bpo-19270: Fixed sched.scheduler.cancel to cancel correct event (GH-22729)
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155938907c
commit
5368c2b6e2
20
Lib/sched.py
20
Lib/sched.py
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@ -26,23 +26,19 @@ has another way to reference private data (besides global variables).
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import time
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import heapq
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from collections import namedtuple
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from itertools import count
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import threading
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from time import monotonic as _time
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__all__ = ["scheduler"]
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class Event(namedtuple('Event', 'time, priority, action, argument, kwargs')):
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__slots__ = []
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def __eq__(s, o): return (s.time, s.priority) == (o.time, o.priority)
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def __lt__(s, o): return (s.time, s.priority) < (o.time, o.priority)
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def __le__(s, o): return (s.time, s.priority) <= (o.time, o.priority)
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def __gt__(s, o): return (s.time, s.priority) > (o.time, o.priority)
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def __ge__(s, o): return (s.time, s.priority) >= (o.time, o.priority)
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Event = namedtuple('Event', 'time, priority, sequence, action, argument, kwargs')
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Event.time.__doc__ = ('''Numeric type compatible with the return value of the
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timefunc function passed to the constructor.''')
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Event.priority.__doc__ = ('''Events scheduled for the same time will be executed
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in the order of their priority.''')
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Event.sequence.__doc__ = ('''A continually increasing sequence number that
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separates events if time and priority are equal.''')
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Event.action.__doc__ = ('''Executing the event means executing
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action(*argument, **kwargs)''')
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Event.argument.__doc__ = ('''argument is a sequence holding the positional
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@ -61,6 +57,7 @@ class scheduler:
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self._lock = threading.RLock()
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self.timefunc = timefunc
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self.delayfunc = delayfunc
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self._sequence_generator = count()
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def enterabs(self, time, priority, action, argument=(), kwargs=_sentinel):
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"""Enter a new event in the queue at an absolute time.
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@ -71,8 +68,10 @@ class scheduler:
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"""
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if kwargs is _sentinel:
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kwargs = {}
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event = Event(time, priority, action, argument, kwargs)
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with self._lock:
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event = Event(time, priority, next(self._sequence_generator),
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action, argument, kwargs)
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heapq.heappush(self._queue, event)
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return event # The ID
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@ -136,7 +135,8 @@ class scheduler:
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with lock:
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if not q:
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break
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time, priority, action, argument, kwargs = q[0]
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(time, priority, sequence, action,
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argument, kwargs) = q[0]
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now = timefunc()
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if time > now:
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delay = True
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@ -142,6 +142,17 @@ class TestCase(unittest.TestCase):
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self.assertTrue(q.empty())
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self.assertEqual(timer.time(), 4)
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def test_cancel_correct_event(self):
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# bpo-19270
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events = []
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scheduler = sched.scheduler()
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scheduler.enterabs(1, 1, events.append, ("a",))
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b = scheduler.enterabs(1, 1, events.append, ("b",))
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scheduler.enterabs(1, 1, events.append, ("c",))
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scheduler.cancel(b)
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scheduler.run()
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self.assertEqual(events, ["a", "c"])
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def test_empty(self):
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l = []
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fun = lambda x: l.append(x)
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@ -0,0 +1,2 @@
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:meth:`sched.scheduler.cancel()` will now cancel the correct event, if two
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events with same priority are scheduled for the same time. Patch by Bar Harel.
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