63
import cPickle as pickle
69
import cPickle as pickle
64
72
import multiprocessing
68
81
import dbus.service
82
from gi.repository import GLib
71
83
from dbus.mainloop.glib import DBusGMainLoop
74
86
import xml.dom.minidom
89
# Try to find the value of SO_BINDTODEVICE:
91
# This is where SO_BINDTODEVICE is in Python 3.3 (or 3.4?) and
92
# newer, and it is also the most natural place for it:
78
93
SO_BINDTODEVICE = socket.SO_BINDTODEVICE
79
94
except AttributeError:
96
# This is where SO_BINDTODEVICE was up to and including Python
81
98
from IN import SO_BINDTODEVICE
82
99
except ImportError:
83
SO_BINDTODEVICE = None
88
#logger = logging.getLogger('mandos')
89
logger = logging.Logger('mandos')
90
syslogger = (logging.handlers.SysLogHandler
91
(facility = logging.handlers.SysLogHandler.LOG_DAEMON,
92
address = str("/dev/log")))
93
syslogger.setFormatter(logging.Formatter
94
('Mandos [%(process)d]: %(levelname)s:'
96
logger.addHandler(syslogger)
98
console = logging.StreamHandler()
99
console.setFormatter(logging.Formatter('%(name)s [%(process)d]:'
102
logger.addHandler(console)
100
# In Python 2.7 it seems to have been removed entirely.
101
# Try running the C preprocessor:
103
cc = subprocess.Popen(["cc", "--language=c", "-E",
105
stdin=subprocess.PIPE,
106
stdout=subprocess.PIPE)
107
stdout = cc.communicate(
108
"#include <sys/socket.h>\nSO_BINDTODEVICE\n")[0]
109
SO_BINDTODEVICE = int(stdout.splitlines()[-1])
110
except (OSError, ValueError, IndexError):
112
SO_BINDTODEVICE = None
114
if sys.version_info.major == 2:
118
stored_state_file = "clients.pickle"
120
logger = logging.getLogger()
124
if_nametoindex = ctypes.cdll.LoadLibrary(
125
ctypes.util.find_library("c")).if_nametoindex
126
except (OSError, AttributeError):
128
def if_nametoindex(interface):
129
"Get an interface index the hard way, i.e. using fcntl()"
130
SIOCGIFINDEX = 0x8933 # From /usr/include/linux/sockios.h
131
with contextlib.closing(socket.socket()) as s:
132
ifreq = fcntl.ioctl(s, SIOCGIFINDEX,
133
struct.pack(b"16s16x", interface))
134
interface_index = struct.unpack("I", ifreq[16:20])[0]
135
return interface_index
138
def copy_function(func):
139
"""Make a copy of a function"""
140
if sys.version_info.major == 2:
141
return types.FunctionType(func.func_code,
147
return types.FunctionType(func.__code__,
154
def initlogger(debug, level=logging.WARNING):
155
"""init logger and add loglevel"""
158
syslogger = (logging.handlers.SysLogHandler(
159
facility = logging.handlers.SysLogHandler.LOG_DAEMON,
160
address = "/dev/log"))
161
syslogger.setFormatter(logging.Formatter
162
('Mandos [%(process)d]: %(levelname)s:'
164
logger.addHandler(syslogger)
167
console = logging.StreamHandler()
168
console.setFormatter(logging.Formatter('%(asctime)s %(name)s'
172
logger.addHandler(console)
173
logger.setLevel(level)
176
class PGPError(Exception):
177
"""Exception if encryption/decryption fails"""
181
class PGPEngine(object):
182
"""A simple class for OpenPGP symmetric encryption & decryption"""
185
self.tempdir = tempfile.mkdtemp(prefix="mandos-")
188
output = subprocess.check_output(["gpgconf"])
189
for line in output.splitlines():
190
name, text, path = line.split(b":")
195
if e.errno != errno.ENOENT:
197
self.gnupgargs = ['--batch',
198
'--homedir', self.tempdir,
201
# Only GPG version 1 has the --no-use-agent option.
202
if self.gpg == "gpg" or self.gpg.endswith("/gpg"):
203
self.gnupgargs.append("--no-use-agent")
208
def __exit__(self, exc_type, exc_value, traceback):
216
if self.tempdir is not None:
217
# Delete contents of tempdir
218
for root, dirs, files in os.walk(self.tempdir,
220
for filename in files:
221
os.remove(os.path.join(root, filename))
223
os.rmdir(os.path.join(root, dirname))
225
os.rmdir(self.tempdir)
228
def password_encode(self, password):
229
# Passphrase can not be empty and can not contain newlines or
230
# NUL bytes. So we prefix it and hex encode it.
231
encoded = b"mandos" + binascii.hexlify(password)
232
if len(encoded) > 2048:
233
# GnuPG can't handle long passwords, so encode differently
234
encoded = (b"mandos" + password.replace(b"\\", b"\\\\")
235
.replace(b"\n", b"\\n")
236
.replace(b"\0", b"\\x00"))
239
def encrypt(self, data, password):
240
passphrase = self.password_encode(password)
241
with tempfile.NamedTemporaryFile(
242
dir=self.tempdir) as passfile:
243
passfile.write(passphrase)
245
proc = subprocess.Popen([self.gpg, '--symmetric',
249
stdin = subprocess.PIPE,
250
stdout = subprocess.PIPE,
251
stderr = subprocess.PIPE)
252
ciphertext, err = proc.communicate(input = data)
253
if proc.returncode != 0:
257
def decrypt(self, data, password):
258
passphrase = self.password_encode(password)
259
with tempfile.NamedTemporaryFile(
260
dir = self.tempdir) as passfile:
261
passfile.write(passphrase)
263
proc = subprocess.Popen([self.gpg, '--decrypt',
267
stdin = subprocess.PIPE,
268
stdout = subprocess.PIPE,
269
stderr = subprocess.PIPE)
270
decrypted_plaintext, err = proc.communicate(input = data)
271
if proc.returncode != 0:
273
return decrypted_plaintext
275
# Pretend that we have an Avahi module
277
"""This isn't so much a class as it is a module-like namespace.
278
It is instantiated once, and simulates having an Avahi module."""
279
IF_UNSPEC = -1 # avahi-common/address.h
280
PROTO_UNSPEC = -1 # avahi-common/address.h
281
PROTO_INET = 0 # avahi-common/address.h
282
PROTO_INET6 = 1 # avahi-common/address.h
283
DBUS_NAME = "org.freedesktop.Avahi"
284
DBUS_INTERFACE_ENTRY_GROUP = DBUS_NAME + ".EntryGroup"
285
DBUS_INTERFACE_SERVER = DBUS_NAME + ".Server"
286
DBUS_PATH_SERVER = "/"
287
def string_array_to_txt_array(self, t):
288
return dbus.Array((dbus.ByteArray(s.encode("utf-8"))
289
for s in t), signature="ay")
290
ENTRY_GROUP_ESTABLISHED = 2 # avahi-common/defs.h
291
ENTRY_GROUP_COLLISION = 3 # avahi-common/defs.h
292
ENTRY_GROUP_FAILURE = 4 # avahi-common/defs.h
293
SERVER_INVALID = 0 # avahi-common/defs.h
294
SERVER_REGISTERING = 1 # avahi-common/defs.h
295
SERVER_RUNNING = 2 # avahi-common/defs.h
296
SERVER_COLLISION = 3 # avahi-common/defs.h
297
SERVER_FAILURE = 4 # avahi-common/defs.h
104
300
class AvahiError(Exception):
105
301
def __init__(self, value, *args, **kwargs):
106
302
self.value = value
107
super(AvahiError, self).__init__(value, *args, **kwargs)
108
def __unicode__(self):
109
return unicode(repr(self.value))
303
return super(AvahiError, self).__init__(value, *args,
111
307
class AvahiServiceError(AvahiError):
114
311
class AvahiGroupError(AvahiError):
261
485
follow_name_owner_changes=True),
262
486
avahi.DBUS_INTERFACE_SERVER)
263
487
self.server.connect_to_signal("StateChanged",
264
self.server_state_changed)
488
self.server_state_changed)
265
489
self.server_state_changed(self.server.GetState())
268
def _timedelta_to_milliseconds(td):
269
"Convert a datetime.timedelta() to milliseconds"
270
return ((td.days * 24 * 60 * 60 * 1000)
271
+ (td.seconds * 1000)
272
+ (td.microseconds // 1000))
492
class AvahiServiceToSyslog(AvahiService):
493
def rename(self, *args, **kwargs):
494
"""Add the new name to the syslog messages"""
495
ret = AvahiService.rename(self, *args, **kwargs)
496
syslogger.setFormatter(logging.Formatter(
497
'Mandos ({}) [%(process)d]: %(levelname)s: %(message)s'
501
# Pretend that we have a GnuTLS module
502
class GnuTLS(object):
503
"""This isn't so much a class as it is a module-like namespace.
504
It is instantiated once, and simulates having a GnuTLS module."""
506
_library = ctypes.cdll.LoadLibrary(
507
ctypes.util.find_library("gnutls"))
508
_need_version = b"3.3.0"
510
# Need to use class name "GnuTLS" here, since this method is
511
# called before the assignment to the "gnutls" global variable
513
if GnuTLS.check_version(self._need_version) is None:
514
raise GnuTLS.Error("Needs GnuTLS {} or later"
515
.format(self._need_version))
517
# Unless otherwise indicated, the constants and types below are
518
# all from the gnutls/gnutls.h C header file.
528
E_NO_CERTIFICATE_FOUND = -49
529
OPENPGP_FMT_RAW = 0 # gnutls/openpgp.h
532
class session_int(ctypes.Structure):
534
session_t = ctypes.POINTER(session_int)
535
class certificate_credentials_st(ctypes.Structure):
537
certificate_credentials_t = ctypes.POINTER(
538
certificate_credentials_st)
539
certificate_type_t = ctypes.c_int
540
class datum_t(ctypes.Structure):
541
_fields_ = [('data', ctypes.POINTER(ctypes.c_ubyte)),
542
('size', ctypes.c_uint)]
543
class openpgp_crt_int(ctypes.Structure):
545
openpgp_crt_t = ctypes.POINTER(openpgp_crt_int)
546
openpgp_crt_fmt_t = ctypes.c_int # gnutls/openpgp.h
547
log_func = ctypes.CFUNCTYPE(None, ctypes.c_int, ctypes.c_char_p)
548
credentials_type_t = ctypes.c_int
549
transport_ptr_t = ctypes.c_void_p
550
close_request_t = ctypes.c_int
553
class Error(Exception):
554
# We need to use the class name "GnuTLS" here, since this
555
# exception might be raised from within GnuTLS.__init__,
556
# which is called before the assignment to the "gnutls"
557
# global variable has happened.
558
def __init__(self, message = None, code = None, args=()):
559
# Default usage is by a message string, but if a return
560
# code is passed, convert it to a string with
563
if message is None and code is not None:
564
message = GnuTLS.strerror(code)
565
return super(GnuTLS.Error, self).__init__(
568
class CertificateSecurityError(Error):
572
class Credentials(object):
574
self._c_object = gnutls.certificate_credentials_t()
575
gnutls.certificate_allocate_credentials(
576
ctypes.byref(self._c_object))
577
self.type = gnutls.CRD_CERTIFICATE
580
gnutls.certificate_free_credentials(self._c_object)
582
class ClientSession(object):
583
def __init__(self, socket, credentials = None):
584
self._c_object = gnutls.session_t()
585
gnutls.init(ctypes.byref(self._c_object), gnutls.CLIENT)
586
gnutls.set_default_priority(self._c_object)
587
gnutls.transport_set_ptr(self._c_object, socket.fileno())
588
gnutls.handshake_set_private_extensions(self._c_object,
591
if credentials is None:
592
credentials = gnutls.Credentials()
593
gnutls.credentials_set(self._c_object, credentials.type,
594
ctypes.cast(credentials._c_object,
596
self.credentials = credentials
599
gnutls.deinit(self._c_object)
602
return gnutls.handshake(self._c_object)
604
def send(self, data):
608
data_len -= gnutls.record_send(self._c_object,
613
return gnutls.bye(self._c_object, gnutls.SHUT_RDWR)
615
# Error handling functions
616
def _error_code(result):
617
"""A function to raise exceptions on errors, suitable
618
for the 'restype' attribute on ctypes functions"""
621
if result == gnutls.E_NO_CERTIFICATE_FOUND:
622
raise gnutls.CertificateSecurityError(code = result)
623
raise gnutls.Error(code = result)
625
def _retry_on_error(result, func, arguments):
626
"""A function to retry on some errors, suitable
627
for the 'errcheck' attribute on ctypes functions"""
629
if result not in (gnutls.E_INTERRUPTED, gnutls.E_AGAIN):
630
return _error_code(result)
631
result = func(*arguments)
634
# Unless otherwise indicated, the function declarations below are
635
# all from the gnutls/gnutls.h C header file.
638
priority_set_direct = _library.gnutls_priority_set_direct
639
priority_set_direct.argtypes = [session_t, ctypes.c_char_p,
640
ctypes.POINTER(ctypes.c_char_p)]
641
priority_set_direct.restype = _error_code
643
init = _library.gnutls_init
644
init.argtypes = [ctypes.POINTER(session_t), ctypes.c_int]
645
init.restype = _error_code
647
set_default_priority = _library.gnutls_set_default_priority
648
set_default_priority.argtypes = [session_t]
649
set_default_priority.restype = _error_code
651
record_send = _library.gnutls_record_send
652
record_send.argtypes = [session_t, ctypes.c_void_p,
654
record_send.restype = ctypes.c_ssize_t
655
record_send.errcheck = _retry_on_error
657
certificate_allocate_credentials = (
658
_library.gnutls_certificate_allocate_credentials)
659
certificate_allocate_credentials.argtypes = [
660
ctypes.POINTER(certificate_credentials_t)]
661
certificate_allocate_credentials.restype = _error_code
663
certificate_free_credentials = (
664
_library.gnutls_certificate_free_credentials)
665
certificate_free_credentials.argtypes = [certificate_credentials_t]
666
certificate_free_credentials.restype = None
668
handshake_set_private_extensions = (
669
_library.gnutls_handshake_set_private_extensions)
670
handshake_set_private_extensions.argtypes = [session_t,
672
handshake_set_private_extensions.restype = None
674
credentials_set = _library.gnutls_credentials_set
675
credentials_set.argtypes = [session_t, credentials_type_t,
677
credentials_set.restype = _error_code
679
strerror = _library.gnutls_strerror
680
strerror.argtypes = [ctypes.c_int]
681
strerror.restype = ctypes.c_char_p
683
certificate_type_get = _library.gnutls_certificate_type_get
684
certificate_type_get.argtypes = [session_t]
685
certificate_type_get.restype = _error_code
687
certificate_get_peers = _library.gnutls_certificate_get_peers
688
certificate_get_peers.argtypes = [session_t,
689
ctypes.POINTER(ctypes.c_uint)]
690
certificate_get_peers.restype = ctypes.POINTER(datum_t)
692
global_set_log_level = _library.gnutls_global_set_log_level
693
global_set_log_level.argtypes = [ctypes.c_int]
694
global_set_log_level.restype = None
696
global_set_log_function = _library.gnutls_global_set_log_function
697
global_set_log_function.argtypes = [log_func]
698
global_set_log_function.restype = None
700
deinit = _library.gnutls_deinit
701
deinit.argtypes = [session_t]
702
deinit.restype = None
704
handshake = _library.gnutls_handshake
705
handshake.argtypes = [session_t]
706
handshake.restype = _error_code
707
handshake.errcheck = _retry_on_error
709
transport_set_ptr = _library.gnutls_transport_set_ptr
710
transport_set_ptr.argtypes = [session_t, transport_ptr_t]
711
transport_set_ptr.restype = None
713
bye = _library.gnutls_bye
714
bye.argtypes = [session_t, close_request_t]
715
bye.restype = _error_code
716
bye.errcheck = _retry_on_error
718
check_version = _library.gnutls_check_version
719
check_version.argtypes = [ctypes.c_char_p]
720
check_version.restype = ctypes.c_char_p
722
# All the function declarations below are from gnutls/openpgp.h
724
openpgp_crt_init = _library.gnutls_openpgp_crt_init
725
openpgp_crt_init.argtypes = [ctypes.POINTER(openpgp_crt_t)]
726
openpgp_crt_init.restype = _error_code
728
openpgp_crt_import = _library.gnutls_openpgp_crt_import
729
openpgp_crt_import.argtypes = [openpgp_crt_t,
730
ctypes.POINTER(datum_t),
732
openpgp_crt_import.restype = _error_code
734
openpgp_crt_verify_self = _library.gnutls_openpgp_crt_verify_self
735
openpgp_crt_verify_self.argtypes = [openpgp_crt_t, ctypes.c_uint,
736
ctypes.POINTER(ctypes.c_uint)]
737
openpgp_crt_verify_self.restype = _error_code
739
openpgp_crt_deinit = _library.gnutls_openpgp_crt_deinit
740
openpgp_crt_deinit.argtypes = [openpgp_crt_t]
741
openpgp_crt_deinit.restype = None
743
openpgp_crt_get_fingerprint = (
744
_library.gnutls_openpgp_crt_get_fingerprint)
745
openpgp_crt_get_fingerprint.argtypes = [openpgp_crt_t,
749
openpgp_crt_get_fingerprint.restype = _error_code
751
# Remove non-public functions
752
del _error_code, _retry_on_error
753
# Create the global "gnutls" object, simulating a module
756
def call_pipe(connection, # : multiprocessing.Connection
757
func, *args, **kwargs):
758
"""This function is meant to be called by multiprocessing.Process
760
This function runs func(*args, **kwargs), and writes the resulting
761
return value on the provided multiprocessing.Connection.
763
connection.send(func(*args, **kwargs))
274
766
class Client(object):
275
767
"""A representation of a client host served by this server.
278
_approved: bool(); 'None' if not yet approved/disapproved
770
approved: bool(); 'None' if not yet approved/disapproved
279
771
approval_delay: datetime.timedelta(); Time to wait for approval
280
772
approval_duration: datetime.timedelta(); Duration of one approval
281
773
checker: subprocess.Popen(); a running checker process used
282
774
to see if the client lives.
283
775
'None' if no process is running.
284
checker_callback_tag: a gobject event source tag, or None
776
checker_callback_tag: a GLib event source tag, or None
285
777
checker_command: string; External command which is run to check
286
778
if client lives. %() expansions are done at
287
779
runtime with vars(self) as dict, so that for
288
780
instance %(name)s can be used in the command.
289
checker_initiator_tag: a gobject event source tag, or None
781
checker_initiator_tag: a GLib event source tag, or None
290
782
created: datetime.datetime(); (UTC) object creation
783
client_structure: Object describing what attributes a client has
784
and is used for storing the client at exit
291
785
current_checker_command: string; current running checker_command
292
disable_hook: If set, called by disable() as disable_hook(self)
293
disable_initiator_tag: a gobject event source tag, or None
786
disable_initiator_tag: a GLib event source tag, or None
295
788
fingerprint: string (40 or 32 hexadecimal digits); used to
296
789
uniquely identify the client
298
791
interval: datetime.timedelta(); How often to start a new checker
299
792
last_approval_request: datetime.datetime(); (UTC) or None
300
793
last_checked_ok: datetime.datetime(); (UTC) or None
301
last_enabled: datetime.datetime(); (UTC)
794
last_checker_status: integer between 0 and 255 reflecting exit
795
status of last checker. -1 reflects crashed
796
checker, -2 means no checker completed yet.
797
last_checker_signal: The signal which killed the last checker, if
798
last_checker_status is -1
799
last_enabled: datetime.datetime(); (UTC) or None
302
800
name: string; from the config file, used in log messages and
303
801
D-Bus identifiers
304
802
secret: bytestring; sent verbatim (over TLS) to client
305
803
timeout: datetime.timedelta(); How long from last_checked_ok
306
804
until this client is disabled
307
extended_timeout: extra long timeout when password has been sent
805
extended_timeout: extra long timeout when secret has been sent
308
806
runtime_expansions: Allowed attributes for runtime expansion.
309
807
expires: datetime.datetime(); time (UTC) when a client will be
310
808
disabled, or None
809
server_settings: The server_settings dict from main()
313
812
runtime_expansions = ("approval_delay", "approval_duration",
314
"created", "enabled", "fingerprint",
315
"host", "interval", "last_checked_ok",
813
"created", "enabled", "expires",
814
"fingerprint", "host", "interval",
815
"last_approval_request", "last_checked_ok",
316
816
"last_enabled", "name", "timeout")
318
def timeout_milliseconds(self):
319
"Return the 'timeout' attribute in milliseconds"
320
return _timedelta_to_milliseconds(self.timeout)
322
def extended_timeout_milliseconds(self):
323
"Return the 'extended_timeout' attribute in milliseconds"
324
return _timedelta_to_milliseconds(self.extended_timeout)
326
def interval_milliseconds(self):
327
"Return the 'interval' attribute in milliseconds"
328
return _timedelta_to_milliseconds(self.interval)
330
def approval_delay_milliseconds(self):
331
return _timedelta_to_milliseconds(self.approval_delay)
333
def __init__(self, name = None, disable_hook=None, config=None):
334
"""Note: the 'checker' key in 'config' sets the
335
'checker_command' attribute and *not* the 'checker'
819
"extended_timeout": "PT15M",
821
"checker": "fping -q -- %%(host)s",
823
"approval_delay": "PT0S",
824
"approval_duration": "PT1S",
825
"approved_by_default": "True",
830
def config_parser(config):
831
"""Construct a new dict of client settings of this form:
832
{ client_name: {setting_name: value, ...}, ...}
833
with exceptions for any special settings as defined above.
834
NOTE: Must be a pure function. Must return the same result
835
value given the same arguments.
