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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 © 2008-2018 Teddy Hogeborn
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# Copyright © 2008-2018 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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# Copyright © 2008-2014 Teddy Hogeborn
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# Copyright © 2008-2014 Björn Påhlsson
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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# 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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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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# You should have received a copy of the GNU General Public License
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# along with Mandos. If not, see <http://www.gnu.org/licenses/>.
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# along with this program. If not, see
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# <http://www.gnu.org/licenses/>.
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# Contact the authors at <mandos@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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import SocketServer as socketserver
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import ConfigParser as configparser
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import gnutls.connection
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import gnutls.library.functions
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import gnutls.library.constants
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import gnutls.library.types
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import ConfigParser as configparser
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.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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with tempfile.NamedTemporaryFile(dir=self.tempdir
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passfile.write(passphrase)
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proc = subprocess.Popen([self.gpg, '--symmetric',
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proc = subprocess.Popen(['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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with tempfile.NamedTemporaryFile(dir = self.tempdir
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passfile.write(passphrase)
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proc = subprocess.Popen([self.gpg, '--decrypt',
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proc = subprocess.Popen(['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
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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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return super(AvahiError, self).__init__(value, *args,
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class AvahiServiceError(AvahiError):
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class AvahiGroupError(AvahiError):
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class AvahiService(object):
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"""An Avahi (Zeroconf) service.
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interface: integer; avahi.IF_UNSPEC or an interface index.
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Used to optionally bind to the specified interface.
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follow_name_owner_changes=True),
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avahi.DBUS_INTERFACE_SERVER)
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self.server.connect_to_signal("StateChanged",
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self.server_state_changed)
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self.server_state_changed)
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self.server_state_changed(self.server.GetState())
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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 = 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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ret = AvahiService.rename(self, *args, **kwargs)
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syslogger.setFormatter(logging.Formatter
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('Mandos ({}) [%(process)d]:'
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' %(levelname)s: %(message)s'
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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.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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# 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_NO_CERTIFICATE_FOUND = -49
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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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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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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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# 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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if message is None and code is not None:
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message = GnuTLS.strerror(code)
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return super(GnuTLS.Error, self).__init__(
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class CertificateSecurityError(Error):
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class Credentials(object):
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self._c_object = gnutls.certificate_credentials_t()
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gnutls.certificate_allocate_credentials(
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ctypes.byref(self._c_object))
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self.type = gnutls.CRD_CERTIFICATE
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gnutls.certificate_free_credentials(self._c_object)
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class ClientSession(object):
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def __init__(self, socket, credentials=None):
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self._c_object = gnutls.session_t()
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gnutls.init(ctypes.byref(self._c_object), gnutls.CLIENT)
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gnutls.set_default_priority(self._c_object)
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gnutls.transport_set_ptr(self._c_object, socket.fileno())
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gnutls.handshake_set_private_extensions(self._c_object,
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if credentials is None:
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credentials = gnutls.Credentials()
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gnutls.credentials_set(self._c_object, credentials.type,
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ctypes.cast(credentials._c_object,
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self.credentials = credentials
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gnutls.deinit(self._c_object)
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return gnutls.handshake(self._c_object)
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def send(self, data):
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data_len -= gnutls.record_send(self._c_object,
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return gnutls.bye(self._c_object, gnutls.SHUT_RDWR)
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# Error handling functions
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def _error_code(result):
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"""A function to raise exceptions on errors, suitable
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for the 'restype' attribute on ctypes functions"""
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if result == gnutls.E_NO_CERTIFICATE_FOUND:
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raise gnutls.CertificateSecurityError(code=result)
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raise gnutls.Error(code=result)
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def _retry_on_error(result, func, arguments):
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"""A function to retry on some errors, suitable
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for the 'errcheck' attribute on ctypes functions"""
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if result not in (gnutls.E_INTERRUPTED, gnutls.E_AGAIN):
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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 = [
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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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# 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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def call_pipe(connection, # : multiprocessing.Connection
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func, *args, **kwargs):
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"""This function is meant to be called by multiprocessing.Process
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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.
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connection.send(func(*args, **kwargs))
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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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logger.info("Disabling client %s", self.name)
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if getattr(self, "disable_initiator_tag", None) is not None:
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GLib.source_remove(self.disable_initiator_tag)
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gobject.source_remove(self.disable_initiator_tag)
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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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GLib.source_remove(self.checker_initiator_tag)
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gobject.source_remove(self.checker_initiator_tag)
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self.checker_initiator_tag = None
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self.stop_checker()
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self.enabled = False
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self.send_changedstate()
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# Do not run this again if called by a GLib.timeout_add
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# Do not run this again if called by a gobject.timeout_add
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def __del__(self):
978
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def init_checker(self):
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# Schedule a new checker to be started an 'interval' from now,
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# and every interval from then on.
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if self.checker_initiator_tag is not None:
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GLib.source_remove(self.checker_initiator_tag)
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self.checker_initiator_tag = GLib.timeout_add(
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int(self.interval.total_seconds() * 1000),
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gobject.source_remove(self.checker_initiator_tag)
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self.checker_initiator_tag = (gobject.timeout_add
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.total_seconds() * 1000),
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# Schedule a disable() when 'timeout' has passed
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if self.disable_initiator_tag is not None:
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GLib.source_remove(self.disable_initiator_tag)
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self.disable_initiator_tag = GLib.timeout_add(
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int(self.timeout.total_seconds() * 1000), self.disable)
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gobject.source_remove(self.disable_initiator_tag)
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self.disable_initiator_tag = (gobject.timeout_add
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.total_seconds() * 1000),
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# Also start a new checker *right now*.
992
623
self.start_checker()
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def checker_callback(self, source, condition, connection,
625
def checker_callback(self, pid, condition, command):
996
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"""The checker has completed, so take appropriate actions."""
997
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self.checker_callback_tag = None
998
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self.checker = None
999
# Read return code from connection (see call_pipe)
1000
returncode = connection.recv()
1004
self.last_checker_status = returncode
1005
self.last_checker_signal = None
629
if os.WIFEXITED(condition):
630
self.last_checker_status = os.WEXITSTATUS(condition)
1006
631
if self.last_checker_status == 0:
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logger.info("Checker for %(name)s succeeded",
1009
634
self.checked_ok()
1011
logger.info("Checker for %(name)s failed", vars(self))
636
logger.info("Checker for %(name)s failed",
1013
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self.last_checker_status = -1
1014
self.last_checker_signal = -returncode
1015
640
logger.warning("Checker for %(name)s crashed?",
1019
643
def checked_ok(self):
1020
644
"""Assert that the client has been seen, alive and well."""
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self.last_checked_ok = datetime.datetime.utcnow()
1022
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self.last_checker_status = 0
1023
self.last_checker_signal = None
1024
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self.bump_timeout()
1026
649
def bump_timeout(self, timeout=None):
1027
650
"""Bump up the timeout for this client."""
1028
651
if timeout is None:
1029
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timeout = self.timeout
1030
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if self.disable_initiator_tag is not None:
1031
GLib.source_remove(self.disable_initiator_tag)
654
gobject.source_remove(self.disable_initiator_tag)
1032
655
self.disable_initiator_tag = None
1033
656
if getattr(self, "enabled", False):
1034
self.disable_initiator_tag = GLib.timeout_add(
1035
int(timeout.total_seconds() * 1000), self.disable)
657
self.disable_initiator_tag = (gobject.timeout_add
658
(int(timeout.total_seconds()
659
* 1000), self.disable))
1036
660
self.expires = datetime.datetime.utcnow() + timeout
1038
662
def need_approval(self):
1039
663
self.last_approval_request = datetime.datetime.utcnow()
1041
665
def start_checker(self):
1042
666
"""Start a new checker subprocess if one is not running.
1044
668
If a checker already exists, leave it running and do
1046
670
# The reason for not killing a running checker is that if we
1051
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# checkers alone, the checker would have to take more time
1052
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# than 'timeout' for the client to be disabled, which is as it
1055
if self.checker is not None and not self.checker.is_alive():
1056
logger.warning("Checker was not alive; joining")
679
# If a checker exists, make sure it is not a zombie
681
pid, status = os.waitpid(self.checker.pid, os.WNOHANG)
682
except AttributeError:
684
except OSError as error:
685
if error.errno != errno.ECHILD:
689
logger.warning("Checker was a zombie")
690
gobject.source_remove(self.checker_callback_tag)
691
self.checker_callback(pid, status,
692
self.current_checker_command)
1059
693
# Start a new checker if needed
1060
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if self.checker is None:
1061
695
# Escape attributes for the shell
1063
attr: re.escape(str(getattr(self, attr)))
1064
for attr in self.runtime_expansions}
696
escaped_attrs = { attr:
697
re.escape(str(getattr(self, attr)))
698
for attr in self.runtime_expansions }
1066
700
command = self.checker_command % escaped_attrs
1067
701
except TypeError as error:
1068
702
logger.error('Could not format string "%s"',
1069
self.checker_command,
703
self.checker_command, exc_info=error)
704
return True # Try again later
705
self.current_checker_command = command
707
logger.info("Starting checker %r for %s",
709
# We don't need to redirect stdout and stderr, since
710
# in normal mode, that is already done by daemon(),
711
# and in debug mode we don't want to. (Stdin is
712
# always replaced by /dev/null.)
713
# The exception is when not debugging but nevertheless
714
# running in the foreground; use the previously
717
if (not self.server_settings["debug"]
718
and self.server_settings["foreground"]):
719
popen_args.update({"stdout": wnull,
721
self.checker = subprocess.Popen(command,
725
except OSError as error:
726
logger.error("Failed to start subprocess",
1071
return True # Try again later
1072
self.current_checker_command = command
1073
logger.info("Starting checker %r for %s", command,
1075
# We don't need to redirect stdout and stderr, since
1076
# in normal mode, that is already done by daemon(),
1077
# and in debug mode we don't want to. (Stdin is
1078
# always replaced by /dev/null.)
1079
# The exception is when not debugging but nevertheless
1080
# running in the foreground; use the previously
1082
popen_args = {"close_fds": True,
1085
if (not self.server_settings["debug"]
1086
and self.server_settings["foreground"]):
1087
popen_args.update({"stdout": wnull,
1089
pipe = multiprocessing.Pipe(duplex=False)
1090
self.checker = multiprocessing.Process(
1092
args=(pipe[1], subprocess.call, command),
1094
self.checker.start()
1095
self.checker_callback_tag = GLib.io_add_watch(
1096
pipe[0].fileno(), GLib.IO_IN,
1097
self.checker_callback, pipe[0], command)
1098
# Re-run this periodically if run by GLib.timeout_add
729
self.checker_callback_tag = (gobject.child_watch_add
731
self.checker_callback,
733
# The checker may have completed before the gobject
734
# watch was added. Check for this.
736
pid, status = os.waitpid(self.checker.pid, os.WNOHANG)
737
except OSError as error:
738
if error.errno == errno.ECHILD:
739
# This should never happen
740
logger.error("Child process vanished",
745
gobject.source_remove(self.checker_callback_tag)
746
self.checker_callback(pid, status, command)
747
# Re-run this periodically if run by gobject.timeout_add
1101
750
def stop_checker(self):
1102
751
"""Force the checker process, if any, to stop."""
1103
752
if self.checker_callback_tag:
1104
GLib.source_remove(self.checker_callback_tag)
753
gobject.source_remove(self.checker_callback_tag)
1105
754
self.checker_callback_tag = None
1106
755
if getattr(self, "checker", None) is None:
1108
757
logger.debug("Stopping checker for %(name)s", vars(self))
1109
self.checker.terminate()
759
self.checker.terminate()
761
#if self.checker.poll() is None:
762
# self.checker.kill()
763
except OSError as error:
764
if error.errno != errno.ESRCH: # No such process
1110
766
self.checker = None
1113
def dbus_service_property(dbus_interface,
769
def dbus_service_property(dbus_interface, signature="v",
770
access="readwrite", byte_arrays=False):
1117
771
"""Decorators for marking methods of a DBusObjectWithProperties to
1118
772
become properties on the D-Bus.
1120
774
The decorated method will be called with no arguments by "Get"
1121
775
and with one argument by "Set".
1123
777
The parameters, where they are supported, are the same as
1124
778
dbus.service.method, except there is only "signature", since the
1125
779
type from Get() and the type sent to Set() is the same.
1208
class DBusObjectWithAnnotations(dbus.service.Object):
1209
"""A D-Bus object with annotations.
1211
Classes inheriting from this can use the dbus_annotations
1212
decorator to add annotations to methods or signals.
853
class DBusObjectWithProperties(dbus.service.Object):
854
"""A D-Bus object with properties.
856
Classes inheriting from this can use the dbus_service_property
857
decorator to expose methods as D-Bus properties. It exposes the
858
standard Get(), Set(), and GetAll() methods on the D-Bus.
1216
862
def _is_dbus_thing(thing):
1217
863
"""Returns a function testing if an attribute is a D-Bus thing
1219
865
If called like _is_dbus_thing("method") it returns a function
1220
866
suitable for use as predicate to inspect.getmembers().
1222
868
return lambda obj: getattr(obj, "_dbus_is_{}".format(thing),
1225
871
def _get_all_dbus_things(self, thing):
1226
872
"""Returns a generator of (name, attribute) pairs
1228
return ((getattr(athing.__get__(self), "_dbus_name", name),
874
return ((getattr(athing.__get__(self), "_dbus_name",
1229
876
athing.__get__(self))
1230
877
for cls in self.__class__.__mro__
1231
878
for name, athing in
1232
inspect.getmembers(cls, self._is_dbus_thing(thing)))
1234
@dbus.service.method(dbus.INTROSPECTABLE_IFACE,
1236
path_keyword='object_path',
1237
connection_keyword='connection')
1238
def Introspect(self, object_path, connection):
1239
"""Overloading of standard D-Bus method.
1241
Inserts annotation tags on methods and signals.
1243
xmlstring = dbus.service.Object.Introspect(self, object_path,
1246
document = xml.dom.minidom.parseString(xmlstring)
1248
for if_tag in document.getElementsByTagName("interface"):
1249
# Add annotation tags
1250
for typ in ("method", "signal"):
1251
for tag in if_tag.getElementsByTagName(typ):
1253
for name, prop in (self.
1254
_get_all_dbus_things(typ)):
1255
if (name == tag.getAttribute("name")
1256
and prop._dbus_interface
1257
== if_tag.getAttribute("name")):
1258
annots.update(getattr(
1259
prop, "_dbus_annotations", {}))
1260
for name, value in annots.items():
1261
ann_tag = document.createElement(
1263
ann_tag.setAttribute("name", name)
1264
ann_tag.setAttribute("value", value)
1265
tag.appendChild(ann_tag)
1266
# Add interface annotation tags
1267
for annotation, value in dict(
1268
itertools.chain.from_iterable(
1269
annotations().items()
1270
for name, annotations
1271
in self._get_all_dbus_things("interface")
1272
if name == if_tag.getAttribute("name")
1274
ann_tag = document.createElement("annotation")
1275
ann_tag.setAttribute("name", annotation)
1276
ann_tag.setAttribute("value", value)
1277
if_tag.appendChild(ann_tag)
1278
# Fix argument name for the Introspect method itself
1279
if (if_tag.getAttribute("name")
1280
== dbus.INTROSPECTABLE_IFACE):
1281
for cn in if_tag.getElementsByTagName("method"):
1282
if cn.getAttribute("name") == "Introspect":
1283
for arg in cn.getElementsByTagName("arg"):
1284
if (arg.getAttribute("direction")
1286
arg.setAttribute("name",
1288
xmlstring = document.toxml("utf-8")
1290
except (AttributeError, xml.dom.DOMException,
1291
xml.parsers.expat.ExpatError) as error:
1292
logger.error("Failed to override Introspection method",
1297
class DBusObjectWithProperties(DBusObjectWithAnnotations):
1298
"""A D-Bus object with properties.
1300
Classes inheriting from this can use the dbus_service_property
1301
decorator to expose methods as D-Bus properties. It exposes the
1302
standard Get(), Set(), and GetAll() methods on the D-Bus.
879
inspect.getmembers(cls,
880
self._is_dbus_thing(thing)))
1305
882
def _get_dbus_property(self, interface_name, property_name):
1306
883
"""Returns a bound method if one exists which is a D-Bus
1307
884
property with the specified name and interface.
1309
for cls in self.__class__.__mro__:
1310
for name, value in inspect.getmembers(
1311
cls, self._is_dbus_thing("property")):
886
for cls in self.__class__.__mro__:
887
for name, value in (inspect.getmembers
889
self._is_dbus_thing("property"))):
1312
890
if (value._dbus_name == property_name
1313
891
and value._dbus_interface == interface_name):
1314
892
return value.__get__(self)
1316
894
# No such property
1317
raise DBusPropertyNotFound("{}:{}.{}".format(
1318
self.dbus_object_path, interface_name, property_name))
1321
def _get_all_interface_names(cls):
1322
"""Get a sequence of all interfaces supported by an object"""
1323
return (name for name in set(getattr(getattr(x, attr),
1324
"_dbus_interface", None)
1325
for x in (inspect.getmro(cls))
1327
if name is not None)
1329
@dbus.service.method(dbus.PROPERTIES_IFACE,
895
raise DBusPropertyNotFound(self.dbus_object_path + ":"
896
+ interface_name + "."
899
@dbus.service.method(dbus.PROPERTIES_IFACE, in_signature="ss",
1331
900
out_signature="v")
1332
901
def Get(self, interface_name, property_name):
1333
902
"""Standard D-Bus property Get() method, see D-Bus standard.
1462
1042
return xmlstring
1466
dbus.OBJECT_MANAGER_IFACE
1467
except AttributeError:
1468
dbus.OBJECT_MANAGER_IFACE = "org.freedesktop.DBus.ObjectManager"
1471
class DBusObjectWithObjectManager(DBusObjectWithAnnotations):
1472
"""A D-Bus object with an ObjectManager.
1474
Classes inheriting from this exposes the standard
1475
GetManagedObjects call and the InterfacesAdded and
1476
InterfacesRemoved signals on the standard
1477
"org.freedesktop.DBus.ObjectManager" interface.
1479
Note: No signals are sent automatically; they must be sent
1482
@dbus.service.method(dbus.OBJECT_MANAGER_IFACE,
1483
out_signature="a{oa{sa{sv}}}")
1484
def GetManagedObjects(self):
1485
"""This function must be overridden"""
1486
raise NotImplementedError()
1488
@dbus.service.signal(dbus.OBJECT_MANAGER_IFACE,
1489
signature="oa{sa{sv}}")
1490
def InterfacesAdded(self, object_path, interfaces_and_properties):
1493
@dbus.service.signal(dbus.OBJECT_MANAGER_IFACE, signature="oas")
1494
def InterfacesRemoved(self, object_path, interfaces):
1497
@dbus.service.method(dbus.INTROSPECTABLE_IFACE,
1499
path_keyword='object_path',
1500
connection_keyword='connection')
1501
def Introspect(self, object_path, connection):
1502
"""Overloading of standard D-Bus method.
