2017-01-16 00:05:43 +00:00
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# ⁻*- mode: python; coding: utf-8 -*-
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2017-01-15 23:01:18 +00:00
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# Re2o est un logiciel d'administration développé initiallement au rezometz. Il
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# se veut agnostique au réseau considéré, de manière à être installable en
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# quelques clics.
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#
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2017-12-03 18:44:24 +00:00
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# Copyirght © 2017 Daniel Stan
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2017-01-15 23:01:18 +00:00
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# Copyright © 2017 Gabriel Détraz
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# Copyright © 2017 Goulven Kermarec
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# Copyright © 2017 Augustin Lemesle
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#
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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 2 of the License, or
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# (at your option) any later version.
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#
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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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#
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# You should have received a copy of the GNU General Public License along
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# with this program; if not, write to the Free Software Foundation, Inc.,
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# 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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2016-12-08 14:13:41 +00:00
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"""
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Backend python pour freeradius.
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Ce fichier contient la définition de plusieurs fonctions d'interface à
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freeradius qui peuvent être appelées (suivant les configurations) à certains
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moment de l'authentification, en WiFi, filaire, ou par les NAS eux-mêmes.
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Inspirés d'autres exemples trouvés ici :
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https://github.com/FreeRADIUS/freeradius-server/blob/master/src/modules/rlm_python/
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2017-10-11 20:22:31 +00:00
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Inspiré du travail de Daniel Stan au Crans
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2016-12-08 14:13:41 +00:00
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"""
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import logging
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import netaddr
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import radiusd # Module magique freeradius (radiusd.py is dummy)
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import binascii
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import hashlib
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import os, sys
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2017-09-10 20:50:20 +00:00
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proj_path = "/var/www/re2o/"
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# This is so Django knows where to find stuff.
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os.environ.setdefault("DJANGO_SETTINGS_MODULE", "re2o.settings")
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sys.path.append(proj_path)
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# This is so my local_settings.py gets loaded.
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os.chdir(proj_path)
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# This is so models get loaded.
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from django.core.wsgi import get_wsgi_application
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application = get_wsgi_application()
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import argparse
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from django.db.models import Q
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2017-09-14 14:42:50 +00:00
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from machines.models import Interface, IpList, Nas, Domain
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2017-09-10 20:50:20 +00:00
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from topologie.models import Room, Port, Switch
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from users.models import User
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from preferences.models import OptionalTopologie
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options, created = OptionalTopologie.objects.get_or_create()
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VLAN_NOK = options.vlan_decision_nok.vlan_id
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VLAN_OK = options.vlan_decision_ok.vlan_id
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2016-12-08 14:13:41 +00:00
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#: Serveur radius de test (pas la prod)
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TEST_SERVER = bool(os.getenv('DBG_FREERADIUS', False))
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## -*- Logging -*-
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class RadiusdHandler(logging.Handler):
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"""Handler de logs pour freeradius"""
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def emit(self, record):
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"""Process un message de log, en convertissant les niveaux"""
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if record.levelno >= logging.WARN:
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rad_sig = radiusd.L_ERR
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elif record.levelno >= logging.INFO:
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rad_sig = radiusd.L_INFO
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else:
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rad_sig = radiusd.L_DBG
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radiusd.radlog(rad_sig, record.msg)
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# Initialisation d'un logger (pour logguer unifié)
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logger = logging.getLogger('auth.py')
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logger.setLevel(logging.DEBUG)
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formatter = logging.Formatter('%(name)s: [%(levelname)s] %(message)s')
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handler = RadiusdHandler()
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handler.setFormatter(formatter)
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logger.addHandler(handler)
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def radius_event(fun):
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"""Décorateur pour les fonctions d'interfaces avec radius.
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Une telle fonction prend un uniquement argument, qui est une liste de tuples
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(clé, valeur) et renvoie un triplet dont les composantes sont :
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* le code de retour (voir radiusd.RLM_MODULE_* )
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* un tuple de couples (clé, valeur) pour les valeurs de réponse (accès ok
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et autres trucs du genre)
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* un tuple de couples (clé, valeur) pour les valeurs internes à mettre à
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jour (mot de passe par exemple)
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On se contente avec ce décorateur (pour l'instant) de convertir la liste de
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tuples en entrée en un dictionnaire."""
