mirror of
https://gitlab2.federez.net/re2o/re2o
synced 2024-11-16 08:23:12 +00:00
916 lines
29 KiB
Python
916 lines
29 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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# 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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"""
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Definition des modèles de l'application topologie.
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On défini les models suivants :
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- stack (id, id_min, id_max et nom) regrouppant les switches
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- switch : nom, nombre de port, et interface
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machine correspondante (mac, ip, etc) (voir machines.models.interface)
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- Port: relié à un switch parent par foreign_key, numero du port,
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relié de façon exclusive à un autre port, une machine
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(serveur ou borne) ou une prise murale
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- room : liste des prises murales, nom et commentaire de l'état de
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la prise
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"""
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from __future__ import unicode_literals
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import itertools
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from django.db import models
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from django.db.models.signals import post_save, post_delete
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from django.utils.functional import cached_property
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from django.dispatch import receiver
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from django.core.exceptions import ValidationError
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from django.db import IntegrityError
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from django.db import transaction
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from django.utils.translation import ugettext_lazy as _
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from reversion import revisions as reversion
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from preferences.models import (
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OptionalTopologie,
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RadiusKey,
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SwitchManagementCred
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)
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from machines.models import Machine, regen
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from re2o.mixins import AclMixin, RevMixin
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class Stack(AclMixin, RevMixin, models.Model):
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"""Un objet stack. Regrouppe des switchs en foreign key
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,contient une id de stack, un switch id min et max dans
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le stack"""
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name = models.CharField(max_length=32, blank=True, null=True)
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stack_id = models.CharField(max_length=32, unique=True)
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details = models.CharField(max_length=255, blank=True, null=True)
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member_id_min = models.PositiveIntegerField()
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member_id_max = models.PositiveIntegerField()
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class Meta:
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permissions = (
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("view_stack", _("Can view a stack object")),
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)
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verbose_name = _("switches stack")
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verbose_name_plural = _("switches stacks")
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def __str__(self):
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return " ".join([self.name, self.stack_id])
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def save(self, *args, **kwargs):
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self.clean()
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if not self.name:
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self.name = self.stack_id
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super(Stack, self).save(*args, **kwargs)
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def clean(self):
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""" Verification que l'id_max < id_min"""
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if self.member_id_max < self.member_id_min:
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raise ValidationError(
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{'member_id_max': _("The maximum ID is less than the"
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" minimum ID.")}
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)
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class AccessPoint(AclMixin, Machine):
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"""Define a wireless AP. Inherit from machines.interfaces
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Definition pour une borne wifi , hérite de machines.interfaces
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"""
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location = models.CharField(
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max_length=255,
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help_text=_("Details about the AP's location"),
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blank=True,
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null=True
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)
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class Meta:
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permissions = (
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("view_accesspoint", _("Can view an access point object")),
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)
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verbose_name = _("access point")
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verbose_name_plural = _("access points")
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def port(self):
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"""Return the queryset of ports for this device"""
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return Port.objects.filter(
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machine_interface__machine=self
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)
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def switch(self):
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"""Return the switch where this is plugged"""
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return Switch.objects.filter(
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ports__machine_interface__machine=self
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)
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def building(self):
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"""
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Return the building of the AP/Server (building of the switchs
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connected to...)
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"""
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return Building.objects.filter(
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switchbay__switch=self.switch()
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)
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@cached_property
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def short_name(self):
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return str(self.interface_set.first().domain.name)
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@classmethod
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def all_ap_in(cls, building_instance):
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"""Get a building as argument, returns all ap of a building"""
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return cls.objects.filter(
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interface__port__switch__switchbay__building=building_instance
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)
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def __str__(self):
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return str(self.interface_set.first())
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class Server(Machine):
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"""
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Dummy class, to retrieve servers of a building, or get switch of a server
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"""
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class Meta:
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proxy = True
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def port(self):
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"""Return the queryset of ports for this device"""
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return Port.objects.filter(
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machine_interface__machine=self
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)
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def switch(self):
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"""Return the switch where this is plugged"""
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return Switch.objects.filter(
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ports__machine_interface__machine=self
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)
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def building(self):
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"""
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Return the building of the AP/Server
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(building of the switchs connected to...)
