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message.py
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message.py
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#
# This file is licensed under the Affero General Public License (AGPL) version 3.
#
# Copyright 2019-2020 The Matrix.org Foundation C.I.C.
# Copyright 2014-2016 OpenMarket Ltd
# Copyright (C) 2023 New Vector, Ltd
#
# This program is free software: you can redistribute it and/or modify
# it under the terms of the GNU Affero General Public License as
# published by the Free Software Foundation, either version 3 of the
# License, or (at your option) any later version.
#
# See the GNU Affero General Public License for more details:
# <https://www.gnu.org/licenses/agpl-3.0.html>.
#
# Originally licensed under the Apache License, Version 2.0:
# <http://www.apache.org/licenses/LICENSE-2.0>.
#
# [This file includes modifications made by New Vector Limited]
#
#
import logging
import random
from http import HTTPStatus
from typing import TYPE_CHECKING, Any, Dict, List, Mapping, Optional, Tuple
from canonicaljson import encode_canonical_json
from twisted.internet.interfaces import IDelayedCall
from synapse import event_auth
from synapse.api.constants import (
EventContentFields,
EventTypes,
GuestAccess,
HistoryVisibility,
JoinRules,
Membership,
RelationTypes,
UserTypes,
)
from synapse.api.errors import (
AuthError,
Codes,
ConsentNotGivenError,
NotFoundError,
PartialStateConflictError,
ShadowBanError,
SynapseError,
UnstableSpecAuthError,
UnsupportedRoomVersionError,
)
from synapse.api.room_versions import KNOWN_ROOM_VERSIONS
from synapse.api.urls import ConsentURIBuilder
from synapse.event_auth import validate_event_for_room_version
from synapse.events import EventBase, relation_from_event
from synapse.events.builder import EventBuilder
from synapse.events.snapshot import EventContext, UnpersistedEventContextBase
from synapse.events.utils import SerializeEventConfig, maybe_upsert_event_field
from synapse.events.validator import EventValidator
from synapse.handlers.directory import DirectoryHandler
from synapse.handlers.worker_lock import NEW_EVENT_DURING_PURGE_LOCK_NAME
from synapse.logging import opentracing
from synapse.logging.context import make_deferred_yieldable, run_in_background
from synapse.metrics.background_process_metrics import run_as_background_process
from synapse.replication.http.send_event import ReplicationSendEventRestServlet
from synapse.replication.http.send_events import ReplicationSendEventsRestServlet
from synapse.storage.databases.main.events_worker import EventRedactBehaviour
from synapse.types import (
PersistedEventPosition,
Requester,
RoomAlias,
StateMap,
StreamToken,
UserID,
create_requester,
)
from synapse.types.state import StateFilter
from synapse.util import json_decoder, json_encoder, log_failure, unwrapFirstError
from synapse.util.async_helpers import Linearizer, gather_results
from synapse.util.caches.expiringcache import ExpiringCache
from synapse.util.metrics import measure_func
from synapse.visibility import get_effective_room_visibility_from_state
if TYPE_CHECKING:
from synapse.server import HomeServer
logger = logging.getLogger(__name__)
class MessageHandler:
"""Contains some read only APIs to get state about a room"""
def __init__(self, hs: "HomeServer"):
self.auth = hs.get_auth()
self.clock = hs.get_clock()
self.state = hs.get_state_handler()
self.store = hs.get_datastores().main
self._storage_controllers = hs.get_storage_controllers()
self._state_storage_controller = self._storage_controllers.state
self._event_serializer = hs.get_event_client_serializer()
self._ephemeral_events_enabled = hs.config.server.enable_ephemeral_messages
# The scheduled call to self._expire_event. None if no call is currently
# scheduled.
self._scheduled_expiry: Optional[IDelayedCall] = None
if not hs.config.worker.worker_app:
run_as_background_process(
"_schedule_next_expiry", self._schedule_next_expiry
)
async def get_room_data(
self,
requester: Requester,
room_id: str,
event_type: str,
state_key: str,
) -> Optional[EventBase]:
"""Get data from a room.
Args:
requester: The user who did the request.
room_id
event_type
state_key
Returns:
The path data content.