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def new_f(auth_data):
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if type(auth_data) == dict:
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data = auth_data
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else:
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data = dict()
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for (key, value) in auth_data or []:
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# Beware: les valeurs scalaires sont entre guillemets
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# Ex: Calling-Station-Id: "une_adresse_mac"
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data[key] = value.replace('"', '')
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try:
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# TODO s'assurer ici que les tuples renvoyés sont bien des (str,str)
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# rlm_python ne digère PAS les unicodes
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return fun(data)
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except Exception as err:
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logger.error('Failed %r on data %r' % (err, auth_data))
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raise
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return new_f
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2017-12-03 18:44:24 +00:00
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2016-12-08 14:13:41 +00:00
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@radius_event
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def instantiate(*_):
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"""Utile pour initialiser les connexions ldap une première fois (otherwise,
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do nothing)"""
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logger.info('Instantiation')
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if TEST_SERVER:
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2017-09-14 15:24:12 +00:00
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logger.info(u'DBG_FREERADIUS is enabled')
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2016-12-08 14:13:41 +00:00
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@radius_event
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def authorize(data):
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2017-11-19 20:09:57 +00:00
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"""On test si on connait le calling nas:
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- si le nas est inconnue, on suppose que c'est une requète 802.1X, on la traite
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- si le nas est connu, on applique 802.1X si le mode est activé
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- si le nas est connu et si il s'agit d'un nas auth par mac, on repond accept en authorize
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"""
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2017-09-12 17:40:04 +00:00
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# Pour les requetes proxifiees, on split
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2017-09-14 14:42:50 +00:00
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nas = data.get('NAS-IP-Address', data.get('NAS-Identifier', None))
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nas_instance = find_nas_from_request(nas)
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# Toutes les reuquètes non proxifiées
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2017-11-19 20:17:17 +00:00
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nas_type = None
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2017-11-19 20:09:57 +00:00
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if nas_instance:
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2017-09-14 14:42:50 +00:00
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nas_type = Nas.objects.filter(nas_type=nas_instance.type).first()
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if not nas_type or nas_type.port_access_mode == '802.1X':
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2017-11-11 18:06:50 +00:00
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user = data.get('User-Name', '').decode('utf-8', errors='replace')
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2017-09-12 17:40:04 +00:00
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user = user.split('@', 1)[0]
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2017-09-14 14:42:50 +00:00
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mac = data.get('Calling-Station-Id', '')
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2017-12-03 18:44:24 +00:00
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result, log, password = check_user_machine_and_register(nas_type, user, mac)
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2017-09-13 13:04:09 +00:00
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logger.info(log.encode('utf-8'))
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2017-11-11 18:06:50 +00:00
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logger.info(user.encode('utf-8'))
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2017-09-12 17:40:04 +00:00
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if not result:
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return radiusd.RLM_MODULE_REJECT
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else:
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return (radiusd.RLM_MODULE_UPDATED,
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(),
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(
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(str("NT-Password"), str(password)),
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),
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)
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2016-12-08 14:13:41 +00:00
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2017-09-12 17:40:04 +00:00
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else:
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return (radiusd.RLM_MODULE_UPDATED,
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2016-12-08 14:13:41 +00:00
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(),
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(
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("Auth-Type", "Accept"),
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),
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2017-09-12 17:40:04 +00:00
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)
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2016-12-08 14:13:41 +00:00
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@radius_event
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def post_auth(data):
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2017-09-12 17:40:04 +00:00
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nas = data.get('NAS-IP-Address', data.get('NAS-Identifier', None))
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2017-09-13 01:53:06 +00:00
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nas_instance = find_nas_from_request(nas)
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2017-09-14 15:24:12 +00:00
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# Toutes les reuquètes non proxifiées
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2017-11-19 20:09:57 +00:00
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if not nas_instance:
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logger.info(u"Requète proxifiée, nas inconnu".encode('utf-8'))
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2017-09-14 15:24:12 +00:00
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return radiusd.RLM_MODULE_OK
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nas_type = Nas.objects.filter(nas_type=nas_instance.type).first()
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if not nas_type:
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logger.info(u"Type de nas non enregistré dans la bdd!".encode('utf-8'))
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return radiusd.RLM_MODULE_OK
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2017-12-03 18:44:24 +00:00
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2016-12-08 14:13:41 +00:00
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mac = data.get('Calling-Station-Id', None)
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2017-12-03 18:44:24 +00:00
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2017-09-12 17:40:04 +00:00
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# Si il s'agit d'un switch
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if hasattr(nas_instance, 'switch'):
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2017-09-14 15:24:12 +00:00
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port = data.get('NAS-Port-Id', data.get('NAS-Port', None))
