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This is a fix for presence updates silently stalling when a `/sync` request is cancelled mid-write, causing a stream ID to be leaked into `_unfinished_ids` and permanently pinning the persisted stream position. Fixes https://github.com/element-hq/synapse/issues/19800 ### Pull Request Checklist <!-- Please read https://element-hq.github.io/synapse/latest/development/contributing_guide.html before submitting your pull request --> * [x] Pull request is based on the develop branch * [x] Pull request includes a [changelog file](https://element-hq.github.io/synapse/latest/development/contributing_guide.html#changelog). The entry should: - Be a short description of your change which makes sense to users. "Fixed a bug that prevented receiving messages from other servers." instead of "Moved X method from `EventStore` to `EventWorkerStore`.". - Use markdown where necessary, mostly for `code blocks`. - End with either a period (.) or an exclamation mark (!). - Start with a capital letter. - Feel free to credit yourself, by adding a sentence "Contributed by @github_username." or "Contributed by [Your Name]." to the end of the entry. * [x] [Code style](https://element-hq.github.io/synapse/latest/code_style.html) is correct (run the [linters](https://element-hq.github.io/synapse/latest/development/contributing_guide.html#run-the-linters))
889 lines
35 KiB
Python
889 lines
35 KiB
Python
#
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# This file is licensed under the Affero General Public License (AGPL) version 3.
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#
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# Copyright 2020 The Matrix.org Foundation C.I.C.
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# Copyright (C) 2023 New Vector, Ltd
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#
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU Affero General Public License as
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# published by the Free Software Foundation, either version 3 of the
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# License, or (at your option) any later version.
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#
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# See the GNU Affero General Public License for more details:
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# <https://www.gnu.org/licenses/agpl-3.0.html>.
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#
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# Originally licensed under the Apache License, Version 2.0:
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# <http://www.apache.org/licenses/LICENSE-2.0>.
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#
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# [This file includes modifications made by New Vector Limited]
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#
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#
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from unittest import mock
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from twisted.internet.defer import CancelledError, Deferred, ensureDeferred
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from twisted.internet.testing import MemoryReactor
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from synapse.logging.context import LoggingContext, make_deferred_yieldable
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from synapse.server import HomeServer
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from synapse.storage.database import (
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DatabasePool,
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LoggingDatabaseConnection,
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LoggingTransaction,
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)
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from synapse.storage.types import Cursor
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from synapse.storage.util.id_generators import MultiWriterIdGenerator
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from synapse.storage.util.sequence import (
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LocalSequenceGenerator,
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PostgresSequenceGenerator,
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SequenceGenerator,
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)
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from synapse.util.clock import Clock
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from tests.unittest import HomeserverTestCase
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from tests.utils import USE_POSTGRES_FOR_TESTS
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class MultiWriterIdGeneratorBase(HomeserverTestCase):
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positive: bool = True
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tables: list[str] = ["foobar"]
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def prepare(self, reactor: MemoryReactor, clock: Clock, hs: HomeServer) -> None:
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self.store = hs.get_datastores().main
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self.db_pool: DatabasePool = self.store.db_pool
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self.instances: dict[str, MultiWriterIdGenerator] = {}
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self.get_success(self.db_pool.runInteraction("_setup_db", self._setup_db))
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if USE_POSTGRES_FOR_TESTS:
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self.seq_gen: SequenceGenerator = PostgresSequenceGenerator("foobar_seq")
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else:
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self.seq_gen = LocalSequenceGenerator(lambda _: 0)
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def _setup_db(self, txn: LoggingTransaction) -> None:
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if USE_POSTGRES_FOR_TESTS:
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txn.execute("CREATE SEQUENCE foobar_seq")
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for table in self.tables:
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txn.execute(
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"""
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CREATE TABLE %s (
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stream_id BIGINT NOT NULL,
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instance_name TEXT NOT NULL,
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data TEXT
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);
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"""
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% (table,)
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)
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def _create_id_generator(
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self,
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instance_name: str = "master",
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writers: list[str] | None = None,
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) -> MultiWriterIdGenerator:
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def _create(conn: LoggingDatabaseConnection) -> MultiWriterIdGenerator:
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id_gen = MultiWriterIdGenerator(
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db_conn=conn,
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db=self.db_pool,
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notifier=self.hs.get_replication_notifier(),
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stream_name="test_stream",
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server_name=self.hs.hostname,
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instance_name=instance_name,
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tables=[(table, "instance_name", "stream_id") for table in self.tables],
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sequence_name="foobar_seq",
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writers=writers or ["master"],
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positive=self.positive,
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)
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# Constructing the generator prunes stale `stream_positions` rows
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# (writers no longer in the config); commit so that persists for the
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# next generator we create.
