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# -*- mode: python; coding: utf-8 -*-
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# Mandos server - give out binary blobs to connecting clients.
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# This program is partly derived from an example program for an Avahi
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# service publisher, downloaded from
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# <http://avahi.org/wiki/PythonPublishExample>. This includes the
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# methods "add", "remove", "server_state_changed",
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# "entry_group_state_changed", "cleanup", and "activate" in the
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# "AvahiService" class, and some lines in "main".
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# Copyright © 2008,2009 Teddy Hogeborn
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# Copyright © 2008,2009 Björn Påhlsson
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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 3 of the License, or
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# (at your option) any later version.
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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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, see
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# <http://www.gnu.org/licenses/>.
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# Contact the authors at <mandos@fukt.bsnet.se>.
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from __future__ import division, with_statement, absolute_import
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import SocketServer as socketserver
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from __future__ import division
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from optparse import OptionParser
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import gnutls.crypto
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import gnutls.connection
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import gnutls.errors
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import gnutls.library.functions
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import gnutls.library.constants
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import gnutls.library.types
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import ConfigParser as configparser
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import logging.handlers
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from contextlib import closing
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from dbus.mainloop.glib import DBusGMainLoop
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import xml.dom.minidom
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SO_BINDTODEVICE = socket.SO_BINDTODEVICE
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except AttributeError:
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from IN import SO_BINDTODEVICE
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SO_BINDTODEVICE = None
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logger = logging.Logger(u'mandos')
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syslogger = (logging.handlers.SysLogHandler
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(facility = logging.handlers.SysLogHandler.LOG_DAEMON,
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address = "/dev/log"))
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syslogger.setFormatter(logging.Formatter
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(u'Mandos [%(process)d]: %(levelname)s:'
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logger.addHandler(syslogger)
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console = logging.StreamHandler()
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console.setFormatter(logging.Formatter(u'%(name)s [%(process)d]:'
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logger.addHandler(console)
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class AvahiError(Exception):
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def __init__(self, value, *args, **kwargs):
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super(AvahiError, self).__init__(value, *args, **kwargs)
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def __unicode__(self):
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return unicode(repr(self.value))
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class AvahiServiceError(AvahiError):
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class AvahiGroupError(AvahiError):
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class AvahiService(object):
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"""An Avahi (Zeroconf) service.
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interface: integer; avahi.IF_UNSPEC or an interface index.
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Used to optionally bind to the specified interface.
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name: string; Example: u'Mandos'
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type: string; Example: u'_mandos._tcp'.
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See <http://www.dns-sd.org/ServiceTypes.html>
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port: integer; what port to announce
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TXT: list of strings; TXT record for the service
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domain: string; Domain to publish on, default to .local if empty.
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host: string; Host to publish records for, default is localhost
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max_renames: integer; maximum number of renames
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rename_count: integer; counter so we only rename after collisions
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a sensible number of times
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group: D-Bus Entry Group
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bus: dbus.SystemBus()
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def __init__(self, interface = avahi.IF_UNSPEC, name = None,
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servicetype = None, port = None, TXT = None,
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domain = u"", host = u"", max_renames = 32768,
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protocol = avahi.PROTO_UNSPEC, bus = None):
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self.interface = interface
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self.type = servicetype
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self.TXT = TXT if TXT is not None else []
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self.rename_count = 0
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self.max_renames = max_renames
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self.protocol = protocol
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self.group = None # our entry group
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"""Derived from the Avahi example code"""
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if self.rename_count >= self.max_renames:
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logger.critical(u"No suitable Zeroconf service name found"
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u" after %i retries, exiting.",
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raise AvahiServiceError(u"Too many renames")
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self.name = self.server.GetAlternativeServiceName(self.name)
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logger.info(u"Changing Zeroconf service name to %r ...",
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syslogger.setFormatter(logging.Formatter
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(u'Mandos (%s) [%%(process)d]:'
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u' %%(levelname)s: %%(message)s'
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self.rename_count += 1
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"""Derived from the Avahi example code"""
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if self.group is not None:
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"""Derived from the Avahi example code"""
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if self.group is None:
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self.group = dbus.Interface(
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self.bus.get_object(avahi.DBUS_NAME,
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self.server.EntryGroupNew()),
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avahi.DBUS_INTERFACE_ENTRY_GROUP)
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self.group.connect_to_signal('StateChanged',
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.entry_group_state_changed)
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logger.debug(u"Adding Zeroconf service '%s' of type '%s' ...",
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self.name, self.type)
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self.group.AddService(
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dbus.UInt32(0), # flags
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self.name, self.type,
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self.domain, self.host,
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dbus.UInt16(self.port),
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avahi.string_array_to_txt_array(self.TXT))
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def entry_group_state_changed(self, state, error):
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"""Derived from the Avahi example code"""
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logger.debug(u"Avahi state change: %i", state)
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if state == avahi.ENTRY_GROUP_ESTABLISHED:
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logger.debug(u"Zeroconf service established.")
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elif state == avahi.ENTRY_GROUP_COLLISION:
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logger.warning(u"Zeroconf service name collision.")
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elif state == avahi.ENTRY_GROUP_FAILURE:
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logger.critical(u"Avahi: Error in group state changed %s",
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raise AvahiGroupError(u"State changed: %s"
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"""Derived from the Avahi example code"""
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if self.group is not None:
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def server_state_changed(self, state):
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"""Derived from the Avahi example code"""
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if state == avahi.SERVER_COLLISION:
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logger.error(u"Zeroconf server name collision")
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elif state == avahi.SERVER_RUNNING:
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"""Derived from the Avahi example code"""
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if self.server is None:
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self.server = dbus.Interface(
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self.bus.get_object(avahi.DBUS_NAME,
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avahi.DBUS_PATH_SERVER),
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avahi.DBUS_INTERFACE_SERVER)
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self.server.connect_to_signal(u"StateChanged",
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self.server_state_changed)
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self.server_state_changed(self.server.GetState())
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class Client(object):
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"""A representation of a client host served by this server.
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name: string; from the config file, used in log messages and
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fingerprint: string (40 or 32 hexadecimal digits); used to
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uniquely identify the client
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secret: bytestring; sent verbatim (over TLS) to client
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host: string; available for use by the checker command
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created: datetime.datetime(); (UTC) object creation
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last_enabled: datetime.datetime(); (UTC)
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last_checked_ok: datetime.datetime(); (UTC) or None
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timeout: datetime.timedelta(); How long from last_checked_ok
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until this client is invalid
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interval: datetime.timedelta(); How often to start a new checker
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disable_hook: If set, called by disable() as disable_hook(self)
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checker: subprocess.Popen(); a running checker process used
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to see if the client lives.
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'None' if no process is running.
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checker_initiator_tag: a gobject event source tag, or None
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disable_initiator_tag: - '' -
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checker_callback_tag: - '' -
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checker_command: string; External command which is run to check if
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client lives. %() expansions are done at
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runtime with vars(self) as dict, so that for
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instance %(name)s can be used in the command.
