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Factor _get_missing_events_for_pdu out of _handle_new_pdu
This should be functionally identical: it just seeks to improve readability by reducing indentation.
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@ -574,68 +574,9 @@ class FederationServer(FederationBase):
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pdu.room_id, len(prevs - seen),
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)
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# We recalculate seen, since it may have changed.
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have_seen = yield self.store.have_events(prevs)
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seen = set(have_seen.keys())
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if prevs - seen:
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latest = yield self.store.get_latest_event_ids_in_room(
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pdu.room_id
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)
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# We add the prev events that we have seen to the latest
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# list to ensure the remote server doesn't give them to us
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latest = set(latest)
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latest |= seen
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logger.info(
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"Missing %d events for room %r: %r...",
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len(prevs - seen), pdu.room_id, list(prevs - seen)[:5]
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)
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# XXX: we set timeout to 10s to help workaround
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# https://github.com/matrix-org/synapse/issues/1733.
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# The reason is to avoid holding the linearizer lock
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# whilst processing inbound /send transactions, causing
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# FDs to stack up and block other inbound transactions
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# which empirically can currently take up to 30 minutes.
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#
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# N.B. this explicitly disables retry attempts.
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#
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# N.B. this also increases our chances of falling back to
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# fetching fresh state for the room if the missing event
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# can't be found, which slightly reduces our security.
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# it may also increase our DAG extremity count for the room,
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# causing additional state resolution? See #1760.
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# However, fetching state doesn't hold the linearizer lock
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# apparently.
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#
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# see https://github.com/matrix-org/synapse/pull/1744
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missing_events = yield self.get_missing_events(
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origin,
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pdu.room_id,
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earliest_events_ids=list(latest),
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latest_events=[pdu],
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limit=10,
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min_depth=min_depth,
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timeout=10000,
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)
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# We want to sort these by depth so we process them and
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# tell clients about them in order.
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missing_events.sort(key=lambda x: x.depth)
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for e in missing_events:
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yield self._handle_new_pdu(
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origin,
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e,
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get_missing=False
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)
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have_seen = yield self.store.have_events(
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[ev for ev, _ in pdu.prev_events]
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)
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yield self._get_missing_events_for_pdu(
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origin, pdu, prevs, min_depth
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)
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prevs = {e_id for e_id, _ in pdu.prev_events}
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seen = set(have_seen.keys())
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@ -667,6 +608,85 @@ class FederationServer(FederationBase):
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auth_chain=auth_chain,
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)
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@defer.inlineCallbacks
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def _get_missing_events_for_pdu(self, origin, pdu, prevs, min_depth):
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"""
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Args:
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origin (str): Origin of the pdu. Will be called to get the missing events
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pdu: received pdu
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prevs (str[]): List of event ids which we are missing
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min_depth (int): Minimum depth of events to return.
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Returns:
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Deferred<dict(str, str?)>: updated have_seen dictionary
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"""
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# We recalculate seen, since it may have changed.
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have_seen = yield self.store.have_events(prevs)
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seen = set(have_seen.keys())
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if not prevs - seen:
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# nothing left to do
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defer.returnValue(have_seen)
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latest = yield self.store.get_latest_event_ids_in_room(
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pdu.room_id
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)
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# We add the prev events that we have seen to the latest
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# list to ensure the remote server doesn't give them to us
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latest = set(latest)
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latest |= seen
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logger.info(
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"Missing %d events for room %r: %r...",
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len(prevs - seen), pdu.room_id, list(prevs - seen)[:5]
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)
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# XXX: we set timeout to 10s to help workaround
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# https://github.com/matrix-org/synapse/issues/1733.
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# The reason is to avoid holding the linearizer lock
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# whilst processing inbound /send transactions, causing
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# FDs to stack up and block other inbound transactions
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# which empirically can currently take up to 30 minutes.
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#
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# N.B. this explicitly disables retry attempts.
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#
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# N.B. this also increases our chances of falling back to
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# fetching fresh state for the room if the missing event
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# can't be found, which slightly reduces our security.
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# it may also increase our DAG extremity count for the room,
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# causing additional state resolution? See #1760.
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# However, fetching state doesn't hold the linearizer lock
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# apparently.
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#
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# see https://github.com/matrix-org/synapse/pull/1744
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missing_events = yield self.get_missing_events(
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origin,
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pdu.room_id,
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earliest_events_ids=list(latest),
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latest_events=[pdu],
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limit=10,
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min_depth=min_depth,
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timeout=10000,
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)
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# We want to sort these by depth so we process them and
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# tell clients about them in order.
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missing_events.sort(key=lambda x: x.depth)
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for e in missing_events:
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yield self._handle_new_pdu(
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origin,
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e,
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get_missing=False
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)
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have_seen = yield self.store.have_events(
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[ev for ev, _ in pdu.prev_events]
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)
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defer.returnValue(have_seen)
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def __str__(self):
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return "<ReplicationLayer(%s)>" % self.server_name
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