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https://gitlab2.federez.net/re2o/re2o
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507 lines
19 KiB
Python
507 lines
19 KiB
Python
# -*- mode: python; coding: utf-8 -*-
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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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# Copyirght © 2017 Daniel Stan
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# Copyright © 2017 Gabriel Détraz
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# Copyright © 2017 Lara Kermarec
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# Copyright © 2017 Augustin Lemesle
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# Copyright © 2020 Corentin Canebier
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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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"""
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Python backend for freeradius.
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This file contains definition of some functions called by freeradius backend
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during auth for wifi, wired device and nas.
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Other examples can be found here :
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https://github.com/FreeRADIUS/freeradius-server/blob/master/src/modules/rlm_python/
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Inspired by Daniel Stan in Crans
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"""
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import logging
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import os
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import sys
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import traceback
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import radiusd # Magic module freeradius (radiusd.py is dummy)
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from django.core.wsgi import get_wsgi_application
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from django.db.models import Q
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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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application = get_wsgi_application()
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from machines.models import Domain, Interface, IpList, Nas
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from preferences.models import RadiusOption
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from topologie.models import Port, Switch
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from users.models import User
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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.encode("utf-8"))
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# Init for logging
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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
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tuples (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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""" The function transforming the tuples as dict """
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if isinstance(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 renvoy s sont bien des
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# (str,str) : rlm_python ne dig re PAS les unicodes
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return fun(data)
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except Exception as err:
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exc_type, exc_instance, exc_traceback = sys.exc_info()
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formatted_traceback = "".join(traceback.format_tb(exc_traceback))
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logger.error("Failed %r on data %r" % (err, auth_data))
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logger.error("Function %r, Traceback : %r" %
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(fun, formatted_traceback))
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return radiusd.RLM_MODULE_FAIL
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return new_f
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@radius_event
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def instantiate(*_):
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"""Usefull for instantiate ldap connexions otherwise,
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do nothing"""
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logger.info("Instantiation")
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path = (os.path.dirname(os.path.abspath(__file__)))
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config = ConfigParser()
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config.read(path+'/config.ini')
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api_hostname = config.get('Re2o', 'hostname')
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api_password = config.get('Re2o', 'password')
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api_username = config.get('Re2o', 'username')
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global api_client
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api_client = Re2oAPIClient(
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api_hostname, api_username, api_password, use_tls=True)
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@radius_event
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def authorize(data):
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"""Here, we test if the Nas is known.
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- If the nas is unknown, we assume that it is a 802.1X request,
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- If the nas is known, we apply the 802.1X if enabled,
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- It the nas is known AND nas auth is enabled with mac address, returns
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accept here"""
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# For proxified request, split
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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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# For none proxified requests
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nas_type = None
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if nas_instance:
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nas_type = Nas.objects.filter(nas_type=nas_instance.machine_type).first()
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if not nas_type or nas_type.port_access_mode == "802.1X":
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user = data.get("User-Name", "")
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user = user.split("@", 1)[0]
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mac = data.get("Calling-Station-Id", "")
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result, log, password = check_user_machine_and_register(nas_type, user, mac)
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logger.info(str(log))
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logger.info(str(user))
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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 (
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radiusd.RLM_MODULE_UPDATED,
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(),
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((str("NT-Password"), str(password)),),
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)
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else:
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return (radiusd.RLM_MODULE_UPDATED, (), (("Auth-Type", "Accept"),))
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@radius_event
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def post_auth(data):
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"""Function called after the user is authenticated"""
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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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# All non proxified requests
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if not nas_instance:
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logger.info("Proxified request, nas unknown")
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return radiusd.RLM_MODULE_OK
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nas_type = Nas.objects.filter(nas_type=nas_instance.machine_type).first()
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if not nas_type:
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logger.info("Proxified request, nas unknown")
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return radiusd.RLM_MODULE_OK
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# If it is a switch
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if switch:
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sw_name = switch["name"] or "?"
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room = "Unknown port"
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if port:
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room = port["room"] or "Unknown room"
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out = decide_vlan_switch(data_from_api, mac, nas_port)
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reason, vlan_id, decision, attributes = out
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if decision:
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log_message = "(wired) %s -> %s [%s%s]" % (
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sw_name + ":" + nas_port + "/" + str(room),
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mac,
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vlan_id,
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(reason and ": " + reason),
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)
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logger.info(log_message)
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# Wired connexion
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return (
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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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("Tunnel-Private-Group-Id", "%d" % int(vlan_id)),
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)
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+ tuple(attributes),
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(),
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)
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else:
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log_message = "(wired) %s -> %s [Reject %s]" % (
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sw_name + ":" + nas_port + "/" + str(room),
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mac,
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(reason and ": " + reason),
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)
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logger.info(log_message)
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return (radiusd.RLM_MODULE_REJECT, tuple(attributes), ())
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else:
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return radiusd.RLM_MODULE_OK
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def check_user_machine_and_register(nas_type, user, user_interface):
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"""Check if username and mac are registered. Register it if unknown.
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Return the user ntlm password if everything is ok.
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Used for 802.1X auth"""
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if not user:
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return (False, "User unknown", "")
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if not user["access"]:
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return (False, "Invalid connexion (non-contributing user)", "")
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if user_interface:
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if user_interface["user_pk"] != user["pk"]:
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return (
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False,
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"Mac address registered on another user account",
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"",
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)
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elif not user_interface["active"]:
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return (False, "Interface/Machine disabled", "")
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elif not user_interface["ipv4"]:
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# interface.assign_ipv4()
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return (True, "Ok, new ipv4 assignement...", user.get("pwd_ntlm", ""))
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else:
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return (True, "Access ok", user.get("pwd_ntlm", ""))
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elif nas_type:
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if nas_type["autocapture_mac"]:
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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, "Access Ok, Registering mac...", user.pwd_ntlm)
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# else:
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# return (False, "Error during mac register %s" % reason, "")
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return (False, "L'auto capture est désactivée", "")
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else:
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return (False, "Unknown interface/machine", "")
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else:
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return (False, "Unknown interface/machine", "")
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def set_radius_attributes_values(attributes, values):
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return (
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(str(attribute["attribute"]), str(attribute["value"] % values))
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for attribute in attributes
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)
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def decide_vlan_switch(data_from_api, user_mac, nas_port):
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"""Function for selecting vlan for a switch with wired mac auth radius.
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Several modes are available :
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- all modes:
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- unknown NAS : VLAN_OK,
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- unknown port : Decision set in Re2o RadiusOption
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- No radius on this port : VLAN_OK
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- force : returns vlan provided by the database
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- mode strict:
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- no room : Decision set in Re2o RadiusOption,
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- no user in this room : Reject,
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- user of this room is banned or disable : Reject,
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- user of this room non-contributor and not whitelisted:
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Decision set in Re2o RadiusOption
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- mode common :
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- mac-address already registered:
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- related user non contributor / interface disabled:
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Decision set in Re2o RadiusOption
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- related user is banned:
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Decision set in Re2o RadiusOption
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- user contributing : VLAN_OK (can assign ipv4 if needed)
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- unknown interface :
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- register mac disabled : Decision set in Re2o RadiusOption
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- register mac enabled : redirect to webauth
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Returns:
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tuple with :
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- Switch name (str)
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- Room (str)
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- Reason of the decision (str)
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- vlan_id (int)
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- decision (bool)
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- Other Attributs (attribut:str, operator:str, value:str)
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"""
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nas_type = data_from_api["nas"]
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room_users = data_from_api["room_users"]
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port = data_from_api["port"]
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port_profile = data_from_api["port_profile"]
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switch = data_from_api["switch"]
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user_interface = data_from_api["user_interface"]
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radius_option = data_from_api["radius_option"]
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EMAIL_STATE_UNVERIFIED = data_from_api["EMAIL_STATE_UNVERIFIED"]
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RADIUS_OPTION_REJECT = data_from_api["RADIUS_OPTION_REJECT"]
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USER_STATE_ACTIVE = data_from_api["USER_STATE_ACTIVE"]
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attributes_kwargs = {
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"client_mac": str(user_mac),
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"switch_port": str(nas_port.split(".")[0].split("/")[-1][-2:]),
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"switch_ip": str(switch["ipv4"])
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}
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# Get port from switch and port number
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extra_log = ""
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# If NAS is unknown, go to default vlan
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if not nas_machine:
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return (
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"?",
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"Unknown room",
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"Unknown NAS",
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RadiusOption.get_cached_value("vlan_decision_ok").vlan_id,
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True,
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RadiusOption.get_attributes("ok_attributes", attributes_kwargs),
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)
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sw_name = str(getattr(nas_machine, "short_name", str(nas_machine)))
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switch = Switch.objects.filter(machine_ptr=nas_machine).first()
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attributes_kwargs["switch_ip"] = str(switch.ipv4)
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port = Port.objects.filter(switch=switch, port=port_number).first()
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# If the port is unknwon, go to default vlan
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# We don't have enought information to make a better decision
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if not port or not port_profile:
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return (
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"Unknown port",
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radius_option["unknown_port_vlan"] and radius_option["unknown_port_vlan"]["vlan_id"] or None,
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radius_option["unknown_port"] != RADIUS_OPTION_REJECT,
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set_radius_attributes_values(
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radius_option["unknown_port_attributes"], attributes_kwargs),
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)
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# Retrieve port profile
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port_profile = port.get_port_profile
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# If a vlan is precised in port config, we use it
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if port_profile["vlan_untagged"]:
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DECISION_VLAN = int(port_profile["vlan_untagged"]["vlan_id"])
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extra_log = "Force sur vlan " + str(DECISION_VLAN)
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attributes = ()
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else:
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DECISION_VLAN = radius_option["vlan_decision_ok"]["vlan_id"]
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attributes = set_radius_attributes_values(
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radius_option["ok_attributes"], attributes_kwargs)
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# If the port is disabled in re2o, REJECT
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if not port["state"]:
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return ("Port disabled", None, False, ())
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# If radius is disabled, decision is OK
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if port_profile["radius_type"] == "NO":
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return (
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"No Radius auth enabled on this port" + extra_log,
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DECISION_VLAN,
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True,
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attributes,
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)
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# If 802.1X is enabled, people has been previously accepted.
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# Go to the decision vlan
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if (nas_type["port_access_mode"], port_profile["radius_type"]) == ("802.1X", "802.1X"):
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return (
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"Accept authentication 802.1X",
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DECISION_VLAN,
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True,
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attributes,
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)
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# Otherwise, we are in mac radius.
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# If strict mode is enabled, we check every user related with this port. If
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# one user or more is not enabled, we reject to prevent from sharing or
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# spoofing mac.
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if port_profile["radius_mode"] == "STRICT":
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if not port["room"]:
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return (
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"Unkwown room",
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radius_option["unknown_room_vlan"] and radius_option["unknown_room_vlan"]["vlan_id"] or None,
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radius_option["unknown_room"] != RADIUS_OPTION_REJECT,
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set_radius_attributes_values(
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radius_option["unknown_room_attributes"], attributes_kwargs),
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)
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if not room_users:
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return (
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"Non-contributing room",
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radius_option["non_member_vlan"] and radius_option["non_member_vlan"]["vlan_id"] or None,
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radius_option["non_member"] != RADIUS_OPTION_REJECT,
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set_radius_attributes_values(
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radius_option["non_member_attributes"], attributes_kwargs),
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)
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all_user_ban = True
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at_least_one_active_user = False
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for user in room_users:
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if not user["is_ban"] and user["state"] == USER_STATE_ACTIVE:
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all_user_ban = False
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elif user["email_state"] != EMAIL_STATE_UNVERIFIED and (user["is_connected"] or user["is_whitelisted"]):
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at_least_one_active_user = True
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if all_user_ban:
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return (
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"User is banned or disabled",
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radius_option["banned_vlan"] and radius_option["banned_vlan"]["vlan_id"] or None,
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radius_option["banned"] != RADIUS_OPTION_REJECT,
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set_radius_attributes_values(
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radius_option["banned_attributes"], attributes_kwargs),
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)
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if not at_least_one_active_user:
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return (
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"Non-contributing member or unconfirmed mail",
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radius_option["non_member_vlan"] and radius_option["non_member_vlan"]["vlan_id"] or None,
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radius_option["non_member"] != RADIUS_OPTION_REJECT,
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set_radius_attributes_values(
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radius_option["non_member_attributes"], attributes_kwargs),
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)
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# else: user OK, so we check MAC now
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# If we are authenticating with mac, we look for the interfaces and its mac address
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if port_profile["radius_mode"] == "COMMON" or port_profile["radius_mode"] == "STRICT":
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# If mac is unknown,
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if not user_interface:
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# We try to register mac, if autocapture is enabled
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# Final decision depend on RADIUSOption set in re2o
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if nas_type["autocapture_mac"]:
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return (
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"Unknown mac/interface",
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radius_option["unknown_machine_vlan"] and radius_option["unknown_machine_vlan"]["vlan_id"] or None,
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radius_option["unknown_machine"] != RADIUS_OPTION_REJECT,
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set_radius_attributes_values(
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radius_option["unknown_machine_attributes"], attributes_kwargs),
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)
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# Otherwise, if autocapture mac is not enabled,
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else:
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return (
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"Unknown mac/interface",
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radius_option["unknown_machine_vlan"] and radius_option["unknown_machine_vlan"]["vlan_id"] or None,
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radius_option["unknown_machine"] != RADIUS_OPTION_REJECT,
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set_radius_attributes_values(
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radius_option["unknown_machine_attributes"], attributes_kwargs),
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)
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# Mac/Interface is found, check if related user is contributing and ok
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# If needed, set ipv4 to it
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else:
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if user_interface["is_ban"]:
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return (
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"Banned user",
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radius_option["banned_vlan"] and radius_option["banned_vlan"]["vlan_id"] or None,
|
|
radius_option["banned"] != RADIUS_OPTION_REJECT,
|
|
set_radius_attributes_values(
|
|
radius_option["banned_attributes"], attributes_kwargs),
|
|
)
|
|
if not user_interface["active"]:
|
|
return (
|
|
"Disabled interface / non-contributing member",
|
|
radius_option["non_member_vlan"] and radius_option["non_member_vlan"]["vlan_id"] or None,
|
|
radius_option["non_member"] != RADIUS_OPTION_REJECT,
|
|
set_radius_attributes_values(
|
|
radius_option["non_member_attributes"], attributes_kwargs),
|
|
)
|
|
# If settings is set to related interface vlan policy based on interface type:
|
|
if radius_option["radius_general_policy"] == "MACHINE":
|
|
DECISION_VLAN = user_interface["vlan_id"]
|
|
if not user_interface["ipv4"]:
|
|
# interface.assign_ipv4()
|
|
return (
|
|
"Ok, assigning new ipv4" + extra_log,
|
|
DECISION_VLAN,
|
|
True,
|
|
attributes,
|
|
)
|
|
else:
|
|
return (
|
|
"Interface OK" + extra_log,
|
|
DECISION_VLAN,
|
|
True,
|
|
attributes,
|
|
)
|