mirror of
https://git.anonymousland.org/anonymousland/synapse.git
synced 2024-10-01 11:49:51 -04:00
365 lines
13 KiB
Python
365 lines
13 KiB
Python
# Copyright 2016 OpenMarket Ltd
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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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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import logging
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from canonicaljson import encode_canonical_json
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from synapse.events import FrozenEvent, _EventInternalMetadata
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from synapse.events.snapshot import EventContext
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from synapse.handlers.room import RoomEventSource
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from synapse.replication.slave.storage.events import SlavedEventStore
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from synapse.storage.roommember import RoomsForUser
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from ._base import BaseSlavedStoreTestCase
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USER_ID = "@feeling:blue"
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USER_ID_2 = "@bright:blue"
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OUTLIER = {"outlier": True}
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ROOM_ID = "!room:blue"
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logger = logging.getLogger(__name__)
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def dict_equals(self, other):
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me = encode_canonical_json(self.get_pdu_json())
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them = encode_canonical_json(other.get_pdu_json())
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return me == them
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def patch__eq__(cls):
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eq = getattr(cls, "__eq__", None)
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cls.__eq__ = dict_equals
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def unpatch():
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if eq is not None:
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cls.__eq__ = eq
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return unpatch
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class SlavedEventStoreTestCase(BaseSlavedStoreTestCase):
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STORE_TYPE = SlavedEventStore
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def setUp(self):
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# Patch up the equality operator for events so that we can check
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# whether lists of events match using assertEquals
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self.unpatches = [patch__eq__(_EventInternalMetadata), patch__eq__(FrozenEvent)]
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return super(SlavedEventStoreTestCase, self).setUp()
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def tearDown(self):
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[unpatch() for unpatch in self.unpatches]
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def test_get_latest_event_ids_in_room(self):
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create = self.persist(type="m.room.create", key="", creator=USER_ID)
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self.replicate()
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self.check("get_latest_event_ids_in_room", (ROOM_ID,), [create.event_id])
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join = self.persist(
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type="m.room.member",
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key=USER_ID,
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membership="join",
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prev_events=[(create.event_id, {})],
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)
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self.replicate()
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self.check("get_latest_event_ids_in_room", (ROOM_ID,), [join.event_id])
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def test_redactions(self):
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self.persist(type="m.room.create", key="", creator=USER_ID)
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self.persist(type="m.room.member", key=USER_ID, membership="join")
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msg = self.persist(type="m.room.message", msgtype="m.text", body="Hello")
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self.replicate()
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self.check("get_event", [msg.event_id], msg)
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redaction = self.persist(type="m.room.redaction", redacts=msg.event_id)
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self.replicate()
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msg_dict = msg.get_dict()
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msg_dict["content"] = {}
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msg_dict["unsigned"]["redacted_by"] = redaction.event_id
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msg_dict["unsigned"]["redacted_because"] = redaction
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redacted = FrozenEvent(msg_dict, msg.internal_metadata.get_dict())
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self.check("get_event", [msg.event_id], redacted)
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def test_backfilled_redactions(self):
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self.persist(type="m.room.create", key="", creator=USER_ID)
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self.persist(type="m.room.member", key=USER_ID, membership="join")
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msg = self.persist(type="m.room.message", msgtype="m.text", body="Hello")
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self.replicate()
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self.check("get_event", [msg.event_id], msg)
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redaction = self.persist(
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type="m.room.redaction", redacts=msg.event_id, backfill=True
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)
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self.replicate()
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msg_dict = msg.get_dict()
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msg_dict["content"] = {}
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msg_dict["unsigned"]["redacted_by"] = redaction.event_id
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msg_dict["unsigned"]["redacted_because"] = redaction
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redacted = FrozenEvent(msg_dict, msg.internal_metadata.get_dict())
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self.check("get_event", [msg.event_id], redacted)
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def test_invites(self):
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self.persist(type="m.room.create", key="", creator=USER_ID)
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self.check("get_invited_rooms_for_user", [USER_ID_2], [])
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event = self.persist(type="m.room.member", key=USER_ID_2, membership="invite")
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self.replicate()
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self.check(
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"get_invited_rooms_for_user",
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[USER_ID_2],
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[
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RoomsForUser(
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ROOM_ID,
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USER_ID,
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"invite",
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event.event_id,
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event.internal_metadata.stream_ordering,
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)
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],
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)
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def test_push_actions_for_user(self):
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self.persist(type="m.room.create", key="", creator=USER_ID)
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self.persist(type="m.room.join", key=USER_ID, membership="join")
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self.persist(
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type="m.room.join", sender=USER_ID, key=USER_ID_2, membership="join"
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)
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event1 = self.persist(type="m.room.message", msgtype="m.text", body="hello")
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self.replicate()
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self.check(
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"get_unread_event_push_actions_by_room_for_user",
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[ROOM_ID, USER_ID_2, event1.event_id],
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{"highlight_count": 0, "notify_count": 0},
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)
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self.persist(
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type="m.room.message",
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msgtype="m.text",
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body="world",
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push_actions=[(USER_ID_2, ["notify"])],
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)
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self.replicate()
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self.check(
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"get_unread_event_push_actions_by_room_for_user",
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[ROOM_ID, USER_ID_2, event1.event_id],
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{"highlight_count": 0, "notify_count": 1},
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)
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self.persist(
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type="m.room.message",
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msgtype="m.text",
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body="world",
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push_actions=[
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(USER_ID_2, ["notify", {"set_tweak": "highlight", "value": True}])
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],
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)
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self.replicate()
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self.check(
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"get_unread_event_push_actions_by_room_for_user",
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[ROOM_ID, USER_ID_2, event1.event_id],
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{"highlight_count": 1, "notify_count": 2},
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)
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def test_get_rooms_for_user_with_stream_ordering(self):
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"""Check that the cache on get_rooms_for_user_with_stream_ordering is invalidated
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by rows in the events stream
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"""
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self.persist(type="m.room.create", key="", creator=USER_ID)
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self.persist(type="m.room.member", key=USER_ID, membership="join")
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self.replicate()
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self.check("get_rooms_for_user_with_stream_ordering", (USER_ID_2,), set())
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j2 = self.persist(
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type="m.room.member", sender=USER_ID_2, key=USER_ID_2, membership="join"
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)
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self.replicate()
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self.check(
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"get_rooms_for_user_with_stream_ordering",
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(USER_ID_2,),
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{(ROOM_ID, j2.internal_metadata.stream_ordering)},
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)
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def test_get_rooms_for_user_with_stream_ordering_with_multi_event_persist(self):
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"""Check that current_state invalidation happens correctly with multiple events
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in the persistence batch.
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This test attempts to reproduce a race condition between the event persistence
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loop and a worker-based Sync handler.
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The problem occurred when the master persisted several events in one batch. It
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only updates the current_state at the end of each batch, so the obvious thing
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to do is then to issue a current_state_delta stream update corresponding to the
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last stream_id in the batch.
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However, that raises the possibility that a worker will see the replication
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notification for a join event before the current_state caches are invalidated.
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The test involves:
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* creating a join and a message event for a user, and persisting them in the
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same batch
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* controlling the replication stream so that updates are sent gradually
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* between each bunch of replication updates, check that we see a consistent
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snapshot of the state.
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"""
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self.persist(type="m.room.create", key="", creator=USER_ID)
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self.persist(type="m.room.member", key=USER_ID, membership="join")
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self.replicate()
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self.check("get_rooms_for_user_with_stream_ordering", (USER_ID_2,), set())
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# limit the replication rate
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repl_transport = self.server_to_client_transport
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repl_transport.autoflush = False
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# build the join and message events and persist them in the same batch.
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logger.info("----- build test events ------")
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j2, j2ctx = self.build_event(
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type="m.room.member", sender=USER_ID_2, key=USER_ID_2, membership="join"
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)
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msg, msgctx = self.build_event()
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self.get_success(
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self.storage.persistence.persist_events([(j2, j2ctx), (msg, msgctx)])
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)
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self.replicate()
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event_source = RoomEventSource(self.hs)
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event_source.store = self.slaved_store
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current_token = self.get_success(event_source.get_current_key())
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# gradually stream out the replication
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while repl_transport.buffer:
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logger.info("------ flush ------")
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repl_transport.flush(30)
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self.pump(0)
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prev_token = current_token
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current_token = self.get_success(event_source.get_current_key())
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# attempt to replicate the behaviour of the sync handler.
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#
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# First, we get a list of the rooms we are joined to
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joined_rooms = self.get_success(
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self.slaved_store.get_rooms_for_user_with_stream_ordering(USER_ID_2)
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)
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# Then, we get a list of the events since the last sync
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membership_changes = self.get_success(
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self.slaved_store.get_membership_changes_for_user(
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USER_ID_2, prev_token, current_token
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)
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)
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logger.info(
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"%s->%s: joined_rooms=%r membership_changes=%r",
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prev_token,
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current_token,
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joined_rooms,
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membership_changes,
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)
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# the membership change is only any use to us if the room is in the
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# joined_rooms list.
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if membership_changes:
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self.assertEqual(
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joined_rooms, {(ROOM_ID, j2.internal_metadata.stream_ordering)}
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)
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event_id = 0
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def persist(self, backfill=False, **kwargs):
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"""
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Returns:
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synapse.events.FrozenEvent: The event that was persisted.
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"""
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event, context = self.build_event(**kwargs)
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if backfill:
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self.get_success(
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self.storage.persistence.persist_events(
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[(event, context)], backfilled=True
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)
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)
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else:
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self.get_success(self.storage.persistence.persist_event(event, context))
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return event
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def build_event(
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self,
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sender=USER_ID,
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room_id=ROOM_ID,
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type="m.room.message",
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key=None,
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internal={},
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state=None,
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depth=None,
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prev_events=[],
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auth_events=[],
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prev_state=[],
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redacts=None,
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push_actions=[],
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**content
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):
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if depth is None:
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depth = self.event_id
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if not prev_events:
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latest_event_ids = self.get_success(
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self.master_store.get_latest_event_ids_in_room(room_id)
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)
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prev_events = [(ev_id, {}) for ev_id in latest_event_ids]
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event_dict = {
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"sender": sender,
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"type": type,
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"content": content,
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"event_id": "$%d:blue" % (self.event_id,),
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"room_id": room_id,
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"depth": depth,
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"origin_server_ts": self.event_id,
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"prev_events": prev_events,
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"auth_events": auth_events,
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}
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if key is not None:
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event_dict["state_key"] = key
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event_dict["prev_state"] = prev_state
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if redacts is not None:
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event_dict["redacts"] = redacts
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event = FrozenEvent(event_dict, internal_metadata_dict=internal)
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self.event_id += 1
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if state is not None:
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state_ids = {key: e.event_id for key, e in state.items()}
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context = EventContext.with_state(
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state_group=None, current_state_ids=state_ids, prev_state_ids=state_ids
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)
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else:
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state_handler = self.hs.get_state_handler()
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context = self.get_success(state_handler.compute_event_context(event))
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self.master_store.add_push_actions_to_staging(
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event.event_id, {user_id: actions for user_id, actions in push_actions}
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)
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return event, context
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