838
for client_name in config.sections():
839
section = dict(config.items(client_name))
840
client = settings[client_name] = {}
842
client["host"] = section["host"]
843
# Reformat values from string types to Python types
844
client["approved_by_default"] = config.getboolean(
845
client_name, "approved_by_default")
846
client["enabled"] = config.getboolean(client_name,
849
# Uppercase and remove spaces from fingerprint for later
850
# comparison purposes with return value from the
851
# fingerprint() function
852
client["fingerprint"] = (section["fingerprint"].upper()
854
if "secret" in section:
855
client["secret"] = codecs.decode(section["secret"]
858
elif "secfile" in section:
859
with open(os.path.expanduser(os.path.expandvars
860
(section["secfile"])),
862
client["secret"] = secfile.read()
864
raise TypeError("No secret or secfile for section {}"
866
client["timeout"] = string_to_delta(section["timeout"])
867
client["extended_timeout"] = string_to_delta(
868
section["extended_timeout"])
869
client["interval"] = string_to_delta(section["interval"])
870
client["approval_delay"] = string_to_delta(
871
section["approval_delay"])
872
client["approval_duration"] = string_to_delta(
873
section["approval_duration"])
874
client["checker_command"] = section["checker"]
875
client["last_approval_request"] = None
876
client["last_checked_ok"] = None
877
client["last_checker_status"] = -2
881
def __init__(self, settings, name = None, server_settings=None):
883
if server_settings is None:
885
self.server_settings = server_settings
886
# adding all client settings
887
for setting, value in settings.items():
888
setattr(self, setting, value)
891
if not hasattr(self, "last_enabled"):
892
self.last_enabled = datetime.datetime.utcnow()
893
if not hasattr(self, "expires"):
894
self.expires = (datetime.datetime.utcnow()
897
self.last_enabled = None
340
900
logger.debug("Creating client %r", self.name)
341
# Uppercase and remove spaces from fingerprint for later
342
# comparison purposes with return value from the fingerprint()
344
self.fingerprint = (config["fingerprint"].upper()
346
901
logger.debug(" Fingerprint: %s", self.fingerprint)
347
if "secret" in config:
348
self.secret = config["secret"].decode("base64")
349
elif "secfile" in config:
350
with open(os.path.expanduser(os.path.expandvars
351
(config["secfile"])),
353
self.secret = secfile.read()
355
raise TypeError("No secret or secfile for client %s"
357
self.host = config.get("host", "")
358
self.created = datetime.datetime.utcnow()
360
self.last_approval_request = None
361
self.last_enabled = None
362
self.last_checked_ok = None
363
self.timeout = string_to_delta(config["timeout"])
364
self.extended_timeout = string_to_delta(config["extended_timeout"])
365
self.interval = string_to_delta(config["interval"])
366
self.disable_hook = disable_hook
902
self.created = settings.get("created",
903
datetime.datetime.utcnow())
905
# attributes specific for this server instance
367
906
self.checker = None
368
907
self.checker_initiator_tag = None
369
908
self.disable_initiator_tag = None
371
909
self.checker_callback_tag = None
372
self.checker_command = config["checker"]
373
910
self.current_checker_command = None
374
self.last_connect = None
375
self._approved = None
376
self.approved_by_default = config.get("approved_by_default",
378
912
self.approvals_pending = 0
379
self.approval_delay = string_to_delta(
380
config["approval_delay"])
381
self.approval_duration = string_to_delta(
382
config["approval_duration"])
383
self.changedstate = multiprocessing_manager.Condition(multiprocessing_manager.Lock())
913
self.changedstate = multiprocessing_manager.Condition(
914
multiprocessing_manager.Lock())
915
self.client_structure = [attr
916
for attr in self.__dict__.keys()
917
if not attr.startswith("_")]
918
self.client_structure.append("client_structure")
920
for name, t in inspect.getmembers(
921
type(self), lambda obj: isinstance(obj, property)):
922
if not name.startswith("_"):
923
self.client_structure.append(name)
925
# Send notice to process children that client state has changed
385
926
def send_changedstate(self):
386
self.changedstate.acquire()
387
self.changedstate.notify_all()
388
self.changedstate.release()
927
with self.changedstate:
928
self.changedstate.notify_all()
390
930
def enable(self):
391
931
"""Start this client's checker and timeout hooks"""
392
932
if getattr(self, "enabled", False):
393
933
# Already enabled
395
self.send_changedstate()
396
# Schedule a new checker to be started an 'interval' from now,
397
# and every interval from then on.
398
self.checker_initiator_tag = (gobject.timeout_add
399
(self.interval_milliseconds(),
401
# Schedule a disable() when 'timeout' has passed
402
935
self.expires = datetime.datetime.utcnow() + self.timeout
403
self.disable_initiator_tag = (gobject.timeout_add
404
(self.timeout_milliseconds(),
406
936
self.enabled = True
407
937
self.last_enabled = datetime.datetime.utcnow()
408
# Also start a new checker *right now*.
939
self.send_changedstate()
411
941
def disable(self, quiet=True):
412
942
"""Disable this client."""
413
943
if not getattr(self, "enabled", False):
416
self.send_changedstate()
418
946
logger.info("Disabling client %s", self.name)
419
if getattr(self, "disable_initiator_tag", False):
420
gobject.source_remove(self.disable_initiator_tag)
947
if getattr(self, "disable_initiator_tag", None) is not None:
948
GLib.source_remove(self.disable_initiator_tag)
421
949
self.disable_initiator_tag = None
422
950
self.expires = None
423
if getattr(self, "checker_initiator_tag", False):
424
gobject.source_remove(self.checker_initiator_tag)
951
if getattr(self, "checker_initiator_tag", None) is not None:
952
GLib.source_remove(self.checker_initiator_tag)
425
953
self.checker_initiator_tag = None
426
954
self.stop_checker()
427
if self.disable_hook:
428
self.disable_hook(self)
429
955
self.enabled = False
430
# Do not run this again if called by a gobject.timeout_add
957
self.send_changedstate()
958
# Do not run this again if called by a GLib.timeout_add
433
961
def __del__(self):
434
self.disable_hook = None
437
def checker_callback(self, pid, condition, command):
964
def init_checker(self):
965
# Schedule a new checker to be started an 'interval' from now,
966
# and every interval from then on.
967
if self.checker_initiator_tag is not None:
968
GLib.source_remove(self.checker_initiator_tag)
969
self.checker_initiator_tag = GLib.timeout_add(
970
int(self.interval.total_seconds() * 1000),
972
# Schedule a disable() when 'timeout' has passed
973
if self.disable_initiator_tag is not None:
974
GLib.source_remove(self.disable_initiator_tag)
975
self.disable_initiator_tag = GLib.timeout_add(
976
int(self.timeout.total_seconds() * 1000), self.disable)
977
# Also start a new checker *right now*.
980
def checker_callback(self, source, condition, connection,
438
982
"""The checker has completed, so take appropriate actions."""
439
983
self.checker_callback_tag = None
440
984
self.checker = None
441
if os.WIFEXITED(condition):
442
exitstatus = os.WEXITSTATUS(condition)
985
# Read return code from connection (see call_pipe)
986
returncode = connection.recv()
990
self.last_checker_status = returncode
991
self.last_checker_signal = None
992
if self.last_checker_status == 0:
444
993
logger.info("Checker for %(name)s succeeded",
446
995
self.checked_ok()
448
logger.info("Checker for %(name)s failed",
997
logger.info("Checker for %(name)s failed", vars(self))
999
self.last_checker_status = -1
1000
self.last_checker_signal = -returncode
451
1001
logger.warning("Checker for %(name)s crashed?",
454
def checked_ok(self, timeout=None):
455
"""Bump up the timeout for this client.
457
This should only be called when the client has been seen,
1005
def checked_ok(self):
1006
"""Assert that the client has been seen, alive and well."""
1007
self.last_checked_ok = datetime.datetime.utcnow()
1008
self.last_checker_status = 0
1009
self.last_checker_signal = None
1012
def bump_timeout(self, timeout=None):
1013
"""Bump up the timeout for this client."""
460
1014
if timeout is None:
461
1015
timeout = self.timeout
462
self.last_checked_ok = datetime.datetime.utcnow()
463
gobject.source_remove(self.disable_initiator_tag)
464
self.expires = datetime.datetime.utcnow() + timeout
465
self.disable_initiator_tag = (gobject.timeout_add
466
(_timedelta_to_milliseconds(timeout),
1016
if self.disable_initiator_tag is not None:
1017
GLib.source_remove(self.disable_initiator_tag)
1018
self.disable_initiator_tag = None
1019
if getattr(self, "enabled", False):
1020
self.disable_initiator_tag = GLib.timeout_add(
1021
int(timeout.total_seconds() * 1000), self.disable)
1022
self.expires = datetime.datetime.utcnow() + timeout
469
1024
def need_approval(self):
470
1025
self.last_approval_request = datetime.datetime.utcnow()
475
1030
If a checker already exists, leave it running and do
477
1032
# The reason for not killing a running checker is that if we
478
# did that, then if a checker (for some reason) started
479
# running slowly and taking more than 'interval' time, the
480
# client would inevitably timeout, since no checker would get
481
# a chance to run to completion. If we instead leave running
1033
# did that, and if a checker (for some reason) started running
1034
# slowly and taking more than 'interval' time, then the client
1035
# would inevitably timeout, since no checker would get a
1036
# chance to run to completion. If we instead leave running
482
1037
# checkers alone, the checker would have to take more time
483
1038
# than 'timeout' for the client to be disabled, which is as it
486
# If a checker exists, make sure it is not a zombie
488
pid, status = os.waitpid(self.checker.pid, os.WNOHANG)
489
except (AttributeError, OSError) as error:
490
if (isinstance(error, OSError)
491
and error.errno != errno.ECHILD):
495
logger.warning("Checker was a zombie")
496
gobject.source_remove(self.checker_callback_tag)
497
self.checker_callback(pid, status,
498
self.current_checker_command)
1041
if self.checker is not None and not self.checker.is_alive():
1042
logger.warning("Checker was not alive; joining")
499
1045
# Start a new checker if needed
500
1046
if self.checker is None:
1047
# Escape attributes for the shell
1049
attr: re.escape(str(getattr(self, attr)))
1050
for attr in self.runtime_expansions }
502
# In case checker_command has exactly one % operator
503
command = self.checker_command % self.host
505
# Escape attributes for the shell
506
escaped_attrs = dict(
508
re.escape(unicode(str(getattr(self, attr, "")),
512
self.runtime_expansions)
515
command = self.checker_command % escaped_attrs
516
except TypeError as error:
517
logger.error('Could not format string "%s":'
518
' %s', self.checker_command, error)
519
return True # Try again later
1052
command = self.checker_command % escaped_attrs
1053
except TypeError as error:
1054
logger.error('Could not format string "%s"',
1055
self.checker_command,
1057
return True # Try again later
520
1058
self.current_checker_command = command
522
logger.info("Starting checker %r for %s",
524
# We don't need to redirect stdout and stderr, since
525
# in normal mode, that is already done by daemon(),
526
# and in debug mode we don't want to. (Stdin is
527
# always replaced by /dev/null.)
528
self.checker = subprocess.Popen(command,
531
self.checker_callback_tag = (gobject.child_watch_add
533
self.checker_callback,
535
# The checker may have completed before the gobject
536
# watch was added. Check for this.
537
pid, status = os.waitpid(self.checker.pid, os.WNOHANG)
539
gobject.source_remove(self.checker_callback_tag)
540
self.checker_callback(pid, status, command)
541
except OSError as error:
542
logger.error("Failed to start subprocess: %s",
544
# Re-run this periodically if run by gobject.timeout_add
1059
logger.info("Starting checker %r for %s", command,
1061
# We don't need to redirect stdout and stderr, since
1062
# in normal mode, that is already done by daemon(),
1063
# and in debug mode we don't want to. (Stdin is
1064
# always replaced by /dev/null.)
1065
# The exception is when not debugging but nevertheless
1066
# running in the foreground; use the previously
1068
popen_args = { "close_fds": True,
1071
if (not self.server_settings["debug"]
1072
and self.server_settings["foreground"]):
1073
popen_args.update({"stdout": wnull,
1075
pipe = multiprocessing.Pipe(duplex = False)
1076
self.checker = multiprocessing.Process(
1078
args = (pipe[1], subprocess.call, command),
1079
kwargs = popen_args)
1080
self.checker.start()
1081
self.checker_callback_tag = GLib.io_add_watch(
1082
pipe[0].fileno(), GLib.IO_IN,
1083
self.checker_callback, pipe[0], command)
1084
# Re-run this periodically if run by GLib.timeout_add
547
1087
def stop_checker(self):
548
1088
"""Force the checker process, if any, to stop."""
549
1089
if self.checker_callback_tag:
550
gobject.source_remove(self.checker_callback_tag)
1090
GLib.source_remove(self.checker_callback_tag)
551
1091
self.checker_callback_tag = None
552
1092
if getattr(self, "checker", None) is None:
554
1094
logger.debug("Stopping checker for %(name)s", vars(self))
556
os.kill(self.checker.pid, signal.SIGTERM)
558
#if self.checker.poll() is None:
559
# os.kill(self.checker.pid, signal.SIGKILL)
560
except OSError as error:
561
if error.errno != errno.ESRCH: # No such process
1095
self.checker.terminate()
563
1096
self.checker = None
566
def dbus_service_property(dbus_interface, signature="v",
567
access="readwrite", byte_arrays=False):
1099
def dbus_service_property(dbus_interface,
568
1103
"""Decorators for marking methods of a DBusObjectWithProperties to
569
1104
become properties on the D-Bus.
615
class DBusObjectWithProperties(dbus.service.Object):
1194
class DBusObjectWithAnnotations(dbus.service.Object):
1195
"""A D-Bus object with annotations.
1197
Classes inheriting from this can use the dbus_annotations
1198
decorator to add annotations to methods or signals.
1202
def _is_dbus_thing(thing):
1203
"""Returns a function testing if an attribute is a D-Bus thing
1205
If called like _is_dbus_thing("method") it returns a function
1206
suitable for use as predicate to inspect.getmembers().
1208
return lambda obj: getattr(obj, "_dbus_is_{}".format(thing),
1211
def _get_all_dbus_things(self, thing):
1212
"""Returns a generator of (name, attribute) pairs
1214
return ((getattr(athing.__get__(self), "_dbus_name", name),
1215
athing.__get__(self))
1216
for cls in self.__class__.__mro__
1218
inspect.getmembers(cls, self._is_dbus_thing(thing)))
1220
@dbus.service.method(dbus.INTROSPECTABLE_IFACE,
1221
out_signature = "s",
1222
path_keyword = 'object_path',
1223
connection_keyword = 'connection')
1224
def Introspect(self, object_path, connection):
1225
"""Overloading of standard D-Bus method.
1227
Inserts annotation tags on methods and signals.
1229
xmlstring = dbus.service.Object.Introspect(self, object_path,
1232
document = xml.dom.minidom.parseString(xmlstring)
1234
for if_tag in document.getElementsByTagName("interface"):
1235
# Add annotation tags
1236
for typ in ("method", "signal"):
1237
for tag in if_tag.getElementsByTagName(typ):
1239
for name, prop in (self.
1240
_get_all_dbus_things(typ)):
1241
if (name == tag.getAttribute("name")
1242
and prop._dbus_interface
1243
== if_tag.getAttribute("name")):
1244
annots.update(getattr(
1245
prop, "_dbus_annotations", {}))
1246
for name, value in annots.items():
1247
ann_tag = document.createElement(
1249
ann_tag.setAttribute("name", name)
1250
ann_tag.setAttribute("value", value)
1251
tag.appendChild(ann_tag)
1252
# Add interface annotation tags
1253
for annotation, value in dict(
1254
itertools.chain.from_iterable(
1255
annotations().items()
1256
for name, annotations
1257
in self._get_all_dbus_things("interface")
1258
if name == if_tag.getAttribute("name")
1260
ann_tag = document.createElement("annotation")
1261
ann_tag.setAttribute("name", annotation)
1262
ann_tag.setAttribute("value", value)
1263
if_tag.appendChild(ann_tag)
1264
# Fix argument name for the Introspect method itself
1265
if (if_tag.getAttribute("name")
1266
== dbus.INTROSPECTABLE_IFACE):
1267
for cn in if_tag.getElementsByTagName("method"):
1268
if cn.getAttribute("name") == "Introspect":
1269
for arg in cn.getElementsByTagName("arg"):
1270
if (arg.getAttribute("direction")
1272
arg.setAttribute("name",
1274
xmlstring = document.toxml("utf-8")
1276
except (AttributeError, xml.dom.DOMException,
1277
xml.parsers.expat.ExpatError) as error:
1278
logger.error("Failed to override Introspection method",
1283
class DBusObjectWithProperties(DBusObjectWithAnnotations):
616
1284
"""A D-Bus object with properties.
618
1286
Classes inheriting from this can use the dbus_service_property
743
1444
except (AttributeError, xml.dom.DOMException,
744
1445
xml.parsers.expat.ExpatError) as error:
745
1446
logger.error("Failed to override Introspection method",
750
def datetime_to_dbus (dt, variant_level=0):
1451
dbus.OBJECT_MANAGER_IFACE
1452
except AttributeError:
1453
dbus.OBJECT_MANAGER_IFACE = "org.freedesktop.DBus.ObjectManager"
1455
class DBusObjectWithObjectManager(DBusObjectWithAnnotations):
1456
"""A D-Bus object with an ObjectManager.
1458
Classes inheriting from this exposes the standard
1459
GetManagedObjects call and the InterfacesAdded and
1460
InterfacesRemoved signals on the standard
1461
"org.freedesktop.DBus.ObjectManager" interface.
1463
Note: No signals are sent automatically; they must be sent
1466
@dbus.service.method(dbus.OBJECT_MANAGER_IFACE,
1467
out_signature = "a{oa{sa{sv}}}")
1468
def GetManagedObjects(self):
1469
"""This function must be overridden"""
1470
raise NotImplementedError()
1472
@dbus.service.signal(dbus.OBJECT_MANAGER_IFACE,
1473
signature = "oa{sa{sv}}")
1474
def InterfacesAdded(self, object_path, interfaces_and_properties):
1477
@dbus.service.signal(dbus.OBJECT_MANAGER_IFACE, signature = "oas")
1478
def InterfacesRemoved(self, object_path, interfaces):
1481
@dbus.service.method(dbus.INTROSPECTABLE_IFACE,
1482
out_signature = "s",
1483
path_keyword = 'object_path',
1484
connection_keyword = 'connection')
1485
def Introspect(self, object_path, connection):
1486
"""Overloading of standard D-Bus method.
1488
Override return argument name of GetManagedObjects to be
1489
"objpath_interfaces_and_properties"
1491
xmlstring = DBusObjectWithAnnotations.Introspect(self,
1495
document = xml.dom.minidom.parseString(xmlstring)
1497
for if_tag in document.getElementsByTagName("interface"):
1498
# Fix argument name for the GetManagedObjects method
1499
if (if_tag.getAttribute("name")
1500
== dbus.OBJECT_MANAGER_IFACE):
1501
for cn in if_tag.getElementsByTagName("method"):
1502
if (cn.getAttribute("name")
1503
== "GetManagedObjects"):
1504
for arg in cn.getElementsByTagName("arg"):
1505
if (arg.getAttribute("direction")
1509
"objpath_interfaces"
1511
xmlstring = document.toxml("utf-8")
1513
except (AttributeError, xml.dom.DOMException,
1514
xml.parsers.expat.ExpatError) as error:
1515
logger.error("Failed to override Introspection method",
1519
def datetime_to_dbus(dt, variant_level=0):
751
1520
"""Convert a UTC datetime.datetime() to a D-Bus type."""
753
1522
return dbus.String("", variant_level = variant_level)
754
return dbus.String(dt.isoformat(),
755
variant_level=variant_level)
757
class transitional_dbus_metaclass(DBusObjectWithProperties.__metaclass__):
758
def __new__(mcs, name, bases, attr):
759
for attrname, old_dbusobj in inspect.getmembers(bases[0]):
760
new_interface = getattr(old_dbusobj, "_dbus_interface", "").replace("se.bsnet.fukt.", "se.recompile.")
761
if (getattr(old_dbusobj, "_dbus_is_signal", False)
762
and old_dbusobj._dbus_interface.startswith("se.bsnet.fukt.Mandos")):
763
unwrappedfunc = dict(zip(old_dbusobj.func_code.co_freevars,
764
old_dbusobj.__closure__))["func"].cell_contents
765
newfunc = types.FunctionType(unwrappedfunc.func_code,
766
unwrappedfunc.func_globals,
767
unwrappedfunc.func_name,
768
unwrappedfunc.func_defaults,
769
unwrappedfunc.func_closure)
770
new_dbusfunc = dbus.service.signal(
771
new_interface, old_dbusobj._dbus_signature)(newfunc)
772
attr["_transitional_" + attrname] = new_dbusfunc
774
def fixscope(func1, func2):
775
def newcall(*args, **kwargs):
776
func1(*args, **kwargs)
777
func2(*args, **kwargs)
780
attr[attrname] = fixscope(old_dbusobj, new_dbusfunc)
782
elif (getattr(old_dbusobj, "_dbus_is_method", False)
783
and old_dbusobj._dbus_interface.startswith("se.bsnet.fukt.Mandos")):
784
new_dbusfunc = (dbus.service.method
786
old_dbusobj._dbus_in_signature,
787
old_dbusobj._dbus_out_signature)
789
(old_dbusobj.func_code,
790
old_dbusobj.func_globals,
791
old_dbusobj.func_name,
792
old_dbusobj.func_defaults,
793
old_dbusobj.func_closure)))
795
attr[attrname] = new_dbusfunc
796
elif (getattr(old_dbusobj, "_dbus_is_property", False)
797
and old_dbusobj._dbus_interface.startswith("se.bsnet.fukt.Mandos")):
798
new_dbusfunc = (dbus_service_property
800
old_dbusobj._dbus_signature,
801
old_dbusobj._dbus_access,
802
old_dbusobj._dbus_get_args_options["byte_arrays"])
804
(old_dbusobj.func_code,
805
old_dbusobj.func_globals,
806
old_dbusobj.func_name,
807
old_dbusobj.func_defaults,
808
old_dbusobj.func_closure)))
810
attr[attrname] = new_dbusfunc
811
return type.__new__(mcs, name, bases, attr)
1523
return dbus.String(dt.isoformat(), variant_level=variant_level)
1526
def alternate_dbus_interfaces(alt_interface_names, deprecate=True):
1527
"""A class decorator; applied to a subclass of
1528
dbus.service.Object, it will add alternate D-Bus attributes with
1529
interface names according to the "alt_interface_names" mapping.
1532
@alternate_dbus_interfaces({"org.example.Interface":
1533
"net.example.AlternateInterface"})
1534
class SampleDBusObject(dbus.service.Object):
1535
@dbus.service.method("org.example.Interface")
1536
def SampleDBusMethod():
1539
The above "SampleDBusMethod" on "SampleDBusObject" will be
1540
reachable via two interfaces: "org.example.Interface" and
1541
"net.example.AlternateInterface", the latter of which will have
1542
its D-Bus annotation "org.freedesktop.DBus.Deprecated" set to
1543
"true", unless "deprecate" is passed with a False value.
1545
This works for methods and signals, and also for D-Bus properties
1546
(from DBusObjectWithProperties) and interfaces (from the
1547
dbus_interface_annotations decorator).
1551
for orig_interface_name, alt_interface_name in (
1552
alt_interface_names.items()):
1554
interface_names = set()
1555
# Go though all attributes of the class
1556
for attrname, attribute in inspect.getmembers(cls):
1557
# Ignore non-D-Bus attributes, and D-Bus attributes
1558
# with the wrong interface name
1559
if (not hasattr(attribute, "_dbus_interface")
1560
or not attribute._dbus_interface.startswith(
1561
orig_interface_name)):
1563
# Create an alternate D-Bus interface name based on
1565
alt_interface = attribute._dbus_interface.replace(
1566
orig_interface_name, alt_interface_name)
1567
interface_names.add(alt_interface)
1568
# Is this a D-Bus signal?
1569
if getattr(attribute, "_dbus_is_signal", False):
1570
# Extract the original non-method undecorated
1571
# function by black magic
1572
if sys.version_info.major == 2:
1573
nonmethod_func = (dict(
1574
zip(attribute.func_code.co_freevars,
1575
attribute.__closure__))
1576
["func"].cell_contents)
1578
nonmethod_func = (dict(
1579
zip(attribute.__code__.co_freevars,
1580
attribute.__closure__))
1581
["func"].cell_contents)
1582
# Create a new, but exactly alike, function
1583
# object, and decorate it to be a new D-Bus signal
1584
# with the alternate D-Bus interface name
1585
new_function = copy_function(nonmethod_func)
1586
new_function = (dbus.service.signal(
1588
attribute._dbus_signature)(new_function))
1589
# Copy annotations, if any
1591
new_function._dbus_annotations = dict(
1592
attribute._dbus_annotations)
1593
except AttributeError:
1595
# Define a creator of a function to call both the
1596
# original and alternate functions, so both the
1597
# original and alternate signals gets sent when
1598
# the function is called
1599
def fixscope(func1, func2):
1600
"""This function is a scope container to pass
1601
func1 and func2 to the "call_both" function
1602
outside of its arguments"""
1604
@functools.wraps(func2)
1605
def call_both(*args, **kwargs):
1606
"""This function will emit two D-Bus
1607
signals by calling func1 and func2"""
1608
func1(*args, **kwargs)
1609
func2(*args, **kwargs)
1610
# Make wrapper function look like a D-Bus signal
1611
for name, attr in inspect.getmembers(func2):
1612
if name.startswith("_dbus_"):
1613
setattr(call_both, name, attr)
1616
# Create the "call_both" function and add it to
1618
attr[attrname] = fixscope(attribute, new_function)
1619
# Is this a D-Bus method?
1620
elif getattr(attribute, "_dbus_is_method", False):
1621
# Create a new, but exactly alike, function
1622
# object. Decorate it to be a new D-Bus method
1623
# with the alternate D-Bus interface name. Add it
1626
dbus.service.method(
1628
attribute._dbus_in_signature,
1629
attribute._dbus_out_signature)
1630
(copy_function(attribute)))
1631
# Copy annotations, if any
1633
attr[attrname]._dbus_annotations = dict(
1634
attribute._dbus_annotations)
1635
except AttributeError:
1637
# Is this a D-Bus property?
1638
elif getattr(attribute, "_dbus_is_property", False):
1639
# Create a new, but exactly alike, function
1640
# object, and decorate it to be a new D-Bus
1641
# property with the alternate D-Bus interface
1642
# name. Add it to the class.
1643
attr[attrname] = (dbus_service_property(
1644
alt_interface, attribute._dbus_signature,
1645
attribute._dbus_access,
1646
attribute._dbus_get_args_options
1648
(copy_function(attribute)))
1649
# Copy annotations, if any
1651
attr[attrname]._dbus_annotations = dict(
1652
attribute._dbus_annotations)
1653
except AttributeError:
1655
# Is this a D-Bus interface?
1656
elif getattr(attribute, "_dbus_is_interface", False):
1657
# Create a new, but exactly alike, function
1658
# object. Decorate it to be a new D-Bus interface
1659
# with the alternate D-Bus interface name. Add it
1662
dbus_interface_annotations(alt_interface)
1663
(copy_function(attribute)))
1665
# Deprecate all alternate interfaces
1666
iname="_AlternateDBusNames_interface_annotation{}"
1667
for interface_name in interface_names:
1669
@dbus_interface_annotations(interface_name)
1671
return { "org.freedesktop.DBus.Deprecated":
1673
# Find an unused name
1674
for aname in (iname.format(i)
1675
for i in itertools.count()):
1676
if aname not in attr:
1680
# Replace the class with a new subclass of it with
1681
# methods, signals, etc. as created above.
1682
if sys.version_info.major == 2:
1683
cls = type(b"{}Alternate".format(cls.__name__),
1686
cls = type("{}Alternate".format(cls.__name__),
1693
@alternate_dbus_interfaces({"se.recompile.Mandos":
1694
"se.bsnet.fukt.Mandos"})
813
1695
class ClientDBus(Client, DBusObjectWithProperties):
814
1696
"""A Client class using D-Bus
1117
2046
return datetime_to_dbus(self.last_approval_request)
1119
2048
# Timeout - property
1120
@dbus_service_property(_interface, signature="t",
2049
@dbus_service_property(_interface,
1121
2051
access="readwrite")
1122
2052
def Timeout_dbus_property(self, value=None):
1123
2053
if value is None: # get
1124
return dbus.UInt64(self.timeout_milliseconds())
2054
return dbus.UInt64(self.timeout.total_seconds() * 1000)
2055
old_timeout = self.timeout
1125
2056
self.timeout = datetime.timedelta(0, 0, 0, value)
1126
if getattr(self, "disable_initiator_tag", None) is None:
1128
# Reschedule timeout
1129
gobject.source_remove(self.disable_initiator_tag)
1130
self.disable_initiator_tag = None
1132
time_to_die = (self.
1133
_timedelta_to_milliseconds((self
1138
if time_to_die <= 0:
1139
# The timeout has passed
1142
self.expires = (datetime.datetime.utcnow()
1143
+ datetime.timedelta(milliseconds = time_to_die))
1144
self.disable_initiator_tag = (gobject.timeout_add
1145
(time_to_die, self.disable))
2057
# Reschedule disabling
2059
now = datetime.datetime.utcnow()
2060
self.expires += self.timeout - old_timeout
2061
if self.expires <= now:
2062
# The timeout has passed
2065
if (getattr(self, "disable_initiator_tag", None)
2068
GLib.source_remove(self.disable_initiator_tag)
2069
self.disable_initiator_tag = GLib.timeout_add(
2070
int((self.expires - now).total_seconds() * 1000),
1147
2073
# ExtendedTimeout - property
1148
@dbus_service_property(_interface, signature="t",
2074
@dbus_service_property(_interface,
1149
2076
access="readwrite")
1150
2077
def ExtendedTimeout_dbus_property(self, value=None):
1151
2078
if value is None: # get
1152
return dbus.UInt64(self.extended_timeout_milliseconds())
2079
return dbus.UInt64(self.extended_timeout.total_seconds()
1153
2081
self.extended_timeout = datetime.timedelta(0, 0, 0, value)
1155
2083
# Interval - property
1156
@dbus_service_property(_interface, signature="t",
2084
@dbus_service_property(_interface,
1157
2086
access="readwrite")
1158
2087
def Interval_dbus_property(self, value=None):
1159
2088
if value is None: # get
1160
return dbus.UInt64(self.interval_milliseconds())
2089
return dbus.UInt64(self.interval.total_seconds() * 1000)
1161
2090
self.interval = datetime.timedelta(0, 0, 0, value)
1162
2091
if getattr(self, "checker_initiator_tag", None) is None:
1164
# Reschedule checker run
1165
gobject.source_remove(self.checker_initiator_tag)
1166
self.checker_initiator_tag = (gobject.timeout_add
1167
(value, self.start_checker))
1168
self.start_checker() # Start one now, too
2094
# Reschedule checker run
2095
GLib.source_remove(self.checker_initiator_tag)
2096
self.checker_initiator_tag = GLib.timeout_add(
2097
value, self.start_checker)
2098
self.start_checker() # Start one now, too
1170
2100
# Checker - property
1171
@dbus_service_property(_interface, signature="s",
2101
@dbus_service_property(_interface,
1172
2103
access="readwrite")
1173
2104
def Checker_dbus_property(self, value=None):
1174
2105
if value is None: # get
1175
2106
return dbus.String(self.checker_command)
1176
self.checker_command = value
2107
self.checker_command = str(value)
1178
2109
# CheckerRunning - property
1179
@dbus_service_property(_interface, signature="b",
2110
@dbus_service_property(_interface,
1180
2112
access="readwrite")
1181
2113
def CheckerRunning_dbus_property(self, value=None):
1182
2114
if value is None: # get
1407
2330
def fingerprint(openpgp):
1408
2331
"Convert an OpenPGP bytestring to a hexdigit fingerprint"
1409
2332
# New GnuTLS "datum" with the OpenPGP public key
1410
datum = (gnutls.library.types
1411
.gnutls_datum_t(ctypes.cast(ctypes.c_char_p(openpgp),
1414
ctypes.c_uint(len(openpgp))))
2333
datum = gnutls.datum_t(
2334
ctypes.cast(ctypes.c_char_p(openpgp),
2335
ctypes.POINTER(ctypes.c_ubyte)),
2336
ctypes.c_uint(len(openpgp)))
1415
2337
# New empty GnuTLS certificate
1416
crt = gnutls.library.types.gnutls_openpgp_crt_t()
1417
(gnutls.library.functions
1418
.gnutls_openpgp_crt_init(ctypes.byref(crt)))
2338
crt = gnutls.openpgp_crt_t()
2339
gnutls.openpgp_crt_init(ctypes.byref(crt))
1419
2340
# Import the OpenPGP public key into the certificate
1420
(gnutls.library.functions
1421
.gnutls_openpgp_crt_import(crt, ctypes.byref(datum),
1422
gnutls.library.constants
1423
.GNUTLS_OPENPGP_FMT_RAW))
2341
gnutls.openpgp_crt_import(crt, ctypes.byref(datum),
2342
gnutls.OPENPGP_FMT_RAW)
1424
2343
# Verify the self signature in the key
1425
2344
crtverify = ctypes.c_uint()
1426
(gnutls.library.functions
1427
.gnutls_openpgp_crt_verify_self(crt, 0,
1428
ctypes.byref(crtverify)))
2345
gnutls.openpgp_crt_verify_self(crt, 0,
2346
ctypes.byref(crtverify))
1429
2347
if crtverify.value != 0:
1430
gnutls.library.functions.gnutls_openpgp_crt_deinit(crt)
1431
raise (gnutls.errors.CertificateSecurityError
2348
gnutls.openpgp_crt_deinit(crt)
2349
raise gnutls.CertificateSecurityError("Verify failed")
1433
2350
# New buffer for the fingerprint
1434
2351
buf = ctypes.create_string_buffer(20)
1435
2352
buf_len = ctypes.c_size_t()
1436
2353
# Get the fingerprint from the certificate into the buffer
1437
(gnutls.library.functions
1438
.gnutls_openpgp_crt_get_fingerprint(crt, ctypes.byref(buf),
1439
ctypes.byref(buf_len)))
2354
gnutls.openpgp_crt_get_fingerprint(crt, ctypes.byref(buf),
2355
ctypes.byref(buf_len))
1440
2356
# Deinit the certificate
1441
gnutls.library.functions.gnutls_openpgp_crt_deinit(crt)
2357
gnutls.openpgp_crt_deinit(crt)
1442
2358
# Convert the buffer to a Python bytestring
1443
2359
fpr = ctypes.string_at(buf, buf_len.value)
1444
2360
# Convert the bytestring to hexadecimal notation
1445
hex_fpr = ''.join("%02X" % ord(char) for char in fpr)
2361
hex_fpr = binascii.hexlify(fpr).upper()
1449
2365
class MultiprocessingMixIn(object):
1450
2366
"""Like socketserver.ThreadingMixIn, but with multiprocessing"""
1451
2368
def sub_process_main(self, request, address):
1453
2370
self.finish_request(request, address)
1455
2372
self.handle_error(request, address)
1456
2373
self.close_request(request)
1458
2375
def process_request(self, request, address):
1459
2376
"""Start a new process to process the request."""
1460
multiprocessing.Process(target = self.sub_process_main,
1461
args = (request, address)).start()
2377
proc = multiprocessing.Process(target = self.sub_process_main,
2378
args = (request, address))
1464
2383
class MultiprocessingMixInWithPipe(MultiprocessingMixIn, object):
1465
2384
""" adds a pipe to the MixIn """
1466
2386
def process_request(self, request, client_address):
1467
2387
"""Overrides and wraps the original process_request().
1489
2409
interface: None or a network interface name (string)
1490
2410
use_ipv6: Boolean; to use IPv6 or not
1492
2413
def __init__(self, server_address, RequestHandlerClass,
1493
interface=None, use_ipv6=True):
2417
"""If socketfd is set, use that file descriptor instead of
2418
creating a new one with socket.socket().
1494
2420
self.interface = interface
1496
2422
self.address_family = socket.AF_INET6
2423
if socketfd is not None:
2424
# Save the file descriptor
2425
self.socketfd = socketfd
2426
# Save the original socket.socket() function
2427
self.socket_socket = socket.socket
2428
# To implement --socket, we monkey patch socket.socket.
2430
# (When socketserver.TCPServer is a new-style class, we
2431
# could make self.socket into a property instead of monkey
2432
# patching socket.socket.)
2434
# Create a one-time-only replacement for socket.socket()
2435
@functools.wraps(socket.socket)
2436
def socket_wrapper(*args, **kwargs):
2437
# Restore original function so subsequent calls are
2439
socket.socket = self.socket_socket
2440
del self.socket_socket
2441
# This time only, return a new socket object from the
2442
# saved file descriptor.
2443
return socket.fromfd(self.socketfd, *args, **kwargs)
2444
# Replace socket.socket() function with wrapper
2445
socket.socket = socket_wrapper
2446
# The socketserver.TCPServer.__init__ will call
2447
# socket.socket(), which might be our replacement,
2448
# socket_wrapper(), if socketfd was set.
1497
2449
socketserver.TCPServer.__init__(self, server_address,
1498
2450
RequestHandlerClass)
1499
2452
def server_bind(self):
1500
2453
"""This overrides the normal server_bind() function
1501
2454
to bind to an interface if one was specified, and also NOT to
1502
2455
bind to an address or port if they were not specified."""
2456
global SO_BINDTODEVICE
1503
2457
if self.interface is not None:
1504
2458
if SO_BINDTODEVICE is None:
1505
logger.error("SO_BINDTODEVICE does not exist;"
1506
" cannot bind to interface %s",
1510
self.socket.setsockopt(socket.SOL_SOCKET,
1514
except socket.error as error:
1515
if error[0] == errno.EPERM:
1516
logger.error("No permission to"
1517
" bind to interface %s",
1519
elif error[0] == errno.ENOPROTOOPT:
1520
logger.error("SO_BINDTODEVICE not available;"
1521
" cannot bind to interface %s",
2459
# Fall back to a hard-coded value which seems to be
2461
logger.warning("SO_BINDTODEVICE not found, trying 25")
2462
SO_BINDTODEVICE = 25
2464
self.socket.setsockopt(
2465
socket.SOL_SOCKET, SO_BINDTODEVICE,
2466
(self.interface + "\0").encode("utf-8"))
2467
except socket.error as error:
2468
if error.errno == errno.EPERM:
2469
logger.error("No permission to bind to"
2470
" interface %s", self.interface)
2471
elif error.errno == errno.ENOPROTOOPT:
2472
logger.error("SO_BINDTODEVICE not available;"
2473
" cannot bind to interface %s",
2475
elif error.errno == errno.ENODEV:
2476
logger.error("Interface %s does not exist,"
2477
" cannot bind", self.interface)
1525
2480
# Only bind(2) the socket if we really need to.
1526
2481
if self.server_address[0] or self.server_address[1]:
1527
2482
if not self.server_address[0]:
1528
2483
if self.address_family == socket.AF_INET6:
1529
2484
any_address = "::" # in6addr_any
1531
any_address = socket.INADDR_ANY
2486
any_address = "0.0.0.0" # INADDR_ANY
1532
2487
self.server_address = (any_address,
1533
2488
self.server_address[1])
1534
2489
elif not self.server_address[1]:
1535
self.server_address = (self.server_address[0],
2490
self.server_address = (self.server_address[0], 0)
1537
2491
# if self.interface:
1538
2492
# self.server_address = (self.server_address[0],
2615
def rfc3339_duration_to_delta(duration):
2616
"""Parse an RFC 3339 "duration" and return a datetime.timedelta
2618
>>> rfc3339_duration_to_delta("P7D")
2619
datetime.timedelta(7)
2620
>>> rfc3339_duration_to_delta("PT60S")
2621
datetime.timedelta(0, 60)
2622
>>> rfc3339_duration_to_delta("PT60M")
2623
datetime.timedelta(0, 3600)
2624
>>> rfc3339_duration_to_delta("PT24H")
2625
datetime.timedelta(1)
2626
>>> rfc3339_duration_to_delta("P1W")
2627
datetime.timedelta(7)
2628
>>> rfc3339_duration_to_delta("PT5M30S")
2629
datetime.timedelta(0, 330)
2630
>>> rfc3339_duration_to_delta("P1DT3M20S")
2631
datetime.timedelta(1, 200)
2634
# Parsing an RFC 3339 duration with regular expressions is not
2635
# possible - there would have to be multiple places for the same
2636
# values, like seconds. The current code, while more esoteric, is
2637
# cleaner without depending on a parsing library. If Python had a
2638
# built-in library for parsing we would use it, but we'd like to
2639
# avoid excessive use of external libraries.
2641
# New type for defining tokens, syntax, and semantics all-in-one
2642
Token = collections.namedtuple("Token", (
2643
"regexp", # To match token; if "value" is not None, must have
2644
# a "group" containing digits
2645
"value", # datetime.timedelta or None
2646
"followers")) # Tokens valid after this token
2647
# RFC 3339 "duration" tokens, syntax, and semantics; taken from
2648
# the "duration" ABNF definition in RFC 3339, Appendix A.
2649
token_end = Token(re.compile(r"$"), None, frozenset())
2650
token_second = Token(re.compile(r"(\d+)S"),
2651
datetime.timedelta(seconds=1),
2652
frozenset((token_end, )))
2653
token_minute = Token(re.compile(r"(\d+)M"),
2654
datetime.timedelta(minutes=1),
2655
frozenset((token_second, token_end)))
2656
token_hour = Token(re.compile(r"(\d+)H"),
2657
datetime.timedelta(hours=1),
2658
frozenset((token_minute, token_end)))
2659
token_time = Token(re.compile(r"T"),
2661
frozenset((token_hour, token_minute,
2663
token_day = Token(re.compile(r"(\d+)D"),
2664
datetime.timedelta(days=1),
2665
frozenset((token_time, token_end)))
2666
token_month = Token(re.compile(r"(\d+)M"),
2667
datetime.timedelta(weeks=4),
2668
frozenset((token_day, token_end)))
2669
token_year = Token(re.compile(r"(\d+)Y"),
2670
datetime.timedelta(weeks=52),
2671
frozenset((token_month, token_end)))
2672
token_week = Token(re.compile(r"(\d+)W"),
2673
datetime.timedelta(weeks=1),
2674
frozenset((token_end, )))
2675
token_duration = Token(re.compile(r"P"), None,
2676
frozenset((token_year, token_month,
2677
token_day, token_time,
2679
# Define starting values
2680
value = datetime.timedelta() # Value so far
2682
followers = frozenset((token_duration, )) # Following valid tokens
2683
s = duration # String left to parse
2684
# Loop until end token is found
2685
while found_token is not token_end:
2686
# Search for any currently valid tokens
2687
for token in followers:
2688
match = token.regexp.match(s)
2689
if match is not None:
2691
if token.value is not None:
2692
# Value found, parse digits
2693
factor = int(match.group(1), 10)
2694
# Add to value so far
2695
value += factor * token.value
2696
# Strip token from string
2697
s = token.regexp.sub("", s, 1)
2700
# Set valid next tokens
2701
followers = found_token.followers
2704
# No currently valid tokens were found
2705
raise ValueError("Invalid RFC 3339 duration: {!r}"
1652
2711
def string_to_delta(interval):
1653
2712
"""Parse a string and return a datetime.timedelta
1786
2842
"debug": "False",
1788
"SECURE256:!CTYPE-X.509:+CTYPE-OPENPGP",
2844
"SECURE256:!CTYPE-X.509:+CTYPE-OPENPGP:!RSA"
2845
":+SIGN-DSA-SHA256",
1789
2846
"servicename": "Mandos",
1790
2847
"use_dbus": "True",
1791
2848
"use_ipv6": "True",
1792
2849
"debuglevel": "",
2852
"statedir": "/var/lib/mandos",
2853
"foreground": "False",
1795
2857
# Parse config file for server-global settings
1796
2858
server_config = configparser.SafeConfigParser(server_defaults)
1797
2859
del server_defaults
1798
server_config.read(os.path.join(options.configdir,
2860
server_config.read(os.path.join(options.configdir, "mandos.conf"))
1800
2861
# Convert the SafeConfigParser object to a dict
1801
2862
server_settings = server_config.defaults()
1802
2863
# Use the appropriate methods on the non-string config options
1803
for option in ("debug", "use_dbus", "use_ipv6"):
2864
for option in ("debug", "use_dbus", "use_ipv6", "foreground"):
1804
2865
server_settings[option] = server_config.getboolean("DEFAULT",
1806
2867
if server_settings["port"]:
1807
2868
server_settings["port"] = server_config.getint("DEFAULT",
2870
if server_settings["socket"]:
2871
server_settings["socket"] = server_config.getint("DEFAULT",
2873
# Later, stdin will, and stdout and stderr might, be dup'ed
2874
# over with an opened os.devnull. But we don't want this to
2875
# happen with a supplied network socket.
2876
if 0 <= server_settings["socket"] <= 2:
2877
server_settings["socket"] = os.dup(server_settings
1809
2879
del server_config
1811
2881
# Override the settings from the config file with command line
1812
2882
# options, if set.
1813
2883
for option in ("interface", "address", "port", "debug",
1814
"priority", "servicename", "configdir",
1815
"use_dbus", "use_ipv6", "debuglevel"):
2884
"priority", "servicename", "configdir", "use_dbus",
2885
"use_ipv6", "debuglevel", "restore", "statedir",
2886
"socket", "foreground", "zeroconf"):
1816
2887
value = getattr(options, option)
1817
2888
if value is not None:
1818
2889
server_settings[option] = value
1820
2891
# Force all strings to be unicode
1821
2892
for option in server_settings.keys():
1822
if type(server_settings[option]) is str:
1823
server_settings[option] = unicode(server_settings[option])
2893
if isinstance(server_settings[option], bytes):
2894
server_settings[option] = (server_settings[option]
2896
# Force all boolean options to be boolean
2897
for option in ("debug", "use_dbus", "use_ipv6", "restore",
2898
"foreground", "zeroconf"):
2899
server_settings[option] = bool(server_settings[option])
2900
# Debug implies foreground
2901
if server_settings["debug"]:
2902
server_settings["foreground"] = True
1824
2903
# Now we have our good server settings in "server_settings"
1826
2905
##################################################################
2907
if (not server_settings["zeroconf"]
2908
and not (server_settings["port"]
2909
or server_settings["socket"] != "")):
2910
parser.error("Needs port or socket to work without Zeroconf")
1828
2912
# For convenience
1829
2913
debug = server_settings["debug"]
1830
2914
debuglevel = server_settings["debuglevel"]
1831
2915
use_dbus = server_settings["use_dbus"]
1832
2916
use_ipv6 = server_settings["use_ipv6"]
2917
stored_state_path = os.path.join(server_settings["statedir"],
2919
foreground = server_settings["foreground"]
2920
zeroconf = server_settings["zeroconf"]
2923
initlogger(debug, logging.DEBUG)
2928
level = getattr(logging, debuglevel.upper())
2929
initlogger(debug, level)
1834
2931
if server_settings["servicename"] != "Mandos":
1835
syslogger.setFormatter(logging.Formatter
1836
('Mandos (%s) [%%(process)d]:'
1837
' %%(levelname)s: %%(message)s'
1838
% server_settings["servicename"]))
2932
syslogger.setFormatter(
2933
logging.Formatter('Mandos ({}) [%(process)d]:'
2934
' %(levelname)s: %(message)s'.format(
2935
server_settings["servicename"])))
1840
2937
# Parse config file with clients
1841
client_defaults = { "timeout": "5m",
1842
"extended_timeout": "15m",
1844
"checker": "fping -q -- %%(host)s",
1846
"approval_delay": "0s",
1847
"approval_duration": "1s",
1849
client_config = configparser.SafeConfigParser(client_defaults)
2938
client_config = configparser.SafeConfigParser(Client
1850
2940
client_config.read(os.path.join(server_settings["configdir"],
1851
2941
"clients.conf"))
1853
2943
global mandos_dbus_service
1854
2944
mandos_dbus_service = None
1856
tcp_server = MandosServer((server_settings["address"],
1857
server_settings["port"]),
1859
interface=(server_settings["interface"]
1863
server_settings["priority"],
1866
pidfilename = "/var/run/mandos.pid"
2947
if server_settings["socket"] != "":
2948
socketfd = server_settings["socket"]
2949
tcp_server = MandosServer(
2950
(server_settings["address"], server_settings["port"]),
2952
interface=(server_settings["interface"] or None),
2954
gnutls_priority=server_settings["priority"],
2958
pidfilename = "/run/mandos.pid"
2959
if not os.path.isdir("/run/."):
2960
pidfilename = "/var/run/mandos.pid"
1868
pidfile = open(pidfilename, "w")
1870
logger.error("Could not open file %r", pidfilename)
2963
pidfile = codecs.open(pidfilename, "w", encoding="utf-8")
2964
except IOError as e:
2965
logger.error("Could not open file %r", pidfilename,
1873
uid = pwd.getpwnam("_mandos").pw_uid
1874
gid = pwd.getpwnam("_mandos").pw_gid
2968
for name, group in (("_mandos", "_mandos"),
2969
("mandos", "mandos"),
2970
("nobody", "nogroup")):
1877
uid = pwd.getpwnam("mandos").pw_uid
1878
gid = pwd.getpwnam("mandos").pw_gid
2972
uid = pwd.getpwnam(name).pw_uid
2973
gid = pwd.getpwnam(group).pw_gid
1879
2975
except KeyError:
1881
uid = pwd.getpwnam("nobody").pw_uid
1882
gid = pwd.getpwnam("nobody").pw_gid
2984
logger.debug("Did setuid/setgid to {}:{}".format(uid,
1889
2986
except OSError as error:
1890
if error[0] != errno.EPERM:
1893
if not debug and not debuglevel:
1894
syslogger.setLevel(logging.WARNING)
1895
console.setLevel(logging.WARNING)
1897
level = getattr(logging, debuglevel.upper())
1898
syslogger.setLevel(level)
1899
console.setLevel(level)
2987
logger.warning("Failed to setuid/setgid to {}:{}: {}"
2988
.format(uid, gid, os.strerror(error.errno)))
2989
if error.errno != errno.EPERM:
1902
2993
# Enable all possible GnuTLS debugging
1904
2995
# "Use a log level over 10 to enable all debugging options."
1905
2996
# - GnuTLS manual
1906
gnutls.library.functions.gnutls_global_set_log_level(11)
2997
gnutls.global_set_log_level(11)
1908
@gnutls.library.types.gnutls_log_func
1909
3000
def debug_gnutls(level, string):
1910
3001
logger.debug("GnuTLS: %s", string[:-1])
1912
(gnutls.library.functions
1913
.gnutls_global_set_log_function(debug_gnutls))
3003
gnutls.global_set_log_function(debug_gnutls)
1915
3005
# Redirect stdin so all checkers get /dev/null
1916
null = os.open(os.path.devnull, os.O_NOCTTY | os.O_RDWR)
3006
null = os.open(os.devnull, os.O_NOCTTY | os.O_RDWR)
1917
3007
os.dup2(null, sys.stdin.fileno())
1921
# No console logging
1922
logger.removeHandler(console)
1924
3011
# Need to fork before connecting to D-Bus
1926
3013
# Close all input and output, do double fork, etc.
3016
# multiprocessing will use threads, so before we use GLib we need
3017
# to inform GLib that threads will be used.
1929
3020
global main_loop
1930
3021
# From the Avahi example code
1931
DBusGMainLoop(set_as_default=True )
1932
main_loop = gobject.MainLoop()
3022
DBusGMainLoop(set_as_default=True)
3023
main_loop = GLib.MainLoop()
1933
3024
bus = dbus.SystemBus()
1934
3025
# End of Avahi example code
1937
3028
bus_name = dbus.service.BusName("se.recompile.Mandos",
1938
bus, do_not_queue=True)
1939
bus_name_transitional = dbus.service.BusName("se.bsnet.fukt.Mandos",
1940
bus, do_not_queue=True)
1941
except dbus.exceptions.NameExistsException as e:
1942
logger.error(unicode(e) + ", disabling D-Bus")
3031
old_bus_name = dbus.service.BusName(
3032
"se.bsnet.fukt.Mandos", bus,
3034
except dbus.exceptions.DBusException as e:
3035
logger.error("Disabling D-Bus:", exc_info=e)
1943
3036
use_dbus = False
1944
3037
server_settings["use_dbus"] = False
1945
3038
tcp_server.use_dbus = False
1946
protocol = avahi.PROTO_INET6 if use_ipv6 else avahi.PROTO_INET
1947
service = AvahiService(name = server_settings["servicename"],
1948
servicetype = "_mandos._tcp",
1949
protocol = protocol, bus = bus)
1950
if server_settings["interface"]:
1951
service.interface = (if_nametoindex
1952
(str(server_settings["interface"])))
3040
protocol = avahi.PROTO_INET6 if use_ipv6 else avahi.PROTO_INET
3041
service = AvahiServiceToSyslog(
3042
name = server_settings["servicename"],
3043
servicetype = "_mandos._tcp",
3044
protocol = protocol,
3046
if server_settings["interface"]:
3047
service.interface = if_nametoindex(
3048
server_settings["interface"].encode("utf-8"))
1954
3050
global multiprocessing_manager
1955
3051
multiprocessing_manager = multiprocessing.Manager()
1957
3053
client_class = Client
1959
client_class = functools.partial(ClientDBusTransitional, bus = bus)
1960
def client_config_items(config, section):
1961
special_settings = {
1962
"approved_by_default":
1963
lambda: config.getboolean(section,
1964
"approved_by_default"),
1966
for name, value in config.items(section):
3055
client_class = functools.partial(ClientDBus, bus = bus)
3057
client_settings = Client.config_parser(client_config)
3058
old_client_settings = {}
3061
# This is used to redirect stdout and stderr for checker processes
3063
wnull = open(os.devnull, "w") # A writable /dev/null
3064
# Only used if server is running in foreground but not in debug
3066
if debug or not foreground:
3069
# Get client data and settings from last running state.
3070
if server_settings["restore"]:
3072
with open(stored_state_path, "rb") as stored_state:
3073
if sys.version_info.major == 2:
3074
clients_data, old_client_settings = pickle.load(
3077
bytes_clients_data, bytes_old_client_settings = (
3078
pickle.load(stored_state, encoding = "bytes"))
3079
### Fix bytes to strings
3082
clients_data = { (key.decode("utf-8")
3083
if isinstance(key, bytes)
3086
bytes_clients_data.items() }
3087
del bytes_clients_data
3088
for key in clients_data:
3089
value = { (k.decode("utf-8")
3090
if isinstance(k, bytes) else k): v
3092
clients_data[key].items() }
3093
clients_data[key] = value
3095
value["client_structure"] = [
3097
if isinstance(s, bytes)
3099
value["client_structure"] ]
3101
for k in ("name", "host"):
3102
if isinstance(value[k], bytes):
3103
value[k] = value[k].decode("utf-8")
3104
## old_client_settings
3106
old_client_settings = {
3107
(key.decode("utf-8")
3108
if isinstance(key, bytes)
3111
bytes_old_client_settings.items() }
3112
del bytes_old_client_settings
3114
for value in old_client_settings.values():
3115
if isinstance(value["host"], bytes):
3116
value["host"] = (value["host"]
3118
os.remove(stored_state_path)
3119
except IOError as e:
3120
if e.errno == errno.ENOENT:
3121
logger.warning("Could not load persistent state:"
3122
" {}".format(os.strerror(e.errno)))
3124
logger.critical("Could not load persistent state:",
3127
except EOFError as e:
3128
logger.warning("Could not load persistent state: "
3132
with PGPEngine() as pgp:
3133
for client_name, client in clients_data.items():
3134
# Skip removed clients
3135
if client_name not in client_settings:
