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Add initial cut of federation send queue
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174
synapse/federation/send_queue.py
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174
synapse/federation/send_queue.py
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# -*- coding: utf-8 -*-
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# Copyright 2014-2016 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 blist import sorteddict
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class FederationRemoteSendQueue(object):
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def __init__(self, hs):
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self.clock = hs.get_clock()
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# TODO: Add metrics for size of lists below
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self.presence_map = {}
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self.presence_changed = sorteddict()
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self.keyed_edu = {}
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self.keyed_edu_changed = sorteddict()
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self.edus = sorteddict()
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self.failures = sorteddict()
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self.pos = 1
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self.pos_time = sorteddict()
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self.clock.looping_call(self._clear_queue, 30 * 1000)
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def _next_pos(self):
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pos = self.pos
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self.pos += 1
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self.pos_time[self.clock.time_msec()] = pos
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return pos
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def _clear_queue(self):
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# TODO measure this function time.
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FIVE_MINUTES_AGO = 5 * 60 * 1000
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now = self.clock.time_msec()
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keys = self.pos_time.keys()
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time = keys.bisect_left(now - FIVE_MINUTES_AGO)
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if not keys[:time]:
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return
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position_to_delete = max(keys[:time])
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for key in keys[:time]:
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del self.pos_time[key]
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self._clear_queue_before_pos(position_to_delete)
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def _clear_queue_before_pos(self, position_to_delete):
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# Delete things out of presence maps
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keys = self.presence_changed.keys()
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i = keys.bisect_left(position_to_delete)
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for key in keys[:i]:
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del self.presence_changed[key]
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user_ids = set()
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for _, states in self.presence_changed.values():
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user_ids.update(s.user_id for s in user_ids)
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to_del = [user_id for user_id in self.presence_map if user_id not in user_ids]
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for user_id in self.to_del:
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del self.presence_map[user_id]
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# Delete things out of keyed edus
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keys = self.keyed_edu_changed.keys()
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i = keys.bisect_left(position_to_delete)
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for key in keys[:i]:
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del self.keyed_edu_changed[key]
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live_keys = set()
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for edu_key in self.keyed_edu_changed.values():
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live_keys.add(edu_key)
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to_del = [edu_key for edu_key in self.keyed_edu if edu_key not in live_keys]
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for edu_key in to_del:
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del self.keyed_edu[edu_key]
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# Delete things out of edu map
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keys = self.edus.keys()
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i = keys.bisect_left(position_to_delete)
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for key in keys[:i]:
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del self.edus[key]
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# Delete things out of failure map
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keys = self.failures.keys()
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i = keys.bisect_left(position_to_delete)
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for key in keys[:i]:
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del self.failures[key]
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def send_edu(self, edu, key=None):
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pos = self._next_pos()
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if key:
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self.keyed_edu[(edu.destination, key)] = edu
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self.keyed_edu_changed[pos] = (edu.destination, key)
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else:
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self.edus[pos] = edu
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def send_presence(self, destination, states):
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pos = self._next_pos()
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self.presence_map.presence_map.update({
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state.user_id: state
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for state in states
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})
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self.presence_changed[pos] = (destination, [
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state.user_id for state in states
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])
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def send_failure(self, failure, destination):
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pos = self._next_pos()
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self.failures[pos] = (destination, failure)
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def notify_new_device_message(self, destination):
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# TODO
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pass
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def get_replication_rows(self, token):
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rows = []
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# Fetch changed presence
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keys = self.presence_changed.keys()
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i = keys.bisect_right(token)
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dest_user_ids = set((k, self.presence_changed[k]) for k in keys[i:])
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for (key, (dest, user_ids)) in dest_user_ids:
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for user_id in user_ids:
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rows.append((key, dest, "p", self.presence_map[user_id]))
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# Fetch changes keyed edus
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keys = self.keyed_edu_changed.keys()
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i = keys.bisect_right(token)
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keyed_edus = set((k, self.keyed_edu_changed[k]) for k in keys[i:])
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for (pos, edu_key) in keyed_edus:
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rows.append((pos, edu_key, "k", self.keyed_edu[edu_key]))
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# Fetch changed edus
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keys = self.edus.keys()
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i = keys.bisect_right(token)
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edus = set((k, self.edus[k]) for k in keys[i:])
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for (pos, edu) in edus:
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rows.append((pos, edu.destination, "e", edu))
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# Fetch changed failures
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keys = self.failures.keys()
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i = keys.bisect_right(token)
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failures = set((k, self.failures[k]) for k in keys[i:])
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for (pos, (destination, failure)) in failures:
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rows.append((pos, destination, "f", failure))
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# Sort rows based on pos
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rows.sort()
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return rows
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