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https://mau.dev/maunium/synapse.git
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458b6f4733
Before we completely invalidated get_users_in_room whenever we updated any current_state_events table. This was way too aggressive.
577 lines
23 KiB
Python
577 lines
23 KiB
Python
# -*- coding: utf-8 -*-
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# Copyright 2015 OpenMarket 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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from synapse.http.servlet import parse_integer, parse_string
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from synapse.http.server import request_handler, finish_request
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from synapse.replication.pusher_resource import PusherResource
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from synapse.replication.presence_resource import PresenceResource
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from synapse.replication.expire_cache import ExpireCacheResource
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from synapse.api.errors import SynapseError
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from twisted.web.resource import Resource
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from twisted.web.server import NOT_DONE_YET
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from twisted.internet import defer
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import ujson as json
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import collections
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import logging
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logger = logging.getLogger(__name__)
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REPLICATION_PREFIX = "/_synapse/replication"
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STREAM_NAMES = (
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("events",),
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("presence",),
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("typing",),
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("receipts",),
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("user_account_data", "room_account_data", "tag_account_data",),
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("backfill",),
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("push_rules",),
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("pushers",),
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("caches",),
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("to_device",),
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("public_rooms",),
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("federation",),
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("device_lists",),
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)
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class ReplicationResource(Resource):
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"""
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HTTP endpoint for extracting data from synapse.
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The streams of data returned by the endpoint are controlled by the
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parameters given to the API. To return a given stream pass a query
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parameter with a position in the stream to return data from or the
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special value "-1" to return data from the start of the stream.
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If there is no data for any of the supplied streams after the given
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position then the request will block until there is data for one
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of the streams. This allows clients to long-poll this API.
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The possible streams are:
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* "streams": A special stream returing the positions of other streams.
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* "events": The new events seen on the server.
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* "presence": Presence updates.
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* "typing": Typing updates.
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* "receipts": Receipt updates.
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* "user_account_data": Top-level per user account data.
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* "room_account_data: Per room per user account data.
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* "tag_account_data": Per room per user tags.
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* "backfill": Old events that have been backfilled from other servers.
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* "push_rules": Per user changes to push rules.
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* "pushers": Per user changes to their pushers.
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* "caches": Cache invalidations.
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The API takes two additional query parameters:
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* "timeout": How long to wait before returning an empty response.
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* "limit": The maximum number of rows to return for the selected streams.
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The response is a JSON object with keys for each stream with updates. Under
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each key is a JSON object with:
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* "position": The current position of the stream.
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* "field_names": The names of the fields in each row.
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* "rows": The updates as an array of arrays.
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There are a number of ways this API could be used:
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1) To replicate the contents of the backing database to another database.
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2) To be notified when the contents of a shared backing database changes.
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3) To "tail" the activity happening on a server for debugging.
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In the first case the client would track all of the streams and store it's
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own copy of the data.
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In the second case the client might theoretically just be able to follow
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the "streams" stream to track where the other streams are. However in
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practise it will probably need to get the contents of the streams in
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order to expire the any in-memory caches. Whether it gets the contents
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of the streams from this replication API or directly from the backing
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store is a matter of taste.
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In the third case the client would use the "streams" stream to find what
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streams are available and their current positions. Then it can start
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long-polling this replication API for new data on those streams.
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"""
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def __init__(self, hs):
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Resource.__init__(self) # Resource is old-style, so no super()
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self.version_string = hs.version_string
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self.store = hs.get_datastore()
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self.sources = hs.get_event_sources()
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self.presence_handler = hs.get_presence_handler()
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self.typing_handler = hs.get_typing_handler()
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self.federation_sender = hs.get_federation_sender()
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self.notifier = hs.notifier
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self.clock = hs.get_clock()
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self.config = hs.get_config()
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self.putChild("remove_pushers", PusherResource(hs))
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self.putChild("syncing_users", PresenceResource(hs))
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self.putChild("expire_cache", ExpireCacheResource(hs))
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def render_GET(self, request):
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self._async_render_GET(request)
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return NOT_DONE_YET
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@defer.inlineCallbacks
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def current_replication_token(self):
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stream_token = yield self.sources.get_current_token()
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backfill_token = yield self.store.get_current_backfill_token()
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push_rules_token, room_stream_token = self.store.get_push_rules_stream_token()
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pushers_token = self.store.get_pushers_stream_token()
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caches_token = self.store.get_cache_stream_token()
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public_rooms_token = self.store.get_current_public_room_stream_id()
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federation_token = self.federation_sender.get_current_token()
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device_list_token = self.store.get_device_stream_token()
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defer.returnValue(_ReplicationToken(
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room_stream_token,
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int(stream_token.presence_key),
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int(stream_token.typing_key),
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int(stream_token.receipt_key),
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int(stream_token.account_data_key),
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backfill_token,
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push_rules_token,
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pushers_token,
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0, # State stream is no longer a thing
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caches_token,
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int(stream_token.to_device_key),
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int(public_rooms_token),
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int(federation_token),
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int(device_list_token),
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))
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@request_handler()
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@defer.inlineCallbacks
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def _async_render_GET(self, request):
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limit = parse_integer(request, "limit", 100)
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timeout = parse_integer(request, "timeout", 10 * 1000)
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request.setHeader(b"Content-Type", b"application/json")
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request_streams = {
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name: parse_integer(request, name)
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for names in STREAM_NAMES for name in names
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}
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request_streams["streams"] = parse_string(request, "streams")
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federation_ack = parse_integer(request, "federation_ack", None)
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def replicate():
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return self.replicate(
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request_streams, limit,
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federation_ack=federation_ack
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)
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writer = yield self.notifier.wait_for_replication(replicate, timeout)
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result = writer.finish()
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for stream_name, stream_content in result.items():
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logger.info(
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"Replicating %d rows of %s from %s -> %s",
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len(stream_content["rows"]),
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stream_name,
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request_streams.get(stream_name),
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stream_content["position"],
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)
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request.write(json.dumps(result, ensure_ascii=False))
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finish_request(request)
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@defer.inlineCallbacks
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def replicate(self, request_streams, limit, federation_ack=None):
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writer = _Writer()
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current_token = yield self.current_replication_token()
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logger.debug("Replicating up to %r", current_token)
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if limit == 0:
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raise SynapseError(400, "Limit cannot be 0")
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yield self.account_data(writer, current_token, limit, request_streams)
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yield self.events(writer, current_token, limit, request_streams)
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# TODO: implement limit
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yield self.presence(writer, current_token, request_streams)
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yield self.typing(writer, current_token, request_streams)
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yield self.receipts(writer, current_token, limit, request_streams)
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yield self.push_rules(writer, current_token, limit, request_streams)