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current_checker_command: string; current running checker_command
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def _timedelta_to_milliseconds(td):
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"Convert a datetime.timedelta() to milliseconds"
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return ((td.days * 24 * 60 * 60 * 1000)
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+ (td.seconds * 1000)
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+ (td.microseconds // 1000))
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def timeout_milliseconds(self):
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"Return the 'timeout' attribute in milliseconds"
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return self._timedelta_to_milliseconds(self.timeout)
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def interval_milliseconds(self):
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"Return the 'interval' attribute in milliseconds"
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return self._timedelta_to_milliseconds(self.interval)
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def __init__(self, name = None, disable_hook=None, config=None):
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"""Note: the 'checker' key in 'config' sets the
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'checker_command' attribute and *not* the 'checker'
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def __init__(self, name=None, options=None, dn=None,
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password=None, passfile=None, fqdn=None,
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timeout=None, interval=-1):
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logger.debug(u"Creating client %r", self.name)
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# Uppercase and remove spaces from fingerprint for later
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# comparison purposes with return value from the fingerprint()
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self.fingerprint = (config[u"fingerprint"].upper()
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logger.debug(u" Fingerprint: %s", self.fingerprint)
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if u"secret" in config:
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self.secret = config[u"secret"].decode(u"base64")
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elif u"secfile" in config:
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with closing(open(os.path.expanduser
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(config[u"secfile"])),
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self.secret = secfile.read()
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raise TypeError(u"No secret or secfile for client %s"
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self.host = config.get(u"host", u"")
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self.created = datetime.datetime.utcnow()
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self.last_enabled = None
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self.last_checked_ok = None
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self.timeout = string_to_delta(config[u"timeout"])
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self.interval = string_to_delta(config[u"interval"])
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self.disable_hook = disable_hook
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self.checker_initiator_tag = None
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self.disable_initiator_tag = None
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self.checker_callback_tag = None
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self.checker_command = config[u"checker"]
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self.current_checker_command = None
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self.last_connect = None
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"""Start this client's checker and timeout hooks"""
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if getattr(self, u"enabled", False):
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self.password = password
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self.password = open(passfile).readall()
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print "No Password or Passfile in client config file"
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# raise RuntimeError XXX
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self.password = "gazonk"
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self.fqdn = fqdn # string
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self.created = datetime.datetime.now()
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self.last_seen = None # datetime.datetime()
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timeout = options.timeout
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self.timeout = timeout # datetime.timedelta()
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interval = options.interval
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interval = string_to_delta(interval)
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self.interval = interval # datetime.timedelta()
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self.next_check = datetime.datetime.now() # datetime.datetime()
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# Note: next_check may be in the past if checker is not None
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self.checker = None # or a subprocess.Popen()
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def check_action(self):
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"""The checker said something and might have completed.
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Check if is has, and take appropriate actions."""
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if self.checker.poll() is None:
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# False alarm, no result yet
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#print "Checker for %(name)s said nothing?" % vars(self)
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self.last_enabled = datetime.datetime.utcnow()
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# Schedule a new checker to be started an 'interval' from now,
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# and every interval from then on.
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self.checker_initiator_tag = (gobject.timeout_add
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(self.interval_milliseconds(),
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# Also start a new checker *right now*.
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# Schedule a disable() when 'timeout' has passed
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self.disable_initiator_tag = (gobject.timeout_add
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(self.timeout_milliseconds(),
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"""Disable this client."""
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if not getattr(self, "enabled", False):
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logger.info(u"Disabling client %s", self.name)
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if getattr(self, u"disable_initiator_tag", False):
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gobject.source_remove(self.disable_initiator_tag)
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self.disable_initiator_tag = None
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if getattr(self, u"checker_initiator_tag", False):
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gobject.source_remove(self.checker_initiator_tag)
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self.checker_initiator_tag = None
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if self.disable_hook:
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self.disable_hook(self)
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# Do not run this again if called by a gobject.timeout_add
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self.disable_hook = None
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def checker_callback(self, pid, condition, command):
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"""The checker has completed, so take appropriate actions."""
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self.checker_callback_tag = None
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now = datetime.datetime.now()
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if self.checker.returncode == 0:
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print "Checker for %(name)s succeeded" % vars(self)
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print "Checker for %(name)s failed" % vars(self)
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while self.next_check <= now:
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self.next_check += self.interval
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self.checker = None
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if os.WIFEXITED(condition):
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exitstatus = os.WEXITSTATUS(condition)
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logger.info(u"Checker for %(name)s succeeded",
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logger.info(u"Checker for %(name)s failed",
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logger.warning(u"Checker for %(name)s crashed?",
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def checked_ok(self):
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"""Bump up the timeout for this client.
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This should only be called when the client has been seen,
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self.last_checked_ok = datetime.datetime.utcnow()
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gobject.source_remove(self.disable_initiator_tag)
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self.disable_initiator_tag = (gobject.timeout_add
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(self.timeout_milliseconds(),
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handle_request = check_action
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def start_checker(self):
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"""Start a new checker subprocess if one is not running.
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If a checker already exists, leave it running and do
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# The reason for not killing a running checker is that if we
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# did that, then if a checker (for some reason) started
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# running slowly and taking more than 'interval' time, the
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# client would inevitably timeout, since no checker would get
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# a chance to run to completion. If we instead leave running
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# checkers alone, the checker would have to take more time
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# than 'timeout' for the client to be declared invalid, which
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# is as it should be.
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# If a checker exists, make sure it is not a zombie
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pid, status = os.waitpid(self.checker.pid, os.WNOHANG)
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except (AttributeError, OSError), error:
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if (isinstance(error, OSError)
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and error.errno != errno.ECHILD):
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logger.warning(u"Checker was a zombie")
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gobject.source_remove(self.checker_callback_tag)
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self.checker_callback(pid, status,
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self.current_checker_command)
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# Start a new checker if needed
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if self.checker is None:
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# In case checker_command has exactly one % operator
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command = self.checker_command % self.host
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# Escape attributes for the shell
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escaped_attrs = dict((key,
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re.escape(unicode(str(val),
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vars(self).iteritems())
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command = self.checker_command % escaped_attrs
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except TypeError, error:
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logger.error(u'Could not format string "%s":'
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u' %s', self.checker_command, error)
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return True # Try again later
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self.current_checker_command = command
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logger.info(u"Starting checker %r for %s",
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# We don't need to redirect stdout and stderr, since
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# in normal mode, that is already done by daemon(),
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# and in debug mode we don't want to. (Stdin is
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# always replaced by /dev/null.)
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self.checker = subprocess.Popen(command,
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shell=True, cwd=u"/")
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self.checker_callback_tag = (gobject.child_watch_add
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self.checker_callback,
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# The checker may have completed before the gobject
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# watch was added. Check for this.
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pid, status = os.waitpid(self.checker.pid, os.WNOHANG)
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gobject.source_remove(self.checker_callback_tag)
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self.checker_callback(pid, status, command)
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except OSError, error:
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logger.error(u"Failed to start subprocess: %s",
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# Re-run this periodically if run by gobject.timeout_add
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self.checker = subprocess.Popen("sleep 10; fping -q -- %s"
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% re.escape(self.fqdn),
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stdout=subprocess.PIPE,
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except subprocess.OSError, e:
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print "Failed to start subprocess:", e
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def stop_checker(self):
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"""Force the checker process, if any, to stop."""
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if self.checker_callback_tag:
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gobject.source_remove(self.checker_callback_tag)
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self.checker_callback_tag = None
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if getattr(self, u"checker", None) is None:
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if self.checker is None:
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logger.debug(u"Stopping checker for %(name)s", vars(self))
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os.kill(self.checker.pid, signal.SIGTERM)
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#if self.checker.poll() is None:
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# os.kill(self.checker.pid, signal.SIGKILL)
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except OSError, error:
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if error.errno != errno.ESRCH: # No such process
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os.kill(self.checker.pid, signal.SIGTERM)
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if self.checker.poll() is None:
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os.kill(self.checker.pid, signal.SIGKILL)
476
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self.checker = None
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def still_valid(self):
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"""Has the timeout not yet passed for this client?"""
