265
196
.replace(b"\n", b"\\n")
266
197
.replace(b"\0", b"\\x00"))
269
200
def encrypt(self, data, password):
270
201
passphrase = self.password_encode(password)
271
202
with tempfile.NamedTemporaryFile(
272
203
dir=self.tempdir) as passfile:
273
204
passfile.write(passphrase)
275
proc = subprocess.Popen([self.gpg, "--symmetric",
206
proc = subprocess.Popen(['gpg', '--symmetric',
278
209
+ self.gnupgargs,
279
stdin=subprocess.PIPE,
280
stdout=subprocess.PIPE,
281
stderr=subprocess.PIPE)
282
ciphertext, err = proc.communicate(input=data)
210
stdin = subprocess.PIPE,
211
stdout = subprocess.PIPE,
212
stderr = subprocess.PIPE)
213
ciphertext, err = proc.communicate(input = data)
283
214
if proc.returncode != 0:
284
215
raise PGPError(err)
285
216
return ciphertext
287
218
def decrypt(self, data, password):
288
219
passphrase = self.password_encode(password)
289
220
with tempfile.NamedTemporaryFile(
290
dir=self.tempdir) as passfile:
221
dir = self.tempdir) as passfile:
291
222
passfile.write(passphrase)
293
proc = subprocess.Popen([self.gpg, "--decrypt",
224
proc = subprocess.Popen(['gpg', '--decrypt',
296
227
+ self.gnupgargs,
297
stdin=subprocess.PIPE,
298
stdout=subprocess.PIPE,
299
stderr=subprocess.PIPE)
300
decrypted_plaintext, err = proc.communicate(input=data)
228
stdin = subprocess.PIPE,
229
stdout = subprocess.PIPE,
230
stderr = subprocess.PIPE)
231
decrypted_plaintext, err = proc.communicate(input = data)
301
232
if proc.returncode != 0:
302
233
raise PGPError(err)
303
234
return decrypted_plaintext
306
# Pretend that we have an Avahi module
308
"""This isn't so much a class as it is a module-like namespace."""
309
IF_UNSPEC = -1 # avahi-common/address.h
310
PROTO_UNSPEC = -1 # avahi-common/address.h
311
PROTO_INET = 0 # avahi-common/address.h
312
PROTO_INET6 = 1 # avahi-common/address.h
313
DBUS_NAME = "org.freedesktop.Avahi"
314
DBUS_INTERFACE_ENTRY_GROUP = DBUS_NAME + ".EntryGroup"
315
DBUS_INTERFACE_SERVER = DBUS_NAME + ".Server"
316
DBUS_PATH_SERVER = "/"
319
def string_array_to_txt_array(t):
320
return dbus.Array((dbus.ByteArray(s.encode("utf-8"))
321
for s in t), signature="ay")
322
ENTRY_GROUP_ESTABLISHED = 2 # avahi-common/defs.h
323
ENTRY_GROUP_COLLISION = 3 # avahi-common/defs.h
324
ENTRY_GROUP_FAILURE = 4 # avahi-common/defs.h
325
SERVER_INVALID = 0 # avahi-common/defs.h
326
SERVER_REGISTERING = 1 # avahi-common/defs.h
327
SERVER_RUNNING = 2 # avahi-common/defs.h
328
SERVER_COLLISION = 3 # avahi-common/defs.h
329
SERVER_FAILURE = 4 # avahi-common/defs.h
332
237
class AvahiError(Exception):
333
238
def __init__(self, value, *args, **kwargs):
334
239
self.value = value
524
429
class AvahiServiceToSyslog(AvahiService):
525
430
def rename(self, *args, **kwargs):
526
431
"""Add the new name to the syslog messages"""
527
ret = super(AvahiServiceToSyslog, self).rename(*args,
432
ret = AvahiService.rename(self, *args, **kwargs)
529
433
syslogger.setFormatter(logging.Formatter(
530
"Mandos ({}) [%(process)d]: %(levelname)s: %(message)s"
434
'Mandos ({}) [%(process)d]: %(levelname)s: %(message)s'
531
435
.format(self.name)))
535
# Pretend that we have a GnuTLS module
537
"""This isn't so much a class as it is a module-like namespace."""
539
library = ctypes.util.find_library("gnutls")
541
library = ctypes.util.find_library("gnutls-deb0")
542
_library = ctypes.cdll.LoadLibrary(library)
545
# Unless otherwise indicated, the constants and types below are
546
# all from the gnutls/gnutls.h C header file.
557
E_NO_CERTIFICATE_FOUND = -49
562
KEYID_USE_SHA256 = 1 # gnutls/x509.h
563
OPENPGP_FMT_RAW = 0 # gnutls/openpgp.h
566
class _session_int(ctypes.Structure):
568
session_t = ctypes.POINTER(_session_int)
570
class certificate_credentials_st(ctypes.Structure):
572
certificate_credentials_t = ctypes.POINTER(
573
certificate_credentials_st)
574
certificate_type_t = ctypes.c_int
576
class datum_t(ctypes.Structure):
577
_fields_ = [("data", ctypes.POINTER(ctypes.c_ubyte)),
578
("size", ctypes.c_uint)]
580
class _openpgp_crt_int(ctypes.Structure):
582
openpgp_crt_t = ctypes.POINTER(_openpgp_crt_int)
583
openpgp_crt_fmt_t = ctypes.c_int # gnutls/openpgp.h
584
log_func = ctypes.CFUNCTYPE(None, ctypes.c_int, ctypes.c_char_p)
585
credentials_type_t = ctypes.c_int
586
transport_ptr_t = ctypes.c_void_p
587
close_request_t = ctypes.c_int
590
class Error(Exception):
591
def __init__(self, message=None, code=None, args=()):
592
# Default usage is by a message string, but if a return
593
# code is passed, convert it to a string with
596
if message is None and code is not None:
597
message = gnutls.strerror(code).decode(
598
"utf-8", errors="replace")
599
return super(gnutls.Error, self).__init__(
602
class CertificateSecurityError(Error):
606
def __init__(self, cls):
609
def from_param(self, obj):
610
if not isinstance(obj, self.cls):
611
raise TypeError("Not of type {}: {!r}"
612
.format(self.cls.__name__, obj))
613
return ctypes.byref(obj.from_param(obj))
615
class CastToVoidPointer:
616
def __init__(self, cls):
619
def from_param(self, obj):
620
if not isinstance(obj, self.cls):
621
raise TypeError("Not of type {}: {!r}"
622
.format(self.cls.__name__, obj))
623
return ctypes.cast(obj.from_param(obj), ctypes.c_void_p)
625
class With_from_param:
627
def from_param(cls, obj):
628
return obj._as_parameter_
631
class Credentials(With_from_param):
633
self._as_parameter_ = gnutls.certificate_credentials_t()
634
gnutls.certificate_allocate_credentials(self)
635
self.type = gnutls.CRD_CERTIFICATE
638
gnutls.certificate_free_credentials(self)
640
class ClientSession(With_from_param):
641
def __init__(self, socket, credentials=None):
642
self._as_parameter_ = gnutls.session_t()