1504
Override return argument name of GetManagedObjects to be
1505
"objpath_interfaces_and_properties"
1507
xmlstring = DBusObjectWithAnnotations.Introspect(self,
1511
document = xml.dom.minidom.parseString(xmlstring)
1513
for if_tag in document.getElementsByTagName("interface"):
1514
# Fix argument name for the GetManagedObjects method
1515
if (if_tag.getAttribute("name")
1516
== dbus.OBJECT_MANAGER_IFACE):
1517
for cn in if_tag.getElementsByTagName("method"):
1518
if (cn.getAttribute("name")
1519
== "GetManagedObjects"):
1520
for arg in cn.getElementsByTagName("arg"):
1521
if (arg.getAttribute("direction")
1525
"objpath_interfaces"
1527
xmlstring = document.toxml("utf-8")
1529
except (AttributeError, xml.dom.DOMException,
1530
xml.parsers.expat.ExpatError) as error:
1531
logger.error("Failed to override Introspection method",
1536
1045
def datetime_to_dbus(dt, variant_level=0):
1537
1046
"""Convert a UTC datetime.datetime() to a D-Bus type."""
1539
return dbus.String("", variant_level=variant_level)
1540
return dbus.String(dt.isoformat(), variant_level=variant_level)
1048
return dbus.String("", variant_level = variant_level)
1049
return dbus.String(dt.isoformat(),
1050
variant_level=variant_level)
1543
1053
def alternate_dbus_interfaces(alt_interface_names, deprecate=True):
1574
1083
# Ignore non-D-Bus attributes, and D-Bus attributes
1575
1084
# with the wrong interface name
1576
1085
if (not hasattr(attribute, "_dbus_interface")
1577
or not attribute._dbus_interface.startswith(
1578
orig_interface_name)):
1086
or not attribute._dbus_interface
1087
.startswith(orig_interface_name)):
1580
1089
# Create an alternate D-Bus interface name based on
1581
1090
# the current name
1582
alt_interface = attribute._dbus_interface.replace(
1583
orig_interface_name, alt_interface_name)
1091
alt_interface = (attribute._dbus_interface
1092
.replace(orig_interface_name,
1093
alt_interface_name))
1584
1094
interface_names.add(alt_interface)
1585
1095
# Is this a D-Bus signal?
1586
1096
if getattr(attribute, "_dbus_is_signal", False):
1587
1097
# Extract the original non-method undecorated
1588
1098
# function by black magic
1589
if sys.version_info.major == 2:
1590
nonmethod_func = (dict(
1099
nonmethod_func = (dict(
1591
1100
zip(attribute.func_code.co_freevars,
1592
attribute.__closure__))
1593
["func"].cell_contents)
1595
nonmethod_func = (dict(
1596
zip(attribute.__code__.co_freevars,
1597
attribute.__closure__))
1598
["func"].cell_contents)
1101
attribute.__closure__))["func"]
1599
1103
# Create a new, but exactly alike, function
1600
1104
# object, and decorate it to be a new D-Bus signal
1601
1105
# with the alternate D-Bus interface name
1602
new_function = copy_function(nonmethod_func)
1603
new_function = (dbus.service.signal(
1605
attribute._dbus_signature)(new_function))
1106
new_function = (dbus.service.signal
1108
attribute._dbus_signature)
1109
(types.FunctionType(
1110
nonmethod_func.func_code,
1111
nonmethod_func.func_globals,
1112
nonmethod_func.func_name,
1113
nonmethod_func.func_defaults,
1114
nonmethod_func.func_closure)))
1606
1115
# Copy annotations, if any
1608
new_function._dbus_annotations = dict(
1609
attribute._dbus_annotations)
1117
new_function._dbus_annotations = (
1118
dict(attribute._dbus_annotations))
1610
1119
except AttributeError:
1613
1121
# Define a creator of a function to call both the
1614
1122
# original and alternate functions, so both the
1615
1123
# original and alternate signals gets sent when
1904
1413
server to mandos-client
1908
1417
# Rejected - signal
1909
1418
@dbus.service.signal(_interface, signature="s")
1910
1419
def Rejected(self, reason):
1914
1423
# NeedApproval - signal
1915
1424
@dbus.service.signal(_interface, signature="tb")
1916
1425
def NeedApproval(self, timeout, default):
1918
1427
return self.need_approval()
1922
1431
# Approve - method
1923
1432
@dbus.service.method(_interface, in_signature="b")
1924
1433
def Approve(self, value):
1925
1434
self.approve(value)
1927
1436
# CheckedOK - method
1928
1437
@dbus.service.method(_interface)
1929
1438
def CheckedOK(self):
1930
1439
self.checked_ok()
1932
1441
# Enable - method
1933
@dbus_annotations({"org.freedesktop.DBus.Deprecated": "true"})
1934
1442
@dbus.service.method(_interface)
1935
1443
def Enable(self):
1939
1447
# StartChecker - method
1940
@dbus_annotations({"org.freedesktop.DBus.Deprecated": "true"})
1941
1448
@dbus.service.method(_interface)
1942
1449
def StartChecker(self):
1944
1451
self.start_checker()
1946
1453
# Disable - method
1947
@dbus_annotations({"org.freedesktop.DBus.Deprecated": "true"})
1948
1454
@dbus.service.method(_interface)
1949
1455
def Disable(self):
1953
1459
# StopChecker - method
1954
@dbus_annotations({"org.freedesktop.DBus.Deprecated": "true"})
1955
1460
@dbus.service.method(_interface)
1956
1461
def StopChecker(self):
1957
1462
self.stop_checker()
1961
1466
# ApprovalPending - property
1962
1467
@dbus_service_property(_interface, signature="b", access="read")
1963
1468
def ApprovalPending_dbus_property(self):
1964
1469
return dbus.Boolean(bool(self.approvals_pending))
1966
1471
# ApprovedByDefault - property
1967
@dbus_service_property(_interface,
1472
@dbus_service_property(_interface, signature="b",
1969
1473
access="readwrite")
1970
1474
def ApprovedByDefault_dbus_property(self, value=None):
1971
1475
if value is None: # get
1972
1476
return dbus.Boolean(self.approved_by_default)
1973
1477
self.approved_by_default = bool(value)
1975
1479
# ApprovalDelay - property
1976
@dbus_service_property(_interface,
1480
@dbus_service_property(_interface, signature="t",
1978
1481
access="readwrite")
1979
1482
def ApprovalDelay_dbus_property(self, value=None):
1980
1483
if value is None: # get
1981
1484
return dbus.UInt64(self.approval_delay.total_seconds()
1983
1486
self.approval_delay = datetime.timedelta(0, 0, 0, value)
1985
1488
# ApprovalDuration - property
1986
@dbus_service_property(_interface,
1489
@dbus_service_property(_interface, signature="t",
1988
1490
access="readwrite")
1989
1491
def ApprovalDuration_dbus_property(self, value=None):
1990
1492
if value is None: # get
1991
1493
return dbus.UInt64(self.approval_duration.total_seconds()
1993
1495
self.approval_duration = datetime.timedelta(0, 0, 0, value)
1995
1497
# Name - property
1997
{"org.freedesktop.DBus.Property.EmitsChangedSignal": "const"})
1998
1498
@dbus_service_property(_interface, signature="s", access="read")
1999
1499
def Name_dbus_property(self):
2000
1500
return dbus.String(self.name)
2002
1502
# Fingerprint - property
2004
{"org.freedesktop.DBus.Property.EmitsChangedSignal": "const"})
2005
1503
@dbus_service_property(_interface, signature="s", access="read")
2006
1504
def Fingerprint_dbus_property(self):
2007
1505
return dbus.String(self.fingerprint)
2009
1507
# Host - property
2010
@dbus_service_property(_interface,
1508
@dbus_service_property(_interface, signature="s",
2012
1509
access="readwrite")
2013
1510
def Host_dbus_property(self, value=None):
2014
1511
if value is None: # get
2015
1512
return dbus.String(self.host)
2016
1513
self.host = str(value)
2018
1515
# Created - property
2020
{"org.freedesktop.DBus.Property.EmitsChangedSignal": "const"})
2021
1516
@dbus_service_property(_interface, signature="s", access="read")
2022
1517
def Created_dbus_property(self):
2023
1518
return datetime_to_dbus(self.created)
2025
1520
# LastEnabled - property
2026
1521
@dbus_service_property(_interface, signature="s", access="read")
2027
1522
def LastEnabled_dbus_property(self):
2028
1523
return datetime_to_dbus(self.last_enabled)
2030
1525
# Enabled - property
2031
@dbus_service_property(_interface,
1526
@dbus_service_property(_interface, signature="b",
2033
1527
access="readwrite")
2034
1528
def Enabled_dbus_property(self, value=None):
2035
1529
if value is None: # get
2305
1794
delay -= time2 - time
2308
session.send(client.secret)
2309
except gnutls.Error as error:
2310
logger.warning("gnutls send failed",
1797
while sent_size < len(client.secret):
1799
sent = session.send(client.secret[sent_size:])
1800
except gnutls.errors.GNUTLSError as error:
1801
logger.warning("gnutls send failed",
1804
logger.debug("Sent: %d, remaining: %d",
1805
sent, len(client.secret)
1806
- (sent_size + sent))
2314
1809
logger.info("Sending secret to %s", client.name)
2315
1810
# bump the timeout using extended_timeout
2316
1811
client.bump_timeout(client.extended_timeout)
2317
1812
if self.server.use_dbus:
2318
1813
# Emit D-Bus signal
2319
1814
client.GotSecret()
2322
1817
if approval_required:
2323
1818
client.approvals_pending -= 1
2326
except gnutls.Error as error:
1821
except gnutls.errors.GNUTLSError as error:
2327
1822
logger.warning("GnuTLS bye failed",
2328
1823
exc_info=error)
2331
1826
def peer_certificate(session):
2332
1827
"Return the peer's OpenPGP certificate as a bytestring"
2333
1828
# If not an OpenPGP certificate...
2334
if (gnutls.certificate_type_get(session._c_object)
2335
!= gnutls.CRT_OPENPGP):
2336
# ...return invalid data
1829
if (gnutls.library.functions
1830
.gnutls_certificate_type_get(session._c_object)
1831
!= gnutls.library.constants.GNUTLS_CRT_OPENPGP):
1832
# ...do the normal thing
1833
return session.peer_certificate
2338
1834
list_size = ctypes.c_uint(1)
2339
cert_list = (gnutls.certificate_get_peers
1835
cert_list = (gnutls.library.functions
1836
.gnutls_certificate_get_peers
2340
1837
(session._c_object, ctypes.byref(list_size)))
2341
1838
if not bool(cert_list) and list_size.value != 0:
2342
raise gnutls.Error("error getting peer certificate")
1839
raise gnutls.errors.GNUTLSError("error getting peer"
2343
1841
if list_size.value == 0:
2345
1843
cert = cert_list[0]
2346
1844
return ctypes.string_at(cert.data, cert.size)
2349
1847
def fingerprint(openpgp):
2350
1848
"Convert an OpenPGP bytestring to a hexdigit fingerprint"
2351
1849
# New GnuTLS "datum" with the OpenPGP public key
2352
datum = gnutls.datum_t(
2353
ctypes.cast(ctypes.c_char_p(openpgp),
2354
ctypes.POINTER(ctypes.c_ubyte)),
2355
ctypes.c_uint(len(openpgp)))
1850
datum = (gnutls.library.types
1851
.gnutls_datum_t(ctypes.cast(ctypes.c_char_p(openpgp),
1854
ctypes.c_uint(len(openpgp))))
2356
1855
# New empty GnuTLS certificate
2357
crt = gnutls.openpgp_crt_t()
2358
gnutls.openpgp_crt_init(ctypes.byref(crt))
1856
crt = gnutls.library.types.gnutls_openpgp_crt_t()
1857
(gnutls.library.functions
1858
.gnutls_openpgp_crt_init(ctypes.byref(crt)))
2359
1859
# Import the OpenPGP public key into the certificate
2360
gnutls.openpgp_crt_import(crt, ctypes.byref(datum),
2361
gnutls.OPENPGP_FMT_RAW)
1860
(gnutls.library.functions
1861
.gnutls_openpgp_crt_import(crt, ctypes.byref(datum),
1862
gnutls.library.constants
1863
.GNUTLS_OPENPGP_FMT_RAW))
2362
1864
# Verify the self signature in the key
2363
1865
crtverify = ctypes.c_uint()
2364
gnutls.openpgp_crt_verify_self(crt, 0,
2365
ctypes.byref(crtverify))
1866
(gnutls.library.functions
1867
.gnutls_openpgp_crt_verify_self(crt, 0,
1868
ctypes.byref(crtverify)))
2366
1869
if crtverify.value != 0:
2367
gnutls.openpgp_crt_deinit(crt)
2368
raise gnutls.CertificateSecurityError(code
1870
gnutls.library.functions.gnutls_openpgp_crt_deinit(crt)
1871
raise (gnutls.errors.CertificateSecurityError
2370
1873
# New buffer for the fingerprint
2371
1874
buf = ctypes.create_string_buffer(20)
2372
1875
buf_len = ctypes.c_size_t()
2373
1876
# Get the fingerprint from the certificate into the buffer
2374
gnutls.openpgp_crt_get_fingerprint(crt, ctypes.byref(buf),
2375
ctypes.byref(buf_len))
1877
(gnutls.library.functions
1878
.gnutls_openpgp_crt_get_fingerprint(crt, ctypes.byref(buf),
1879
ctypes.byref(buf_len)))
2376
1880
# Deinit the certificate
2377
gnutls.openpgp_crt_deinit(crt)
1881
gnutls.library.functions.gnutls_openpgp_crt_deinit(crt)
2378
1882
# Convert the buffer to a Python bytestring
2379
1883
fpr = ctypes.string_at(buf, buf_len.value)
2380
1884
# Convert the bytestring to hexadecimal notation
2469
1967
# socket_wrapper(), if socketfd was set.
2470
1968
socketserver.TCPServer.__init__(self, server_address,
2471
1969
RequestHandlerClass)
2473
1971
def server_bind(self):
2474
1972
"""This overrides the normal server_bind() function
2475
1973
to bind to an interface if one was specified, and also NOT to
2476
1974
bind to an address or port if they were not specified."""
2477
global SO_BINDTODEVICE
2478
1975
if self.interface is not None:
2479
1976
if SO_BINDTODEVICE is None:
2480
# Fall back to a hard-coded value which seems to be
2482
logger.warning("SO_BINDTODEVICE not found, trying 25")
2483
SO_BINDTODEVICE = 25
2485
self.socket.setsockopt(
2486
socket.SOL_SOCKET, SO_BINDTODEVICE,
2487
(self.interface + "\0").encode("utf-8"))
2488
except socket.error as error:
2489
if error.errno == errno.EPERM:
2490
logger.error("No permission to bind to"
2491
" interface %s", self.interface)
2492
elif error.errno == errno.ENOPROTOOPT:
2493
logger.error("SO_BINDTODEVICE not available;"
2494
" cannot bind to interface %s",
2496
elif error.errno == errno.ENODEV:
2497
logger.error("Interface %s does not exist,"
2498
" cannot bind", self.interface)
1977
logger.error("SO_BINDTODEVICE does not exist;"
1978
" cannot bind to interface %s",
1982
self.socket.setsockopt(socket.SOL_SOCKET,
1984
(self.interface + "\0")
1986
except socket.error as error:
1987
if error.errno == errno.EPERM:
1988
logger.error("No permission to bind to"
1989
" interface %s", self.interface)
1990
elif error.errno == errno.ENOPROTOOPT:
1991
logger.error("SO_BINDTODEVICE not available;"
1992
" cannot bind to interface %s",
1994
elif error.errno == errno.ENODEV:
1995
logger.error("Interface %s does not exist,"
1996
" cannot bind", self.interface)
2501
1999
# Only bind(2) the socket if we really need to.
2502
2000
if self.server_address[0] or self.server_address[1]:
2503
2001
if not self.server_address[0]:
2504
2002
if self.address_family == socket.AF_INET6:
2505
any_address = "::" # in6addr_any
2003
any_address = "::" # in6addr_any
2507
any_address = "0.0.0.0" # INADDR_ANY
2005
any_address = "0.0.0.0" # INADDR_ANY
2508
2006
self.server_address = (any_address,
2509
2007
self.server_address[1])
2510
2008
elif not self.server_address[1]:
2511
self.server_address = (self.server_address[0], 0)
2009
self.server_address = (self.server_address[0],
2512
2011
# if self.interface:
2513
2012
# self.server_address = (self.server_address[0],
2953
2445
level = getattr(logging, debuglevel.upper())
2954
2446
initlogger(debug, level)
2956
2448
if server_settings["servicename"] != "Mandos":
2957
syslogger.setFormatter(
2958
logging.Formatter('Mandos ({}) [%(process)d]:'
2959
' %(levelname)s: %(message)s'.format(
2960
server_settings["servicename"])))
2449
syslogger.setFormatter(logging.Formatter
2450
('Mandos ({}) [%(process)d]:'
2451
' %(levelname)s: %(message)s'
2452
.format(server_settings
2962
2455
# Parse config file with clients
2963
2456
client_config = configparser.SafeConfigParser(Client
2964
2457
.client_defaults)
2965
2458
client_config.read(os.path.join(server_settings["configdir"],
2966
2459
"clients.conf"))
2968
2461
global mandos_dbus_service
2969
2462
mandos_dbus_service = None
2971
2464
socketfd = None
2972
2465
if server_settings["socket"] != "":
2973
2466
socketfd = server_settings["socket"]
2974
tcp_server = MandosServer(
2975
(server_settings["address"], server_settings["port"]),
2977
interface=(server_settings["interface"] or None),
2979
gnutls_priority=server_settings["priority"],
2467
tcp_server = MandosServer((server_settings["address"],
2468
server_settings["port"]),
2470
interface=(server_settings["interface"]
2474
server_settings["priority"],
2982
2477
if not foreground:
2983
2478
pidfilename = "/run/mandos.pid"
2984
2479
if not os.path.isdir("/run/."):
2985
2480
pidfilename = "/var/run/mandos.pid"
2988
pidfile = codecs.open(pidfilename, "w", encoding="utf-8")
2483
pidfile = open(pidfilename, "w")
2989
2484
except IOError as e:
2990
2485
logger.error("Could not open file %r", pidfilename,
2993
for name, group in (("_mandos", "_mandos"),
2994
("mandos", "mandos"),
2995
("nobody", "nogroup")):
2488
for name in ("_mandos", "mandos", "nobody"):
2997
2490
uid = pwd.getpwnam(name).pw_uid
2998
gid = pwd.getpwnam(group).pw_gid
2491
gid = pwd.getpwnam(name).pw_gid
3000
2493
except KeyError:
3009
logger.debug("Did setuid/setgid to {}:{}".format(uid,
3011
2501
except OSError as error:
3012
logger.warning("Failed to setuid/setgid to {}:{}: {}"
3013
.format(uid, gid, os.strerror(error.errno)))
3014
2502
if error.errno != errno.EPERM:
3018
2506
# Enable all possible GnuTLS debugging
3020
2508
# "Use a log level over 10 to enable all debugging options."
3021
2509
# - GnuTLS manual
3022
gnutls.global_set_log_level(11)
2510
gnutls.library.functions.gnutls_global_set_log_level(11)
2512
@gnutls.library.types.gnutls_log_func
3025
2513
def debug_gnutls(level, string):
3026
2514
logger.debug("GnuTLS: %s", string[:-1])
3028
gnutls.global_set_log_function(debug_gnutls)
2516
(gnutls.library.functions
2517
.gnutls_global_set_log_function(debug_gnutls))
3030
2519
# Redirect stdin so all checkers get /dev/null
3031
2520
null = os.open(os.devnull, os.O_NOCTTY | os.O_RDWR)
3032
2521
os.dup2(null, sys.stdin.fileno())
3036
2525
# Need to fork before connecting to D-Bus
3037
2526
if not foreground:
3038
2527
# Close all input and output, do double fork, etc.
3041
# multiprocessing will use threads, so before we use GLib we need
3042
# to inform GLib that threads will be used.
2530
# multiprocessing will use threads, so before we use gobject we
2531
# need to inform gobject that threads will be used.
2532
gobject.threads_init()
3045
2534
global main_loop
3046
2535
# From the Avahi example code
3047
2536
DBusGMainLoop(set_as_default=True)
3048
main_loop = GLib.MainLoop()
2537
main_loop = gobject.MainLoop()
3049
2538
bus = dbus.SystemBus()
3050
2539
# End of Avahi example code
3053
2542
bus_name = dbus.service.BusName("se.recompile.Mandos",
3056
old_bus_name = dbus.service.BusName(
3057
"se.bsnet.fukt.Mandos", bus,
3059
except dbus.exceptions.DBusException as e:
2543
bus, do_not_queue=True)
2544
old_bus_name = (dbus.service.BusName
2545
("se.bsnet.fukt.Mandos", bus,
2547
except dbus.exceptions.NameExistsException as e:
3060
2548
logger.error("Disabling D-Bus:", exc_info=e)
3061
2549
use_dbus = False
3062
2550
server_settings["use_dbus"] = False
3063
2551
tcp_server.use_dbus = False
3065
2553
protocol = avahi.PROTO_INET6 if use_ipv6 else avahi.PROTO_INET
3066
service = AvahiServiceToSyslog(
3067
name=server_settings["servicename"],
3068
servicetype="_mandos._tcp",
2554
service = AvahiServiceToSyslog(name =
2555
server_settings["servicename"],
2556
servicetype = "_mandos._tcp",
2557
protocol = protocol, bus = bus)
3071
2558
if server_settings["interface"]:
3072
service.interface = if_nametoindex(
3073
server_settings["interface"].encode("utf-8"))
2559
service.interface = (if_nametoindex
2560
(server_settings["interface"]
3075
2563
global multiprocessing_manager
3076
2564
multiprocessing_manager = multiprocessing.Manager()
3078
2566
client_class = Client
3080
client_class = functools.partial(ClientDBus, bus=bus)
2568
client_class = functools.partial(ClientDBus, bus = bus)
3082
2570
client_settings = Client.config_parser(client_config)
3083
2571
old_client_settings = {}
3084
2572
clients_data = {}
3086
2574
# This is used to redirect stdout and stderr for checker processes
3088
wnull = open(os.devnull, "w") # A writable /dev/null
2576
wnull = open(os.devnull, "w") # A writable /dev/null
3089
2577
# Only used if server is running in foreground but not in debug
3091
2579
if debug or not foreground:
3094
2582
# Get client data and settings from last running state.
3095
2583
if server_settings["restore"]:
3097
2585
with open(stored_state_path, "rb") as stored_state:
3098
if sys.version_info.major == 2:
3099
clients_data, old_client_settings = pickle.load(
3102
bytes_clients_data, bytes_old_client_settings = (
3103
pickle.load(stored_state, encoding="bytes"))
3104
# Fix bytes to strings
3107
clients_data = {(key.decode("utf-8")
3108
if isinstance(key, bytes)
3111
bytes_clients_data.items()}
3112
del bytes_clients_data
3113
for key in clients_data:
3114
value = {(k.decode("utf-8")
3115
if isinstance(k, bytes) else k): v
3117
clients_data[key].items()}
3118
clients_data[key] = value
3120
value["client_structure"] = [
3122
if isinstance(s, bytes)
3124
value["client_structure"]]
3126
for k in ("name", "host"):
3127
if isinstance(value[k], bytes):
3128
value[k] = value[k].decode("utf-8")
3129
# old_client_settings
3131
old_client_settings = {
3132
(key.decode("utf-8")
3133
if isinstance(key, bytes)
3136
bytes_old_client_settings.items()}
3137
del bytes_old_client_settings
3139
for value in old_client_settings.values():
3140
if isinstance(value["host"], bytes):
3141
value["host"] = (value["host"]
2586
clients_data, old_client_settings = (pickle.load
3143
2588
os.remove(stored_state_path)
3144
2589
except IOError as e:
3145
2590
if e.errno == errno.ENOENT:
3146
logger.warning("Could not load persistent state:"
3147
" {}".format(os.strerror(e.errno)))
2591
logger.warning("Could not load persistent state: {}"
2592
.format(os.strerror(e.errno)))
3149
2594
logger.critical("Could not load persistent state:",
3152
2597
except EOFError as e:
3153
2598
logger.warning("Could not load persistent state: "
2599
"EOFError:", exc_info=e)
3157
2601
with PGPEngine() as pgp:
3158
2602
for client_name, client in clients_data.items():
3159
2603
# Skip removed clients
3160
2604
if client_name not in client_settings:
3163
2607
# Decide which value to use after restoring saved state.
3164
2608
# We have three different values: Old config file,
3165
2609
# new config file, and saved state.
3223
2667
for client_name in (set(client_settings)
3224
2668
- set(old_client_settings)):
3225
2669
clients_data[client_name] = client_settings[client_name]
3227
2671
# Create all client objects
3228
2672
for client_name, client in clients_data.items():
3229
2673
tcp_server.clients[client_name] = client_class(
3232
server_settings=server_settings)
2674
name = client_name, settings = client,
2675
server_settings = server_settings)
3234
2677
if not tcp_server.clients:
3235
2678
logger.warning("No clients defined")
3237
2680
if not foreground:
3238
2681
if pidfile is not None:
3242
print(pid, file=pidfile)
2685
pidfile.write("{}\n".format(pid).encode("utf-8"))
3243
2686
except IOError:
3244
2687
logger.error("Could not write to file %r with PID %d",
3245
2688
pidfilename, pid)
3247
2690
del pidfilename
3249
for termsig in (signal.SIGHUP, signal.SIGTERM):
3250
GLib.unix_signal_add(GLib.PRIORITY_HIGH, termsig,
3251
lambda: main_loop.quit() and False)
2692
signal.signal(signal.SIGHUP, lambda signum, frame: sys.exit())
2693
signal.signal(signal.SIGTERM, lambda signum, frame: sys.exit())
3255
@alternate_dbus_interfaces(
3256
{"se.recompile.Mandos": "se.bsnet.fukt.Mandos"})
3257
class MandosDBusService(DBusObjectWithObjectManager):
2696
@alternate_dbus_interfaces({"se.recompile.Mandos":
2697
"se.bsnet.fukt.Mandos"})
2698
class MandosDBusService(DBusObjectWithProperties):
3258
2699
"""A D-Bus proxy object"""
3260
2700
def __init__(self):
3261
2701
dbus.service.Object.__init__(self, bus, "/")
3263
2702
_interface = "se.recompile.Mandos"
2704
@dbus_interface_annotations(_interface)
2706
return { "org.freedesktop.DBus.Property"
2707
".EmitsChangedSignal":
3265
2710
@dbus.service.signal(_interface, signature="o")
3266
2711
def ClientAdded(self, objpath):
3270
2715
@dbus.service.signal(_interface, signature="ss")
3271
2716
def ClientNotFound(self, fingerprint, address):
3275
@dbus_annotations({"org.freedesktop.DBus.Deprecated":
3277
2720
@dbus.service.signal(_interface, signature="os")
3278
2721
def ClientRemoved(self, objpath, name):
3282
@dbus_annotations({"org.freedesktop.DBus.Deprecated":
3284
2725
@dbus.service.method(_interface, out_signature="ao")
3285
2726
def GetAllClients(self):
3287
return dbus.Array(c.dbus_object_path for c in
3288
tcp_server.clients.values())
3290
@dbus_annotations({"org.freedesktop.DBus.Deprecated":
2728
return dbus.Array(c.dbus_object_path
2730
tcp_server.clients.itervalues())
3292
2732
@dbus.service.method(_interface,
3293
2733
out_signature="a{oa{sv}}")
3294
2734
def GetAllClientsWithProperties(self):
3296
2736
return dbus.Dictionary(
3297
{c.dbus_object_path: c.GetAll(
3298
"se.recompile.Mandos.Client")
3299
for c in tcp_server.clients.values()},
2737
{ c.dbus_object_path: c.GetAll("")
2738
for c in tcp_server.clients.itervalues() },
3300
2739
signature="oa{sv}")
3302
2741
@dbus.service.method(_interface, in_signature="o")
3303
2742
def RemoveClient(self, object_path):
3305
for c in tcp_server.clients.values():
2744
for c in tcp_server.clients.itervalues():
3306
2745
if c.dbus_object_path == object_path:
3307
2746
del tcp_server.clients[c.name]
3308
2747
c.remove_from_connection()
3309
# Don't signal the disabling
2748
# Don't signal anything except ClientRemoved
3310
2749
c.disable(quiet=True)
3311
# Emit D-Bus signal for removal
3312
self.client_removed_signal(c)
2751
self.ClientRemoved(object_path, c.name)
3314
2753
raise KeyError(object_path)
3318
@dbus.service.method(dbus.OBJECT_MANAGER_IFACE,
3319
out_signature="a{oa{sa{sv}}}")
3320
def GetManagedObjects(self):
3322
return dbus.Dictionary(
3323
{client.dbus_object_path:
3325
{interface: client.GetAll(interface)
3327
client._get_all_interface_names()})
3328
for client in tcp_server.clients.values()})
3330
def client_added_signal(self, client):
3331
"""Send the new standard signal and the old signal"""
3333
# New standard signal
3334
self.InterfacesAdded(
3335
client.dbus_object_path,
3337
{interface: client.GetAll(interface)
3339
client._get_all_interface_names()}))
3341
self.ClientAdded(client.dbus_object_path)
3343
def client_removed_signal(self, client):
3344
"""Send the new standard signal and the old signal"""
3346
# New standard signal
3347
self.InterfacesRemoved(
3348
client.dbus_object_path,
3349
client._get_all_interface_names())
3351
self.ClientRemoved(client.dbus_object_path,
3354
2757
mandos_dbus_service = MandosDBusService()
3356
# Save modules to variables to exempt the modules from being
3357
# unloaded before the function registered with atexit() is run.
3358
mp = multiprocessing
3362
2760
"Cleanup function; run on exit"
3364
2762
service.cleanup()
3366
mp.active_children()
2764
multiprocessing.active_children()
3368
2766
if not (tcp_server.clients or client_settings):
3371
2769
# Store client before exiting. Secrets are encrypted with key
3372
2770
# based on what config file has. If config file is
3373
2771
# removed/edited, old secret will thus be unrecovable.
3375
2773
with PGPEngine() as pgp:
3376
for client in tcp_server.clients.values():
2774
for client in tcp_server.clients.itervalues():
3377
2775
key = client_settings[client.name]["secret"]
3378
2776
client.encrypted_secret = pgp.encrypt(client.secret,
3380
2778
client_dict = {}
3382
2780
# A list of attributes that can not be pickled
3384
exclude = {"bus", "changedstate", "secret",
3385
"checker", "server_settings"}
3386
for name, typ in inspect.getmembers(dbus.service
2782
exclude = { "bus", "changedstate", "secret",
2783
"checker", "server_settings" }
2784
for name, typ in (inspect.getmembers
2785
(dbus.service.Object)):
3388
2786
exclude.add(name)
3390
2788
client_dict["encrypted_secret"] = (client
3391
2789
.encrypted_secret)
3392
2790
for attr in client.client_structure:
3393
2791
if attr not in exclude:
3394
2792
client_dict[attr] = getattr(client, attr)
3396
2794
clients[client.name] = client_dict
3397
2795
del client_settings[client.name]["secret"]
3400
with tempfile.NamedTemporaryFile(
3404
dir=os.path.dirname(stored_state_path),
3405
delete=False) as stored_state:
3406
pickle.dump((clients, client_settings), stored_state,
3408
tempname = stored_state.name
2798
with (tempfile.NamedTemporaryFile
2799
(mode='wb', suffix=".pickle", prefix='clients-',
2800
dir=os.path.dirname(stored_state_path),
2801
delete=False)) as stored_state:
2802
pickle.dump((clients, client_settings), stored_state)
2803
tempname=stored_state.name
3409
2804
os.rename(tempname, stored_state_path)
3410
2805
except (IOError, OSError) as e: