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Catch-up after Federation Outage (split, 4): catch-up loop (#8272)
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changelog.d/8272.bugfix
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1
changelog.d/8272.bugfix
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@ -0,0 +1 @@
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Fix messages over federation being lost until an event is sent into the same room.
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@ -15,7 +15,7 @@
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# limitations under the License.
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# limitations under the License.
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import datetime
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import datetime
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import logging
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import logging
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from typing import TYPE_CHECKING, Dict, Hashable, Iterable, List, Tuple
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from typing import TYPE_CHECKING, Dict, Hashable, Iterable, List, Optional, Tuple, cast
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from prometheus_client import Counter
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from prometheus_client import Counter
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@ -92,6 +92,21 @@ class PerDestinationQueue:
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self._destination = destination
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self._destination = destination
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self.transmission_loop_running = False
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self.transmission_loop_running = False
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# True whilst we are sending events that the remote homeserver missed
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# because it was unreachable. We start in this state so we can perform
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# catch-up at startup.
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# New events will only be sent once this is finished, at which point
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# _catching_up is flipped to False.
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self._catching_up = True # type: bool
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# The stream_ordering of the most recent PDU that was discarded due to
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# being in catch-up mode.
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self._catchup_last_skipped = 0 # type: int
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# Cache of the last successfully-transmitted stream ordering for this
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# destination (we are the only updater so this is safe)
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self._last_successful_stream_ordering = None # type: Optional[int]
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# a list of pending PDUs
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# a list of pending PDUs
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self._pending_pdus = [] # type: List[EventBase]
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self._pending_pdus = [] # type: List[EventBase]
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@ -138,7 +153,13 @@ class PerDestinationQueue:
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Args:
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Args:
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pdu: pdu to send
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pdu: pdu to send
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"""
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"""
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if not self._catching_up or self._last_successful_stream_ordering is None:
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# only enqueue the PDU if we are not catching up (False) or do not
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# yet know if we have anything to catch up (None)
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self._pending_pdus.append(pdu)
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self._pending_pdus.append(pdu)
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else:
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self._catchup_last_skipped = pdu.internal_metadata.stream_ordering
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self.attempt_new_transaction()
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self.attempt_new_transaction()
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def send_presence(self, states: Iterable[UserPresenceState]) -> None:
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def send_presence(self, states: Iterable[UserPresenceState]) -> None:
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@ -218,6 +239,13 @@ class PerDestinationQueue:
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# hence why we throw the result away.
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# hence why we throw the result away.
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await get_retry_limiter(self._destination, self._clock, self._store)
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await get_retry_limiter(self._destination, self._clock, self._store)
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if self._catching_up:
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# we potentially need to catch-up first
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await self._catch_up_transmission_loop()
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if self._catching_up:
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# not caught up yet
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return
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pending_pdus = []
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pending_pdus = []
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while True:
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while True:
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# We have to keep 2 free slots for presence and rr_edus
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# We have to keep 2 free slots for presence and rr_edus
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@ -351,8 +379,9 @@ class PerDestinationQueue:
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if e.retry_interval > 60 * 60 * 1000:
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if e.retry_interval > 60 * 60 * 1000:
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# we won't retry for another hour!
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# we won't retry for another hour!
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# (this suggests a significant outage)
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# (this suggests a significant outage)
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# We drop pending PDUs and EDUs because otherwise they will
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# We drop pending EDUs because otherwise they will
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# rack up indefinitely.
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# rack up indefinitely.
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# (Dropping PDUs is already performed by `_start_catching_up`.)
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# Note that:
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# Note that:
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# - the EDUs that are being dropped here are those that we can
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# - the EDUs that are being dropped here are those that we can
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# afford to drop (specifically, only typing notifications,
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# afford to drop (specifically, only typing notifications,
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@ -364,11 +393,12 @@ class PerDestinationQueue:
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# dropping read receipts is a bit sad but should be solved
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# dropping read receipts is a bit sad but should be solved
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# through another mechanism, because this is all volatile!
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# through another mechanism, because this is all volatile!
