# Copyright 2010 United States Government as represented by the # Administrator of the National Aeronautics and Space Administration. # All Rights Reserved. # Copyright 2013 Red Hat, Inc. # Copyright 2013 New Dream Network, LLC (DreamHost) # # Licensed under the Apache License, Version 2.0 (the "License"); you may # not use this file except in compliance with the License. You may obtain # a copy of the License at # # http://www.apache.org/licenses/LICENSE-2.0 # # Unless required by applicable law or agreed to in writing, software # distributed under the License is distributed on an "AS IS" BASIS, WITHOUT # WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the # License for the specific language governing permissions and limitations # under the License. __all__ = [ 'ExecutorLoadFailure', 'MessageHandlingServer', 'MessagingServerError', 'ServerListenError', ] import logging import threading from oslo_service import service from oslo_utils import timeutils from stevedore import driver from oslo_messaging._drivers import base as driver_base from oslo_messaging._i18n import _LW from oslo_messaging import _utils from oslo_messaging import exceptions LOG = logging.getLogger(__name__) class MessagingServerError(exceptions.MessagingException): """Base class for all MessageHandlingServer exceptions.""" class ExecutorLoadFailure(MessagingServerError): """Raised if an executor can't be loaded.""" def __init__(self, executor, ex): msg = 'Failed to load executor "%s": %s' % (executor, ex) super(ExecutorLoadFailure, self).__init__(msg) self.executor = executor self.ex = ex class ServerListenError(MessagingServerError): """Raised if we failed to listen on a target.""" def __init__(self, target, ex): msg = 'Failed to listen on target "%s": %s' % (target, ex) super(ServerListenError, self).__init__(msg) self.target = target self.ex = ex class MessageHandlingServer(service.ServiceBase): """Server for handling messages. Connect a transport to a dispatcher that knows how to process the message using an executor that knows how the app wants to create new tasks. """ def __init__(self, transport, dispatcher, executor='blocking'): """Construct a message handling server. The dispatcher parameter is a callable which is invoked with context and message dictionaries each time a message is received. The executor parameter controls how incoming messages will be received and dispatched. By default, the most simple executor is used - the blocking executor. :param transport: the messaging transport :type transport: Transport :param dispatcher: a callable which is invoked for each method :type dispatcher: callable :param executor: name of message executor - for example 'eventlet', 'blocking' :type executor: str """ self.conf = transport.conf self.transport = transport self.dispatcher = dispatcher self.executor = executor # NOTE(sileht): we use a lock to protect the state change of the # server, we don't want to call stop until the transport driver # is fully started. Except for the blocking executor that have # start() that doesn't return if self.executor != "blocking": self._state_cond = threading.Condition() self._dummy_cond = False else: self._state_cond = _utils.DummyCondition() self._dummy_cond = True try: mgr = driver.DriverManager('oslo.messaging.executors', self.executor) except RuntimeError as ex: raise ExecutorLoadFailure(self.executor, ex) else: self._executor_cls = mgr.driver self._executor = None self._running = False super(MessageHandlingServer, self).__init__() def start(self): """Start handling incoming messages. This method causes the server to begin polling the transport for incoming messages and passing them to the dispatcher. Message processing will continue until the stop() method is called. The executor controls how the server integrates with the applications I/O handling strategy - it may choose to poll for messages in a new process, thread or co-operatively scheduled coroutine or simply by registering a callback with an event loop. Similarly, the executor may choose to dispatch messages in a new thread, coroutine or simply the current thread. """ if self._executor is not None: return with self._state_cond: if self._executor is not None: return try: listener = self.dispatcher._listen(self.transport) except driver_base.TransportDriverError as ex: raise ServerListenError(self.target, ex) self._running = True self._executor = self._executor_cls(self.conf, listener, self.dispatcher) self._executor.start() self._state_cond.notify_all() def stop(self): """Stop handling incoming messages. Once this method returns, no new incoming messages will be handled by the server. However, the server may still be in the process of handling some messages, and underlying driver resources associated to this server are still in use. See 'wait' for more details. """ with self._state_cond: if self._executor is not None: self._running = False self._executor.stop() self._state_cond.notify_all() def wait(self): """Wait for message processing to complete. After calling stop(), there may still be some existing messages which have not been completely processed. The wait() method blocks until all message processing has completed. Once it's finished, the underlying driver resources associated to this server are released (like closing useless network connections). """ with self._state_cond: if self._running: LOG.warn(_LW("wait() should be called after stop() as it " "waits for existing messages to finish " "processing")) w = timeutils.StopWatch() w.start() while self._running: # NOTE(harlowja): 1.0 seconds was mostly chosen at # random, but it seems like a reasonable value to # use to avoid spamming the logs with to much # information. self._state_cond.wait(1.0) if self._running and not self._dummy_cond: LOG.warn( _LW("wait() should have been called" " after stop() as wait() waits for existing" " messages to finish processing, it has" " been %0.2f seconds and stop() still has" " not been called"), w.elapsed()) executor = self._executor self._executor = None if executor is not None: # We are the lucky calling thread to wait on the executor to # actually finish. try: executor.wait() finally: # Close listener connection after processing all messages executor.listener.cleanup() executor = None def reset(self): """Reset service. Called in case service running in daemon mode receives SIGHUP. """ # TODO(sergey.vilgelm): implement this method pass