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Fix edge case where a Linearizer
could get stuck (#12358)
Just after a task acquires a contended `Linearizer` lock, it sleeps. If the task is cancelled during this sleep, we need to release the lock. Signed-off-by: Sean Quah <seanq@element.io>
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3 changed files with 53 additions and 5 deletions
1
changelog.d/12358.misc
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1
changelog.d/12358.misc
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Fix a long-standing bug where `Linearizer`s could get stuck if a cancellation were to happen at the wrong time.
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@ -453,7 +453,11 @@ class Linearizer:
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#
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#
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# This needs to happen while we hold the lock. We could put it on the
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# This needs to happen while we hold the lock. We could put it on the
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# exit path, but that would slow down the uncontended case.
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# exit path, but that would slow down the uncontended case.
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await self._clock.sleep(0)
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try:
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await self._clock.sleep(0)
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except CancelledError:
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self._release_lock(key, entry)
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raise
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return entry
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return entry
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@ -13,7 +13,9 @@
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# See the License for the specific language governing permissions and
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# See the License for the specific language governing permissions and
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# limitations under the License.
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# limitations under the License.
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from typing import Callable, Hashable, Tuple
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from typing import Hashable, Tuple
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from typing_extensions import Protocol
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from twisted.internet import defer, reactor
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from twisted.internet import defer, reactor
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from twisted.internet.base import ReactorBase
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from twisted.internet.base import ReactorBase
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@ -25,10 +27,15 @@ from synapse.util.async_helpers import Linearizer
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from tests import unittest
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from tests import unittest
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class UnblockFunction(Protocol):
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def __call__(self, pump_reactor: bool = True) -> None:
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...
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class LinearizerTestCase(unittest.TestCase):
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class LinearizerTestCase(unittest.TestCase):
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def _start_task(
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def _start_task(
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self, linearizer: Linearizer, key: Hashable
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self, linearizer: Linearizer, key: Hashable
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) -> Tuple["Deferred[None]", "Deferred[None]", Callable[[], None]]:
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) -> Tuple["Deferred[None]", "Deferred[None]", UnblockFunction]:
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"""Starts a task which acquires the linearizer lock, blocks, then completes.
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"""Starts a task which acquires the linearizer lock, blocks, then completes.
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Args:
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Args:
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@ -52,11 +59,12 @@ class LinearizerTestCase(unittest.TestCase):
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d = defer.ensureDeferred(task())
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d = defer.ensureDeferred(task())
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def unblock() -> None:
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def unblock(pump_reactor: bool = True) -> None:
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unblock_d.callback(None)
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unblock_d.callback(None)
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# The next task, if it exists, will acquire the lock and require a kick of
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# The next task, if it exists, will acquire the lock and require a kick of
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# the reactor to advance.
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# the reactor to advance.
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self._pump()
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if pump_reactor:
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self._pump()
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return d, acquired_d, unblock
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return d, acquired_d, unblock
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@ -212,3 +220,38 @@ class LinearizerTestCase(unittest.TestCase):
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)
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)
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unblock3()
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unblock3()
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self.successResultOf(d3)
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self.successResultOf(d3)
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def test_cancellation_during_sleep(self) -> None:
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"""Tests cancellation during the sleep just after waiting for a `Linearizer`."""
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linearizer = Linearizer()
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key = object()
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d1, acquired_d1, unblock1 = self._start_task(linearizer, key)
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self.assertTrue(acquired_d1.called)
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# Create a second task, waiting for the first task.
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d2, acquired_d2, _ = self._start_task(linearizer, key)
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self.assertFalse(acquired_d2.called)
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# Create a third task, waiting for the second task.
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d3, acquired_d3, unblock3 = self._start_task(linearizer, key)
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self.assertFalse(acquired_d3.called)
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# Once the first task completes, cancel the waiting second task while it is
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# sleeping just after acquiring the lock.
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unblock1(pump_reactor=False)
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self.successResultOf(d1)
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d2.cancel()
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self._pump()
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self.assertTrue(d2.called)
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self.failureResultOf(d2, CancelledError)
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# The third task should continue running.
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self.assertTrue(
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acquired_d3.called,
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"Third task did not get the lock after the second task was cancelled",
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)
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unblock3()
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self.successResultOf(d3)
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