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# -*- mode: python; coding: utf-8 -*-
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# Mandos server - give out binary blobs to connecting clients.
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# This program is partly derived from an example program for an Avahi
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# service publisher, downloaded from
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# <http://avahi.org/wiki/PythonPublishExample>. This includes the
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# methods "add", "remove", "server_state_changed",
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# "entry_group_state_changed", "cleanup", and "activate" in the
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# "AvahiService" class, and some lines in "main".
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# Everything else is
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# Copyright © 2008-2015 Teddy Hogeborn
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# Copyright © 2008-2015 Björn Påhlsson
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# Copyright © 2008-2019 Teddy Hogeborn
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# Copyright © 2008-2019 Björn Påhlsson
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# This file is part of Mandos.
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# Mandos is free software: you can redistribute it and/or modify it
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# under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# Mandos is distributed in the hope that it will be useful, but
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# WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see
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# <http://www.gnu.org/licenses/>.
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# along with Mandos. If not, see <http://www.gnu.org/licenses/>.
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# Contact the authors at <mandos@recompile.se>.
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from __future__ import (division, absolute_import, print_function,
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from future_builtins import *
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from future_builtins import *
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import SocketServer as socketserver
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.replace(b"\n", b"\\n")
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.replace(b"\0", b"\\x00"))
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def encrypt(self, data, password):
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passphrase = self.password_encode(password)
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with tempfile.NamedTemporaryFile(
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dir=self.tempdir) as passfile:
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passfile.write(passphrase)
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proc = subprocess.Popen(['gpg', '--symmetric',
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proc = subprocess.Popen([self.gpg, '--symmetric',
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'--passphrase-file',
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+ self.gnupgargs,
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stdin = subprocess.PIPE,
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stdout = subprocess.PIPE,
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stderr = subprocess.PIPE)
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ciphertext, err = proc.communicate(input = data)
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stdin=subprocess.PIPE,
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stdout=subprocess.PIPE,
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stderr=subprocess.PIPE)
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ciphertext, err = proc.communicate(input=data)
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if proc.returncode != 0:
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raise PGPError(err)
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return ciphertext
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def decrypt(self, data, password):
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passphrase = self.password_encode(password)
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with tempfile.NamedTemporaryFile(
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dir = self.tempdir) as passfile:
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dir=self.tempdir) as passfile:
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passfile.write(passphrase)
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proc = subprocess.Popen(['gpg', '--decrypt',
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proc = subprocess.Popen([self.gpg, '--decrypt',
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'--passphrase-file',
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+ self.gnupgargs,
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stdin = subprocess.PIPE,
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stdout = subprocess.PIPE,
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stderr = subprocess.PIPE)
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decrypted_plaintext, err = proc.communicate(input = data)
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stdin=subprocess.PIPE,
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stdout=subprocess.PIPE,
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stderr=subprocess.PIPE)
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decrypted_plaintext, err = proc.communicate(input=data)
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if proc.returncode != 0:
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raise PGPError(err)
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return decrypted_plaintext
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# Pretend that we have an Avahi module
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"""This isn't so much a class as it is a module-like namespace.
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It is instantiated once, and simulates having an Avahi module."""
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IF_UNSPEC = -1 # avahi-common/address.h
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PROTO_UNSPEC = -1 # avahi-common/address.h
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PROTO_INET = 0 # avahi-common/address.h
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PROTO_INET6 = 1 # avahi-common/address.h
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DBUS_NAME = "org.freedesktop.Avahi"
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DBUS_INTERFACE_ENTRY_GROUP = DBUS_NAME + ".EntryGroup"
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DBUS_INTERFACE_SERVER = DBUS_NAME + ".Server"
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DBUS_PATH_SERVER = "/"
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def string_array_to_txt_array(self, t):
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return dbus.Array((dbus.ByteArray(s.encode("utf-8"))
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for s in t), signature="ay")
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ENTRY_GROUP_ESTABLISHED = 2 # avahi-common/defs.h
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ENTRY_GROUP_COLLISION = 3 # avahi-common/defs.h
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ENTRY_GROUP_FAILURE = 4 # avahi-common/defs.h
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SERVER_INVALID = 0 # avahi-common/defs.h
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SERVER_REGISTERING = 1 # avahi-common/defs.h
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SERVER_RUNNING = 2 # avahi-common/defs.h
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SERVER_COLLISION = 3 # avahi-common/defs.h
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SERVER_FAILURE = 4 # avahi-common/defs.h
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class AvahiError(Exception):
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def __init__(self, value, *args, **kwargs):
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self.value = value
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class AvahiServiceToSyslog(AvahiService):
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def rename(self, *args, **kwargs):
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"""Add the new name to the syslog messages"""
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ret = AvahiService.rename(self, *args, **kwargs)
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ret = super(AvahiServiceToSyslog, self).rename(*args, **kwargs)
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syslogger.setFormatter(logging.Formatter(
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'Mandos ({}) [%(process)d]: %(levelname)s: %(message)s'
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.format(self.name)))
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# Pretend that we have a GnuTLS module
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class GnuTLS(object):
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"""This isn't so much a class as it is a module-like namespace.
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It is instantiated once, and simulates having a GnuTLS module."""
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_library = ctypes.cdll.LoadLibrary(
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ctypes.util.find_library("gnutls"))
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_need_version = "3.3.0"
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library = ctypes.util.find_library("gnutls")
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library = ctypes.util.find_library("gnutls-deb0")
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_library = ctypes.cdll.LoadLibrary(library)
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_need_version = b"3.3.0"
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_tls_rawpk_version = b"3.6.6"
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def __init__(self):
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# Need to use class name "GnuTLS" here, since this method is
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# called before the assignment to the "gnutls" global variable
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if GnuTLS.check_version(self._need_version) is None:
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raise GnuTLS.Error("Needs GnuTLS {} or later"
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.format(self._need_version))
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# Need to use "self" here, since this method is called before
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# the assignment to the "gnutls" global variable happens.
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if self.check_version(self._need_version) is None:
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raise self.Error("Needs GnuTLS {} or later"
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.format(self._need_version))
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# Unless otherwise indicated, the constants and types below are
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# all from the gnutls/gnutls.h C header file.
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E_INTERRUPTED = -52
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CRD_CERTIFICATE = 1
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E_NO_CERTIFICATE_FOUND = -49
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KEYID_USE_SHA256 = 1 # gnutls/x509.h
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OPENPGP_FMT_RAW = 0 # gnutls/openpgp.h
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class session_int(ctypes.Structure):
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session_t = ctypes.POINTER(session_int)
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class certificate_credentials_st(ctypes.Structure):
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certificate_credentials_t = ctypes.POINTER(
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certificate_credentials_st)
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certificate_type_t = ctypes.c_int
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class datum_t(ctypes.Structure):
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_fields_ = [('data', ctypes.POINTER(ctypes.c_ubyte)),
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('size', ctypes.c_uint)]
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class openpgp_crt_int(ctypes.Structure):
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openpgp_crt_t = ctypes.POINTER(openpgp_crt_int)
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openpgp_crt_fmt_t = ctypes.c_int # gnutls/openpgp.h
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openpgp_crt_fmt_t = ctypes.c_int # gnutls/openpgp.h
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log_func = ctypes.CFUNCTYPE(None, ctypes.c_int, ctypes.c_char_p)
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credentials_type_t = ctypes.c_int #
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credentials_type_t = ctypes.c_int
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transport_ptr_t = ctypes.c_void_p
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close_request_t = ctypes.c_int
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class Error(Exception):
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# We need to use the class name "GnuTLS" here, since this
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# exception might be raised from within GnuTLS.__init__,
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# which is called before the assignment to the "gnutls"
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# global variable has happened.
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def __init__(self, message = None, code = None, args=()):
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def __init__(self, message=None, code=None, args=()):
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# Default usage is by a message string, but if a return
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# code is passed, convert it to a string with
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# gnutls.strerror()
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return _error_code(result)
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result = func(*arguments)
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# Unless otherwise indicated, the function declarations below are
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# all from the gnutls/gnutls.h C header file.
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priority_set_direct = _library.gnutls_priority_set_direct
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priority_set_direct.argtypes = [session_t, ctypes.c_char_p,
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ctypes.POINTER(ctypes.c_char_p)]
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priority_set_direct.restype = _error_code
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init = _library.gnutls_init
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init.argtypes = [ctypes.POINTER(session_t), ctypes.c_int]
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init.restype = _error_code
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set_default_priority = _library.gnutls_set_default_priority
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set_default_priority.argtypes = [session_t]
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set_default_priority.restype = _error_code
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record_send = _library.gnutls_record_send
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record_send.argtypes = [session_t, ctypes.c_void_p,
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record_send.restype = ctypes.c_ssize_t
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record_send.errcheck = _retry_on_error
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certificate_allocate_credentials = (
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_library.gnutls_certificate_allocate_credentials)
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certificate_allocate_credentials.argtypes = [
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ctypes.POINTER(certificate_credentials_t)]
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certificate_allocate_credentials.restype = _error_code
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certificate_free_credentials = (
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_library.gnutls_certificate_free_credentials)
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certificate_free_credentials.argtypes = [certificate_credentials_t]
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certificate_free_credentials.argtypes = [
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certificate_credentials_t]
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certificate_free_credentials.restype = None
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handshake_set_private_extensions = (
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_library.gnutls_handshake_set_private_extensions)
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handshake_set_private_extensions.argtypes = [session_t,
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handshake_set_private_extensions.restype = None
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credentials_set = _library.gnutls_credentials_set
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credentials_set.argtypes = [session_t, credentials_type_t,
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credentials_set.restype = _error_code
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strerror = _library.gnutls_strerror
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strerror.argtypes = [ctypes.c_int]
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strerror.restype = ctypes.c_char_p
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certificate_type_get = _library.gnutls_certificate_type_get
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certificate_type_get.argtypes = [session_t]
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certificate_type_get.restype = _error_code
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certificate_get_peers = _library.gnutls_certificate_get_peers
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certificate_get_peers.argtypes = [session_t,
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ctypes.POINTER(ctypes.c_uint)]
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certificate_get_peers.restype = ctypes.POINTER(datum_t)
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global_set_log_level = _library.gnutls_global_set_log_level
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global_set_log_level.argtypes = [ctypes.c_int]
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global_set_log_level.restype = None
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global_set_log_function = _library.gnutls_global_set_log_function
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global_set_log_function.argtypes = [log_func]
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global_set_log_function.restype = None
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deinit = _library.gnutls_deinit
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deinit.argtypes = [session_t]
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deinit.restype = None
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handshake = _library.gnutls_handshake
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handshake.argtypes = [session_t]
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handshake.restype = _error_code
