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#!/usr/bin/python -u
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#
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# Copyright (C) 2006, 2007 Google Inc.
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation; either version 2 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful, but
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# WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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# General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program; if not, write to the Free Software
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# Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
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# 02110-1301, USA.
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"""Master daemon program.
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Some classes deviates from the standard style guide since the
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inheritance from parent classes requires it.
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"""
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import os
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import sys
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import SocketServer
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import time
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import collections
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import signal
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import logging
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from cStringIO import StringIO
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from optparse import OptionParser
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from ganeti import config
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from ganeti import constants
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from ganeti import daemon
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from ganeti import mcpu
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from ganeti import opcodes
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from ganeti import jqueue
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from ganeti import locking
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from ganeti import luxi
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from ganeti import utils
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from ganeti import errors
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from ganeti import ssconf
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from ganeti import workerpool
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from ganeti import rpc
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from ganeti import bootstrap
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from ganeti import serializer
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CLIENT_REQUEST_WORKERS = 16
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EXIT_NOTMASTER = constants.EXIT_NOTMASTER
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EXIT_NODESETUP_ERROR = constants.EXIT_NODESETUP_ERROR
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class ClientRequestWorker(workerpool.BaseWorker):
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  def RunTask(self, server, request, client_address):
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    """Process the request.
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    This is copied from the code in ThreadingMixIn.
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    """
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    try:
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      server.finish_request(request, client_address)
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      server.close_request(request)
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    except:
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      server.handle_error(request, client_address)
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      server.close_request(request)
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class IOServer(SocketServer.UnixStreamServer):
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  """IO thread class.
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  This class takes care of initializing the other threads, setting
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  signal handlers (which are processed only in this thread), and doing
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  cleanup at shutdown.
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  """
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  def __init__(self, address, rqhandler):
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    """IOServer constructor
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    @param address: the address to bind this IOServer to
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    @param rqhandler: RequestHandler type object
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    """
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    SocketServer.UnixStreamServer.__init__(self, address, rqhandler)
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    # We'll only start threads once we've forked.
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    self.context = None
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    self.request_workers = None
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  def setup_queue(self):
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    self.context = GanetiContext()
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    self.request_workers = workerpool.WorkerPool(CLIENT_REQUEST_WORKERS,
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                                                 ClientRequestWorker)
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  def process_request(self, request, client_address):
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    """Add task to workerpool to process request.
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    """
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    self.request_workers.AddTask(self, request, client_address)
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  @utils.SignalHandled([signal.SIGINT, signal.SIGTERM])
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  def serve_forever(self, signal_handlers=None):
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    """Handle one request at a time until told to quit."""
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    assert isinstance(signal_handlers, dict) and \
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           len(signal_handlers) > 0, \
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           "Broken SignalHandled decorator"
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    # Since we use SignalHandled only once, the resulting dict will map all
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    # signals to the same handler. We'll just use the first one.
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    sighandler = signal_handlers.values()[0]
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    while not sighandler.called:
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      self.handle_request()
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  def server_cleanup(self):
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    """Cleanup the server.
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    This involves shutting down the processor threads and the master
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    socket.
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    """
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    try:
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      self.server_close()
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    finally:
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      if self.request_workers:
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        self.request_workers.TerminateWorkers()
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      if self.context:
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        self.context.jobqueue.Shutdown()
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class ClientRqHandler(SocketServer.BaseRequestHandler):
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  """Client handler"""
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  EOM = '\3'
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  READ_SIZE = 4096
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  def setup(self):
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    self._buffer = ""
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    self._msgs = collections.deque()
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    self._ops = ClientOps(self.server)
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  def handle(self):
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    while True:
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      msg = self.read_message()
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      if msg is None:
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        logging.debug("client closed connection")
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        break
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      request = serializer.LoadJson(msg)
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      logging.debug("request: %s", request)
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      if not isinstance(request, dict):
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        logging.error("wrong request received: %s", msg)
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        break
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      method = request.get(luxi.KEY_METHOD, None)
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      args = request.get(luxi.KEY_ARGS, None)
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      if method is None or args is None:
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        logging.error("no method or args in request")
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        break
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      success = False
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      try:
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        result = self._ops.handle_request(method, args)
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        success = True
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      except errors.GenericError, err:
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        success = False
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        result = (err.__class__.__name__, err.args)
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      except:
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        logging.error("Unexpected exception", exc_info=True)
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        err = sys.exc_info()
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        result = "Caught exception: %s" % str(err[1])
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      response = {
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        luxi.KEY_SUCCESS: success,
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        luxi.KEY_RESULT: result,
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        }
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      logging.debug("response: %s", response)
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      self.send_message(serializer.DumpJson(response))
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  def read_message(self):
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    while not self._msgs:
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      data = self.request.recv(self.READ_SIZE)
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      if not data:
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        return None
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      new_msgs = (self._buffer + data).split(self.EOM)
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      self._buffer = new_msgs.pop()
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      self._msgs.extend(new_msgs)
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    return self._msgs.popleft()
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  def send_message(self, msg):
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    #print "sending", msg
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    # TODO: sendall is not guaranteed to send everything
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    self.request.sendall(msg + self.EOM)
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class ClientOps:
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  """Class holding high-level client operations."""
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  def __init__(self, server):
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    self.server = server
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  def handle_request(self, method, args):
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    queue = self.server.context.jobqueue
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    # TODO: Parameter validation
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    if method == luxi.REQ_SUBMIT_JOB:
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      logging.info("Received new job")
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      ops = [opcodes.OpCode.LoadOpCode(state) for state in args]
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      return queue.SubmitJob(ops)
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    if method == luxi.REQ_SUBMIT_MANY_JOBS:
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      logging.info("Received multiple jobs")
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      jobs = []
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      for ops in args:
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        jobs.append([opcodes.OpCode.LoadOpCode(state) for state in ops])
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      return queue.SubmitManyJobs(jobs)
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    elif method == luxi.REQ_CANCEL_JOB:
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      job_id = args
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      logging.info("Received job cancel request for %s", job_id)
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      return queue.CancelJob(job_id)
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    elif method == luxi.REQ_ARCHIVE_JOB:
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      job_id = args
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      logging.info("Received job archive request for %s", job_id)
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      return queue.ArchiveJob(job_id)
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    elif method == luxi.REQ_AUTOARCHIVE_JOBS:
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      (age, timeout) = args
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      logging.info("Received job autoarchive request for age %s, timeout %s",
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                   age, timeout)
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      return queue.AutoArchiveJobs(age, timeout)
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    elif method == luxi.REQ_WAIT_FOR_JOB_CHANGE:
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      (job_id, fields, prev_job_info, prev_log_serial, timeout) = args
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      logging.info("Received job poll request for %s", job_id)
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      return queue.WaitForJobChanges(job_id, fields, prev_job_info,
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                                     prev_log_serial, timeout)
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    elif method == luxi.REQ_QUERY_JOBS:
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      (job_ids, fields) = args
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      if isinstance(job_ids, (tuple, list)) and job_ids:
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        msg = ", ".join(job_ids)
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      else:
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        msg = str(job_ids)
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      logging.info("Received job query request for %s", msg)
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      return queue.QueryJobs(job_ids, fields)
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    elif method == luxi.REQ_QUERY_INSTANCES:
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      (names, fields, use_locking) = args
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      logging.info("Received instance query request for %s", names)
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      if use_locking:
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        raise errors.OpPrereqError("Sync queries are not allowed")
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      op = opcodes.OpQueryInstances(names=names, output_fields=fields,
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                                    use_locking=use_locking)
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      return self._Query(op)
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    elif method == luxi.REQ_QUERY_NODES:
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      (names, fields, use_locking) = args
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      logging.info("Received node query request for %s", names)
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      if use_locking:
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        raise errors.OpPrereqError("Sync queries are not allowed")
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      op = opcodes.OpQueryNodes(names=names, output_fields=fields,
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                                use_locking=use_locking)
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      return self._Query(op)
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    elif method == luxi.REQ_QUERY_EXPORTS:
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      nodes, use_locking = args
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      if use_locking:
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        raise errors.OpPrereqError("Sync queries are not allowed")
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      logging.info("Received exports query request")
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      op = opcodes.OpQueryExports(nodes=nodes, use_locking=use_locking)
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      return self._Query(op)
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    elif method == luxi.REQ_QUERY_CONFIG_VALUES:
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      fields = args
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      logging.info("Received config values query request for %s", fields)
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      op = opcodes.OpQueryConfigValues(output_fields=fields)
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      return self._Query(op)
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    elif method == luxi.REQ_QUERY_CLUSTER_INFO:
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      logging.info("Received cluster info query request")
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      op = opcodes.OpQueryClusterInfo()
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      return self._Query(op)
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    elif method == luxi.REQ_QUEUE_SET_DRAIN_FLAG:
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      drain_flag = args
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      logging.info("Received queue drain flag change request to %s",
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                   drain_flag)
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      return queue.SetDrainFlag(drain_flag)
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    else:
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      logging.info("Received invalid request '%s'", method)
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      raise ValueError("Invalid operation '%s'" % method)
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  def _DummyLog(self, *args):
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    pass
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  def _Query(self, op):
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    """Runs the specified opcode and returns the result.
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    """
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    proc = mcpu.Processor(self.server.context)
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    # TODO: Where should log messages go?
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    return proc.ExecOpCode(op, self._DummyLog, None)
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class GanetiContext(object):
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  """Context common to all ganeti threads.
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  This class creates and holds common objects shared by all threads.
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  """
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  _instance = None
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  def __init__(self):
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    """Constructs a new GanetiContext object.
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    There should be only a GanetiContext object at any time, so this
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    function raises an error if this is not the case.
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    """
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    assert self.__class__._instance is None, "double GanetiContext instance"
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    # Create global configuration object
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    self.cfg = config.ConfigWriter()
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    # Locking manager
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    self.glm = locking.GanetiLockManager(
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                self.cfg.GetNodeList(),
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                self.cfg.GetInstanceList())
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    # Job queue
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    self.jobqueue = jqueue.JobQueue(self)
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    # setting this also locks the class against attribute modifications
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    self.__class__._instance = self
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  def __setattr__(self, name, value):
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    """Setting GanetiContext attributes is forbidden after initialization.
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    """
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    assert self.__class__._instance is None, "Attempt to modify Ganeti Context"
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    object.__setattr__(self, name, value)
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  def AddNode(self, node):
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    """Adds a node to the configuration and lock manager.
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    """
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    # Add it to the configuration
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    self.cfg.AddNode(node)
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    # If preseeding fails it'll not be added
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    self.jobqueue.AddNode(node)
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    # Add the new node to the Ganeti Lock Manager
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    self.glm.add(locking.LEVEL_NODE, node.name)
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  def ReaddNode(self, node):
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    """Updates a node that's already in the configuration
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    """
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    # Synchronize the queue again
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    self.jobqueue.AddNode(node)
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  def RemoveNode(self, name):
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    """Removes a node from the configuration and lock manager.
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    """
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    # Remove node from configuration
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    self.cfg.RemoveNode(name)
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    # Notify job queue
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    self.jobqueue.RemoveNode(name)
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    # Remove the node from the Ganeti Lock Manager
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    self.glm.remove(locking.LEVEL_NODE, name)
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def CheckAgreement():
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  """Check the agreement on who is the master.
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  The function uses a very simple algorithm: we must get more positive
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  than negative answers. Since in most of the cases we are the master,
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  we'll use our own config file for getting the node list. In the
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  future we could collect the current node list from our (possibly
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  obsolete) known nodes.
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  In order to account for cold-start of all nodes, we retry for up to
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  a minute until we get a real answer as the top-voted one. If the
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  nodes are more out-of-sync, for now manual startup of the master
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  should be attempted.
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  Note that for a even number of nodes cluster, we need at least half
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  of the nodes (beside ourselves) to vote for us. This creates a
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  problem on two-node clusters, since in this case we require the
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  other node to be up too to confirm our status.
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  """
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  myself = utils.HostInfo().name
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  #temp instantiation of a config writer, used only to get the node list
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  cfg = config.ConfigWriter()
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  node_list = cfg.GetNodeList()
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  del cfg
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  retries = 6
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  while retries > 0:
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    votes = bootstrap.GatherMasterVotes(node_list)
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    if not votes:
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      # empty node list, this is a one node cluster
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      return True
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    if votes[0][0] is None:
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      retries -= 1
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      time.sleep(10)
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      continue
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    break
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  if retries == 0:
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    logging.critical("Cluster inconsistent, most of the nodes didn't answer"
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                     " after multiple retries. Aborting startup")
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    return False
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  # here a real node is at the top of the list
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  all_votes = sum(item[1] for item in votes)
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  top_node, top_votes = votes[0]
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  result = False
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  if top_node != myself:
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    logging.critical("It seems we are not the master (top-voted node"
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                     " is %s with %d out of %d votes)", top_node, top_votes,
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                     all_votes)
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  elif top_votes < all_votes - top_votes:
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    logging.critical("It seems we are not the master (%d votes for,"
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                     " %d votes against)", top_votes, all_votes - top_votes)
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  else:
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    result = True
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  return result
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def CheckMasterd(options, args):
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  """Initial checks whether to run or exit with a failure.
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  """
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  rpc.Init()
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  try:
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    ssconf.CheckMaster(options.debug)
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    # we believe we are the master, let's ask the other nodes...
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    if options.no_voting and not options.yes_do_it:
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      sys.stdout.write("The 'no voting' option has been selected.\n")
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      sys.stdout.write("This is dangerous, please confirm by"
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                       " typing uppercase 'yes': ")
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      sys.stdout.flush()
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      confirmation = sys.stdin.readline().strip()
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      if confirmation != "YES":
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        print "Aborting."
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        return
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    elif not options.no_voting:
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      if not CheckAgreement():
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        return
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  finally:
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    rpc.Shutdown()
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def ExecMasterd (options, args):
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  """Main master daemon function, executed with the PID file held.
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  """
473
  # This is safe to do as the pid file guarantees against
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  # concurrent execution.
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  utils.RemoveFile(constants.MASTER_SOCKET)
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  master = IOServer(constants.MASTER_SOCKET, ClientRqHandler)
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  try:
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    rpc.Init()
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    try:
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      # activate ip
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      master_node = ssconf.SimpleStore().GetMasterNode()
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      result = rpc.RpcRunner.call_node_start_master(master_node, False, False)
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      msg = result.RemoteFailMsg()
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      if msg:
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        logging.error("Can't activate master IP address: %s", msg)
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      master.setup_queue()
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      try:
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        master.serve_forever()
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      finally:
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        master.server_cleanup()
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    finally:
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      rpc.Shutdown()
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  finally:
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    utils.RemoveFile(constants.MASTER_SOCKET)
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def main():
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  """Main function"""
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  parser = OptionParser(description="Ganeti master daemon",
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                        usage="%prog [-f] [-d]",
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                        version="%%prog (ganeti) %s" %
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                        constants.RELEASE_VERSION)
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  parser.add_option("--no-voting", dest="no_voting",
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                    help="Do not check that the nodes agree on this node"
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                    " being the master and start the daemon unconditionally",
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                    default=False, action="store_true")
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  parser.add_option("--yes-do-it", dest="yes_do_it",
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                    help="Override interactive check for --no-voting",
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                    default=False, action="store_true")
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  dirs = [(constants.RUN_GANETI_DIR, constants.RUN_DIRS_MODE),
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          (constants.SOCKET_DIR, constants.SOCKET_DIR_MODE),
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         ]
515
  daemon.GenericMain(constants.MASTERD, parser, dirs,
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                     CheckMasterd, ExecMasterd)
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if __name__ == "__main__":
520
  main()