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self._pending_pdus = []
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self._pending_edus = []
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self._pending_edus = []
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self._pending_edus_keyed = {}
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self._pending_edus_keyed = {}
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self._pending_presence = {}
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self._pending_presence = {}
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self._pending_rrs = {}
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self._pending_rrs = {}
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self._start_catching_up()
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except FederationDeniedError as e:
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except FederationDeniedError as e:
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logger.info(e)
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logger.info(e)
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except HttpResponseException as e:
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except HttpResponseException as e:
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@ -378,6 +408,8 @@ class PerDestinationQueue:
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e.code,
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e.code,
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e,
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e,
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)
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)
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self._start_catching_up()
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except RequestSendFailed as e:
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except RequestSendFailed as e:
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logger.warning(
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logger.warning(
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"TX [%s] Failed to send transaction: %s", self._destination, e
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"TX [%s] Failed to send transaction: %s", self._destination, e
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@ -387,16 +419,96 @@ class PerDestinationQueue:
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logger.info(
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logger.info(
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"Failed to send event %s to %s", p.event_id, self._destination
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"Failed to send event %s to %s", p.event_id, self._destination
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)
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)
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self._start_catching_up()
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except Exception:
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except Exception:
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logger.exception("TX [%s] Failed to send transaction", self._destination)
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logger.exception("TX [%s] Failed to send transaction", self._destination)
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for p in pending_pdus:
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for p in pending_pdus:
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logger.info(
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logger.info(
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"Failed to send event %s to %s", p.event_id, self._destination
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"Failed to send event %s to %s", p.event_id, self._destination
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)
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)
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self._start_catching_up()
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finally:
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finally:
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# We want to be *very* sure we clear this after we stop processing
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# We want to be *very* sure we clear this after we stop processing
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self.transmission_loop_running = False
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self.transmission_loop_running = False
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async def _catch_up_transmission_loop(self) -> None:
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first_catch_up_check = self._last_successful_stream_ordering is None
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if first_catch_up_check:
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# first catchup so get last_successful_stream_ordering from database
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self._last_successful_stream_ordering = await self._store.get_destination_last_successful_stream_ordering(
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self._destination
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)
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if self._last_successful_stream_ordering is None:
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# if it's still None, then this means we don't have the information
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# in our database we haven't successfully sent a PDU to this server
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# (at least since the introduction of the feature tracking
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# last_successful_stream_ordering).
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# Sadly, this means we can't do anything here as we don't know what
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# needs catching up — so catching up is futile; let's stop.
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self._catching_up = False
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return
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# get at most 50 catchup room/PDUs
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while True:
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event_ids = await self._store.get_catch_up_room_event_ids(
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self._destination, self._last_successful_stream_ordering,
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)
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if not event_ids:
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# No more events to catch up on, but we can't ignore the chance
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# of a race condition, so we check that no new events have been
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# skipped due to us being in catch-up mode
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if self._catchup_last_skipped > self._last_successful_stream_ordering:
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# another event has been skipped because we were in catch-up mode
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continue
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# we are done catching up!
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self._catching_up = False
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break
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if first_catch_up_check:
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# as this is our check for needing catch-up, we may have PDUs in
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# the queue from before we *knew* we had to do catch-up, so
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# clear those out now.
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self._start_catching_up()
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# fetch the relevant events from the event store
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# - redacted behaviour of REDACT is fine, since we only send metadata
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# of redacted events to the destination.
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# - don't need to worry about rejected events as we do not actively
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# forward received events over federation.
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catchup_pdus = await self._store.get_events_as_list(event_ids)
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if not catchup_pdus:
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raise AssertionError(
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"No events retrieved when we asked for %r. "
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"This should not happen." % event_ids
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)
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if logger.isEnabledFor(logging.INFO):
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rooms = (p.room_id for p in catchup_pdus)
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logger.info("Catching up rooms to %s: %r", self._destination, rooms)
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success = await self._transaction_manager.send_new_transaction(
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self._destination, catchup_pdus, []
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)
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if not success:
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return
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sent_transactions_counter.inc()
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final_pdu = catchup_pdus[-1]
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self._last_successful_stream_ordering = cast(
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int, final_pdu.internal_metadata.stream_ordering
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)
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await self._store.set_destination_last_successful_stream_ordering(
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self._destination, self._last_successful_stream_ordering
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)
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def _get_rr_edus(self, force_flush: bool) -> Iterable[Edu]:
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def _get_rr_edus(self, force_flush: bool) -> Iterable[Edu]:
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if not self._pending_rrs:
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if not self._pending_rrs:
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return
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return
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@ -457,3 +569,12 @@ class PerDestinationQueue:
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]
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]
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return (edus, stream_id)
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return (edus, stream_id)
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def _start_catching_up(self) -> None:
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"""
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Marks this destination as being in catch-up mode.
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This throws away the PDU queue.
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"""
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self._catching_up = True
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self._pending_pdus = []
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@ -15,7 +15,7 @@
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import logging
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import logging
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from collections import namedtuple
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from collections import namedtuple
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from typing import Iterable, Optional, Tuple
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from typing import Iterable, List, Optional, Tuple
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from canonicaljson import encode_canonical_json
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from canonicaljson import encode_canonical_json
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@ -371,3 +371,44 @@ class TransactionStore(SQLBaseStore):
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values={"last_successful_stream_ordering": last_successful_stream_ordering},
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values={"last_successful_stream_ordering": last_successful_stream_ordering},
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desc="set_last_successful_stream_ordering",
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desc="set_last_successful_stream_ordering",
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)
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)
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async def get_catch_up_room_event_ids(
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self, destination: str, last_successful_stream_ordering: int,
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) -> List[str]:
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"""
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Returns at most 50 event IDs and their corresponding stream_orderings
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that correspond to the oldest events that have not yet been sent to
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the destination.
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Args:
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destination: the destination in question
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last_successful_stream_ordering: the stream_ordering of the
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most-recently successfully-transmitted event to the destination
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Returns:
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list of event_ids
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"""
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return await self.db_pool.runInteraction(
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"get_catch_up_room_event_ids",
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self._get_catch_up_room_event_ids_txn,
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destination,
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last_successful_stream_ordering,
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)
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@staticmethod
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def _get_catch_up_room_event_ids_txn(
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txn, destination: str, last_successful_stream_ordering: int,
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) -> List[str]:
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q = """
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SELECT event_id FROM destination_rooms
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JOIN events USING (stream_ordering)
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WHERE destination = ?
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AND stream_ordering > ?
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ORDER BY stream_ordering
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LIMIT 50
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"""
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txn.execute(
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q, (destination, last_successful_stream_ordering),
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)
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event_ids = [row[0] for row in txn]
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return event_ids
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@ -1,5 +1,10 @@
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from typing import List, Tuple
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from mock import Mock
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from mock import Mock
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from synapse.events import EventBase
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from synapse.federation.sender import PerDestinationQueue, TransactionManager
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from synapse.federation.units import Edu
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from synapse.rest import admin
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from synapse.rest import admin
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from synapse.rest.client.v1 import login, room
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from synapse.rest.client.v1 import login, room
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@ -156,3 +161,163 @@ class FederationCatchUpTestCases(FederatingHomeserverTestCase):
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row_2["stream_ordering"],
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row_2["stream_ordering"],
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"Send succeeded but not marked as last_successful_stream_ordering",
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"Send succeeded but not marked as last_successful_stream_ordering",
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)
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)
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@override_config({"send_federation": True}) # critical to federate
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def test_catch_up_from_blank_state(self):
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"""
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Runs an overall test of federation catch-up from scratch.
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Further tests will focus on more narrow aspects and edge-cases, but I
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hope to provide an overall view with this test.
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"""
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# bring the other server online
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self.is_online = True
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# let's make some events for the other server to receive
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self.register_user("u1", "you the one")
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u1_token = self.login("u1", "you the one")
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room_1 = self.helper.create_room_as("u1", tok=u1_token)
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room_2 = self.helper.create_room_as("u1", tok=u1_token)
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# also critical to federate
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self.get_success(
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event_injection.inject_member_event(self.hs, room_1, "@user:host2", "join")
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)
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self.get_success(
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event_injection.inject_member_event(self.hs, room_2, "@user:host2", "join")
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)
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self.helper.send_state(
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room_1, event_type="m.room.topic", body={"topic": "wombat"}, tok=u1_token
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)
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# check: PDU received for topic event
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self.assertEqual(len(self.pdus), 1)
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self.assertEqual(self.pdus[0]["type"], "m.room.topic")
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# take the remote offline
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self.is_online = False
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# send another event
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self.helper.send(room_1, "hi user!", tok=u1_token)
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# check: things didn't go well since the remote is down
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self.assertEqual(len(self.failed_pdus), 1)
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self.assertEqual(self.failed_pdus[0]["content"]["body"], "hi user!")
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# let's delete the federation transmission queue
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# (this pretends we are starting up fresh.)
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self.assertFalse(
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self.hs.get_federation_sender()
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._per_destination_queues["host2"]
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.transmission_loop_running
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)
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del self.hs.get_federation_sender()._per_destination_queues["host2"]
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# let's also clear any backoffs
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self.get_success(
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self.hs.get_datastore().set_destination_retry_timings("host2", None, 0, 0)
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)
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# bring the remote online and clear the received pdu list
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self.is_online = True
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self.pdus = []
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# now we need to initiate a federation transaction somehow…
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# to do that, let's send another event (because it's simple to do)
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# (do it to another room otherwise the catch-up logic decides it doesn't
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# need to catch up room_1 — something I overlooked when first writing
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# this test)
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self.helper.send(room_2, "wombats!", tok=u1_token)
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# we should now have received both PDUs
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|
self.assertEqual(len(self.pdus), 2)
|
||||||
|
self.assertEqual(self.pdus[0]["content"]["body"], "hi user!")
|
||||||
|
self.assertEqual(self.pdus[1]["content"]["body"], "wombats!")
|
||||||
|
|
||||||
|
def make_fake_destination_queue(
|
||||||
|
self, destination: str = "host2"
|
||||||
|
) -> Tuple[PerDestinationQueue, List[EventBase]]:
|
||||||
|
"""
|
||||||
|
Makes a fake per-destination queue.
|
||||||
|
"""
|
||||||
|
transaction_manager = TransactionManager(self.hs)
|
||||||
|
per_dest_queue = PerDestinationQueue(self.hs, transaction_manager, destination)
|
||||||
|
results_list = []
|
||||||
|
|
||||||
|
async def fake_send(
|
||||||
|
destination_tm: str,
|
||||||
|
pending_pdus: List[EventBase],
|
||||||
|
_pending_edus: List[Edu],
|
||||||
|
) -> bool:
|
||||||
|
assert destination == destination_tm
|
||||||
|
results_list.extend(pending_pdus)
|
||||||
|
return True # success!
|
||||||
|
|
||||||
|
transaction_manager.send_new_transaction = fake_send
|
||||||
|
|
||||||
|
return per_dest_queue, results_list
|
||||||
|
|
||||||
|
@override_config({"send_federation": True})
|
||||||
|
def test_catch_up_loop(self):
|
||||||
|
"""
|
||||||
|
Tests the behaviour of _catch_up_transmission_loop.
