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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" and "remove" in the "AvahiService" class, the
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# "server_state_changed" and "entry_group_state_changed" functions,
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# and some lines in "main".
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# following functions: "AvahiService.add", "AvahiService.remove",
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# "server_state_changed", "entry_group_state_changed", and some lines
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# Everything else is
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# Copyright © 2007-2008 Teddy Hogeborn & Björn Påhlsson
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from dbus.mainloop.glib import DBusGMainLoop
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# Brief description of the operation of this program:
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# This server announces itself as a Zeroconf service. Connecting
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# clients use the TLS protocol, with the unusual quirk that this
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# server program acts as a TLS "client" while a connecting client acts
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# as a TLS "server". The client (acting as a TLS "server") must
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# supply an OpenPGP certificate, and the fingerprint of this
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# certificate is used by this server to look up (in a list read from a
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# file at start time) which binary blob to give the client. No other
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# authentication or authorization is done by this server.
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logger = logging.Logger('mandos')
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syslogger = logging.handlers.SysLogHandler\
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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: 'Mandos'
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type: string; Example: '_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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name = string; Example: "Mandos"
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type = string; Example: "_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 to 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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def __init__(self, interface = avahi.IF_UNSPEC, name = None,
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type = None, port = None, TXT = None, domain = "",
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host = "", max_renames = 12):
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"""An Avahi (Zeroconf) service. """
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self.interface = interface
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u" retries, exiting.", rename_count)
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raise AvahiServiceError("Too many renames")
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name = server.GetAlternativeServiceName(name)
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logger.error(u"Changing name to %r ...", name)
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logger.notice(u"Changing name to %r ...", name)
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self.rename_count += 1
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interval = property(lambda self: self._interval,
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del _set_interval
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def __init__(self, name = None, stop_hook=None, config={}):
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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, stop_hook=None, fingerprint=None,
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secret=None, secfile=None, fqdn=None, timeout=None,
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interval=-1, checker=None):
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"""Note: the 'checker' argument sets the 'checker_command'
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attribute and not the 'checker' attribute.."""
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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["fingerprint"].upper()\
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# Uppercase and remove spaces from fingerprint
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# for later comparison purposes with return value of
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# the fingerprint() function
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self.fingerprint = fingerprint.upper().replace(u" ", u"")
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logger.debug(u" Fingerprint: %s", self.fingerprint)
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if "secret" in config:
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self.secret = config["secret"].decode(u"base64")
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elif "secfile" in config:
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sf = open(config["secfile"])
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self.secret = secret.decode(u"base64")
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self.secret = sf.read()
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raise TypeError(u"No secret or secfile for client %s"
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self.fqdn = config.get("fqdn", "")
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self.created = datetime.datetime.now()
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self.last_checked_ok = None
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self.timeout = string_to_delta(config["timeout"])
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self.interval = string_to_delta(config["interval"])
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self.timeout = string_to_delta(timeout)
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self.interval = string_to_delta(interval)
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self.stop_hook = stop_hook
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self.checker = None
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self.checker_initiator_tag = None
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self.stop_initiator_tag = None
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self.checker_callback_tag = None
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self.check_command = config["checker"]
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self.check_command = checker
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"""Start this client's checker and timeout hooks"""
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# Schedule a new checker to be started an 'interval' from now,
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self.checker = None
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if os.WIFEXITED(condition) \
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and (os.WEXITSTATUS(condition) == 0):
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logger.info(u"Checker for %(name)s succeeded",
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logger.debug(u"Checker for %(name)s succeeded",
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self.last_checked_ok = now
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gobject.source_remove(self.stop_initiator_tag)
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self.stop_initiator_tag = gobject.timeout_add\
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logger.warning(u"Checker for %(name)s crashed?",
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logger.info(u"Checker for %(name)s failed",
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logger.debug(u"Checker for %(name)s failed",
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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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u' %s', self.check_command, error)
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return True # Try again later
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logger.info(u"Starting checker %r for %s",
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logger.debug(u"Starting checker %r for %s",
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self.checker = subprocess.Popen(command,
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shell=True, cwd="/")
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def fingerprint(openpgp):
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"Convert an OpenPGP bytestring to a hexdigit fingerprint string"
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# New empty GnuTLS certificate
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crt = gnutls.library.types.gnutls_openpgp_crt_t()
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gnutls.library.functions.gnutls_openpgp_crt_init\
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# New GnuTLS "datum" with the OpenPGP public key
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datum = gnutls.library.types.gnutls_datum_t\
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(ctypes.cast(ctypes.c_char_p(openpgp),
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ctypes.POINTER(ctypes.c_ubyte)),
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ctypes.c_uint(len(openpgp)))
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# New empty GnuTLS certificate
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crt = gnutls.library.types.gnutls_openpgp_crt_t()
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gnutls.library.functions.gnutls_openpgp_crt_init\
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# Import the OpenPGP public key into the certificate
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gnutls.library.functions.gnutls_openpgp_crt_import\
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(crt, ctypes.byref(datum),
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gnutls.library.constants.GNUTLS_OPENPGP_FMT_RAW)
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ret = gnutls.library.functions.gnutls_openpgp_crt_import\
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gnutls.library.constants.GNUTLS_OPENPGP_FMT_RAW)
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# New buffer for the fingerprint
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buffer = ctypes.create_string_buffer(20)
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buffer_length = ctypes.c_size_t()
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Note: This will run in its own forked process."""
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def handle(self):
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logger.info(u"TCP connection from: %s",
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logger.debug(u"TCP connection from: %s",
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unicode(self.client_address))
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session = gnutls.connection.ClientSession\
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(self.request, gnutls.connection.X509Credentials())
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line = self.request.makefile().readline()
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logger.debug(u"Protocol version: %r", line)
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if int(line.strip().split()[0]) > 1:
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except (ValueError, IndexError, RuntimeError), error:
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logger.error(u"Unknown protocol version: %s", error)
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# Note: gnutls.connection.X509Credentials is really a generic
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# GnuTLS certificate credentials object so long as no X.509
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# keys are added to it. Therefore, we can use it here despite
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session.handshake()
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except gnutls.errors.GNUTLSError, error:
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logger.warning(u"Handshake failed: %s", error)
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logger.debug(u"Handshake failed: %s", error)
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# Do not run session.bye() here: the session is not
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# established. Just abandon the request.
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fpr = fingerprint(peer_certificate(session))
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except (TypeError, gnutls.errors.GNUTLSError), error:
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logger.warning(u"Bad certificate: %s", error)
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logger.debug(u"Bad certificate: %s", error)
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logger.debug(u"Fingerprint: %s", fpr)
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logger.warning(u"Client not found for fingerprint: %s",
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logger.debug(u"Client not found for fingerprint: %s", fpr)
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# Have to check if client.still_valid(), since it is possible
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# that the client timed out while establishing the GnuTLS
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if not client.still_valid():
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logger.warning(u"Client %(name)s is invalid",
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logger.debug(u"Client %(name)s is invalid", vars(client))
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self.settings["interface"])
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except socket.error, error:
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if error[0] == errno.EPERM:
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logger.error(u"No permission to"
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u" bind to interface %s",
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self.settings["interface"])
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logger.warning(u"No permission to"
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u" bind to interface %s",
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self.settings["interface"])
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# Only bind(2) the socket if we really need to.
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in6addr_any = "::"
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self.server_address = (in6addr_any,
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self.server_address[1])
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elif not self.server_address[1]:
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elif self.server_address[1] is None:
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self.server_address = (self.server_address[0],
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# if self.settings["interface"]:
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# self.server_address = (self.server_address[0],
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return super(type(self), self).server_bind()
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def server_state_changed(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"Server name collision")
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logger.warning(u"Server name collision")
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elif state == avahi.SERVER_RUNNING:
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raise AvahiGroupError("State changed: %s", str(error))
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def if_nametoindex(interface):
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def if_nametoindex(interface, _func=[None]):
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"""Call the C function if_nametoindex(), or equivalent"""
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global if_nametoindex
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if _func[0] is not None:
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return _func[0](interface)
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if "ctypes.util" not in sys.modules:
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import ctypes.util
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if_nametoindex = ctypes.cdll.LoadLibrary\
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(ctypes.util.find_library("c")).if_nametoindex
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libc = ctypes.cdll.LoadLibrary\
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(ctypes.util.find_library("c"))
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_func[0] = libc.if_nametoindex
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return _func[0](interface)
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except (OSError, AttributeError):
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if "struct" not in sys.modules:
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if "fcntl" not in sys.modules:
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def if_nametoindex(interface):
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def the_hard_way(interface):
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"Get an interface index the hard way, i.e. using fcntl()"
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SIOCGIFINDEX = 0x8933 # From /usr/include/linux/sockios.h
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s = socket.socket()
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interface_index = struct.unpack("I", ifreq[16:20])[0]
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return interface_index
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return if_nametoindex(interface)
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def daemon(nochdir = False, noclose = False):
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_func[0] = the_hard_way
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return _func[0](interface)
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def daemon(nochdir, noclose):
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"""See daemon(3). Standard BSD Unix function.
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This should really exist as os.daemon, but it doesn't (yet)."""
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help="Port number to receive requests on")
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parser.add_option("--check", action="store_true", default=False,
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help="Run self-test")
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parser.add_option("--debug", action="store_true",
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parser.add_option("--debug", action="store_true", default=False,
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help="Debug mode; run in foreground and log to"
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parser.add_option("--priority", type="string", help="GnuTLS"
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# Parse config file for server-global settings
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server_config = ConfigParser.SafeConfigParser(server_defaults)
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del server_defaults
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server_config.read(os.path.join(options.configdir, "mandos.conf"))
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server_config.read(os.path.join(options.configdir, "server.conf"))
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server_section = "server"
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# Convert the SafeConfigParser object to a dict
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server_settings = dict(server_config.items(server_section))
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def remove_from_clients(client):
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clients.remove(client)
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logger.critical(u"No clients left, exiting")
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logger.debug(u"No clients left, exiting")
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clients.update(Set(Client(name = section,
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clients.update(Set(Client(name=section,
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stop_hook = remove_from_clients,
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= dict(client_config.items(section)))
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**(dict(client_config\
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for section in client_config.sections()))
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"Cleanup function; run on exit"
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# Find out what port we got
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service.port = tcp_server.socket.getsockname()[1]
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logger.info(u"Now listening on address %r, port %d, flowinfo %d,"
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u" scope_id %d" % tcp_server.socket.getsockname())
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logger.debug(u"Now listening on address %r, port %d, flowinfo %d,"
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u" scope_id %d" % tcp_server.socket.getsockname())
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#service.interface = tcp_server.socket.getsockname()[3]