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handshake.errcheck = _retry_on_error
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transport_set_ptr = _library.gnutls_transport_set_ptr
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transport_set_ptr.argtypes = [session_t, transport_ptr_t]
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transport_set_ptr.restype = None
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bye = _library.gnutls_bye
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bye.argtypes = [session_t, close_request_t]
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bye.restype = _error_code
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bye.errcheck = _retry_on_error
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check_version = _library.gnutls_check_version
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check_version.argtypes = [ctypes.c_char_p]
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check_version.restype = ctypes.c_char_p
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# All the function declarations below are from gnutls/openpgp.h
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openpgp_crt_init = _library.gnutls_openpgp_crt_init
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openpgp_crt_init.argtypes = [ctypes.POINTER(openpgp_crt_t)]
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openpgp_crt_init.restype = _error_code
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openpgp_crt_import = _library.gnutls_openpgp_crt_import
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openpgp_crt_import.argtypes = [openpgp_crt_t,
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ctypes.POINTER(datum_t),
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openpgp_crt_import.restype = _error_code
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openpgp_crt_verify_self = _library.gnutls_openpgp_crt_verify_self
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openpgp_crt_verify_self.argtypes = [openpgp_crt_t, ctypes.c_uint,
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ctypes.POINTER(ctypes.c_uint)]
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openpgp_crt_verify_self.restype = _error_code
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openpgp_crt_deinit = _library.gnutls_openpgp_crt_deinit
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openpgp_crt_deinit.argtypes = [openpgp_crt_t]
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openpgp_crt_deinit.restype = None
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openpgp_crt_get_fingerprint = (
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_library.gnutls_openpgp_crt_get_fingerprint)
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openpgp_crt_get_fingerprint.argtypes = [openpgp_crt_t,
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openpgp_crt_get_fingerprint.restype = _error_code
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has_rawpk = bool(check_version(_tls_rawpk_version))
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class pubkey_st(ctypes.Structure):
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pubkey_t = ctypes.POINTER(pubkey_st)
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x509_crt_fmt_t = ctypes.c_int
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# All the function declarations below are from gnutls/abstract.h
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pubkey_init = _library.gnutls_pubkey_init
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pubkey_init.argtypes = [ctypes.POINTER(pubkey_t)]
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pubkey_init.restype = _error_code
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pubkey_import = _library.gnutls_pubkey_import
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pubkey_import.argtypes = [pubkey_t, ctypes.POINTER(datum_t),
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pubkey_import.restype = _error_code
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pubkey_get_key_id = _library.gnutls_pubkey_get_key_id
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pubkey_get_key_id.argtypes = [pubkey_t, ctypes.c_int,
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ctypes.POINTER(ctypes.c_ubyte),
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ctypes.POINTER(ctypes.c_size_t)]
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pubkey_get_key_id.restype = _error_code
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pubkey_deinit = _library.gnutls_pubkey_deinit
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pubkey_deinit.argtypes = [pubkey_t]
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pubkey_deinit.restype = None
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# All the function declarations below are from gnutls/openpgp.h
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openpgp_crt_init = _library.gnutls_openpgp_crt_init
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openpgp_crt_init.argtypes = [ctypes.POINTER(openpgp_crt_t)]
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openpgp_crt_init.restype = _error_code
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openpgp_crt_import = _library.gnutls_openpgp_crt_import
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openpgp_crt_import.argtypes = [openpgp_crt_t,
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ctypes.POINTER(datum_t),
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openpgp_crt_import.restype = _error_code
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openpgp_crt_verify_self = _library.gnutls_openpgp_crt_verify_self
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openpgp_crt_verify_self.argtypes = [openpgp_crt_t, ctypes.c_uint,
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ctypes.POINTER(ctypes.c_uint)]
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openpgp_crt_verify_self.restype = _error_code
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openpgp_crt_deinit = _library.gnutls_openpgp_crt_deinit
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openpgp_crt_deinit.argtypes = [openpgp_crt_t]
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openpgp_crt_deinit.restype = None
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openpgp_crt_get_fingerprint = (
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_library.gnutls_openpgp_crt_get_fingerprint)
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openpgp_crt_get_fingerprint.argtypes = [openpgp_crt_t,
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openpgp_crt_get_fingerprint.restype = _error_code
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if check_version("3.6.4"):
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certificate_type_get2 = _library.gnutls_certificate_type_get2
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certificate_type_get2.argtypes = [session_t, ctypes.c_int]
809
certificate_type_get2.restype = _error_code
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# Remove non-public functions
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del _error_code, _retry_on_error
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# Create the global "gnutls" object, simulating a module
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gnutls = GnuTLS()
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def call_pipe(connection, # : multiprocessing.Connection
688
818
func, *args, **kwargs):
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"""This function is meant to be called by multiprocessing.Process
691
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This function runs func(*args, **kwargs), and writes the resulting
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return value on the provided multiprocessing.Connection.
694
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connection.send(func(*args, **kwargs))
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connection.close()
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class Client(object):
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"""A representation of a client host served by this server.
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approved: bool(); 'None' if not yet approved/disapproved
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approval_delay: datetime.timedelta(); Time to wait for approval
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checker: subprocess.Popen(); a running checker process used
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to see if the client lives.
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'None' if no process is running.
707
checker_callback_tag: a gobject event source tag, or None
838
checker_callback_tag: a GLib event source tag, or None
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checker_command: string; External command which is run to check
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if client lives. %() expansions are done at
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841
runtime with vars(self) as dict, so that for
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842
instance %(name)s can be used in the command.
712
checker_initiator_tag: a gobject event source tag, or None
843
checker_initiator_tag: a GLib event source tag, or None
713
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created: datetime.datetime(); (UTC) object creation
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client_structure: Object describing what attributes a client has
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and is used for storing the client at exit
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current_checker_command: string; current running checker_command
717
disable_initiator_tag: a gobject event source tag, or None
848
disable_initiator_tag: a GLib event source tag, or None
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fingerprint: string (40 or 32 hexadecimal digits); used to
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uniquely identify the client
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uniquely identify an OpenPGP client
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key_id: string (64 hexadecimal digits); used to uniquely identify
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a client using raw public keys
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host: string; available for use by the checker command
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interval: datetime.timedelta(); How often to start a new checker
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last_approval_request: datetime.datetime(); (UTC) or None
875
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logger.info("Disabling client %s", self.name)
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if getattr(self, "disable_initiator_tag", None) is not None:
877
gobject.source_remove(self.disable_initiator_tag)
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GLib.source_remove(self.disable_initiator_tag)
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1016
self.disable_initiator_tag = None
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self.expires = None
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if getattr(self, "checker_initiator_tag", None) is not None:
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gobject.source_remove(self.checker_initiator_tag)
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GLib.source_remove(self.checker_initiator_tag)
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self.checker_initiator_tag = None
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1021
self.stop_checker()
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1022
self.enabled = False
886
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self.send_changedstate()
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# Do not run this again if called by a gobject.timeout_add
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# Do not run this again if called by a GLib.timeout_add
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1028
def __del__(self):
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1031
def init_checker(self):
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1032
# Schedule a new checker to be started an 'interval' from now,
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# and every interval from then on.
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1034
if self.checker_initiator_tag is not None:
897
gobject.source_remove(self.checker_initiator_tag)
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self.checker_initiator_tag = gobject.timeout_add(
1035
GLib.source_remove(self.checker_initiator_tag)
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self.checker_initiator_tag = GLib.timeout_add(
899
1037
int(self.interval.total_seconds() * 1000),
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1038
self.start_checker)
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# Schedule a disable() when 'timeout' has passed
902
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if self.disable_initiator_tag is not None:
903
gobject.source_remove(self.disable_initiator_tag)
904
self.disable_initiator_tag = gobject.timeout_add(
1041
GLib.source_remove(self.disable_initiator_tag)
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self.disable_initiator_tag = GLib.timeout_add(
905
1043
int(self.timeout.total_seconds() * 1000), self.disable)
906
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# Also start a new checker *right now*.
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self.start_checker()
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def checker_callback(self, source, condition, connection,
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1049
"""The checker has completed, so take appropriate actions."""
994
1132
# The exception is when not debugging but nevertheless
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1133
# running in the foreground; use the previously
996
1134
# created wnull.
997
popen_args = { "close_fds": True,
1135
popen_args = {"close_fds": True,
1000
1138
if (not self.server_settings["debug"]
1001
1139
and self.server_settings["foreground"]):
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popen_args.update({"stdout": wnull,
1004
pipe = multiprocessing.Pipe(duplex = False)
1142
pipe = multiprocessing.Pipe(duplex=False)
1005
1143
self.checker = multiprocessing.Process(
1007
args = (pipe[1], subprocess.call, command),
1008
kwargs = popen_args)
1145
args=(pipe[1], subprocess.call, command),
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1147
self.checker.start()
1010
self.checker_callback_tag = gobject.io_add_watch(
1011
pipe[0].fileno(), gobject.IO_IN,
1148
self.checker_callback_tag = GLib.io_add_watch(
1149
pipe[0].fileno(), GLib.IO_IN,
1012
1150
self.checker_callback, pipe[0], command)
1013
# Re-run this periodically if run by gobject.timeout_add
1151
# Re-run this periodically if run by GLib.timeout_add
1016
1154
def stop_checker(self):
1017
1155
"""Force the checker process, if any, to stop."""
1018
1156
if self.checker_callback_tag:
1019
gobject.source_remove(self.checker_callback_tag)
1157
GLib.source_remove(self.checker_callback_tag)
1020
1158
self.checker_callback_tag = None
1021
1159
if getattr(self, "checker", None) is None:
1376
1514
exc_info=error)
1377
1515
return xmlstring
1380
1519
dbus.OBJECT_MANAGER_IFACE
1381
1520
except AttributeError:
1382
1521
dbus.OBJECT_MANAGER_IFACE = "org.freedesktop.DBus.ObjectManager"
1384
1524
class DBusObjectWithObjectManager(DBusObjectWithAnnotations):
1385
1525
"""A D-Bus object with an ObjectManager.
1387
1527
Classes inheriting from this exposes the standard
1388
1528
GetManagedObjects call and the InterfacesAdded and
1389
1529
InterfacesRemoved signals on the standard
1390
1530
"org.freedesktop.DBus.ObjectManager" interface.
1392
1532
Note: No signals are sent automatically; they must be sent
1395
1535
@dbus.service.method(dbus.OBJECT_MANAGER_IFACE,
1396
out_signature = "a{oa{sa{sv}}}")
1536
out_signature="a{oa{sa{sv}}}")
1397
1537
def GetManagedObjects(self):
1398
1538
"""This function must be overridden"""
1399
1539
raise NotImplementedError()
1401
1541
@dbus.service.signal(dbus.OBJECT_MANAGER_IFACE,
1402
signature = "oa{sa{sv}}")
1542
signature="oa{sa{sv}}")
1403
1543
def InterfacesAdded(self, object_path, interfaces_and_properties):
1406
@dbus.service.signal(dbus.OBJECT_MANAGER_IFACE, signature = "oas")
1546
@dbus.service.signal(dbus.OBJECT_MANAGER_IFACE, signature="oas")
1407
1547
def InterfacesRemoved(self, object_path, interfaces):
1410
1550
@dbus.service.method(dbus.INTROSPECTABLE_IFACE,
1411
out_signature = "s",
1412
path_keyword = 'object_path',
1413
connection_keyword = 'connection')
1552
path_keyword='object_path',
1553
connection_keyword='connection')
1414
1554
def Introspect(self, object_path, connection):
1415
1555
"""Overloading of standard D-Bus method.
1417
1557
Override return argument name of GetManagedObjects to be
1418
1558
"objpath_interfaces_and_properties"
1496
1637
interface_names.add(alt_interface)
1497
1638
# Is this a D-Bus signal?
1498
1639
if getattr(attribute, "_dbus_is_signal", False):
1640
# Extract the original non-method undecorated
1641
# function by black magic
1499
1642
if sys.version_info.major == 2:
1500
# Extract the original non-method undecorated
1501
# function by black magic
1502
1643
nonmethod_func = (dict(
1503
1644
zip(attribute.func_code.co_freevars,
1504
1645
attribute.__closure__))
1505
1646
["func"].cell_contents)
1507
nonmethod_func = attribute
1648
nonmethod_func = (dict(
1649
zip(attribute.__code__.co_freevars,
1650
attribute.__closure__))
1651
["func"].cell_contents)
1508
1652
# Create a new, but exactly alike, function
1509
1653
# object, and decorate it to be a new D-Bus signal
1510
1654
# with the alternate D-Bus interface name
1511
if sys.version_info.major == 2:
1512
new_function = types.FunctionType(
1513
nonmethod_func.func_code,
1514
nonmethod_func.func_globals,
1515
nonmethod_func.func_name,
1516
nonmethod_func.func_defaults,
1517
nonmethod_func.func_closure)
1519
new_function = types.FunctionType(
1520
nonmethod_func.__code__,
1521
nonmethod_func.__globals__,
1522
nonmethod_func.__name__,
1523
nonmethod_func.__defaults__,
1524
nonmethod_func.__closure__)
1655
new_function = copy_function(nonmethod_func)
1525
1656
new_function = (dbus.service.signal(
1527
1658
attribute._dbus_signature)(new_function))
1729
1853
"ApprovedByDefault")
1730
1854
approval_delay = notifychangeproperty(
1731
1855
dbus.UInt64, "ApprovalDelay",
1732
type_func = lambda td: td.total_seconds() * 1000)
1856
type_func=lambda td: td.total_seconds() * 1000)
1733
1857
approval_duration = notifychangeproperty(
1734
1858
dbus.UInt64, "ApprovalDuration",
1735
type_func = lambda td: td.total_seconds() * 1000)
1859
type_func=lambda td: td.total_seconds() * 1000)
1736
1860
host = notifychangeproperty(dbus.String, "Host")
1737
1861
timeout = notifychangeproperty(
1738
1862
dbus.UInt64, "Timeout",
1739
type_func = lambda td: td.total_seconds() * 1000)
1863
type_func=lambda td: td.total_seconds() * 1000)
1740
1864
extended_timeout = notifychangeproperty(
1741
1865
dbus.UInt64, "ExtendedTimeout",
1742
type_func = lambda td: td.total_seconds() * 1000)
1866
type_func=lambda td: td.total_seconds() * 1000)
1743
1867
interval = notifychangeproperty(
1744
1868
dbus.UInt64, "Interval",
1745
type_func = lambda td: td.total_seconds() * 1000)
1869
type_func=lambda td: td.total_seconds() * 1000)
1746
1870
checker_command = notifychangeproperty(dbus.String, "Checker")
1747
1871
secret = notifychangeproperty(dbus.ByteArray, "Secret",
1748
1872
invalidate_only=True)
1750
1874
del notifychangeproperty
1752
1876
def __del__(self, *args, **kwargs):
1754
1878
self.remove_from_connection()
2119
2250
class ClientHandler(socketserver.BaseRequestHandler, object):
2120
2251
"""A class to handle client connections.
2122
2253
Instantiated once for each connection to handle it.
2123
2254
Note: This will run in its own forked process."""
2125
2256
def handle(self):
2126
2257
with contextlib.closing(self.server.child_pipe) as child_pipe:
2127
2258
logger.info("TCP connection from: %s",
2128
2259
str(self.client_address))
2129
2260
logger.debug("Pipe FD: %d",
2130
2261
self.server.child_pipe.fileno())
2132
2263
session = gnutls.ClientSession(self.request)
2134
#priority = ':'.join(("NONE", "+VERS-TLS1.1",
2135
# "+AES-256-CBC", "+SHA1",
2136
# "+COMP-NULL", "+CTYPE-OPENPGP",
2265
# priority = ':'.join(("NONE", "+VERS-TLS1.1",
2266
# "+AES-256-CBC", "+SHA1",
2267
# "+COMP-NULL", "+CTYPE-OPENPGP",
2138
2269
# Use a fallback default, since this MUST be set.
2139
2270
priority = self.server.gnutls_priority
2140
2271
if priority is None:
2141
2272
priority = "NORMAL"
2142
gnutls.priority_set_direct(session._c_object, priority,
2273
gnutls.priority_set_direct(session._c_object,
2274
priority.encode("utf-8"),
2145
2277
# Start communication using the Mandos protocol
2146
2278
# Get protocol number
2147
2279
line = self.request.makefile().readline()
2273
2427
cert = cert_list[0]
2274
2428
return ctypes.string_at(cert.data, cert.size)
2431
def key_id(certificate):
2432
"Convert a certificate bytestring to a hexdigit key ID"
2433
# New GnuTLS "datum" with the public key
2434
datum = gnutls.datum_t(
2435
ctypes.cast(ctypes.c_char_p(certificate),
2436
ctypes.POINTER(ctypes.c_ubyte)),
2437
ctypes.c_uint(len(certificate)))
2438
# XXX all these need to be created in the gnutls "module"
2439
# New empty GnuTLS certificate
2440
pubkey = gnutls.pubkey_t()
2441
gnutls.pubkey_init(ctypes.byref(pubkey))
2442
# Import the raw public key into the certificate
2443
gnutls.pubkey_import(pubkey,
2444
ctypes.byref(datum),
2445
gnutls.X509_FMT_DER)
2446
# New buffer for the key ID
2447
buf = ctypes.create_string_buffer(32)
2448
buf_len = ctypes.c_size_t(len(buf))
2449
# Get the key ID from the raw public key into the buffer
2450
gnutls.pubkey_get_key_id(pubkey,
2451
gnutls.KEYID_USE_SHA256,
2452
ctypes.cast(ctypes.byref(buf),
2453
ctypes.POINTER(ctypes.c_ubyte)),
2454
ctypes.byref(buf_len))
2455
# Deinit the certificate
2456
gnutls.pubkey_deinit(pubkey)
2458
# Convert the buffer to a Python bytestring
2459
key_id = ctypes.string_at(buf, buf_len.value)
2460
# Convert the bytestring to hexadecimal notation
2461
hex_key_id = binascii.hexlify(key_id).upper()
2277
2465
def fingerprint(openpgp):
2278
2466
"Convert an OpenPGP bytestring to a hexdigit fingerprint"
2312
2501
class MultiprocessingMixIn(object):
2313
2502
"""Like socketserver.ThreadingMixIn, but with multiprocessing"""
2315
2504
def sub_process_main(self, request, address):
2317
2506
self.finish_request(request, address)
2318
2507
except Exception:
2319
2508
self.handle_error(request, address)
2320
2509
self.close_request(request)
2322
2511
def process_request(self, request, address):
2323
2512
"""Start a new process to process the request."""
2324
proc = multiprocessing.Process(target = self.sub_process_main,
2325
args = (request, address))
2513
proc = multiprocessing.Process(target=self.sub_process_main,
2514
args=(request, address))
2330
2519
class MultiprocessingMixInWithPipe(MultiprocessingMixIn, object):
2331
2520
""" adds a pipe to the MixIn """
2333
2522
def process_request(self, request, client_address):
2334
2523
"""Overrides and wraps the original process_request().
2336
2525
This function creates a new pipe in self.pipe
2338
2527
parent_pipe, self.child_pipe = multiprocessing.Pipe()
2340
2529
proc = MultiprocessingMixIn.process_request(self, request,
2341
2530
client_address)
2342
2531
self.child_pipe.close()
2343
2532
self.add_pipe(parent_pipe, proc)
2345
2534
def add_pipe(self, parent_pipe, proc):
2346
2535
"""Dummy function; override as necessary"""
2347
2536
raise NotImplementedError()
2395
2585
# socket_wrapper(), if socketfd was set.
2396
2586
socketserver.TCPServer.__init__(self, server_address,
2397
2587
RequestHandlerClass)
2399
2589
def server_bind(self):
2400
2590
"""This overrides the normal server_bind() function
2401
2591
to bind to an interface if one was specified, and also NOT to
2402
2592
bind to an address or port if they were not specified."""
2593
global SO_BINDTODEVICE
2403
2594
if self.interface is not None:
2404
2595
if SO_BINDTODEVICE is None:
2405
logger.error("SO_BINDTODEVICE does not exist;"
2406
" cannot bind to interface %s",
2410
self.socket.setsockopt(
2411
socket.SOL_SOCKET, SO_BINDTODEVICE,
2412
(self.interface + "\0").encode("utf-8"))
2413
except socket.error as error:
2414
if error.errno == errno.EPERM:
2415
logger.error("No permission to bind to"
2416
" interface %s", self.interface)
2417
elif error.errno == errno.ENOPROTOOPT:
2418
logger.error("SO_BINDTODEVICE not available;"
2419
" cannot bind to interface %s",
2421
elif error.errno == errno.ENODEV:
2422
logger.error("Interface %s does not exist,"
2423
" cannot bind", self.interface)
2596
# Fall back to a hard-coded value which seems to be
2598
logger.warning("SO_BINDTODEVICE not found, trying 25")
2599
SO_BINDTODEVICE = 25
2601
self.socket.setsockopt(
2602
socket.SOL_SOCKET, SO_BINDTODEVICE,
2603
(self.interface + "\0").encode("utf-8"))
2604
except socket.error as error:
2605
if error.errno == errno.EPERM:
2606
logger.error("No permission to bind to"
2607
" interface %s", self.interface)
2608
elif error.errno == errno.ENOPROTOOPT:
2609
logger.error("SO_BINDTODEVICE not available;"
2610
" cannot bind to interface %s",
2612
elif error.errno == errno.ENODEV:
2613
logger.error("Interface %s does not exist,"
2614
" cannot bind", self.interface)
2426
2617
# Only bind(2) the socket if we really need to.
2427
2618
if self.server_address[0] or self.server_address[1]:
2428
2619
if not self.server_address[0]:
2429
2620
if self.address_family == socket.AF_INET6:
2430
any_address = "::" # in6addr_any
2621
any_address = "::" # in6addr_any
2432
any_address = "0.0.0.0" # INADDR_ANY
2623
any_address = "0.0.0.0" # INADDR_ANY
2433
2624
self.server_address = (any_address,
2434
2625
self.server_address[1])
2435
2626
elif not self.server_address[1]:
2469
2660
self.gnutls_priority = gnutls_priority
2470
2661
IPv6_TCPServer.__init__(self, server_address,
2471
2662
RequestHandlerClass,
2472
interface = interface,
2473
use_ipv6 = use_ipv6,
2474
socketfd = socketfd)
2663
interface=interface,
2476
2667
def server_activate(self):
2477
2668
if self.enabled:
2478
2669
return socketserver.TCPServer.server_activate(self)
2480
2671
def enable(self):
2481
2672
self.enabled = True
2483
2674
def add_pipe(self, parent_pipe, proc):
2484
2675
# Call "handle_ipc" for both data and EOF events
2485
gobject.io_add_watch(
2486
2677
parent_pipe.fileno(),
2487
gobject.IO_IN | gobject.IO_HUP,
2678
GLib.IO_IN | GLib.IO_HUP,
2488
2679
functools.partial(self.handle_ipc,
2489
parent_pipe = parent_pipe,
2680
parent_pipe=parent_pipe,
2492
2683
def handle_ipc(self, source, condition,
2493
2684
parent_pipe=None,
2495
2686
client_object=None):
2496
2687
# error, or the other end of multiprocessing.Pipe has closed
2497
if condition & (gobject.IO_ERR | gobject.IO_HUP):
2688
if condition & (GLib.IO_ERR | GLib.IO_HUP):
2498
2689
# Wait for other process to exit
2502
2693
# Read a request from the child
2503
2694
request = parent_pipe.recv()
2504
2695
command = request[0]
2506
2697
if command == 'init':
2508
address = request[2]
2510
for c in self.clients.itervalues():
2511
if c.fingerprint == fpr:
2698
key_id = request[1].decode("ascii")
2699
fpr = request[2].decode("ascii")
2700
address = request[3]
2702
for c in self.clients.values():
2703
if key_id == "E3B0C44298FC1C149AFBF4C8996FB92427AE41E4649B934CA495991B7852B855":
2705
if key_id and c.key_id == key_id:
2708
if fpr and c.fingerprint == fpr:
2515
logger.info("Client not found for fingerprint: %s, ad"
2516
"dress: %s", fpr, address)
2712
logger.info("Client not found for key ID: %s, address"
2713
": %s", key_id or fpr, address)
2517
2714
if self.use_dbus:
2518
2715
# Emit D-Bus signal
2519
mandos_dbus_service.ClientNotFound(fpr,
2716
mandos_dbus_service.ClientNotFound(key_id or fpr,
2521
2718
parent_pipe.send(False)
2524
gobject.io_add_watch(
2525
2722
parent_pipe.fileno(),
2526
gobject.IO_IN | gobject.IO_HUP,
2723
GLib.IO_IN | GLib.IO_HUP,
2527
2724
functools.partial(self.handle_ipc,
2528
parent_pipe = parent_pipe,
2530
client_object = client))
2725
parent_pipe=parent_pipe,
2727
client_object=client))
2531
2728
parent_pipe.send(True)
2532
2729
# remove the old hook in favor of the new above hook on
3136
logger.debug("Did setuid/setgid to {}:{}".format(uid,
2927
3138
except OSError as error:
3139
logger.warning("Failed to setuid/setgid to {}:{}: {}"
3140
.format(uid, gid, os.strerror(error.errno)))
2928
3141
if error.errno != errno.EPERM:
2932
3145
# Enable all possible GnuTLS debugging
2934
3147
# "Use a log level over 10 to enable all debugging options."
2935
3148
# - GnuTLS manual
2936
3149
gnutls.global_set_log_level(11)
2938
3151
@gnutls.log_func
2939
3152
def debug_gnutls(level, string):
2940
3153
logger.debug("GnuTLS: %s", string[:-1])
2942
3155
gnutls.global_set_log_function(debug_gnutls)
2944
3157
# Redirect stdin so all checkers get /dev/null
2945
3158
null = os.open(os.devnull, os.O_NOCTTY | os.O_RDWR)
2946
3159
os.dup2(null, sys.stdin.fileno())
2950
3163
# Need to fork before connecting to D-Bus
2951
3164
if not foreground:
2952
3165
# Close all input and output, do double fork, etc.
2955
# multiprocessing will use threads, so before we use gobject we
2956
# need to inform gobject that threads will be used.
2957
gobject.threads_init()
3168
# multiprocessing will use threads, so before we use GLib we need
3169
# to inform GLib that threads will be used.
2959
3172
global main_loop
2960
3173
# From the Avahi example code
2961
3174
DBusGMainLoop(set_as_default=True)
2962
main_loop = gobject.MainLoop()
3175
main_loop = GLib.MainLoop()
2963
3176
bus = dbus.SystemBus()
2964
3177
# End of Avahi example code
2979
3192
protocol = avahi.PROTO_INET6 if use_ipv6 else avahi.PROTO_INET
2980
3193
service = AvahiServiceToSyslog(
2981
name = server_settings["servicename"],
2982
servicetype = "_mandos._tcp",
2983
protocol = protocol,
3194
name=server_settings["servicename"],
3195
servicetype="_mandos._tcp",
2985
3198
if server_settings["interface"]:
2986
3199
service.interface = if_nametoindex(
2987
3200
server_settings["interface"].encode("utf-8"))
2989
3202
global multiprocessing_manager
2990
3203
multiprocessing_manager = multiprocessing.Manager()
2992
3205
client_class = Client
2994
client_class = functools.partial(ClientDBus, bus = bus)
3207
client_class = functools.partial(ClientDBus, bus=bus)
2996
3209
client_settings = Client.config_parser(client_config)
2997
3210
old_client_settings = {}
2998
3211
clients_data = {}
3000
3213
# This is used to redirect stdout and stderr for checker processes
3002
wnull = open(os.devnull, "w") # A writable /dev/null
3215
wnull = open(os.devnull, "w") # A writable /dev/null
3003
3216
# Only used if server is running in foreground but not in debug
3005
3218
if debug or not foreground:
3008
3221
# Get client data and settings from last running state.
3009
3222
if server_settings["restore"]:
3011
3224
with open(stored_state_path, "rb") as stored_state:
3012
clients_data, old_client_settings = pickle.load(
3225
if sys.version_info.major == 2:
3226
clients_data, old_client_settings = pickle.load(
3229
bytes_clients_data, bytes_old_client_settings = (
3230
pickle.load(stored_state, encoding="bytes"))
3231
# Fix bytes to strings
3234
clients_data = {(key.decode("utf-8")
3235
if isinstance(key, bytes)
3238
bytes_clients_data.items()}
3239
del bytes_clients_data
3240
for key in clients_data:
3241
value = {(k.decode("utf-8")
3242
if isinstance(k, bytes) else k): v
3244
clients_data[key].items()}
3245
clients_data[key] = value
3247
value["client_structure"] = [
3249
if isinstance(s, bytes)
3251
value["client_structure"]]
3253
for k in ("name", "host"):
3254
if isinstance(value[k], bytes):
3255
value[k] = value[k].decode("utf-8")
3256
if not value.has_key("key_id"):
3257
value["key_id"] = ""
3258
elif not value.has_key("fingerprint"):
3259
value["fingerprint"] = ""
3260
# old_client_settings
3262
old_client_settings = {
3263
(key.decode("utf-8")
3264
if isinstance(key, bytes)
3267
bytes_old_client_settings.items()}
3268
del bytes_old_client_settings
3270
for value in old_client_settings.values():
3271
if isinstance(value["host"], bytes):
3272
value["host"] = (value["host"]
3014
3274
os.remove(stored_state_path)
3015
3275
except IOError as e:
3016
3276
if e.errno == errno.ENOENT:
3116
3376
pidfilename, pid)
3118
3378
del pidfilename
3120
signal.signal(signal.SIGHUP, lambda signum, frame: sys.exit())
3121
signal.signal(signal.SIGTERM, lambda signum, frame: sys.exit())
3380
for termsig in (signal.SIGHUP, signal.SIGTERM):
3381
GLib.unix_signal_add(GLib.PRIORITY_HIGH, termsig,
3382
lambda: main_loop.quit() and False)
3125
3386
@alternate_dbus_interfaces(
3126
{ "se.recompile.Mandos": "se.bsnet.fukt.Mandos" })
3387
{"se.recompile.Mandos": "se.bsnet.fukt.Mandos"})
3127
3388
class MandosDBusService(DBusObjectWithObjectManager):
3128
3389
"""A D-Bus proxy object"""
3130
3391
def __init__(self):
3131
3392
dbus.service.Object.__init__(self, bus, "/")
3133
3394
_interface = "se.recompile.Mandos"
3135
3396
@dbus.service.signal(_interface, signature="o")
3136
3397
def ClientAdded(self, objpath):
3140
3401
@dbus.service.signal(_interface, signature="ss")
3141
def ClientNotFound(self, fingerprint, address):
3402
def ClientNotFound(self, key_id, address):
3145
3406
@dbus_annotations({"org.freedesktop.DBus.Deprecated":
3147
3408
@dbus.service.signal(_interface, signature="os")
3148
3409
def ClientRemoved(self, objpath, name):
3152
3413
@dbus_annotations({"org.freedesktop.DBus.Deprecated":
3154
3415
@dbus.service.method(_interface, out_signature="ao")
3155
3416
def GetAllClients(self):
3157
3418
return dbus.Array(c.dbus_object_path for c in
3158
tcp_server.clients.itervalues())
3419
tcp_server.clients.values())
3160
3421
@dbus_annotations({"org.freedesktop.DBus.Deprecated":
3162
3423
@dbus.service.method(_interface,
3221
3482
self.ClientRemoved(client.dbus_object_path,
3224
3485
mandos_dbus_service = MandosDBusService()
3487
# Save modules to variables to exempt the modules from being
3488
# unloaded before the function registered with atexit() is run.
3489
mp = multiprocessing
3227
3493
"Cleanup function; run on exit"
3229
3495
service.cleanup()
3231
multiprocessing.active_children()
3497
mp.active_children()
3233
3499
if not (tcp_server.clients or client_settings):
3236
3502
# Store client before exiting. Secrets are encrypted with key
3237
3503
# based on what config file has. If config file is
3238
3504
# removed/edited, old secret will thus be unrecovable.
3240
3506
with PGPEngine() as pgp:
3241
for client in tcp_server.clients.itervalues():
3507
for client in tcp_server.clients.values():
3242
3508
key = client_settings[client.name]["secret"]
3243
3509
client.encrypted_secret = pgp.encrypt(client.secret,
3245
3511
client_dict = {}
3247
3513
# A list of attributes that can not be pickled
3249
exclude = { "bus", "changedstate", "secret",
3250
"checker", "server_settings" }
3515
exclude = {"bus", "changedstate", "secret",
3516
"checker", "server_settings"}
3251
3517
for name, typ in inspect.getmembers(dbus.service
3253
3519
exclude.add(name)
3255
3521
client_dict["encrypted_secret"] = (client
3256
3522
.encrypted_secret)
3257
3523
for attr in client.client_structure:
3258
3524
if attr not in exclude:
3259
3525
client_dict[attr] = getattr(client, attr)
3261
3527
clients[client.name] = client_dict
3262
3528
del client_settings[client.name]["secret"]
3265
3531
with tempfile.NamedTemporaryFile(