|
||||||
|
"""
|
||||||
|
|
||||||
|
# ARRANGE:
|
||||||
|
# - a local user (u1)
|
||||||
|
# - 3 rooms which u1 is joined to (and remote user @user:host2 is
|
||||||
|
# joined to)
|
||||||
|
# - some events (1 to 5) in those rooms
|
||||||
|
# we have 'already sent' events 1 and 2 to host2
|
||||||
|
per_dest_queue, sent_pdus = self.make_fake_destination_queue()
|
||||||
|
|
||||||
|
self.register_user("u1", "you the one")
|
||||||
|
u1_token = self.login("u1", "you the one")
|
||||||
|
room_1 = self.helper.create_room_as("u1", tok=u1_token)
|
||||||
|
room_2 = self.helper.create_room_as("u1", tok=u1_token)
|
||||||
|
room_3 = self.helper.create_room_as("u1", tok=u1_token)
|
||||||
|
self.get_success(
|
||||||
|
event_injection.inject_member_event(self.hs, room_1, "@user:host2", "join")
|
||||||
|
)
|
||||||
|
self.get_success(
|
||||||
|
event_injection.inject_member_event(self.hs, room_2, "@user:host2", "join")
|
||||||
|
)
|
||||||
|
self.get_success(
|
||||||
|
event_injection.inject_member_event(self.hs, room_3, "@user:host2", "join")
|
||||||
|
)
|
||||||
|
|
||||||
|
# create some events
|
||||||
|
self.helper.send(room_1, "you hear me!!", tok=u1_token)
|
||||||
|
event_id_2 = self.helper.send(room_2, "wombats!", tok=u1_token)["event_id"]
|
||||||
|
self.helper.send(room_3, "Matrix!", tok=u1_token)
|
||||||
|
event_id_4 = self.helper.send(room_2, "rabbits!", tok=u1_token)["event_id"]
|
||||||
|
event_id_5 = self.helper.send(room_3, "Synapse!", tok=u1_token)["event_id"]
|
||||||
|
|
||||||
|
# destination_rooms should already be populated, but let us pretend that we already
|
||||||
|
# sent (successfully) up to and including event id 2
|
||||||
|
event_2 = self.get_success(self.hs.get_datastore().get_event(event_id_2))
|
||||||
|
|
||||||
|
# also fetch event 5 so we know its last_successful_stream_ordering later
|
||||||
|
event_5 = self.get_success(self.hs.get_datastore().get_event(event_id_5))
|
||||||
|
|
||||||
|
self.get_success(
|
||||||
|
self.hs.get_datastore().set_destination_last_successful_stream_ordering(
|
||||||
|
"host2", event_2.internal_metadata.stream_ordering
|
||||||
|
)
|
||||||
|
)
|
||||||
|
|
||||||
|
# ACT
|
||||||
|
self.get_success(per_dest_queue._catch_up_transmission_loop())
|
||||||
|
|
||||||
|
# ASSERT, noticing in particular:
|
||||||
|
# - event 3 not sent out, because event 5 replaces it
|
||||||
|
# - order is least recent first, so event 5 comes after event 4
|
||||||
|
# - catch-up is completed
|
||||||
|
self.assertEqual(len(sent_pdus), 2)
|
||||||
|
self.assertEqual(sent_pdus[0].event_id, event_id_4)
|
||||||
|
self.assertEqual(sent_pdus[1].event_id, event_id_5)
|
||||||
|
self.assertFalse(per_dest_queue._catching_up)
|
||||||
|
self.assertEqual(
|
||||||
|
per_dest_queue._last_successful_stream_ordering,
|
||||||
|
event_5.internal_metadata.stream_ordering,
|
||||||
|
)
|
||||||
|
@ -73,6 +73,7 @@ class TypingNotificationsTestCase(unittest.HomeserverTestCase):
|
|||||||
"delivered_txn",
|
"delivered_txn",
|
||||||
"get_received_txn_response",
|
"get_received_txn_response",
|
||||||
"set_received_txn_response",
|
"set_received_txn_response",
|
||||||
|
"get_destination_last_successful_stream_ordering",
|
||||||
"get_destination_retry_timings",
|
"get_destination_retry_timings",
|
||||||
"get_devices_by_remote",
|
"get_devices_by_remote",
|
||||||
"maybe_store_room_on_invite",
|
"maybe_store_room_on_invite",
|
||||||
@ -121,6 +122,10 @@ class TypingNotificationsTestCase(unittest.HomeserverTestCase):
|
|||||||
(0, [])
|
(0, [])
|
||||||
)
|
)
|
||||||
|
|
||||||
|
self.datastore.get_destination_last_successful_stream_ordering.return_value = make_awaitable(
|
||||||
|
None
|
||||||
|
)
|
||||||
|
|
||||||
def get_received_txn_response(*args):
|
def get_received_txn_response(*args):
|
||||||
return defer.succeed(None)
|
return defer.succeed(None)
|
||||||
|
|
||||||
|
Loading…
Reference in New Issue
Block a user