480
if not getattr(self, u"enabled", False):
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now = datetime.datetime.utcnow()
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if self.last_checked_ok is None:
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__del__ = stop_checker
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if self.checker is None:
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return self.checker.stdout.fileno()
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"""The time when something must be done about this client
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May be in the past."""
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if self.last_seen is None:
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# This client has never been seen
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next_timeout = self.created + self.timeout
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next_timeout = self.last_seen + self.timeout
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if self.checker is None:
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return min(next_timeout, self.next_check)
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def still_valid(self, now=None):
103
"""Has this client's timeout not passed?"""
105
now = datetime.datetime.now()
106
if self.last_seen is None:
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107
return now < (self.created + self.timeout)
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return now < (self.last_checked_ok + self.timeout)
489
def dbus_service_property(dbus_interface, signature=u"v",
490
access=u"readwrite", byte_arrays=False):
491
"""Decorators for marking methods of a DBusObjectWithProperties to
492
become properties on the D-Bus.
494
The decorated method will be called with no arguments by "Get"
495
and with one argument by "Set".
497
The parameters, where they are supported, are the same as
498
dbus.service.method, except there is only "signature", since the
499
type from Get() and the type sent to Set() is the same.
502
func._dbus_is_property = True
503
func._dbus_interface = dbus_interface
504
func._dbus_signature = signature
505
func._dbus_access = access
506
func._dbus_name = func.__name__
507
if func._dbus_name.endswith(u"_dbus_property"):
508
func._dbus_name = func._dbus_name[:-14]
509
func._dbus_get_args_options = {u'byte_arrays': byte_arrays }
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class DBusPropertyException(dbus.exceptions.DBusException):
515
"""A base class for D-Bus property-related exceptions
517
def __unicode__(self):
518
return unicode(str(self))
521
class DBusPropertyAccessException(DBusPropertyException):
522
"""A property's access permissions disallows an operation.
527
class DBusPropertyNotFound(DBusPropertyException):
528
"""An attempt was made to access a non-existing property.
533
class DBusObjectWithProperties(dbus.service.Object):
534
"""A D-Bus object with properties.
536
Classes inheriting from this can use the dbus_service_property
537
decorator to expose methods as D-Bus properties. It exposes the
538
standard Get(), Set(), and GetAll() methods on the D-Bus.
542
def _is_dbus_property(obj):
543
return getattr(obj, u"_dbus_is_property", False)
545
def _get_all_dbus_properties(self):
546
"""Returns a generator of (name, attribute) pairs
548
return ((prop._dbus_name, prop)
550
inspect.getmembers(self, self._is_dbus_property))
552
def _get_dbus_property(self, interface_name, property_name):
553
"""Returns a bound method if one exists which is a D-Bus
554
property with the specified name and interface.
556
for name in (property_name,
557
property_name + u"_dbus_property"):
558
prop = getattr(self, name, None)
560
or not self._is_dbus_property(prop)
561
or prop._dbus_name != property_name
562
or (interface_name and prop._dbus_interface
563
and interface_name != prop._dbus_interface)):
567
raise DBusPropertyNotFound(self.dbus_object_path + u":"
568
+ interface_name + u"."
571
@dbus.service.method(dbus.PROPERTIES_IFACE, in_signature=u"ss",
573
def Get(self, interface_name, property_name):
574
"""Standard D-Bus property Get() method, see D-Bus standard.
576
prop = self._get_dbus_property(interface_name, property_name)
577
if prop._dbus_access == u"write":
578
raise DBusPropertyAccessException(property_name)
580
if not hasattr(value, u"variant_level"):
582
return type(value)(value, variant_level=value.variant_level+1)
584
@dbus.service.method(dbus.PROPERTIES_IFACE, in_signature=u"ssv")
585
def Set(self, interface_name, property_name, value):
586
"""Standard D-Bus property Set() method, see D-Bus standard.
588
prop = self._get_dbus_property(interface_name, property_name)
589
if prop._dbus_access == u"read":
590
raise DBusPropertyAccessException(property_name)
591
if prop._dbus_get_args_options[u"byte_arrays"]:
592
value = dbus.ByteArray(''.join(unichr(byte)
596
@dbus.service.method(dbus.PROPERTIES_IFACE, in_signature=u"s",
597
out_signature=u"a{sv}")
598
def GetAll(self, interface_name):
599
"""Standard D-Bus property GetAll() method, see D-Bus
602
Note: Will not include properties with access="write".
605
for name, prop in self._get_all_dbus_properties():
607
and interface_name != prop._dbus_interface):
608
# Interface non-empty but did not match
610
# Ignore write-only properties
611
if prop._dbus_access == u"write":
614
if not hasattr(value, u"variant_level"):
617
all[name] = type(value)(value, variant_level=
618
value.variant_level+1)
619
return dbus.Dictionary(all, signature=u"sv")
621
@dbus.service.method(dbus.INTROSPECTABLE_IFACE,
623
path_keyword='object_path',
624
connection_keyword='connection')
625
def Introspect(self, object_path, connection):
626
"""Standard D-Bus method, overloaded to insert property tags.
628
xmlstring = dbus.service.Object.Introspect(self, object_path,
631
document = xml.dom.minidom.parseString(xmlstring)
632
def make_tag(document, name, prop):
633
e = document.createElement(u"property")
634
e.setAttribute(u"name", name)
635
e.setAttribute(u"type", prop._dbus_signature)
636
e.setAttribute(u"access", prop._dbus_access)
638
for if_tag in document.getElementsByTagName(u"interface"):
639
for tag in (make_tag(document, name, prop)
641
in self._get_all_dbus_properties()
642
if prop._dbus_interface
643
== if_tag.getAttribute(u"name")):
644
if_tag.appendChild(tag)
645
# Add the names to the return values for the
646
# "org.freedesktop.DBus.Properties" methods
647
if (if_tag.getAttribute(u"name")
648
== u"org.freedesktop.DBus.Properties"):
649
for cn in if_tag.getElementsByTagName(u"method"):
650
if cn.getAttribute(u"name") == u"Get":
651
for arg in cn.getElementsByTagName(u"arg"):
652
if (arg.getAttribute(u"direction")
654
arg.setAttribute(u"name", u"value")
655
elif cn.getAttribute(u"name") == u"GetAll":
656
for arg in cn.getElementsByTagName(u"arg"):
657
if (arg.getAttribute(u"direction")
659
arg.setAttribute(u"name", u"props")
660
xmlstring = document.toxml(u"utf-8")
662
except (AttributeError, xml.dom.DOMException,
663
xml.parsers.expat.ExpatError), error:
664
logger.error(u"Failed to override Introspection method",
669
class ClientDBus(Client, DBusObjectWithProperties):
670
"""A Client class using D-Bus
673
dbus_object_path: dbus.ObjectPath
674
bus: dbus.SystemBus()
676
# dbus.service.Object doesn't use super(), so we can't either.
678
def __init__(self, bus = None, *args, **kwargs):
680
Client.__init__(self, *args, **kwargs)
681
# Only now, when this client is initialized, can it show up on
683
self.dbus_object_path = (dbus.ObjectPath
685
+ self.name.replace(u".", u"_")))
686
DBusObjectWithProperties.__init__(self, self.bus,
687
self.dbus_object_path)
690
def _datetime_to_dbus(dt, variant_level=0):
691
"""Convert a UTC datetime.datetime() to a D-Bus type."""
692
return dbus.String(dt.isoformat(),
693
variant_level=variant_level)
696
oldstate = getattr(self, u"enabled", False)
697
r = Client.enable(self)
698
if oldstate != self.enabled:
700
self.PropertyChanged(dbus.String(u"enabled"),
701
dbus.Boolean(True, variant_level=1))
702
self.PropertyChanged(
703
dbus.String(u"last_enabled"),
704
self._datetime_to_dbus(self.last_enabled,
708
def disable(self, signal = True):
709
oldstate = getattr(self, u"enabled", False)
710
r = Client.disable(self)
711
if signal and oldstate != self.enabled:
713
self.PropertyChanged(dbus.String(u"enabled"),
714
dbus.Boolean(False, variant_level=1))
717
def __del__(self, *args, **kwargs):
719
self.remove_from_connection()
722
if hasattr(DBusObjectWithProperties, u"__del__"):
723
DBusObjectWithProperties.__del__(self, *args, **kwargs)
724
Client.__del__(self, *args, **kwargs)
726
def checker_callback(self, pid, condition, command,
728
self.checker_callback_tag = None
731
self.PropertyChanged(dbus.String(u"checker_running"),
732
dbus.Boolean(False, variant_level=1))
733
if os.WIFEXITED(condition):
734
exitstatus = os.WEXITSTATUS(condition)
736
self.CheckerCompleted(dbus.Int16(exitstatus),
737
dbus.Int64(condition),
738
dbus.String(command))
741
self.CheckerCompleted(dbus.Int16(-1),
742
dbus.Int64(condition),
743
dbus.String(command))
745
return Client.checker_callback(self, pid, condition, command,
748
def checked_ok(self, *args, **kwargs):
749
r = Client.checked_ok(self, *args, **kwargs)
751
self.PropertyChanged(
752
dbus.String(u"last_checked_ok"),
753
(self._datetime_to_dbus(self.last_checked_ok,
757
def start_checker(self, *args, **kwargs):
758
old_checker = self.checker
759
if self.checker is not None:
760
old_checker_pid = self.checker.pid
762
old_checker_pid = None
763
r = Client.start_checker(self, *args, **kwargs)
764
# Only if new checker process was started
765
if (self.checker is not None
766
and old_checker_pid != self.checker.pid):
768
self.CheckerStarted(self.current_checker_command)
769
self.PropertyChanged(
770
dbus.String(u"checker_running"),
771
dbus.Boolean(True, variant_level=1))
774
def stop_checker(self, *args, **kwargs):
775
old_checker = getattr(self, u"checker", None)
776
r = Client.stop_checker(self, *args, **kwargs)
777
if (old_checker is not None
778
and getattr(self, u"checker", None) is None):
779
self.PropertyChanged(dbus.String(u"checker_running"),
780
dbus.Boolean(False, variant_level=1))
783
## D-Bus methods & signals
784
_interface = u"se.bsnet.fukt.Mandos.Client"
787
@dbus.service.method(_interface)
789
return self.checked_ok()
791
# CheckerCompleted - signal
792
@dbus.service.signal(_interface, signature=u"nxs")
793
def CheckerCompleted(self, exitcode, waitstatus, command):
797
# CheckerStarted - signal
798
@dbus.service.signal(_interface, signature=u"s")
799
def CheckerStarted(self, command):
803
# PropertyChanged - signal
804
@dbus.service.signal(_interface, signature=u"sv")
805
def PropertyChanged(self, property, value):
810
@dbus.service.signal(_interface)
816
@dbus.service.signal(_interface)
822
@dbus.service.method(_interface)
827
# StartChecker - method
828
@dbus.service.method(_interface)
829
def StartChecker(self):
834
@dbus.service.method(_interface)
839
# StopChecker - method
840
@dbus.service.method(_interface)
841
def StopChecker(self):
845
@dbus_service_property(_interface, signature=u"s", access=u"read")
846
def name_dbus_property(self):
847
return dbus.String(self.name)
849
# fingerprint - property
850
@dbus_service_property(_interface, signature=u"s", access=u"read")
851
def fingerprint_dbus_property(self):
852
return dbus.String(self.fingerprint)
855
@dbus_service_property(_interface, signature=u"s",
857
def host_dbus_property(self, value=None):
858
if value is None: # get
859
return dbus.String(self.host)
862
self.PropertyChanged(dbus.String(u"host"),
863
dbus.String(value, variant_level=1))
866
@dbus_service_property(_interface, signature=u"s", access=u"read")
867
def created_dbus_property(self):
868
return dbus.String(self._datetime_to_dbus(self.created))
870
# last_enabled - property
871
@dbus_service_property(_interface, signature=u"s", access=u"read")
872
def last_enabled_dbus_property(self):
873
if self.last_enabled is None:
874
return dbus.String(u"")
875
return dbus.String(self._datetime_to_dbus(self.last_enabled))
878
@dbus_service_property(_interface, signature=u"b",
880
def enabled_dbus_property(self, value=None):
881
if value is None: # get
882
return dbus.Boolean(self.enabled)
888
# last_checked_ok - property
889
@dbus_service_property(_interface, signature=u"s",
891
def last_checked_ok_dbus_property(self, value=None):
892
if value is not None:
895
if self.last_checked_ok is None:
896
return dbus.String(u"")
897
return dbus.String(self._datetime_to_dbus(self
901
@dbus_service_property(_interface, signature=u"t",
903
def timeout_dbus_property(self, value=None):
904
if value is None: # get
905
return dbus.UInt64(self.timeout_milliseconds())
906
self.timeout = datetime.timedelta(0, 0, 0, value)
908
self.PropertyChanged(dbus.String(u"timeout"),
909
dbus.UInt64(value, variant_level=1))
910
if getattr(self, u"disable_initiator_tag", None) is None:
913
gobject.source_remove(self.disable_initiator_tag)
914
self.disable_initiator_tag = None
916
_timedelta_to_milliseconds((self
922
# The timeout has passed
925
self.disable_initiator_tag = (gobject.timeout_add
926
(time_to_die, self.disable))
928
# interval - property
929
@dbus_service_property(_interface, signature=u"t",
931
def interval_dbus_property(self, value=None):
932
if value is None: # get
933
return dbus.UInt64(self.interval_milliseconds())
934
self.interval = datetime.timedelta(0, 0, 0, value)
936
self.PropertyChanged(dbus.String(u"interval"),
937
dbus.UInt64(value, variant_level=1))
938
if getattr(self, u"checker_initiator_tag", None) is None:
940
# Reschedule checker run
941
gobject.source_remove(self.checker_initiator_tag)
942
self.checker_initiator_tag = (gobject.timeout_add
943
(value, self.start_checker))
944
self.start_checker() # Start one now, too
947
@dbus_service_property(_interface, signature=u"s",
949
def checker_dbus_property(self, value=None):
950
if value is None: # get
951
return dbus.String(self.checker_command)
952
self.checker_command = value
954
self.PropertyChanged(dbus.String(u"checker"),
955
dbus.String(self.checker_command,
958
# checker_running - property
959
@dbus_service_property(_interface, signature=u"b",
961
def checker_running_dbus_property(self, value=None):
962
if value is None: # get
963
return dbus.Boolean(self.checker is not None)
969
# object_path - property
970
@dbus_service_property(_interface, signature=u"o", access=u"read")
971
def object_path_dbus_property(self):
972
return self.dbus_object_path # is already a dbus.ObjectPath
975
@dbus_service_property(_interface, signature=u"ay",
976
access=u"write", byte_arrays=True)
977
def secret_dbus_property(self, value):
978
self.secret = str(value)
983
class ClientHandler(socketserver.BaseRequestHandler, object):
984
"""A class to handle client connections.
986
Instantiated once for each connection to handle it.