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"""
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return Building.objects.filter(
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switchbay__switch=self.switch()
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)
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@cached_property
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def short_name(self):
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return str(self.interface_set.first().domain.name)
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@classmethod
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def all_server_in(cls, building_instance):
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"""Get a building as argument, returns all server of a building"""
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return cls.objects.filter(
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interface__port__switch__switchbay__building=building_instance
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).exclude(accesspoint__isnull=False)
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def __str__(self):
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return str(self.interface_set.first())
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class Switch(AclMixin, Machine):
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""" Definition d'un switch. Contient un nombre de ports (number),
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un emplacement (location), un stack parent (optionnel, stack)
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et un id de membre dans le stack (stack_member_id)
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relié en onetoone à une interface
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Pourquoi ne pas avoir fait hériter switch de interface ?
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Principalement par méconnaissance de la puissance de cette façon de faire.
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Ceci étant entendu, django crée en interne un onetoone, ce qui a un
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effet identique avec ce que l'on fait ici
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Validation au save que l'id du stack est bien dans le range id_min
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id_max de la stack parente"""
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number = models.PositiveIntegerField(
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help_text=_("Number of ports")
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)
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stack = models.ForeignKey(
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'topologie.Stack',
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blank=True,
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null=True,
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on_delete=models.SET_NULL
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)
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stack_member_id = models.PositiveIntegerField(
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blank=True,
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null=True
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)
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model = models.ForeignKey(
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'topologie.ModelSwitch',
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blank=True,
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null=True,
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on_delete=models.SET_NULL,
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help_text=_("Switch model")
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)
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switchbay = models.ForeignKey(
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'topologie.SwitchBay',
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blank=True,
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null=True,
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on_delete=models.SET_NULL,
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)
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radius_key = models.ForeignKey(
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'preferences.RadiusKey',
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blank=True,
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null=True,
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on_delete=models.PROTECT,
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help_text="Clef radius du switch"
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)
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management_creds = models.ForeignKey(
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'preferences.SwitchManagementCred',
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blank=True,
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null=True,
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on_delete=models.PROTECT,
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help_text="Identifiant de management de ce switch"
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)
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automatic_provision = models.BooleanField(
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default=False,
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help_text='Provision automatique de ce switch',
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)
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class Meta:
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unique_together = ('stack', 'stack_member_id')
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permissions = (
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("view_switch", _("Can view a switch object")),
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)
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verbose_name = _("switch")
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verbose_name_plural = _("switches")
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def clean(self):
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""" Verifie que l'id stack est dans le bon range
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Appelle également le clean de la classe parente"""
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super(Switch, self).clean()
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if self.stack is not None:
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if self.stack_member_id is not None:
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if (self.stack_member_id > self.stack.member_id_max) or\
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(self.stack_member_id < self.stack.member_id_min):
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raise ValidationError(
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{'stack_member_id': _("The switch ID exceeds the"
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" limits allowed by the stack.")}
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)
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else:
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raise ValidationError(
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{'stack_member_id': _("The stack member ID can't be"
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" void.")}
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)
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def create_ports(self, begin, end):
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""" Crée les ports de begin à end si les valeurs données
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sont cohérentes. """
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if end < begin:
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raise ValidationError(_("The end port is less than the start"
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" port."))
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ports_to_create = range(begin, end + 1)
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existing_ports = Port.objects.filter(switch=self.switch).values_list('port', flat=True)
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non_existing_ports = list(set(ports_to_create) - set(existing_ports))
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if len(non_existing_ports) + existing_ports.count() > self.number:
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raise ValidationError(_("This switch can't have that many ports."))
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with transaction.atomic(), reversion.create_revision():
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reversion.set_comment(_("Creation"))
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Port.objects.bulk_create([Port(switch=self.switch, port=port_id) for port_id in non_existing_ports])
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def main_interface(self):
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""" Returns the 'main' interface of the switch
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It must the the management interface for that device"""
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switch_iptype = OptionalTopologie.get_cached_value('switchs_ip_type')
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if switch_iptype:
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return self.interface_set.filter(type__ip_type=switch_iptype).first()
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return self.interface_set.first()
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@cached_property
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def get_name(self):
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return self.name or getattr(self.main_interface(), 'domain', 'Unknown')
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@cached_property
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def get_radius_key(self):
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"""Retourne l'objet de la clef radius de ce switch"""
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return self.radius_key or RadiusKey.objects.filter(default_switch=True).first()
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@cached_property
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def get_radius_key_value(self):
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"""Retourne la valeur en str de la clef radius, none si il n'y en a pas"""
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if self.get_radius_key:
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return self.get_radius_key.radius_key
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else:
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return None
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@cached_property
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def get_management_cred(self):
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"""Retourne l'objet des creds de managament de ce switch"""
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return self.management_creds or SwitchManagementCred.objects.filter(default_switch=True).first()
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@cached_property
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def get_management_cred_value(self):
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"""Retourne un dict des creds de management du switch"""
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if self.get_management_cred:
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return {'id': self.get_management_cred.management_id, 'pass': self.get_management_cred.management_pass}
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else:
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return None
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@cached_property
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def rest_enabled(self):
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return OptionalTopologie.get_cached_value('switchs_rest_management') or self.automatic_provision
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@cached_property
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def web_management_enabled(self):
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sw_management = OptionalTopologie.get_cached_value('switchs_web_management')
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sw_management_ssl = OptionalTopologie.get_cached_value('switchs_web_management_ssl')
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if sw_management_ssl:
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return "ssl"
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elif sw_management:
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return "plain"
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else:
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return self.automatic_provision
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@cached_property
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def ipv4(self):
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"""Return the switch's management ipv4"""
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return str(self.main_interface().ipv4)
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@cached_property
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def ipv6(self):
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"""Returne the switch's management ipv6"""
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return str(self.main_interface().ipv6().first())
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@cached_property
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def interfaces_subnet(self):
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"""Return dict ip:subnet for all ip of the switch"""
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return dict((str(interface.ipv4), interface.type.ip_type.ip_set_full_info) for interface in self.interface_set.all())
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@cached_property
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def interfaces6_subnet(self):
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"""Return dict ip6:subnet for all ipv6 of the switch"""
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return dict((str(interface.ipv6().first()), interface.type.ip_type.ip6_set_full_info) for interface in self.interface_set.all())
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@cached_property
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def list_modules(self):
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"""Return modules of that switch, list of dict (rank, reference)"""
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modules = []
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if getattr(self.model, 'is_modular', None):
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if self.model.is_itself_module:
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modules.append((1, self.model.reference))
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for module_of_self in self.moduleonswitch_set.all():
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modules.append((module_of_self.slot, module_of_self.module.reference))
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return modules
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def __str__(self):
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return str(self.get_name)
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class ModelSwitch(AclMixin, RevMixin, models.Model):
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"""Un modèle (au sens constructeur) de switch"""
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reference = models.CharField(max_length=255)
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commercial_name = models.CharField(
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max_length=255,
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null=True,
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blank=True
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)
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constructor = models.ForeignKey(
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'topologie.ConstructorSwitch',
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on_delete=models.PROTECT
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)
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firmware = models.CharField(
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max_length=255,
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null=True,
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blank=True
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)
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is_modular = models.BooleanField(
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default=False,
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help_text=_("Is this switch model modular"),
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)
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is_itself_module = models.BooleanField(
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default=False,
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help_text=_("Is the switch, itself, considered as a module"),
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)
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class Meta:
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permissions = (
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("view_modelswitch", _("Can view a switch model object")),
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)
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verbose_name = _("switch model")
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verbose_name_plural = _("switch models")
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def __str__(self):
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if self.commercial_name:
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return str(self.constructor) + ' ' + str(self.commercial_name)
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else:
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return str(self.constructor) + ' ' + self.reference
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class ModuleSwitch(AclMixin, RevMixin, models.Model):
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"""A module of a switch"""
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reference = models.CharField(
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max_length=255,
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help_text=_("Reference of a module"),
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verbose_name=_("Module reference")
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)
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comment = models.CharField(
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max_length=255,
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null=True,
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blank=True,
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help_text=_("Comment"),
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verbose_name=_("Comment")
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)
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class Meta:
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permissions = (
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("view_moduleswitch", _("Can view a module object")),
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)
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verbose_name = _("Module of a switch")
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def __str__(self):
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return str(self.reference)
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class ModuleOnSwitch(AclMixin, RevMixin, models.Model):
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"""Link beetween module and switch"""
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module = models.ForeignKey('ModuleSwitch', on_delete=models.CASCADE)
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switch = models.ForeignKey('Switch', on_delete=models.CASCADE)
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slot = models.CharField(
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max_length=15,
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help_text=_("Slot on switch"),
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verbose_name=_("Slot")
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)
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class Meta:
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permissions = (
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("view_moduleonswitch", _("Can view a moduleonswitch object")),
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)
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verbose_name = _("link between switchs and modules")
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unique_together = ['slot', 'switch']
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def __str__(self):
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return 'On slot ' + str(self.slot) + ' of ' + str(self.switch)
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class ConstructorSwitch(AclMixin, RevMixin, models.Model):
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"""Un constructeur de switch"""
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name = models.CharField(max_length=255)
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class Meta:
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permissions = (
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("view_constructorswitch", _("Can view a switch constructor"
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" object")),
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)
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verbose_name = _("switch constructor")
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verbose_name_plural = ("switch constructors")
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def __str__(self):
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return self.name
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class SwitchBay(AclMixin, RevMixin, models.Model):
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"""Une baie de brassage"""
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name = models.CharField(max_length=255)
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building = models.ForeignKey(
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'Building',
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on_delete=models.PROTECT
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)
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info = models.CharField(
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max_length=255,
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blank=True,
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null=True
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)
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class Meta:
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permissions = (
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("view_switchbay", _("Can view a switch bay object")),
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)
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verbose_name = _("switch bay")
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verbose_name_plural = _("switch bays")
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def __str__(self):
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return self.name
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class Building(AclMixin, RevMixin, models.Model):
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"""Un batiment"""
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name = models.CharField(max_length=255)
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class Meta:
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permissions = (
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("view_building", _("Can view a building object")),
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)
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verbose_name = _("building")
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verbose_name_plural = _("buildings")
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def all_ap_in(self):
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"""Returns all ap of the building"""
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return AccessPoint.all_ap_in(self)
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def __str__(self):
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return self.name
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|
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class Port(AclMixin, RevMixin, models.Model):
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""" Definition d'un port. Relié à un switch(foreign_key),
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un port peut etre relié de manière exclusive à :
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- une chambre (room)
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- une machine (serveur etc) (machine_interface)
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- un autre port (uplink) (related)
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Champs supplémentaires :
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- RADIUS (mode STRICT : connexion sur port uniquement si machine
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d'un adhérent à jour de cotisation et que la chambre est également à
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jour de cotisation
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mode COMMON : vérification uniquement du statut de la machine
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mode NO : accepte toute demande venant du port et place sur le vlan normal
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mode BLOQ : rejet de toute authentification
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- vlan_force : override la politique générale de placement vlan, permet
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de forcer un port sur un vlan particulier. S'additionne à la politique
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RADIUS"""
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switch = models.ForeignKey(
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'Switch',
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related_name="ports",
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on_delete=models.CASCADE
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)
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port = models.PositiveIntegerField()
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room = models.ForeignKey(
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'Room',
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on_delete=models.PROTECT,
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blank=True,
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null=True
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)
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machine_interface = models.ForeignKey(
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'machines.Interface',
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on_delete=models.SET_NULL,
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blank=True,
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null=True
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)
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related = models.OneToOneField(
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'self',
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null=True,
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blank=True,
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related_name='related_port'
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)
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custom_profile = models.ForeignKey(
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'PortProfile',
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on_delete=models.PROTECT,
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blank=True,
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null=True
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)
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state = models.BooleanField(
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default=True,
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help_text='Port state Active',
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verbose_name=_("Port state Active")
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)
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details = models.CharField(max_length=255, blank=True)
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class Meta:
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unique_together = ('switch', 'port')
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permissions = (
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("view_port", _("Can view a port object")),
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)
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verbose_name = _("port")
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verbose_name_plural = _("ports")
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@cached_property
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def pretty_name(self):
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"""More elaborated name for label on switch conf"""
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if self.related:
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return "Uplink : " + self.related.switch.short_name
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elif self.machine_interface:
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return "Machine : " + str(self.machine_interface.domain)
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elif self.room:
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return "Chambre : " + str(self.room)
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else:
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return "Inconnue"
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@cached_property
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def get_port_profile(self):
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"""Return the config profil for this port
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:returns: the profile of self (port)"""
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def profile_or_nothing(profile):
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port_profile = PortProfile.objects.filter(
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profil_default=profile).first()
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if port_profile:
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return port_profile
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else:
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nothing_profile, _created = PortProfile.objects.get_or_create(
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profil_default='nothing',
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name='nothing',
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radius_type='NO'
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)
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return nothing_profile
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if self.custom_profile:
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return self.custom_profile
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elif self.related:
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return profile_or_nothing('uplink')
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elif self.machine_interface:
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if hasattr(self.machine_interface.machine, 'accesspoint'):
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return profile_or_nothing('access_point')
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else:
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return profile_or_nothing('asso_machine')
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elif self.room:
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return profile_or_nothing('room')
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else:
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return profile_or_nothing('nothing')
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@classmethod
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def get_instance(cls, portid, *_args, **kwargs):
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return (cls.objects
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.select_related('machine_interface__domain__extension')
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.select_related('machine_interface__machine__switch')
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.select_related('room')
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.select_related('related')
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.prefetch_related('switch__interface_set__domain__extension')
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.get(pk=portid))
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def make_port_related(self):
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""" Synchronise le port distant sur self"""
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related_port = self.related
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related_port.related = self
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related_port.save()
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def clean_port_related(self):
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""" Supprime la relation related sur self"""
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related_port = self.related_port
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related_port.related = None
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related_port.save()
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def clean(self):
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""" Verifie que un seul de chambre, interface_parent et related_port
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est rempli. Verifie que le related n'est pas le port lui-même....
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Verifie que le related n'est pas déjà occupé par une machine ou une
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chambre. Si ce n'est pas le cas, applique la relation related
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Si un port related point vers self, on nettoie la relation
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A priori pas d'autre solution que de faire ça à la main. A priori
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tout cela est dans un bloc transaction, donc pas de problème de
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cohérence"""
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if hasattr(self, 'switch'):
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if self.port > self.switch.number:
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raise ValidationError(
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_("The port can't exist, its number is too great.")
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)
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if (self.room and self.machine_interface or
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self.room and self.related or
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self.machine_interface and self.related):
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raise ValidationError(
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_("Room, interface and related port are mutually exclusive.")
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)
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if self.related == self:
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raise ValidationError(_("A port can't be related to itself."))
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if self.related and not self.related.related:
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if self.related.machine_interface or self.related.room:
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raise ValidationError(
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_("The related port is already used, please clear it"
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" before creating the relation.")
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)
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else:
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self.make_port_related()
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elif hasattr(self, 'related_port'):
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self.clean_port_related()
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def __str__(self):
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return str(self.switch) + " - " + str(self.port)
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|
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class Room(AclMixin, RevMixin, models.Model):
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"""Une chambre/local contenant une prise murale"""
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name = models.CharField(max_length=255, unique=True)
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details = models.CharField(max_length=255, blank=True)
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class Meta:
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ordering = ['name']
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permissions = (
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("view_room", _("Can view a room object")),
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)
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verbose_name = _("room")
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verbose_name_plural = _("rooms")
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def __str__(self):
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return self.name
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|
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class PortProfile(AclMixin, RevMixin, models.Model):
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"""Contains the information of the ports' configuration for a switch"""
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TYPES = (
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('NO', 'NO'),
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('802.1X', '802.1X'),
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('MAC-radius', 'MAC-radius'),
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)
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MODES = (
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('STRICT', 'STRICT'),
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('COMMON', 'COMMON'),
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)
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SPEED = (
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('10-half', '10-half'),
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('100-half', '100-half'),
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('10-full', '10-full'),
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('100-full', '100-full'),
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('1000-full', '1000-full'),
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('auto', 'auto'),
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('auto-10', 'auto-10'),
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('auto-100', 'auto-100'),
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)
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PROFIL_DEFAULT = (
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('room', 'room'),
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('access_point', 'access_point'),
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('uplink', 'uplink'),
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('asso_machine', 'asso_machine'),
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('nothing', 'nothing'),
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)
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name = models.CharField(max_length=255, verbose_name=_("Name"))
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profil_default = models.CharField(
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max_length=32,
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choices=PROFIL_DEFAULT,
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blank=True,
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null=True,
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unique=True,
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verbose_name=_("Default profile")
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)
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vlan_untagged = models.ForeignKey(
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'machines.Vlan',
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related_name='vlan_untagged',
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on_delete=models.SET_NULL,
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blank=True,
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null=True,
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verbose_name=_("VLAN untagged")
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)
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vlan_tagged = models.ManyToManyField(
|
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'machines.Vlan',
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related_name='vlan_tagged',
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blank=True,
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verbose_name=_("VLAN(s) tagged")
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)
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radius_type = models.CharField(
|
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max_length=32,
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choices=TYPES,
|
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help_text=_("Type of RADIUS authentication : inactive, MAC-address or"
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" 802.1X"),
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verbose_name=_("RADIUS type")
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)
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radius_mode = models.CharField(
|
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max_length=32,
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choices=MODES,
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default='COMMON',
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help_text=_("In case of MAC-authentication : mode COMMON or STRICT on"
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" this port"),
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verbose_name=_("RADIUS mode")
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)
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speed = models.CharField(
|
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max_length=32,
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choices=SPEED,
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default='auto',
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help_text=_("Port speed limit"),
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)
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mac_limit = models.IntegerField(
|
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null=True,
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blank=True,
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help_text=_("Limit of MAC-address on this port"),
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verbose_name=_("MAC limit")
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)
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flow_control = models.BooleanField(
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default=False,
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help_text=_("Flow control"),
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)
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dhcp_snooping = models.BooleanField(
|
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default=False,
|
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help_text=_("Protect against rogue DHCP"),
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verbose_name=_("DHCP snooping")
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)
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dhcpv6_snooping = models.BooleanField(
|
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default=False,
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help_text=_("Protect against rogue DHCPv6"),
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verbose_name=_("DHCPv6 snooping")
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)
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arp_protect = models.BooleanField(
|
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default=False,
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help_text=_("Check if IP adress is DHCP assigned"),
|
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verbose_name=_("ARP protection")
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)
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ra_guard = models.BooleanField(
|
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default=False,
|
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help_text=_("Protect against rogue RA"),
|
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verbose_name=_("RA guard")
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)
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loop_protect = models.BooleanField(
|
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default=False,
|
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help_text=_("Protect against loop"),
|
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verbose_name=_("Loop protection")
|
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)
|
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|
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class Meta:
|
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permissions = (
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("view_port_profile", _("Can view a port profile object")),
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)
|
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verbose_name = _("port profile")
|
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verbose_name_plural = _("port profiles")
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|
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security_parameters_fields = [
|
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'loop_protect',
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'ra_guard',
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'arp_protect',
|
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'dhcpv6_snooping',
|
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'dhcp_snooping',
|
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'flow_control'
|
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]
|
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|
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@cached_property
|
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def security_parameters_enabled(self):
|
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return [
|
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parameter
|
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for parameter in self.security_parameters_fields
|
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if getattr(self, parameter)
|
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]
|
|
|
|
@cached_property
|
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def security_parameters_as_str(self):
|
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return ','.join(self.security_parameters_enabled)
|
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|
|
def __str__(self):
|
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return self.name
|
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|
|
|
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@receiver(post_save, sender=AccessPoint)
|
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def ap_post_save(**_kwargs):
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"""Regeneration des noms des bornes vers le controleur"""
|
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regen('unifi-ap-names')
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regen("graph_topo")
|
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|
|
|
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@receiver(post_delete, sender=AccessPoint)
|
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def ap_post_delete(**_kwargs):
|
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"""Regeneration des noms des bornes vers le controleur"""
|
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regen('unifi-ap-names')
|
|
regen("graph_topo")
|
|
|
|
|
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@receiver(post_delete, sender=Stack)
|
|
def stack_post_delete(**_kwargs):
|
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"""Vide les id des switches membres d'une stack supprimée"""
|
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Switch.objects.filter(stack=None).update(stack_member_id=None)
|
|
|
|
|
|
@receiver(post_save, sender=Port)
|
|
def port_post_save(**_kwargs):
|
|
regen("graph_topo")
|
|
|
|
|
|
@receiver(post_delete, sender=Port)
|
|
def port_post_delete(**_kwargs):
|
|
regen("graph_topo")
|
|
|
|
|
|
@receiver(post_save, sender=ModelSwitch)
|
|
def modelswitch_post_save(**_kwargs):
|
|
regen("graph_topo")
|
|
|
|
|
|
@receiver(post_delete, sender=ModelSwitch)
|
|
def modelswitch_post_delete(**_kwargs):
|
|
regen("graph_topo")
|
|
|
|
|
|
@receiver(post_save, sender=Building)
|
|
def building_post_save(**_kwargs):
|
|
regen("graph_topo")
|
|
|
|
|
|
@receiver(post_delete, sender=Building)
|
|
def building_post_delete(**_kwargs):
|
|
regen("graph_topo")
|
|
|
|
|
|
@receiver(post_save, sender=Switch)
|
|
def switch_post_save(**_kwargs):
|
|
regen("graph_topo")
|
|
|
|
|
|
@receiver(post_delete, sender=Switch)
|
|
def switch_post_delete(**_kwargs):
|
|
regen("graph_topo")
|
|
|