Raises:
SynapseError or AuthError if the user is not in the room
"""
(
membership,
membership_event_id,
) = await self.auth.check_user_in_room_or_world_readable(
room_id, requester, allow_departed_users=True
)
if membership == Membership.JOIN:
data = await self._storage_controllers.state.get_current_state_event(
room_id, event_type, state_key
)
elif membership == Membership.LEAVE:
key = (event_type, state_key)
# If the membership is not JOIN, then the event ID should exist.
assert (
membership_event_id is not None
), "check_user_in_room_or_world_readable returned invalid data"
room_state = await self._state_storage_controller.get_state_for_events(
[membership_event_id], StateFilter.from_types([key])
)
data = room_state[membership_event_id].get(key)
else:
# check_user_in_room_or_world_readable, if it doesn't raise an AuthError, should
# only ever return a Membership.JOIN/LEAVE object
#
# Safeguard in case it returned something else
logger.error(
"Attempted to retrieve data from a room for a user that has never been in it. "
"This should not have happened."
)
raise UnstableSpecAuthError(
403,
"User not in room",
errcode=Codes.NOT_JOINED,
)
return data
async def get_state_events(
self,
requester: Requester,
room_id: str,
state_filter: Optional[StateFilter] = None,
at_token: Optional[StreamToken] = None,
) -> List[dict]:
"""Retrieve all state events for a given room. If the user is
joined to the room then return the current state. If the user has
left the room return the state events from when they left. If an explicit
'at' parameter is passed, return the state events as of that event, if
visible.
Args:
requester: The user requesting state events.
room_id: The room ID to get all state events from.
state_filter: The state filter used to fetch state from the database.
at_token: the stream token of the at which we are requesting
the stats. If the user is not allowed to view the state as of that
stream token, we raise a 403 SynapseError. If None, returns the current
state based on the current_state_events table.
Returns:
A list of dicts representing state events. [{}, {}, {}]
Raises:
NotFoundError (404) if the at token does not yield an event
AuthError (403) if the user doesn't have permission to view
members of this room.
"""
state_filter = state_filter or StateFilter.all()
user_id = requester.user.to_string()
if at_token:
last_event_id = (
await self.store.get_last_event_in_room_before_stream_ordering(
room_id,
end_token=at_token.room_key,
)
)
if not last_event_id:
raise NotFoundError("Can't find event for token %s" % (at_token,))
if not await self._user_can_see_state_at_event(
user_id, room_id, last_event_id
):
raise AuthError(
403,
"User %s not allowed to view events in room %s at token %s"
% (user_id, room_id, at_token),
)
room_state_events = (
await self._state_storage_controller.get_state_for_events(
[last_event_id], state_filter=state_filter
)
)
room_state: Mapping[Any, EventBase] = room_state_events[last_event_id]
else:
(
membership,
membership_event_id,
) = await self.auth.check_user_in_room_or_world_readable(
room_id, requester, allow_departed_users=True
)
if membership == Membership.JOIN:
state_ids = await self._state_storage_controller.get_current_state_ids(
room_id, state_filter=state_filter
)
room_state = await self.store.get_events(state_ids.values())
elif membership == Membership.LEAVE:
# If the membership is not JOIN, then the event ID should exist.
assert (
membership_event_id is not None
), "check_user_in_room_or_world_readable returned invalid data"
room_state_events = (
await self._state_storage_controller.get_state_for_events(
[membership_event_id], state_filter=state_filter
)
)
room_state = room_state_events[membership_event_id]
events = await self._event_serializer.serialize_events(
room_state.values(),
self.clock.time_msec(),
config=SerializeEventConfig(requester=requester),
)
return events
async def _user_can_see_state_at_event(
self, user_id: str, room_id: str, event_id: str
) -> bool:
# check whether the user was in the room, and the history visibility,
# at that time.
state_map = await self._state_storage_controller.get_state_for_event(
event_id,
StateFilter.from_types(
[
(EventTypes.Member, user_id),
(EventTypes.RoomHistoryVisibility, ""),
]
),
)
membership = None
membership_event = state_map.get((EventTypes.Member, user_id))
if membership_event:
membership = membership_event.membership
# if the user was a member of the room at the time of the event,
# they can see it.
if membership == Membership.JOIN:
return True
# otherwise, it depends on the history visibility.
visibility = get_effective_room_visibility_from_state(state_map)
if visibility == HistoryVisibility.JOINED:
# we weren't a member at the time of the event, so we can't see this event.
return False
# otherwise *invited* is good enough
if membership == Membership.INVITE:
return True
if visibility == HistoryVisibility.INVITED:
# we weren't invited, so we can't see this event.
return False
if visibility == HistoryVisibility.WORLD_READABLE:
return True
# So it's SHARED, and the user was not a member at the time. The user cannot
# see history, unless they have *subsequently* joined the room.
#
# XXX: if the user has subsequently joined and then left again,
# ideally we would share history up to the point they left. But
# we don't know when they left. We just treat it as though they
# never joined, and restrict access.
(
current_membership,
_,
) = await self.store.get_local_current_membership_for_user_in_room(
user_id, event_id
)
return current_membership == Membership.JOIN
async def get_joined_members(self, requester: Requester, room_id: str) -> dict:
"""Get all the joined members in the room and their profile information.
If the user has left the room return the state events from when they left.
Args:
requester: The user requesting state events.
room_id: The room ID to get all state events from.
Returns:
A dict of user_id to profile info
"""
if not requester.app_service:
# We check AS auth after fetching the room membership, as it
# requires us to pull out all joined members anyway.
membership, _ = await self.auth.check_user_in_room_or_world_readable(
room_id, requester, allow_departed_users=True
)
if membership != Membership.JOIN:
raise SynapseError(
code=403,
errcode=Codes.FORBIDDEN,
msg="Getting joined members while not being a current member of the room is forbidden.",
)
users_with_profile = (
await self._state_storage_controller.get_users_in_room_with_profiles(
room_id
)
)
# If this is an AS, double check that they are allowed to see the members.
# This can either be because the AS user is in the room or because there
# is a user in the room that the AS is "interested in"
if (
requester.app_service
and requester.user.to_string() not in users_with_profile
):
for uid in users_with_profile:
if requester.app_service.is_interested_in_user(uid):
break
else:
# Loop fell through, AS has no interested users in room
raise UnstableSpecAuthError(
403,
"Appservice not in room",
errcode=Codes.NOT_JOINED,
)
return {
user_id: {
"avatar_url": profile.avatar_url,
"display_name": profile.display_name,
}
for user_id, profile in users_with_profile.items()
}
def maybe_schedule_expiry(self, event: EventBase) -> None:
"""Schedule the expiry of an event if there's not already one scheduled,
or if the one running is for an event that will expire after the provided
timestamp.
This function needs to invalidate the event cache, which is only possible on
the master process, and therefore needs to be run on there.
Args:
event: The event to schedule the expiry of.
"""
expiry_ts = event.content.get(EventContentFields.SELF_DESTRUCT_AFTER)
if type(expiry_ts) is not int or event.is_state(): # noqa: E721
return
# _schedule_expiry_for_event won't actually schedule anything if there's already
# a task scheduled for a timestamp that's sooner than the provided one.
self._schedule_expiry_for_event(event.event_id, expiry_ts)
async def _schedule_next_expiry(self) -> None:
"""Retrieve the ID and the expiry timestamp of the next event to be expired,
and schedule an expiry task for it.
If there's no event left to expire, set _expiry_scheduled to None so that a
future call to save_expiry_ts can schedule a new expiry task.
"""
# Try to get the expiry timestamp of the next event to expire.
res = await self.store.get_next_event_to_expire()
if res:
event_id, expiry_ts = res
self._schedule_expiry_for_event(event_id, expiry_ts)
def _schedule_expiry_for_event(self, event_id: str, expiry_ts: int) -> None:
"""Schedule an expiry task for the provided event if there's not already one
scheduled at a timestamp that's sooner than the provided one.
Args:
event_id: The ID of the event to expire.
expiry_ts: The timestamp at which to expire the event.
"""
if self._scheduled_expiry:
# If the provided timestamp refers to a time before the scheduled time of the
# next expiry task, cancel that task and reschedule it for this timestamp.
next_scheduled_expiry_ts = self._scheduled_expiry.getTime() * 1000
if expiry_ts < next_scheduled_expiry_ts:
self._scheduled_expiry.cancel()
else:
return
# Figure out how many seconds we need to wait before expiring the event.
now_ms = self.clock.time_msec()
delay = (expiry_ts - now_ms) / 1000
# callLater doesn't support negative delays, so trim the delay to 0 if we're
# in that case.
if delay < 0:
delay = 0
logger.info("Scheduling expiry for event %s in %.3fs", event_id, delay)
self._scheduled_expiry = self.clock.call_later(
delay,
run_as_background_process,
"_expire_event",
self._expire_event,
event_id,
)
async def _expire_event(self, event_id: str) -> None:
"""Retrieve and expire an event that needs to be expired from the database.
If the event doesn't exist in the database, log it and delete the expiry date
from the database (so that we don't try to expire it again).
"""
assert self._ephemeral_events_enabled
self._scheduled_expiry = None
logger.info("Expiring event %s", event_id)
try:
# Expire the event if we know about it. This function also deletes the expiry
# date from the database in the same database transaction.
await self.store.expire_event(event_id)
except Exception as e:
logger.error("Could not expire event %s: %r", event_id, e)
# Schedule the expiry of the next event to expire.
await self._schedule_next_expiry()
# The duration (in ms) after which rooms should be removed
# `_rooms_to_exclude_from_dummy_event_insertion` (with the effect that we will try
# to generate a dummy event for them once more)
#
_DUMMY_EVENT_ROOM_EXCLUSION_EXPIRY = 7 * 24 * 60 * 60 * 1000
class EventCreationHandler:
def __init__(self, hs: "HomeServer"):
self.hs = hs
self.auth_blocking = hs.get_auth_blocking()
self._event_auth_handler = hs.get_event_auth_handler()
self.store = hs.get_datastores().main
self._storage_controllers = hs.get_storage_controllers()
self.state = hs.get_state_handler()
self.clock = hs.get_clock()
self.validator = EventValidator()
self.profile_handler = hs.get_profile_handler()
self.event_builder_factory = hs.get_event_builder_factory()
self.server_name = hs.hostname
self.notifier = hs.get_notifier()
self.config = hs.config
self.require_membership_for_aliases = (
hs.config.server.require_membership_for_aliases
)
self._events_shard_config = self.config.worker.events_shard_config
self._instance_name = hs.get_instance_name()
self._notifier = hs.get_notifier()
self._worker_lock_handler = hs.get_worker_locks_handler()
self.room_prejoin_state_types = self.hs.config.api.room_prejoin_state
self.membership_types_to_include_profile_data_in = {
Membership.JOIN,
Membership.KNOCK,
}
if self.hs.config.server.include_profile_data_on_invite:
self.membership_types_to_include_profile_data_in.add(Membership.INVITE)
self.send_event = ReplicationSendEventRestServlet.make_client(hs)
self.send_events = ReplicationSendEventsRestServlet.make_client(hs)
self.request_ratelimiter = hs.get_request_ratelimiter()
# We limit concurrent event creation for a room to 1. This prevents state resolution
# from occurring when sending bursts of events to a local room
self.limiter = Linearizer(max_count=1, name="room_event_creation_limit")
self._bulk_push_rule_evaluator = hs.get_bulk_push_rule_evaluator()
self._spam_checker_module_callbacks = hs.get_module_api_callbacks().spam_checker
self._third_party_event_rules = (
self.hs.get_module_api_callbacks().third_party_event_rules
)
self._block_events_without_consent_error = (
self.config.consent.block_events_without_consent_error
)
# we need to construct a ConsentURIBuilder here, as it checks that the necessary
# config options, but *only* if we have a configuration for which we are
# going to need it.
if self._block_events_without_consent_error:
self._consent_uri_builder = ConsentURIBuilder(self.config)
# Rooms which should be excluded from dummy insertion. (For instance,
# those without local users who can send events into the room).
#
# map from room id to time-of-last-attempt.
#
self._rooms_to_exclude_from_dummy_event_insertion: Dict[str, int] = {}
# The number of forward extremeities before a dummy event is sent.
self._dummy_events_threshold = hs.config.server.dummy_events_threshold
if (
self.config.worker.run_background_tasks
and self.config.server.cleanup_extremities_with_dummy_events
):
self.clock.looping_call(
lambda: run_as_background_process(
"send_dummy_events_to_fill_extremities",
self._send_dummy_events_to_fill_extremities,
),
5 * 60 * 1000,
)
self._message_handler = hs.get_message_handler()
self._ephemeral_events_enabled = hs.config.server.enable_ephemeral_messages
self._external_cache = hs.get_external_cache()
# Stores the state groups we've recently added to the joined hosts
# external cache. Note that the timeout must be significantly less than
# the TTL on the external cache.
self._external_cache_joined_hosts_updates: Optional[ExpiringCache] = None
if self._external_cache.is_enabled():
self._external_cache_joined_hosts_updates = ExpiringCache(
"_external_cache_joined_hosts_updates",
self.clock,
expiry_ms=30 * 60 * 1000,
)
async def create_event(
self,
requester: Requester,
event_dict: dict,
txn_id: Optional[str] = None,
allow_no_prev_events: bool = False,
prev_event_ids: Optional[List[str]] = None,
auth_event_ids: Optional[List[str]] = None,
state_event_ids: Optional[List[str]] = None,
require_consent: bool = True,
outlier: bool = False,
depth: Optional[int] = None,
state_map: Optional[StateMap[str]] = None,
for_batch: bool = False,
current_state_group: Optional[int] = None,
) -> Tuple[EventBase, UnpersistedEventContextBase]:
"""
Given a dict from a client, create a new event. If bool for_batch is true, will
create an event using the prev_event_ids, and will create an event context for
the event using the parameters state_map and current_state_group, thus these parameters
must be provided in this case if for_batch is True. The subsequently created event
and context are suitable for being batched up and bulk persisted to the database
with other similarly created events.
Creates an FrozenEvent object, filling out auth_events, prev_events,
etc.
Adds display names to Join membership events.
Args:
requester
event_dict: An entire event
txn_id
allow_no_prev_events: Whether to allow this event to be created an empty
list of prev_events. Normally this is prohibited just because most
events should have a prev_event and we should only use this in special
cases (previously useful for MSC2716).
prev_event_ids:
the forward extremities to use as the prev_events for the
new event.
If None, they will be requested from the database.
auth_event_ids:
The event ids to use as the auth_events for the new event.
Should normally be left as None, which will cause them to be calculated
based on the room state at the prev_events.
If non-None, prev_event_ids must also be provided.
state_event_ids:
The full state at a given event. This was previously used particularly
by the MSC2716 /batch_send endpoint. This should normally be left as
None, which will cause the auth_event_ids to be calculated based on the
room state at the prev_events.
require_consent: Whether to check if the requester has
consented to the privacy policy.
outlier: Indicates whether the event is an `outlier`, i.e. if
it's from an arbitrary point and floating in the DAG as
opposed to being inline with the current DAG.
depth: Override the depth used to order the event in the DAG.
Should normally be set to None, which will cause the depth to be calculated
based on the prev_events.
state_map: A state map of previously created events, used only when creating events
for batch persisting
for_batch: whether the event is being created for batch persisting to the db
current_state_group: the current state group, used only for creating events for
batch persisting
Raises:
ResourceLimitError if server is blocked to some resource being
exceeded
Returns:
Tuple of created event, Context
"""
await self.auth_blocking.check_auth_blocking(requester=requester)
if event_dict["type"] == EventTypes.Create and event_dict["state_key"] == "":
room_version_id = event_dict["content"]["room_version"]
maybe_room_version_obj = KNOWN_ROOM_VERSIONS.get(room_version_id)
if not maybe_room_version_obj:
# this can happen if support is withdrawn for a room version
raise UnsupportedRoomVersionError(room_version_id)
room_version_obj = maybe_room_version_obj
else:
try:
room_version_obj = await self.store.get_room_version(
event_dict["room_id"]
)
except NotFoundError:
raise AuthError(403, "Unknown room")
builder = self.event_builder_factory.for_room_version(
room_version_obj, event_dict
)
self.validator.validate_builder(builder)
if builder.type == EventTypes.Member:
membership = builder.content.get("membership", None)
target = UserID.from_string(builder.state_key)
if membership in self.membership_types_to_include_profile_data_in:
# If event doesn't include a display name, add one.
profile = self.profile_handler
content = builder.content
try:
if "displayname" not in content:
displayname = await profile.get_displayname(target)
if displayname is not None:
content["displayname"] = displayname
if "avatar_url" not in content:
avatar_url = await profile.get_avatar_url(target)
if avatar_url is not None:
content["avatar_url"] = avatar_url
except Exception as e:
logger.info(
"Failed to get profile information for %r: %s", target, e
)
is_exempt = await self._is_exempt_from_privacy_policy(builder, requester)
if require_consent and not is_exempt:
await self.assert_accepted_privacy_policy(requester)
# Save the the device ID and the transaction ID in the event internal metadata.
# This is useful to determine if we should echo the transaction_id in events.
# See `synapse.events.utils.EventClientSerializer.serialize_event`
if requester.device_id is not None:
builder.internal_metadata.device_id = requester.device_id
if txn_id is not None:
builder.internal_metadata.txn_id = txn_id
builder.internal_metadata.outlier = outlier
event, unpersisted_context = await self.create_new_client_event(
builder=builder,
requester=requester,
allow_no_prev_events=allow_no_prev_events,
prev_event_ids=prev_event_ids,
auth_event_ids=auth_event_ids,
state_event_ids=state_event_ids,
depth=depth,
state_map=state_map,
for_batch=for_batch,
current_state_group=current_state_group,
)
# In an ideal world we wouldn't need the second part of this condition. However,
# this behaviour isn't spec'd yet, meaning we should be able to deactivate this
# behaviour. Another reason is that this code is also evaluated each time a new
# m.room.aliases event is created, which includes hitting a /directory route.
# Therefore not including this condition here would render the similar one in
# synapse.handlers.directory pointless.
if builder.type == EventTypes.Aliases and self.require_membership_for_aliases:
# Ideally we'd do the membership check in event_auth.check(), which
# describes a spec'd algorithm for authenticating events received over
# federation as well as those created locally. As of room v3, aliases events
# can be created by users that are not in the room, therefore we have to
# tolerate them in event_auth.check().
if for_batch:
assert state_map is not None
prev_event_id = state_map.get((EventTypes.Member, event.sender))
else:
prev_state_ids = await unpersisted_context.get_prev_state_ids(
StateFilter.from_types([(EventTypes.Member, event.sender)])
)
prev_event_id = prev_state_ids.get((EventTypes.Member, event.sender))
prev_event = (
await self.store.get_event(prev_event_id, allow_none=True)
if prev_event_id
else None
)
if not prev_event or prev_event.membership != Membership.JOIN:
logger.warning(
(
"Attempt to send `m.room.aliases` in room %s by user %s but"
" membership is %s"
),
event.room_id,
event.sender,
prev_event.membership if prev_event else None,
)
raise AuthError(
403, "You must be in the room to create an alias for it"
)
self.validator.validate_new(event, self.config)
return event, unpersisted_context
async def _is_exempt_from_privacy_policy(
self, builder: EventBuilder, requester: Requester
) -> bool:
""" "Determine if an event to be sent is exempt from having to consent
to the privacy policy
Args:
builder: event being created
requester: user requesting this event
Returns:
true if the event can be sent without the user consenting
"""
# the only thing the user can do is join the server notices room.
if builder.type == EventTypes.Member:
membership = builder.content.get("membership", None)
if membership == Membership.JOIN:
return await self.store.is_server_notice_room(builder.room_id)
elif membership == Membership.LEAVE:
# the user is always allowed to leave (but not kick people)
return builder.state_key == requester.user.to_string()
return False
async def assert_accepted_privacy_policy(self, requester: Requester) -> None:
"""Check if a user has accepted the privacy policy
Called when the given user is about to do something that requires
privacy consent. We see if the user is exempt and otherwise check that
they have given consent. If they have not, a ConsentNotGiven error is
raised.
Args:
requester: The user making the request
Returns:
Returns normally if the user has consented or is exempt
Raises:
ConsentNotGivenError: if the user has not given consent yet
"""
if self._block_events_without_consent_error is None:
return
# exempt AS users from needing consent
if requester.app_service is not None:
return
user_id = requester.authenticated_entity
if not user_id.startswith("@"):
# The authenticated entity might not be a user, e.g. if it's the
# server puppetting the user.
return
user = UserID.from_string(user_id)
# exempt the system notices user
if (
self.config.servernotices.server_notices_mxid is not None
and user_id == self.config.servernotices.server_notices_mxid
):
return
u = await self.store.get_user_by_id(user_id)
assert u is not None
if u.user_type in (UserTypes.SUPPORT, UserTypes.BOT):
# support and bot users are not required to consent
return
if u.appservice_id is not None:
# users registered by an appservice are exempt
return
if u.consent_version == self.config.consent.user_consent_version:
return
consent_uri = self._consent_uri_builder.build_user_consent_uri(user.localpart)
msg = self._block_events_without_consent_error % {"consent_uri": consent_uri}
raise ConsentNotGivenError(msg=msg, consent_uri=consent_uri)
async def deduplicate_state_event(
self, event: EventBase, context: EventContext
) -> Optional[EventBase]:
"""
Checks whether event is in the latest resolved state in context.
Args:
event: The event to check for duplication.
context: The event context.
Returns:
The previous version of the event is returned, if it is found in the
event context. Otherwise, None is returned.
"""
if event.internal_metadata.is_outlier():
# This can happen due to out of band memberships
return None
prev_state_ids = await context.get_prev_state_ids(
StateFilter.from_types([(event.type, event.state_key)])
)
prev_event_id = prev_state_ids.get((event.type, event.state_key))
if not prev_event_id:
return None
prev_event = await self.store.get_event(prev_event_id, allow_none=True)
if not prev_event:
return None
if prev_event and event.user_id == prev_event.user_id:
prev_content = encode_canonical_json(prev_event.content)
next_content = encode_canonical_json(event.content)
if prev_content == next_content:
return prev_event
return None
async def get_event_id_from_transaction(
self,
requester: Requester,
txn_id: str,
room_id: str,
) -> Optional[str]:
"""For the given transaction ID and room ID, check if there is a matching event ID.
Args:
requester: The requester making the request in the context of which we want
to fetch the event.
txn_id: The transaction ID.
room_id: The room ID.
Returns:
An event ID if one could be found, None otherwise.
"""
existing_event_id = None
# According to the spec, transactions are scoped to a user's device ID.
if requester.device_id:
existing_event_id = (
await self.store.get_event_id_from_transaction_id_and_device_id(
room_id,
requester.user.to_string(),
requester.device_id,
txn_id,
)
)
if existing_event_id:
return existing_event_id
return existing_event_id
async def get_event_from_transaction(
self,
requester: Requester,
txn_id: str,
room_id: str,
) -> Optional[EventBase]:
"""For the given transaction ID and room ID, check if there is a matching event.
If so, fetch it and return it.
Args:
requester: The requester making the request in the context of which we want
to fetch the event.
txn_id: The transaction ID.
room_id: The room ID.
Returns:
An event if one could be found, None otherwise.
"""
existing_event_id = await self.get_event_id_from_transaction(
requester, txn_id, room_id
)
if existing_event_id:
return await self.store.get_event(existing_event_id)
return None
async def create_and_send_nonmember_event(
self,
requester: Requester,
event_dict: dict,
allow_no_prev_events: bool = False,
prev_event_ids: Optional[List[str]] = None,
state_event_ids: Optional[List[str]] = None,
ratelimit: bool = True,
txn_id: Optional[str] = None,
ignore_shadow_ban: bool = False,
outlier: bool = False,
depth: Optional[int] = None,
) -> Tuple[EventBase, int]:
"""
Creates an event, then sends it.
See self.create_event and self.handle_new_client_event.
Args:
requester: The requester sending the event.
event_dict: An entire event.
allow_no_prev_events: Whether to allow this event to be created an empty
list of prev_events. Normally this is prohibited just because most
events should have a prev_event and we should only use this in special
cases (previously useful for MSC2716).
prev_event_ids:
The event IDs to use as the prev events.
Should normally be left as None to automatically request them
from the database.
state_event_ids:
The full state at a given event. This was previously used particularly
by the MSC2716 /batch_send endpoint. This should normally be left as
None, which will cause the auth_event_ids to be calculated based on the
room state at the prev_events.
ratelimit: Whether to rate limit this send.
txn_id: The transaction ID.
ignore_shadow_ban: True if shadow-banned users should be allowed to
send this event.
outlier: Indicates whether the event is an `outlier`, i.e. if
it's from an arbitrary point and floating in the DAG as
opposed to being inline with the current DAG.
depth: Override the depth used to order the event in the DAG.
Should normally be set to None, which will cause the depth to be calculated
based on the prev_events.
Returns:
The event, and its stream ordering (if deduplication happened,
the previous, duplicate event).
Raises:
ShadowBanError if the requester has been shadow-banned.
"""
if event_dict["type"] == EventTypes.Member:
raise SynapseError(
500, "Tried to send member event through non-member codepath"
)
if not ignore_shadow_ban and requester.shadow_banned:
# We randomly sleep a bit just to annoy the requester.
await self.clock.sleep(random.randint(1, 10))