher, self.task_queue, self.event_out, self.list_key, self.r)
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def spawn_worker(self):
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self.spawn_process(worker, self.task_queue, self.result_queue, Value('b', -1))
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def spawn_monitor(self):
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return self.spawn_process(monitor, self.result_queue)
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def reincarnate(self, process):
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"""
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:param process: the process to reincarnate
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:type process: Process
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"""
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if process == self.monitor:
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self.monitor = self.spawn_monitor()
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logger.error(_("reincarnated monitor {} after sudden death").format(process.name))
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elif process == self.pusher:
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self.pusher = self.spawn_pusher()
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logger.error(_("reincarnated pusher {} after sudden death").format(process.name))
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else:
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self.pool.remove(process)
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self.spawn_worker()
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if self.timeout and int(process.timer.value) >= self.timeout:
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# only need to terminate on timeout, otherwise we risk destabilizing the queues
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process.terminate()
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logger.warn(_("reincarnated worker {} after timeout").format(process.name))
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elif int(process.timer.value) == -2:
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logger.info(_("recycled worker {}").format(process.name))
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else:
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logger.error(_("reincarnated worker {} after death").format(process.name))
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self.reincarnations += 1
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def spawn_cluster(self):
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self.pool = []
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Stat(self).save()
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for i in range(self.pool_size):
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self.spawn_worker()
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self.monitor = self.spawn_monitor()
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self.pusher = self.spawn_pusher()
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def guard(self):
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logger.info(_('{} guarding cluster at {}').format(current_process().name, self.pid))
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self.start_event.set()
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Stat(self).save()
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logger.info(_('Q Cluster-{} running.').format(self.parent_pid))
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scheduler(list_key=self.list_key)
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counter = 0
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# Guard loop. Runs at least once
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while not self.stop_event.is_set() or not counter:
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# Check Workers
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for p in self.pool:
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# Are you alive?
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if not p.is_alive() or (self.timeout and int(p.timer.value) >= self.timeout):
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self.reincarnate(p)
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continue
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# Increment timer if work is being done
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if p.timer.value >= 0:
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p.timer.value += 1
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# Check Monitor
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if not self.monitor.is_alive():
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self.reincarnate(self.monitor)
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# Check Pusher
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if not self.pusher.is_alive():
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self.reincarnate(self.pusher)
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# Call scheduler once a minute (or so)
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counter += 1
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if counter > 120:
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counter = 0
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scheduler(list_key=self.list_key)
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# Save current status
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Stat(self).save()
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sleep(0.5)
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self.stop()
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def stop(self):
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Stat(self).save()
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name = current_process().name
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logger.info('{} stopping cluster processes'.format(name))
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# Stopping pusher
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self.event_out.set()
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# Wait for it to stop
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while self.pusher.is_alive():
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sleep(0.2)
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Stat(self).save()
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# Put poison pills in the queue
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for _ in range(len(self.pool)):
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self.task_queue.put('STOP')
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self.task_queue.close()
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# wait for the task queue to empty
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self.task_queue.join_thread()
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# Wait for all the workers to exit
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while len(self.pool):
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for p in self.pool:
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if not p.is_alive():
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self.pool.remove(p)
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sleep(0.2)
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Stat(self).save()
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# Finally stop the monitor
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self.result_queue.put('STOP')
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self.result_queue.close()
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# Wait for the result queue to empty
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self.result_queue.join_thread()
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logger.info('{} waiting for the monitor.'.format(name))
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# Wait for everything to close or time out
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count = 0
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if not self.timeout:
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self.timeout = 30
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while self.status() == Conf.STOPPING and count < self.timeout * 5:
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sleep(0.2)
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Stat(self).save()
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count += 1
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# Final status
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Stat(self).save()
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def pusher(task_queue, e, list_key=Conf.Q_LIST, r=redis_client):
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"""
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Pulls tasks of the Redis List and puts them in the task queue
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:type task_queue: multiprocessing.Queue
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:type e: multiprocessing.Event
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:type list_key: str
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"""
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logger.info(_('{} pushing tasks at {}').format(current_process().name, current_process().pid))
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while True:
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try:
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task = r.blpop(list_key, 1)
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except Exception as e:
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logger.error(e)
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# redis probably crashed. Let the sentinel handle it.
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sleep(10)
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break
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if task:
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task = task[1]
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task_queue.put(task)
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logger.debug(_('queueing {}').format(task))
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if e.is_set():
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break
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logger.info(_("{} stopped pushing tasks").format(current_process().name))
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def monitor(result_queue):
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"""
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Gets finished tasks from the result queue and saves them to Django
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:type result_queue: multiprocessing.Queue
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"""
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name = current_process().name
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logger.info(_("{} monitoring at {}").format(name, current_process().pid))
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for task in iter(result_queue.get, 'STOP'):
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save_task(task)
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if task['success']:
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logger.info(_("Processed [{}]").format(task['name']))
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else:
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logger.error(_("Failed [{}] - {}").format(task['name'], task['result']))
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logger.info(_("{} stopped monitoring results").format(name))
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def worker(task_queue, result_queue, timer):
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"""
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Takes a task from the task queue, tries to execute it and puts the result back in the result queue
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:type task_queue: multiprocessing.Queue
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:type result_queue: multiprocessing.Queue
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:type timer: multiprocessing.Value
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"""
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name = current_process().name
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logger.info(_('{} ready for work at {}').format(name, current_process().pid))
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task_count = 0
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# Start reading the task queue
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for pack in iter(task_queue.get, 'STOP'):
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result = None
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timer.value = -1 # Idle
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task_count += 1
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# unpickle the task
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try:
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task = signing.SignedPackage.loads(pack)
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except (TypeError, signing.BadSignature) as e:
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logger.error(e)
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continue
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# Get the function from the task
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logger.info(_('{} processing [{}]').format(name, task['name']))
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f = task['func']
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# if it's not an instance try to get it from the string
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if not callable(task['func']):
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try:
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module, func = f.rsplit('.', 1)
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m = importlib.import_module(module)
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f = getattr(m, func)
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except (ValueError, ImportError, AttributeError) as e:
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result = (e, False)
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# We're still going
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if not result:
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# execute the payload
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timer.value = 0 # Busy
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try:
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res = f(*task['args'], **task['kwargs'])
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result = (res, True)
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except Exception as e:
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result = (e, False)
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# Process result
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task['result'] = result[0]
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task['success'] = result[1]
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task['stopped'] = timezone.now()
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result_queue.put(task)
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timer.value = -1 # Idle
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# Recycle
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if task_count == Conf.RECYCLE:
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timer.value = -2
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break
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logger.info(_('{} stopped doing work').format(name))
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def save_task(task):
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"""
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Saves the task package to Django
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"""
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# SAVE LIMIT < 0 : Don't save success
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if Conf.SAVE_LIMIT < 0 and task['success']:
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return
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# SAVE LIMIT > 0: Prune database, SAVE_LIMIT 0: No pruning
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if task['success'] and 0 < Conf.SAVE_LIMIT < Success.objects.count():
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Success.objects.last().delete()
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try:
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Task.objects.create(id=task['id'],
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name=task['name'],
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func=task['func'],
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hook=task['hook'],
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args=task['args'],
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kwargs=task['kwargs'],
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started=task['started'],
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stopped=task['stopped'],
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result=task['result'],
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success=task['success'])
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except Exception as e:
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logger.error(e)
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def scheduler(list_key=Conf.Q_LIST):
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"""
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Creates a task from a schedule at the scheduled time and schedules next run
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"""
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for s in Schedule.objects.exclude(repeats=0).filter(next_run__lt=timezone.now()):
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args = ()
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kwargs = {}
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# get args, kwargs and hook
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if s.kwargs:
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try:
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# eval should be safe here cause dict()
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kwargs = eval('dict({})'.format(s.kwargs))
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except SyntaxError:
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kwargs = {}
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if s.args:
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args = ast.literal_eval(s.args)
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# single value won't eval to tuple, so:
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if type(args) != tuple:
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args = (args,)
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if s.hook:
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kwargs['hook'] = s.hook
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# set up the next run time
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if not s.schedule_type == s.ONCE:
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next_run = arrow.get(s.next_run)
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if s.schedule_type == s.HOURLY:
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next_run = next_run.replace(hours=+1)
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elif s.schedule_type == s.DAILY:
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next_run = next_run.replace(days=+1)
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elif s.schedule_type == s.WEEKLY:
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next_run = next_run.replace(weeks=+1)
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elif s.schedule_type == s.MONTHLY:
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next_run = next_run.replace(months=+1)
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elif s.schedule_type == s.QUARTERLY:
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next_run = next_run.replace(months=+3)
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elif s.schedule_type == s.YEARLY:
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next_run = next_run.replace(years=+1)
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s.next_run = next_run.datetime
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s.repeats += -1
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# send it to the cluster
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kwargs['list_key'] = list_key
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s.task = tasks.async(s.func, *args, **kwargs)
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# log it
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if not s.task:
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logger.error(_('{} failed to create a task from schedule {} [{}]').format(current_process().name, s.id),
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s.func)
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else:
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logger.info(_('{} created a task from schedule {} [{}]').format(current_process().name, s.id, s.func))
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# default behavior is to delete a ONCE schedule
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if s.schedule_type == s.ONCE:
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if s.repeats < 0:
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s.delete()
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return
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# but not if it has a positive repeats
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s.repeats = 0
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# save the schedule
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s.save()
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