987
Note: This will run in its own forked process."""
990
logger.info(u"TCP connection from: %s",
991
unicode(self.client_address))
992
logger.debug(u"IPC Pipe FD: %d", self.server.pipe[1])
993
# Open IPC pipe to parent process
994
with closing(os.fdopen(self.server.pipe[1], u"w", 1)) as ipc:
995
session = (gnutls.connection
996
.ClientSession(self.request,
1000
line = self.request.makefile().readline()
1001
logger.debug(u"Protocol version: %r", line)
1003
if int(line.strip().split()[0]) > 1:
1005
except (ValueError, IndexError, RuntimeError), error:
1006
logger.error(u"Unknown protocol version: %s", error)
1009
# Note: gnutls.connection.X509Credentials is really a
1010
# generic GnuTLS certificate credentials object so long as
1011
# no X.509 keys are added to it. Therefore, we can use it
1012
# here despite using OpenPGP certificates.
1014
#priority = u':'.join((u"NONE", u"+VERS-TLS1.1",
1015
# u"+AES-256-CBC", u"+SHA1",
1016
# u"+COMP-NULL", u"+CTYPE-OPENPGP",
1018
# Use a fallback default, since this MUST be set.
1019
priority = self.server.gnutls_priority
1020
if priority is None:
1021
priority = u"NORMAL"
1022
(gnutls.library.functions
1023
.gnutls_priority_set_direct(session._c_object,
1028
except gnutls.errors.GNUTLSError, error:
1029
logger.warning(u"Handshake failed: %s", error)
1030
# Do not run session.bye() here: the session is not
1031
# established. Just abandon the request.
1033
logger.debug(u"Handshake succeeded")
1035
fpr = self.fingerprint(self.peer_certificate(session))
1036
except (TypeError, gnutls.errors.GNUTLSError), error:
1037
logger.warning(u"Bad certificate: %s", error)
1040
logger.debug(u"Fingerprint: %s", fpr)
1042
for c in self.server.clients:
1043
if c.fingerprint == fpr:
1047
ipc.write(u"NOTFOUND %s %s\n"
1048
% (fpr, unicode(self.client_address)))
1051
# Have to check if client.still_valid(), since it is
1052
# possible that the client timed out while establishing
1053
# the GnuTLS session.
1054
if not client.still_valid():
1055
ipc.write(u"INVALID %s\n" % client.name)
1058
ipc.write(u"SENDING %s\n" % client.name)
1060
while sent_size < len(client.secret):
1061
sent = session.send(client.secret[sent_size:])
1062
logger.debug(u"Sent: %d, remaining: %d",
1063
sent, len(client.secret)
1064
- (sent_size + sent))
1069
def peer_certificate(session):
1070
"Return the peer's OpenPGP certificate as a bytestring"
1071
# If not an OpenPGP certificate...
1072
if (gnutls.library.functions
1073
.gnutls_certificate_type_get(session._c_object)
1074
!= gnutls.library.constants.GNUTLS_CRT_OPENPGP):
1075
# ...do the normal thing
1076
return session.peer_certificate
1077
list_size = ctypes.c_uint(1)
1078
cert_list = (gnutls.library.functions
1079
.gnutls_certificate_get_peers
1080
(session._c_object, ctypes.byref(list_size)))
1081
if not bool(cert_list) and list_size.value != 0:
1082
raise gnutls.errors.GNUTLSError(u"error getting peer"
1084
if list_size.value == 0:
1087
return ctypes.string_at(cert.data, cert.size)
1090
def fingerprint(openpgp):
1091
"Convert an OpenPGP bytestring to a hexdigit fingerprint"
1092
# New GnuTLS "datum" with the OpenPGP public key
1093
datum = (gnutls.library.types
1094
.gnutls_datum_t(ctypes.cast(ctypes.c_char_p(openpgp),
1097
ctypes.c_uint(len(openpgp))))
1098
# New empty GnuTLS certificate
1099
crt = gnutls.library.types.gnutls_openpgp_crt_t()
1100
(gnutls.library.functions
1101
.gnutls_openpgp_crt_init(ctypes.byref(crt)))
1102
# Import the OpenPGP public key into the certificate
1103
(gnutls.library.functions
1104
.gnutls_openpgp_crt_import(crt, ctypes.byref(datum),
1105
gnutls.library.constants
1106
.GNUTLS_OPENPGP_FMT_RAW))
1107
# Verify the self signature in the key
1108
crtverify = ctypes.c_uint()
1109
(gnutls.library.functions
1110
.gnutls_openpgp_crt_verify_self(crt, 0,
1111
ctypes.byref(crtverify)))
1112
if crtverify.value != 0:
1113
gnutls.library.functions.gnutls_openpgp_crt_deinit(crt)
1114
raise (gnutls.errors.CertificateSecurityError
1116
# New buffer for the fingerprint
1117
buf = ctypes.create_string_buffer(20)
1118
buf_len = ctypes.c_size_t()
1119
# Get the fingerprint from the certificate into the buffer
1120
(gnutls.library.functions
1121
.gnutls_openpgp_crt_get_fingerprint(crt, ctypes.byref(buf),
1122
ctypes.byref(buf_len)))
1123
# Deinit the certificate
1124
gnutls.library.functions.gnutls_openpgp_crt_deinit(crt)
1125
# Convert the buffer to a Python bytestring
1126
fpr = ctypes.string_at(buf, buf_len.value)
1127
# Convert the bytestring to hexadecimal notation
1128
hex_fpr = u''.join(u"%02X" % ord(char) for char in fpr)
1132
class ForkingMixInWithPipe(socketserver.ForkingMixIn, object):
1133
"""Like socketserver.ForkingMixIn, but also pass a pipe."""
1134
def process_request(self, request, client_address):
1135
"""Overrides and wraps the original process_request().
1137
This function creates a new pipe in self.pipe
1139
self.pipe = os.pipe()
1140
super(ForkingMixInWithPipe,
1141
self).process_request(request, client_address)
1142
os.close(self.pipe[1]) # close write end
1143
self.add_pipe(self.pipe[0])
1144
def add_pipe(self, pipe):
1145
"""Dummy function; override as necessary"""
1149
class IPv6_TCPServer(ForkingMixInWithPipe,
1150
socketserver.TCPServer, object):
1151
"""IPv6-capable TCP server. Accepts 'None' as address and/or port
1154
enabled: Boolean; whether this server is activated yet
1155
interface: None or a network interface name (string)
1156
use_ipv6: Boolean; to use IPv6 or not
1158
def __init__(self, server_address, RequestHandlerClass,
1159
interface=None, use_ipv6=True):
1160
self.interface = interface
1162
self.address_family = socket.AF_INET6
1163
socketserver.TCPServer.__init__(self, server_address,
1164
RequestHandlerClass)
1165
def server_bind(self):
1166
"""This overrides the normal server_bind() function
1167
to bind to an interface if one was specified, and also NOT to
1168
bind to an address or port if they were not specified."""