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yield self.pushers(writer, current_token, limit, request_streams)
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yield self.caches(writer, current_token, limit, request_streams)
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yield self.to_device(writer, current_token, limit, request_streams)
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yield self.public_rooms(writer, current_token, limit, request_streams)
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yield self.device_lists(writer, current_token, limit, request_streams)
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self.federation(writer, current_token, limit, request_streams, federation_ack)
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self.streams(writer, current_token, request_streams)
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logger.debug("Replicated %d rows", writer.total)
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defer.returnValue(writer)
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def streams(self, writer, current_token, request_streams):
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request_token = request_streams.get("streams")
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streams = []
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if request_token is not None:
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if request_token == "-1":
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for names, position in zip(STREAM_NAMES, current_token):
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streams.extend((name, position) for name in names)
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else:
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items = zip(
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STREAM_NAMES,
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current_token,
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_ReplicationToken(request_token)
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)
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for names, current_id, last_id in items:
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if last_id < current_id:
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streams.extend((name, current_id) for name in names)
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if streams:
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writer.write_header_and_rows(
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"streams", streams, ("name", "position"),
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position=str(current_token)
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)
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@defer.inlineCallbacks
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def events(self, writer, current_token, limit, request_streams):
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request_events = request_streams.get("events")
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request_backfill = request_streams.get("backfill")
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if request_events is not None or request_backfill is not None:
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if request_events is None:
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request_events = current_token.events
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if request_backfill is None:
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request_backfill = current_token.backfill
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no_new_tokens = (
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request_events == current_token.events
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and request_backfill == current_token.backfill
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)
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if no_new_tokens:
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return
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res = yield self.store.get_all_new_events(
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request_backfill, request_events,
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current_token.backfill, current_token.events,
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limit
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)
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upto_events_token = _position_from_rows(
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res.new_forward_events, current_token.events
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)
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upto_backfill_token = _position_from_rows(
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res.new_backfill_events, current_token.backfill
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)
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if request_events != upto_events_token:
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writer.write_header_and_rows("events", res.new_forward_events, (
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"position", "internal", "json", "state_group"
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), position=upto_events_token)
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if request_backfill != upto_backfill_token:
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writer.write_header_and_rows("backfill", res.new_backfill_events, (
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"position", "internal", "json", "state_group",
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), position=upto_backfill_token)
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writer.write_header_and_rows(
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"forward_ex_outliers", res.forward_ex_outliers,
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("position", "event_id", "state_group"),
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)
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writer.write_header_and_rows(
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"backward_ex_outliers", res.backward_ex_outliers,
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("position", "event_id", "state_group"),
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)
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@defer.inlineCallbacks
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def presence(self, writer, current_token, request_streams):
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current_position = current_token.presence
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request_presence = request_streams.get("presence")
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if request_presence is not None and request_presence != current_position:
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presence_rows = yield self.presence_handler.get_all_presence_updates(
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request_presence, current_position
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)
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upto_token = _position_from_rows(presence_rows, current_position)
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writer.write_header_and_rows("presence", presence_rows, (
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"position", "user_id", "state", "last_active_ts",
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"last_federation_update_ts", "last_user_sync_ts",
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"status_msg", "currently_active",
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), position=upto_token)
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@defer.inlineCallbacks
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def typing(self, writer, current_token, request_streams):
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current_position = current_token.typing
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request_typing = request_streams.get("typing")
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if request_typing is not None and request_typing != current_position:
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# If they have a higher token than current max, we can assume that
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# they had been talking to a previous instance of the master. Since
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# we reset the token on restart, the best (but hacky) thing we can
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# do is to simply resend down all the typing notifications.
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if request_typing > current_position:
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request_typing = 0
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typing_rows = yield self.typing_handler.get_all_typing_updates(
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request_typing, current_position
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)
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upto_token = _position_from_rows(typing_rows, current_position)
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writer.write_header_and_rows("typing", typing_rows, (
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"position", "room_id", "typing"
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), position=upto_token)
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@defer.inlineCallbacks
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def receipts(self, writer, current_token, limit, request_streams):
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current_position = current_token.receipts
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request_receipts = request_streams.get("receipts")
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if request_receipts is not None and request_receipts != current_position:
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receipts_rows = yield self.store.get_all_updated_receipts(
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request_receipts, current_position, limit
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)
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upto_token = _position_from_rows(receipts_rows, current_position)
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writer.write_header_and_rows("receipts", receipts_rows, (
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"position", "room_id", "receipt_type", "user_id", "event_id", "data"
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), position=upto_token)
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@defer.inlineCallbacks
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def account_data(self, writer, current_token, limit, request_streams):
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current_position = current_token.account_data
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user_account_data = request_streams.get("user_account_data")
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room_account_data = request_streams.get("room_account_data")
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tag_account_data = request_streams.get("tag_account_data")
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if user_account_data is not None or room_account_data is not None:
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if user_account_data is None:
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user_account_data = current_position
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if room_account_data is None:
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room_account_data = current_position
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no_new_tokens = (
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user_account_data == current_position
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and room_account_data == current_position
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)
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if no_new_tokens:
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return
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user_rows, room_rows = yield self.store.get_all_updated_account_data(
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user_account_data, room_account_data, current_position, limit
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)
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upto_users_token = _position_from_rows(user_rows, current_position)
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upto_rooms_token = _position_from_rows(room_rows, current_position)
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writer.write_header_and_rows("user_account_data", user_rows, (
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"position", "user_id", "type", "content"
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), position=upto_users_token)
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writer.write_header_and_rows("room_account_data", room_rows, (
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"position", "user_id", "room_id", "type", "content"
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), position=upto_rooms_token)
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if tag_account_data is not None:
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tag_rows = yield self.store.get_all_updated_tags(
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tag_account_data, current_position, limit
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)
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upto_tag_token = _position_from_rows(tag_rows, current_position)
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writer.write_header_and_rows("tag_account_data", tag_rows, (
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"position", "user_id", "room_id", "tags"
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), position=upto_tag_token)
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@defer.inlineCallbacks
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def push_rules(self, writer, current_token, limit, request_streams):
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current_position = current_token.push_rules
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push_rules = request_streams.get("push_rules")
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if push_rules is not None and push_rules != current_position:
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rows = yield self.store.get_all_push_rule_updates(
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push_rules, current_position, limit
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)
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upto_token = _position_from_rows(rows, current_position)
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writer.write_header_and_rows("push_rules", rows, (
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"position", "event_stream_ordering", "user_id", "rule_id", "op",
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"priority_class", "priority", "conditions", "actions"
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), position=upto_token)
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@defer.inlineCallbacks
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def pushers(self, writer, current_token, limit, request_streams):
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current_position = current_token.pushers
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pushers = request_streams.get("pushers")
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if pushers is not None and pushers != current_position:
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updated, deleted = yield self.store.get_all_updated_pushers(
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pushers, current_position, limit
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)
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upto_token = _position_from_rows(updated, current_position)
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writer.write_header_and_rows("pushers", updated, (
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"position", "user_id", "access_token", "profile_tag", "kind",
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"app_id", "app_display_name", "device_display_name", "pushkey",
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"ts", "lang", "data"
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), position=upto_token)
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writer.write_header_and_rows("deleted_pushers", deleted, (
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"position", "user_id", "app_id", "pushkey"
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), position=upto_token)
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@defer.inlineCallbacks
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def caches(self, writer, current_token, limit, request_streams):
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current_position = current_token.caches
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caches = request_streams.get("caches")
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if caches is not None and caches != current_position:
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updated_caches = yield self.store.get_all_updated_caches(
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caches, current_position, limit
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)
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upto_token = _position_from_rows(updated_caches, current_position)
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writer.write_header_and_rows("caches", updated_caches, (
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"position", "cache_func", "keys", "invalidation_ts"
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), position=upto_token)
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@defer.inlineCallbacks
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def to_device(self, writer, current_token, limit, request_streams):
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current_position = current_token.to_device
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to_device = request_streams.get("to_device")
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if to_device is not None and to_device != current_position:
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to_device_rows = yield self.store.get_all_new_device_messages(
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to_device, current_position, limit
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)
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upto_token = _position_from_rows(to_device_rows, current_position)
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writer.write_header_and_rows("to_device", to_device_rows, (
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"position", "user_id", "device_id", "message_json"
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), position=upto_token)
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@defer.inlineCallbacks
|
|
def public_rooms(self, writer, current_token, limit, request_streams):
|
|
current_position = current_token.public_rooms
|
|
|
|
public_rooms = request_streams.get("public_rooms")
|
|
|
|
if public_rooms is not None and public_rooms != current_position:
|
|
public_rooms_rows = yield self.store.get_all_new_public_rooms(
|
|
public_rooms, current_position, limit
|
|
)
|
|
upto_token = _position_from_rows(public_rooms_rows, current_position)
|
|
writer.write_header_and_rows("public_rooms", public_rooms_rows, (
|
|
"position", "room_id", "visibility", "appservice_id", "network_id",
|
|
), position=upto_token)
|
|
|
|
def federation(self, writer, current_token, limit, request_streams, federation_ack):
|
|
if self.config.send_federation:
|
|
return
|
|
|
|
current_position = current_token.federation
|
|
|
|
federation = request_streams.get("federation")
|
|
|
|
if federation is not None and federation != current_position:
|
|
federation_rows = self.federation_sender.get_replication_rows(
|
|
federation, limit, federation_ack=federation_ack,
|
|
)
|
|
upto_token = _position_from_rows(federation_rows, current_position)
|
|
writer.write_header_and_rows("federation", federation_rows, (
|
|
"position", "type", "content",
|
|
), position=upto_token)
|
|
|
|
@defer.inlineCallbacks
|
|
def device_lists(self, writer, current_token, limit, request_streams):
|
|
current_position = current_token.device_lists
|
|
|
|
device_lists = request_streams.get("device_lists")
|
|
|
|
if device_lists is not None and device_lists != current_position:
|
|
changes = yield self.store.get_all_device_list_changes_for_remotes(
|
|
device_lists,
|
|
)
|
|
writer.write_header_and_rows("device_lists", changes, (
|
|
"position", "user_id", "destination",
|
|
), position=current_position)
|
|
|
|
|
|
class _Writer(object):
|
|
"""Writes the streams as a JSON object as the response to the request"""
|
|
def __init__(self):
|
|
self.streams = {}
|
|
self.total = 0
|
|
|
|
def write_header_and_rows(self, name, rows, fields, position=None):
|
|
if position is None:
|
|
if rows:
|
|
position = rows[-1][0]
|
|
else:
|
|
return
|
|
|
|
self.streams[name] = {
|
|
"position": position if type(position) is int else str(position),
|
|
"field_names": fields,
|
|
"rows": rows,
|
|
}
|
|
|
|
self.total += len(rows)
|
|
|
|
def __nonzero__(self):
|
|
return bool(self.total)
|
|
|
|
def finish(self):
|
|
return self.streams
|
|
|
|
|
|
class _ReplicationToken(collections.namedtuple("_ReplicationToken", (
|
|
"events", "presence", "typing", "receipts", "account_data", "backfill",
|
|
"push_rules", "pushers", "state", "caches", "to_device", "public_rooms",
|
|
"federation", "device_lists",
|
|
))):
|
|
__slots__ = []
|
|
|
|
def __new__(cls, *args):
|
|
if len(args) == 1:
|
|
streams = [int(value) for value in args[0].split("_")]
|
|
if len(streams) < len(cls._fields):
|
|
streams.extend([0] * (len(cls._fields) - len(streams)))
|
|
return cls(*streams)
|
|
else:
|
|
return super(_ReplicationToken, cls).__new__(cls, *args)
|
|
|
|
def __str__(self):
|
|
return "_".join(str(value) for value in self)
|
|
|
|
|
|
def _position_from_rows(rows, current_position):
|
|
"""Calculates a position to return for a stream. Ideally we want to return the
|
|
position of the last row, as that will be the most correct. However, if there
|
|
are no rows we fall back to using the current position to stop us from
|
|
repeatedly hitting the storage layer unncessarily thinking there are updates.
|
|
(Not all advances of the token correspond to an actual update)
|
|
|
|
We can't just always return the current position, as we often limit the
|
|
number of rows we replicate, and so the stream may lag. The assumption is
|
|
that if the storage layer returns no new rows then we are not lagging and
|
|
we are at the `current_position`.
|
|
"""
|
|
if rows:
|
|
return rows[-1][0]
|
|
return current_position
|