mirror of
https://mau.dev/maunium/synapse.git
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20ed8c926b
This removes the experimental configuration option and always escapes the push rule condition keys. Also escapes any (experimental) push rule condition keys in the base rules which contain dot in a field name.
553 lines
22 KiB
Python
553 lines
22 KiB
Python
# Copyright 2015 OpenMarket Ltd
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# Copyright 2017 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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Any,
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Collection,
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Dict,
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List,
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Mapping,
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Optional,
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Sequence,
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Tuple,
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Union,
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)
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from prometheus_client import Counter
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from synapse.api.constants import (
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MAIN_TIMELINE,
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EventContentFields,
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EventTypes,
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Membership,
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RelationTypes,
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)
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from synapse.api.room_versions import PushRuleRoomFlag
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from synapse.event_auth import auth_types_for_event, get_user_power_level
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from synapse.events import EventBase, relation_from_event
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from synapse.events.snapshot import EventContext
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from synapse.state import POWER_KEY
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from synapse.storage.databases.main.roommember import EventIdMembership
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from synapse.synapse_rust.push import FilteredPushRules, PushRuleEvaluator
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from synapse.types import JsonValue
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from synapse.types.state import StateFilter
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from synapse.util.caches import register_cache
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from synapse.util.metrics import measure_func
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from synapse.visibility import filter_event_for_clients_with_state
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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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push_rules_invalidation_counter = Counter(
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"synapse_push_bulk_push_rule_evaluator_push_rules_invalidation_counter", ""
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)
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push_rules_state_size_counter = Counter(
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"synapse_push_bulk_push_rule_evaluator_push_rules_state_size_counter", ""
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)
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STATE_EVENT_TYPES_TO_MARK_UNREAD = {
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EventTypes.Topic,
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EventTypes.Name,
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EventTypes.RoomAvatar,
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EventTypes.Tombstone,
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}
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SENTINEL = object()
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def _should_count_as_unread(event: EventBase, context: EventContext) -> bool:
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# Exclude rejected and soft-failed events.
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if context.rejected or event.internal_metadata.is_soft_failed():
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return False
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# Exclude notices.
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if (
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not event.is_state()
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and event.type == EventTypes.Message
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and event.content.get("msgtype") == "m.notice"
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):
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return False
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# Exclude edits.
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relates_to = relation_from_event(event)
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if relates_to and relates_to.rel_type == RelationTypes.REPLACE:
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return False
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# Mark events that have a non-empty string body as unread.
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body = event.content.get("body")
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if isinstance(body, str) and body:
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return True
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# Mark some state events as unread.
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if event.is_state() and event.type in STATE_EVENT_TYPES_TO_MARK_UNREAD:
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return True
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# Mark encrypted events as unread.
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if not event.is_state() and event.type == EventTypes.Encrypted:
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return True
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return False
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class BulkPushRuleEvaluator:
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"""Calculates the outcome of push rules for an event for all users in the
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room at once.
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"""
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def __init__(self, hs: "HomeServer"):
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self.hs = hs
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self.store = hs.get_datastores().main
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self.clock = hs.get_clock()
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self._event_auth_handler = hs.get_event_auth_handler()
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self.should_calculate_push_rules = self.hs.config.push.enable_push
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self._related_event_match_enabled = self.hs.config.experimental.msc3664_enabled
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self._intentional_mentions_enabled = (
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self.hs.config.experimental.msc3952_intentional_mentions
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)
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self.room_push_rule_cache_metrics = register_cache(
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"cache",
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"room_push_rule_cache",
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cache=[], # Meaningless size, as this isn't a cache that stores values,
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resizable=False,
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)
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async def _get_rules_for_event(
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self,
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event: EventBase,
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) -> Dict[str, FilteredPushRules]:
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"""Get the push rules for all users who may need to be notified about
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the event.
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Note: this does not check if the user is allowed to see the event.
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Returns:
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Mapping of user ID to their push rules.
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"""
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# If this is a membership event, only calculate push rules for the target.
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# While it's possible for users to configure push rules to respond to such an
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# event, in practise nobody does this. At the cost of violating the spec a
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# little, we can skip fetching a huge number of push rules in large rooms.
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# This helps make joins and leaves faster.
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if event.type == EventTypes.Member:
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local_users: Sequence[str] = []
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# We never notify a user about their own actions. This is enforced in
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# `_action_for_event_by_user` in the loop over `rules_by_user`, but we
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# do the same check here to avoid unnecessary DB queries.
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if event.sender != event.state_key and self.hs.is_mine_id(event.state_key):
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# Check the target is in the room, to avoid notifying them of
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# e.g. a pre-emptive ban.
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target_already_in_room = await self.store.check_local_user_in_room(
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event.state_key, event.room_id
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)
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if target_already_in_room:
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local_users = [event.state_key]
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else:
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# We get the users who may need to be notified by first fetching the
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# local users currently in the room, finding those that have push rules,
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# and *then* checking which users are actually allowed to see the event.
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#
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# The alternative is to first fetch all users that were joined at the
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# event, but that requires fetching the full state at the event, which
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# may be expensive for large rooms with few local users.
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local_users = await self.store.get_local_users_in_room(event.room_id)
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# Filter out appservice users.
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local_users = [
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u
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for u in local_users
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if not self.store.get_if_app_services_interested_in_user(u)
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]
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# if this event is an invite event, we may need to run rules for the user
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# who's been invited, otherwise they won't get told they've been invited
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if event.type == EventTypes.Member and event.membership == Membership.INVITE:
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invited = event.state_key
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if invited and self.hs.is_mine_id(invited) and invited not in local_users:
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local_users.append(invited)
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if not local_users:
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return {}
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rules_by_user = await self.store.bulk_get_push_rules(local_users)
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logger.debug("Users in room: %s", local_users)
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if logger.isEnabledFor(logging.DEBUG):
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logger.debug(
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"Returning push rules for %r %r",
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event.room_id,
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list(rules_by_user.keys()),
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)
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return rules_by_user
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async def _get_power_levels_and_sender_level(
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self,
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event: EventBase,
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context: EventContext,
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event_id_to_event: Mapping[str, EventBase],
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) -> Tuple[dict, Optional[int]]:
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"""
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Given an event and an event context, get the power level event relevant to the event
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and the power level of the sender of the event.
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Args:
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event: event to check
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context: context of event to check
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event_id_to_event: a mapping of event_id to event for a set of events being
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batch persisted. This is needed as the sought-after power level event may
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be in this batch rather than the DB
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"""
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# There are no power levels and sender levels possible to get from outlier
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if event.internal_metadata.is_outlier():
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return {}, None
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event_types = auth_types_for_event(event.room_version, event)
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prev_state_ids = await context.get_prev_state_ids(
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StateFilter.from_types(event_types)
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)
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pl_event_id = prev_state_ids.get(POWER_KEY)
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# fastpath: if there's a power level event, that's all we need, and
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# not having a power level event is an extreme edge case
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if pl_event_id:
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# Get the power level event from the batch, or fall back to the database.
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pl_event = event_id_to_event.get(pl_event_id)
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if pl_event:
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auth_events = {POWER_KEY: pl_event}
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else:
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auth_events = {POWER_KEY: await self.store.get_event(pl_event_id)}
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else:
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auth_events_ids = self._event_auth_handler.compute_auth_events(
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event, prev_state_ids, for_verification=False
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)
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auth_events_dict = await self.store.get_events(auth_events_ids)
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# Some needed auth events might be in the batch, combine them with those
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# fetched from the database.
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for auth_event_id in auth_events_ids:
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auth_event = event_id_to_event.get(auth_event_id)
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if auth_event:
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auth_events_dict[auth_event_id] = auth_event
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auth_events = {(e.type, e.state_key): e for e in auth_events_dict.values()}
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sender_level = get_user_power_level(event.sender, auth_events)
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pl_event = auth_events.get(POWER_KEY)
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return pl_event.content if pl_event else {}, sender_level
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async def _related_events(
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self, event: EventBase
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) -> Dict[str, Dict[str, JsonValue]]:
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"""Fetches the related events for 'event'. Sets the im.vector.is_falling_back key if the event is from a fallback relation
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Returns:
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Mapping of relation type to flattened events.
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"""
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related_events: Dict[str, Dict[str, JsonValue]] = {}
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if self._related_event_match_enabled:
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related_event_id = event.content.get("m.relates_to", {}).get("event_id")
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relation_type = event.content.get("m.relates_to", {}).get("rel_type")
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if related_event_id is not None and relation_type is not None:
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related_event = await self.store.get_event(
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related_event_id, allow_none=True
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)
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if related_event is not None:
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related_events[relation_type] = _flatten_dict(related_event)
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reply_event_id = (
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event.content.get("m.relates_to", {})
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.get("m.in_reply_to", {})
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.get("event_id")
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)
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# convert replies to pseudo relations
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if reply_event_id is not None:
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related_event = await self.store.get_event(
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reply_event_id, allow_none=True
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)
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if related_event is not None:
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related_events["m.in_reply_to"] = _flatten_dict(related_event)
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# indicate that this is from a fallback relation.
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if relation_type == "m.thread" and event.content.get(
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"m.relates_to", {}
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).get("is_falling_back", False):
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related_events["m.in_reply_to"][
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"im.vector.is_falling_back"
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] = ""
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return related_events
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async def action_for_events_by_user(
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self, events_and_context: List[Tuple[EventBase, EventContext]]
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) -> None:
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"""Given a list of events and their associated contexts, evaluate the push rules
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for each event, check if the message should increment the unread count, and
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insert the results into the event_push_actions_staging table.
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"""
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if not self.should_calculate_push_rules:
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return
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# For batched events the power level events may not have been persisted yet,
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# so we pass in the batched events. Thus if the event cannot be found in the
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# database we can check in the batch.
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event_id_to_event = {e.event_id: e for e, _ in events_and_context}
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for event, context in events_and_context:
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await self._action_for_event_by_user(event, context, event_id_to_event)
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@measure_func("action_for_event_by_user")
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async def _action_for_event_by_user(
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self,
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event: EventBase,
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context: EventContext,
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event_id_to_event: Mapping[str, EventBase],
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) -> None:
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if (
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not event.internal_metadata.is_notifiable()
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or event.internal_metadata.is_historical()
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):
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# Push rules for events that aren't notifiable can't be processed by this and
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# we want to skip push notification actions for historical messages
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# because we don't want to notify people about old history back in time.
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# The historical messages also do not have the proper `context.current_state_ids`
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# and `state_groups` because they have `prev_events` that aren't persisted yet
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# (historical messages persisted in reverse-chronological order).
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return
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# Disable counting as unread unless the experimental configuration is
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# enabled, as it can cause additional (unwanted) rows to be added to the
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# event_push_actions table.
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count_as_unread = False
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if self.hs.config.experimental.msc2654_enabled:
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count_as_unread = _should_count_as_unread(event, context)
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rules_by_user = await self._get_rules_for_event(event)
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actions_by_user: Dict[str, Collection[Union[Mapping, str]]] = {}
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room_member_count = await self.store.get_number_joined_users_in_room(
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event.room_id
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)
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(
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power_levels,
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sender_power_level,
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) = await self._get_power_levels_and_sender_level(
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event, context, event_id_to_event
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)
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# Find the event's thread ID.
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relation = relation_from_event(event)
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# If the event does not have a relation, then it cannot have a thread ID.
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thread_id = MAIN_TIMELINE
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if relation:
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# Recursively attempt to find the thread this event relates to.
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if relation.rel_type == RelationTypes.THREAD:
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thread_id = relation.parent_id
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else:
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# Since the event has not yet been persisted we check whether
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# the parent is part of a thread.
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thread_id = await self.store.get_thread_id(relation.parent_id)
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related_events = await self._related_events(event)
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# It's possible that old room versions have non-integer power levels (floats or
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# strings; even the occasional `null`). For old rooms, we interpret these as if
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# they were integers. Do this here for the `@room` power level threshold.
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# Note that this is done automatically for the sender's power level by
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# _get_power_levels_and_sender_level in its call to get_user_power_level
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# (even for room V10.)
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notification_levels = power_levels.get("notifications", {})
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if not event.room_version.msc3667_int_only_power_levels:
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keys = list(notification_levels.keys())
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for key in keys:
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level = notification_levels.get(key, SENTINEL)
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if level is not SENTINEL and type(level) is not int:
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try:
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notification_levels[key] = int(level)
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except (TypeError, ValueError):
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del notification_levels[key]
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# Pull out any user and room mentions.
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has_mentions = (
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self._intentional_mentions_enabled
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and EventContentFields.MSC3952_MENTIONS in event.content
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)
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evaluator = PushRuleEvaluator(
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_flatten_dict(event),
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has_mentions,
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room_member_count,
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sender_power_level,
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notification_levels,
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related_events,
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self._related_event_match_enabled,
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event.room_version.msc3931_push_features,
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self.hs.config.experimental.msc1767_enabled, # MSC3931 flag
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)
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users = rules_by_user.keys()
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profiles = await self.store.get_subset_users_in_room_with_profiles(
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event.room_id, users
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)
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for uid, rules in rules_by_user.items():
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if event.sender == uid:
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continue
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display_name = None
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profile = profiles.get(uid)
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if profile:
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display_name = profile.display_name
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if not display_name:
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# Handle the case where we are pushing a membership event to
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# that user, as they might not be already joined.
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if event.type == EventTypes.Member and event.state_key == uid:
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display_name = event.content.get("displayname", None)
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if not isinstance(display_name, str):
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display_name = None
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if count_as_unread:
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# Add an element for the current user if the event needs to be marked as
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# unread, so that add_push_actions_to_staging iterates over it.
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# If the event shouldn't be marked as unread but should notify the
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# current user, it'll be added to the dict later.
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actions_by_user[uid] = []
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actions = evaluator.run(rules, uid, display_name)
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if "notify" in actions:
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# Push rules say we should notify the user of this event
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actions_by_user[uid] = actions
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# If there aren't any actions then we can skip the rest of the
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# processing.
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if not actions_by_user:
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return
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# This is a check for the case where user joins a room without being
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# allowed to see history, and then the server receives a delayed event
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# from before the user joined, which they should not be pushed for
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#
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# We do this *after* calculating the push actions as a) its unlikely
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# that we'll filter anyone out and b) for large rooms its likely that
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# most users will have push disabled and so the set of users to check is
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# much smaller.
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uids_with_visibility = await filter_event_for_clients_with_state(
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self.store, actions_by_user.keys(), event, context
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)
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for user_id in set(actions_by_user).difference(uids_with_visibility):
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actions_by_user.pop(user_id, None)
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# Mark in the DB staging area the push actions for users who should be
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# notified for this event. (This will then get handled when we persist
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# the event)
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await self.store.add_push_actions_to_staging(
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event.event_id,
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actions_by_user,
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count_as_unread,
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thread_id,
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)
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MemberMap = Dict[str, Optional[EventIdMembership]]
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Rule = Dict[str, dict]
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RulesByUser = Dict[str, List[Rule]]
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StateGroup = Union[object, int]
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def _is_simple_value(value: Any) -> bool:
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return isinstance(value, (bool, str)) or type(value) is int or value is None
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def _flatten_dict(
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d: Union[EventBase, Mapping[str, Any]],
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prefix: Optional[List[str]] = None,
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result: Optional[Dict[str, JsonValue]] = None,
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) -> Dict[str, JsonValue]:
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"""
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Given a JSON dictionary (or event) which might contain sub dictionaries,
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flatten it into a single layer dictionary by combining the keys & sub-keys.
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String, integer, boolean, null or lists of those values are kept. All others are dropped.
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Transforms:
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{"foo": {"bar": "test"}}
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To:
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{"foo.bar": "test"}
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Args:
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d: The event or content to continue flattening.
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prefix: The key prefix (from outer dictionaries).
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result: The result to mutate.
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Returns:
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The resulting dictionary.
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"""
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if prefix is None:
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prefix = []
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if result is None:
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result = {}
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for key, value in d.items():
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# Escape periods in the key with a backslash (and backslashes with an
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# extra backslash). This is since a period is used as a separator between
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# nested fields.
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key = key.replace("\\", "\\\\").replace(".", "\\.")
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if _is_simple_value(value):
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result[".".join(prefix + [key])] = value
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elif isinstance(value, (list, tuple)):
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result[".".join(prefix + [key])] = [v for v in value if _is_simple_value(v)]
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elif isinstance(value, Mapping):
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# do not set `room_version` due to recursion considerations below
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_flatten_dict(value, prefix=(prefix + [key]), result=result)
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# `room_version` should only ever be set when looking at the top level of an event
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if (
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isinstance(d, EventBase)
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and PushRuleRoomFlag.EXTENSIBLE_EVENTS in d.room_version.msc3931_push_features
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):
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# Room supports extensible events: replace `content.body` with the plain text
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# representation from `m.markup`, as per MSC1767.
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markup = d.get("content").get("m.markup")
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if d.room_version.identifier.startswith("org.matrix.msc1767."):
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markup = d.get("content").get("org.matrix.msc1767.markup")
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if markup is not None and isinstance(markup, list):
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text = ""
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for rep in markup:
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if not isinstance(rep, dict):
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# invalid markup - skip all processing
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break
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if rep.get("mimetype", "text/plain") == "text/plain":
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rep_text = rep.get("body")
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if rep_text is not None and isinstance(rep_text, str):
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text = rep_text.lower()
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break
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result["content.body"] = text
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return result
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