mirror of
https://mau.dev/maunium/synapse.git
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441 lines
15 KiB
Python
441 lines
15 KiB
Python
# -*- 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 twisted.internet import defer
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from .persistence import TransactionActions
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from .units import Transaction, Edu
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from synapse.api.errors import HttpResponseException
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from synapse.util.async import run_on_reactor
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from synapse.util.logcontext import preserve_context_over_fn
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from synapse.util.retryutils import (
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get_retry_limiter, NotRetryingDestination,
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)
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from synapse.util.metrics import measure_func
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from synapse.handlers.presence import format_user_presence_state
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import synapse.metrics
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import logging
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logger = logging.getLogger(__name__)
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metrics = synapse.metrics.get_metrics_for(__name__)
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class TransactionQueue(object):
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"""This class makes sure we only have one transaction in flight at
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a time for a given destination.
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It batches pending PDUs into single transactions.
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"""
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def __init__(self, hs, transport_layer):
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self.server_name = hs.hostname
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self.store = hs.get_datastore()
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self.transaction_actions = TransactionActions(self.store)
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self.transport_layer = transport_layer
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self.clock = hs.get_clock()
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# Is a mapping from destinations -> deferreds. Used to keep track
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# of which destinations have transactions in flight and when they are
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# done
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self.pending_transactions = {}
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metrics.register_callback(
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"pending_destinations",
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lambda: len(self.pending_transactions),
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)
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# Is a mapping from destination -> list of
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# tuple(pending pdus, deferred, order)
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self.pending_pdus_by_dest = pdus = {}
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# destination -> list of tuple(edu, deferred)
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self.pending_edus_by_dest = edus = {}
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# Presence needs to be separate as we send single aggragate EDUs
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self.pending_presence_by_dest = presence = {}
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self.pending_edus_keyed_by_dest = edus_keyed = {}
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metrics.register_callback(
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"pending_pdus",
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lambda: sum(map(len, pdus.values())),
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)
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metrics.register_callback(
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"pending_edus",
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lambda: (
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sum(map(len, edus.values()))
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+ sum(map(len, presence.values()))
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+ sum(map(len, edus_keyed.values()))
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),
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)
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# destination -> list of tuple(failure, deferred)
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self.pending_failures_by_dest = {}
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self.last_device_stream_id_by_dest = {}
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# HACK to get unique tx id
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self._next_txn_id = int(self.clock.time_msec())
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def can_send_to(self, destination):
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"""Can we send messages to the given server?
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We can't send messages to ourselves. If we are running on localhost
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then we can only federation with other servers running on localhost.
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Otherwise we only federate with servers on a public domain.
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Args:
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destination(str): The server we are possibly trying to send to.
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Returns:
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bool: True if we can send to the server.
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"""
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if destination == self.server_name:
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return False
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if self.server_name.startswith("localhost"):
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return destination.startswith("localhost")
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else:
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return not destination.startswith("localhost")
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def enqueue_pdu(self, pdu, destinations, order):
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# We loop through all destinations to see whether we already have
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# a transaction in progress. If we do, stick it in the pending_pdus
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# table and we'll get back to it later.
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destinations = set(destinations)
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destinations = set(
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dest for dest in destinations if self.can_send_to(dest)
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)
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logger.debug("Sending to: %s", str(destinations))
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if not destinations:
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return
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for destination in destinations:
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self.pending_pdus_by_dest.setdefault(destination, []).append(
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(pdu, order)
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)
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preserve_context_over_fn(
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self._attempt_new_transaction, destination
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)
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def enqueue_presence(self, destination, states):
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self.pending_presence_by_dest.setdefault(destination, {}).update({
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state.user_id: state for state in states
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})
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preserve_context_over_fn(
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self._attempt_new_transaction, destination
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)
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def enqueue_edu(self, edu, key=None):
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destination = edu.destination
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if not self.can_send_to(destination):
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return
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if key:
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self.pending_edus_keyed_by_dest.setdefault(
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destination, {}
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)[(edu.edu_type, key)] = edu
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else:
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self.pending_edus_by_dest.setdefault(destination, []).append(edu)
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preserve_context_over_fn(
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self._attempt_new_transaction, destination
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)
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def enqueue_failure(self, failure, destination):
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if destination == self.server_name or destination == "localhost":
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return
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if not self.can_send_to(destination):
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return
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self.pending_failures_by_dest.setdefault(
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destination, []
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).append(failure)
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preserve_context_over_fn(
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self._attempt_new_transaction, destination
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)
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def enqueue_device_messages(self, destination):
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if destination == self.server_name or destination == "localhost":
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return
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if not self.can_send_to(destination):
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return
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preserve_context_over_fn(
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self._attempt_new_transaction, destination
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)
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@defer.inlineCallbacks
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def _attempt_new_transaction(self, destination):
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# list of (pending_pdu, deferred, order)
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if destination in self.pending_transactions:
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# XXX: pending_transactions can get stuck on by a never-ending
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# request at which point pending_pdus_by_dest just keeps growing.
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# we need application-layer timeouts of some flavour of these
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# requests
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logger.debug(
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"TX [%s] Transaction already in progress",
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destination
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)
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return
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try:
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self.pending_transactions[destination] = 1
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yield run_on_reactor()
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while True:
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pending_pdus = self.pending_pdus_by_dest.pop(destination, [])
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pending_edus = self.pending_edus_by_dest.pop(destination, [])
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pending_presence = self.pending_presence_by_dest.pop(destination, {})
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pending_failures = self.pending_failures_by_dest.pop(destination, [])
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pending_edus.extend(
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self.pending_edus_keyed_by_dest.pop(destination, {}).values()
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)
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limiter = yield get_retry_limiter(
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destination,
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self.clock,
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self.store,
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)
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device_message_edus, device_stream_id = (
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yield self._get_new_device_messages(destination)
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)
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pending_edus.extend(device_message_edus)
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if pending_presence:
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pending_edus.append(
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Edu(
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origin=self.server_name,
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destination=destination,
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edu_type="m.presence",
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content={
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"push": [
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format_user_presence_state(
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presence, self.clock.time_msec()
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)
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for presence in pending_presence.values()
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]
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},
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)
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)
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if pending_pdus:
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logger.debug("TX [%s] len(pending_pdus_by_dest[dest]) = %d",
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destination, len(pending_pdus))
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if not pending_pdus and not pending_edus and not pending_failures:
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logger.debug("TX [%s] Nothing to send", destination)
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self.last_device_stream_id_by_dest[destination] = (
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device_stream_id
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)
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return
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success = yield self._send_new_transaction(
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destination, pending_pdus, pending_edus, pending_failures,
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device_stream_id,
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should_delete_from_device_stream=bool(device_message_edus),
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limiter=limiter,
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)
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if not success:
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break
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except NotRetryingDestination:
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logger.info(
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"TX [%s] not ready for retry yet - "
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"dropping transaction for now",
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destination,
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)
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finally:
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# We want to be *very* sure we delete this after we stop processing
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self.pending_transactions.pop(destination, None)
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@defer.inlineCallbacks
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def _get_new_device_messages(self, destination):
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last_device_stream_id = self.last_device_stream_id_by_dest.get(destination, 0)
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to_device_stream_id = self.store.get_to_device_stream_token()
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contents, stream_id = yield self.store.get_new_device_msgs_for_remote(
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destination, last_device_stream_id, to_device_stream_id
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)
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edus = [
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Edu(
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origin=self.server_name,
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destination=destination,
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edu_type="m.direct_to_device",
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content=content,
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)
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for content in contents
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]
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defer.returnValue((edus, stream_id))
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@measure_func("_send_new_transaction")
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@defer.inlineCallbacks
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def _send_new_transaction(self, destination, pending_pdus, pending_edus,
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pending_failures, device_stream_id,
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should_delete_from_device_stream, limiter):
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# Sort based on the order field
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pending_pdus.sort(key=lambda t: t[1])
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pdus = [x[0] for x in pending_pdus]
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edus = pending_edus
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failures = [x.get_dict() for x in pending_failures]
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success = True
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try:
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logger.debug("TX [%s] _attempt_new_transaction", destination)
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txn_id = str(self._next_txn_id)
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logger.debug(
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"TX [%s] {%s} Attempting new transaction"
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" (pdus: %d, edus: %d, failures: %d)",
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destination, txn_id,
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len(pdus),
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len(edus),
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len(failures)
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)
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logger.debug("TX [%s] Persisting transaction...", destination)
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transaction = Transaction.create_new(
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origin_server_ts=int(self.clock.time_msec()),
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transaction_id=txn_id,
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origin=self.server_name,
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destination=destination,
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pdus=pdus,
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edus=edus,
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pdu_failures=failures,
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)
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self._next_txn_id += 1
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yield self.transaction_actions.prepare_to_send(transaction)
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logger.debug("TX [%s] Persisted transaction", destination)
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logger.info(
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"TX [%s] {%s} Sending transaction [%s],"
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" (PDUs: %d, EDUs: %d, failures: %d)",
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destination, txn_id,
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transaction.transaction_id,
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len(pdus),
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len(edus),
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len(failures),
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)
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with limiter:
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# Actually send the transaction
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# FIXME (erikj): This is a bit of a hack to make the Pdu age
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# keys work
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def json_data_cb():
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data = transaction.get_dict()
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now = int(self.clock.time_msec())
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if "pdus" in data:
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for p in data["pdus"]:
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if "age_ts" in p:
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unsigned = p.setdefault("unsigned", {})
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unsigned["age"] = now - int(p["age_ts"])
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del p["age_ts"]
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return data
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try:
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response = yield self.transport_layer.send_transaction(
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transaction, json_data_cb
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)
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code = 200
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if response:
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for e_id, r in response.get("pdus", {}).items():
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if "error" in r:
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logger.warn(
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"Transaction returned error for %s: %s",
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e_id, r,
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)
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except HttpResponseException as e:
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code = e.code
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response = e.response
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logger.info(
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"TX [%s] {%s} got %d response",
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destination, txn_id, code
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)
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logger.debug("TX [%s] Sent transaction", destination)
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logger.debug("TX [%s] Marking as delivered...", destination)
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yield self.transaction_actions.delivered(
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transaction, code, response
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)
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logger.debug("TX [%s] Marked as delivered", destination)
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if code != 200:
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for p in pdus:
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logger.info(
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"Failed to send event %s to %s", p.event_id, destination
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)
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success = False
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else:
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# Remove the acknowledged device messages from the database
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if should_delete_from_device_stream:
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yield self.store.delete_device_msgs_for_remote(
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destination, device_stream_id
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)
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self.last_device_stream_id_by_dest[destination] = device_stream_id
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except RuntimeError as e:
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# We capture this here as there as nothing actually listens
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# for this finishing functions deferred.
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logger.warn(
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"TX [%s] Problem in _attempt_transaction: %s",
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destination,
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e,
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)
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success = False
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for p in pdus:
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logger.info("Failed to send event %s to %s", p.event_id, destination)
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except Exception as e:
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# We capture this here as there as nothing actually listens
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# for this finishing functions deferred.
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logger.warn(
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"TX [%s] Problem in _attempt_transaction: %s",
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destination,
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e,
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)
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success = False
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for p in pdus:
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logger.info("Failed to send event %s to %s", p.event_id, destination)
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defer.returnValue(success)
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