3138
# Decide which value to use after restoring saved state.
3139
# We have three different values: Old config file,
3140
# new config file, and saved state.
3141
# New config value takes precedence if it differs from old
3142
# config value, otherwise use saved state.
3143
for name, value in client_settings[client_name].items():
3145
# For each value in new config, check if it
3146
# differs from the old config value (Except for
3147
# the "secret" attribute)
3148
if (name != "secret"
3150
old_client_settings[client_name][name])):
3151
client[name] = value
3155
# Clients who has passed its expire date can still be
3156
# enabled if its last checker was successful. A Client
3157
# whose checker succeeded before we stored its state is
3158
# assumed to have successfully run all checkers during
3160
if client["enabled"]:
3161
if datetime.datetime.utcnow() >= client["expires"]:
3162
if not client["last_checked_ok"]:
3164
"disabling client {} - Client never "
3165
"performed a successful checker".format(
3167
client["enabled"] = False
3168
elif client["last_checker_status"] != 0:
3170
"disabling client {} - Client last"
3171
" checker failed with error code"
3174
client["last_checker_status"]))
3175
client["enabled"] = False
3177
client["expires"] = (
3178
datetime.datetime.utcnow()
3179
+ client["timeout"])
3180
logger.debug("Last checker succeeded,"
3181
" keeping {} enabled".format(
1968
yield (name, special_settings[name]())
1972
tcp_server.clients.update(set(
1973
client_class(name = section,
1974
config= dict(client_config_items(
1975
client_config, section)))
1976
for section in client_config.sections()))
3184
client["secret"] = pgp.decrypt(
3185
client["encrypted_secret"],
3186
client_settings[client_name]["secret"])
3188
# If decryption fails, we use secret from new settings
3189
logger.debug("Failed to decrypt {} old secret".format(
3191
client["secret"] = (client_settings[client_name]
3194
# Add/remove clients based on new changes made to config
3195
for client_name in (set(old_client_settings)
3196
- set(client_settings)):
3197
del clients_data[client_name]
3198
for client_name in (set(client_settings)
3199
- set(old_client_settings)):
3200
clients_data[client_name] = client_settings[client_name]
3202
# Create all client objects
3203
for client_name, client in clients_data.items():
3204
tcp_server.clients[client_name] = client_class(
3207
server_settings = server_settings)
1977
3209
if not tcp_server.clients:
1978
3210
logger.warning("No clients defined")
1984
pidfile.write(str(pid) + "\n".encode("utf-8"))
1987
logger.error("Could not write to file %r with PID %d",
1990
# "pidfile" was never created
3213
if pidfile is not None:
3217
print(pid, file=pidfile)
3219
logger.error("Could not write to file %r with PID %d",
1992
3222
del pidfilename
3224
for termsig in (signal.SIGHUP, signal.SIGTERM):
3225
GLib.unix_signal_add(GLib.PRIORITY_HIGH, termsig,
3226
lambda: main_loop.quit() and False)
1994
signal.signal(signal.SIGINT, signal.SIG_IGN)
1996
signal.signal(signal.SIGHUP, lambda signum, frame: sys.exit())
1997
signal.signal(signal.SIGTERM, lambda signum, frame: sys.exit())
2000
class MandosDBusService(dbus.service.Object):
3230
@alternate_dbus_interfaces(
3231
{ "se.recompile.Mandos": "se.bsnet.fukt.Mandos" })
3232
class MandosDBusService(DBusObjectWithObjectManager):
2001
3233
"""A D-Bus proxy object"""
2002
3235
def __init__(self):
2003
3236
dbus.service.Object.__init__(self, bus, "/")
2004
_interface = "se.bsnet.fukt.Mandos"
3238
_interface = "se.recompile.Mandos"
2006
3240
@dbus.service.signal(_interface, signature="o")
2007
3241
def ClientAdded(self, objpath):
3250
@dbus_annotations({"org.freedesktop.DBus.Deprecated":
2016
3252
@dbus.service.signal(_interface, signature="os")
2017
3253
def ClientRemoved(self, objpath, name):
3257
@dbus_annotations({"org.freedesktop.DBus.Deprecated":
2021
3259
@dbus.service.method(_interface, out_signature="ao")
2022
3260
def GetAllClients(self):
2024
return dbus.Array(c.dbus_object_path
2025
for c in tcp_server.clients)
3262
return dbus.Array(c.dbus_object_path for c in
3263
tcp_server.clients.values())
3265
@dbus_annotations({"org.freedesktop.DBus.Deprecated":
2027
3267
@dbus.service.method(_interface,
2028
3268
out_signature="a{oa{sv}}")
2029
3269
def GetAllClientsWithProperties(self):
2031
3271
return dbus.Dictionary(
2032
((c.dbus_object_path, c.GetAll(""))
2033
for c in tcp_server.clients),
3272
{ c.dbus_object_path: c.GetAll(
3273
"se.recompile.Mandos.Client")
3274
for c in tcp_server.clients.values() },
2034
3275
signature="oa{sv}")
2036
3277
@dbus.service.method(_interface, in_signature="o")
2037
3278
def RemoveClient(self, object_path):
2039
for c in tcp_server.clients:
3280
for c in tcp_server.clients.values():
2040
3281
if c.dbus_object_path == object_path:
2041
tcp_server.clients.remove(c)
3282
del tcp_server.clients[c.name]
2042
3283
c.remove_from_connection()
2043
# Don't signal anything except ClientRemoved
3284
# Don't signal the disabling
2044
3285
c.disable(quiet=True)
2046
self.ClientRemoved(object_path, c.name)
3286
# Emit D-Bus signal for removal
3287
self.client_removed_signal(c)
2048
3289
raise KeyError(object_path)
3293
@dbus.service.method(dbus.OBJECT_MANAGER_IFACE,
3294
out_signature = "a{oa{sa{sv}}}")
3295
def GetManagedObjects(self):
3297
return dbus.Dictionary(
3298
{ client.dbus_object_path:
3300
{ interface: client.GetAll(interface)
3302
client._get_all_interface_names()})
3303
for client in tcp_server.clients.values()})
3305
def client_added_signal(self, client):
3306
"""Send the new standard signal and the old signal"""
3308
# New standard signal
3309
self.InterfacesAdded(
3310
client.dbus_object_path,
3312
{ interface: client.GetAll(interface)
3314
client._get_all_interface_names()}))
3316
self.ClientAdded(client.dbus_object_path)
3318
def client_removed_signal(self, client):
3319
"""Send the new standard signal and the old signal"""
3321
# New standard signal
3322
self.InterfacesRemoved(
3323
client.dbus_object_path,
3324
client._get_all_interface_names())
3326
self.ClientRemoved(client.dbus_object_path,
2052
class MandosDBusServiceTransitional(MandosDBusService):
2053
__metaclass__ = transitional_dbus_metaclass
2054
mandos_dbus_service = MandosDBusServiceTransitional()
3329
mandos_dbus_service = MandosDBusService()
3331
# Save modules to variables to exempt the modules from being
3332
# unloaded before the function registered with atexit() is run.
3333
mp = multiprocessing
2057
3336
"Cleanup function; run on exit"
3340
mp.active_children()
3342
if not (tcp_server.clients or client_settings):
3345
# Store client before exiting. Secrets are encrypted with key
3346
# based on what config file has. If config file is
3347
# removed/edited, old secret will thus be unrecovable.
3349
with PGPEngine() as pgp:
3350
for client in tcp_server.clients.values():
3351
key = client_settings[client.name]["secret"]
3352
client.encrypted_secret = pgp.encrypt(client.secret,
3356
# A list of attributes that can not be pickled
3358
exclude = { "bus", "changedstate", "secret",
3359
"checker", "server_settings" }
3360
for name, typ in inspect.getmembers(dbus.service
3364
client_dict["encrypted_secret"] = (client
3366
for attr in client.client_structure:
3367
if attr not in exclude:
3368
client_dict[attr] = getattr(client, attr)
3370
clients[client.name] = client_dict
3371
del client_settings[client.name]["secret"]
3374
with tempfile.NamedTemporaryFile(
3378
dir=os.path.dirname(stored_state_path),
3379
delete=False) as stored_state:
3380
pickle.dump((clients, client_settings), stored_state,
3382
tempname = stored_state.name
3383
os.rename(tempname, stored_state_path)
3384
except (IOError, OSError) as e:
3390
if e.errno in (errno.ENOENT, errno.EACCES, errno.EEXIST):
3391
logger.warning("Could not save persistent state: {}"
3392
.format(os.strerror(e.errno)))
3394
logger.warning("Could not save persistent state:",
3398
# Delete all clients, and settings from config
2060
3399
while tcp_server.clients:
2061
client = tcp_server.clients.pop()
3400
name, client = tcp_server.clients.popitem()
2063
3402
client.remove_from_connection()
2064
client.disable_hook = None
2065
# Don't signal anything except ClientRemoved
3403
# Don't signal the disabling
2066
3404
client.disable(quiet=True)
3405
# Emit D-Bus signal for removal
2069
mandos_dbus_service.ClientRemoved(client.dbus_object_path,
3407
mandos_dbus_service.client_removed_signal(client)
3408
client_settings.clear()
2072
3410
atexit.register(cleanup)
2074
for client in tcp_server.clients:
3412
for client in tcp_server.clients.values():
2077
mandos_dbus_service.ClientAdded(client.dbus_object_path)
3414
# Emit D-Bus signal for adding
3415
mandos_dbus_service.client_added_signal(client)
3416
# Need to initiate checking of clients
3418
client.init_checker()
2080
3420
tcp_server.enable()
2081
3421
tcp_server.server_activate()
2083
3423
# Find out what port we got
2084
service.port = tcp_server.socket.getsockname()[1]
3425
service.port = tcp_server.socket.getsockname()[1]
2086
3427
logger.info("Now listening on address %r, port %d,"
2087
" flowinfo %d, scope_id %d"
2088
% tcp_server.socket.getsockname())
3428
" flowinfo %d, scope_id %d",
3429
*tcp_server.socket.getsockname())
2090
logger.info("Now listening on address %r, port %d"
2091
% tcp_server.socket.getsockname())
3431
logger.info("Now listening on address %r, port %d",
3432
*tcp_server.socket.getsockname())
2093
3434
#service.interface = tcp_server.socket.getsockname()[3]
2096
# From the Avahi example code
2099
except dbus.exceptions.DBusException as error:
2100
logger.critical("DBusException: %s", error)
2103
# End of Avahi example code
3438
# From the Avahi example code
3441
except dbus.exceptions.DBusException as error:
3442
logger.critical("D-Bus Exception", exc_info=error)
3445
# End of Avahi example code
2105
gobject.io_add_watch(tcp_server.fileno(), gobject.IO_IN,
2106
lambda *args, **kwargs:
2107
(tcp_server.handle_request
2108
(*args[2:], **kwargs) or True))
3447
GLib.io_add_watch(tcp_server.fileno(), GLib.IO_IN,
3448
lambda *args, **kwargs:
3449
(tcp_server.handle_request
3450
(*args[2:], **kwargs) or True))
2110
3452
logger.debug("Starting main loop")
2111
3453
main_loop.run()
2112
3454
except AvahiError as error:
2113
logger.critical("AvahiError: %s", error)
3455
logger.critical("Avahi Error", exc_info=error)
2116
3458
except KeyboardInterrupt: