mirror of
https://github.com/wassname/catalyst.git
synced 2026-06-29 05:32:55 +08:00
594 lines
17 KiB
Python
594 lines
17 KiB
Python
"""
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Contains the base class for all components.
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"""
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import os
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import sys
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import uuid
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import time
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import socket
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import logbook
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import traceback
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import humanhash
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from setproctitle import setproctitle
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# pyzmq
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import zmq
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# gevent_zeromq
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import gevent_zeromq
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# zmq_ctypes
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#import zmq_ctypes
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from zipline.utils.gpoll import _Poller as GeventPoller
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from zipline.protocol import CONTROL_PROTOCOL, COMPONENT_STATE, \
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COMPONENT_FAILURE, CONTROL_FRAME
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log = logbook.Logger('Component')
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from zipline.exceptions import ComponentNoInit
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from zipline.transitions import WorkflowMeta
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# LOGBOOK - embed PID in log output
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class Component(object):
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"""
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Base class for components. Defines the the base messaging
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interface for components.
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:param addresses: a dict of name_string -> zmq port address strings.
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Must have the following entries
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:param sync_address: socket address used for synchronizing the start of
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all workers, heartbeating, and exit notification
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will be used in REP/REQ sockets. Bind is always on
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the REP side.
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:param data_address: socket address used for data sources to stream
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their records. Will be used in PUSH/PULL sockets
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between data sources and a Feed. Bind will always
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be on the PULL side (we always have N producers and
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1 consumer)
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:param feed_address: socket address used to publish consolidated feed
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from serialization of data sources
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will be used in PUB/SUB sockets between Feed and
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Transforms. Bind is always on the PUB side.
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:param merge_address: socket address used to publish transformed
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values. will be used in PUSH/PULL from many
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transforms to one Merge Bind will always be on
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the PULL side (we always have N producers and
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1 consumer)
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:param result_address: socket address used to publish merged data
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source feed and transforms to clients will be
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used in PUB/SUB from one Merge to one or many
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clients. Bind is always on the PUB side.
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bind/connect methods will return the correct socket type for each
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address.
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"""
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# ------------
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# Construction
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# ------------
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abstract = True
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#__metaclass__ = WorkflowMeta
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def __init__(self, *args, **kwargs):
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self.zmq = None
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self.context = None
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self.addresses = None
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self.out_socket = None
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self.killed = False
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self.controller = None
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# timeout after a full minute
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self.heartbeat_timeout = 60 *1000
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self.state_flag = COMPONENT_STATE.OK
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self.error_state = COMPONENT_FAILURE.NOFAILURE
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self.on_done = None
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self._exception = None
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self.fail_time = None
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self.start_tic = None
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self.stop_tic = None
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self.note = None
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self.confirmed = False
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# Humanhashes make this way easier to debug because they stick
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# in your mind unlike a 32 byte string of random hex.
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self.guid = uuid.uuid4()
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self.huid = humanhash.humanize(self.guid.hex)
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# This is where component specific constructors should be
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# defined. Arguments passed to init are threaded through.
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self.init(*args, **kwargs)
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def init(self):
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"""
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Subclasses should override this to extend the setup for the
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class. Shouldn't have side effects.
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"""
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raise ComponentNoInit(self.__class__)
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# ------------
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# Core Methods
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# ------------
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def open(self):
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"""
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Open the connections needed to start doing work.
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"""
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raise NotImplementedError
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def ready(self):
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"""
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Return ``True`` if and only if the component has finished
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execution.
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"""
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return self.state_flag in [COMPONENT_STATE.DONE, \
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COMPONENT_STATE.EXCEPTION]
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def successful(self):
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"""
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Return ``True`` if and only if the component has finished
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execution successfully, that is, without raising an error.
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"""
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return self.state_flag == COMPONENT_STATE.DONE and not \
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self.exception
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@property
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def exception(self):
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"""
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Holds the exception that the component failed on, or ``None`` if
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the component has not failed.
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"""
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return self._exception
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def do_work(self):
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raise NotImplementedError
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def init_zmq(self, flavor):
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"""
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ZMQ in all flavors. Have it your way.
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mp - Distinct contexts | pyzmq
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thread - Same context | pyzmq
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green - Same context | gevent_zeromq
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pypy - Same context | zmq_ctypes
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"""
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if flavor == 'mp':
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self.zmq = zmq
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self.context = self.zmq.Context()
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self.zmq_poller = self.zmq.Poller
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# The the process title so you can watch it in top
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setproctitle(self.__class__.__name__)
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return
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if flavor == 'thread':
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self.zmq = zmq
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self.context = self.zmq.Context.instance()
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self.zmq_poller = self.zmq.Poller
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return
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if flavor == 'green':
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self.zmq = gevent_zeromq.zmq
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self.context = self.zmq.Context.instance()
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self.zmq_poller = GeventPoller
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return
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if flavor == 'pypy':
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self.zmq = zmq
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self.context = self.zmq.Context.instance()
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self.zmq_poller = self.zmq.Poller
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return
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raise Exception("Unknown ZeroMQ Flavor")
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def _run(self):
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self.start_tic = time.time()
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self.done = False # TODO: use state flag
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self.sockets = []
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self.init_zmq(self.zmq_flavor)
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self.setup_poller()
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self.open()
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self.setup_sync()
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self.setup_control()
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self.loop()
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self.shutdown()
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self.stop_tic = time.time()
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def run(self, catch_exceptions=True):
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"""
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Run the component.
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Optionally takes an argument to catch and log all exceptions
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raised during execution ues this with care since it makes it
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very hard to debug since it mucks up your stacktraces.
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"""
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if catch_exceptions:
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try:
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self._run()
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except Exception as exc:
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exc_info = sys.exc_info()
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self.signal_exception(exc)
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# Reraise the exception
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raise exc_info[0], exc_info[1], exc_info[2]
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finally:
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self.shutdown()
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self.teardown_sockets()
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def working(self):
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"""
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Controls when the work loop will start and end
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If we encounter an exception or signal done exit.
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Overload for higher order behavior.
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"""
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return (not self.done)
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def loop(self, lockstep=True):
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"""
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Loop to do work while we still have work to do.
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"""
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while self.working():
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self.confirm()
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self.do_work()
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def confirm(self):
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"""
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Send a synchronization request to the host.
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"""
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if not self.confirmed:
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# TODO: proper framing
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self.sync_socket.send(self.get_id + ":RUN")
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self.receive_sync_ack() # blocking
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self.confirmed = True
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def runtime(self):
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if self.ready() and self.start_tic and self.stop_tic:
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return self.stop_tic - self.start_tic
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# ----------------------------
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# Cleanup & Modes of Failure
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# ----------------------------
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def teardown_sockets(self):
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"""
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Close all zmq sockets safely. This is universal, no matter where
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this is running it will need the sockets closed.
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"""
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#close all the sockets
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for sock in self.sockets:
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sock.close()
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def shutdown(self):
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"""
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Clean shutdown.
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Tear down after normal operation.
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"""
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if self.on_done:
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self.on_done()
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def kill(self):
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"""
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Unclean shutdown.
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Tear down ( fast ) as a mode of failure in the simulation or on
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service halt.
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"""
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raise NotImplementedError
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# ----------------------
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# Internal Maintenance
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# ----------------------
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def signal_exception(self, exc=None, scope=None):
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"""
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This is *very* important error tracking handler.
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Will inform the system that the component has failed and how it
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has failed.
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"""
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if scope == 'algo':
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self.error_state = COMPONENT_FAILURE.ALGOEXCEPT
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else:
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self.error_state = COMPONENT_FAILURE.HOSTEXCEPT
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self.state_flag = COMPONENT_STATE.EXCEPTION
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# mark the time of failure so we can track the failure
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# progogation through the system.
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self.stop_tic = time.time()
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self._exception = exc
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exc_type, exc_value, exc_traceback = sys.exc_info()
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trace = '\n>>>'.join(traceback.format_exception(exc_type, exc_value, exc_traceback))
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sys.stdout.write(trace)
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if hasattr(self, 'control_out'):
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exception_frame = CONTROL_FRAME(
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CONTROL_PROTOCOL.EXCEPTION,
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trace
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)
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self.control_out.send(exception_frame)
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#LOGGER.exception("Unexpected error in run for {id}.".format(id=self.get_id))
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def signal_done(self):
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"""
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Notify down stream components that we're done.
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"""
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self.state_flag = COMPONENT_STATE.DONE
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if self.out_socket:
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self.out_socket.send(str(CONTROL_PROTOCOL.DONE))
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#notify host we're done
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# TODO: proper framing
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self.sync_socket.send(self.get_id + ":" + str(CONTROL_PROTOCOL.DONE))
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#notify controller we're done
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done_frame = CONTROL_FRAME(
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CONTROL_PROTOCOL.DONE,
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''
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)
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self.control_out.send(done_frame)
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self.receive_sync_ack()
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#notify internal work look that we're done
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self.done = True # TODO: use state flag
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#log.info("[%s] DONE" % self.get_id)
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# -----------
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# Messaging
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# -----------
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def setup_poller(self):
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"""
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Setup the poller used for multiplexing the incoming data
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handling sockets.
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"""
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# Initializes the poller class specified by the flavor of
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# ZeroMQ. Either zmq.Poller or gpoll.Poller .
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self.poll = self.zmq_poller()
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def receive_sync_ack(self):
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"""
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Wait for synchronization reply from the host.
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DEPRECATED, left in for compatability for now.
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"""
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socks = dict(self.sync_poller.poll(self.heartbeat_timeout))
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if self.sync_socket in socks and socks[self.sync_socket] == self.zmq.POLLIN:
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message = self.sync_socket.recv()
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#else:
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#raise Exception("Sync ack timed out on response for {id}".format(id=self.get_id))
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def bind_data(self):
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return self.bind_pull_socket(self.addresses['data_address'])
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def connect_data(self):
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return self.connect_push_socket(self.addresses['data_address'])
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def bind_feed(self):
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return self.bind_pub_socket(self.addresses['feed_address'])
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def connect_feed(self):
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return self.connect_sub_socket(self.addresses['feed_address'])
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def bind_merge(self):
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return self.bind_pull_socket(self.addresses['merge_address'])
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def connect_merge(self):
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return self.connect_push_socket(self.addresses['merge_address'])
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def bind_result(self):
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return self.bind_pub_socket(self.addresses['result_address'])
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def connect_result(self):
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return self.connect_sub_socket(self.addresses['result_address'])
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def bind_pull_socket(self, addr):
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pull_socket = self.context.socket(self.zmq.PULL)
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pull_socket.bind(addr)
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self.poll.register(pull_socket, self.zmq.POLLIN)
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self.sockets.append(pull_socket)
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return pull_socket
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def connect_push_socket(self, addr):
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push_socket = self.context.socket(self.zmq.PUSH)
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push_socket.connect(addr)
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#push_socket.setsockopt(self.zmq.LINGER,0)
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self.sockets.append(push_socket)
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self.out_socket = push_socket
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return push_socket
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def bind_pub_socket(self, addr):
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pub_socket = self.context.socket(self.zmq.PUB)
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pub_socket.bind(addr)
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#pub_socket.setsockopt(self.zmq.LINGER,0)
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self.out_socket = pub_socket
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return pub_socket
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def connect_sub_socket(self, addr):
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sub_socket = self.context.socket(self.zmq.SUB)
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sub_socket.connect(addr)
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sub_socket.setsockopt(self.zmq.SUBSCRIBE,'')
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self.sockets.append(sub_socket)
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self.poll.register(sub_socket, self.zmq.POLLIN)
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return sub_socket
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def setup_control(self):
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"""
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Set up the control socket. Used to monitor the overall status
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of the simulation and to forcefully tear down the simulation in
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case of a failure.
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"""
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# Allow for the possibility of not having a controller,
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# possibly the zipline devsimulator may not want this.
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if not self.controller:
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return
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self.control_out = self.controller.message_sender(
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identity = self.get_id,
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context = self.context,
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)
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self.control_in = self.controller.message_listener(
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context = self.context
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)
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self.poll.register(self.control_in, self.zmq.POLLIN)
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self.sockets.extend([self.control_in, self.control_out])
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def setup_sync(self):
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"""
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Setup the sync socket and poller. ( Connect )
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DEPRECATED, left in for compatability for now.
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"""
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#LOGGER.debug("Connecting sync client for {id}".format(id=self.get_id))
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self.sync_socket = self.context.socket(self.zmq.REQ)
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self.sync_socket.connect(self.addresses['sync_address'])
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#self.sync_socket.setsockopt(self.zmq.LINGER,0)
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self.sync_poller = self.zmq_poller()
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self.sync_poller.register(self.sync_socket, self.zmq.POLLIN)
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self.sockets.append(self.sync_socket)
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# -----------
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# FSM Actions
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# -----------
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#@property
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#def state(self):
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#if not hasattr(self, '_state'):
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#self._state = self.initial_state
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#else:
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#return self._state
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#@state.setter
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#def state(self, new):
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#if not hasattr(self, '_state'):
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#self._state = self.initial_state
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#old = self._state
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#if (old, new) in self.workflow:
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#self._state = new
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#else:
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#raise RuntimeError("Invalid State Transition : %s -> %s" %(old, new))
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# ---------------------
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# Description and Debug
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# ---------------------
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def extern_logger(self):
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"""
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Pipe logs out to a provided logging interface.
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"""
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pass
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def setup_extern_logger(self):
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"""
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Pipe logs out to a provided logging interface.
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"""
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pass
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@property
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def get_id(self):
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"""
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The descriptive name of the component.
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"""
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# Prevents the bug that Thomas ran into
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raise NotImplementedError
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@property
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def get_type(self):
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"""
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The data flow type of the component.
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- ``SOURCE``
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- ``CONDUIT``
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- ``SINK``
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"""
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raise NotImplementedError
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@property
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def get_pure(self):
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"""
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Describes whehter this component purely functional, i.e. for a
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given set of inputs is it guaranteed to always give the same
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output . Components that are side-effectful are, generally, not
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pure.
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"""
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return False
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def debug(self):
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"""
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Debug information about the component.
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"""
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return {
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'id' : self.get_id ,
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'huid' : self.huid ,
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'host' : socket.gethostname() ,
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'pid' : os.getpid() ,
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'memaddress' : hex(id(self)) ,
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'ready' : self.successful() ,
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'succesfull' : self.ready() ,
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}
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def __len__(self):
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"""
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Some components overload this for debug purposes
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"""
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raise NotImplementedError
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def __repr__(self):
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"""
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Return a usefull string representation of the component to
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indicate its type, unique identifier, and computational context
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identifier name.
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"""
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return "<{name} {uuid} at {host} {pid} {pointer}>".format(
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name = self.get_id ,
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uuid = self.guid ,
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|
host = socket.gethostname() ,
|
|
pid = os.getpid() ,
|
|
pointer = hex(id(self)) ,
|
|
)
|