2020-10-13 13:07:56 +02:00
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# Copyright 2020 The Matrix.org Foundation C.I.C.
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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 typing import Tuple
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2022-12-16 12:53:01 +01:00
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from twisted.test.proto_helpers import MemoryReactor
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2020-10-13 13:07:56 +02:00
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from synapse.api.constants import EventTypes
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from synapse.events import EventBase
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2023-02-24 22:15:29 +01:00
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from synapse.events.snapshot import EventContext, UnpersistedEventContextBase
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2020-10-13 13:07:56 +02:00
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from synapse.rest import admin
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2021-08-17 13:57:58 +02:00
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from synapse.rest.client import login, room
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2022-12-16 12:53:01 +01:00
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from synapse.server import HomeServer
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2020-10-13 13:07:56 +02:00
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from synapse.types import create_requester
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from synapse.util import Clock
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2020-10-13 13:07:56 +02:00
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from synapse.util.stringutils import random_string
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from tests import unittest
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2021-12-11 06:08:51 +01:00
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from tests.test_utils.event_injection import create_event
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logger = logging.getLogger(__name__)
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class EventCreationTestCase(unittest.HomeserverTestCase):
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servlets = [
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admin.register_servlets,
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login.register_servlets,
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room.register_servlets,
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]
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def prepare(self, reactor: MemoryReactor, clock: Clock, hs: HomeServer) -> None:
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self.handler = self.hs.get_event_creation_handler()
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persistence = self.hs.get_storage_controllers().persistence
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assert persistence is not None
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self._persist_event_storage_controller = persistence
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self.user_id = self.register_user("tester", "foobar")
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self.access_token = self.login("tester", "foobar")
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self.room_id = self.helper.create_room_as(self.user_id, tok=self.access_token)
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info = self.get_success(
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self.hs.get_datastores().main.get_user_by_access_token(
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self.access_token,
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)
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)
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assert info is not None
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self.token_id = info.token_id
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self.requester = create_requester(self.user_id, access_token_id=self.token_id)
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def _create_and_persist_member_event(self) -> Tuple[EventBase, EventContext]:
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# Create a member event we can use as an auth_event
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memberEvent, memberEventContext = self.get_success(
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create_event(
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self.hs,
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room_id=self.room_id,
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type="m.room.member",
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sender=self.requester.user.to_string(),
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state_key=self.requester.user.to_string(),
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content={"membership": "join"},
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)
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)
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self.get_success(
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self._persist_event_storage_controller.persist_event(
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memberEvent, memberEventContext
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)
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)
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return memberEvent, memberEventContext
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def _create_duplicate_event(
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self, txn_id: str
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) -> Tuple[EventBase, UnpersistedEventContextBase]:
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"""Create a new event with the given transaction ID. All events produced
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by this method will be considered duplicates.
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"""
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# We create a new event with a random body, as otherwise we'll produce
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# *exactly* the same event with the same hash, and so same event ID.
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return self.get_success(
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self.handler.create_event(
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self.requester,
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{
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"type": EventTypes.Message,
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"room_id": self.room_id,
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"sender": self.requester.user.to_string(),
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"content": {"msgtype": "m.text", "body": random_string(5)},
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},
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txn_id=txn_id,
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)
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)
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def test_duplicated_txn_id(self) -> None:
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"""Test that attempting to handle/persist an event with a transaction ID
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that has already been persisted correctly returns the old event and does
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*not* produce duplicate messages.
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"""
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txn_id = "something_suitably_random"
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event1, unpersisted_context = self._create_duplicate_event(txn_id)
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context = self.get_success(unpersisted_context.persist(event1))
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ret_event1 = self.get_success(
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self.handler.handle_new_client_event(
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self.requester,
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events_and_context=[(event1, context)],
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)
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)
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stream_id1 = ret_event1.internal_metadata.stream_ordering
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self.assertEqual(event1.event_id, ret_event1.event_id)
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event2, unpersisted_context = self._create_duplicate_event(txn_id)
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context = self.get_success(unpersisted_context.persist(event2))
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# We want to test that the deduplication at the persit event end works,
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# so we want to make sure we test with different events.
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self.assertNotEqual(event1.event_id, event2.event_id)
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ret_event2 = self.get_success(
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self.handler.handle_new_client_event(
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self.requester,
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events_and_context=[(event2, context)],
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)
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)
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stream_id2 = ret_event2.internal_metadata.stream_ordering
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# Assert that the returned values match those from the initial event
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# rather than the new one.
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self.assertEqual(ret_event1.event_id, ret_event2.event_id)
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self.assertEqual(stream_id1, stream_id2)
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# Let's test that calling `persist_event` directly also does the right
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# thing.
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event3, unpersisted_context = self._create_duplicate_event(txn_id)
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context = self.get_success(unpersisted_context.persist(event3))
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self.assertNotEqual(event1.event_id, event3.event_id)
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ret_event3, event_pos3, _ = self.get_success(
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self._persist_event_storage_controller.persist_event(event3, context)
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)
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# Assert that the returned values match those from the initial event
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# rather than the new one.
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self.assertEqual(ret_event1.event_id, ret_event3.event_id)
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self.assertEqual(stream_id1, event_pos3.stream)
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# Let's test that calling `persist_events` directly also does the right
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# thing.
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event4, unpersisted_context = self._create_duplicate_event(txn_id)
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context = self.get_success(unpersisted_context.persist(event4))
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self.assertNotEqual(event1.event_id, event3.event_id)
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events, _ = self.get_success(
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self._persist_event_storage_controller.persist_events([(event3, context)])
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)
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ret_event4 = events[0]
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# Assert that the returned values match those from the initial event
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# rather than the new one.
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self.assertEqual(ret_event1.event_id, ret_event4.event_id)
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def test_duplicated_txn_id_one_call(self) -> None:
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"""Test that we correctly handle duplicates that we try and persist at
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the same time.
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"""
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txn_id = "something_else_suitably_random"
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# Create two duplicate events to persist at the same time
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event1, unpersisted_context1 = self._create_duplicate_event(txn_id)
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context1 = self.get_success(unpersisted_context1.persist(event1))
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event2, unpersisted_context2 = self._create_duplicate_event(txn_id)
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context2 = self.get_success(unpersisted_context2.persist(event2))
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# Ensure their event IDs are different to start with
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self.assertNotEqual(event1.event_id, event2.event_id)
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events, _ = self.get_success(
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self._persist_event_storage_controller.persist_events(
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[(event1, context1), (event2, context2)]
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)
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)
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# Check that we've deduplicated the events.
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self.assertEqual(len(events), 2)
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self.assertEqual(events[0].event_id, events[1].event_id)
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def test_when_empty_prev_events_allowed_create_event_with_empty_prev_events(
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self,
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) -> None:
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"""When we set allow_no_prev_events=True, should be able to create a
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event without any prev_events (only auth_events).
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"""
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# Create a member event we can use as an auth_event
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memberEvent, _ = self._create_and_persist_member_event()
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# Try to create the event with empty prev_events bit with some auth_events
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event, _ = self.get_success(
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self.handler.create_event(
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self.requester,
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{
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"type": EventTypes.Message,
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"room_id": self.room_id,
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"sender": self.requester.user.to_string(),
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"content": {"msgtype": "m.text", "body": random_string(5)},
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},
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# Empty prev_events is the key thing we're testing here
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prev_event_ids=[],
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# But with some auth_events
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auth_event_ids=[memberEvent.event_id],
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# Allow no prev_events!
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allow_no_prev_events=True,
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)
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)
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self.assertIsNotNone(event)
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def test_when_empty_prev_events_not_allowed_reject_event_with_empty_prev_events(
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self,
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) -> None:
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"""When we set allow_no_prev_events=False, shouldn't be able to create a
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event without any prev_events even if it has auth_events. Expect an
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exception to be raised.
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"""
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# Create a member event we can use as an auth_event
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memberEvent, _ = self._create_and_persist_member_event()
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# Try to create the event with empty prev_events but with some auth_events
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self.get_failure(
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self.handler.create_event(
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self.requester,
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{
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"type": EventTypes.Message,
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"room_id": self.room_id,
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"sender": self.requester.user.to_string(),
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"content": {"msgtype": "m.text", "body": random_string(5)},
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},
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# Empty prev_events is the key thing we're testing here
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prev_event_ids=[],
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# But with some auth_events
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auth_event_ids=[memberEvent.event_id],
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# We expect the test to fail because empty prev_events are not
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# allowed here!
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allow_no_prev_events=False,
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),
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AssertionError,
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)
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def test_when_empty_prev_events_allowed_reject_event_with_empty_prev_events_and_auth_events(
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self,
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) -> None:
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"""When we set allow_no_prev_events=True, should be able to create a
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event without any prev_events or auth_events. Expect an exception to be
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raised.
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"""
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# Try to create the event with empty prev_events and empty auth_events
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self.get_failure(
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self.handler.create_event(
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self.requester,
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{
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"type": EventTypes.Message,
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"room_id": self.room_id,
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"sender": self.requester.user.to_string(),
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"content": {"msgtype": "m.text", "body": random_string(5)},
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},
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prev_event_ids=[],
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# The event should be rejected when there are no auth_events
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auth_event_ids=[],
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# Allow no prev_events!
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allow_no_prev_events=True,
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),
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AssertionError,
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)
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2020-11-03 13:13:48 +01:00
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class ServerAclValidationTestCase(unittest.HomeserverTestCase):
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servlets = [
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admin.register_servlets,
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login.register_servlets,
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room.register_servlets,
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]
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2022-12-16 12:53:01 +01:00
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def prepare(self, reactor: MemoryReactor, clock: Clock, hs: HomeServer) -> None:
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self.user_id = self.register_user("tester", "foobar")
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self.access_token = self.login("tester", "foobar")
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self.room_id = self.helper.create_room_as(self.user_id, tok=self.access_token)
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def test_allow_server_acl(self) -> None:
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"""Test that sending an ACL that blocks everyone but ourselves works."""
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self.helper.send_state(
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self.room_id,
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EventTypes.ServerACL,
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body={"allow": [self.hs.hostname]},
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tok=self.access_token,
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expect_code=200,
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)
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def test_deny_server_acl_block_outselves(self) -> None:
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2021-02-16 23:32:34 +01:00
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"""Test that sending an ACL that blocks ourselves does not work."""
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2020-11-03 13:13:48 +01:00
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self.helper.send_state(
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self.room_id,
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EventTypes.ServerACL,
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body={},
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tok=self.access_token,
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expect_code=400,
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)
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|
2022-12-16 12:53:01 +01:00
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def test_deny_redact_server_acl(self) -> None:
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2021-02-16 23:32:34 +01:00
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"""Test that attempting to redact an ACL is blocked."""
|
2020-11-03 13:13:48 +01:00
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body = self.helper.send_state(
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|
|
|
self.room_id,
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|
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EventTypes.ServerACL,
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body={"allow": [self.hs.hostname]},
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tok=self.access_token,
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|
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expect_code=200,
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)
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event_id = body["event_id"]
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# Redaction of event should fail.
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path = "/_matrix/client/r0/rooms/%s/redact/%s" % (self.room_id, event_id)
|
2020-12-15 15:44:04 +01:00
|
|
|
channel = self.make_request(
|
2020-11-03 13:13:48 +01:00
|
|
|
"POST", path, content={}, access_token=self.access_token
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|
|
|
)
|
2022-08-05 16:59:09 +02:00
|
|
|
self.assertEqual(channel.code, 403)
|