1169
if self.interface is not None:
1170
if SO_BINDTODEVICE is None:
1171
logger.error(u"SO_BINDTODEVICE does not exist;"
1172
u" cannot bind to interface %s",
109
return now < (self.last_seen + self.timeout)
110
def it_is_time_to_check(self, now=None):
112
now = datetime.datetime.now()
113
return self.next_check <= now
116
class server_metaclass(type):
117
"Common behavior for the UDP and TCP server classes"
118
def __new__(cls, name, bases, attrs):
119
attrs["address_family"] = socket.AF_INET6
120
attrs["allow_reuse_address"] = True
121
def server_bind(self):
122
if self.options.interface:
123
if not hasattr(socket, "SO_BINDTODEVICE"):
124
# From /usr/include/asm-i486/socket.h
125
socket.SO_BINDTODEVICE = 25
1176
127
self.socket.setsockopt(socket.SOL_SOCKET,
128
socket.SO_BINDTODEVICE,
129
self.options.interface)
1180
130
except socket.error, error:
1181
131
if error[0] == errno.EPERM:
1182
logger.error(u"No permission to"
1183
u" bind to interface %s",
1185
elif error[0] == errno.ENOPROTOOPT:
1186
logger.error(u"SO_BINDTODEVICE not available;"
1187
u" cannot bind to interface %s",
132
print "Warning: No permission to bind to interface", \
133
self.options.interface
1191
# Only bind(2) the socket if we really need to.
1192
if self.server_address[0] or self.server_address[1]:
1193
if not self.server_address[0]:
1194
if self.address_family == socket.AF_INET6:
1195
any_address = u"::" # in6addr_any
1197
any_address = socket.INADDR_ANY
1198
self.server_address = (any_address,
1199
self.server_address[1])
1200
elif not self.server_address[1]:
1201
self.server_address = (self.server_address[0],
1203
# if self.interface:
1204
# self.server_address = (self.server_address[0],
1209
return socketserver.TCPServer.server_bind(self)
1212
class MandosServer(IPv6_TCPServer):
1216
clients: set of Client objects
1217
gnutls_priority GnuTLS priority string
1218
use_dbus: Boolean; to emit D-Bus signals or not
1220
Assumes a gobject.MainLoop event loop.
1222
def __init__(self, server_address, RequestHandlerClass,
1223
interface=None, use_ipv6=True, clients=None,
1224
gnutls_priority=None, use_dbus=True):
1225
self.enabled = False
1226
self.clients = clients
1227
if self.clients is None:
1228
self.clients = set()
1229
self.use_dbus = use_dbus
1230
self.gnutls_priority = gnutls_priority
1231
IPv6_TCPServer.__init__(self, server_address,
1232
RequestHandlerClass,
1233
interface = interface,
1234
use_ipv6 = use_ipv6)
1235
def server_activate(self):
1237
return socketserver.TCPServer.server_activate(self)
1240
def add_pipe(self, pipe):
1241
# Call "handle_ipc" for both data and EOF events
1242
gobject.io_add_watch(pipe, gobject.IO_IN | gobject.IO_HUP,
1244
def handle_ipc(self, source, condition, file_objects={}):
1246
gobject.IO_IN: u"IN", # There is data to read.
1247
gobject.IO_OUT: u"OUT", # Data can be written (without
1249
gobject.IO_PRI: u"PRI", # There is urgent data to read.
1250
gobject.IO_ERR: u"ERR", # Error condition.
1251
gobject.IO_HUP: u"HUP" # Hung up (the connection has been
1252
# broken, usually for pipes and
1255
conditions_string = ' | '.join(name
1257
condition_names.iteritems()
1258
if cond & condition)
1259
logger.debug(u"Handling IPC: FD = %d, condition = %s", source,
1262
# Turn the pipe file descriptor into a Python file object
1263
if source not in file_objects:
1264
file_objects[source] = os.fdopen(source, u"r", 1)
1266
# Read a line from the file object
1267
cmdline = file_objects[source].readline()
1268
if not cmdline: # Empty line means end of file
1269
# close the IPC pipe
1270
file_objects[source].close()
1271
del file_objects[source]
1273
# Stop calling this function
1276
logger.debug(u"IPC command: %r", cmdline)
1278
# Parse and act on command
1279
cmd, args = cmdline.rstrip(u"\r\n").split(None, 1)
1281
if cmd == u"NOTFOUND":
1282
logger.warning(u"Client not found for fingerprint: %s",
1286
mandos_dbus_service.ClientNotFound(args)
1287
elif cmd == u"INVALID":
1288
for client in self.clients:
1289
if client.name == args:
1290
logger.warning(u"Client %s is invalid", args)
1296
logger.error(u"Unknown client %s is invalid", args)
1297
elif cmd == u"SENDING":
1298
for client in self.clients:
1299
if client.name == args:
1300
logger.info(u"Sending secret to %s", client.name)
1307
logger.error(u"Sending secret to unknown client %s",
1310
logger.error(u"Unknown IPC command: %r", cmdline)
1312
# Keep calling this function
136
return super(type(self), self).server_bind()
137
attrs["server_bind"] = server_bind
138
def init(self, *args, **kwargs):
139
if "options" in kwargs:
140
self.options = kwargs["options"]
141
del kwargs["options"]
142
if "clients" in kwargs:
143
self.clients = kwargs["clients"]
144
del kwargs["clients"]
145
if "credentials" in kwargs:
146
self.credentials = kwargs["credentials"]
147
del kwargs["credentials"]
148
return super(type(self), self).__init__(*args, **kwargs)
149
attrs["__init__"] = init
150
return type.__new__(cls, name, bases, attrs)
153
class udp_handler(SocketServer.DatagramRequestHandler, object):
155
self.wfile.write("Polo")
156
print "UDP request answered"
159
class IPv6_UDPServer(SocketServer.UDPServer, object):
160
__metaclass__ = server_metaclass
161
def verify_request(self, request, client_address):
162
print "UDP request came"
163
return request[0] == "Marco"
166
class tcp_handler(SocketServer.BaseRequestHandler, object):
168
print "TCP request came"
169
print "Request:", self.request
170
print "Client Address:", self.client_address
171
print "Server:", self.server
172
session = gnutls.connection.ServerSession(self.request,
173
self.server.credentials)
175
if session.peer_certificate:
176
print "DN:", session.peer_certificate.subject
178
session.verify_peer()
179
except gnutls.errors.CertificateError, error:
180
print "Verify failed", error
184
session.send([client.password
185
for client in self.server.clients
187
session.peer_certificate.subject)][0])
189
session.send("gazonk")
194
class IPv6_TCPServer(SocketServer.ForkingTCPServer, object):
195
__metaclass__ = server_metaclass
1316
198
def string_to_delta(interval):
1317
199
"""Parse a string and return a datetime.timedelta
1319
>>> string_to_delta(u'7d')
201
>>> string_to_delta('7d')
1320
202
datetime.timedelta(7)
1321
>>> string_to_delta(u'60s')
203
>>> string_to_delta('60s')
1322
204
datetime.timedelta(0, 60)
1323
>>> string_to_delta(u'60m')
205
>>> string_to_delta('60m')
1324
206
datetime.timedelta(0, 3600)
1325
>>> string_to_delta(u'24h')
207
>>> string_to_delta('24h')
1326
208
datetime.timedelta(1)
1327
209
>>> string_to_delta(u'1w')
1328
210
datetime.timedelta(7)
1329
>>> string_to_delta(u'5m 30s')
1330
datetime.timedelta(0, 330)
1332
timevalue = datetime.timedelta(0)
1333
for s in interval.split():
1335
suffix = unicode(s[-1])
1338
delta = datetime.timedelta(value)
1339
elif suffix == u"s":
1340
delta = datetime.timedelta(0, value)
1341
elif suffix == u"m":
1342
delta = datetime.timedelta(0, 0, 0, 0, value)
1343
elif suffix == u"h":
1344
delta = datetime.timedelta(0, 0, 0, 0, 0, value)
1345
elif suffix == u"w":
1346
delta = datetime.timedelta(0, 0, 0, 0, 0, 0, value)
1349
except (ValueError, IndexError):
213
suffix=unicode(interval[-1])
214
value=int(interval[:-1])
216
delta = datetime.timedelta(value)
218
delta = datetime.timedelta(0, value)
220
delta = datetime.timedelta(0, 0, 0, 0, value)
222
delta = datetime.timedelta(0, 0, 0, 0, 0, value)
224
delta = datetime.timedelta(0, 0, 0, 0, 0, 0, value)
1350
226
raise ValueError
1355
def if_nametoindex(interface):
1356
"""Call the C function if_nametoindex(), or equivalent
1358
Note: This function cannot accept a unicode string."""
1359
global if_nametoindex
1361
if_nametoindex = (ctypes.cdll.LoadLibrary
1362
(ctypes.util.find_library(u"c"))
1364
except (OSError, AttributeError):
1365
logger.warning(u"Doing if_nametoindex the hard way")
1366
def if_nametoindex(interface):
1367
"Get an interface index the hard way, i.e. using fcntl()"
1368
SIOCGIFINDEX = 0x8933 # From /usr/include/linux/sockios.h
1369
with closing(socket.socket()) as s:
1370
ifreq = fcntl.ioctl(s, SIOCGIFINDEX,
1371
struct.pack(str(u"16s16x"),
1373
interface_index = struct.unpack(str(u"I"),
1375
return interface_index
1376
return if_nametoindex(interface)
1379
def daemon(nochdir = False, noclose = False):
1380
"""See daemon(3). Standard BSD Unix function.
1382
This should really exist as os.daemon, but it doesn't (yet)."""
1391
# Close all standard open file descriptors
1392
null = os.open(os.path.devnull, os.O_NOCTTY | os.O_RDWR)
1393
if not stat.S_ISCHR(os.fstat(null).st_mode):
1394
raise OSError(errno.ENODEV,
1395
u"%s not a character device"
1397
os.dup2(null, sys.stdin.fileno())
1398
os.dup2(null, sys.stdout.fileno())
1399
os.dup2(null, sys.stderr.fileno())
227
except (ValueError, IndexError):
1406
##################################################################
1407
# Parsing of options, both command line and config file
1409
parser = optparse.OptionParser(version = "%%prog %s" % version)
1410
parser.add_option("-i", u"--interface", type=u"string",
1411
metavar="IF", help=u"Bind to interface IF")
1412
parser.add_option("-a", u"--address", type=u"string",
1413
help=u"Address to listen for requests on")
1414
parser.add_option("-p", u"--port", type=u"int",
1415
help=u"Port number to receive requests on")
1416
parser.add_option("--check", action=u"store_true",
1417
help=u"Run self-test")
1418
parser.add_option("--debug", action=u"store_true",
1419
help=u"Debug mode; run in foreground and log to"
1421
parser.add_option("--priority", type=u"string", help=u"GnuTLS"
1422
u" priority string (see GnuTLS documentation)")
1423
parser.add_option("--servicename", type=u"string",
1424
metavar=u"NAME", help=u"Zeroconf service name")
1425
parser.add_option("--configdir", type=u"string",
1426
default=u"/etc/mandos", metavar=u"DIR",
1427
help=u"Directory to search for configuration"
1429
parser.add_option("--no-dbus", action=u"store_false",
1430
dest=u"use_dbus", help=u"Do not provide D-Bus"
1431
u" system bus interface")
1432
parser.add_option("--no-ipv6", action=u"store_false",
1433
dest=u"use_ipv6", help=u"Do not use IPv6")
1434
options = parser.parse_args()[0]
233
parser = OptionParser()
234
parser.add_option("-i", "--interface", type="string",
235
default="eth0", metavar="IF",
236
help="Interface to bind to")
237
parser.add_option("--cert", type="string", default="cert.pem",
239
help="Public key certificate to use")
240
parser.add_option("--key", type="string", default="key.pem",
242
help="Private key to use")
243
parser.add_option("--ca", type="string", default="ca.pem",
245
help="Certificate Authority certificate to use")
246
parser.add_option("--crl", type="string", default="crl.pem",
248
help="Certificate Revokation List to use")
249
parser.add_option("-p", "--port", type="int", default=49001,
250
help="Port number to receive requests on")
251
parser.add_option("--dh", type="int", metavar="BITS",
252
help="DH group to use")
253
parser.add_option("-t", "--timeout", type="string", # Parsed later
255
help="Amount of downtime allowed for clients")
256
parser.add_option("--interval", type="string", # Parsed later
258
help="How often to check that a client is up")
259
parser.add_option("--check", action="store_true", default=False,
260
help="Run self-test")
261
(options, args) = parser.parse_args()
1436
263
if options.check:
1438
265
doctest.testmod()
1441
# Default values for config file for server-global settings
1442
server_defaults = { u"interface": u"",
1447
u"SECURE256:!CTYPE-X.509:+CTYPE-OPENPGP",
1448
u"servicename": u"Mandos",
1449
u"use_dbus": u"True",
1450
u"use_ipv6": u"True",
1453
# Parse config file for server-global settings
1454
server_config = configparser.SafeConfigParser(server_defaults)
1456
server_config.read(os.path.join(options.configdir,
1458
# Convert the SafeConfigParser object to a dict
1459
server_settings = server_config.defaults()
1460
# Use the appropriate methods on the non-string config options
1461
for option in (u"debug", u"use_dbus", u"use_ipv6"):
1462
server_settings[option] = server_config.getboolean(u"DEFAULT",
1464
if server_settings["port"]:
1465
server_settings["port"] = server_config.getint(u"DEFAULT",
1469
# Override the settings from the config file with command line
1471
for option in (u"interface", u"address", u"port", u"debug",
1472
u"priority", u"servicename", u"configdir",
1473
u"use_dbus", u"use_ipv6"):
1474
value = getattr(options, option)
1475
if value is not None:
1476
server_settings[option] = value
1478
# Force all strings to be unicode
1479
for option in server_settings.keys():
1480
if type(server_settings[option]) is str:
1481
server_settings[option] = unicode(server_settings[option])
1482
# Now we have our good server settings in "server_settings"
1484
##################################################################
1487
debug = server_settings[u"debug"]
1488
use_dbus = server_settings[u"use_dbus"]
1489
use_ipv6 = server_settings[u"use_ipv6"]
1492
syslogger.setLevel(logging.WARNING)
1493
console.setLevel(logging.WARNING)
1495
if server_settings[u"servicename"] != u"Mandos":
1496
syslogger.setFormatter(logging.Formatter
1497
(u'Mandos (%s) [%%(process)d]:'
1498
u' %%(levelname)s: %%(message)s'
1499
% server_settings[u"servicename"]))
1501
# Parse config file with clients
1502
client_defaults = { u"timeout": u"1h",
1504
u"checker": u"fping -q -- %%(host)s",
1507
client_config = configparser.SafeConfigParser(client_defaults)
1508
client_config.read(os.path.join(server_settings[u"configdir"],
1511
global mandos_dbus_service
1512
mandos_dbus_service = None
1514
tcp_server = MandosServer((server_settings[u"address"],
1515
server_settings[u"port"]),
1517
interface=server_settings[u"interface"],
1520
server_settings[u"priority"],
1522
pidfilename = u"/var/run/mandos.pid"
1524
pidfile = open(pidfilename, u"w")
1526
logger.error(u"Could not open file %r", pidfilename)
1529
uid = pwd.getpwnam(u"_mandos").pw_uid
1530
gid = pwd.getpwnam(u"_mandos").pw_gid
1533
uid = pwd.getpwnam(u"mandos").pw_uid
1534
gid = pwd.getpwnam(u"mandos").pw_gid
1537
uid = pwd.getpwnam(u"nobody").pw_uid
1538
gid = pwd.getpwnam(u"nobody").pw_gid
1545
except OSError, error:
1546
if error[0] != errno.EPERM:
1549
# Enable all possible GnuTLS debugging
1551
# "Use a log level over 10 to enable all debugging options."
1553
gnutls.library.functions.gnutls_global_set_log_level(11)
1555
@gnutls.library.types.gnutls_log_func
1556
def debug_gnutls(level, string):
1557
logger.debug(u"GnuTLS: %s", string[:-1])
1559
(gnutls.library.functions
1560
.gnutls_global_set_log_function(debug_gnutls))
1563
# From the Avahi example code
1564
DBusGMainLoop(set_as_default=True )
1565
main_loop = gobject.MainLoop()
1566
bus = dbus.SystemBus()
1567
# End of Avahi example code
1569
bus_name = dbus.service.BusName(u"se.bsnet.fukt.Mandos", bus)
1570
protocol = avahi.PROTO_INET6 if use_ipv6 else avahi.PROTO_INET
1571
service = AvahiService(name = server_settings[u"servicename"],
1572
servicetype = u"_mandos._tcp",
1573
protocol = protocol, bus = bus)
1574
if server_settings["interface"]:
1575
service.interface = (if_nametoindex
1576
(str(server_settings[u"interface"])))
1578
client_class = Client
1580
client_class = functools.partial(ClientDBus, bus = bus)
1581
tcp_server.clients.update(set(
1582
client_class(name = section,
1583
config= dict(client_config.items(section)))
1584
for section in client_config.sections()))
1585
if not tcp_server.clients:
1586
logger.warning(u"No clients defined")
1589
# Redirect stdin so all checkers get /dev/null
1590
null = os.open(os.path.devnull, os.O_NOCTTY | os.O_RDWR)
1591
os.dup2(null, sys.stdin.fileno())
1595
# No console logging
1596
logger.removeHandler(console)
1597
# Close all input and output, do double fork, etc.
1601
with closing(pidfile):
1603
pidfile.write(str(pid) + "\n")
1606
logger.error(u"Could not write to file %r with PID %d",
1609
# "pidfile" was never created
1614
"Cleanup function; run on exit"
1617
while tcp_server.clients:
1618
client = tcp_server.clients.pop()
1619
client.disable_hook = None
1622
atexit.register(cleanup)
1625
signal.signal(signal.SIGINT, signal.SIG_IGN)
1626
signal.signal(signal.SIGHUP, lambda signum, frame: sys.exit())
1627
signal.signal(signal.SIGTERM, lambda signum, frame: sys.exit())
1630
class MandosDBusService(dbus.service.Object):
1631
"""A D-Bus proxy object"""
1633
dbus.service.Object.__init__(self, bus, u"/")
1634
_interface = u"se.bsnet.fukt.Mandos"
1636
@dbus.service.signal(_interface, signature=u"oa{sv}")
1637
def ClientAdded(self, objpath, properties):
1641
@dbus.service.signal(_interface, signature=u"s")
1642
def ClientNotFound(self, fingerprint):
1646
@dbus.service.signal(_interface, signature=u"os")
1647
def ClientRemoved(self, objpath, name):
1651
@dbus.service.method(_interface, out_signature=u"ao")
1652
def GetAllClients(self):
1654
return dbus.Array(c.dbus_object_path
1655
for c in tcp_server.clients)
1657
@dbus.service.method(_interface,
1658
out_signature=u"a{oa{sv}}")
1659
def GetAllClientsWithProperties(self):
1661
return dbus.Dictionary(
1662
((c.dbus_object_path, c.GetAll(u""))
1663
for c in tcp_server.clients),
1664
signature=u"oa{sv}")
1666
@dbus.service.method(_interface, in_signature=u"o")
1667
def RemoveClient(self, object_path):
1669
for c in tcp_server.clients:
1670
if c.dbus_object_path == object_path:
1671
tcp_server.clients.remove(c)
1672
c.remove_from_connection()
1673
# Don't signal anything except ClientRemoved
1674
c.disable(signal=False)
1676
self.ClientRemoved(object_path, c.name)
1682
mandos_dbus_service = MandosDBusService()
1684
for client in tcp_server.clients:
1687
mandos_dbus_service.ClientAdded(client.dbus_object_path,
1692
tcp_server.server_activate()
1694
# Find out what port we got
1695
service.port = tcp_server.socket.getsockname()[1]
1697
logger.info(u"Now listening on address %r, port %d,"
1698
" flowinfo %d, scope_id %d"
1699
% tcp_server.socket.getsockname())
1701
logger.info(u"Now listening on address %r, port %d"
1702
% tcp_server.socket.getsockname())
1704
#service.interface = tcp_server.socket.getsockname()[3]
1707
# From the Avahi example code
1710
except dbus.exceptions.DBusException, error:
1711
logger.critical(u"DBusException: %s", error)
1713
# End of Avahi example code
1715
gobject.io_add_watch(tcp_server.fileno(), gobject.IO_IN,
1716
lambda *args, **kwargs:
1717
(tcp_server.handle_request
1718
(*args[2:], **kwargs) or True))
1720
logger.debug(u"Starting main loop")
1722
except AvahiError, error:
1723
logger.critical(u"AvahiError: %s", error)
1725
except KeyboardInterrupt:
1728
logger.debug(u"Server received KeyboardInterrupt")
1729
logger.debug(u"Server exiting")
1731
if __name__ == '__main__':
268
# Parse the time arguments
270
options.timeout = string_to_delta(options.timeout)
272
parser.error("option --timeout: Unparseable time")
275
options.interval = string_to_delta(options.interval)
277
parser.error("option --interval: Unparseable time")
279
cert = gnutls.crypto.X509Certificate(open(options.cert).read())
280
key = gnutls.crypto.X509PrivateKey(open(options.key).read())
281
ca = gnutls.crypto.X509Certificate(open(options.ca).read())
282
crl = gnutls.crypto.X509CRL(open(options.crl).read())
283
cred = gnutls.connection.X509Credentials(cert, key, [ca], [crl])
287
client_config_object = ConfigParser.SafeConfigParser(defaults)
288
client_config_object.read("mandos-clients.conf")
289
clients = Set(Client(name=section, options=options,
290
**(dict(client_config_object\
292
for section in client_config_object.sections())
295
udp_server = IPv6_UDPServer((in6addr_any, options.port),
299
tcp_server = IPv6_TCPServer((in6addr_any, options.port),
309
next_stop = min(client.next_stop() for client in clients)
310
now = datetime.datetime.now()
312
delay = next_stop - now
313
delay_seconds = (delay.days * 24 * 60 * 60
315
+ delay.microseconds / 1000000)
316
clients_with_checkers = tuple(client for client in
320
input_checks = (udp_server, tcp_server) \
321
+ clients_with_checkers
322
print "Waiting for network",
323
if clients_with_checkers:
324
print "and checkers for:",
325
for client in clients_with_checkers:
328
input, out, err = select.select(input_checks, (), (),
333
for client in clients:
334
if client.it_is_time_to_check(now=now) and \
335
client.checker is None:
336
print "Starting checker for client %(name)s" \
338
client.start_checker()
339
# delete timed-out clients
340
for client in clients.copy():
341
if not client.still_valid(now=now):
343
print "Removing client %(name)s" % vars(client)
344
clients.remove(client)
345
except KeyboardInterrupt:
349
for client in clients:
350
client.stop_checker()
353
if __name__ == "__main__":