643
gnutls_flags = gnutls.CLIENT
644
if gnutls.check_version(b"3.5.6"):
645
gnutls_flags |= gnutls.NO_TICKETS
647
gnutls_flags |= gnutls.ENABLE_RAWPK
648
gnutls.init(self, gnutls_flags)
650
gnutls.set_default_priority(self)
651
gnutls.transport_set_ptr(self, socket.fileno())
652
gnutls.handshake_set_private_extensions(self, True)
654
if credentials is None:
655
credentials = gnutls.Credentials()
656
gnutls.credentials_set(self, credentials.type,
658
self.credentials = credentials
664
return gnutls.handshake(self)
666
def send(self, data):
670
data_len -= gnutls.record_send(self, data[-data_len:],
674
return gnutls.bye(self, gnutls.SHUT_RDWR)
676
# Error handling functions
677
def _error_code(result):
678
"""A function to raise exceptions on errors, suitable
679
for the "restype" attribute on ctypes functions"""
680
if result >= gnutls.E_SUCCESS:
682
if result == gnutls.E_NO_CERTIFICATE_FOUND:
683
raise gnutls.CertificateSecurityError(code=result)
684
raise gnutls.Error(code=result)
686
def _retry_on_error(result, func, arguments,
687
_error_code=_error_code):
688
"""A function to retry on some errors, suitable
689
for the "errcheck" attribute on ctypes functions"""
690
while result < gnutls.E_SUCCESS:
691
if result not in (gnutls.E_INTERRUPTED, gnutls.E_AGAIN):
692
return _error_code(result)
693
result = func(*arguments)
696
# Unless otherwise indicated, the function declarations below are
697
# all from the gnutls/gnutls.h C header file.
700
priority_set_direct = _library.gnutls_priority_set_direct
701
priority_set_direct.argtypes = [ClientSession, ctypes.c_char_p,
702
ctypes.POINTER(ctypes.c_char_p)]
703
priority_set_direct.restype = _error_code
705
init = _library.gnutls_init
706
init.argtypes = [PointerTo(ClientSession), ctypes.c_int]
707
init.restype = _error_code
709
set_default_priority = _library.gnutls_set_default_priority
710
set_default_priority.argtypes = [ClientSession]
711
set_default_priority.restype = _error_code
713
record_send = _library.gnutls_record_send
714
record_send.argtypes = [ClientSession, ctypes.c_void_p,
716
record_send.restype = ctypes.c_ssize_t
717
record_send.errcheck = _retry_on_error
719
certificate_allocate_credentials = (
720
_library.gnutls_certificate_allocate_credentials)
721
certificate_allocate_credentials.argtypes = [
722
PointerTo(Credentials)]
723
certificate_allocate_credentials.restype = _error_code
725
certificate_free_credentials = (
726
_library.gnutls_certificate_free_credentials)
727
certificate_free_credentials.argtypes = [Credentials]
728
certificate_free_credentials.restype = None
730
handshake_set_private_extensions = (
731
_library.gnutls_handshake_set_private_extensions)
732
handshake_set_private_extensions.argtypes = [ClientSession,
734
handshake_set_private_extensions.restype = None
736
credentials_set = _library.gnutls_credentials_set
737
credentials_set.argtypes = [ClientSession, credentials_type_t,
738
CastToVoidPointer(Credentials)]
739
credentials_set.restype = _error_code
741
strerror = _library.gnutls_strerror
742
strerror.argtypes = [ctypes.c_int]
743
strerror.restype = ctypes.c_char_p
745
certificate_type_get = _library.gnutls_certificate_type_get
746
certificate_type_get.argtypes = [ClientSession]
747
certificate_type_get.restype = _error_code
749
certificate_get_peers = _library.gnutls_certificate_get_peers
750
certificate_get_peers.argtypes = [ClientSession,
751
ctypes.POINTER(ctypes.c_uint)]
752
certificate_get_peers.restype = ctypes.POINTER(datum_t)
754
global_set_log_level = _library.gnutls_global_set_log_level
755
global_set_log_level.argtypes = [ctypes.c_int]
756
global_set_log_level.restype = None
758
global_set_log_function = _library.gnutls_global_set_log_function
759
global_set_log_function.argtypes = [log_func]
760
global_set_log_function.restype = None
762
deinit = _library.gnutls_deinit
763
deinit.argtypes = [ClientSession]
764
deinit.restype = None
766
handshake = _library.gnutls_handshake
767
handshake.argtypes = [ClientSession]
768
handshake.restype = ctypes.c_int
769
handshake.errcheck = _retry_on_error
771
transport_set_ptr = _library.gnutls_transport_set_ptr
772
transport_set_ptr.argtypes = [ClientSession, transport_ptr_t]
773
transport_set_ptr.restype = None
775
bye = _library.gnutls_bye
776
bye.argtypes = [ClientSession, close_request_t]
777
bye.restype = ctypes.c_int
778
bye.errcheck = _retry_on_error
780
check_version = _library.gnutls_check_version
781
check_version.argtypes = [ctypes.c_char_p]
782
check_version.restype = ctypes.c_char_p
784
_need_version = b"3.3.0"
785
if check_version(_need_version) is None:
786
raise self.Error("Needs GnuTLS {} or later"
787
.format(_need_version))
789
_tls_rawpk_version = b"3.6.6"
790
has_rawpk = bool(check_version(_tls_rawpk_version))
794
class pubkey_st(ctypes.Structure):
796
pubkey_t = ctypes.POINTER(pubkey_st)
798
x509_crt_fmt_t = ctypes.c_int
800
# All the function declarations below are from
802
pubkey_init = _library.gnutls_pubkey_init
803
pubkey_init.argtypes = [ctypes.POINTER(pubkey_t)]
804
pubkey_init.restype = _error_code
806
pubkey_import = _library.gnutls_pubkey_import
807
pubkey_import.argtypes = [pubkey_t, ctypes.POINTER(datum_t),
809
pubkey_import.restype = _error_code
811
pubkey_get_key_id = _library.gnutls_pubkey_get_key_id
812
pubkey_get_key_id.argtypes = [pubkey_t, ctypes.c_int,
813
ctypes.POINTER(ctypes.c_ubyte),
814
ctypes.POINTER(ctypes.c_size_t)]
815
pubkey_get_key_id.restype = _error_code
817
pubkey_deinit = _library.gnutls_pubkey_deinit
818
pubkey_deinit.argtypes = [pubkey_t]
819
pubkey_deinit.restype = None
821
# All the function declarations below are from
824
openpgp_crt_init = _library.gnutls_openpgp_crt_init