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#
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# Note we need to commit manually here as the generator is created
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# in a `runWithConnection` call, which doesn't automatically
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# commit/rollback.
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conn.commit()
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return id_gen
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self.instances[instance_name] = self.get_success_or_raise(
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self.db_pool.runWithConnection(_create)
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)
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return self.instances[instance_name]
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def _replicate(self, instance_name: str) -> None:
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"""Similate a replication event for the given instance."""
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writer = self.instances[instance_name]
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token = writer.get_current_token_for_writer(instance_name)
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for generator in self.instances.values():
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if writer != generator:
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generator.advance(instance_name, token)
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def _replicate_all(self) -> None:
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"""Similate a replication event for all instances."""
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for instance_name in self.instances:
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self._replicate(instance_name)
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def _insert_row(
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self, instance_name: str, stream_id: int, table: str | None = None
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) -> None:
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"""Insert one row as the given instance with given stream_id."""
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if table is None:
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table = self.tables[0]
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factor = 1 if self.positive else -1
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def _insert(txn: LoggingTransaction) -> None:
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txn.execute(
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"INSERT INTO %s VALUES (?, ?)" % (table,),
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(
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stream_id,
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instance_name,
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),
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)
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txn.execute(
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"""
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INSERT INTO stream_positions VALUES ('test_stream', ?, ?)
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ON CONFLICT (stream_name, instance_name) DO UPDATE SET stream_id = ?
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""",
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(instance_name, stream_id * factor, stream_id * factor),
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)
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self.get_success(self.db_pool.runInteraction("_insert_row", _insert))
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def _insert_rows(
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self,
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instance_name: str,
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number: int,
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table: str | None = None,
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update_stream_table: bool = True,
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) -> None:
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"""Insert N rows as the given instance, inserting with stream IDs pulled
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from the postgres sequence.
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"""
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if table is None:
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table = self.tables[0]
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factor = 1 if self.positive else -1
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def _insert(txn: LoggingTransaction) -> None:
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for _ in range(number):
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next_val = self.seq_gen.get_next_id_txn(txn)
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txn.execute(
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"INSERT INTO %s (stream_id, instance_name) VALUES (?, ?)"
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% (table,),
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(next_val, instance_name),
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)
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if update_stream_table:
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txn.execute(
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"""
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INSERT INTO stream_positions VALUES ('test_stream', ?, ?)
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ON CONFLICT (stream_name, instance_name) DO UPDATE SET stream_id = ?
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""",
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(instance_name, next_val * factor, next_val * factor),
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)
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self.get_success(self.db_pool.runInteraction("_insert_rows", _insert))
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class MultiWriterIdGeneratorTestCase(MultiWriterIdGeneratorBase):
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def test_empty(self) -> None:
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"""Test an ID generator against an empty database gives sensible
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current positions.
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"""
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id_gen = self._create_id_generator()
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# The table is empty so we expect the map for positions to have a dummy
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# minimum value.
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self.assertEqual(id_gen.get_positions(), {"master": 1})
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def test_single_instance(self) -> None:
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"""Test that reads and writes from a single process are handled
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correctly.
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"""
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# Prefill table with 7 rows written by 'master'
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self._insert_rows("master", 7)
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id_gen = self._create_id_generator()
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self.assertEqual(id_gen.get_positions(), {"master": 7})
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self.assertEqual(id_gen.get_current_token_for_writer("master"), 7)
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# Try allocating a new ID gen and check that we only see position
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# advanced after we leave the context manager.
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async def _get_next_async() -> None:
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async with id_gen.get_next() as stream_id:
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self.assertEqual(stream_id, 8)
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self.assertEqual(id_gen.get_positions(), {"master": 7})
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self.assertEqual(id_gen.get_current_token_for_writer("master"), 7)
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self.get_success(_get_next_async())
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self.assertEqual(id_gen.get_positions(), {"master": 8})
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self.assertEqual(id_gen.get_current_token_for_writer("master"), 8)
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def test_cancelled_enter_does_not_wedge_position(self) -> None:
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"""Reproduces presence getting stuck.
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If the `get_next()` async context manager is cancelled while
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`__aenter__` is allocating a stream ID, the DB interaction that runs the
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sequence has already added the ID to `_unfinished_ids`, but `__aexit__`
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is never called (Python only invokes `__aexit__` if `__aenter__`
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returned). The abandoned ID is therefore leaked into `_unfinished_ids`
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forever, which permanently pins the persisted stream position: new rows
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keep getting higher IDs, but `get_current_token()` can never advance past
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`leaked_id - 1` until the process restarts.
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This mirrors a `/sync` request being cancelled part-way through
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persisting a presence update. `/sync` became `@cancellable` in #19499,
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and on a monolith the presence write in `PresenceStore.update_presence`
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is awaited inside that cancellable request scope.
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"""
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# Prefill table with 7 rows written by 'master'; position starts at 7.
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self._insert_rows("master", 7)
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id_gen = self._create_id_generator()
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self.assertEqual(id_gen.get_current_token_for_writer("master"), 7)
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# We model the cancellation at the seam it actually happens in
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# production: `__aenter__` awaits `runInteraction("_load_next_mult_id")`,
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# whose transaction runs in a thread pool and so *always* completes -
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# allocating stream ID 8 and adding it to `_unfinished_ids` - but the
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# awaiting coroutine is handed a `CancelledError` because the enclosing
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# `/sync` request was cancelled. We reproduce that by letting the real
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# interaction run (applying its side effects) and then failing the
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# awaited deferred with `CancelledError`.
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cancel_enter: "Deferred[None]" = Deferred()
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original_run_interaction = id_gen._db.runInteraction
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async def blocking_run_interaction(desc, func, *args, **kwargs): # type: ignore[no-untyped-def]
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result = await original_run_interaction(desc, func, *args, **kwargs)
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if desc == "_load_next_mult_id":
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# Stream ID 8 is now allocated and recorded in `_unfinished_ids`.
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# Deliver the cancellation here, exactly as a cancelled `/sync`
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# would land it on this `await`.
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await make_deferred_yieldable(cancel_enter)
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return result
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async def presence_like_write() -> None:
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# Mirrors `PresenceStore.update_presence`: allocate an ID and
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# "persist" under the context manager.
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with LoggingContext(name="sync", server_name=self.hs.hostname):
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async with id_gen.get_next():
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pass
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with mock.patch.object(
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id_gen._db, "runInteraction", new=blocking_run_interaction
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):
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write = ensureDeferred(presence_like_write())
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# The write is now blocked inside `__aenter__`, i.e. after stream ID
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# 8 has been allocated and added to `_unfinished_ids`.
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self.assertNoResult(write)
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# The client goes away and the `/sync` request is cancelled.
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cancel_enter.errback(CancelledError())
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# The cancellation must surface as a `CancelledError`.
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self.get_failure(write, CancelledError)
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# The cancelled write never persisted a row for ID 8, so the generator
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# must not let that abandoned ID wedge the position. A subsequent
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# *successful* write should be able to advance the persisted token.
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async def _successful_write() -> None:
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async with id_gen.get_next():
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pass
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self.get_success(_successful_write())
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# On the buggy code the token is still stuck at 7 (ID 8 is leaked in
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# `_unfinished_ids`, blocking everything behind it). Once the leak is
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# fixed, the token advances to 9: ID 8 was allocated (and abandoned) by
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# the cancelled write, so the successful write above takes ID 9.
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self.assertEqual(
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id_gen.get_current_token_for_writer("master"),
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9,
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"presence stream position is wedged by the cancelled allocation",
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)
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def test_out_of_order_finish(self) -> None:
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"""Test that IDs persisted out of order are correctly handled"""
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# Prefill table with 7 rows written by 'master'
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self._insert_rows("master", 7)
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id_gen = self._create_id_generator()
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self.assertEqual(id_gen.get_positions(), {"master": 7})
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self.assertEqual(id_gen.get_current_token_for_writer("master"), 7)
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ctx1 = id_gen.get_next()
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ctx2 = id_gen.get_next()
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ctx3 = id_gen.get_next()
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ctx4 = id_gen.get_next()
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s1 = self.get_success(ctx1.__aenter__())
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s2 = self.get_success(ctx2.__aenter__())
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s3 = self.get_success(ctx3.__aenter__())
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s4 = self.get_success(ctx4.__aenter__())
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self.assertEqual(s1, 8)
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self.assertEqual(s2, 9)
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self.assertEqual(s3, 10)
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self.assertEqual(s4, 11)
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self.assertEqual(id_gen.get_positions(), {"master": 7})
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self.assertEqual(id_gen.get_current_token_for_writer("master"), 7)
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self.get_success(ctx2.__aexit__(None, None, None))
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self.assertEqual(id_gen.get_positions(), {"master": 7})
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self.assertEqual(id_gen.get_current_token_for_writer("master"), 7)
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self.get_success(ctx1.__aexit__(None, None, None))
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self.assertEqual(id_gen.get_positions(), {"master": 9})
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self.assertEqual(id_gen.get_current_token_for_writer("master"), 9)
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self.get_success(ctx4.__aexit__(None, None, None))
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self.assertEqual(id_gen.get_positions(), {"master": 9})
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self.assertEqual(id_gen.get_current_token_for_writer("master"), 9)
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self.get_success(ctx3.__aexit__(None, None, None))
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self.assertEqual(id_gen.get_positions(), {"master": 11})
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self.assertEqual(id_gen.get_current_token_for_writer("master"), 11)
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def test_get_next_txn(self) -> None:
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"""Test that the `get_next_txn` function works correctly."""
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# Prefill table with 7 rows written by 'master'
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self._insert_rows("master", 7)
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id_gen = self._create_id_generator()
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self.assertEqual(id_gen.get_positions(), {"master": 7})
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self.assertEqual(id_gen.get_current_token_for_writer("master"), 7)
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# Try allocating a new ID gen and check that we only see position
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# advanced after we leave the context manager.
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def _get_next_txn(txn: LoggingTransaction) -> None:
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stream_id = id_gen.get_next_txn(txn)
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self.assertEqual(stream_id, 8)
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self.assertEqual(id_gen.get_positions(), {"master": 7})
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self.assertEqual(id_gen.get_current_token_for_writer("master"), 7)
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self.get_success(self.db_pool.runInteraction("test", _get_next_txn))
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self.assertEqual(id_gen.get_positions(), {"master": 8})
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self.assertEqual(id_gen.get_current_token_for_writer("master"), 8)
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def test_restart_during_out_of_order_persistence(self) -> None:
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"""Test that restarting a process while another process is writing out
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of order updates are handled correctly.
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"""
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# Prefill table with 7 rows written by 'master'
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self._insert_rows("master", 7)
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id_gen = self._create_id_generator()
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self.assertEqual(id_gen.get_positions(), {"master": 7})
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self.assertEqual(id_gen.get_current_token_for_writer("master"), 7)
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# Persist two rows at once
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ctx1 = id_gen.get_next()
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ctx2 = id_gen.get_next()
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s1 = self.get_success(ctx1.__aenter__())
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s2 = self.get_success(ctx2.__aenter__())
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self.assertEqual(s1, 8)
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self.assertEqual(s2, 9)
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self.assertEqual(id_gen.get_positions(), {"master": 7})
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self.assertEqual(id_gen.get_current_token_for_writer("master"), 7)
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# We finish persisting the second row before restart
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self.get_success(ctx2.__aexit__(None, None, None))
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# We simulate a restart of another worker by just creating a new ID gen.
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id_gen_worker = self._create_id_generator("worker")
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# Restarted worker should not see the second persisted row
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self.assertEqual(id_gen_worker.get_positions(), {"master": 7})
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self.assertEqual(id_gen_worker.get_current_token_for_writer("master"), 7)
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# Now if we persist the first row then both instances should jump ahead
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# correctly.
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self.get_success(ctx1.__aexit__(None, None, None))
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self.assertEqual(id_gen.get_positions(), {"master": 9})
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id_gen_worker.advance("master", 9)
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self.assertEqual(id_gen_worker.get_positions(), {"master": 9})
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|
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class WorkerMultiWriterIdGeneratorTestCase(MultiWriterIdGeneratorBase):
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if not USE_POSTGRES_FOR_TESTS:
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skip = "Requires Postgres"
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|
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def _insert_row_with_id(self, instance_name: str, stream_id: int) -> None:
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"""Insert one row as the given instance with given stream_id, updating
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the postgres sequence position to match.
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"""
|
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|
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def _insert(txn: LoggingTransaction) -> None:
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txn.execute(
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"INSERT INTO foobar (stream_id, instance_name) VALUES (?, ?)",
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(
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stream_id,
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instance_name,
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),
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)
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txn.execute("SELECT setval('foobar_seq', ?)", (stream_id,))
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txn.execute(
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"""
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INSERT INTO stream_positions VALUES ('test_stream', ?, ?)
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ON CONFLICT (stream_name, instance_name) DO UPDATE SET stream_id = ?
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""",
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(instance_name, stream_id, stream_id),
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)
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self.get_success(self.db_pool.runInteraction("_insert_row_with_id", _insert))
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|
|
def test_get_persisted_upto_position(self) -> None:
|
|
"""Test that `get_persisted_upto_position` correctly tracks updates to
|
|
positions.
|
|
"""
|
|
|
|
# The following tests are a bit cheeky in that we notify about new
|
|
# positions via `advance` without *actually* advancing the postgres
|
|
# sequence.
|
|
|
|
self._insert_row_with_id("first", 3)
|
|
self._insert_row_with_id("second", 5)
|
|
|
|
id_gen = self._create_id_generator("worker", writers=["first", "second"])
|
|
|
|
self.assertEqual(id_gen.get_positions(), {"first": 3, "second": 5})
|
|
|
|
# Min is 3 and there is a gap between 5, so we expect it to be 3.
|
|
self.assertEqual(id_gen.get_persisted_upto_position(), 3)
|
|
|
|
# We advance "first" straight to 6. Min is now 5 but there is no gap so
|
|
# we expect it to be 6
|
|
id_gen.advance("first", 6)
|
|
self.assertEqual(id_gen.get_persisted_upto_position(), 6)
|
|
|
|
# No gap, so we expect 7.
|
|
id_gen.advance("second", 7)
|
|
self.assertEqual(id_gen.get_persisted_upto_position(), 7)
|
|
|
|
# We haven't seen 8 yet, so we expect 7 still.
|
|
id_gen.advance("second", 9)
|
|
self.assertEqual(id_gen.get_persisted_upto_position(), 7)
|
|
|
|
# Now that we've seen 7, 8 and 9 we can got straight to 9.
|
|
id_gen.advance("first", 8)
|
|
self.assertEqual(id_gen.get_persisted_upto_position(), 9)
|
|
|
|
# Jump forward with gaps. The minimum is 11, even though we haven't seen
|
|
# 10 we know that everything before 11 must be persisted.
|
|
id_gen.advance("first", 11)
|
|
id_gen.advance("second", 15)
|
|
self.assertEqual(id_gen.get_persisted_upto_position(), 11)
|
|
|
|
def test_get_persisted_upto_position_get_next(self) -> None:
|
|
"""Test that `get_persisted_upto_position` correctly tracks updates to
|
|
positions when `get_next` is called.
|
|
"""
|
|
|
|
self._insert_row_with_id("first", 3)
|
|
self._insert_row_with_id("second", 5)
|
|
|
|
id_gen = self._create_id_generator("first", writers=["first", "second"])
|
|
|
|
# When the writer is created, it assumes its own position is the current head of
|
|
# the sequence
|
|
self.assertEqual(id_gen.get_positions(), {"first": 5, "second": 5})
|
|
|
|
self.assertEqual(id_gen.get_persisted_upto_position(), 5)
|
|
|
|
async def _get_next_async() -> None:
|
|
async with id_gen.get_next() as stream_id:
|
|
self.assertEqual(stream_id, 6)
|
|
self.assertEqual(id_gen.get_persisted_upto_position(), 5)
|
|
|
|
self.get_success(_get_next_async())
|
|
|
|
self.assertEqual(id_gen.get_persisted_upto_position(), 6)
|
|
|
|
# We assume that so long as `get_next` does correctly advance the
|
|
# `persisted_upto_position` in this case, then it will be correct in the
|
|
# other cases that are tested above (since they'll hit the same code).
|
|
|
|
def test_multi_instance(self) -> None:
|
|
"""Test that reads and writes from multiple processes are handled
|
|
correctly.
|
|
"""
|
|
self._insert_rows("first", 3)
|
|
first_id_gen = self._create_id_generator("first", writers=["first", "second"])
|
|
|
|
self._insert_rows("second", 4)
|
|
second_id_gen = self._create_id_generator("second", writers=["first", "second"])
|
|
|
|
self._replicate_all()
|
|
|
|
self.assertEqual(first_id_gen.get_positions(), {"first": 3, "second": 7})
|
|
self.assertEqual(first_id_gen.get_current_token_for_writer("first"), 7)
|
|
self.assertEqual(first_id_gen.get_current_token_for_writer("second"), 7)
|
|
|
|
self.assertEqual(second_id_gen.get_positions(), {"first": 3, "second": 7})
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("first"), 7)
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("second"), 7)
|
|
|
|
# Try allocating a new ID gen and check that we only see position
|
|
# advanced after we leave the context manager.
|
|
|
|
async def _get_next_async() -> None:
|
|
async with first_id_gen.get_next() as stream_id:
|
|
self.assertEqual(stream_id, 8)
|
|
|
|
self.assertEqual(
|
|
first_id_gen.get_positions(), {"first": 3, "second": 7}
|
|
)
|
|
self.assertEqual(
|
|
second_id_gen.get_positions(), {"first": 3, "second": 7}
|
|
)
|
|
self.assertEqual(first_id_gen.get_persisted_upto_position(), 7)
|
|
|
|
self.get_success(_get_next_async())
|
|
|
|
self.assertEqual(first_id_gen.get_positions(), {"first": 8, "second": 7})
|
|
|
|
# However the ID gen on the second instance won't have seen the update
|
|
self.assertEqual(second_id_gen.get_positions(), {"first": 3, "second": 7})
|
|
|
|
# ... but calling `get_next` on the second instance should give a unique
|
|
# stream ID
|
|
|
|
async def _get_next_async2() -> None:
|
|
async with second_id_gen.get_next() as stream_id:
|
|
self.assertEqual(stream_id, 9)
|
|
|
|
self.assertEqual(
|
|
second_id_gen.get_positions(), {"first": 3, "second": 7}
|
|
)
|
|
|
|
self.get_success(_get_next_async2())
|
|
|
|
self.assertEqual(second_id_gen.get_positions(), {"first": 3, "second": 9})
|
|
|
|
# If the second ID gen gets told about the first, it correctly updates
|
|
second_id_gen.advance("first", 8)
|
|
self.assertEqual(second_id_gen.get_positions(), {"first": 8, "second": 9})
|
|
|
|
def test_multi_instance_empty_row(self) -> None:
|
|
"""Test that reads and writes from multiple processes are handled
|
|
correctly, when one of the writers starts without any rows.
|
|
"""
|
|
# Insert some rows for two out of three of the ID gens.
|
|
self._insert_rows("first", 3)
|
|
first_id_gen = self._create_id_generator(
|
|
"first", writers=["first", "second", "third"]
|
|
)
|
|
|
|
self._insert_rows("second", 4)
|
|
second_id_gen = self._create_id_generator(
|
|
"second", writers=["first", "second", "third"]
|
|
)
|
|
third_id_gen = self._create_id_generator(
|
|
"third", writers=["first", "second", "third"]
|
|
)
|
|
|
|
self._replicate_all()
|
|
|
|
self.assertEqual(
|
|
first_id_gen.get_positions(), {"first": 3, "second": 7, "third": 7}
|
|
)
|
|
self.assertEqual(first_id_gen.get_current_token_for_writer("first"), 7)
|
|
self.assertEqual(first_id_gen.get_current_token_for_writer("second"), 7)
|
|
self.assertEqual(first_id_gen.get_current_token_for_writer("third"), 7)
|
|
|
|
self.assertEqual(
|
|
second_id_gen.get_positions(), {"first": 3, "second": 7, "third": 7}
|
|
)
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("first"), 7)
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("second"), 7)
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("third"), 7)
|
|
|
|
# Try allocating a new ID gen and check that we only see position
|
|
# advanced after we leave the context manager.
|
|
|
|
async def _get_next_async() -> None:
|
|
async with third_id_gen.get_next() as stream_id:
|
|
self.assertEqual(stream_id, 8)
|
|
|
|
self.assertEqual(
|
|
third_id_gen.get_positions(), {"first": 3, "second": 7, "third": 7}
|
|
)
|
|
self.assertEqual(third_id_gen.get_persisted_upto_position(), 7)
|
|
|
|
self.get_success(_get_next_async())
|
|
|
|
self.assertEqual(
|
|
third_id_gen.get_positions(), {"first": 3, "second": 7, "third": 8}
|
|
)
|
|
|
|
def test_writer_config_change(self) -> None:
|
|
"""Test that changing the writer config correctly works."""
|
|
|
|
self._insert_row_with_id("first", 3)
|
|
self._insert_row_with_id("second", 5)
|
|
|
|
# Initial config has two writers
|
|
id_gen = self._create_id_generator("worker", writers=["first", "second"])
|
|
self.assertEqual(id_gen.get_persisted_upto_position(), 3)
|
|
self.assertEqual(id_gen.get_current_token_for_writer("first"), 3)
|
|
self.assertEqual(id_gen.get_current_token_for_writer("second"), 5)
|
|
|
|
# New config removes one of the configs. Note that if the writer is
|
|
# removed from config we assume that it has been shut down and has
|
|
# finished persisting, hence why the persisted upto position is 5.
|
|
id_gen_2 = self._create_id_generator("second", writers=["second"])
|
|
self.assertEqual(id_gen_2.get_persisted_upto_position(), 5)
|
|
self.assertEqual(id_gen_2.get_current_token_for_writer("second"), 5)
|
|
|
|
# This config points to a single, previously unused writer.
|
|
id_gen_3 = self._create_id_generator("third", writers=["third"])
|
|
self.assertEqual(id_gen_3.get_persisted_upto_position(), 5)
|
|
|
|
# For new writers we assume their initial position to be the current
|
|
# persisted up to position. This stops Synapse from doing a full table
|
|
# scan when a new writer comes along.
|
|
self.assertEqual(id_gen_3.get_current_token_for_writer("third"), 5)
|
|
|
|
id_gen_4 = self._create_id_generator("fourth", writers=["third"])
|
|
self.assertEqual(id_gen_4.get_current_token_for_writer("third"), 5)
|
|
|
|
# Check that we get a sane next stream ID with this new config.
|
|
|
|
async def _get_next_async() -> None:
|
|
async with id_gen_3.get_next() as stream_id:
|
|
self.assertEqual(stream_id, 6)
|
|
|
|
self.get_success(_get_next_async())
|
|
self.assertEqual(id_gen_3.get_persisted_upto_position(), 6)
|
|
|
|
# If we add back the old "first" then we shouldn't see the persisted up
|
|
# to position revert back to 3.
|
|
id_gen_5 = self._create_id_generator("five", writers=["first", "third"])
|
|
self.assertEqual(id_gen_5.get_persisted_upto_position(), 6)
|
|
self.assertEqual(id_gen_5.get_current_token_for_writer("first"), 6)
|
|
self.assertEqual(id_gen_5.get_current_token_for_writer("third"), 6)
|
|
|
|
def test_sequence_consistency(self) -> None:
|
|
"""Test that we correct the sequence if the table and sequence diverges."""
|
|
|
|
# Prefill with some rows
|
|
self._insert_row_with_id("master", 3)
|
|
|
|
# Now we add a row *without* updating the stream ID
|
|
def _insert(txn: Cursor) -> None:
|
|
txn.execute("INSERT INTO foobar VALUES (26, 'master')")
|
|
|
|
self.get_success(self.db_pool.runInteraction("_insert", _insert))
|
|
|
|
# Creating the ID gen should now fix the inconsistency
|
|
id_gen = self._create_id_generator()
|
|
|
|
async def _get_next_async() -> None:
|
|
async with id_gen.get_next() as stream_id:
|
|
self.assertEqual(stream_id, 27)
|
|
|
|
self.get_success(_get_next_async())
|
|
|
|
def test_minimal_local_token(self) -> None:
|
|
self._insert_rows("first", 3)
|
|
first_id_gen = self._create_id_generator("first", writers=["first", "second"])
|
|
|
|
self._insert_rows("second", 4)
|
|
second_id_gen = self._create_id_generator("second", writers=["first", "second"])
|
|
|
|
self._replicate_all()
|
|
|
|
self.assertEqual(first_id_gen.get_positions(), {"first": 3, "second": 7})
|
|
self.assertEqual(first_id_gen.get_minimal_local_current_token(), 3)
|
|
|
|
self.assertEqual(second_id_gen.get_positions(), {"first": 3, "second": 7})
|
|
self.assertEqual(second_id_gen.get_minimal_local_current_token(), 7)
|
|
|
|
def test_current_token_gap(self) -> None:
|
|
"""Test that getting the current token for a writer returns the maximal
|
|
token when there are no writes.
|
|
"""
|
|
self._insert_rows("first", 3)
|
|
first_id_gen = self._create_id_generator(
|
|
"first", writers=["first", "second", "third"]
|
|
)
|
|
|
|
self._insert_rows("second", 4)
|
|
second_id_gen = self._create_id_generator(
|
|
"second", writers=["first", "second", "third"]
|
|
)
|
|
|
|
self._replicate_all()
|
|
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("first"), 7)
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("second"), 7)
|
|
self.assertEqual(second_id_gen.get_current_token(), 7)
|
|
|
|
# Check that the first ID gen advancing causes the second ID gen to
|
|
# advance (as the second ID gen has nothing in flight).
|
|
|
|
async def _get_next_async() -> None:
|
|
async with first_id_gen.get_next_mult(2):
|
|
pass
|
|
|
|
self.get_success(_get_next_async())
|
|
second_id_gen.advance("first", 9)
|
|
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("first"), 9)
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("second"), 9)
|
|
self.assertEqual(second_id_gen.get_current_token(), 7)
|
|
|
|
# Check that the first ID gen advancing doesn't advance the second ID
|
|
# gen when the second ID gen has stuff in flight.
|
|
self.get_success(_get_next_async())
|
|
|
|
ctxmgr = second_id_gen.get_next()
|
|
self.get_success(ctxmgr.__aenter__())
|
|
|
|
second_id_gen.advance("first", 11)
|
|
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("first"), 11)
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("second"), 9)
|
|
self.assertEqual(second_id_gen.get_current_token(), 7)
|
|
|
|
self.get_success(ctxmgr.__aexit__(None, None, None))
|
|
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("first"), 11)
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("second"), 12)
|
|
self.assertEqual(second_id_gen.get_current_token(), 7)
|
|
|
|
|
|
class BackwardsMultiWriterIdGeneratorTestCase(MultiWriterIdGeneratorBase):
|
|
"""Tests MultiWriterIdGenerator that produce *negative* stream IDs."""
|
|
|
|
if not USE_POSTGRES_FOR_TESTS:
|
|
skip = "Requires Postgres"
|
|
|
|
positive = False
|
|
|
|
def test_single_instance(self) -> None:
|
|
"""Test that reads and writes from a single process are handled
|
|
correctly.
|
|
"""
|
|
id_gen = self._create_id_generator()
|
|
|
|
async def _get_next_async() -> None:
|
|
async with id_gen.get_next() as stream_id:
|
|
self._insert_row("master", stream_id)
|
|
|
|
self.get_success(_get_next_async())
|
|
|
|
self.assertEqual(id_gen.get_positions(), {"master": -1})
|
|
self.assertEqual(id_gen.get_current_token_for_writer("master"), -1)
|
|
self.assertEqual(id_gen.get_persisted_upto_position(), -1)
|
|
|
|
async def _get_next_async2() -> None:
|
|
async with id_gen.get_next_mult(3) as stream_ids:
|
|
for stream_id in stream_ids:
|
|
self._insert_row("master", stream_id)
|
|
|
|
self.get_success(_get_next_async2())
|
|
|
|
self.assertEqual(id_gen.get_positions(), {"master": -4})
|
|
self.assertEqual(id_gen.get_current_token_for_writer("master"), -4)
|
|
self.assertEqual(id_gen.get_persisted_upto_position(), -4)
|
|
|
|
# Test loading from DB by creating a second ID gen
|
|
second_id_gen = self._create_id_generator()
|
|
|
|
self.assertEqual(second_id_gen.get_positions(), {"master": -4})
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("master"), -4)
|
|
self.assertEqual(second_id_gen.get_persisted_upto_position(), -4)
|
|
|
|
def test_multiple_instance(self) -> None:
|
|
"""Tests that having multiple instances that get advanced over
|
|
federation works corretly.
|
|
"""
|
|
id_gen_1 = self._create_id_generator("first", writers=["first", "second"])
|
|
id_gen_2 = self._create_id_generator("second", writers=["first", "second"])
|
|
|
|
async def _get_next_async() -> None:
|
|
async with id_gen_1.get_next() as stream_id:
|
|
self._insert_row("first", stream_id)
|
|
self._replicate("first")
|
|
|
|
self.get_success(_get_next_async())
|
|
|
|
self.assertEqual(id_gen_1.get_positions(), {"first": -1, "second": -1})
|
|
self.assertEqual(id_gen_2.get_positions(), {"first": -1, "second": -1})
|
|
self.assertEqual(id_gen_1.get_persisted_upto_position(), -1)
|
|
self.assertEqual(id_gen_2.get_persisted_upto_position(), -1)
|
|
|
|
async def _get_next_async2() -> None:
|
|
async with id_gen_2.get_next() as stream_id:
|
|
self._insert_row("second", stream_id)
|
|
self._replicate("second")
|
|
|
|
self.get_success(_get_next_async2())
|
|
|
|
self.assertEqual(id_gen_1.get_positions(), {"first": -1, "second": -2})
|
|
self.assertEqual(id_gen_2.get_positions(), {"first": -1, "second": -2})
|
|
self.assertEqual(id_gen_1.get_persisted_upto_position(), -2)
|
|
self.assertEqual(id_gen_2.get_persisted_upto_position(), -2)
|
|
|
|
|
|
class MultiTableMultiWriterIdGeneratorTestCase(MultiWriterIdGeneratorBase):
|
|
if not USE_POSTGRES_FOR_TESTS:
|
|
skip = "Requires Postgres"
|
|
|
|
tables = ["foobar1", "foobar2"]
|
|
|
|
def test_load_existing_stream(self) -> None:
|
|
"""Test creating ID gens with multiple tables that have rows from after
|
|
the position in `stream_positions` table.
|
|
"""
|
|
self._insert_rows("first", 3, table="foobar1")
|
|
first_id_gen = self._create_id_generator("first", writers=["first", "second"])
|
|
|
|
self._insert_rows("second", 3, table="foobar2")
|
|
self._insert_rows("second", 1, table="foobar2", update_stream_table=False)
|
|
second_id_gen = self._create_id_generator("second", writers=["first", "second"])
|
|
|
|
self._replicate_all()
|
|
|
|
self.assertEqual(first_id_gen.get_positions(), {"first": 3, "second": 7})
|
|
self.assertEqual(first_id_gen.get_current_token_for_writer("first"), 7)
|
|
self.assertEqual(first_id_gen.get_current_token_for_writer("second"), 7)
|
|
self.assertEqual(first_id_gen.get_persisted_upto_position(), 7)
|
|
|
|
self.assertEqual(second_id_gen.get_positions(), {"first": 3, "second": 7})
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("first"), 7)
|
|
self.assertEqual(second_id_gen.get_current_token_for_writer("second"), 7)
|
|
self.assertEqual(second_id_gen.get_persisted_upto_position(), 7)
|