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2017-12-03 18:44:24 +00:00
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#Pour les infrastructures possédant des switchs Juniper :
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#On vérifie si le switch fait partie d'un stack Juniper
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instance_stack = nas_instance.switch.stack
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if instance_stack:
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# Si c'est le cas, on resélectionne le bon switch dans la stack
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id_stack_member = port.split("-")[1].split('/')[0]
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nas_instance = Interface.objects.filter(switch__in=Switch.objects.filter(stack=instance_stack).filter(stack_member_id=id_stack_member)).select_related('domain__extension').first()
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# On récupère le numéro du port sur l'output de freeradius. La ligne suivante fonctionne pour cisco, HP et Juniper
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2017-09-12 17:40:04 +00:00
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port = port.split(".")[0].split('/')[-1][-2:]
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2017-09-14 15:24:12 +00:00
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out = decide_vlan_and_register_switch(nas_instance, nas_type, port, mac)
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2017-09-12 17:40:04 +00:00
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sw_name, reason, vlan_id = out
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log_message = '(fil) %s -> %s [%s%s]' % \
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(sw_name + u":" + port, mac, vlan_id, (reason and u': ' + reason).encode('utf-8'))
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logger.info(log_message)
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# Filaire
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2016-12-08 14:13:41 +00:00
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return (radiusd.RLM_MODULE_UPDATED,
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(
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("Tunnel-Type", "VLAN"),
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("Tunnel-Medium-Type", "IEEE-802"),
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2017-09-12 17:40:04 +00:00
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("Tunnel-Private-Group-Id", '%d' % int(vlan_id)),
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2016-12-08 14:13:41 +00:00
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),
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()
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2017-09-12 17:40:04 +00:00
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)
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2016-12-08 14:13:41 +00:00
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2017-09-12 17:40:04 +00:00
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else:
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return radiusd.RLM_MODULE_OK
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2016-12-08 14:13:41 +00:00
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@radius_event
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def dummy_fun(_):
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"""Do nothing, successfully. (C'est pour avoir un truc à mettre)"""
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return radiusd.RLM_MODULE_OK
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def detach(_=None):
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"""Appelé lors du déchargement du module (enfin, normalement)"""
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print "*** goodbye from auth.py ***"
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return radiusd.RLM_MODULE_OK
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2017-09-12 17:40:04 +00:00
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def find_nas_from_request(nas_id):
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2017-12-03 18:44:24 +00:00
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nas = Interface.objects.filter(Q(domain=Domain.objects.filter(name=nas_id)) | Q(ipv4=IpList.objects.filter(ipv4=nas_id))).select_related('type').select_related('switch__stack')
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2017-09-13 01:53:06 +00:00
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return nas.first()
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2017-09-12 17:40:04 +00:00
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2017-09-14 14:42:50 +00:00
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def check_user_machine_and_register(nas_type, username, mac_address):
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2017-09-12 17:40:04 +00:00
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""" Verifie le username et la mac renseignee. L'enregistre si elle est inconnue.
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Renvoie le mot de passe ntlm de l'user si tout est ok
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Utilise pour les authentifications en 802.1X"""
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interface = Interface.objects.filter(mac_address=mac_address).first()
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user = User.objects.filter(pseudo=username).first()
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if not user:
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2017-09-13 13:04:09 +00:00
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return (False, u"User inconnu", '')
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if not user.has_access():
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return (False, u"Adhérent non cotisant", '')
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2017-09-12 17:40:04 +00:00
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if interface:
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if interface.machine.user != user:
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return (False, u"Machine enregistrée sur le compte d'un autre user...", '')
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elif not interface.is_active:
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return (False, u"Machine desactivée", '')
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2017-10-30 19:53:49 +00:00
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elif not interface.ipv4:
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interface.assign_ipv4()
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return (True, u"Ok, Reassignation de l'ipv4", user.pwd_ntlm)
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2017-09-12 17:40:04 +00:00
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else:
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2017-09-13 13:04:09 +00:00
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return (True, u"Access ok", user.pwd_ntlm)
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2017-09-14 14:42:50 +00:00
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elif nas_type:
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2017-09-14 15:24:12 +00:00
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if nas_type.autocapture_mac:
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2017-09-14 14:42:50 +00:00
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result, reason = user.autoregister_machine(mac_address, nas_type)
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if result:
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return (True, u'Access Ok, Capture de la mac...', user.pwd_ntlm)
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else:
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2017-12-03 18:44:24 +00:00
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return (False, u'Erreur dans le register mac %s' % reason, '')
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2017-10-04 11:50:12 +00:00
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else:
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return (False, u'Machine inconnue', '')
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2017-09-12 17:40:04 +00:00
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else:
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2017-09-13 13:04:09 +00:00
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return (False, u"Machine inconnue", '')
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2017-09-12 17:40:04 +00:00
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2017-09-14 15:24:12 +00:00
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def decide_vlan_and_register_switch(nas, nas_type, port_number, mac_address):
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2017-11-19 20:09:57 +00:00
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"""Fonction de placement vlan pour un switch en radius filaire auth par mac.
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Plusieurs modes :
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- nas inconnu, port inconnu : on place sur le vlan par defaut VLAN_OK
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- pas de radius sur le port : VLAN_OK
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- bloq : VLAN_NOK
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- force : placement sur le vlan indiqué dans la bdd
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- mode strict :
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- pas de chambre associée : VLAN_NOK
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- pas d'utilisateur dans la chambre : VLAN_NOK
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- cotisation non à jour : VLAN_NOK
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- sinon passe à common (ci-dessous)
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- mode common :
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- interface connue (macaddress):
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- utilisateur proprio non cotisant ou banni : VLAN_NOK
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- user à jour : VLAN_OK
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- interface inconnue :
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|
|
- register mac désactivé : VLAN_NOK
|
|
|
|
- register mac activé :
|
|
|
|
- dans la chambre associé au port, pas d'user ou non à jour : VLAN_NOK
|
|
|
|
- user à jour, autocapture de la mac et VLAN_OK
|
|
|
|
"""
|
2017-09-10 20:50:20 +00:00
|
|
|
# Get port from switch and port number
|
2017-10-04 02:31:28 +00:00
|
|
|
extra_log = ""
|
2017-11-19 20:09:57 +00:00
|
|
|
# Si le NAS est inconnu, on place sur le vlan defaut
|
2017-09-12 17:40:04 +00:00
|
|
|
if not nas:
|
2017-09-13 13:04:09 +00:00
|
|
|
return ('?', u'Nas inconnu', VLAN_OK)
|
2017-09-10 20:50:20 +00:00
|
|
|
|
2017-09-12 17:40:04 +00:00
|
|
|
sw_name = str(nas)
|
2017-09-10 20:50:20 +00:00
|
|
|
|
2017-12-03 18:44:24 +00:00
|
|
|
port = Port.objects.filter(switch=Switch.objects.filter(switch_interface=nas), port=port_number).first()
|
2017-11-19 20:09:57 +00:00
|
|
|
#Si le port est inconnu, on place sur le vlan defaut
|
2017-09-10 20:50:20 +00:00
|
|
|
if not port:
|
2017-09-13 13:04:09 +00:00
|
|
|
return (sw_name, u'Port inconnu', VLAN_OK)
|
2017-09-10 20:50:20 +00:00
|
|
|
|
2017-10-04 01:05:00 +00:00
|
|
|
# Si un vlan a été précisé, on l'utilise pour VLAN_OK
|
|
|
|
if port.vlan_force:
|
2017-10-04 02:31:28 +00:00
|
|
|
DECISION_VLAN = int(port.vlan_force.vlan_id)
|
|
|
|
extra_log = u"Force sur vlan " + str(DECISION_VLAN)
|
|
|
|
else:
|
|
|
|
DECISION_VLAN = VLAN_OK
|
2017-09-10 20:50:20 +00:00
|
|
|
|
|
|
|
if port.radius == 'NO':
|
2017-10-04 02:31:28 +00:00
|
|
|
return (sw_name, u"Pas d'authentification sur ce port" + extra_log, DECISION_VLAN)
|
2017-09-10 20:50:20 +00:00
|
|
|
|
|
|
|
if port.radius == 'BLOQ':
|
2017-09-13 13:04:09 +00:00
|
|
|
return (sw_name, u'Port desactive', VLAN_NOK)
|
2017-09-10 20:50:20 +00:00
|
|
|
|
|
|
|
if port.radius == 'STRICT':
|
|
|
|
if not port.room:
|
2017-09-13 13:04:09 +00:00
|
|
|
return (sw_name, u'Chambre inconnue', VLAN_NOK)
|
2017-09-10 20:50:20 +00:00
|
|
|
|
2017-10-25 22:55:53 +00:00
|
|
|
room_user = User.objects.filter(Q(club__room=port.room) | Q(adherent__room=port.room))
|
2017-09-10 20:50:20 +00:00
|
|
|
if not room_user:
|
2017-09-13 13:04:09 +00:00
|
|
|
return (sw_name, u'Chambre non cotisante', VLAN_NOK)
|
2017-10-25 22:55:53 +00:00
|
|
|
for user in room_user:
|
|
|
|
if not user.has_access():
|
|
|
|
return (sw_name, u'Chambre resident desactive', VLAN_NOK)
|
2017-09-10 20:50:20 +00:00
|
|
|
# else: user OK, on passe à la verif MAC
|
|
|
|
|
|
|
|
if port.radius == 'COMMON' or port.radius == 'STRICT':
|
|
|
|
# Authentification par mac
|
2017-12-03 18:44:24 +00:00
|
|
|
interface = Interface.objects.filter(mac_address=mac_address).select_related('machine__user').select_related('ipv4').first()
|
2017-09-10 20:50:20 +00:00
|
|
|
if not interface:
|
|
|
|
# On essaye de register la mac
|
2017-09-14 15:24:12 +00:00
|
|
|
if not nas_type.autocapture_mac:
|
2017-09-13 13:04:09 +00:00
|
|
|
return (sw_name, u'Machine inconnue', VLAN_NOK)
|
2017-09-10 20:50:20 +00:00
|
|
|
elif not port.room:
|
2017-09-13 13:04:09 +00:00
|
|
|
return (sw_name, u'Chambre et machine inconnues', VLAN_NOK)
|
2017-09-10 20:50:20 +00:00
|
|
|
else:
|
2017-10-25 22:55:53 +00:00
|
|
|
if not room_user:
|
|
|
|
room_user = User.objects.filter(Q(club__room=port.room) | Q(adherent__room=port.room))
|
2017-09-10 20:50:20 +00:00
|
|
|
if not room_user:
|
2017-09-13 13:04:09 +00:00
|
|
|
return (sw_name, u'Machine et propriétaire de la chambre inconnus', VLAN_NOK)
|
2017-10-25 22:55:53 +00:00
|
|
|
elif room_user.count() > 1:
|
|
|
|
return (sw_name, u'Machine inconnue, il y a au moins 2 users dans la chambre/local -> ajout de mac automatique impossible', VLAN_NOK)
|
2017-09-10 20:50:20 +00:00
|
|
|
elif not room_user.first().has_access():
|
2017-09-13 13:04:09 +00:00
|
|
|
return (sw_name, u'Machine inconnue et adhérent non cotisant', VLAN_NOK)
|
2017-09-10 20:50:20 +00:00
|
|
|
else:
|
2017-09-14 15:24:12 +00:00
|
|
|
result, reason = room_user.first().autoregister_machine(mac_address, nas_type)
|
2017-09-10 20:50:20 +00:00
|
|
|
if result:
|
2017-10-04 02:31:28 +00:00
|
|
|
return (sw_name, u'Access Ok, Capture de la mac...' + extra_log, DECISION_VLAN)
|
2017-09-10 20:50:20 +00:00
|
|
|
else:
|
2017-12-03 18:44:24 +00:00
|
|
|
return (sw_name, u'Erreur dans le register mac %s' % reason + unicode(mac_address), VLAN_NOK)
|
2017-09-10 20:50:20 +00:00
|
|
|
else:
|
2017-10-30 19:53:49 +00:00
|
|
|
if not interface.is_active:
|
|
|
|
return (sw_name, u'Machine non active / adherent non cotisant', VLAN_NOK)
|
|
|
|
elif not interface.ipv4:
|
|
|
|
interface.assign_ipv4()
|
|
|
|
return (sw_name, u"Ok, Reassignation de l'ipv4" + extra_log, DECISION_VLAN)
|
|
|
|
else:
|
|
|
|
return (sw_name, u'Machine OK' + extra_log, DECISION_VLAN)
|