825
openpgp_crt_init.argtypes = [ctypes.POINTER(openpgp_crt_t)]
826
openpgp_crt_init.restype = _error_code
828
openpgp_crt_import = _library.gnutls_openpgp_crt_import
829
openpgp_crt_import.argtypes = [openpgp_crt_t,
830
ctypes.POINTER(datum_t),
832
openpgp_crt_import.restype = _error_code
834
openpgp_crt_verify_self = \
835
_library.gnutls_openpgp_crt_verify_self
836
openpgp_crt_verify_self.argtypes = [
839
ctypes.POINTER(ctypes.c_uint),
841
openpgp_crt_verify_self.restype = _error_code
843
openpgp_crt_deinit = _library.gnutls_openpgp_crt_deinit
844
openpgp_crt_deinit.argtypes = [openpgp_crt_t]
845
openpgp_crt_deinit.restype = None
847
openpgp_crt_get_fingerprint = (
848
_library.gnutls_openpgp_crt_get_fingerprint)
849
openpgp_crt_get_fingerprint.argtypes = [openpgp_crt_t,
853
openpgp_crt_get_fingerprint.restype = _error_code
855
if check_version(b"3.6.4"):
856
certificate_type_get2 = _library.gnutls_certificate_type_get2
857
certificate_type_get2.argtypes = [ClientSession, ctypes.c_int]
858
certificate_type_get2.restype = _error_code
860
# Remove non-public functions
861
del _error_code, _retry_on_error
864
438
def call_pipe(connection, # : multiprocessing.Connection
865
439
func, *args, **kwargs):
866
440
"""This function is meant to be called by multiprocessing.Process
868
442
This function runs func(*args, **kwargs), and writes the resulting
869
443
return value on the provided multiprocessing.Connection.
871
445
connection.send(func(*args, **kwargs))
872
446
connection.close()
448
class Client(object):
876
449
"""A representation of a client host served by this server.
879
approved: bool(); None if not yet approved/disapproved
452
approved: bool(); 'None' if not yet approved/disapproved
880
453
approval_delay: datetime.timedelta(); Time to wait for approval
881
454
approval_duration: datetime.timedelta(); Duration of one approval
882
checker: multiprocessing.Process(); a running checker process used
883
to see if the client lives. None if no process is
885
checker_callback_tag: a GLib event source tag, or None
455
checker: subprocess.Popen(); a running checker process used
456
to see if the client lives.
457
'None' if no process is running.
458
checker_callback_tag: a gobject event source tag, or None
886
459
checker_command: string; External command which is run to check
887
460
if client lives. %() expansions are done at
888
461
runtime with vars(self) as dict, so that for
889
462
instance %(name)s can be used in the command.
890
checker_initiator_tag: a GLib event source tag, or None
463
checker_initiator_tag: a gobject event source tag, or None
891
464
created: datetime.datetime(); (UTC) object creation
892
465
client_structure: Object describing what attributes a client has
893
466
and is used for storing the client at exit
894
467
current_checker_command: string; current running checker_command
895
disable_initiator_tag: a GLib event source tag, or None
468
disable_initiator_tag: a gobject event source tag, or None
897
470
fingerprint: string (40 or 32 hexadecimal digits); used to
898
uniquely identify an OpenPGP client
899
key_id: string (64 hexadecimal digits); used to uniquely identify
900
a client using raw public keys
471
uniquely identify the client
901
472
host: string; available for use by the checker command
902
473
interval: datetime.timedelta(); How often to start a new checker
903
474
last_approval_request: datetime.datetime(); (UTC) or None
1334
895
for cls in self.__class__.__mro__
1335
896
for name, athing in
1336
897
inspect.getmembers(cls, self._is_dbus_thing(thing)))
1338
@dbus.service.method(dbus.INTROSPECTABLE_IFACE,
1340
path_keyword="object_path",
1341
connection_keyword="connection")
1342
def Introspect(self, object_path, connection):
1343
"""Overloading of standard D-Bus method.
1345
Inserts annotation tags on methods and signals.
1347
xmlstring = dbus.service.Object.Introspect(self, object_path,
1350
document = xml.dom.minidom.parseString(xmlstring)
1352
for if_tag in document.getElementsByTagName("interface"):
1353
# Add annotation tags
1354
for typ in ("method", "signal"):
1355
for tag in if_tag.getElementsByTagName(typ):
1357
for name, prop in (self.
1358
_get_all_dbus_things(typ)):
1359
if (name == tag.getAttribute("name")
1360
and prop._dbus_interface
1361
== if_tag.getAttribute("name")):
1362
annots.update(getattr(
1363
prop, "_dbus_annotations", {}))
1364
for name, value in annots.items():
1365
ann_tag = document.createElement(
1367
ann_tag.setAttribute("name", name)
1368
ann_tag.setAttribute("value", value)
1369
tag.appendChild(ann_tag)
1370
# Add interface annotation tags
1371
for annotation, value in dict(
1372
itertools.chain.from_iterable(
1373
annotations().items()
1374
for name, annotations
1375
in self._get_all_dbus_things("interface")
1376
if name == if_tag.getAttribute("name")
1378
ann_tag = document.createElement("annotation")
1379
ann_tag.setAttribute("name", annotation)
1380
ann_tag.setAttribute("value", value)
1381
if_tag.appendChild(ann_tag)
1382
# Fix argument name for the Introspect method itself
1383
if (if_tag.getAttribute("name")
1384
== dbus.INTROSPECTABLE_IFACE):
1385
for cn in if_tag.getElementsByTagName("method"):
1386
if cn.getAttribute("name") == "Introspect":
1387
for arg in cn.getElementsByTagName("arg"):
1388
if (arg.getAttribute("direction")
1390
arg.setAttribute("name",
1392
xmlstring = document.toxml("utf-8")
1394
except (AttributeError, xml.dom.DOMException,
1395
xml.parsers.expat.ExpatError) as error:
1396
logger.error("Failed to override Introspection method",
1401
class DBusObjectWithProperties(DBusObjectWithAnnotations):
1402
"""A D-Bus object with properties.
1404
Classes inheriting from this can use the dbus_service_property
1405
decorator to expose methods as D-Bus properties. It exposes the
1406
standard Get(), Set(), and GetAll() methods on the D-Bus.
1409
899
def _get_dbus_property(self, interface_name, property_name):
1410
900
"""Returns a bound method if one exists which is a D-Bus
1411
901
property with the specified name and interface.
1565
1059
return xmlstring
1569
dbus.OBJECT_MANAGER_IFACE
1570
except AttributeError:
1571
dbus.OBJECT_MANAGER_IFACE = "org.freedesktop.DBus.ObjectManager"
1574
class DBusObjectWithObjectManager(DBusObjectWithAnnotations):
1575
"""A D-Bus object with an ObjectManager.
1577
Classes inheriting from this exposes the standard
1578
GetManagedObjects call and the InterfacesAdded and
1579
InterfacesRemoved signals on the standard
1580
"org.freedesktop.DBus.ObjectManager" interface.
1582
Note: No signals are sent automatically; they must be sent
1585
@dbus.service.method(dbus.OBJECT_MANAGER_IFACE,
1586
out_signature="a{oa{sa{sv}}}")
1587
def GetManagedObjects(self):
1588
"""This function must be overridden"""
1589
raise NotImplementedError()
1591
@dbus.service.signal(dbus.OBJECT_MANAGER_IFACE,
1592
signature="oa{sa{sv}}")
1593
def InterfacesAdded(self, object_path, interfaces_and_properties):
1596
@dbus.service.signal(dbus.OBJECT_MANAGER_IFACE, signature="oas")
1597
def InterfacesRemoved(self, object_path, interfaces):
1600
@dbus.service.method(dbus.INTROSPECTABLE_IFACE,
1602
path_keyword="object_path",
1603
connection_keyword="connection")
1604
def Introspect(self, object_path, connection):
1605
"""Overloading of standard D-Bus method.
1607
Override return argument name of GetManagedObjects to be
1608
"objpath_interfaces_and_properties"
1610
xmlstring = DBusObjectWithAnnotations.Introspect(self,
1614
document = xml.dom.minidom.parseString(xmlstring)
1616
for if_tag in document.getElementsByTagName("interface"):
1617
# Fix argument name for the GetManagedObjects method
1618
if (if_tag.getAttribute("name")
1619
== dbus.OBJECT_MANAGER_IFACE):
1620
for cn in if_tag.getElementsByTagName("method"):
1621
if (cn.getAttribute("name")
1622
== "GetManagedObjects"):
1623
for arg in cn.getElementsByTagName("arg"):
1624
if (arg.getAttribute("direction")
1628
"objpath_interfaces"
1630
xmlstring = document.toxml("utf-8")
1632
except (AttributeError, xml.dom.DOMException,
1633
xml.parsers.expat.ExpatError) as error:
1634
logger.error("Failed to override Introspection method",
1639
1062
def datetime_to_dbus(dt, variant_level=0):
1640
1063
"""Convert a UTC datetime.datetime() to a D-Bus type."""
1642
return dbus.String("", variant_level=variant_level)
1065
return dbus.String("", variant_level = variant_level)
1643
1066
return dbus.String(dt.isoformat(), variant_level=variant_level)
2265
1685
byte_arrays=True)
2266
1686
def Secret_dbus_property(self, value):
2267
1687
self.secret = bytes(value)
2273
def __init__(self, child_pipe, key_id, fpr, address):
1692
class ProxyClient(object):
1693
def __init__(self, child_pipe, fpr, address):
2274
1694
self._pipe = child_pipe
2275
self._pipe.send(("init", key_id, fpr, address))
1695
self._pipe.send(('init', fpr, address))
2276
1696
if not self._pipe.recv():
2277
raise KeyError(key_id or fpr)
2279
1699
def __getattribute__(self, name):
2281
1701
return super(ProxyClient, self).__getattribute__(name)
2282
self._pipe.send(("getattr", name))
1702
self._pipe.send(('getattr', name))
2283
1703
data = self._pipe.recv()
2284
if data[0] == "data":
1704
if data[0] == 'data':
2286
if data[0] == "function":
1706
if data[0] == 'function':
2288
1708
def func(*args, **kwargs):
2289
self._pipe.send(("funcall", name, args, kwargs))
1709
self._pipe.send(('funcall', name, args, kwargs))
2290
1710
return self._pipe.recv()[1]
2294
1714
def __setattr__(self, name, value):
2296
1716
return super(ProxyClient, self).__setattr__(name, value)
2297
self._pipe.send(("setattr", name, value))
1717
self._pipe.send(('setattr', name, value))
2300
1720
class ClientHandler(socketserver.BaseRequestHandler, object):
2301
1721
"""A class to handle client connections.
2303
1723
Instantiated once for each connection to handle it.
2304
1724
Note: This will run in its own forked process."""
2306
1726
def handle(self):
2307
1727
with contextlib.closing(self.server.child_pipe) as child_pipe:
2308
1728
logger.info("TCP connection from: %s",
2309
1729
str(self.client_address))
2310
1730
logger.debug("Pipe FD: %d",
2311
1731
self.server.child_pipe.fileno())
2313
session = gnutls.ClientSession(self.request)
2315
# priority = ":".join(("NONE", "+VERS-TLS1.1",
2316
# "+AES-256-CBC", "+SHA1",
2317
# "+COMP-NULL", "+CTYPE-OPENPGP",
1733
session = gnutls.connection.ClientSession(
1734
self.request, gnutls.connection .X509Credentials())
1736
# Note: gnutls.connection.X509Credentials is really a
1737
# generic GnuTLS certificate credentials object so long as
1738
# no X.509 keys are added to it. Therefore, we can use it
1739
# here despite using OpenPGP certificates.
1741
#priority = ':'.join(("NONE", "+VERS-TLS1.1",
1742
# "+AES-256-CBC", "+SHA1",
1743
# "+COMP-NULL", "+CTYPE-OPENPGP",
2319
1745
# Use a fallback default, since this MUST be set.
2320
1746
priority = self.server.gnutls_priority
2321
1747
if priority is None:
2322
1748
priority = "NORMAL"
2323
gnutls.priority_set_direct(session,
2324
priority.encode("utf-8"), None)
1749
gnutls.library.functions.gnutls_priority_set_direct(
1750
session._c_object, priority, None)
2326
1752
# Start communication using the Mandos protocol
2327
1753
# Get protocol number
2328
1754
line = self.request.makefile().readline()
2428
1841
delay -= time2 - time
2431
session.send(client.secret)
2432
except gnutls.Error as error:
2433
logger.warning("gnutls send failed",
1844
while sent_size < len(client.secret):
1846
sent = session.send(client.secret[sent_size:])
1847
except gnutls.errors.GNUTLSError as error:
1848
logger.warning("gnutls send failed",
1851
logger.debug("Sent: %d, remaining: %d", sent,
1852
len(client.secret) - (sent_size
2437
1856
logger.info("Sending secret to %s", client.name)
2438
1857
# bump the timeout using extended_timeout
2439
1858
client.bump_timeout(client.extended_timeout)
2440
1859
if self.server.use_dbus:
2441
1860
# Emit D-Bus signal
2442
1861
client.GotSecret()
2445
1864
if approval_required:
2446
1865
client.approvals_pending -= 1
2449
except gnutls.Error as error:
1868
except gnutls.errors.GNUTLSError as error:
2450
1869
logger.warning("GnuTLS bye failed",
2451
1870
exc_info=error)
2454
1873
def peer_certificate(session):
2455
"Return the peer's certificate as a bytestring"
2457
cert_type = gnutls.certificate_type_get2(
2458
session, gnutls.CTYPE_PEERS)
2459
except AttributeError:
2460
cert_type = gnutls.certificate_type_get(session)
2461
if gnutls.has_rawpk:
2462
valid_cert_types = frozenset((gnutls.CRT_RAWPK,))
2464
valid_cert_types = frozenset((gnutls.CRT_OPENPGP,))
2465
# If not a valid certificate type...
2466
if cert_type not in valid_cert_types:
2467
logger.info("Cert type %r not in %r", cert_type,
2469
# ...return invalid data
1874
"Return the peer's OpenPGP certificate as a bytestring"
1875
# If not an OpenPGP certificate...
1876
if (gnutls.library.functions.gnutls_certificate_type_get(
1878
!= gnutls.library.constants.GNUTLS_CRT_OPENPGP):
1879
# ...do the normal thing
1880
return session.peer_certificate
2471
1881
list_size = ctypes.c_uint(1)
2472
cert_list = (gnutls.certificate_get_peers
2473
(session, ctypes.byref(list_size)))
1882
cert_list = (gnutls.library.functions
1883
.gnutls_certificate_get_peers
1884
(session._c_object, ctypes.byref(list_size)))
2474
1885
if not bool(cert_list) and list_size.value != 0:
2475
raise gnutls.Error("error getting peer certificate")
1886
raise gnutls.errors.GNUTLSError("error getting peer"
2476
1888
if list_size.value == 0:
2478
1890
cert = cert_list[0]
2479
1891
return ctypes.string_at(cert.data, cert.size)
2482
def key_id(certificate):
2483
"Convert a certificate bytestring to a hexdigit key ID"
2484
# New GnuTLS "datum" with the public key
2485
datum = gnutls.datum_t(
2486
ctypes.cast(ctypes.c_char_p(certificate),
2487
ctypes.POINTER(ctypes.c_ubyte)),
2488
ctypes.c_uint(len(certificate)))
2489
# XXX all these need to be created in the gnutls "module"
2490
# New empty GnuTLS certificate
2491
pubkey = gnutls.pubkey_t()
2492
gnutls.pubkey_init(ctypes.byref(pubkey))
2493
# Import the raw public key into the certificate
2494
gnutls.pubkey_import(pubkey,
2495
ctypes.byref(datum),
2496
gnutls.X509_FMT_DER)
2497
# New buffer for the key ID
2498
buf = ctypes.create_string_buffer(32)
2499
buf_len = ctypes.c_size_t(len(buf))
2500
# Get the key ID from the raw public key into the buffer
2501
gnutls.pubkey_get_key_id(
2503
gnutls.KEYID_USE_SHA256,
2504
ctypes.cast(ctypes.byref(buf),
2505
ctypes.POINTER(ctypes.c_ubyte)),
2506
ctypes.byref(buf_len))
2507
# Deinit the certificate
2508
gnutls.pubkey_deinit(pubkey)
2510
# Convert the buffer to a Python bytestring
2511
key_id = ctypes.string_at(buf, buf_len.value)
2512
# Convert the bytestring to hexadecimal notation
2513
hex_key_id = binascii.hexlify(key_id).upper()
2517
1894
def fingerprint(openpgp):
2518
1895
"Convert an OpenPGP bytestring to a hexdigit fingerprint"
2519
1896
# New GnuTLS "datum" with the OpenPGP public key
2520
datum = gnutls.datum_t(
1897
datum = gnutls.library.types.gnutls_datum_t(
2521
1898
ctypes.cast(ctypes.c_char_p(openpgp),
2522
1899
ctypes.POINTER(ctypes.c_ubyte)),
2523
1900
ctypes.c_uint(len(openpgp)))
2524
1901
# New empty GnuTLS certificate
2525
crt = gnutls.openpgp_crt_t()
2526
gnutls.openpgp_crt_init(ctypes.byref(crt))
1902
crt = gnutls.library.types.gnutls_openpgp_crt_t()
1903
gnutls.library.functions.gnutls_openpgp_crt_init(
2527
1905
# Import the OpenPGP public key into the certificate
2528
gnutls.openpgp_crt_import(crt, ctypes.byref(datum),
2529
gnutls.OPENPGP_FMT_RAW)
1906
gnutls.library.functions.gnutls_openpgp_crt_import(
1907
crt, ctypes.byref(datum),
1908
gnutls.library.constants.GNUTLS_OPENPGP_FMT_RAW)
2530
1909
# Verify the self signature in the key
2531
1910
crtverify = ctypes.c_uint()
2532
gnutls.openpgp_crt_verify_self(crt, 0,
2533
ctypes.byref(crtverify))
1911
gnutls.library.functions.gnutls_openpgp_crt_verify_self(
1912
crt, 0, ctypes.byref(crtverify))
2534
1913
if crtverify.value != 0:
2535
gnutls.openpgp_crt_deinit(crt)
2536
raise gnutls.CertificateSecurityError(code
1914
gnutls.library.functions.gnutls_openpgp_crt_deinit(crt)
1915
raise gnutls.errors.CertificateSecurityError(
2538
1917
# New buffer for the fingerprint
2539
1918
buf = ctypes.create_string_buffer(20)
2540
1919
buf_len = ctypes.c_size_t()
2541
1920
# Get the fingerprint from the certificate into the buffer
2542
gnutls.openpgp_crt_get_fingerprint(crt, ctypes.byref(buf),
2543
ctypes.byref(buf_len))
1921
gnutls.library.functions.gnutls_openpgp_crt_get_fingerprint(
1922
crt, ctypes.byref(buf), ctypes.byref(buf_len))
2544
1923
# Deinit the certificate
2545
gnutls.openpgp_crt_deinit(crt)
1924
gnutls.library.functions.gnutls_openpgp_crt_deinit(crt)
2546
1925
# Convert the buffer to a Python bytestring
2547
1926
fpr = ctypes.string_at(buf, buf_len.value)
2548
1927
# Convert the bytestring to hexadecimal notation
2637
2015
# socket_wrapper(), if socketfd was set.
2638
2016
socketserver.TCPServer.__init__(self, server_address,
2639
2017
RequestHandlerClass)
2641
2019
def server_bind(self):
2642
2020
"""This overrides the normal server_bind() function
2643
2021
to bind to an interface if one was specified, and also NOT to
2644
2022
bind to an address or port if they were not specified."""
2645
global SO_BINDTODEVICE
2646
2023
if self.interface is not None:
2647
2024
if SO_BINDTODEVICE is None:
2648
# Fall back to a hard-coded value which seems to be
2650
logger.warning("SO_BINDTODEVICE not found, trying 25")
2651
SO_BINDTODEVICE = 25
2653
self.socket.setsockopt(
2654
socket.SOL_SOCKET, SO_BINDTODEVICE,
2655
(self.interface + "\0").encode("utf-8"))
2656
except socket.error as error:
2657
if error.errno == errno.EPERM:
2658
logger.error("No permission to bind to"
2659
" interface %s", self.interface)
2660
elif error.errno == errno.ENOPROTOOPT:
2661
logger.error("SO_BINDTODEVICE not available;"
2662
" cannot bind to interface %s",
2664
elif error.errno == errno.ENODEV:
2665
logger.error("Interface %s does not exist,"
2666
" cannot bind", self.interface)
2025
logger.error("SO_BINDTODEVICE does not exist;"
2026
" cannot bind to interface %s",
2030
self.socket.setsockopt(
2031
socket.SOL_SOCKET, SO_BINDTODEVICE,
2032
(self.interface + "\0").encode("utf-8"))
2033
except socket.error as error:
2034
if error.errno == errno.EPERM:
2035
logger.error("No permission to bind to"
2036
" interface %s", self.interface)
2037
elif error.errno == errno.ENOPROTOOPT:
2038
logger.error("SO_BINDTODEVICE not available;"
2039
" cannot bind to interface %s",
2041
elif error.errno == errno.ENODEV:
2042
logger.error("Interface %s does not exist,"
2043
" cannot bind", self.interface)
2669
2046
# Only bind(2) the socket if we really need to.
2670
2047
if self.server_address[0] or self.server_address[1]:
2671
if self.server_address[1]:
2672
self.allow_reuse_address = True
2673
2048
if not self.server_address[0]:
2674
2049
if self.address_family == socket.AF_INET6:
2675
any_address = "::" # in6addr_any
2050
any_address = "::" # in6addr_any
2677
any_address = "0.0.0.0" # INADDR_ANY
2052
any_address = "0.0.0.0" # INADDR_ANY
2678
2053
self.server_address = (any_address,
2679
2054
self.server_address[1])
2680
2055
elif not self.server_address[1]:
2714
2089
self.gnutls_priority = gnutls_priority
2715
2090
IPv6_TCPServer.__init__(self, server_address,
2716
2091
RequestHandlerClass,
2717
interface=interface,
2092
interface = interface,
2093
use_ipv6 = use_ipv6,
2094
socketfd = socketfd)
2721
2096
def server_activate(self):
2722
2097
if self.enabled:
2723
2098
return socketserver.TCPServer.server_activate(self)
2725
2100
def enable(self):
2726
2101
self.enabled = True
2728
2103
def add_pipe(self, parent_pipe, proc):
2729
2104
# Call "handle_ipc" for both data and EOF events
2731
GLib.IOChannel.unix_new(parent_pipe.fileno()),
2732
GLib.PRIORITY_DEFAULT, GLib.IO_IN | GLib.IO_HUP,
2105
gobject.io_add_watch(
2106
parent_pipe.fileno(),
2107
gobject.IO_IN | gobject.IO_HUP,
2733
2108
functools.partial(self.handle_ipc,
2734
parent_pipe=parent_pipe,
2109
parent_pipe = parent_pipe,
2737
2112
def handle_ipc(self, source, condition,
2738
2113
parent_pipe=None,
2740
2115
client_object=None):
2741
2116
# error, or the other end of multiprocessing.Pipe has closed
2742
if condition & (GLib.IO_ERR | GLib.IO_HUP):
2117
if condition & (gobject.IO_ERR | gobject.IO_HUP):
2743
2118
# Wait for other process to exit
2747
2122
# Read a request from the child
2748
2123
request = parent_pipe.recv()
2749
2124
command = request[0]
2751
if command == "init":
2752
key_id = request[1].decode("ascii")
2753
fpr = request[2].decode("ascii")
2754
address = request[3]
2756
for c in self.clients.values():
2757
if key_id == ("E3B0C44298FC1C149AFBF4C8996FB924"
2758
"27AE41E4649B934CA495991B7852B855"):
2760
if key_id and c.key_id == key_id:
2763
if fpr and c.fingerprint == fpr:
2126
if command == 'init':
2128
address = request[2]
2130
for c in self.clients.itervalues():
2131
if c.fingerprint == fpr:
2767
logger.info("Client not found for key ID: %s, address"
2768
": %s", key_id or fpr, address)
2135
logger.info("Client not found for fingerprint: %s, ad"
2136
"dress: %s", fpr, address)
2769
2137
if self.use_dbus:
2770
2138
# Emit D-Bus signal
2771
mandos_dbus_service.ClientNotFound(key_id or fpr,
2139
mandos_dbus_service.ClientNotFound(fpr,
2773
2141
parent_pipe.send(False)
2777
GLib.IOChannel.unix_new(parent_pipe.fileno()),
2778
GLib.PRIORITY_DEFAULT, GLib.IO_IN | GLib.IO_HUP,
2144
gobject.io_add_watch(
2145
parent_pipe.fileno(),
2146
gobject.IO_IN | gobject.IO_HUP,
2779
2147
functools.partial(self.handle_ipc,
2780
parent_pipe=parent_pipe,
2782
client_object=client))
2148
parent_pipe = parent_pipe,
2150
client_object = client))
2783
2151
parent_pipe.send(True)
2784
2152
# remove the old hook in favor of the new above hook on
2787
if command == "funcall":
2155
if command == 'funcall':
2788
2156
funcname = request[1]
2789
2157
args = request[2]
2790
2158
kwargs = request[3]
2792
parent_pipe.send(("data", getattr(client_object,
2160
parent_pipe.send(('data', getattr(client_object,
2793
2161
funcname)(*args,
2796
if command == "getattr":
2164
if command == 'getattr':
2797
2165
attrname = request[1]
2798
2166
if isinstance(client_object.__getattribute__(attrname),
2799
collections.abc.Callable):
2800
parent_pipe.send(("function", ))
2167
collections.Callable):
2168
parent_pipe.send(('function', ))
2802
2170
parent_pipe.send((
2803
"data", client_object.__getattribute__(attrname)))
2805
if command == "setattr":
2171
'data', client_object.__getattribute__(attrname)))
2173
if command == 'setattr':
2806
2174
attrname = request[1]
2807
2175
value = request[2]
2808
2176
setattr(client_object, attrname, value)
2813
2181
def rfc3339_duration_to_delta(duration):
2814
2182
"""Parse an RFC 3339 "duration" and return a datetime.timedelta
2816
>>> timedelta = datetime.timedelta
2817
>>> rfc3339_duration_to_delta("P7D") == timedelta(7)
2819
>>> rfc3339_duration_to_delta("PT60S") == timedelta(0, 60)
2821
>>> rfc3339_duration_to_delta("PT60M") == timedelta(0, 3600)
2823
>>> rfc3339_duration_to_delta("PT24H") == timedelta(1)
2825
>>> rfc3339_duration_to_delta("P1W") == timedelta(7)
2827
>>> rfc3339_duration_to_delta("PT5M30S") == timedelta(0, 330)
2829
>>> rfc3339_duration_to_delta("P1DT3M20S") == timedelta(1, 200)
2184
>>> rfc3339_duration_to_delta("P7D")
2185
datetime.timedelta(7)
2186
>>> rfc3339_duration_to_delta("PT60S")
2187
datetime.timedelta(0, 60)
2188
>>> rfc3339_duration_to_delta("PT60M")
2189
datetime.timedelta(0, 3600)
2190
>>> rfc3339_duration_to_delta("PT24H")
2191
datetime.timedelta(1)
2192
>>> rfc3339_duration_to_delta("P1W")
2193
datetime.timedelta(7)
2194
>>> rfc3339_duration_to_delta("PT5M30S")
2195
datetime.timedelta(0, 330)
2196
>>> rfc3339_duration_to_delta("P1DT3M20S")
2197
datetime.timedelta(1, 200)
2834
2200
# Parsing an RFC 3339 duration with regular expressions is not
2835
2201
# possible - there would have to be multiple places for the same
2836
2202
# values, like seconds. The current code, while more esoteric, is
2837
2203
# cleaner without depending on a parsing library. If Python had a
2838
2204
# built-in library for parsing we would use it, but we'd like to
2839
2205
# avoid excessive use of external libraries.
2841
2207
# New type for defining tokens, syntax, and semantics all-in-one
2842
2208
Token = collections.namedtuple("Token", (
2843
2209
"regexp", # To match token; if "value" is not None, must have
3246
2600
protocol = avahi.PROTO_INET6 if use_ipv6 else avahi.PROTO_INET
3247
2601
service = AvahiServiceToSyslog(
3248
name=server_settings["servicename"],
3249
servicetype="_mandos._tcp",
2602
name = server_settings["servicename"],
2603
servicetype = "_mandos._tcp",
2604
protocol = protocol,
3252
2606
if server_settings["interface"]:
3253
2607
service.interface = if_nametoindex(
3254
2608
server_settings["interface"].encode("utf-8"))
3256
2610
global multiprocessing_manager
3257
2611
multiprocessing_manager = multiprocessing.Manager()
3259
2613
client_class = Client
3261
client_class = functools.partial(ClientDBus, bus=bus)
2615
client_class = functools.partial(ClientDBus, bus = bus)
3263
2617
client_settings = Client.config_parser(client_config)
3264
2618
old_client_settings = {}
3265
2619
clients_data = {}
3267
2621
# This is used to redirect stdout and stderr for checker processes
3269
wnull = open(os.devnull, "w") # A writable /dev/null
2623
wnull = open(os.devnull, "w") # A writable /dev/null
3270
2624
# Only used if server is running in foreground but not in debug
3272
2626
if debug or not foreground:
3275
2629
# Get client data and settings from last running state.
3276
2630
if server_settings["restore"]:
3278
2632
with open(stored_state_path, "rb") as stored_state:
3279
if sys.version_info.major == 2:
3280
clients_data, old_client_settings = pickle.load(
3283
bytes_clients_data, bytes_old_client_settings = (
3284
pickle.load(stored_state, encoding="bytes"))
3285
# Fix bytes to strings
3288
clients_data = {(key.decode("utf-8")
3289
if isinstance(key, bytes)
3292
bytes_clients_data.items()}
3293
del bytes_clients_data
3294
for key in clients_data:
3295
value = {(k.decode("utf-8")
3296
if isinstance(k, bytes) else k): v
3298
clients_data[key].items()}
3299
clients_data[key] = value
3301
value["client_structure"] = [
3303
if isinstance(s, bytes)
3305
value["client_structure"]]
3306
# .name, .host, and .checker_command
3307
for k in ("name", "host", "checker_command"):
3308
if isinstance(value[k], bytes):
3309
value[k] = value[k].decode("utf-8")
3310
if "key_id" not in value:
3311
value["key_id"] = ""
3312
elif "fingerprint" not in value:
3313
value["fingerprint"] = ""
3314
# old_client_settings
3316
old_client_settings = {
3317
(key.decode("utf-8")
3318
if isinstance(key, bytes)
3321
bytes_old_client_settings.items()}
3322
del bytes_old_client_settings
3323
# .host and .checker_command
3324
for value in old_client_settings.values():
3325
for attribute in ("host", "checker_command"):
3326
if isinstance(value[attribute], bytes):
3327
value[attribute] = (value[attribute]
2633
clients_data, old_client_settings = pickle.load(
3329
2635
os.remove(stored_state_path)
3330
2636
except IOError as e:
3331
2637
if e.errno == errno.ENOENT:
3431
2737
pidfilename, pid)
3433
2739
del pidfilename
3435
for termsig in (signal.SIGHUP, signal.SIGTERM):
3436
GLib.unix_signal_add(GLib.PRIORITY_HIGH, termsig,
3437
lambda: main_loop.quit() and False)
2741
signal.signal(signal.SIGHUP, lambda signum, frame: sys.exit())
2742
signal.signal(signal.SIGTERM, lambda signum, frame: sys.exit())
3441
2746
@alternate_dbus_interfaces(
3442
{"se.recompile.Mandos": "se.bsnet.fukt.Mandos"})
3443
class MandosDBusService(DBusObjectWithObjectManager):
2747
{ "se.recompile.Mandos": "se.bsnet.fukt.Mandos" })
2748
class MandosDBusService(DBusObjectWithProperties):
3444
2749
"""A D-Bus proxy object"""
3446
2751
def __init__(self):
3447
2752
dbus.service.Object.__init__(self, bus, "/")
3449
2754
_interface = "se.recompile.Mandos"
2756
@dbus_interface_annotations(_interface)
2759
"org.freedesktop.DBus.Property.EmitsChangedSignal":
3451
2762
@dbus.service.signal(_interface, signature="o")
3452
2763
def ClientAdded(self, objpath):
3456
2767
@dbus.service.signal(_interface, signature="ss")
3457
def ClientNotFound(self, key_id, address):
2768
def ClientNotFound(self, fingerprint, address):
3461
@dbus_annotations({"org.freedesktop.DBus.Deprecated":
3463
2772
@dbus.service.signal(_interface, signature="os")
3464
2773
def ClientRemoved(self, objpath, name):
3468
@dbus_annotations({"org.freedesktop.DBus.Deprecated":
3470
2777
@dbus.service.method(_interface, out_signature="ao")
3471
2778
def GetAllClients(self):
3473
2780
return dbus.Array(c.dbus_object_path for c in
3474
tcp_server.clients.values())
3476
@dbus_annotations({"org.freedesktop.DBus.Deprecated":
2781
tcp_server.clients.itervalues())
3478
2783
@dbus.service.method(_interface,
3479
2784
out_signature="a{oa{sv}}")
3480
2785
def GetAllClientsWithProperties(self):
3482
2787
return dbus.Dictionary(
3483
{c.dbus_object_path: c.GetAll(
3484
"se.recompile.Mandos.Client")
3485
for c in tcp_server.clients.values()},
2788
{ c.dbus_object_path: c.GetAll("")
2789
for c in tcp_server.clients.itervalues() },
3486
2790
signature="oa{sv}")
3488
2792
@dbus.service.method(_interface, in_signature="o")
3489
2793
def RemoveClient(self, object_path):
3491
for c in tcp_server.clients.values():
2795
for c in tcp_server.clients.itervalues():
3492
2796
if c.dbus_object_path == object_path:
3493
2797
del tcp_server.clients[c.name]
3494
2798
c.remove_from_connection()
3495
# Don't signal the disabling
2799
# Don't signal anything except ClientRemoved
3496
2800
c.disable(quiet=True)
3497
# Emit D-Bus signal for removal
3498
self.client_removed_signal(c)
2802
self.ClientRemoved(object_path, c.name)
3500
2804
raise KeyError(object_path)
3504
@dbus.service.method(dbus.OBJECT_MANAGER_IFACE,
3505
out_signature="a{oa{sa{sv}}}")
3506
def GetManagedObjects(self):
3508
return dbus.Dictionary(
3509
{client.dbus_object_path:
3511
{interface: client.GetAll(interface)
3513
client._get_all_interface_names()})
3514
for client in tcp_server.clients.values()})
3516
def client_added_signal(self, client):
3517
"""Send the new standard signal and the old signal"""
3519
# New standard signal
3520
self.InterfacesAdded(
3521
client.dbus_object_path,
3523
{interface: client.GetAll(interface)
3525
client._get_all_interface_names()}))
3527
self.ClientAdded(client.dbus_object_path)
3529
def client_removed_signal(self, client):
3530
"""Send the new standard signal and the old signal"""
3532
# New standard signal
3533
self.InterfacesRemoved(
3534
client.dbus_object_path,
3535
client._get_all_interface_names())
3537
self.ClientRemoved(client.dbus_object_path,
3540
2808
mandos_dbus_service = MandosDBusService()
3542
# Save modules to variables to exempt the modules from being
3543
# unloaded before the function registered with atexit() is run.
3544
mp = multiprocessing
3548
2811
"Cleanup function; run on exit"
3550
2813
service.cleanup()
3552
mp.active_children()
2815
multiprocessing.active_children()
3554
2817
if not (tcp_server.clients or client_settings):
3557
2820
# Store client before exiting. Secrets are encrypted with key
3558
2821
# based on what config file has. If config file is
3559
2822
# removed/edited, old secret will thus be unrecovable.
3561
2824
with PGPEngine() as pgp:
3562
for client in tcp_server.clients.values():
2825
for client in tcp_server.clients.itervalues():
3563
2826
key = client_settings[client.name]["secret"]
3564
2827
client.encrypted_secret = pgp.encrypt(client.secret,
3566
2829
client_dict = {}
3568
2831
# A list of attributes that can not be pickled
3570
exclude = {"bus", "changedstate", "secret",
3571
"checker", "server_settings"}
2833
exclude = { "bus", "changedstate", "secret",
2834
"checker", "server_settings" }
3572
2835
for name, typ in inspect.getmembers(dbus.service
3574
2837
exclude.add(name)
3576
2839
client_dict["encrypted_secret"] = (client
3577
2840
.encrypted_secret)
3578
2841
for attr in client.client_structure:
3579
2842
if attr not in exclude:
3580
2843
client_dict[attr] = getattr(client, attr)
3582
2845
clients[client.name] = client_dict
3583
2846
del client_settings[client.name]["secret"]
3586
2849
with tempfile.NamedTemporaryFile(
3588
2851
suffix=".pickle",
3590
2853
dir=os.path.dirname(stored_state_path),
3591
2854
delete=False) as stored_state:
3592
pickle.dump((clients, client_settings), stored_state,
2855
pickle.dump((clients, client_settings), stored_state)
3594
2856
tempname = stored_state.name
3595
2857
os.rename(tempname, stored_state_path)
3596
2858
except (IOError, OSError) as e: