mirror of
https://git.anonymousland.org/anonymousland/synapse-product.git
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755 lines
26 KiB
Python
755 lines
26 KiB
Python
# Copyright 2019 New Vector 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 typing import (
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TYPE_CHECKING,
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Collection,
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Dict,
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Iterable,
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List,
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Optional,
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Tuple,
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Union,
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cast,
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)
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import attr
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from frozendict import frozendict
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from synapse.api.constants import RelationTypes
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from synapse.events import EventBase
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from synapse.storage._base import SQLBaseStore
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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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make_in_list_sql_clause,
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)
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from synapse.storage.databases.main.stream import generate_pagination_where_clause
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from synapse.storage.engines import PostgresEngine
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from synapse.storage.relations import (
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AggregationPaginationToken,
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PaginationChunk,
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RelationPaginationToken,
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)
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from synapse.types import JsonDict
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from synapse.util.caches.descriptors import cached, cachedList
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if TYPE_CHECKING:
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from synapse.server import HomeServer
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logger = logging.getLogger(__name__)
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@attr.s(slots=True, frozen=True, auto_attribs=True)
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class _ThreadAggregation:
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latest_event: EventBase
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count: int
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current_user_participated: bool
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@attr.s(slots=True, auto_attribs=True)
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class BundledAggregations:
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"""
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The bundled aggregations for an event.
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Some values require additional processing during serialization.
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"""
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annotations: Optional[JsonDict] = None
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references: Optional[JsonDict] = None
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replace: Optional[EventBase] = None
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thread: Optional[_ThreadAggregation] = None
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def __bool__(self) -> bool:
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return bool(self.annotations or self.references or self.replace or self.thread)
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class RelationsWorkerStore(SQLBaseStore):
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def __init__(
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self,
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database: DatabasePool,
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db_conn: LoggingDatabaseConnection,
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hs: "HomeServer",
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):
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super().__init__(database, db_conn, hs)
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self._msc3440_enabled = hs.config.experimental.msc3440_enabled
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@cached(tree=True)
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async def get_relations_for_event(
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self,
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event_id: str,
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room_id: str,
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relation_type: Optional[str] = None,
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event_type: Optional[str] = None,
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aggregation_key: Optional[str] = None,
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limit: int = 5,
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direction: str = "b",
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from_token: Optional[RelationPaginationToken] = None,
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to_token: Optional[RelationPaginationToken] = None,
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) -> PaginationChunk:
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"""Get a list of relations for an event, ordered by topological ordering.
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Args:
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event_id: Fetch events that relate to this event ID.
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room_id: The room the event belongs to.
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relation_type: Only fetch events with this relation type, if given.
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event_type: Only fetch events with this event type, if given.
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aggregation_key: Only fetch events with this aggregation key, if given.
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limit: Only fetch the most recent `limit` events.
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direction: Whether to fetch the most recent first (`"b"`) or the
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oldest first (`"f"`).
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from_token: Fetch rows from the given token, or from the start if None.
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to_token: Fetch rows up to the given token, or up to the end if None.
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Returns:
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List of event IDs that match relations requested. The rows are of
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the form `{"event_id": "..."}`.
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"""
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where_clause = ["relates_to_id = ?", "room_id = ?"]
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where_args: List[Union[str, int]] = [event_id, room_id]
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if relation_type is not None:
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where_clause.append("relation_type = ?")
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where_args.append(relation_type)
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if event_type is not None:
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where_clause.append("type = ?")
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where_args.append(event_type)
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if aggregation_key:
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where_clause.append("aggregation_key = ?")
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where_args.append(aggregation_key)
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pagination_clause = generate_pagination_where_clause(
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direction=direction,
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column_names=("topological_ordering", "stream_ordering"),
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from_token=attr.astuple(from_token) if from_token else None, # type: ignore[arg-type]
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to_token=attr.astuple(to_token) if to_token else None, # type: ignore[arg-type]
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engine=self.database_engine,
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)
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if pagination_clause:
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where_clause.append(pagination_clause)
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if direction == "b":
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order = "DESC"
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else:
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order = "ASC"
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sql = """
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SELECT event_id, topological_ordering, stream_ordering
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FROM event_relations
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INNER JOIN events USING (event_id)
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WHERE %s
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ORDER BY topological_ordering %s, stream_ordering %s
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LIMIT ?
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""" % (
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" AND ".join(where_clause),
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order,
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order,
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)
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def _get_recent_references_for_event_txn(
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txn: LoggingTransaction,
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) -> PaginationChunk:
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txn.execute(sql, where_args + [limit + 1])
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last_topo_id = None
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last_stream_id = None
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events = []
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for row in txn:
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events.append({"event_id": row[0]})
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last_topo_id = row[1]
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last_stream_id = row[2]
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next_batch = None
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if len(events) > limit and last_topo_id and last_stream_id:
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next_batch = RelationPaginationToken(last_topo_id, last_stream_id)
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return PaginationChunk(
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chunk=list(events[:limit]), next_batch=next_batch, prev_batch=from_token
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)
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return await self.db_pool.runInteraction(
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"get_recent_references_for_event", _get_recent_references_for_event_txn
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)
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async def event_includes_relation(self, event_id: str) -> bool:
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"""Check if the given event relates to another event.
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An event has a relation if it has a valid m.relates_to with a rel_type
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and event_id in the content:
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{
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"content": {
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"m.relates_to": {
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"rel_type": "m.replace",
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"event_id": "$other_event_id"
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}
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}
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}
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Args:
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event_id: The event to check.
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Returns:
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True if the event includes a valid relation.
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"""
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result = await self.db_pool.simple_select_one_onecol(
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table="event_relations",
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keyvalues={"event_id": event_id},
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retcol="event_id",
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allow_none=True,
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desc="event_includes_relation",
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)
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return result is not None
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async def event_is_target_of_relation(self, parent_id: str) -> bool:
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"""Check if the given event is the target of another event's relation.
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An event is the target of an event relation if it has a valid
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m.relates_to with a rel_type and event_id pointing to parent_id in the
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content:
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{
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"content": {
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"m.relates_to": {
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"rel_type": "m.replace",
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"event_id": "$parent_id"
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}
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}
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}
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Args:
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parent_id: The event to check.
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Returns:
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True if the event is the target of another event's relation.
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"""
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result = await self.db_pool.simple_select_one_onecol(
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table="event_relations",
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keyvalues={"relates_to_id": parent_id},
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retcol="event_id",
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allow_none=True,
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desc="event_is_target_of_relation",
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)
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return result is not None
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@cached(tree=True)
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async def get_aggregation_groups_for_event(
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self,
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event_id: str,
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room_id: str,
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event_type: Optional[str] = None,
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limit: int = 5,
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direction: str = "b",
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from_token: Optional[AggregationPaginationToken] = None,
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to_token: Optional[AggregationPaginationToken] = None,
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) -> PaginationChunk:
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"""Get a list of annotations on the event, grouped by event type and
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aggregation key, sorted by count.
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This is used e.g. to get the what and how many reactions have happend
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on an event.
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Args:
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event_id: Fetch events that relate to this event ID.
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room_id: The room the event belongs to.
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event_type: Only fetch events with this event type, if given.
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limit: Only fetch the `limit` groups.
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direction: Whether to fetch the highest count first (`"b"`) or
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the lowest count first (`"f"`).
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from_token: Fetch rows from the given token, or from the start if None.
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to_token: Fetch rows up to the given token, or up to the end if None.
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Returns:
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List of groups of annotations that match. Each row is a dict with
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`type`, `key` and `count` fields.
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"""
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where_clause = ["relates_to_id = ?", "room_id = ?", "relation_type = ?"]
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where_args: List[Union[str, int]] = [
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event_id,
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room_id,
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RelationTypes.ANNOTATION,
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]
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if event_type:
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where_clause.append("type = ?")
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where_args.append(event_type)
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having_clause = generate_pagination_where_clause(
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direction=direction,
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column_names=("COUNT(*)", "MAX(stream_ordering)"),
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from_token=attr.astuple(from_token) if from_token else None, # type: ignore[arg-type]
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to_token=attr.astuple(to_token) if to_token else None, # type: ignore[arg-type]
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engine=self.database_engine,
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)
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if direction == "b":
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order = "DESC"
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else:
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order = "ASC"
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if having_clause:
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having_clause = "HAVING " + having_clause
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else:
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having_clause = ""
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sql = """
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SELECT type, aggregation_key, COUNT(DISTINCT sender), MAX(stream_ordering)
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FROM event_relations
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INNER JOIN events USING (event_id)
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WHERE {where_clause}
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GROUP BY relation_type, type, aggregation_key
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{having_clause}
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ORDER BY COUNT(*) {order}, MAX(stream_ordering) {order}
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LIMIT ?
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""".format(
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where_clause=" AND ".join(where_clause),
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order=order,
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having_clause=having_clause,
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)
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def _get_aggregation_groups_for_event_txn(
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txn: LoggingTransaction,
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) -> PaginationChunk:
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txn.execute(sql, where_args + [limit + 1])
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next_batch = None
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events = []
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for row in txn:
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events.append({"type": row[0], "key": row[1], "count": row[2]})
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next_batch = AggregationPaginationToken(row[2], row[3])
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if len(events) <= limit:
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next_batch = None
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return PaginationChunk(
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chunk=list(events[:limit]), next_batch=next_batch, prev_batch=from_token
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)
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return await self.db_pool.runInteraction(
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"get_aggregation_groups_for_event", _get_aggregation_groups_for_event_txn
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)
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@cached()
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def get_applicable_edit(self, event_id: str) -> Optional[EventBase]:
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raise NotImplementedError()
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@cachedList(cached_method_name="get_applicable_edit", list_name="event_ids")
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async def _get_applicable_edits(
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self, event_ids: Collection[str]
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) -> Dict[str, Optional[EventBase]]:
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"""Get the most recent edit (if any) that has happened for the given
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events.
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Correctly handles checking whether edits were allowed to happen.
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Args:
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event_ids: The original event IDs
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Returns:
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A map of the most recent edit for each event. If there are no edits,
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the event will map to None.
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"""
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# We only allow edits for `m.room.message` events that have the same sender
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# and event type. We can't assert these things during regular event auth so
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# we have to do the checks post hoc.
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# Fetches latest edit that has the same type and sender as the
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# original, and is an `m.room.message`.
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if isinstance(self.database_engine, PostgresEngine):
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# The `DISTINCT ON` clause will pick the *first* row it encounters,
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# so ordering by origin server ts + event ID desc will ensure we get
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# the latest edit.
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sql = """
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SELECT DISTINCT ON (original.event_id) original.event_id, edit.event_id FROM events AS edit
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INNER JOIN event_relations USING (event_id)
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INNER JOIN events AS original ON
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original.event_id = relates_to_id
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AND edit.type = original.type
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AND edit.sender = original.sender
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AND edit.room_id = original.room_id
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WHERE
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%s
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AND relation_type = ?
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AND edit.type = 'm.room.message'
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ORDER by original.event_id DESC, edit.origin_server_ts DESC, edit.event_id DESC
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"""
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else:
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# SQLite uses a simplified query which returns all edits for an
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# original event. The results are then de-duplicated when turned into
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# a dict. Due to the chosen ordering, the latest edit stomps on
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# earlier edits.
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sql = """
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SELECT original.event_id, edit.event_id FROM events AS edit
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INNER JOIN event_relations USING (event_id)
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INNER JOIN events AS original ON
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original.event_id = relates_to_id
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AND edit.type = original.type
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AND edit.sender = original.sender
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AND edit.room_id = original.room_id
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WHERE
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%s
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AND relation_type = ?
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AND edit.type = 'm.room.message'
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ORDER by edit.origin_server_ts, edit.event_id
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"""
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def _get_applicable_edits_txn(txn: LoggingTransaction) -> Dict[str, str]:
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clause, args = make_in_list_sql_clause(
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txn.database_engine, "relates_to_id", event_ids
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)
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args.append(RelationTypes.REPLACE)
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txn.execute(sql % (clause,), args)
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return dict(cast(Iterable[Tuple[str, str]], txn.fetchall()))
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edit_ids = await self.db_pool.runInteraction(
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"get_applicable_edits", _get_applicable_edits_txn
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)
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edits = await self.get_events(edit_ids.values()) # type: ignore[attr-defined]
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# Map to the original event IDs to the edit events.
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#
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# There might not be an edit event due to there being no edits or
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# due to the event not being known, either case is treated the same.
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return {
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original_event_id: edits.get(edit_ids.get(original_event_id))
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for original_event_id in event_ids
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}
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@cached()
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async def get_thread_summary(
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self, event_id: str, room_id: str
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) -> Tuple[int, Optional[EventBase]]:
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"""Get the number of threaded replies and the latest reply (if any) for the given event.
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Args:
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event_id: Summarize the thread related to this event ID.
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room_id: The room the event belongs to.
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Returns:
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The number of items in the thread and the most recent response, if any.
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"""
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def _get_thread_summary_txn(
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txn: LoggingTransaction,
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) -> Tuple[int, Optional[str]]:
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# Fetch the latest event ID in the thread.
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# TODO Should this only allow m.room.message events.
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sql = """
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SELECT event_id
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FROM event_relations
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INNER JOIN events USING (event_id)
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WHERE
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relates_to_id = ?
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AND room_id = ?
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AND relation_type = ?
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ORDER BY topological_ordering DESC, stream_ordering DESC
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LIMIT 1
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"""
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txn.execute(sql, (event_id, room_id, RelationTypes.THREAD))
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row = txn.fetchone()
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if row is None:
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return 0, None
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latest_event_id = row[0]
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# Fetch the number of threaded replies.
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sql = """
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SELECT COUNT(event_id)
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FROM event_relations
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INNER JOIN events USING (event_id)
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WHERE
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relates_to_id = ?
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AND room_id = ?
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AND relation_type = ?
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"""
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txn.execute(sql, (event_id, room_id, RelationTypes.THREAD))
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count = cast(Tuple[int], txn.fetchone())[0]
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return count, latest_event_id
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count, latest_event_id = await self.db_pool.runInteraction(
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"get_thread_summary", _get_thread_summary_txn
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)
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latest_event = None
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if latest_event_id:
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latest_event = await self.get_event(latest_event_id, allow_none=True) # type: ignore[attr-defined]
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return count, latest_event
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@cached()
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async def get_thread_participated(
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self, event_id: str, room_id: str, user_id: str
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) -> bool:
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"""Get whether the requesting user participated in a thread.
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This is separate from get_thread_summary since that can be cached across
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all users while this value is specific to the requeser.
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Args:
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event_id: The thread related to this event ID.
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room_id: The room the event belongs to.
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user_id: The user requesting the summary.
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Returns:
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True if the requesting user participated in the thread, otherwise false.
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"""
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def _get_thread_summary_txn(txn: LoggingTransaction) -> bool:
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# Fetch whether the requester has participated or not.
|
|
sql = """
|
|
SELECT 1
|
|
FROM event_relations
|
|
INNER JOIN events USING (event_id)
|
|
WHERE
|
|
relates_to_id = ?
|
|
AND room_id = ?
|
|
AND relation_type = ?
|
|
AND sender = ?
|
|
"""
|
|
|
|
txn.execute(sql, (event_id, room_id, RelationTypes.THREAD, user_id))
|
|
return bool(txn.fetchone())
|
|
|
|
return await self.db_pool.runInteraction(
|
|
"get_thread_summary", _get_thread_summary_txn
|
|
)
|
|
|
|
async def events_have_relations(
|
|
self,
|
|
parent_ids: List[str],
|
|
relation_senders: Optional[List[str]],
|
|
relation_types: Optional[List[str]],
|
|
) -> List[str]:
|
|
"""Check which events have a relationship from the given senders of the
|
|
given types.
|
|
|
|
Args:
|
|
parent_ids: The events being annotated
|
|
relation_senders: The relation senders to check.
|
|
relation_types: The relation types to check.
|
|
|
|
Returns:
|
|
True if the event has at least one relationship from one of the given senders of the given type.
|
|
"""
|
|
# If no restrictions are given then the event has the required relations.
|
|
if not relation_senders and not relation_types:
|
|
return parent_ids
|
|
|
|
sql = """
|
|
SELECT relates_to_id FROM event_relations
|
|
INNER JOIN events USING (event_id)
|
|
WHERE
|
|
%s;
|
|
"""
|
|
|
|
def _get_if_events_have_relations(txn) -> List[str]:
|
|
clauses: List[str] = []
|
|
clause, args = make_in_list_sql_clause(
|
|
txn.database_engine, "relates_to_id", parent_ids
|
|
)
|
|
clauses.append(clause)
|
|
|
|
if relation_senders:
|
|
clause, temp_args = make_in_list_sql_clause(
|
|
txn.database_engine, "sender", relation_senders
|
|
)
|
|
clauses.append(clause)
|
|
args.extend(temp_args)
|
|
if relation_types:
|
|
clause, temp_args = make_in_list_sql_clause(
|
|
txn.database_engine, "relation_type", relation_types
|
|
)
|
|
clauses.append(clause)
|
|
args.extend(temp_args)
|
|
|
|
txn.execute(sql % " AND ".join(clauses), args)
|
|
|
|
return [row[0] for row in txn]
|
|
|
|
return await self.db_pool.runInteraction(
|
|
"get_if_events_have_relations", _get_if_events_have_relations
|
|
)
|
|
|
|
async def has_user_annotated_event(
|
|
self, parent_id: str, event_type: str, aggregation_key: str, sender: str
|
|
) -> bool:
|
|
"""Check if a user has already annotated an event with the same key
|
|
(e.g. already liked an event).
|
|
|
|
Args:
|
|
parent_id: The event being annotated
|
|
event_type: The event type of the annotation
|
|
aggregation_key: The aggregation key of the annotation
|
|
sender: The sender of the annotation
|
|
|
|
Returns:
|
|
True if the event is already annotated.
|
|
"""
|
|
|
|
sql = """
|
|
SELECT 1 FROM event_relations
|
|
INNER JOIN events USING (event_id)
|
|
WHERE
|
|
relates_to_id = ?
|
|
AND relation_type = ?
|
|
AND type = ?
|
|
AND sender = ?
|
|
AND aggregation_key = ?
|
|
LIMIT 1;
|
|
"""
|
|
|
|
def _get_if_user_has_annotated_event(txn: LoggingTransaction) -> bool:
|
|
txn.execute(
|
|
sql,
|
|
(
|
|
parent_id,
|
|
RelationTypes.ANNOTATION,
|
|
event_type,
|
|
sender,
|
|
aggregation_key,
|
|
),
|
|
)
|
|
|
|
return bool(txn.fetchone())
|
|
|
|
return await self.db_pool.runInteraction(
|
|
"get_if_user_has_annotated_event", _get_if_user_has_annotated_event
|
|
)
|
|
|
|
async def _get_bundled_aggregation_for_event(
|
|
self, event: EventBase, user_id: str
|
|
) -> Optional[BundledAggregations]:
|
|
"""Generate bundled aggregations for an event.
|
|
|
|
Note that this does not use a cache, but depends on cached methods.
|
|
|
|
Args:
|
|
event: The event to calculate bundled aggregations for.
|
|
user_id: The user requesting the bundled aggregations.
|
|
|
|
Returns:
|
|
The bundled aggregations for an event, if bundled aggregations are
|
|
enabled and the event can have bundled aggregations.
|
|
"""
|
|
|
|
# Do not bundle aggregations for an event which represents an edit or an
|
|
# annotation. It does not make sense for them to have related events.
|
|
relates_to = event.content.get("m.relates_to")
|
|
if isinstance(relates_to, (dict, frozendict)):
|
|
relation_type = relates_to.get("rel_type")
|
|
if relation_type in (RelationTypes.ANNOTATION, RelationTypes.REPLACE):
|
|
return None
|
|
|
|
event_id = event.event_id
|
|
room_id = event.room_id
|
|
|
|
# The bundled aggregations to include, a mapping of relation type to a
|
|
# type-specific value. Some types include the direct return type here
|
|
# while others need more processing during serialization.
|
|
aggregations = BundledAggregations()
|
|
|
|
annotations = await self.get_aggregation_groups_for_event(event_id, room_id)
|
|
if annotations.chunk:
|
|
aggregations.annotations = annotations.to_dict()
|
|
|
|
references = await self.get_relations_for_event(
|
|
event_id, room_id, RelationTypes.REFERENCE, direction="f"
|
|
)
|
|
if references.chunk:
|
|
aggregations.references = references.to_dict()
|
|
|
|
# If this event is the start of a thread, include a summary of the replies.
|
|
if self._msc3440_enabled:
|
|
thread_count, latest_thread_event = await self.get_thread_summary(
|
|
event_id, room_id
|
|
)
|
|
participated = await self.get_thread_participated(
|
|
event_id, room_id, user_id
|
|
)
|
|
if latest_thread_event:
|
|
aggregations.thread = _ThreadAggregation(
|
|
latest_event=latest_thread_event,
|
|
count=thread_count,
|
|
current_user_participated=participated,
|
|
)
|
|
|
|
# Store the bundled aggregations in the event metadata for later use.
|
|
return aggregations
|
|
|
|
async def get_bundled_aggregations(
|
|
self, events: Iterable[EventBase], user_id: str
|
|
) -> Dict[str, BundledAggregations]:
|
|
"""Generate bundled aggregations for events.
|
|
|
|
Args:
|
|
events: The iterable of events to calculate bundled aggregations for.
|
|
user_id: The user requesting the bundled aggregations.
|
|
|
|
Returns:
|
|
A map of event ID to the bundled aggregation for the event. Not all
|
|
events may have bundled aggregations in the results.
|
|
"""
|
|
# The already processed event IDs. Tracked separately from the result
|
|
# since the result omits events which do not have bundled aggregations.
|
|
seen_event_ids = set()
|
|
|
|
# State events and redacted events do not get bundled aggregations.
|
|
events = [
|
|
event
|
|
for event in events
|
|
if not event.is_state() and not event.internal_metadata.is_redacted()
|
|
]
|
|
|
|
# event ID -> bundled aggregation in non-serialized form.
|
|
results: Dict[str, BundledAggregations] = {}
|
|
|
|
# Fetch other relations per event.
|
|
for event in events:
|
|
# De-duplicate events by ID to handle the same event requested multiple
|
|
# times. The caches that _get_bundled_aggregation_for_event use should
|
|
# capture this, but best to reduce work.
|
|
if event.event_id in seen_event_ids:
|
|
continue
|
|
seen_event_ids.add(event.event_id)
|
|
|
|
event_result = await self._get_bundled_aggregation_for_event(event, user_id)
|
|
if event_result:
|
|
results[event.event_id] = event_result
|
|
|
|
# Fetch any edits.
|
|
edits = await self._get_applicable_edits(seen_event_ids)
|
|
for event_id, edit in edits.items():
|
|
results.setdefault(event_id, BundledAggregations()).replace = edit
|
|
|
|
return results
|
|
|
|
|
|
class RelationsStore(RelationsWorkerStore):
|
|
pass
|