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# -*- mode: python; coding: utf-8 -*-
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# -*- mode: python; after-save-hook: (lambda () (let ((command (if (fboundp 'file-local-name) (file-local-name (buffer-file-name)) (or (file-remote-p (buffer-file-name) 'localname) (buffer-file-name))))) (if (= (progn (if (get-buffer "*Test*") (kill-buffer "*Test*")) (process-file-shell-command (format "%s --check" (shell-quote-argument command)) nil "*Test*")) 0) (let ((w (get-buffer-window "*Test*"))) (if w (delete-window w))) (progn (with-current-buffer "*Test*" (compilation-mode)) (display-buffer "*Test*" '(display-buffer-in-side-window)))))); 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 © 2008-2014 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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# 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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import SocketServer as socketserver
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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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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(dir=self.tempdir
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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(dir = self.tempdir
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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', '--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
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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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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(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 = AvahiService.rename(self)
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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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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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class Client(object):
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# Pretend that we have a GnuTLS module
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"""This isn't so much a class as it is a module-like namespace."""
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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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# 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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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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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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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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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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def __init__(self, socket, credentials=None):
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self._c_object = gnutls.session_t()
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gnutls_flags = gnutls.CLIENT
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if gnutls.check_version(b"3.5.6"):
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gnutls_flags |= gnutls.NO_TICKETS
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gnutls_flags |= gnutls.ENABLE_RAWPK
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gnutls.init(ctypes.byref(self._c_object), gnutls_flags)
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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
741
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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_need_version = b"3.3.0"
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if check_version(_need_version) is None:
747
raise self.Error("Needs GnuTLS {} or later"
748
.format(_need_version))
750
_tls_rawpk_version = b"3.6.6"
751
has_rawpk = bool(check_version(_tls_rawpk_version))
755
class pubkey_st(ctypes.Structure):
757
pubkey_t = ctypes.POINTER(pubkey_st)
759
x509_crt_fmt_t = ctypes.c_int
761
# All the function declarations below are from gnutls/abstract.h
762
pubkey_init = _library.gnutls_pubkey_init
763
pubkey_init.argtypes = [ctypes.POINTER(pubkey_t)]
764
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,
773
ctypes.POINTER(ctypes.c_ubyte),
774
ctypes.POINTER(ctypes.c_size_t)]
775
pubkey_get_key_id.restype = _error_code
777
pubkey_deinit = _library.gnutls_pubkey_deinit
778
pubkey_deinit.argtypes = [pubkey_t]
779
pubkey_deinit.restype = None
781
# All the function declarations below are from gnutls/openpgp.h
783
openpgp_crt_init = _library.gnutls_openpgp_crt_init
784
openpgp_crt_init.argtypes = [ctypes.POINTER(openpgp_crt_t)]
785
openpgp_crt_init.restype = _error_code
787
openpgp_crt_import = _library.gnutls_openpgp_crt_import
788
openpgp_crt_import.argtypes = [openpgp_crt_t,
789
ctypes.POINTER(datum_t),
791
openpgp_crt_import.restype = _error_code
793
openpgp_crt_verify_self = _library.gnutls_openpgp_crt_verify_self
794
openpgp_crt_verify_self.argtypes = [openpgp_crt_t, ctypes.c_uint,
795
ctypes.POINTER(ctypes.c_uint)]
796
openpgp_crt_verify_self.restype = _error_code
798
openpgp_crt_deinit = _library.gnutls_openpgp_crt_deinit
799
openpgp_crt_deinit.argtypes = [openpgp_crt_t]
800
openpgp_crt_deinit.restype = None
802
openpgp_crt_get_fingerprint = (
803
_library.gnutls_openpgp_crt_get_fingerprint)
804
openpgp_crt_get_fingerprint.argtypes = [openpgp_crt_t,
808
openpgp_crt_get_fingerprint.restype = _error_code
810
if check_version(b"3.6.4"):
811
certificate_type_get2 = _library.gnutls_certificate_type_get2
812
certificate_type_get2.argtypes = [session_t, ctypes.c_int]
813
certificate_type_get2.restype = _error_code
815
# Remove non-public functions
816
del _error_code, _retry_on_error
819
def call_pipe(connection, # : multiprocessing.Connection
820
func, *args, **kwargs):
821
"""This function is meant to be called by multiprocessing.Process
823
This function runs func(*args, **kwargs), and writes the resulting
824
return value on the provided multiprocessing.Connection.
826
connection.send(func(*args, **kwargs))
405
831
"""A representation of a client host served by this server.
408
834
approved: bool(); 'None' if not yet approved/disapproved
409
835
approval_delay: datetime.timedelta(); Time to wait for approval
410
836
approval_duration: datetime.timedelta(); Duration of one approval
411
checker: subprocess.Popen(); a running checker process used
412
to see if the client lives.
413
'None' if no process is running.
414
checker_callback_tag: a gobject event source tag, or None
837
checker: multiprocessing.Process(); a running checker process used
838
to see if the client lives. 'None' if no process is
840
checker_callback_tag: a GLib event source tag, or None
415
841
checker_command: string; External command which is run to check
416
842
if client lives. %() expansions are done at
417
843
runtime with vars(self) as dict, so that for
418
844
instance %(name)s can be used in the command.
419
checker_initiator_tag: a gobject event source tag, or None
845
checker_initiator_tag: a GLib event source tag, or None
420
846
created: datetime.datetime(); (UTC) object creation
421
847
client_structure: Object describing what attributes a client has
422
848
and is used for storing the client at exit
423
849
current_checker_command: string; current running checker_command
424
disable_initiator_tag: a gobject event source tag, or None
850
disable_initiator_tag: a GLib event source tag, or None
426
852
fingerprint: string (40 or 32 hexadecimal digits); used to
427
uniquely identify the client
853
uniquely identify an OpenPGP client
854
key_id: string (64 hexadecimal digits); used to uniquely identify
855
a client using raw public keys
428
856
host: string; available for use by the checker command
429
857
interval: datetime.timedelta(); How often to start a new checker
430
858
last_approval_request: datetime.datetime(); (UTC) or None
582
1015
logger.info("Disabling client %s", self.name)
583
1016
if getattr(self, "disable_initiator_tag", None) is not None:
584
gobject.source_remove(self.disable_initiator_tag)
1017
GLib.source_remove(self.disable_initiator_tag)
585
1018
self.disable_initiator_tag = None
586
1019
self.expires = None
587
1020
if getattr(self, "checker_initiator_tag", None) is not None:
588
gobject.source_remove(self.checker_initiator_tag)
1021
GLib.source_remove(self.checker_initiator_tag)
589
1022
self.checker_initiator_tag = None
590
1023
self.stop_checker()
591
1024
self.enabled = False
593
1026
self.send_changedstate()
594
# Do not run this again if called by a gobject.timeout_add
1027
# Do not run this again if called by a GLib.timeout_add
597
1030
def __del__(self):
600
1033
def init_checker(self):
601
1034
# Schedule a new checker to be started an 'interval' from now,
602
1035
# and every interval from then on.
603
1036
if self.checker_initiator_tag is not None:
604
gobject.source_remove(self.checker_initiator_tag)
605
self.checker_initiator_tag = (gobject.timeout_add
607
.total_seconds() * 1000),
1037
GLib.source_remove(self.checker_initiator_tag)
1038
self.checker_initiator_tag = GLib.timeout_add(
1039
random.randrange(int(self.interval.total_seconds() * 1000
609
1042
# Schedule a disable() when 'timeout' has passed
610
1043
if self.disable_initiator_tag is not None:
611
gobject.source_remove(self.disable_initiator_tag)
612
self.disable_initiator_tag = (gobject.timeout_add
614
.total_seconds() * 1000),
1044
GLib.source_remove(self.disable_initiator_tag)
1045
self.disable_initiator_tag = GLib.timeout_add(
1046
int(self.timeout.total_seconds() * 1000), self.disable)
616
1047
# Also start a new checker *right now*.
617
1048
self.start_checker()
619
def checker_callback(self, pid, condition, command):
1050
def checker_callback(self, source, condition, connection,
620
1052
"""The checker has completed, so take appropriate actions."""
1053
# Read return code from connection (see call_pipe)
1054
returncode = connection.recv()
1056
if self.checker is not None:
621
1058
self.checker_callback_tag = None
622
1059
self.checker = None
623
if os.WIFEXITED(condition):
624
self.last_checker_status = os.WEXITSTATUS(condition)
1062
self.last_checker_status = returncode
1063
self.last_checker_signal = None
625
1064
if self.last_checker_status == 0:
626
1065
logger.info("Checker for %(name)s succeeded",
628
1067
self.checked_ok()
630
logger.info("Checker for %(name)s failed",
1069
logger.info("Checker for %(name)s failed", vars(self))
633
1071
self.last_checker_status = -1
1072
self.last_checker_signal = -returncode
634
1073
logger.warning("Checker for %(name)s crashed?",
637
1077
def checked_ok(self):
638
1078
"""Assert that the client has been seen, alive and well."""
639
1079
self.last_checked_ok = datetime.datetime.utcnow()
640
1080
self.last_checker_status = 0
1081
self.last_checker_signal = None
641
1082
self.bump_timeout()
643
1084
def bump_timeout(self, timeout=None):
644
1085
"""Bump up the timeout for this client."""
645
1086
if timeout is None:
646
1087
timeout = self.timeout
647
1088
if self.disable_initiator_tag is not None:
648
gobject.source_remove(self.disable_initiator_tag)
1089
GLib.source_remove(self.disable_initiator_tag)
649
1090
self.disable_initiator_tag = None
650
1091
if getattr(self, "enabled", False):
651
self.disable_initiator_tag = (gobject.timeout_add
652
(int(timeout.total_seconds()
653
* 1000), self.disable))
1092
self.disable_initiator_tag = GLib.timeout_add(
1093
int(timeout.total_seconds() * 1000), self.disable)
654
1094
self.expires = datetime.datetime.utcnow() + timeout
656
1096
def need_approval(self):
657
1097
self.last_approval_request = datetime.datetime.utcnow()
659
1099
def start_checker(self):
660
1100
"""Start a new checker subprocess if one is not running.
662
1102
If a checker already exists, leave it running and do
664
1104
# The reason for not killing a running checker is that if we
669
1109
# checkers alone, the checker would have to take more time
670
1110
# than 'timeout' for the client to be disabled, which is as it
673
# If a checker exists, make sure it is not a zombie
675
pid, status = os.waitpid(self.checker.pid, os.WNOHANG)
676
except AttributeError:
678
except OSError as error:
679
if error.errno != errno.ECHILD:
683
logger.warning("Checker was a zombie")
684
gobject.source_remove(self.checker_callback_tag)
685
self.checker_callback(pid, status,
686
self.current_checker_command)
1113
if self.checker is not None and not self.checker.is_alive():
1114
logger.warning("Checker was not alive; joining")
687
1117
# Start a new checker if needed
688
1118
if self.checker is None:
689
1119
# Escape attributes for the shell
690
escaped_attrs = { attr:
691
re.escape(str(getattr(self, attr)))
692
for attr in self.runtime_expansions }
1121
attr: re.escape(str(getattr(self, attr)))
1122
for attr in self.runtime_expansions}
694
1124
command = self.checker_command % escaped_attrs
695
1125
except TypeError as error:
696
1126
logger.error('Could not format string "%s"',
697
self.checker_command, exc_info=error)
698
return True # Try again later
1127
self.checker_command,
1129
return True # Try again later
699
1130
self.current_checker_command = command
701
logger.info("Starting checker %r for %s",
703
# We don't need to redirect stdout and stderr, since
704
# in normal mode, that is already done by daemon(),
705
# and in debug mode we don't want to. (Stdin is
706
# always replaced by /dev/null.)
707
# The exception is when not debugging but nevertheless
708
# running in the foreground; use the previously
711
if (not self.server_settings["debug"]
712
and self.server_settings["foreground"]):
713
popen_args.update({"stdout": wnull,
715
self.checker = subprocess.Popen(command,
719
except OSError as error:
720
logger.error("Failed to start subprocess",
723
self.checker_callback_tag = (gobject.child_watch_add
725
self.checker_callback,
727
# The checker may have completed before the gobject
728
# watch was added. Check for this.
730
pid, status = os.waitpid(self.checker.pid, os.WNOHANG)
731
except OSError as error:
732
if error.errno == errno.ECHILD:
733
# This should never happen
734
logger.error("Child process vanished",
739
gobject.source_remove(self.checker_callback_tag)
740
self.checker_callback(pid, status, command)
741
# Re-run this periodically if run by gobject.timeout_add
1131
logger.info("Starting checker %r for %s", command,
1133
# We don't need to redirect stdout and stderr, since
1134
# in normal mode, that is already done by daemon(),
1135
# and in debug mode we don't want to. (Stdin is
1136
# always replaced by /dev/null.)
1137
# The exception is when not debugging but nevertheless
1138
# running in the foreground; use the previously
1140
popen_args = {"close_fds": True,
1143
if (not self.server_settings["debug"]
1144
and self.server_settings["foreground"]):
1145
popen_args.update({"stdout": wnull,
1147
pipe = multiprocessing.Pipe(duplex=False)
1148
self.checker = multiprocessing.Process(
1150
args=(pipe[1], subprocess.call, command),
1152
self.checker.start()
1153
self.checker_callback_tag = GLib.io_add_watch(
1154
GLib.IOChannel.unix_new(pipe[0].fileno()),
1155
GLib.PRIORITY_DEFAULT, GLib.IO_IN,
1156
self.checker_callback, pipe[0], command)
1157
# Re-run this periodically if run by GLib.timeout_add
744
1160
def stop_checker(self):
745
1161
"""Force the checker process, if any, to stop."""
746
1162
if self.checker_callback_tag:
747
gobject.source_remove(self.checker_callback_tag)
1163
GLib.source_remove(self.checker_callback_tag)
748
1164
self.checker_callback_tag = None
749
1165
if getattr(self, "checker", None) is None:
751
1167
logger.debug("Stopping checker for %(name)s", vars(self))
753
self.checker.terminate()
755
#if self.checker.poll() is None:
756
# self.checker.kill()
757
except OSError as error:
758
if error.errno != errno.ESRCH: # No such process
1168
self.checker.terminate()
760
1169
self.checker = None
763
def dbus_service_property(dbus_interface, signature="v",
764
access="readwrite", byte_arrays=False):
1172
def dbus_service_property(dbus_interface,
765
1176
"""Decorators for marking methods of a DBusObjectWithProperties to
766
1177
become properties on the D-Bus.
768
1179
The decorated method will be called with no arguments by "Get"
769
1180
and with one argument by "Set".
771
1182
The parameters, where they are supported, are the same as
772
1183
dbus.service.method, except there is only "signature", since the
773
1184
type from Get() and the type sent to Set() is the same.
847
class DBusObjectWithProperties(dbus.service.Object):
848
"""A D-Bus object with properties.
850
Classes inheriting from this can use the dbus_service_property
851
decorator to expose methods as D-Bus properties. It exposes the
852
standard Get(), Set(), and GetAll() methods on the D-Bus.
1267
class DBusObjectWithAnnotations(dbus.service.Object):
1268
"""A D-Bus object with annotations.
1270
Classes inheriting from this can use the dbus_annotations
1271
decorator to add annotations to methods or signals.
856
1275
def _is_dbus_thing(thing):
857
1276
"""Returns a function testing if an attribute is a D-Bus thing
859
1278
If called like _is_dbus_thing("method") it returns a function
860
1279
suitable for use as predicate to inspect.getmembers().
862
1281
return lambda obj: getattr(obj, "_dbus_is_{}".format(thing),
865
1284
def _get_all_dbus_things(self, thing):
866
1285
"""Returns a generator of (name, attribute) pairs
868
return ((getattr(athing.__get__(self), "_dbus_name",
1287
return ((getattr(athing.__get__(self), "_dbus_name", name),
870
1288
athing.__get__(self))
871
1289
for cls in self.__class__.__mro__
872
1290
for name, athing in
873
inspect.getmembers(cls,
874
self._is_dbus_thing(thing)))
1291
inspect.getmembers(cls, self._is_dbus_thing(thing)))
1293
@dbus.service.method(dbus.INTROSPECTABLE_IFACE,
1295
path_keyword='object_path',
1296
connection_keyword='connection')
1297
def Introspect(self, object_path, connection):
1298
"""Overloading of standard D-Bus method.
1300
Inserts annotation tags on methods and signals.
1302
xmlstring = dbus.service.Object.Introspect(self, object_path,
1305
document = xml.dom.minidom.parseString(xmlstring)
1307
for if_tag in document.getElementsByTagName("interface"):
1308
# Add annotation tags
1309
for typ in ("method", "signal"):
1310
for tag in if_tag.getElementsByTagName(typ):
1312
for name, prop in (self.
1313
_get_all_dbus_things(typ)):
1314
if (name == tag.getAttribute("name")
1315
and prop._dbus_interface
1316
== if_tag.getAttribute("name")):
1317
annots.update(getattr(
1318
prop, "_dbus_annotations", {}))
1319
for name, value in annots.items():
1320
ann_tag = document.createElement(
1322
ann_tag.setAttribute("name", name)
1323
ann_tag.setAttribute("value", value)
1324
tag.appendChild(ann_tag)
1325
# Add interface annotation tags
1326
for annotation, value in dict(
1327
itertools.chain.from_iterable(
1328
annotations().items()
1329
for name, annotations
1330
in self._get_all_dbus_things("interface")
1331
if name == if_tag.getAttribute("name")
1333
ann_tag = document.createElement("annotation")
1334
ann_tag.setAttribute("name", annotation)
1335
ann_tag.setAttribute("value", value)
1336
if_tag.appendChild(ann_tag)
1337
# Fix argument name for the Introspect method itself
1338
if (if_tag.getAttribute("name")
1339
== dbus.INTROSPECTABLE_IFACE):
1340
for cn in if_tag.getElementsByTagName("method"):
1341
if cn.getAttribute("name") == "Introspect":
1342
for arg in cn.getElementsByTagName("arg"):
1343
if (arg.getAttribute("direction")
1345
arg.setAttribute("name",
1347
xmlstring = document.toxml("utf-8")
1349
except (AttributeError, xml.dom.DOMException,
1350
xml.parsers.expat.ExpatError) as error:
1351
logger.error("Failed to override Introspection method",
1356
class DBusObjectWithProperties(DBusObjectWithAnnotations):
1357
"""A D-Bus object with properties.
1359
Classes inheriting from this can use the dbus_service_property
1360
decorator to expose methods as D-Bus properties. It exposes the
1361
standard Get(), Set(), and GetAll() methods on the D-Bus.
876
1364
def _get_dbus_property(self, interface_name, property_name):
877
1365
"""Returns a bound method if one exists which is a D-Bus
878
1366
property with the specified name and interface.
880
for cls in self.__class__.__mro__:
881
for name, value in (inspect.getmembers
883
self._is_dbus_thing("property"))):
1368
for cls in self.__class__.__mro__:
1369
for name, value in inspect.getmembers(
1370
cls, self._is_dbus_thing("property")):
884
1371
if (value._dbus_name == property_name
885
1372
and value._dbus_interface == interface_name):
886
1373
return value.__get__(self)
888
1375
# No such property
889
raise DBusPropertyNotFound(self.dbus_object_path + ":"
890
+ interface_name + "."
893
@dbus.service.method(dbus.PROPERTIES_IFACE, in_signature="ss",
1376
raise DBusPropertyNotFound("{}:{}.{}".format(
1377
self.dbus_object_path, interface_name, property_name))
1380
def _get_all_interface_names(cls):
1381
"""Get a sequence of all interfaces supported by an object"""
1382
return (name for name in set(getattr(getattr(x, attr),
1383
"_dbus_interface", None)
1384
for x in (inspect.getmro(cls))
1386
if name is not None)
1388
@dbus.service.method(dbus.PROPERTIES_IFACE,
894
1390
out_signature="v")
895
1391
def Get(self, interface_name, property_name):
896
1392
"""Standard D-Bus property Get() method, see D-Bus standard.
1028
1520
return xmlstring
1524
dbus.OBJECT_MANAGER_IFACE
1525
except AttributeError:
1526
dbus.OBJECT_MANAGER_IFACE = "org.freedesktop.DBus.ObjectManager"
1529
class DBusObjectWithObjectManager(DBusObjectWithAnnotations):
1530
"""A D-Bus object with an ObjectManager.
1532
Classes inheriting from this exposes the standard
1533
GetManagedObjects call and the InterfacesAdded and
1534
InterfacesRemoved signals on the standard
1535
"org.freedesktop.DBus.ObjectManager" interface.
1537
Note: No signals are sent automatically; they must be sent
1540
@dbus.service.method(dbus.OBJECT_MANAGER_IFACE,
1541
out_signature="a{oa{sa{sv}}}")
1542
def GetManagedObjects(self):
1543
"""This function must be overridden"""
1544
raise NotImplementedError()
1546
@dbus.service.signal(dbus.OBJECT_MANAGER_IFACE,
1547
signature="oa{sa{sv}}")
1548
def InterfacesAdded(self, object_path, interfaces_and_properties):
1551
@dbus.service.signal(dbus.OBJECT_MANAGER_IFACE, signature="oas")
1552
def InterfacesRemoved(self, object_path, interfaces):
1555
@dbus.service.method(dbus.INTROSPECTABLE_IFACE,
1557
path_keyword='object_path',
1558
connection_keyword='connection')
1559
def Introspect(self, object_path, connection):
1560
"""Overloading of standard D-Bus method.
1562
Override return argument name of GetManagedObjects to be
1563
"objpath_interfaces_and_properties"
1565
xmlstring = DBusObjectWithAnnotations.Introspect(self,
1569
document = xml.dom.minidom.parseString(xmlstring)
1571
for if_tag in document.getElementsByTagName("interface"):
1572
# Fix argument name for the GetManagedObjects method
1573
if (if_tag.getAttribute("name")
1574
== dbus.OBJECT_MANAGER_IFACE):
1575
for cn in if_tag.getElementsByTagName("method"):
1576
if (cn.getAttribute("name")
1577
== "GetManagedObjects"):
1578
for arg in cn.getElementsByTagName("arg"):
1579
if (arg.getAttribute("direction")
1583
"objpath_interfaces"
1585
xmlstring = document.toxml("utf-8")
1587
except (AttributeError, xml.dom.DOMException,
1588
xml.parsers.expat.ExpatError) as error:
1589
logger.error("Failed to override Introspection method",
1031
1594
def datetime_to_dbus(dt, variant_level=0):
1032
1595
"""Convert a UTC datetime.datetime() to a D-Bus type."""
1034
return dbus.String("", variant_level = variant_level)
1035
return dbus.String(dt.isoformat(),
1036
variant_level=variant_level)
1597
return dbus.String("", variant_level=variant_level)
1598
return dbus.String(dt.isoformat(), variant_level=variant_level)
1039
1601
def alternate_dbus_interfaces(alt_interface_names, deprecate=True):
1389
1962
server to mandos-client
1393
1966
# Rejected - signal
1394
1967
@dbus.service.signal(_interface, signature="s")
1395
1968
def Rejected(self, reason):
1399
1972
# NeedApproval - signal
1400
1973
@dbus.service.signal(_interface, signature="tb")
1401
1974
def NeedApproval(self, timeout, default):
1403
1976
return self.need_approval()
1407
1980
# Approve - method
1408
1981
@dbus.service.method(_interface, in_signature="b")
1409
1982
def Approve(self, value):
1410
1983
self.approve(value)
1412
1985
# CheckedOK - method
1413
1986
@dbus.service.method(_interface)
1414
1987
def CheckedOK(self):
1415
1988
self.checked_ok()
1417
1990
# Enable - method
1991
@dbus_annotations({"org.freedesktop.DBus.Deprecated": "true"})
1418
1992
@dbus.service.method(_interface)
1419
1993
def Enable(self):
1423
1997
# StartChecker - method
1998
@dbus_annotations({"org.freedesktop.DBus.Deprecated": "true"})
1424
1999
@dbus.service.method(_interface)
1425
2000
def StartChecker(self):
1427
2002
self.start_checker()
1429
2004
# Disable - method
2005
@dbus_annotations({"org.freedesktop.DBus.Deprecated": "true"})
1430
2006
@dbus.service.method(_interface)
1431
2007
def Disable(self):
1435
2011
# StopChecker - method
2012
@dbus_annotations({"org.freedesktop.DBus.Deprecated": "true"})
1436
2013
@dbus.service.method(_interface)
1437
2014
def StopChecker(self):
1438
2015
self.stop_checker()
1442
2019
# ApprovalPending - property
1443
2020
@dbus_service_property(_interface, signature="b", access="read")
1444
2021
def ApprovalPending_dbus_property(self):
1445
2022
return dbus.Boolean(bool(self.approvals_pending))
1447
2024
# ApprovedByDefault - property
1448
@dbus_service_property(_interface, signature="b",
2025
@dbus_service_property(_interface,
1449
2027
access="readwrite")
1450
2028
def ApprovedByDefault_dbus_property(self, value=None):
1451
2029
if value is None: # get
1452
2030
return dbus.Boolean(self.approved_by_default)
1453
2031
self.approved_by_default = bool(value)
1455
2033
# ApprovalDelay - property
1456
@dbus_service_property(_interface, signature="t",
2034
@dbus_service_property(_interface,
1457
2036
access="readwrite")
1458
2037
def ApprovalDelay_dbus_property(self, value=None):
1459
2038
if value is None: # get
1460
2039
return dbus.UInt64(self.approval_delay.total_seconds()
1462
2041
self.approval_delay = datetime.timedelta(0, 0, 0, value)
1464
2043
# ApprovalDuration - property
1465
@dbus_service_property(_interface, signature="t",
2044
@dbus_service_property(_interface,
1466
2046
access="readwrite")
1467
2047
def ApprovalDuration_dbus_property(self, value=None):
1468
2048
if value is None: # get
1469
2049
return dbus.UInt64(self.approval_duration.total_seconds()
1471
2051
self.approval_duration = datetime.timedelta(0, 0, 0, value)
1473
2053
# Name - property
2055
{"org.freedesktop.DBus.Property.EmitsChangedSignal": "const"})
1474
2056
@dbus_service_property(_interface, signature="s", access="read")
1475
2057
def Name_dbus_property(self):
1476
2058
return dbus.String(self.name)
2062
{"org.freedesktop.DBus.Property.EmitsChangedSignal": "const"})
2063
@dbus_service_property(_interface, signature="s", access="read")
2064
def KeyID_dbus_property(self):
2065
return dbus.String(self.key_id)
1478
2067
# Fingerprint - property
2069
{"org.freedesktop.DBus.Property.EmitsChangedSignal": "const"})
1479
2070
@dbus_service_property(_interface, signature="s", access="read")
1480
2071
def Fingerprint_dbus_property(self):
1481
2072
return dbus.String(self.fingerprint)
1483
2074
# Host - property
1484
@dbus_service_property(_interface, signature="s",
2075
@dbus_service_property(_interface,
1485
2077
access="readwrite")
1486
2078
def Host_dbus_property(self, value=None):
1487
2079
if value is None: # get
1488
2080
return dbus.String(self.host)
1489
2081
self.host = str(value)
1491
2083
# Created - property
2085
{"org.freedesktop.DBus.Property.EmitsChangedSignal": "const"})
1492
2086
@dbus_service_property(_interface, signature="s", access="read")
1493
2087
def Created_dbus_property(self):
1494
2088
return datetime_to_dbus(self.created)
1496
2090
# LastEnabled - property
1497
2091
@dbus_service_property(_interface, signature="s", access="read")
1498
2092
def LastEnabled_dbus_property(self):
1499
2093
return datetime_to_dbus(self.last_enabled)
1501
2095
# Enabled - property
1502
@dbus_service_property(_interface, signature="b",
2096
@dbus_service_property(_interface,
1503
2098
access="readwrite")
1504
2099
def Enabled_dbus_property(self, value=None):
1505
2100
if value is None: # get
1770
2382
delay -= time2 - time
1773
while sent_size < len(client.secret):
1775
sent = session.send(client.secret[sent_size:])
1776
except gnutls.errors.GNUTLSError as error:
1777
logger.warning("gnutls send failed",
1780
logger.debug("Sent: %d, remaining: %d",
1781
sent, len(client.secret)
1782
- (sent_size + sent))
2385
session.send(client.secret)
2386
except gnutls.Error as error:
2387
logger.warning("gnutls send failed",
1785
2391
logger.info("Sending secret to %s", client.name)
1786
2392
# bump the timeout using extended_timeout
1787
2393
client.bump_timeout(client.extended_timeout)
1788
2394
if self.server.use_dbus:
1789
2395
# Emit D-Bus signal
1790
2396
client.GotSecret()
1793
2399
if approval_required:
1794
2400
client.approvals_pending -= 1
1797
except gnutls.errors.GNUTLSError as error:
2403
except gnutls.Error as error:
1798
2404
logger.warning("GnuTLS bye failed",
1799
2405
exc_info=error)
1802
2408
def peer_certificate(session):
1803
"Return the peer's OpenPGP certificate as a bytestring"
1804
# If not an OpenPGP certificate...
1805
if (gnutls.library.functions
1806
.gnutls_certificate_type_get(session._c_object)
1807
!= gnutls.library.constants.GNUTLS_CRT_OPENPGP):
1808
# ...do the normal thing
1809
return session.peer_certificate
2409
"Return the peer's certificate as a bytestring"
2411
cert_type = gnutls.certificate_type_get2(session._c_object,
2413
except AttributeError:
2414
cert_type = gnutls.certificate_type_get(session._c_object)
2415
if gnutls.has_rawpk:
2416
valid_cert_types = frozenset((gnutls.CRT_RAWPK,))
2418
valid_cert_types = frozenset((gnutls.CRT_OPENPGP,))
2419
# If not a valid certificate type...
2420
if cert_type not in valid_cert_types:
2421
logger.info("Cert type %r not in %r", cert_type,
2423
# ...return invalid data
1810
2425
list_size = ctypes.c_uint(1)
1811
cert_list = (gnutls.library.functions
1812
.gnutls_certificate_get_peers
2426
cert_list = (gnutls.certificate_get_peers
1813
2427
(session._c_object, ctypes.byref(list_size)))
1814
2428
if not bool(cert_list) and list_size.value != 0:
1815
raise gnutls.errors.GNUTLSError("error getting peer"
2429
raise gnutls.Error("error getting peer certificate")
1817
2430
if list_size.value == 0:
1819
2432
cert = cert_list[0]
1820
2433
return ctypes.string_at(cert.data, cert.size)
2436
def key_id(certificate):
2437
"Convert a certificate bytestring to a hexdigit key ID"
2438
# New GnuTLS "datum" with the public key
2439
datum = gnutls.datum_t(
2440
ctypes.cast(ctypes.c_char_p(certificate),
2441
ctypes.POINTER(ctypes.c_ubyte)),
2442
ctypes.c_uint(len(certificate)))
2443
# XXX all these need to be created in the gnutls "module"
2444
# New empty GnuTLS certificate
2445
pubkey = gnutls.pubkey_t()
2446
gnutls.pubkey_init(ctypes.byref(pubkey))
2447
# Import the raw public key into the certificate
2448
gnutls.pubkey_import(pubkey,
2449
ctypes.byref(datum),
2450
gnutls.X509_FMT_DER)
2451
# New buffer for the key ID
2452
buf = ctypes.create_string_buffer(32)
2453
buf_len = ctypes.c_size_t(len(buf))
2454
# Get the key ID from the raw public key into the buffer
2455
gnutls.pubkey_get_key_id(pubkey,
2456
gnutls.KEYID_USE_SHA256,
2457
ctypes.cast(ctypes.byref(buf),
2458
ctypes.POINTER(ctypes.c_ubyte)),
2459
ctypes.byref(buf_len))
2460
# Deinit the certificate
2461
gnutls.pubkey_deinit(pubkey)
2463
# Convert the buffer to a Python bytestring
2464
key_id = ctypes.string_at(buf, buf_len.value)
2465
# Convert the bytestring to hexadecimal notation
2466
hex_key_id = binascii.hexlify(key_id).upper()
1823
2470
def fingerprint(openpgp):
1824
2471
"Convert an OpenPGP bytestring to a hexdigit fingerprint"
1825
2472
# New GnuTLS "datum" with the OpenPGP public key
1826
datum = (gnutls.library.types
1827
.gnutls_datum_t(ctypes.cast(ctypes.c_char_p(openpgp),
1830
ctypes.c_uint(len(openpgp))))
2473
datum = gnutls.datum_t(
2474
ctypes.cast(ctypes.c_char_p(openpgp),
2475
ctypes.POINTER(ctypes.c_ubyte)),
2476
ctypes.c_uint(len(openpgp)))
1831
2477
# New empty GnuTLS certificate
1832
crt = gnutls.library.types.gnutls_openpgp_crt_t()
1833
(gnutls.library.functions
1834
.gnutls_openpgp_crt_init(ctypes.byref(crt)))
2478
crt = gnutls.openpgp_crt_t()
2479
gnutls.openpgp_crt_init(ctypes.byref(crt))
1835
2480
# Import the OpenPGP public key into the certificate
1836
(gnutls.library.functions
1837
.gnutls_openpgp_crt_import(crt, ctypes.byref(datum),
1838
gnutls.library.constants
1839
.GNUTLS_OPENPGP_FMT_RAW))
2481
gnutls.openpgp_crt_import(crt, ctypes.byref(datum),
2482
gnutls.OPENPGP_FMT_RAW)
1840
2483
# Verify the self signature in the key
1841
2484
crtverify = ctypes.c_uint()
1842
(gnutls.library.functions
1843
.gnutls_openpgp_crt_verify_self(crt, 0,
1844
ctypes.byref(crtverify)))
2485
gnutls.openpgp_crt_verify_self(crt, 0,
2486
ctypes.byref(crtverify))
1845
2487
if crtverify.value != 0:
1846
gnutls.library.functions.gnutls_openpgp_crt_deinit(crt)
1847
raise (gnutls.errors.CertificateSecurityError
2488
gnutls.openpgp_crt_deinit(crt)
2489
raise gnutls.CertificateSecurityError(code
1849
2491
# New buffer for the fingerprint
1850
2492
buf = ctypes.create_string_buffer(20)
1851
2493
buf_len = ctypes.c_size_t()
1852
2494
# Get the fingerprint from the certificate into the buffer
1853
(gnutls.library.functions
1854
.gnutls_openpgp_crt_get_fingerprint(crt, ctypes.byref(buf),
1855
ctypes.byref(buf_len)))
2495
gnutls.openpgp_crt_get_fingerprint(crt, ctypes.byref(buf),
2496
ctypes.byref(buf_len))
1856
2497
# Deinit the certificate
1857
gnutls.library.functions.gnutls_openpgp_crt_deinit(crt)
2498
gnutls.openpgp_crt_deinit(crt)
1858
2499
# Convert the buffer to a Python bytestring
1859
2500
fpr = ctypes.string_at(buf, buf_len.value)
1860
2501
# Convert the bytestring to hexadecimal notation
1943
2590
# socket_wrapper(), if socketfd was set.
1944
2591
socketserver.TCPServer.__init__(self, server_address,
1945
2592
RequestHandlerClass)
1947
2594
def server_bind(self):
1948
2595
"""This overrides the normal server_bind() function
1949
2596
to bind to an interface if one was specified, and also NOT to
1950
2597
bind to an address or port if they were not specified."""
2598
global SO_BINDTODEVICE
1951
2599
if self.interface is not None:
1952
2600
if SO_BINDTODEVICE is None:
1953
logger.error("SO_BINDTODEVICE does not exist;"
1954
" cannot bind to interface %s",
1958
self.socket.setsockopt(socket.SOL_SOCKET,
1960
(self.interface + "\0")
1962
except socket.error as error:
1963
if error.errno == errno.EPERM:
1964
logger.error("No permission to bind to"
1965
" interface %s", self.interface)
1966
elif error.errno == errno.ENOPROTOOPT:
1967
logger.error("SO_BINDTODEVICE not available;"
1968
" cannot bind to interface %s",
1970
elif error.errno == errno.ENODEV:
1971
logger.error("Interface %s does not exist,"
1972
" cannot bind", self.interface)
2601
# Fall back to a hard-coded value which seems to be
2603
logger.warning("SO_BINDTODEVICE not found, trying 25")
2604
SO_BINDTODEVICE = 25
2606
self.socket.setsockopt(
2607
socket.SOL_SOCKET, SO_BINDTODEVICE,
2608
(self.interface + "\0").encode("utf-8"))
2609
except socket.error as error:
2610
if error.errno == errno.EPERM:
2611
logger.error("No permission to bind to"
2612
" interface %s", self.interface)
2613
elif error.errno == errno.ENOPROTOOPT:
2614
logger.error("SO_BINDTODEVICE not available;"
2615
" cannot bind to interface %s",
2617
elif error.errno == errno.ENODEV:
2618
logger.error("Interface %s does not exist,"
2619
" cannot bind", self.interface)
1975
2622
# Only bind(2) the socket if we really need to.
1976
2623
if self.server_address[0] or self.server_address[1]:
2624
if self.server_address[1]:
2625
self.allow_reuse_address = True
1977
2626
if not self.server_address[0]:
1978
2627
if self.address_family == socket.AF_INET6:
1979
any_address = "::" # in6addr_any
2628
any_address = "::" # in6addr_any
1981
any_address = "0.0.0.0" # INADDR_ANY
2630
any_address = "0.0.0.0" # INADDR_ANY
1982
2631
self.server_address = (any_address,
1983
2632
self.server_address[1])
1984
2633
elif not self.server_address[1]:
1985
self.server_address = (self.server_address[0],
2634
self.server_address = (self.server_address[0], 0)
1987
2635
# if self.interface:
1988
2636
# self.server_address = (self.server_address[0],
2014
2667
self.gnutls_priority = gnutls_priority
2015
2668
IPv6_TCPServer.__init__(self, server_address,
2016
2669
RequestHandlerClass,
2017
interface = interface,
2018
use_ipv6 = use_ipv6,
2019
socketfd = socketfd)
2670
interface=interface,
2020
2674
def server_activate(self):
2021
2675
if self.enabled:
2022
2676
return socketserver.TCPServer.server_activate(self)
2024
2678
def enable(self):
2025
2679
self.enabled = True
2027
2681
def add_pipe(self, parent_pipe, proc):
2028
2682
# Call "handle_ipc" for both data and EOF events
2029
gobject.io_add_watch(parent_pipe.fileno(),
2030
gobject.IO_IN | gobject.IO_HUP,
2031
functools.partial(self.handle_ipc,
2036
def handle_ipc(self, source, condition, parent_pipe=None,
2037
proc = None, client_object=None):
2684
GLib.IOChannel.unix_new(parent_pipe.fileno()),
2685
GLib.PRIORITY_DEFAULT, GLib.IO_IN | GLib.IO_HUP,
2686
functools.partial(self.handle_ipc,
2687
parent_pipe=parent_pipe,
2690
def handle_ipc(self, source, condition,
2693
client_object=None):
2038
2694
# error, or the other end of multiprocessing.Pipe has closed
2039
if condition & (gobject.IO_ERR | gobject.IO_HUP):
2695
if condition & (GLib.IO_ERR | GLib.IO_HUP):
2040
2696
# Wait for other process to exit
2044
2700
# Read a request from the child
2045
2701
request = parent_pipe.recv()
2046
2702
command = request[0]
2048
2704
if command == 'init':
2050
address = request[2]
2052
for c in self.clients.itervalues():
2053
if c.fingerprint == fpr:
2705
key_id = request[1].decode("ascii")
2706
fpr = request[2].decode("ascii")
2707
address = request[3]
2709
for c in self.clients.values():
2710
if key_id == "E3B0C44298FC1C149AFBF4C8996FB92427AE41E4649B934CA495991B7852B855":
2712
if key_id and c.key_id == key_id:
2715
if fpr and c.fingerprint == fpr:
2057
logger.info("Client not found for fingerprint: %s, ad"
2058
"dress: %s", fpr, address)
2719
logger.info("Client not found for key ID: %s, address"
2720
": %s", key_id or fpr, address)
2059
2721
if self.use_dbus:
2060
2722
# Emit D-Bus signal
2061
mandos_dbus_service.ClientNotFound(fpr,
2723
mandos_dbus_service.ClientNotFound(key_id or fpr,
2063
2725
parent_pipe.send(False)
2066
gobject.io_add_watch(parent_pipe.fileno(),
2067
gobject.IO_IN | gobject.IO_HUP,
2068
functools.partial(self.handle_ipc,
2729
GLib.IOChannel.unix_new(parent_pipe.fileno()),
2730
GLib.PRIORITY_DEFAULT, GLib.IO_IN | GLib.IO_HUP,
2731
functools.partial(self.handle_ipc,
2732
parent_pipe=parent_pipe,
2734
client_object=client))
2074
2735
parent_pipe.send(True)
2075
2736
# remove the old hook in favor of the new above hook on
2079
2740
funcname = request[1]
2080
2741
args = request[2]
2081
2742
kwargs = request[3]
2083
2744
parent_pipe.send(('data', getattr(client_object,
2084
2745
funcname)(*args,
2087
2748
if command == 'getattr':
2088
2749
attrname = request[1]
2089
if callable(client_object.__getattribute__(attrname)):
2090
parent_pipe.send(('function',))
2750
if isinstance(client_object.__getattribute__(attrname),
2751
collections.Callable):
2752
parent_pipe.send(('function', ))
2092
parent_pipe.send(('data', client_object
2093
.__getattribute__(attrname)))
2755
'data', client_object.__getattribute__(attrname)))
2095
2757
if command == 'setattr':
2096
2758
attrname = request[1]
2097
2759
value = request[2]
2098
2760
setattr(client_object, attrname, value)
2103
2765
def rfc3339_duration_to_delta(duration):
2104
2766
"""Parse an RFC 3339 "duration" and return a datetime.timedelta
2106
>>> rfc3339_duration_to_delta("P7D")
2107
datetime.timedelta(7)
2108
>>> rfc3339_duration_to_delta("PT60S")
2109
datetime.timedelta(0, 60)
2110
>>> rfc3339_duration_to_delta("PT60M")
2111
datetime.timedelta(0, 3600)
2112
>>> rfc3339_duration_to_delta("PT24H")
2113
datetime.timedelta(1)
2114
>>> rfc3339_duration_to_delta("P1W")
2115
datetime.timedelta(7)
2116
>>> rfc3339_duration_to_delta("PT5M30S")
2117
datetime.timedelta(0, 330)
2118
>>> rfc3339_duration_to_delta("P1DT3M20S")
2119
datetime.timedelta(1, 200)
2768
>>> rfc3339_duration_to_delta("P7D") == datetime.timedelta(7)
2770
>>> rfc3339_duration_to_delta("PT60S") == datetime.timedelta(0, 60)
2772
>>> rfc3339_duration_to_delta("PT60M") == datetime.timedelta(0, 3600)
2774
>>> rfc3339_duration_to_delta("PT24H") == datetime.timedelta(1)
2776
>>> rfc3339_duration_to_delta("P1W") == datetime.timedelta(7)
2778
>>> rfc3339_duration_to_delta("PT5M30S") == datetime.timedelta(0, 330)
2780
>>> rfc3339_duration_to_delta("P1DT3M20S") == datetime.timedelta(1, 200)
2122
2784
# Parsing an RFC 3339 duration with regular expressions is not
2123
2785
# possible - there would have to be multiple places for the same
2124
2786
# values, like seconds. The current code, while more esoteric, is
2125
2787
# cleaner without depending on a parsing library. If Python had a
2126
2788
# built-in library for parsing we would use it, but we'd like to
2127
2789
# avoid excessive use of external libraries.
2129
2791
# New type for defining tokens, syntax, and semantics all-in-one
2130
Token = collections.namedtuple("Token",
2131
("regexp", # To match token; if
2132
# "value" is not None,
2133
# must have a "group"
2135
"value", # datetime.timedelta or
2137
"followers")) # Tokens valid after
2792
Token = collections.namedtuple("Token", (
2793
"regexp", # To match token; if "value" is not None, must have
2794
# a "group" containing digits
2795
"value", # datetime.timedelta or None
2796
"followers")) # Tokens valid after this token
2139
2797
# RFC 3339 "duration" tokens, syntax, and semantics; taken from
2140
2798
# the "duration" ABNF definition in RFC 3339, Appendix A.
2141
2799
token_end = Token(re.compile(r"$"), None, frozenset())
2142
2800
token_second = Token(re.compile(r"(\d+)S"),
2143
2801
datetime.timedelta(seconds=1),
2144
frozenset((token_end,)))
2802
frozenset((token_end, )))
2145
2803
token_minute = Token(re.compile(r"(\d+)M"),
2146
2804
datetime.timedelta(minutes=1),
2147
2805
frozenset((token_second, token_end)))
3137
logger.debug("Did setuid/setgid to {}:{}".format(uid,
2476
3139
except OSError as error:
3140
logger.warning("Failed to setuid/setgid to {}:{}: {}"
3141
.format(uid, gid, os.strerror(error.errno)))
2477
3142
if error.errno != errno.EPERM:
2481
3146
# Enable all possible GnuTLS debugging
2483
3148
# "Use a log level over 10 to enable all debugging options."
2484
3149
# - GnuTLS manual
2485
gnutls.library.functions.gnutls_global_set_log_level(11)
2487
@gnutls.library.types.gnutls_log_func
3150
gnutls.global_set_log_level(11)
2488
3153
def debug_gnutls(level, string):
2489
3154
logger.debug("GnuTLS: %s", string[:-1])
2491
(gnutls.library.functions
2492
.gnutls_global_set_log_function(debug_gnutls))
3156
gnutls.global_set_log_function(debug_gnutls)
2494
3158
# Redirect stdin so all checkers get /dev/null
2495
3159
null = os.open(os.devnull, os.O_NOCTTY | os.O_RDWR)
2496
3160
os.dup2(null, sys.stdin.fileno())
2500
3164
# Need to fork before connecting to D-Bus
2501
3165
if not foreground:
2502
3166
# Close all input and output, do double fork, etc.
2505
# multiprocessing will use threads, so before we use gobject we
2506
# need to inform gobject that threads will be used.
2507
gobject.threads_init()
3169
if gi.version_info < (3, 10, 2):
3170
# multiprocessing will use threads, so before we use GLib we
3171
# need to inform GLib that threads will be used.
2509
3174
global main_loop
2510
3175
# From the Avahi example code
2511
3176
DBusGMainLoop(set_as_default=True)
2512
main_loop = gobject.MainLoop()
3177
main_loop = GLib.MainLoop()
2513
3178
bus = dbus.SystemBus()
2514
3179
# End of Avahi example code
2517
3182
bus_name = dbus.service.BusName("se.recompile.Mandos",
2518
bus, do_not_queue=True)
2519
old_bus_name = (dbus.service.BusName
2520
("se.bsnet.fukt.Mandos", bus,
2522
except dbus.exceptions.NameExistsException as e:
3185
old_bus_name = dbus.service.BusName(
3186
"se.bsnet.fukt.Mandos", bus,
3188
except dbus.exceptions.DBusException as e:
2523
3189
logger.error("Disabling D-Bus:", exc_info=e)
2524
3190
use_dbus = False
2525
3191
server_settings["use_dbus"] = False
2526
3192
tcp_server.use_dbus = False
2528
3194
protocol = avahi.PROTO_INET6 if use_ipv6 else avahi.PROTO_INET
2529
service = AvahiServiceToSyslog(name =
2530
server_settings["servicename"],
2531
servicetype = "_mandos._tcp",
2532
protocol = protocol, bus = bus)
3195
service = AvahiServiceToSyslog(
3196
name=server_settings["servicename"],
3197
servicetype="_mandos._tcp",
2533
3200
if server_settings["interface"]:
2534
service.interface = (if_nametoindex
2535
(server_settings["interface"]
3201
service.interface = if_nametoindex(
3202
server_settings["interface"].encode("utf-8"))
2538
3204
global multiprocessing_manager
2539
3205
multiprocessing_manager = multiprocessing.Manager()
2541
3207
client_class = Client
2543
client_class = functools.partial(ClientDBus, bus = bus)
3209
client_class = functools.partial(ClientDBus, bus=bus)
2545
3211
client_settings = Client.config_parser(client_config)
2546
3212
old_client_settings = {}
2547
3213
clients_data = {}
2549
3215
# This is used to redirect stdout and stderr for checker processes
2551
wnull = open(os.devnull, "w") # A writable /dev/null
3217
wnull = open(os.devnull, "w") # A writable /dev/null
2552
3218
# Only used if server is running in foreground but not in debug
2554
3220
if debug or not foreground:
2557
3223
# Get client data and settings from last running state.
2558
3224
if server_settings["restore"]:
2560
3226
with open(stored_state_path, "rb") as stored_state:
2561
clients_data, old_client_settings = (pickle.load
3227
if sys.version_info.major == 2:
3228
clients_data, old_client_settings = pickle.load(
3231
bytes_clients_data, bytes_old_client_settings = (
3232
pickle.load(stored_state, encoding="bytes"))
3233
# Fix bytes to strings
3236
clients_data = {(key.decode("utf-8")
3237
if isinstance(key, bytes)
3240
bytes_clients_data.items()}
3241
del bytes_clients_data
3242
for key in clients_data:
3243
value = {(k.decode("utf-8")
3244
if isinstance(k, bytes) else k): v
3246
clients_data[key].items()}
3247
clients_data[key] = value
3249
value["client_structure"] = [
3251
if isinstance(s, bytes)
3253
value["client_structure"]]
3254
# .name, .host, and .checker_command
3255
for k in ("name", "host", "checker_command"):
3256
if isinstance(value[k], bytes):
3257
value[k] = value[k].decode("utf-8")
3258
if "key_id" not in value:
3259
value["key_id"] = ""
3260
elif "fingerprint" not in value:
3261
value["fingerprint"] = ""
3262
# old_client_settings
3264
old_client_settings = {
3265
(key.decode("utf-8")
3266
if isinstance(key, bytes)
3269
bytes_old_client_settings.items()}
3270
del bytes_old_client_settings
3271
# .host and .checker_command
3272
for value in old_client_settings.values():
3273
for attribute in ("host", "checker_command"):
3274
if isinstance(value[attribute], bytes):
3275
value[attribute] = (value[attribute]
2563
3277
os.remove(stored_state_path)
2564
3278
except IOError as e:
2565
3279
if e.errno == errno.ENOENT:
2566
logger.warning("Could not load persistent state: {}"
2567
.format(os.strerror(e.errno)))
3280
logger.warning("Could not load persistent state:"
3281
" {}".format(os.strerror(e.errno)))
2569
3283
logger.critical("Could not load persistent state:",
2572
3286
except EOFError as e:
2573
3287
logger.warning("Could not load persistent state: "
2574
"EOFError:", exc_info=e)
2576
3291
with PGPEngine() as pgp:
2577
3292
for client_name, client in clients_data.items():
2578
3293
# Skip removed clients
2579
3294
if client_name not in client_settings:
2582
3297
# Decide which value to use after restoring saved state.
2583
3298
# We have three different values: Old config file,
2584
3299
# new config file, and saved state.
2642
3357
for client_name in (set(client_settings)
2643
3358
- set(old_client_settings)):
2644
3359
clients_data[client_name] = client_settings[client_name]
2646
3361
# Create all client objects
2647
3362
for client_name, client in clients_data.items():
2648
3363
tcp_server.clients[client_name] = client_class(
2649
name = client_name, settings = client,
2650
server_settings = server_settings)
3366
server_settings=server_settings)
2652
3368
if not tcp_server.clients:
2653
3369
logger.warning("No clients defined")
2655
3371
if not foreground:
2656
3372
if pidfile is not None:
2660
pidfile.write("{}\n".format(pid).encode("utf-8"))
3376
print(pid, file=pidfile)
2661
3377
except IOError:
2662
3378
logger.error("Could not write to file %r with PID %d",
2663
3379
pidfilename, pid)
2665
3381
del pidfilename
2667
signal.signal(signal.SIGHUP, lambda signum, frame: sys.exit())
2668
signal.signal(signal.SIGTERM, lambda signum, frame: sys.exit())
3383
for termsig in (signal.SIGHUP, signal.SIGTERM):
3384
GLib.unix_signal_add(GLib.PRIORITY_HIGH, termsig,
3385
lambda: main_loop.quit() and False)
2671
@alternate_dbus_interfaces({"se.recompile.Mandos":
2672
"se.bsnet.fukt.Mandos"})
2673
class MandosDBusService(DBusObjectWithProperties):
3389
@alternate_dbus_interfaces(
3390
{"se.recompile.Mandos": "se.bsnet.fukt.Mandos"})
3391
class MandosDBusService(DBusObjectWithObjectManager):
2674
3392
"""A D-Bus proxy object"""
2675
3394
def __init__(self):
2676
3395
dbus.service.Object.__init__(self, bus, "/")
2677
3397
_interface = "se.recompile.Mandos"
2679
@dbus_interface_annotations(_interface)
2681
return { "org.freedesktop.DBus.Property"
2682
".EmitsChangedSignal":
2685
3399
@dbus.service.signal(_interface, signature="o")
2686
3400
def ClientAdded(self, objpath):
2690
3404
@dbus.service.signal(_interface, signature="ss")
2691
def ClientNotFound(self, fingerprint, address):
3405
def ClientNotFound(self, key_id, address):
3409
@dbus_annotations({"org.freedesktop.DBus.Deprecated":
2695
3411
@dbus.service.signal(_interface, signature="os")
2696
3412
def ClientRemoved(self, objpath, name):
3416
@dbus_annotations({"org.freedesktop.DBus.Deprecated":
2700
3418
@dbus.service.method(_interface, out_signature="ao")
2701
3419
def GetAllClients(self):
2703
return dbus.Array(c.dbus_object_path
2705
tcp_server.clients.itervalues())
3421
return dbus.Array(c.dbus_object_path for c in
3422
tcp_server.clients.values())
3424
@dbus_annotations({"org.freedesktop.DBus.Deprecated":
2707
3426
@dbus.service.method(_interface,
2708
3427
out_signature="a{oa{sv}}")
2709
3428
def GetAllClientsWithProperties(self):
2711
3430
return dbus.Dictionary(
2712
((c.dbus_object_path, c.GetAll(""))
2713
for c in tcp_server.clients.itervalues()),
3431
{c.dbus_object_path: c.GetAll(
3432
"se.recompile.Mandos.Client")
3433
for c in tcp_server.clients.values()},
2714
3434
signature="oa{sv}")
2716
3436
@dbus.service.method(_interface, in_signature="o")
2717
3437
def RemoveClient(self, object_path):
2719
for c in tcp_server.clients.itervalues():
3439
for c in tcp_server.clients.values():
2720
3440
if c.dbus_object_path == object_path:
2721
3441
del tcp_server.clients[c.name]
2722
3442
c.remove_from_connection()
2723
# Don't signal anything except ClientRemoved
3443
# Don't signal the disabling
2724
3444
c.disable(quiet=True)
2726
self.ClientRemoved(object_path, c.name)
3445
# Emit D-Bus signal for removal
3446
self.client_removed_signal(c)
2728
3448
raise KeyError(object_path)
3452
@dbus.service.method(dbus.OBJECT_MANAGER_IFACE,
3453
out_signature="a{oa{sa{sv}}}")
3454
def GetManagedObjects(self):
3456
return dbus.Dictionary(
3457
{client.dbus_object_path:
3459
{interface: client.GetAll(interface)
3461
client._get_all_interface_names()})
3462
for client in tcp_server.clients.values()})
3464
def client_added_signal(self, client):
3465
"""Send the new standard signal and the old signal"""
3467
# New standard signal
3468
self.InterfacesAdded(
3469
client.dbus_object_path,
3471
{interface: client.GetAll(interface)
3473
client._get_all_interface_names()}))
3475
self.ClientAdded(client.dbus_object_path)
3477
def client_removed_signal(self, client):
3478
"""Send the new standard signal and the old signal"""
3480
# New standard signal
3481
self.InterfacesRemoved(
3482
client.dbus_object_path,
3483
client._get_all_interface_names())
3485
self.ClientRemoved(client.dbus_object_path,
2732
3488
mandos_dbus_service = MandosDBusService()
3490
# Save modules to variables to exempt the modules from being
3491
# unloaded before the function registered with atexit() is run.
3492
mp = multiprocessing
2735
3496
"Cleanup function; run on exit"
2737
3498
service.cleanup()
2739
multiprocessing.active_children()
3500
mp.active_children()
2741
3502
if not (tcp_server.clients or client_settings):
2744
3505
# Store client before exiting. Secrets are encrypted with key
2745
3506
# based on what config file has. If config file is
2746
3507
# removed/edited, old secret will thus be unrecovable.
2748
3509
with PGPEngine() as pgp:
2749
for client in tcp_server.clients.itervalues():
3510
for client in tcp_server.clients.values():
2750
3511
key = client_settings[client.name]["secret"]
2751
3512
client.encrypted_secret = pgp.encrypt(client.secret,
2753
3514
client_dict = {}
2755
3516
# A list of attributes that can not be pickled
2757
exclude = { "bus", "changedstate", "secret",
2758
"checker", "server_settings" }
2759
for name, typ in (inspect.getmembers
2760
(dbus.service.Object)):
3518
exclude = {"bus", "changedstate", "secret",
3519
"checker", "server_settings"}
3520
for name, typ in inspect.getmembers(dbus.service
2761
3522
exclude.add(name)
2763
3524
client_dict["encrypted_secret"] = (client
2764
3525
.encrypted_secret)
2765
3526
for attr in client.client_structure:
2766
3527
if attr not in exclude:
2767
3528
client_dict[attr] = getattr(client, attr)
2769
3530
clients[client.name] = client_dict
2770
3531
del client_settings[client.name]["secret"]
2773
with (tempfile.NamedTemporaryFile
2774
(mode='wb', suffix=".pickle", prefix='clients-',
2775
dir=os.path.dirname(stored_state_path),
2776
delete=False)) as stored_state:
2777
pickle.dump((clients, client_settings), stored_state)
2778
tempname=stored_state.name
3534
with tempfile.NamedTemporaryFile(
3538
dir=os.path.dirname(stored_state_path),
3539
delete=False) as stored_state:
3540
pickle.dump((clients, client_settings), stored_state,
3542
tempname = stored_state.name
2779
3543
os.rename(tempname, stored_state_path)
2780
3544
except (IOError, OSError) as e: